首页> 外文会议>Annual technical conference of the Society of Plastics Engineers >THE ENVIRONMENTAL STRESS CRACKING RESISTANCE OFPOLY- CARBONATE AS AN RESULT OF PROCESSING CONDITIONS AND INNER PROPERTIES
【24h】

THE ENVIRONMENTAL STRESS CRACKING RESISTANCE OFPOLY- CARBONATE AS AN RESULT OF PROCESSING CONDITIONS AND INNER PROPERTIES

机译:加工条件和内部性能导致聚碳酸酯的环境应力开裂性

获取原文
获取外文期刊封面目录资料

摘要

Environmental stress cracking (ESC) is the most common failure reason of plastic parts during their use. There are many factors that influence the resistance of plastic products that are affected by a combination of a mechanical load and a liquid medium e.g. the type and extent of the mechanical load, the application time of the load and the surrounding temperature.Thismay lead to environmental stress cracking. The influence of the processing conditions e.g. of the injection molding process has not been investigated yet. For this reason there are several tests carried out at the IKV. Test specimens are injection molded with different parameters for melt temperature, mold temperature and injection rate. These parametervariations cause variable inner properties of the molded parts, for example residual stresses and molecular orientations. Investigations show that the resistance against environmental stress cracking of specimens with different inner properties differs in a wide range. Lower values for melt temperature and mold temperature lead to a higher durability. The higher value is about twice as high as the lower value. Lower temperatures correlate with higher molecular orientations in the surface layer of the parts and higher residual stresses. So there is an interrelationship between inner properties and the environmental stress cracking resistance of injection molded parts made of polycarbonate. The results of the investigations are discussed in-depth.
机译:环境应力开裂(ESC)是塑料零件在使用过程中最常见的故障原因。有许多因素影响受机械负荷和液体介质的组合影响的塑料制品的电阻。机械负荷的类型和程度,负载的施加时间和周围温度。这导致环境应力开裂。加工条件的影响例如。注射成型过程尚未研究。因此,在IKV上进行了几次测试。试样是用不同参数注塑的用于熔融温度,模具温度和注射速率。这些参数化导致模塑部件的可变内部性质,例如残留应力和分子取向。调查表明,具有不同内部性质的标本对环境应力破裂的阻力在宽范围内不同。熔体温度和模具温度的较低值导致更高的耐久性。较高的值大约是较低值的两倍。较低的温度与部件表面层中的较高分子取向相关,较高的残余应力。因此,内部性能与由聚碳酸酯制成的注塑部件的环境应力开裂性之间存在相互关系。深入讨论调查结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号