Cracking of Poly(butylene terephthalate) Automotive Sleeves

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Abstract

A number of plastic sleeves used in an automotive application cracked after assembly but prior to installation into the mating components. The sleeves were specified to be injection molded from a 20% glass-fiber-reinforced polybutylene terephthalate (PBT) resin. After molding, electronic components are inserted into the sleeves, and the assembly is filled with a potting compound. Investigation of the cracked parts and some reference parts available for testing included visual inspection, micro-FTIR in the ATR mode, and analysis using DSC. Subtle spectrum differences suggested degradation of the failed part material, and the thermograms supported this. The conclusion was that the failed sleeves had cracked due to embrittlement associated with severe degradation and the corresponding molecular weight reduction. The reduction in molecular weight significantly reduced the mechanical properties of the sleeves. The cause of the degradation was not evident, but the likely source appears to be the molding operation and exposure to elevated temperature for an extended period of time.
聚对苯二甲酸丁二酯汽车套筒的开裂
在汽车应用中使用的许多塑料套筒在装配后但在安装到配套部件之前破裂。套管采用20%玻璃纤维增强聚对苯二甲酸丁二酯(PBT)树脂注塑成型。成型后,将电子元件插入套筒,并用灌封化合物填充组装件。对裂纹部件和一些可用于测试的参考部件的研究包括目视检查、ATR模式下的显微ftir和DSC分析。细微的光谱差异表明了失效部分材料的降解,热像图支持了这一点。结论是,失效的滑套由于脆化而破裂,伴随着严重的降解和相应的分子量降低。分子量的减少显著降低了套管的机械性能。降解的原因并不明显,但可能的来源似乎是成型操作和暴露在高温下一段时间的延长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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