首页> 外文会议>Proceedings of the International Wire amp; Cable Symposium (IWCS~TM), Inc. >Chemical Resistance of Polymeric Compounds to Replace PVC used for Personal Electronics Wiring
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Chemical Resistance of Polymeric Compounds to Replace PVC used for Personal Electronics Wiring

机译:高分子化合物的耐化学性代替用于个人电子线路的PVC

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Concerns about potential human health and environmental impacts of compounds based on polyvinyl chloride (PVC) exist due to the chemistry that is involved in the production of PVC resin as well as the presence of additive chemicals found in finished PVC products. Issues surrounding these concerns extend not only to PVC as it is manufactured and produced, but to finished PVC products as they are used, the disposal of PVC as solid waste in landfills or as fuel in waste incinerators, accidental or deliberate burning of PVC, recycling and use of PVC-containing materials. Such concerns have raised the demand for halogen-free flame retardant (HFFR) compounds for PVC replacement due to continually growing pressure to move away from PVC and its additives. For example, Apple Computer has publicly stated their desire to phase out polymers such as PVC and Brominated flame retardants (BFRs) which have helped to reduce the risk of fire in their devices, in order to support their campaign of "A Greener Apple,"by moving away from the use of halogenated compounds. Other companies in line to do so include HP, Dell and Lenovo. They have also publicly said that they plan to eliminate the use of PVC and BFRs in their products over time. The primary objective of this study was to benchmark the chemical resistance of common household materials on a non-halogenated, but flame-retardant and flexible material designed to replace PVC. There have been a number of studies in the literature, where impact of various chemicals, solvents, and other common fluids has been studied on different polymeric systems. However, in the present case, the primary application requires good chemical resistance of the intended jacket (and potentially wire insulation) material to various common household chemicals such as mustard, ketchup, soda, and several others which are frequently used by consumers near their personal electronics (cell phone charger, power cord for personal computers, cords for music player, etc). Retention of mechanical properties such as tensile strength and elongation at break after prolonged exposure in a controlled humid environment will be used to evaluate chemical resistance performance of the non-PVC material. Flexibility and surface aesthetics after exposure will also be discussed.
机译:由于聚氯乙烯树脂生产中涉及的化学反应以及成品聚氯乙烯产品中存在添加剂化学物质,人们担心基于聚氯乙烯(PVC)的化合物对人体健康和环境的潜在影响。围绕这些问题的问题不仅涉及生产和生产PVC的问题,还涉及使用PVC的最终产品,将PVC作为垃圾填埋场中的固体废物或废物焚化炉中的燃料进行处置,PVC的意外或故意燃烧,回收利用。和使用含PVC的材料。由于从聚氯乙烯及其添加剂中分离出来的压力不断增加,因此人们对聚氯乙烯替代用无卤阻燃剂(HFFR)的需求增加了。例如,苹果计算机公司公开表示他们希望逐步淘汰PVC和溴化阻燃剂(BFR)等聚合物,这些聚合物有助于降低设备着火的风险,以支持其“绿色苹果”运动。不再使用卤化化合物。其他这样做的公司包括惠普,戴尔和联想。他们还公开表示,计划随着时间的流逝,在其产品中不再使用PVC和BFR。这项研究的主要目的是在设计用于代替PVC的非卤化但阻燃且柔软的材料上确定普通家用材料的耐化学性。文献中有许多研究,其中研究了各种化学药品,溶剂和其他常见流体对不同聚合物体系的影响。但是,在当前情况下,主要应用要求预期的护套(和潜在的电线绝缘材料)对各种常见的家用化学品(例如芥末,番茄酱,苏打水以及其他一些消费者经常在其个人附近使用的化学品)具有良好的耐化学性。电子产品(手机充电器,个人计算机电源线,音乐播放器电源线等)。在受控的潮湿环境中长时间暴露后保留的机械性能(例如拉伸强度和断裂伸长率)将用于评估非PVC材料的耐化学药品性能。曝光后的柔韧性和表面美观也将进行讨论。

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