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Tensile fracture behavior and strength distribution of SiCf/SiC composites with different SiBN interface thicknesses

机译:不同SiBN界面厚度的SiCf / SiC复合材料的拉伸断裂行为和强度分布

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The borosilicate nitride (SiBN) interface was firstly fabricated in SiC fibers reinforced SiC matrix (SiCf/SiC) composites by low-pressure chemical vapor infiltration (LPCVI). Tensile fracture behavior and strength distribution of SiCf/SiC composites with different SiBN thicknesses were investigated. The results showed that the tensile strength first increased and then declined with increasing interface thickness. The maximum value of tensile strength was 550.8 MPa with a 1000 nm SiBN interface. Non-brittle tensile fracture behavior of SiCf/SiC composites with a SiBN interface was demonstrated. The pull-out length and amount of fibers had a similar variation trend with increasing interface thickness. Strength distributions of SiCf/SiC composites with different interface thicknesses followed Weibull distribution with two parameters. Weibull modules of tensile strength increased first, and then decreased with increasing interface thickness. The maximum value of the Weibull module was 11.0224 when the interface thickness was 1000 nm, which indicated the highest reliability of SiCf/SiC composites. The mean value of tensile strength for SiCf/SiC composite with 1000 nm interface was 576.82 MPa obtained by the theory calculation, which was consistent with the result of experiment (550.8 MPa) very well. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:首先通过低压化学气相渗透法(LPCVI)在SiC纤维增强的SiC基体(SiCf / SiC)复合材料中制备了氮化硼硅酸盐(SiBN)界面。研究了不同SiBN厚度的SiCf / SiC复合材料的拉伸断裂行为和强度分布。结果表明,随着界面厚度的增加,抗拉强度先增大,然后减小。具有1000 nm SiBN界面的抗拉强度最大值为550.8 MPa。证明了具有SiBN界面的SiCf / SiC复合材料的非脆性拉伸断裂行为。随着界面厚度的增加,拉出长度和纤维数量具有相似的变化趋势。不同界面厚度的SiCf / SiC复合材料的强度分布遵循两个参数的Weibull分布。威布尔模块的拉伸强度首先增加,然后随着界面厚度的增加而减小。当界面厚度为1000 nm时,Weibull模块的最大值为11.0224,这表明SiCf / SiC复合材料的可靠性最高。通过理论计算得出,具有1000 nm界面的SiCf / SiC复合材料的拉伸强度平均值为576.82 MPa,与实验结果(550.8 MPa)非常吻合。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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