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POM F10-03H韩国工程塑料pom F10-03H—伟才塑胶
Sou Hu Cai Jing·2025-11-12 06:37

Core Performance of POM F10-03H - POM F10-03H is based on homopolymer formaldehyde, providing excellent mechanical properties and chemical stability, with a tensile strength of 62 MPa and a bending strength exceeding 90 MPa [2] - The material has a heat distortion temperature of 124°C and can be used continuously between -40°C and 100°C, making it suitable for applications with temperature fluctuations [2] - It exhibits good chemical stability, with a mechanical performance degradation rate of less than 5% after long-term immersion in water [2] Processing Characteristics - POM F10-03H has a melt flow rate (MFR) of 10 g/10 min at 190°C/2.16 kg, significantly higher than standard grades, enhancing production efficiency [3] - The material's shrinkage rate is stable at 1.9%-2.3%, allowing for precise size compensation in mold design, ensuring dimensional consistency within ±0.05 mm [3] - Good thermal stability during injection molding reduces the frequency of equipment cleaning and enhances production efficiency [3] Typical Application Scenarios - In the automotive industry, POM F10-03H is used for interior functional parts and small chassis components, meeting the demands for high strength, wear resistance, and temperature adaptability [5] - In electronics, it is utilized in precision components for devices like smartphones and printers, where high dimensional accuracy and insulation properties are critical [5] - The material is also essential in household appliances and mechanical transmission, providing a cost-effective solution for parts requiring durability and ease of processing [6] Usage Considerations - Proper moisture control is crucial, with recommended drying conditions of 85°C for 2-3 hours to maintain performance [7] - Precise control of injection molding parameters, including mold temperature and injection pressure, is necessary to avoid defects [7] - Clean processing environments are essential to prevent contamination that could degrade material performance [8]