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蹤獲扦 NIARs Intermediate Additive Manufacturing (AM) Certificate Program is an in-person, 3-day training that incorporates hands-on exercises and lectures.
Course Learning Objectives:
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- Gain an understanding of the general design rules/guidelines pertaining to polymer and metal additive manufacturing via DfAM exercises.
- Know the best practices of safety aspects while working with 3D printing.
- Provides intermediate-level CAD training on wireframe and surface design.
- Learn how to do Finite Element Analysis (FEA) and apply it for 3D printing by incorporating the entire FEA workflow.
- Carry out 3D printing on an industrial grade machine that includes slicer software, machine setup, build, post-processing, etc.
By the end of the course, participants will be able to:
- Apply the DfAM rules/ guidelines prior to manufacturing a 3D printed part.
- Design AM parts in the most efficient manner with minimum support structures.
- Understand the basic terms and definitions associated with environment, health & safety in AM.
- Identify common risks associated with AM.
- Be enabled to take preventative actions to minimize and mitigate risks.
- Design a part on 3DEXPERIENCE using wireframe and surface tools/operations.
- Explain the typical FEA workflow.
- Analyze the part prior to 3D printing and predict its behavior under real-world loading conditions via FEA simulations.
- Create a part on an industrial grade 3D printing machine.
Course Topics
Module 1 Design for Additive Manufacturing (DfAM)
Introduction to design, DfAM case studies, supports, stress concentration, residual
stress, general AM design rules, polymer AM- general design rules, metal AM- general
design rules, DfAM steps, design activity.
Module 2 AM: Environment, Health and Safety
Intro to environment, health & safety, 3D printing hazards, best practices, personal
protective equipment, waste disposal, safety signs, safety precautions, machine specific
examples, environment, health & safety organizations to know, AM safety quiz.
Module 3 Intermediate CAD
Introduction to surfacing, surface design process, generative shape design workbench
and tools, creating wireframe geometry, creating simple surfaces, performing operations
on wireframe and surface geometry, design exercise- impeller.
Module 4 Finite Element Analysis (FEA)
Introduction to engineering problems, why FEA?, goal of FEA, stress-strain curve,
FEA workflow, 3DEXPERIENCE FEA sanity checks, FEA exercises.
Module 5 Industrial Grade 3D Printing
3D printing demo on the Stratasys F900, slicer software demo, machine setup, build,
post-processing, lab tour.
Individuals who complete this course will receive a completion certificate. This course is open to the public. No pre-requisites required.