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Damage and toughening mechanisms of carbon fibers reinforced carbon matrix composites

机译:碳纤维增强碳基复合材料的损伤和增韧机制

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摘要

Static mechanical responses of two-dimensionally and three-dimensionally reinforced Carbon/Carbon composites, 2D- and 3D-C/Cs, were compared. Mechanical properties were examined in the present study include tensile, compressive, shear stress-strain, S-S, relations and fracture behavior on the basis of compact tension tests. Compared with 2D-C/Cs, the 3D-C/Cs were shown to possess similar tensile S-S relation, intensively nonlinear shear S-S curves and far notch insensitivity and higher fracture resistance. The shear and fracture resistance differences suggested to be derived from weak fiber/matrix interface, intra-bundle damage through the rich matrix regions and weak interfacial bonding between fiber bundles in 3D-C/Cs. These weak interface characteristics are brought by high value of plane residual stresses caused by three-dimensional fiber constraint of 3D-C/Cs due to mismatch of thermal expansion during the processing.
机译:比较了二维和三维增强碳/碳复合材料,2D-和3D-C / Cs的静态机械响应。在本研究中检测机械性能包括拉伸,压缩,剪切应变,S-S,关系和断裂行为,基于紧凑的张力试验。与2D-C / CS相比,3D-C / CS被示出具有相似的拉伸S-S关系,强烈的非线性剪切S-S曲线和远凹口不敏感性和更高的裂缝性。剪切和断裂抗性差异建议源于弱纤维/基质界面,通过富基质区域的束束损伤,3D-C / Cs中纤维束之间的弱界面键合。由于在加工过程中的热膨胀不匹配,由三维光纤约束引起的三维光纤约束引起的平面残余应力的高值引起了这些弱界面特性。

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