We manufactured a precision black POM elastic expansion bushing for an automotive fastening system application. This component features multiple split slots and sector openings designed to provide controlled elastic deformation for clamping — presenting significant machining challenges: multi-slot stress-induced deformation, long slot and sector opening dimensional consistency, flange step-to-cylinder coaxiality control, and reliable spring-back elastic performance.
POM (polyoxymethylene) offers excellent stiffness, fatigue resistance, and low friction for automotive components , but its susceptibility to stress relaxation and thermal expansion makes Precision machining difficult — particularly for slotted elastic structures where internal stress release causes distortion .
We implemented a staged stress-relief machining protocol: roughing with generous allowance, followed by thermal stabilization in warm water to accelerate stress relaxation , then final finishing. Multi-slot features were machined sequentially to balance stress release, with sector openings held to dimensional consistency through controlled toolpath strategies. Flange and cylinder features were completed in single-setup machining to maintain coaxiality. Post-machining, bushing geometry was verified after full stabilization to confirm spring-back performance — ensuring elastic recovery within specification for automotive assembly.
| Project Name | Black POM Elastic Expansion Bushing |
| Key Metric | Specification |
| Dimensional Tolerance | ±0.02mm (critical mating features) |
| Slot/Sector Dimensional Consistency | As specified (multi-slot array) |
| Flange-to-Cylinder Coaxiality | ≤0.015mm |
| Material | POM (black, unfilled) |
| Surface Treatment | As-machined |
| Machining Process | Precision CNC milling |
CMM inspection verified multi-slot dimensional consistency, flange-to-cylinder coaxiality (≤0.015mm), and overall dimensional accuracy (±0.02mm). Thermal stabilization and temperature-controlled measurement ensured dimensional accuracy reflected stable, service-ready geometry. Spring-back testing validated elastic recovery performance for automotive assembly.
Ideal for automotive elastic expansion bushings, vibration-damping fasteners, clamping components, and precision slotted POM parts requiring controlled deformation performance.
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