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The development of glass fiber reinforced polystyrene for pultrusion. II: Effect of processing parameters for optimizing the process

机译:用于拉挤成型的玻璃纤维增​​强聚苯乙烯的开发。 II:工艺参数对优化工艺的影响

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This paper presents a novel process developed to manufacture polystyrene (PS) pultruded composites. The effects of the processing parameters on the mechanical properties (tensile strength, flexural strength, flexural modulus, etc.) of the glass fiber reinforced PS composites by pultrusion have been studied. The processing parameters investigated include die temperature, pulling rate tin-line speed), postcure temperature and time, filler type and content, and glass fiber content. The optimum die temperature was determined from DSC diagrams, molecular weight, and mechanical properties tests. It was found that the mechanical properties increased with increasing die temperature and glass fiber content, and with decreasing pulling rate. The optimum die temperature, pulling rate, and glass fiber content were determined to be 160-200 degrees C, 20-60 cm/min and 50-60 vol%, respectively. The mechanical properties reached a maximum value at 10 phr kaolin, and then decreased. However, the properties decreased with increasing talc content. The mechanical properties increase at a suitable postcure temperature and time. Furthermore, the properties that decreased as a result of composite degradation after long postcure time are discussed. [References: 20]
机译:本文介绍了一种新的制造聚苯乙烯(PS)拉挤复合材料的工艺。研究了工艺参数对拉挤成型玻璃纤维增​​强聚苯乙烯复合材料力学性能(拉伸强度,弯曲强度,弯曲模量等)的影响。研究的加工参数包括模头温度,锡线提拉速率,后固化温度和时间,填料类型和含量以及玻璃纤维含量。最佳模具温度由DSC图,分子量和机械性能测试确定。发现机械性能随着模头温度和玻璃纤维含量的增加以及提拉速率的降低而增加。最佳模头温度,提拉速率和玻璃纤维含量分别确定为160-200摄氏度,20-60厘米/分钟和50-60体积%。力学性能在10 phr高岭土达到最大值,然后下降。但是,随着滑石含量的增加,性能下降。在合适的后固化温度和时间下,机械性能会提高。此外,讨论了由于长时间后固化后复合材料降解而降低的性能。 [参考:20]

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