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Effects of Heating Rate on Properties and Structures of 3D-Cf/SiC Composites by PIP Process

机译:加热率对PIP过程3D-CF / SIC复合材料性能和结构的影响

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The properties and structures of 3D-Cf/ SiC composites prepared by rapid precursor infiltration pyrolysis process were studied.PCS solution was infiltrated into 3D-carbon fiber perform in vacuum,then these performs were dried at room temperature and pyrolyzed with three kinds of heating rate,3 900 min,1 500 min and 1 000 min respectively.The distinction of 3D-Cf/SiC samples fabricated at three kinds of heating rate was not obvious.Bending strength of sample at 1 000 min heating rate was 762.5 MPa,and a little better than the others.Three samples at various heating rate had similar micro-graph of fracture surface and fracture toughness.The research results show that mechanics performances of Cf/SiC composites did not decrease when heating rate was properly increased.
机译:研究了通过快速前体浸润热解过程制备的3D-CF / SiC复合材料的性质和结构。将溶液渗透到3D-碳纤维中真空进行,然后将这些表演在室温下干燥并用三种加热速率热解。 ,3 900分钟,1 500分钟和1 000分钟。在三种加热速率下制造的3D-CF / SiC样品的区别并不明显。样品强度为1 000分钟的加热速率为762.5MPa,A少于其他更好。以各种加热速率的三个样品具有类似的裂缝表面和断裂韧性的微图。研究结果表明,当加热速率适当增加时,CF / SiC复合材料的力学性能不会降低。

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