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Microstructure and mechanical properties of 3D fine-woven punctured C/C composites with PyC/SiC/TaC interphases

机译:PyC / SiC / TaC中间相的3D细织穿刺C / C复合材料的微观结构和力学性能

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The 3D fine-woven punctured C/C-(PyC/SiC/TaC) composites,composed of PyC/SiC/TaC interphases and pyrocarbon (PyC) matrix,were synthesized by isothermal chemical vapor infiltration (ICVI) methods.The alternating layers and the structure of these composites were examined by polarized light microscopy (PLM),X-ray diffractometry (XRD) and scanning electron microscopy (SEM).It is found that the PyC matrix has rough laminar (RL) structure,the TaC layer has NaCl-type cubic structure,and the SiC layer has few wurtzite type 10H-SiC besides β-SiC structure.The effects of fiber coating and the bulk density on the tensile and flexural properties of composites along X or Y and Z direction were investigated.It is shown that fiber coated 3D woven punctured C/C composites have good tensile and flexural strength,and the maximum of flexural strength is 375 Mpa in X or Y direction at density of 1.89 g/cm3,which is about three times higher than that of samples without TaC/SiC fiber coating.The flexural strength and bending strength increase with increasing the density of the composites.The analysis of fracture surfaces reveals that fibers and fiber bundles are pulled out in composites,indicating that the composite exhibits a non-linear failure behavior through propagation and deflection of the cracks.
机译:采用等温化学气相渗透法(ICVI)合成了由PyC / SiC / TaC中间相和热碳(PyC)基体组成的3D细织穿刺C / C-(PyC / SiC / TaC)复合材料。通过偏光显微镜(PLM),X射线衍射仪(XRD)和扫描电子显微镜(SEM)对复合材料的结构进行了研究。发现PyC基体具有粗糙的层状(RL)结构,TaC层具有NaCl型立方结构,SiC层除β-SiC结构外几乎没有纤锌矿型10H-SiC。研究了纤维涂层和堆积密度对复合材料沿X或Y和Z方向的拉伸和弯曲性能的影响。结果表明,纤维涂覆的3D机织刺破C / C复合材料具有良好的拉伸和挠曲强度,密度为1.89 g / cm3时,在X或Y方向上的最大挠曲强度为375 Mpa,约为其的三倍。没有TaC / SiC纤维涂层的样品。断裂强度和弯曲强度随着复合材料密度的增加而增加。断裂表面的分析表明,纤维和纤维束在复合材料中被拉出,表明复合材料通过裂纹的传播和偏转表现出非线性破坏行为。

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