
Technical Resources
Material Selection, Processing & Validation Resources
Browse practical resources for material selection, POM molding and troubleshooting, grade data, and alternative-grade validation.
Browse Technical Resources
Open the complete guide, troubleshooting, data, and FAQ directory, organized by engineering task.
Material Selection Resources
Start with the part function, failure risk, operating conditions, and required evidence before narrowing a material or grade direction.
- GuidePOM Material Selection for Molded PartsA practical POM material selection guide for comparing wear-resistant, low-friction, reinforced, conductive, antistatic, UV, and high-impact compounds.
- GuideWear / Low-Friction POM GuideA practical guide to selecting wear-resistant and low-friction POM for gears, bushings, rollers, sliders, guides, and valve moving parts.
- GuidePOM Gear Material SelectionSelect POM for plastic gears by load, fatigue, contact pair, lubrication, temperature, precision molding, and representative validation.
- GuidePA6 vs PA66 Selection GuideCompare reinforced PA6 and PA66 by conditioning state, temperature, mechanical balance, dimensional behavior, molding risk, and grade data.
- GuideReinforced PA6 / PA66 GuideSelect glass-fiber-reinforced PA6 and PA66 by fiber level, conditioning, load, orientation, warpage, molding feasibility, and part evidence.
- GuidePPA vs PA66 Selection GuideChoose PPA over PA66 only for a defined high-temperature, conditioned, dimensional, chemical, or electrical performance gap.
- GuideConductive PA6 / PA66 / PPA GuideSelect CNT or carbon-fiber PA6, PA66 and PPA by electrical method, target band, grounding, geometry, conditioning, molding, and validation.
- Technical noteApplication NotesReview modified POM by part function, failure risk, operating conditions, and the evidence needed before selecting a grade direction.
- GuideReinforcement Materials OverviewCompare glass fiber and carbon fiber directions by load path, dimensional target, electrical function, molding risk, and validation scope.
Processing & Troubleshooting
Prepare molding trials, control material condition, and diagnose dimensional or processing problems from traceable evidence.
- Technical noteProcessing GuideA practical POM injection molding guide for material handling, mold trials, shrinkage, warpage, dimensional drift, defects, and troubleshooting inputs.
- Technical notePOM Warpage TroubleshootingDiagnose POM warpage through measurement, shrinkage direction, part and mold design, packing, cooling, and validation.
- Technical notePA6 / PA66 Moisture GuideSeparate pellet drying, dry-as-molded parts, conditioning, service exposure, measurement, and validation for PA6 and PA66.
Data & Validation
Compare grade evidence, find technical data, prepare replacement trials, and confirm the documents needed for production release.
- GuideAlternative POM Grade ValidationCompare an alternative POM grade through documents, controlled molding, dimensions, function, compliance, and production-release evidence.
- Technical notePOM Wear Test BenchmarkInternal wear-test records grouped by condition, with measured results, process curves and available specimen photos.
- Data toolData / TDS SearchSearch grade data, TDS paths, guides, and technical resource references.
- DirectoryPOM Material FamiliesBrowse POM material families before opening available grade-level details.
- FAQModified POM FAQClear answers about POM vs PA, wear and friction grades, reinforced and conductive POM, TDS properties, shrinkage, warpage, and material selection guidance.
Customer Case Studies
Explore customer challenges, material choices, project validation and production outcomes.
- Application case · POM gearsETM 100P for massage-chair armrest gearsA customer needed better wear performance from the gears in a massage-chair armrest mechanism. An assembly using Taiyi Polymer ETM 100P POM gears met the customer's endurance requirement. The customer subsequently adopted the material for production and placed repeat orders.
- Automotive door systems · 20% GF POMAutomotive window regulator carrier plateEGH402H POM with 20% glass fiber and molding adjustments helped improve mounting-hole stability under heat and sustained load.
- Automotive wiper systems · 30% GF POMAutomotive wiper motor gearbox housingEGH602H POM with 30% glass fiber, revised shaft-hole geometry and gate placement helped stabilize gear center distances as the motor heated up.
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