Pro/E 3D Assembly & Motion Interference Simulation Special Training
---------Copyright Course: Project Case Engineering Experience Special Topic
I. Course Objectives
Through a combination of Pro/E assembly theory and engineering case studies, master the methods and skills for assembly and motion simulation using Pro/E software, and develop the capability to solve engineering assembly and motion simulation challenges.
II. Engineering Cases
12 practical engineering cases.
III. Key Topics
IV. Knowledge Points
V. Time and Location
Courses begin upon registration confirmation. Location and schedule will be coordinated by staff.
Options: Xi'an (Onsite/Online).
VI. Course Modules
Module |
Training Objectives |
Key Content |
Basic Setup of Pro/E Assembly Module |
Understand Pro/E assembly interface and master constraint application. |
1. Overview of assembly; 2. Assembly interface introduction; 3. Assembly design methodology; 4. Component placement/movement; 5. Types and application of constraints; Case 1: Ball Pump Assembly Case 2: Bearing Assembly |
Component Editing & Interference Analysis |
Master component handling, exploded views, and interference analysis. |
1. Component processing in assembly; 2. Copying, patterning, creating/modifying components; 3. Exploded views; 4. Managing assembly views; 5. Assembly clearance/interference analysis; Case 3: Jack Assembly Case 4: Ball Pump Exploded View |
Mechanism Connections & Creation |
Master Pro/E connection types and constraint methods. |
1. Rigid connection; 2. Pin connection; 3. Slider connection; 4. Cylinder connection; 5. Planar connection; 6. Ball connection; 7. Bearing connection; 8. Weld connection; 9. Slot connection; 10. 6DOF connection; Case 5: Rotating Ball Mechanism Case 6: Crank-Rocker Mechanism Case 7: Parallel Lifting Mechanism |
Mechanism Motion Simulation |
Master analysis setup and execution for various mechanisms. |
1. Introduction to Mechanism module; 2. Mechanism tree/icon display; 3. Building motion models; 4. Setting motion environments; 5. Creating mechanism analyses; 6. Playback results; 7. Servo motors; Case 8: Newton's Cradle Case 9: Nut Mechanism Simulation |
Typical Motion Mechanisms |
Simulate standard motion mechanisms. |
1. Gear connections; 2. Cam connections; 3. Belt connections; 4. 3D contact; Case 10: Cam Mechanism Simulation Case 11: Gear Mechanism Simulation Case 12: Roller Rebound Simulation |
VII. Fees
Contact:
Prof. Tian:WhatsApp:+86 15029941570 | Mailbox:540673737@qq.com
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