Heat-shrinkable tubing: What makes it tick?

R. Timmerman
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Abstract

Twenty-three flexible polyolefin heat shrinkable tubing insulation formulations were subjected to three dose levels of high energy radiation and tested for degree of crosslinking, flammability, tensile strength and elongation, and thermal stability. The effects of component concentration and types on these performance characteristics were determined. Antioxidant concentration and type largely influenced degree of crosslinking as did the sensitizer concentration, whereas stabilizer type and concentration had little effect. Tensile strength and elongation were not largely affected by formulation or radiation dose. High sensitizer concentration tended to improve flame resistance as did higher stabilizer concentrations. Stabilizer type affected flammability. Generally, increased radiation dose tended to improve flame resistance. Thermal stability was improved by changing stabilizer type and lessened by increasing sensitizer concentration or decreasing the antioxidant level.
热缩管:是什么让它滴答作响?
对23种柔性聚烯烃热缩管保温配方进行了三种剂量的高能量辐射测试,并对交联度、可燃性、拉伸强度和伸长率以及热稳定性进行了测试。确定了组分浓度和种类对这些性能特性的影响。抗氧化剂浓度和类型对交联度影响较大,敏化剂浓度对交联度影响较大,稳定剂类型和浓度对交联度影响较小。抗拉强度和伸长率不受配方或辐射剂量的影响。高敏化剂浓度倾向于提高阻燃性,高稳定剂浓度也是如此。稳定剂类型影响可燃性。一般来说,辐射剂量的增加倾向于提高阻燃性。改变稳定剂类型可提高热稳定性,增加敏化剂浓度或降低抗氧化剂水平可降低热稳定性。
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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