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Fabrication and characterization of PIP based C/SiC composites having improved mechanical properties using high modulus M40J carbon fiber as reinforcement

机译:高模量M40J碳纤维作为加固的基于水基C / SiC复合材料的制备和表征,其采用高模量M40J碳纤维作为加固

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摘要

PIP based C/SiC composites are fabricated using high modulus M40J carbon fiber. High ceramic yield polycarbosilane (PCS) was also synthesized in the laboratory and the same was used to infiltrate the fibrous preforms. The infiltrated preforms were pyrolyzed at three different temperatures viz. 1400, 1500 and 1600 degrees C and termed as set-1, set-2 and set-3. Flexural strength was determined using 3-point bend fixture and the data obtained are analyzed using Weibull distribution. Average flexural strengths were found to be 691 +/- 23 MPa, 654.6 +/- 24 MPa, and 504 31 MPa for the sets 1, 2 and 3 respectively and the corresponding Weibull moduli were found to be 27.9, 25.5 and 15.6. The composites pyrolyzed at 1400 and 1500 degrees C, have been found to exhibit extensive fiber pull-out and thus demonstrated pseudo-ductile fracture behavior. A relatively brittle fracture was observed for the composites pyrolyzed at 1600 degrees C. Area under the flexural stress and displacement curve is found to be in the ratio 1.0:0.92:0.8 for the for the sets 1, 2 and 3 respectively. The effect of the pyrolysis temperature on the mechanical properties is discussed in the light of the microstructure of the composites.
机译:使用高模量M40J碳纤维制造基于皮点的C / SiC复合材料。在实验室中还合成了高陶瓷产率聚氨基硅烷(PC),并且使用该实验室,用于渗透纤维预制件。渗透的预制件在三种不同的温度下热解。 1400,1500和1600度C并称为SET-1,SET-2和SET-3。使用3点弯曲夹具测定弯曲强度,并使用Weibull分布分析所获得的数据。发现平均弯曲强度为691 +/- 23MPa,654.6 +/- 24MPa,分别为50411MPa,分别发现了相应的微泡模数为27.9,25.5和15.6。已经发现在1400和1500摄氏度下热解的复合材料表现出广泛的纤维拉出,因此证明了伪延展性裂缝行为。观察到相对脆性的骨折对于在1600℃下热解的复合材料,发现弯曲应力和位移曲线下的面积分别为用于组1,2和3的比率1.0:0.92:0.8。鉴于复合材料的微观结构讨论了热解温度对机械性能的影响。

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