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The physical and thermal properties of modified rotational molding grade silane cross-linked polyethylene compound

机译:改性滚塑级硅烷交联聚乙烯化合物的物理和热性能

摘要

This study is aimed at investigating the physical and thermal properties of the modified rotational molding grade cross-linked polyethylene compound with respect to process ability. Rotational molding grade High Density Polyethylene (HDPE) was blended at various compositions with HDPE and Low Density Polyethylene (LDPE) using twin screw extruder. The melt index of the blends was studied according to ASTM D 1238. The blended compositions were chemically cross-linked with various amount of silane cross-linking agent using two roll-mill. Water curing was then undertaken at 100°C in water bath for 4 and 8 hours. Gel content was measured according to ASTM D 2765 to determine the degree of cross-linking. For thermal analysis, only samples crosslinked with 2.0 phr silane cross-linking agent were investigated on the Differential Scanning Calorimetry (DSC) according to ASTM D 3417. The thermal stability test of the silane Crosslinkable Polyethylene (XLPE) was performed by Thermogravimetric Analyzer (TGA) according to ASTM D 3850. Results on melt index (MI) indicated that the rotational molding grade HDPE blended with HDPE showed higher MI compared to that with LDPE thus improved process ability. The density of rotational molding grade HDPE with HDPE was slightly increased whereas that blended with LDPE was slightly decreased. Samples blended with HDPE, melting temperature, Tm, barely changed and degree of crystallinity, Xc, decreased with compositions. Samples with LDPE Tm and Xc decreased with compositions thus improved process ability. As the silane concentrations increased, the gel content after curing was also increased but independent of compositions. Longer curing time resulted in higher gel content. Thermal stability of the crosslinked HDPE was higher than the uncross-linked HDPE, thus silane cross-linking help to stabilize the blends.
机译:这项研究旨在研究改性滚塑成型级交联聚乙烯化合物在加工性能方面的物理和热性能。使用双螺杆挤出机将滚塑等级的高密度聚乙烯(HDPE)与HDPE和低密度聚乙烯(LDPE)混合在一起。根据ASTM D 1238研究共混物的熔体指数。使用两个辊磨机将共混的组合物与各种量的硅烷交联剂化学交联。然后在水浴中于100°C进行水固化4和8小时。根据ASTM D 2765测量凝胶含量以确定交联度。对于热分析,仅根据ASTM D 3417在差示扫描量热法(DSC)上研究了与2.0 phr硅烷交联剂交联的样品。通过热重分析仪(TGA)对硅烷可交联聚乙烯(XLPE)进行热稳定性测试熔体指数(MI)的结果表明,与HDPE混合的滚塑级HDPE与LDPE相比具有更高的MI,从而提高了加工能力。带有HDPE的滚塑级HDPE的密度略有增加,而与LDPE混合的密度则略有下降。与HDPE混合的样品,熔融温度Tm几乎没有变化,结晶度Xc随着组成的降低而降低。 LDPE Tm和Xc的样品随组成的增加而降低,从而提高了处理能力。随着硅烷浓度的增加,固化后的凝胶含量也增加,但与组成无关。更长的固化时间导致更高的凝胶含量。交联的HDPE的热稳定性高于未交联的HDPE,因此硅烷交联有助于稳定共混物。

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