Mechanism Simulation using Creo Parametric 2.0

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Date/Time
Date(s) - 17/02/2015
12:00 am

Location
PD Solutions Kuala Lumpur, Malaysia

Category(ies)



Mechanism Simulation using Creo Parametric 2.0


Overview

Course Code: TRN-3924
Course Length: 1 Day

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In this course, you will focus on learning advanced modeling and analysis skills. Topics will include developing the 3-D model, analyzing the mechanism model, and evaluating results. This course is designed for experienced users who want to add motion to their products and analyze dynamic reactions of moving components.

These topics will enable you to measure dynamic reactions of components, measure the force required to keep a mechanism balanced, and determine the resting state of a mechanism. After completing this course, you will be prepared to work on mechanism designs using Creo Parametric Mechanism Dynamics Option (MDO).

At the end of each module, you will complete a set of review questions to reinforce critical topics from that module. At the end of the course, you will complete a course assessment in Pro/FICIENCY intended to evaluate your understanding of the course as a whole


Course Objectives

  • Understand the mechanism dynamics option
  • Apply force motors, springs, and dampers to assemblies
  • Apply forces, torques, and gravity to assemblies
  • Create dynamic analyses
  • Create force balance analyses
  • Create static analyses
  • Measure forces, velocities, accelerations, and other reactions
  • Evaluate results

Prerequisites

  • Introduction to Creo Parametric
  • Mechanism Design using Creo Parametric

Audience

This course is intended for design engineers and mechanical designers who need to add and evaluate the motion of their assemblies. People in related roles will also benefit from taking this course.


Agenda

Day 1
Module 1 Introduction to the Mechanism Simulation Process
Module 2 Adding Dynamic Entities to a Mechanism
Module 3 Analyzing the Mechanism Model
Module 4 Evaluating Analysis Results
Module 5 Project


Course Content

Module 1. Introduction to the Mechanism Design Process
i. Introduction to Mechanism Design
ii. Understanding the Mechanism Design Process
iii. Creating the Model
iv. Verifying the Mechanism
v. Adding Servo Motors
vi. Preparing for Analysis of a MechanismModule 1. Introduction to the Mechanism Simulation Process
i. Introduction to Mechanism Simulation
ii. Understanding the Mechanism Simulation Process
iii. Creating the Model
iv. Verifying the Mechanism
v. Adding Dynamic Entities
vi. Preparing for Analysis of a Mechanism
vii. Analyzing the Mechanism
viii. Evaluating Analysis Results
Knowledge Check Questions

Module 2. Adding Dynamic Entities to a Mechanism
i. Defining Mass Properties for Dynamic Analyses
ii. Creating Force Motors
iii. Creating Springs
iv. Creating Dampers
v. Creating Dynamic Gear Connections
vi. Creating Belt Connections
vii. Using Dynamic Properties and Set Zero Position
viii. Applying Friction and Restitution
ix. Applying Force and Torque Loads
x. Applying Gravity
Knowledge Check Questions

 

Module 3. Analyzing the Mechanism Model
i. Understanding Mechanism Dynamics Option Analysis Definitions
ii. Configuring a Dynamic Analysis
iii. Configuring a Static Analysis
iv. Configuring a Force Balance Analysis
v. Defining Initial Configurations
vi. Creating Measures
vii. Understanding Redundancies and Degrees of Freedom
Knowledge Check Questions

Module 4. Evaluating Analysis Results
i. Running Mechanism Analyses
ii. Evaluating Playback Results for Collisions
iii. Configuring Playback Results
iv. Evaluating Results Using Display Arrows
v. Graphing Measure Results
Knowledge Check Questions

Module 5. Project
i. The Stunt Bike

 

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