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Next Generation in Hydrolysis Resistance Polyester (PBT) for Electrical Connectors and Components

机译:下一代在水解抗性聚酯(PBT)中用于电连接器和部件

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Thermoplastic polyesters are widely used in the automotive industry and are the material of choice for many types of electrical and electronic components due to their excellent balance of mechanical and electrical properties. Under certain conditions including elevated temperatures and the presence of high humidity, thermoplastic polyesters such as polybutylene terephthalate (PBT) have the potential to suffer hydrolytic attack. Recognizing the need for standardization, USCAR USCAR (The United States Council for Automotive Research) established component level testing guidelines specific to connectors. In response, many companies developed HR (hydrolysis resistant) PBT resins to help manufactures meet these requirements. As with many additive technologies in plastics, there are trade-offs. In this case, hydrolysis resistance was often improved at the expense of melt viscosity stability and high flow during the injection molding process. In addition to improved hydrolysis resistance, there is an emerging need for PBT with improved electrical performance for use in automotive connectors for electric hybrid vehicles. Such connectors must have outstanding color retention with heat aging (125C/1000 hours, especially orange "High Voltage" and yellow "safety" connectors), along with maximum CTI (600+ V) performance per OEM requirements. DuPont has developed a new PBT Hydrolysis resistance technology to offer outstanding melt stability during molding. The process flexibility of the new Crastin HR HFS allows more stable manufacturing processes and improvements in quality versus the existing PBT HR grades on the market. This unique combination allows a wider processing window, including the use of hot-runners and regrind, without sacrificing the hydrolysis resistance.
机译:热塑性聚酯广泛应用于汽车行业,是由于其优异的机械和电气性能的电气和电子元件的选择材料。在一定条件下,包括升高的温度和高湿度的存在,热塑性聚酯如聚对苯二甲酸丁二醇酯(PBT)具有潜力的水解发作。认识到标准化的需求,USCAR USCAR(美国汽车研究理事会)建立了组成部分测试指南,具体到连接器。在回应中,许多公司开发了人力资源(耐水解)PBT树脂,以帮助制造满足这些要求。与塑料中的许多添加剂技术一样,有权衡。在这种情况下,在注射成型过程中,通常以熔体粘度稳定性和高流动的牺牲率通常改善耐水解性。除了改进的耐水解性外,还需要采用改进的电气连接器用于电动混合动力车辆的汽车连接器的PBT的新兴需求。这种连接器必须具有出色的颜色保留和热老化(125℃/ 1000小时,尤其是橙色“高电压”和黄色“安全性”连接器),以及每个OEM要求的最大CTI(600+ V)性能。杜邦开发了一种新的PBT水解电阻技术,可在成型过程中提供出色的熔体稳定性。新的CRASTIN HR HFS的过程灵活性允许更稳定的制造工艺和质量的改善与现有的PBT人力资源等级。这种独特的组合允许更广泛的加工窗口,包括使用热跑器和重新研磨,而不会牺牲耐水解性。

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