We manufactured a precision POM (polyoxymethylene) medical test cover plate for a diagnostic equipment application. POM offers high stiffness, low friction, excellent dimensional stability, and good chemical resistance — making it a preferred material for medical test components that require precise fit and repeated usage . However, POM machining presents specific challenges: the material's high crystallinity and low thermal conductivity make it susceptible to localized heating and thermal expansion during cutting, its relatively low softening temperature requires careful heat management, and residual stresses from machining can cause post-process dimensional drift . For this cover plate, we addressed these challenges through: sharp carbide tooling with optimized rake angles to minimize cutting forces and heat generation, controlled cutting parameters — moderate speeds with consistent feed rates to prevent localized melting or smearing, staged rough-to-finish machining with stabilization periods to allow stress relaxation, and flood coolant application to maintain stable part temperature throughout cutting . POM's machinability, combined with these controlled parameters, delivered the precision flatness, smooth surface finish, and dimensional stability required for reliable test equipment operation . The result: a POM cover plate meeting medical device quality standards.
| Project Name | POM Medical Test Cover Plate |
| Key Metric | Specification |
| Dimensional Tolerance | ±0.02mm (critical sealing and interface features) |
| Flatness | ≤0.02mm (cover plate mounting surface) |
| Surface Roughness | Ra≤1.6μm (machined surfaces) |
| Material | POM (polyoxymethylene / acetal) |
| Surface Treatment | As-machined |
| Machining Process | Precision CNC milling |
CMM inspection verified dimensional accuracy (±0.02mm) and flatness (≤0.02mm) after stabilization period. Surface roughness confirmed at Ra≤1.6μm. Visual inspection verified defect-free surfaces with no tool marks, melting, or smearing.
Ideal for medical test equipment cover plates, diagnostic device housings, precision instrument covers, and medical components requiring dimensional stability and chemical resistance.