This course introduces students to the uses of SolidWorks for manufacturing and mechanical design. Students will learn to use SolidWorks to create and modify simple sketches, parts, assemblies, and drawings. Topics include the user interface, file structure, 2D sketches, plane creation, basic modelling features, part modifications, bottom-up assembly, and blueprint drawings.

Geometric Dimensioning and Tolerancing is a symbolic language for defining part geometry and communicating engineering tolerances and dimensions on CAD models and engineering drawings. Students will extend basic drafting skills and knowledge to the applied principles of geometric dimensioning and tolerancing. An emphasis will be placed on the interpretation and application of rules and symbols to drawings, measurement techniques, and quality control.


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Upon successful completion of this course, students will be able to interpret and create engineering drawings. This course will begin with basic engineering drafting skills of mechanical parts and progress to more complex parts. Students will gain knowledge of the creation of templates, borders and title blocks that are used in the current version of AutoCAD. The main areas of study are system customization, drawing and editing tools, dimensioning techniques, multiple view drawings, attribute definitions, blocks, and external references within AutoCAD. This course will also introduce the various programs within the Autodesk Suite.

Jigs and fixtures are essential tools that are widely used in industry to facilitate a variety of manufacturing processes. Students will determine the efficient methods of securing a workpiece for manufacturing while choosing various locational, clamping, indexing and tool guiding devices. Students will be asked to design a simple jig and fixture while evaluating the process from a managerial viewpoint.

This course covers the necessary tools and processes to manage the life cycle of a project in an industrial environment. Students will utilize the Guide to the Project Management Body of Knowledge (PMBOK), applying standard terminology and methods in a number of small sample projects including creation of project charter, risk management, procurement, and project scheduling and project reporting.

This course focuses on integrating the fundamental principles of project management with project management software, specifically MS Project. Students will examine how the software can aid in project management practices, such as scope, budgeting, project planning, execution, monitoring and project closure.

Students will continue to strengthen their skills with SolidWorks for the purposes of manufacturing & mechanical design. There will be a focus on sweeps, lofts and surfaces, sheet metal, weldments, and simulation analysis to further develop the students SolidWorks skill set.

This course introduces students to health and safety legislation in Ontario. This will include an exploration of the main components of the Occupational Health and Safety Act, industry and hazard specific regulations made under the Act, and the Workplace Safety and Insurance Act. Students will learn to distinguish between legislative requirements, industry standards and best practices and apply their knowledge to a workplace to assess compliance. Students will be introduced to common workplace hazards, and the concepts of hazard identification and mitigation. Students will also explore how inspections, investigations and penalties are used in the enforcement of occupational health and safety legislation.

Many small to medium sized professional companies work on projects in varied industries, such as architecture, manufacturing, interior design, landscape architecture, video game design and more; often using free or cost-effective design software. In this course students will examine the advantages and disadvantages of using these cost-effective software products. Similar projects will be created in paid and free programs to explore the differences. Upon completion students will have a working knowledge of various cost-effective design software products.

The primary focus in this introductory course is to offer the student an in depth view into Canadian human resource (HR) management functions as it relates to the manufacturing industry. The course emphasis is on the skills and techniques utilized by HR professionals and manufacturing managers in each of their specialty areas, and how they are related to the organization's overall strategy and objectives in Canada.

This course allows students to examine workplace hazard identification and risk management principles in the context of manufacturing and construction environments in Ontario. Students will learn how to asses occupational hazards and exposure pathways, in accordance with applicable legislation. Using industry standard tools and processes, students have an opportunity to conduct a hazard identification and risk evaluation processes. Students will learn how to apply the appropriate hazard controls and how to determine the effectiveness of the selected controls after implementation to ensure for effective risk mitigation.

Students in this course will learn how to utilize collaborative management software to support cross functional team project work. An emphasis will be placed on functionality and best practices around document structure, versioning and stakeholder access. Project work will focus on document management techniques that support Canadian best practices.

This course will guide students towards best practice and procedures when transferring documentation from one platform to another. Student will review processes for transferring 2D data to 3D and vice versa. A large theme of this course will be documentation organization within the major parametric design programs, such as SolidWorks and the Autodesk Suite.

Rapid prototyping puts digital designs into the real world. This course will examine the various manufacturing methods available focusing on practical FDM (Fused Deposition Modelling) 3D printing as design processes are studied. Students will design and 3D print components. 152ee80cbc

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