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Mesoscale damage analysis of needle-punched carbon/carbon composite considering randomness of inherent defects

机译:考虑固有缺陷随机性的针刺碳/碳复合材料的中尺度损伤分析

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摘要

Needle-punched carbon/carbon composites (NP C/Cs) are widely used in aerospace applications thanks to their good high-temperature mechanical properties with relatively low cost. To improve their out-plane stiffness and strength, short-cut fibres are introduced into interlayers between plies using a needle-punching technology. This could result in some defects that decrease their in-plane stiffness and strength. Circle-arc beam elements and extended spring elements are proposed in this research to model mechanical performances of punched fibre bundles, isotropic pyrocarbon matrix and short-cut carbon fibre felts in NP C/Cs, respectively. Aided by this beam-spring finite element model, the impacts from features of mesoscopic defects, e.g. irregularity of distribution of local imperfection in planar fiber bundle caused by punching process, to mechanical properties of NP C/Cs are focused in this study. The ranges of bending modulus and bending strength for a NP C/C are estimated considering the randomness of these defects.
机译:针刺碳/碳复合材料(NP C / Cs)由于其良好的高温机械性能和相对较低的成本而广泛用于航空航天应用。为了提高其平面外刚度和强度,使用针刺技术将短切纤维引入层之间的中间层。这可能会导致某些缺陷,从而降低其面内刚度和强度。本研究提出了圆弧梁单元和拉伸弹簧单元,分别对NP C / Cs中的冲压纤维束,各向同性热碳基体和短切碳纤维毡的力学性能进行建模。在这种梁弹簧有限元模型的辅助下,介观缺陷特征(例如金属)的影响本研究重点研究了由冲孔过程引起的平面纤维束中局部缺陷分布的不规则性对NP C / Cs的力学性能的影响。考虑到这些缺陷的随机性,可以估算NP C / C的弯曲模量和弯曲强度范围。

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