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Resin Transfer Molding (RTM)Process of a High Performance Epxoy Resin.II:Effects of Process Variables on the Physical, Static and Dynamic Mechanical Behavior

机译:高性能环氧树脂的树脂传递成型(RTM)工艺II:工艺变量对物理,静态和动态机械行为的影响

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The effects of processing variables on the mechanical behavior and the void content of one-part epoxy based glass fabric composites produced by resin transfer molding (RTM) were investiaged. The variables studied included injection pressure, injection temperature, and fabric structure. Image analysis was used to measure the void content in the composites. Variations in injection pressure and temperature were found to have a significant effect on the quality and the mechanical performance of composites. The optimized physical and mechanical performance of the composites was obtained by processing the resin at 160deg C under 392 kPa pressure. Molding of highly permeable EF420 fabric required a shorter mold filling time, but resulted in reduced flexural strength and storage modulus in the resulting composites as compared with that of the composites containing 1581 fabric.
机译:研究了工艺变量对通过树脂传递模塑(RTM)生产的单件式环氧玻璃纤维复合材料的机械性能和空隙率的影响。研究的变量包括注射压力,注射温度和织物结构。图像分析用于测量复合材料中的空隙含量。发现注射压力和温度的变化对复合材料的质量和机械性能有重大影响。复合材料的最佳物理和机械性能是通过在392 kPa压力下于160摄氏度下处理树脂而获得的。高渗透性EF420织物的成型需要较短的模具填充时间,但与包含1581织物的复合材料相比,所得复合材料的抗弯强度和储能模量降低。

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