Showing posts with label Mechanical Engineering Courses. Show all posts
Showing posts with label Mechanical Engineering Courses. Show all posts

Monday, August 18, 2014

Choosing the Right Mechanical Engineering Program

Mechanical engineering technology is a discipline that is concerned with the application of engineering principles to the manufacturing, production, installation, troubleshooting, repairing and maintenance of mechanical equipment, devices, systems or machinery. The coursework is less theoretical and more hands-on; and students are generally engaged in additional laboratory coursework in comparison with those studying other engineering programs.

A post-secondary mechanical engineering program typically runs for three years through six semesters and covers basic engineering skills and sciences as well as specialized subjects related to modern manufacturing and production processes. A strong emphasis is laid on providing students with experience in machine shop operation, tool design and computer numerical control programming. With this, training is also provided in computer-aided drafting (CAD) and computer-aided manufacturing (CAM), which are widely used in industry today.

Program Structure

Students study the foundations of materials, mechanics, electrical, energy and computer programming; acquire technical skills in material testing, machine designing, facility planning, quality testing, project construction and tool designing.

During the first year (Semester 1 & 2), they study basic subjects, including Technology Mathematics, Machine Shop, Properties of Materials, Auto CAD/ Blueprint Reading, Physics, Applied Statistics, Applied Electricity, Mechanical Drawing and Manufacturing Processes. They study Differential Calculus and Analytical Geometry, CAD/CAM and CNC Programming, Strength of Materials, Fluid Mechanics, Tool Design, Quality Assurance, Applied Dynamics, Project: Design and Control and Hydraulics and Pneumatics in the second year (Semester 3 & 4).

The third year (Semester 5 & 6) of the program covers more advanced subjects, such as Machine Design, Integral Calculus, Operational Excellence, Advanced Quality Concepts, Project Management, Shop Floor Management and Continuous Improvement, Manufacturing Automation, Facility Planning and Workcell Design and Principles of Accounting and Financial Management. The program also incorporates industry field placement, allowing students to put their classroom learning into practice.

Admission Criteria

Students applying to this program need to submit:
  • Secondary school diploma certificate or equivalent, or mature student status;
  • Scores of English Grade 12 C or University, or equivalent or take the college's English Skills Assessment for Admission; and
  • Scores of Mathematics Grade 11 M or 12 C or University, or equivalent or take the college's Engineering Math Skills Assessment for Admission.

Students who are currently in high school can also apply for this program. Their midterm and final term scores will be automatically transmitted to the college.

Choosing the Right College

A large number of colleges in Canada offer post-secondary mechanical engineering courses. A program is worth considering only if it

A large number of colleges in Canada offer post-secondary mechanical engineering courses. A program is worth considering only if it
  • Is accredited
  • Offers practical experience in designing, building, and testing equipment
  • Incorporates actual workplace assignments
  • Incorporates practical hands-on experience
  • Offers excellent employment prospects

Centennial College's program in mechanical engineering technology fulfills all the above mention criteria. It makes the right choice for students who wish to build careers in the areas of mechanical product design and manufacturing, quality control, plant expansions and layouts and planning new facilities. The program is CTAB nationally accredited and allows qualified students to work three terms as paid employees in the field. The co-op component helps them enhance their learning and gain practical experience even before they are graduates.

Thursday, July 24, 2014

Industrial Mechanical Engineering Technology Program Includes Projects and Real World Experiences

Mechanical Engineering Technology requires knowledge of engineering theory, manufacturing and production of mechanical equipment, modern manufacturing and production processes, and computer-assisted drafting and manufacturing (CAD/ CAM) - which are used widely in today's industry.

Centennial College offers a Mechanical Engineering program that trains students for the field through three years of study that includes a 60-40 balance between theory and practice. This project-driven program gives students practical experience in designing, building and testing an original piece of equipment. This program is facilitated from Progress Campus, which includes facilities designed to cater to the curriculum of the offering and includes a new mechanical engineering lab that boasts Thermodynamic Fluid Power testing modules, and Tensile, Hardness and Impact Testers. As such, students gain instruction in industry-current software such as AutoCAD, Inventor and Mastercam. Additionally, they attend a range of courses that offer a well-rounded perspective. They include:

Applied Dynamics:- The kinematics of rigid bodies in plane motion is the focus of this course. Students also become familiar with utilizing vector polygons for velocity and acceleration, and the technique of instantaneous centre of rotation used for velocities. Classroom time is spent on learning activities related to theory and the solution of practical problems.

Shop Floor Management and Continuous Improvement:- It is inevitable that complex system problems related to manufacturing or business environments will arise once students launch their careers. This course offers them the tools and knowledge necessary to analyze and solve problems through quantitative analysis, decision-making and application of problem solving, team building and leadership principles.

Manufacturing Automation:- Students learn to effectively analyze the manufacturing automation using different control system techniques, various automation concepts, introducing supervisory controls and using data acquisition systems to improve quality, productivity and overall performance of the automation machinery.

Advanced Project - Design and Construction:- As one of the most beneficial hands-on aspects of the offering, this course is strictly focused on project work. Students are placed into groups and faced with a department-approved challenge that is expressed as a problem needing a solution. Student must design and build a viable solution for the problem. Milestones are set to encourage students toward refining their design through several stages from initial concept to completed prototype solution. The completed project is presented to an audience of peers and College faculty from several departments.

In addition to the mechanical engineering courses, academically-qualified students prepare for the industry through a co-op component. Working as paid employees in the field, students are able to put classroom learning into practice and expand their professional networks.

Not only do grads works in a range of jobs that manufacture and production of mechanical equipment, they also develop quality control systems, assist in plant expansions and layouts, conduct time and motion studies, plan and schedule new facilities, and prepare job safety programs and manuals. Among the titles Centennial College can obtain are: supervisors, junior engineers and assistants to professional engineers.

Friday, July 4, 2014

Mechanical Engineering Technology Industrial Offering Combines On-Campus Learning with Field Experience

Did you know that Mechanical Engineering Technology - Industrial (PTY) program at Centennial College not only teaches its students basic engineering skills and science, but also more specialized subjects relating to modern manufacturing and production processes? This fully rounded approach is beneficial in preparing students for the field.

The program, through a project-driven approach, offers students experience in machine shop operation, tool design, building and testing; plus computer numerical control programming in fully-equipped labs and facilities. In fact, the location from which the program is facilitated - Progress Campus - boasts a new mechanical engineering lab that includes: Thermodynamic Fluid Power testing modules, and Tensile, Hardness and Impact Testers.

Among the specific Mechanical Engineering courses offered at Centennial College are:

Properties of Materials: As a foundational course, this aspect of the program deals with the properties of materials based on their atomic structure. Students not only learn constituents and structure of engineering materials when alloying takes place and identifies the structural changes during elastic and plastic deformation but also how to identify change in structure and, as such, mechanical properties with heat treatment.

Machine Shop: Because hands-on application is a significant part of the program, this course covers subjects such as metrology, bench work, saws, drills, mills, lathes, grinders, safety, tables/charts, layouts, trade calculations and engineering drawings through projects.

Manufacturing Processes: There is a wide spectrum of manufacturing processes. As such, this course first teaches students how each process works and its relative advantages and limitations. It then looks at the interaction of the materials and the process. Major emphasis is placed on the fundamentals of production processes in order to produce quality products in a competitive manner.

Tool Design: Jig and fixture design and die design are the fundamental topics covered in this course, while fundamental concepts of design in respect to drilling and milling, holding fixtures, assembly fixtures and pressworking dies (blank and pierce) round it out. Using a C.A.D. environment, students develop a working design for an assigned part and produce fully annotated and dimensioned general assembly and detail drawings.

To complement on-campus lessons, the program offers a co-op component to academically-qualified students. These students work three terms as paid employees in the field. As such, not only do they get to test out their knowledge but also gain valuable contacts for future careers.

Once students successfully complete the mechanical engineering program and receive their Ontario College Advanced Diploma, they are equipped to launch careers in the manufacture and production of mechanical equipment as. In this area, they will fill roles such as: developers of quality control systems, supervisor positions, junior engineers, assistants to professional engineers, assistants in plant expansions and layouts, conductors of time and motion studies, planners of new facilities, and developers of job safety programs and manuals.

Monday, May 12, 2014

Mechanical Engineering Technology Industrial (PTY) Program Offers Significant Career Options

A career in engineering can mean a lot more than just programming and developing software applications or designing bridges and buildings. Engineering students can build careers in research, machine or equipment designing, computer-aided drafting, quality testing and assurance, safety control, specifications writing, work cell designing and many more.

The list of career options is endless for mechanical engineering students, as the field is considered to be the most diverse and widest in scope of all engineering specializations. Those interested in building careers in designing, building and testing industrial equipment, thermodynamics and material testing, machine shop operation, tool design, facility planning, job safety program development and/or product manual writing can choose to enroll themselves into a post-secondary mechanical engineering technology - industrial (PTY) course.

Career Opportunities upon Course Completion

A mechanical engineering program prepares them for diverse jobs in designing, manufacturing, production, quality control and repairing of mechanical equipment, devices, motors and machines. Upon course completion, they can find employment in various industry verticals, including automobile, nuclear, robotics, marine, oil and gas, power and energy, aerospace and heating, ventilation and air-conditioning.

The program graduates can also associate themselves with facility planning, construction and customer support services companies. They can also practice independently. The explosion of electrical, electronic and other technology equipment, machines and devices has resulted in a significant increase in the demand for mechanical engineering professionals. Already this field offers a vast range of career options and advancement in technology is further adding to the employment prospects.

Basic and Advanced Courses and Practical Learning

A mechanical engineering - industrial program helps students build strong fundamentals in physics, chemistry, mathematics, analytical geometry, fluid mechanics, statistics and calculus. With this, they also study basic engineering concepts including, properties of materials, mechanical drafting, manufacturing processes, applied electricity, strengths of materials and hydraulics and pneumatics.

It also covers more advanced engineering subjects, such as operational excellence, advanced quality concepts, project design and construction management, manufacturing automation, and facility planning. It also incorporates hands-on lab, individual and team projects and actual workplace assignments. The program also features a co-op component, which is open for academically qualified students. They can work three terms as paid employees in the field to put their classroom learning into practice and enhance their understanding.

Mechanical Engineering Courses in Toronto

A number of colleges offer post-secondary mechanical engineering courses in Toronto. Unfortunately, not all offer co-op placement component. Moreover, they may not be affiliated with any governing body. Centennial College's three-year mechanical engineering technology – industrial (PTY) program has met the technology accreditation requirements established by the Canadian Council of Technicians and Technologists (CCTT). It has also received national accreditation status by the Canadian Technology Accreditation Board (CTAB). Moreover, the program features a co-op placement component.

Eligibility Criteria

Interested students need to submit their secondary school certificate or equivalent, English Grade 12 C or University or equivalent scores, and mathematics Grade 11 M or 12 C or University or equivalent while applying for the course. In order to benefit from co-op placement component, they need to meet below requirements:
  • Minimum C grade in COMM-170/171
  • Minimum 2.5 CGPA
  • Minimum 80 percent of year 1 & 2 courses for COOP-221

Thursday, April 24, 2014

Step-by-Step Guide to Becoming a Mechanical Engineer Industrial

Mechanical engineers can find employment with companies that design and manufacture mechanical devices and systems, such as the government, military, customer service companies and research labs. They are involved in almost all stages of manufacturing, including selecting the appropriate materials, measuring the dimensions, choosing the right machinery, designing and developing the product, testing quality, and troubleshooting the machinery.

Mechanical engineers mainly work with, but not limited to, companies operating in these industries:
  • Automobile
  • Biomedical
  • Customer service
  • Heating, ventilation and air conditioning
  • Nuclear
  • Robotics
  • Power and energy
  • Piping
  • Aeronautical
  • Marine
  • Oil and gas
  • Aerospace
The professionals offer technical support in the fields of design, development, testing, troubleshooting, power generation and power conversion. The job may or may not require travelling, depending upon the employment.

The engineers can also be expected to
  • Analyze product designs
  • Identify problems in a product
  • Create blueprints for product development
  • Generate specifications for various parts of the products
  • Resolve mechanical problems whenever they surface
  • As0sist in plant expansions
  • Prepare job safety programs
  • Coordinate time and motion studies
  • Develop quality control systems
  • VPlan and schedule new facilities
Guide to Becoming a Mechanical Engineer - Industrial

Like any other profession, mechanical engineering also requires students to undergo a formal education and practical training to seek entry level employment in this field. In fact, this is the first step towards becoming a mechanical engineer - industrial. Higher education and years of experience are required to an advanced career.

The three-year post-secondary mechanical engineering courses help you gain theoretical and practical knowledge along with hands-on-experience in manufacturing and production of mechanical equipments. The students can build strong fundamentals as well as more specialised skills relating to modern manufacturing and production processes.

The programs cover a wide range of subjects including technology mathematics, properties of materials, machine shop, physics, applied statistics, mechanical drafting, manufacturing processes, applied electricity, differential calculus and analytical geometry, fluid mechanics, tool design, applied dynamics, hydraulics and pneumatics and tool design and quality assurance.

Apart from these, the program also helps students gain excellent computer skills, blueprint reading, and communication, CAD programming skills, report writing and project design, construction and management skills. Shop floor management, facility planning and work cell designing and principles of financial accounting and management are also covered.

Practical Training

Good mechanical engineering programs combine theory, hands-on-lab and projects, designing, building and testing an original piece of equipment, actual workplace assignment and employment placement. This is done to help students put their classroom learning into practice in real world scenarios and gain hands-on-experience. This also provides valuable contacts that can be used as references when entering the world of work upon completion of the program.

Choosing the Right College

Choosing the right college is the most crucial step in becoming a mechanical engineer. There are many colleges in Canada that offer post-secondary programmes in this field. Unfortunately, not all of them are accredited. Centennial College’s program in mechanical engineer is CTAB accredited and offers you required exposure and practical experience to build a career in this field.

In order to apply for the program, you will need:
  • Secondary school diploma or equivalent
  • English Grade 12 C or University or equivalent
  • Mathematics Grade 11 M or 12 C or University or equivalent
Co-op (PTY) requirements include:
  • Minimum C grade in COMM-170/171
  • Minimum 2.5 CGPA
  • Minimum 80 percent of year 1 & 2 courses for COOP-221

Monday, March 24, 2014

Mechanical Engineering Technology Industrial Program Takes Students From Classroom to Real World Experience

Centennial College's Mechanical Engineering program - Mechanical Engineering Technology - Industrial (PTY) is all about teaching students about manufacturing and production of mechanical equipment.

During the three years that students spend in the program, they attend a wide range of courses, complete hands-on projects that mimic real world assignments and attend a number of co-op terms to apply what they have learned and enhance their knowledge even further. In total, there is about a 60-40 balance between theory and practice.

Here is a closer look at some of the specific courses included in the program.

Manufacturing Automation: Using different control system techniques and various automation concepts, the course introduces supervisory controls and use of data acquisition systems to improve quality, productivity and overall performance of the automation machinery. This course teaches students to effectively analyze the manufacturing automation.

Machine Shop: Various projects are used to teach students a range of topics such as: metrology, bench work, saws, drills, mills, lathes, grinders, safety, tables/charts, layouts, trade calculations and engineering drawings.

Quality Assurance: Students are introduced to quality concepts, tools and techniques, which emphasize the interpretation, understanding, and use of quality principles and concepts. A follow-up course called Advanced Quality Concepts is offered in the next semester. It teaches students to effectively analyze business and quality problems using six sigma methodologies, tools and techniques to improve quality, productivity and overall performance of the organization.

Hydraulics & Pneumatics: These fluids enable industrial designers to provide effective methods of power transmission to meet a variety of needs. The result is a range of applications from a simple hydraulic jack to complex applications in automated manufacturing lines. Students are introduced to design principles/calculations, component and circuitry construction/operation, and troubleshooting of fluid power circuits. The courseware includes theory lectures and corresponding hands-on labs.

Shop Floor Management & Continuous Improvement: The emphasis of this course is on teaching students to analyze and solve complex system problems related to manufacturing or business environments through the application of quantitative analysis, decision making and application of problem solving, team building and leadership principles.

Applicants who wish to attend these Mechanical Engineering courses, are required to have completed at minimum an Ontario Secondary School Diploma (OSSD) or equivalent, or mature student status (19 years or older). In addition, they must possess English Grade 12 C or U credit, or equivalent, or skills assessment; and Math Grade 11 M or U or Grade 12 C or U credit, or equivalent, or skills assessment.

Graduates are prepared for jobs in the manufacture and production of mechanical equipment as supervisors, junior engineers, assistants to professional engineers, developers of quality control systems, assistants of plant expansions and layouts, conductors of time and motion studies and more.

Wednesday, February 19, 2014

The Job Description and Qualifications of a Mechanical Engineer

Mechanical engineering is all about designing, building, installing, maintaining and troubleshooting machines of all sizes and types. And mechanical engineers most likely assume entry-level jobs in the areas of
  • Tool designing
  • Machine shop operations
  • Computer numerical control programming
  • Equipment designing, building and testing
  • Facilities planning and scheduling
  • Plant expansion and layout planning
  • Quality control systems development
  • Job safety programs preparation
  • Manuals preparation
  • Material selection for machine/tool building
  • Machine troubleshooting
  • Machine installation
  • Performance evaluation of machines
  • Customer services
  • Technical sales
The mechanical engineers are prepared to develop solutions, resolve problems, and ensure smooth operations in a variety of settings. They may be associated with companies in diverse industries, including but not limited to, mechanical, oil and gas, automobile, biomedical, nuclear, energy, aeronautical, marine, aerospace, heating, ventilation and air conditioning, electronics, metals, defence, construction and utilities.

Need for Formal Education and Training

Mechanical engineering in considered to be the most diverse among all engineering disciplines. This is why mechanical engineers can find employment in diverse industrial sectors. For the past few years the professionals have been enjoying an explosion of expanded opportunities. The reason is that the companies became more automated and dependent on computer control machines. This broadened the career prospects for mechanical engineers.

However, this calls for the need to adapt to and keep up with the continuous evolving technological and mechanical environment. Moreover, the professionals are expected to possess critical skills required to analyze existing mechanical systems for possible improvements, interpret design schematics, and design and develop new devices intended to solve problems in specific industries.

Besides this, they are expected to be comfortable in installing, maintaining and troubleshooting the existing and newly developed machinery. As their job is multi-faceted, they must also possess strong technical writing skills to help prepare product manuals and communication skills to deal with the customers.

A program in mechanical engineering- industrial can lead prospective professionals on the right career path, helping them learn engineering theory and practice in the manufacturing and production of mechanical equipment. They study basic engineering science as well as more specialized subjects related to modern manufacturing and production processes.

Mechanical Engineering Courses in Canada

A number of colleges in Canada offer post-secondary mechanical engineering courses. Unfortunately, not all are nationally accredited. Centennial College's mechanical engineering technology - industrial (PTY) is CTAB accredited program. It also meets the national technology accreditation requirements established by the Canadian Council of Technicians and Technologists (CCTT).

The three-year post-secondary mechanical engineering courses combines classroom learning, a design and construction project, computer-assisted drafting and manufacturing, two individual projects, an actual workplace assignment through field placement and three terms of paid employment.

The program lays a strong emphasis on mechanical drafting, thermodynamics, and CNC programming, design and construction, hydraulics and pneumatics and tool design.

Enrolment Guide

In order to apply for this program, you will need:
  • Secondary school diploma or equivalent
  • English Grade 12 C or University or equivalent
  • Mathematics Grade 11 M or 12 C or University or equivalent
Students currently in high school can also apply for this program. Their midterm and final term grades will be automatically transmitted to the college.

Thursday, November 21, 2013

What to Do With a Mechanical Engineering Diploma

A diploma in mechanical engineering can help you build a rewarding career in various sectors including:
  • Construction
  • Aerospace
  • Automotive
  • Electronics
  • Marine
  • Utilities
  • Metals
  • Defence
The role of a mechanical graduate can range from designing and development, testing, safety control and research. Graduates can work as junior engineers, assistants to professional engineers, mechanical engineers in plant expansions and layouts and quality control system developers. Other areas of employment, such as planning and scheduling new facilities and preparing job safety programs and manuals are also open for engineering graduates.

Mechanical engineering is considered to be the most diverse field of all engineering disciplines. It combines maths, physics, technology, applied electricity, mechanical drafting, statistics, fluid mechanics, report writing, quality assurance and machine design, manufacturing automation and accounting management.

Enterprises have a huge demand for mechanical engineers with strong business and interpersonal skills. They look for technical professionals who can think in terms of business and can work their way around balance sheets and other financial data.

What Does a Mechanical Engineering Course Include?

A mechanical engineering course will help students gain basic engineering knowledge, skills and competency to build a rewarding career after the completion of the course. Besides, more specialized subjects relating to manufacturing and production process are also covered. Non-technical subjects such as college communications, ethics in technology and environment, global citizenship and principles of accounting and financial management make the course more job-oriented.

The three year diploma course combines classroom lectures, training in computer assisted drafting and manufacturing and two-semester individual projects. The theoretical classes are aimed at helping students strengthen their fundamentals and individual projects help them gain practical experience in designing, building and testing an original piece of equipment.

What Do You Learn in a Mechanical Engineering Program?

A mechanical engineering program helps you gain experience in machine shop operations, tool design and computer numerical control programming. In addition, you also learn CAD/CAM and CNC programming and get to work on thermodynamic fluid power testing modules and hardness and impact tester in laboratory. Good engineering colleges also extend opportunities to students to work on actual assignments.

The engineering program also features a co-op component. It gives qualified students an opportunity to enhance their education by working as a paid employee for three terms. Availing this option, you can put your classroom learning into practice. You also get valuable contacts for future that can be used as references for background check when you enter the world of work.

Enrolling into a Mechanical Engineering Diploma Course

Students seeking to enroll into a mechanical engineering diploma pot secondary course need to submit secondary school certificate or equivalent or a mature student status. Additionally, you need to submit English Grade 12 C or University or equivalent and mathematics 11 M or 12 C or University or equivalent.

Applicants should keep in mind that the technology institute they are seeking admission in must be accredited to the state council of technicians and technologists or a technology board. Also find out about their internship and final placement programs.

Monday, June 24, 2013

Mechanical Engineering Program Focuses on Technology

Those who attend a Mechanical Engineering program know that mechanical engineering technology is defined as “the application of engineering principles and technological developments to the creation of useful machinery or products. Through the application of computer-aided manufacturing, the models may also be used directly by software to create ‘instructions’ for the manufacture of objects represented by the models, through computer numerically controlled machining or other automated processes.” As such, professionals in this field obtain jobs in the manufacture and production of mechanical equipment in which they may develop quality control systems, assist in plant expansions and layouts, conduct time and motion studies, plan and schedule new facilities and prepare job safety programs and manuals. Among the titles grads of a mechanical engineering program can attain are: supervisor (which offers additional opportunities), junior engineer, assistant to rofessional engineers, lab technician, quality control, CAD operator, technical sales and marketing, production control, and product design and development.

Before they can do so though, professionals must attend a Mechanical Engineering program such as the Mechanical Engineering Technology – Industrial (PTY) offering at Centennial College, which teaches engineering theory as well as more specialized subjects relating to modern manufacturing and production processes and offers practice in the manufacturing and production of mechanical equipment.

Applicants interested in attending this school’s mechanical engineering courses must have completed at minimum an Ontario Secondary School Diploma (OSSD) or equivalent, or mature student status (19 years or older). In addition, they must possess English Grade 12 C or U, or equivalent, or skills assessment; and Math Grade 11 M or U or Grade 12 C or U, or equivalent, or skills assessment.

Students of this mechanical engineering program attend three year’s worth of courses that offer a 60-40 balance of theory and practice, and include: Statistics, Machine Shop, Fluid Mechanics, Applied Electricity, Differential Calculus and Analytic Geometry, Properties of Materials, Tool Design, Quality Assurance, Physics, and more. A project-heavy approach allows learners gain experience in machine shop operation, tool design, plus computer numerical control programming, designing, as well as building and testing an original piece of equipment. In addition, they learn essential computer-assisted drafting and manufacturing (CAD/ CAM), as well as industry-current software instruction in AutoCAD, Inventor and Mastercam.

Many of these all-important mechanical engineering program topics are covered in a new mechanical engineering lab that includes Thermodynamic Fluid Power testing modules, and Tensile, Hardness and Impact Testers. This environment also serves as great preparation for the most hands-on components of the mechanical engineering program — two individual projects and a co-op in the field. The project, which simulates actual workplace assignments, gives students practical experience in designing, building and testing an original piece of equipment. Meanwhile, academically qualified Mechanical Engineering program students enhance their education by working three terms as paid employees in the field. This experience not only allows them to put classroom learning into practice, but also provides valuable networking opportunities for future careers. Please note that a minimum C grade required in COMM-170/171, minimum 2.5 GPA and minimum 80 percent of year 1 and 2 courses are requird for COOP-221.

Wednesday, January 30, 2013

Mechanical Engineering Program Prepares You For Various Careers

Junior engineers, CAD operators, mechanical testers, quality controllers, technical sales, production, product designers and developers, lab technicians – these are some of the job titles professionals who attended a mechanical engineering program can obtain upon graduation. Centennial College offers one such program in a three-year offering that combines engineering theory and practice, and focuses on the design and development of various mechanical devices and equipment. As a result, students gain experience in machine shop operation, tool design, plus computer numerical control programming.

The Mechanical Engineering Technology - Design program (as it is officially known) has met the national technology accreditation requirements established by the Canadian Council of Technicians and Technologists and, as such, has received national accreditation status by the Canadian Technology Accreditation Board. In addition, The Ontario Association of Certified Engineering Technicians and Technologists recognizes the Mechanical Engineering Technology - Design program as meeting all the academic requirements for certification in the Technology category.

Within the program, there is about 60-40 balance between theory and practice with students spending about one quarter of the program time on project work that simulates workplace assignments. These projects relate classroom theory to the actual design, manufacture and testing of products. In addition, students develop knowledge of computer-assisted drafting and manufacturing (CAD/CAM), as used in the industry. To complement hands-on training, students learn software instruction such as MasterCAM V9.1 & Version "X", AutoCAD 2007, Autodesks Inventor R11. "We have a unique lab, which was introduced a few years back. This lab has most of the things required in the current environment. For example, we have testing stations, we have a fluid module, we have the thermodynamic module, we have a wind tunnel. So these people, when they graduate, [are prepared]," adds Famiel Shiek, a professor in the program.

Specific Mechanical Engineering Courses in this program include: Tool Design (emphasis is placed on jig and fixture design, and die design. The fundamental concepts of design are taught with respect to drilling and milling, holding fixtures, assembly fixtures and pressworking dies); Applied Statistics (this course focuses on the application of principles presented in the Mechanics course by introducing students to problems depicting realistic situations encountered in engineering practice. Applied Statistics is a branch of Applied Mechanics and involves the study of forces and the effect of forces acting on bodies in equilibrium without motion or moving with constant velocity); Thermodynamics (introduction to classical thermodynamics, dealing with the relationships between heat, work and mechanical devices); and more.

To apply, for the Mechanical engineering program, students must present at minimum an Ontario Secondary School Diploma (OSSD) or equivalent or be 19 years of age or older. You must also have the compulsory English 12C or U or skills assessment, or equivalent and the Math 11M or U, or 12C or U or skills assessment, or equivalent. You will be placed in the appropriate English and math courses based on the skills assessment results. Please note that possession of minimum admission requirements does not guarantee admission to the program.

Monday, June 4, 2012

Mechanical Engineering Program Offers Real Life Experience

If you are looking to attend a Mechanical Engineering program that offers you the chance at real-life experiences balanced with theory and lab practice, look no further than the Mechanical Engineering Technology – Industrial (PTY) offering at Centennial College. This offering is designed for those interested in a career in the manufacture and production of mechanical equipment.

In order to apply, all you require is the completion of at least an Ontario Secondary School Diploma (OSSD) or equivalent, or mature student status (19 years or older). In addition, you must possess English Grade 12 C or U, or equivalent, or skills assessment; and Math Grade 11 M or U or Grade 12 C or U, or equivalent, or skills assessment.

Once you are accepted, you will attend mechanical engineering courses that prepare you for positions such as s supervisor (which offers additional opportunities), junior engineer, assistant to professional engineers, lab technician, quality control, CAD operator, technical sales and marketing, production control, and product design and development. But how does Centennial College's Mechanical Engineering program get you from novice to confident professional?

The campus at which Mechanical Engineering program students study houses a new mechanical engineering lab that includes: Thermodynamic Fluid Power testing modules, and Tensile, Hardness and Impact Testers. This is important as students attend Mechanical Engineering courses that have a 60-40 balance of theory and practice. Through this approach, students gain a foundation in basic engineering skills and science before moving onto more specific and advanced topics relating to modern manufacturing and production processes. The project-driven angle of the mechanical engineering courses allows learners to experience machine shop operation, tool design, plus computer numerical control programming, designing, as well as building and testing an original piece of equipment. In addition, they learn essential computer-assisted drafting and manufacturing (CAD/ CAM), as well as industry-current software instruction in AutoCAD, Inventor and Mastercam.

Specific mechanical engineering courses featured in this offering include: Machine Shop, Physics, Applied Electricity, Statistics, Differential Calculus and Analytic Geometry, Properties of Materials, Fluid Mechanics, Tool Design, Quality Assurance and more.

In addition to in-class learning, students of the Mechanical Engineering program take on two individual projects and attend co-op in the field. First, the project, which simulates actual workplace assignments, gives students practical experience in designing, building and testing an original piece of equipment.

Secondly, academically qualified students enhance their education by working three terms as paid employees in the field. This experience not only allows them to put classroom learning into practice, but also provides valuable networking opportunities for future careers. Please note that a minimum C grade required in COMM-170/171, minimum 2.5 GPA and minimum 80 percent of year 1 and 2 courses are required for COOP-221.

Upon graduation, mechanical engineering program students are prepared for jobs in the manufacture and production of mechanical equipment. Their duties may include: developing quality control systems, assisting in plant expansions and layouts, conducting time and motion studies, planning and scheduling new facilities and preparing job safety programs and manuals.

Wednesday, March 14, 2012

Mechanical Engineering Program Takes Just Three Years to Complete

Do you have an interest in a career in the manufacture and production of mechanical equipment as a supervisor (which offers additional opportunities), junior engineer, assistant to professional engineers, lab technician, quality control, CAD operator, technical sales and marketing, production control, and product design and development? In order to have a long lasting career in one of these areas, professionals must attend a mechanical engineering program, such as Centennial College's Mechanical Engineering Technology – Industrial (PYT) option.

This offering, which is facilitated out of the college's largest location, Progress campus, takes three years to complete and results in an Ontario College Advanced Diploma. Students learn through mechanical engineering courses that offer a combination of engineering theory and practice in the manufacturing and production of mechanical equipment. In fact, there is about 60-40 balance between theory and practice. As such, students gain basic engineering skills and science, as well as more specialized knowledge in subjects relating to modern manufacturing and production processes. Training includes computer-assisted drafting and manufacturing (CAD/ CAM), as well as industry-current software instruction in AutoCAD, Inventor and Mastercam. The project-driven approach of the mechanical engineering courses also gives students the chance to experience machine shop operation, tool design, plus computer numerical control programming, designing, as well as building and testing an original piece of equipment. To round out training, two semester individual projects, give students practical experience in designing, building and testing an original piece of equipment. The project approach simulates actual workplace assignments. The campus at which Mechanical Engineering program students study houses a new mechanical engineering lab that includes: Thermodynamic Fluid Power testing modules, and Tensile, Hardness and Impact Testers.

Specific mechanical engineering courses featured in this offering include: Properties of Materials, Machine Shop, Physics, Applied Electricity, Statistics, Differential Calculus and Analytic Geometry, Fluid Mechanics, Tool Design, Quality Assurance and more.

Complementing what students learn in class is a co-op component. Academically qualified students enhance their education by working three terms as paid employees in the field. This experience not only allows them to put classroom learning into practice, but also provides valuable contacts for future careers.

Mechanical engineering program students are prepared for jobs in the manufacture and production of mechanical equipment: developing quality control systems, assisting in plant expansions and layouts, conducting time and motion studies, planning and scheduling new facilities and preparing job safety programs and manuals.

In order to apply for his Mechanical engineering program, interested parties must have completed an Ontario Secondary School Diploma (OSSD) or equivalent, or mature student status (19 years or older). In addition, they should possess English Grade 12 C or U, or equivalent, or skills assessment; and Math Grade 11 M or U or Grade 12 C or U, or equivalent, or skills assessment. Upon admission, a minimum C grade required in COMM-170/171, minimum 2.5 GPA and minimum 80 percent of year 1 and 2 courses are required for COOP-221.

Wednesday, November 16, 2011

Mechanical Engineering Program Prepares You For Various Careers

Junior engineers, CAD operators, mechanical testers, quality controllers, technical sales, production, product designers and developers, lab technicians – these are some of the job titles professionals who attended a mechanical engineering program can obtain upon graduation. Centennial College offers one such program in a three-year offering that combines engineering theory and practice, and focuses on the design and development of various mechanical devices and equipment. As a result, students gain experience in machine shop operation, tool design, plus computer numerical control programming.

The Mechanical Engineering Technology - Design program (as it is officially known) has met the national technology accreditation requirements established by the Canadian Council of Technicians and Technologists and, as such, has received national accreditation status by the Canadian Technology Accreditation Board. In addition, The Ontario Association of Certified Engineering Technicians and Technologists recognizes the Mechanical Engineering Technology - Design program as meeting all the academic requirements for certification in the Technology category.

Within the program, there is about 60-40 balance between theory and practice with students spending about one quarter of the program time on project work that simulates workplace assignments. These projects relate classroom theory to the actual design, manufacture and testing of products. In addition, students develop knowledge of computer-assisted drafting and manufacturing (CAD/CAM), as used in the industry. To complement hands-on training, students learn software instruction such as MasterCAM V9.1 & Version “X”, AutoCAD 2007, Autodesks Inventor R11. “We have a unique lab, which was introduced a few years back. This lab has most of the things required in the current environment. For example, we have testing stations, we have a fluid module, we have the thermodynamic module, we have a wind tunnel. So these people, when they graduate, [are prepared],” adds Famiel Shiek, a professor in the program.

Specific Mechanical Engineering Courses in this program include: Tool Design (emphasis is placed on jig and fixture design, and die design. The fundamental concepts of design are taught with respect to drilling and milling, holding fixtures, assembly fixtures and pressworking dies); Applied Statistics (this course focuses on the application of principles presented in the Mechanics course by introducing students to problems depicting realistic situations encountered in engineering practice. Applied Statistics is a branch of Applied Mechanics and involves the study of forces and the effect of forces acting on bodies in equilibrium without motion or moving with constant velocity); Thermodynamics (introduction to classical thermodynamics, dealing with the relationships between heat, work and mechanical devices); and more.

To apply, for the Mechanical engineering program, students must present at minimum an Ontario Secondary School Diploma (OSSD) or equivalent or be 19 years of age or older. You must also have the compulsory English 12C or U or skills assessment, or equivalent and the Math 11M or U, or 12C or U or skills assessment, or equivalent. You will be placed in the appropriate English and math courses based on the skills assessment results. Please note that possession of minimum admission requirements does not guarantee admission to the program.