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Process Optimization for Compression Molding of Carbon Fiber–Reinforced Thermosetting Polymer

机译:碳纤维增强热固性聚合物压缩成型过程优化

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摘要

To enhance the quality and mechanical performance of a carbon fiber−reinforced polymer (CFRP) workpiece, this paper prepares a polyacrylonitrile (PAN)-based carbon fiber−reinforced thermosetting polymer (CFRTP) laminated board through compression molding, and carries out orthogonal tests and single-factor tests to disclose the effects of different process parameters (i.e., compression temperature, compression pressure, pressure-holding time, and cooling rate) on the mechanical performance of the CFRTP workpieces. Moreover, the process parameters of compression molding were optimized based on the test results. The research results show that: The process parameters of compression molding can be ranked as compression temperature, pressure-holding time, compression pressure, cooling rate, and mold-opening temperature, in descending order of the impact on the mechanical property of the CFRTP; the optimal process parameters for compression molding include a compression temperature of 150 °C, a pressure-holding time of 20 min, a compression pressure of 50 T, a cooling rate of 3.5 °C/min, and a mold-opening temperature of 80 °C. Under this parameter combination, the tensile strength, bending strength, and the interlaminar shear strength (ILSS) of the samples were, respectively, 785.28, 680.36, and 66.15 MPa.
机译:为了提高碳纤维增强聚合物(CFRP)工件的质量和机械性能,通过压缩成型制备聚丙烯腈(锅)基于碳纤维增强热固性聚合物(CFRTP)层压板,并进行正交试验单因素测试,以公开不同工艺参数(即压缩温度,压缩压力,压力保持时间和冷却速率)对CFRTP工件的机械性能的影响。此外,基于测试结果优化了压缩成型的过程参数。研究结果表明:压缩成型的工艺参数可以作为压缩温度,压力保持时间,压缩压力,冷却速度和开部打开温度作为CFRTP的力学性能的下降顺序排列。用于压缩成型的最佳工艺参数包括150℃,压力保持时间为20分钟的压缩温度,压缩压力为50t,冷却速度为3.5°C / min,开模温度为80 °C。在该参数组合下,样品的拉伸强度,弯曲强度和样品的层间剪切强度(ILS)分别为785.28,680.36和66.15MPa。

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