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Effect of rubber hardness on the properties of fiber reinforced plastic composites made by the newly proposed rubber pressure molding technique

机译:橡胶硬度对新提出的橡胶压力成型技术制成的纤维增强塑料复合材料性能的影响

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摘要

The effect of rubber hardness on the properties of fiber-reinforced plastic (FRP) composites is investigated in order to know the optimum composition of rubber mold used in rubber pressure molding (RPM) technique. A matching die set was used in RPM method, where the die was made of hard metal like steel and the punch from the flexible rubber like material, natural rubber. The use of flexible rubber punch generates and applies hydrostatic pressure on the surface of FRP composites. The hardness of rubber mold was controlled by incorporating carbon black as a filler material in the matrix of natural rubber and varied from 0 to 75 phr (per hundred rubber) in steps of 15 phr. Burn test, tension test, interlaminar shear test and interiaminar fracture toughness tests were conducted on the FRP composites to measure the void content, presence of delamination, tensile strength, inter laminar shear strength and inter laminar fracture toughness. The results are compared with the FRP composites made by conventional technique to evaluate the performance of RPM technique. It is observed that the laminates produced by RPM technique with different filler content in natural rubber mold show significant improvement in mechanical properties except interlaminar shear strength.
机译:为了了解橡胶压力成型(RPM)技术中使用的橡胶模具的最佳组成,研究了橡胶硬度对纤维增强塑料(FRP)复合材料性能的影响。在RPM方法中使用了匹配的模具,其中模具是由像钢一样的硬质金属制成,而冲头是由像天然橡胶那样的柔性橡胶制成的。柔性橡胶冲头的使用会在FRP复合材料的表面产生并施加静水压力。通过将炭黑作为填充材料掺入天然橡胶的基质中来控制橡胶模具的硬度,并在15 phr的范围内从0到75 phr(每百份橡胶)变化。在FRP复合材料上进行了燃烧测试,拉伸测试,层间剪切测试和内部断裂韧性测试,以测量空隙率,分层的存在,拉伸强度,层间剪切强度和层间断裂韧性。将结果与常规技术制成的FRP复合材料进行比较,以评估RPM技术的性能。观察到,通过RPM技术生产的在天然橡胶模具中具有不同填充剂含量的层压材料显示出除了层间剪切强度以外的机械性能的显着改善。

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