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Monotonic and Cyclic Loading/Unloading Tensile Behavior of 3D Needle-Punched C/SiC Ceramic-Matrix Composites

机译:3D针刺C / SiC陶瓷 - 基质复合材料的单调和循环加载/卸载拉伸行为

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摘要

In this paper, monotonic and cyclic loading/unloading tensile behavior of four different 3D needle-punched C/SiC composites are investigated. Under tensile loading, multiple micro parameters of tensile tangent modulus, tensile strength, and fracture strain are used to characterize tensile damage and fracture behavior. Under cyclic loading/unloading, multiple damage micro parameters of unloading residual strain, tensile peak strain, hysteresis loops width, hysteresis loops area, unloading and reloading inverse tangent modulus (ITM) are used to describe the tensile damage evolution. After tensile fracture, fracture surfaces were observed under a scanning electron microscope (SEM). Damage of matrix cracking, interface debonding, fibers fracture and pullout in different plies is observed. Relationships between composite tensile mechanical behavior, damage parameters, and micro damage mechanisms are established. When the fiber volume fraction along the loading direction increases, the composite initial tangent modulus, tensile strength and fracture strain increase, and the unloading residual strain, peak strain, hysteresis width and hysteresis area decrease. For Types 1–4 3D needle-punched C/SiC composite, the fiber volume lies in the range of 25.6–32.8%, the composite initial tangent modulus was in the range of 161.4–220.4 GPa, the composite tensile strength was in the range of 64.4–112.3 MPa, and the composite fracture strain was in the range of 0.16–0.25%.
机译:在本文中,研究了四种不同的3D针刺C / SiC复合材料的单调和循环载荷/卸载拉伸行为。在拉伸载荷下,使用拉伸切线模量,拉伸强度和断裂菌株的多个微观参数来表征拉伸损伤和断裂行为。在循环载荷/卸载下,多次损伤卸载残留应变的微观参数,拉伸峰应变,滞后回路宽度,滞后环区域,卸载和重新加载逆正切模量(ITM)来描述拉伸损伤的进化。在拉伸裂缝之后,在扫描电子显微镜(SEM)下观察断裂表面。观察到基质破裂,界面剥离,纤维断裂和不同层中的损伤。建立了复合拉伸力学行为,损伤参数和微损伤机制之间的关系。当沿着装载方向的纤维体积分数增加时,复合初始切线模量,拉伸强度和断裂应变增加,并且卸载残余应变,峰应变,滞后宽度和滞后区域的减小。对于1-4型3D针刺C / SIC复合材料,纤维体积在于25.6-32.8%,复合初始正切模量在161.4-220.4GPa的范围内,复合拉伸强度在范围内在64.4-112.3MPa,复合骨折菌株的范围为0.16-0.25%。

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