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Laser-induced crosslinking of ultra-low-and high-density polyethylene

机译:激光诱导的超低密度和高密度聚乙烯的交联

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摘要

The use of laser radiation to initiate the crosslinking process in ultra low-density polyethylene (ULDPE) and high-density polyethylene (HDPE) was evaluated. The process was found to be most effective for pulsed laser irradiation when the polymer was traced with a photoinitiator: 4-chlorobenzophenone (CBP). The gel content measurements proved that crosslinking took place in all the irradiated samples. The degree of crosslinking was measured for different values of irradiation energy, temperature, photoinitiator concentration and the nature and type of crosslinking agents. The effects of all these parameters on the degree of crosslinking and the consequent effects on mechanical properties of the polymers were analyzed. Also found in the present. study is the fact that a better efficiency of crosslinking was achieved at longer laser irradiation wavelength. The ultimate tensile stress and elongation at fracture were measured for all cross-linked samples and compared with those of the controlled ones.
机译:评估了使用激光辐射在超低密度聚乙烯(ULDPE)和高密度聚乙烯(HDPE)中引发交联过程。当用光引发剂:4-氯二苯甲酮(CBP)追踪聚合物时,发现该方法对于脉冲激光辐照最有效。凝胶含量的测量证明在所有辐照的样品中都发生了交联。对于辐照能量,温度,光引发剂浓度以及交联剂的性质和类型的不同值,测量了交联度。分析了所有这些参数对交联度的影响以及对聚合物力学性能的影响。在目前也可以找到。研究的事实是,在更长的激光照射波长下可以获得更好的交联效率。测量所有交联样品的极限拉伸应力和断裂伸长率,并与对照样品进行比较。

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