Three-Jaw ID-Expanding Chuck Study
A mechanical study of an ID-expanding three-jaw chuck and associated jaw deflection/manufacturing considerations.
A SolidWorks VBA generator for a fixed-cone, sliding-sleeve expanding mandrel concept built as separate revolved bodies.
Explore the code, workflow and required setup.
ENGINEERING VALUE
Demonstrates automation applied directly to fixture concept development, with limitations called out before manufacture.
Engineering concept illustration.
01 / THE PROBLEM
An ID workholding concept needed a repeatable parametric prototype layout and explicit motion/reference features.
02 / CONSTRAINTS
03 / ENGINEERING APPROACH
Generate each axisymmetric body independently, retain clear design parameters, and add reference geometry that communicates motion and travel intent.
Separate revolved bodies; Fixed cone and sliding sleeve architecture; Travel reference sketch; Custom properties; Body-count verification.
04 / DESIGN & IMPLEMENTATION
Version 2.3 explicitly selects each named revolve sketch when creating the turned-body geometry.
05 / VALIDATION
The macro supports conceptual geometry generation. SolidWorks regeneration checks, sleeve-slot design, hardware selection, stress analysis and manufacturing validation are separate steps.
06 / OUTCOME
Demonstrates automation applied directly to fixture concept development, with limitations called out before manufacture.
THE ENGINEERING PRINCIPLE
A useful workholding design balances location, support, clamping, access and distortion. Documenting these decisions gives manufacturing and quality teams a basis for reviewing the setup.
How would you verify location, contact and repeatability before production release?
LET’S BUILD SOMETHING THAT WORKS
Considering a role in mechanical design, manufacturing methods,
fixture design, or estimation? Let’s connect.