For mass-produced parts, from a cost perspective, it is recommended to use directly formed parts. During the development and design phase, the performance of finished products made of different grades of materials can be referred to. 类型 材质 直径 厚度 公差范围 垫片 CWC-PI-2 5.80 1.50 ±0.05 5.80 2.00 ±0.05 4.50 2.00 ±0.05 5.80 1.10 ±0.05 4.00 2.00 ±0.05 4.00 3.50 ±0.05 7.00 2.00 ±0.05 8.00 2.00 ±0.05 10.00 2.00 ±0.05 4.50 2.00 ±0.05
Vindler developed by Chong Wei ® Polyimide has a wide range of applications in fields such as aircraft, aerospace, military, automotive, semiconductor, and machinery, utilizing unique molding processes. Polyimide parts have a series of characteristics that can be applied to harsh working conditions that other materials cannot withstand.
English name: Polyimide, abbreviated as PI. Polyimide is one of the organic polymer materials with the best comprehensive performance, with a high temperature resistance of over 400 ℃ and a long-term use temperature range of -240 ℃ to 300 ℃. It has no obvious melting point and high insulation performance.
English name: Polyimide, abbreviated as PI. Polyimide is one of the organic polymer materials with the best comprehensive performance, with a high temperature resistance of over 400 ℃ and a long-term use temperature range of -240 ℃ to 300 ℃. It has no obvious melting point and high insulation performance.
Vindler produced by Jiangsu Chongwei ® Polyimide insulation cap can effectively address issues such as high temperature and sticking during injection molding production. Polyimide has a high temperature resistance of over 400 ℃ and a long-term use temperature range of -240 ℃ to 300 ℃. It has no obvious melting point and high insulation performance.
PTFE material (chemical name polytetrafluoroethylene, commonly known as Teflon) is a semi crystalline fluorinated plastic with many unique properties. It has very high thermal stability and chemical resistance, as well as a high melting point (-200 to+260 ℃, short-term up to 300 ℃). In addition, PTFE products have excellent sliding performance, excellent electrical resistivity, and non stick surface. However, compared to other plastics, this material has lower mechanical strength and higher shear density. PTFE plastic can be modified by adding glass fiber, carbon, or bronze to improve its mechanical properties. Due to its structural characteristics, polytetrafluoroethylene is usually molded by compression molding and then machined using cutting/processing tools.
PTFE material (chemical name polytetrafluoroethylene, commonly known as Teflon) is a semi crystalline fluorinated plastic with many unique properties. It has very high thermal stability and chemical resistance, as well as a high melting point (-200 to+260 ℃, short-term up to 300 ℃). In addition, PTFE products have excellent sliding performance, excellent electrical resistivity, and non stick surface. However, compared to other plastics, this material has lower mechanical strength and higher shear density. PTFE plastic can be modified by adding glass fiber, carbon, or bronze to improve its mechanical properties. Due to its structural characteristics, polytetrafluoroethylene is usually molded by compression molding and then machined using cutting/processing tools.