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Damage Evolution and Fracture Behavior of C/SiC Minicomposites with Different Interphases under Uniaxial Tensile Load

机译:单轴拉伸载荷下不同互相不同闭合性C / SIC微型复合材料的损伤演化与断裂行为

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摘要

In this paper, the tensile damage and fracture behavior of carbon fiber reinforced silicon carbide (C/SiC) minicomposites with single- and multiple-layer interphases are investigated. The effect of the interphase on the tensile damage and fracture behavior of C/SiC minicomposites is analyzed. The evolution of matrix cracking under the tensile load of the C/SiC minicomposite with a notch is observed using the digital image correlation (DIC) method. The damage evolution process of the C/SiC minicomposite can be divided into four main stages, namely, (1) an elastic response coupled with partial re-opening of thermal microcracking; (2) multiple matrix microcracking perpendicular to the applied loading; (3) crack opening and related fiber/matrix, bundle/matrix, and inter-bundle debonding; and (4) progressive transfer of the load to the fibers and gradual fiber failure until composite failure/fracture. On the fracture surface, a large number of fibers pulling out of the samples with both single-layer and multi-layer interphases can be clearly observed.
机译:本文研究了具有单层和多层间晶体碳纤维增强碳化硅(C / SiC)小型复合材料的拉伸损伤和断裂行为。分析了对C / SiC小型复合材料的抗拉损伤和断裂行为的效果进行了分析。使用数字图像相关(DIC)方法观察到C / SiC Minichope的拉伸荷载下的基质裂纹的演变。 C / SiC Minichope的损伤进化过程可分为四个主要阶段,即(1)弹性响应,与热裂化的部分重新打开相结合; (2)垂直于施加的多基质微裂纹; (3)裂缝开口和相关纤维/矩阵,束/矩阵和捆绑间剥离; (4)逐渐转移纤维的载荷和逐渐纤维失效,直至复合失效/骨折。在裂缝表面上,可以清楚地观察到具有单层和多层界性的样品中拉出样品的大量纤维。

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