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Effects of Interface Modification on Mechanical Behavior of Hi-Nicalon Fiber-Reinforced Celsian Matrix Composites

机译:界面改性对Hi-Nicalon纤维增强Celsian基复合材料力学行为的影响

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摘要

Unidirectional celsian matrix composites having approx. 42 volume percent of uncoated or BN/SiC-coated Hi-Nicalon fibers were tested in three-point bend at room temperature. The uncoated fiber-reinforced composites showed catastrophic failure with strength of 210 +/- 35 MPa and a flat fracture surface. In contrast, composites reinforced with BN/SiC-coated fibers exhibited graceful failure with extensive fiber pullout. Values of first matrix cracking stress and strain were 435 +/- 35 MPa and 0.27 +/- 0.01 %, respectively, with ultimate strength as high as 960 MPa. The elastic Young's modulus of the uncoated and BN/SiC-coated fiber-reinforced composites were measured as 184 q 4 GPa and 165 +/- 5 GPa, respectively. Fiber push-through tests and microscopic examination indicated no chemical reaction at the uncoated or coated fiber-matrix interface. The low strength of the uncoated fiber-reinforced composite is probably due to degradation of the fibers from mechanical surface damage during processing. Because both the coated and uncoated fiber reinforced composites exhibited weak interfaces, the beneficial effect of the BN-SiC dual layer is primarily the protection of fibers from mechanical damage during processing.
机译:单向celsian矩阵复合材料具有大约在室温下在三点弯曲中测试了42体积%的未涂覆或BN / SiC涂覆的Hi-Nicalon纤维。未涂覆的纤维增强复合材料表现出灾难性破坏,强度为210 +/- 35 MPa,断裂表面平坦。相比之下,用BN / SiC涂层纤维增强的复合材料在广泛的纤维拉拔下表现出优美的破坏。第一基体破裂应力和应变的值分别为435 +/- 35 MPa和0.27 +/- 0.01%,极限强度高达960 MPa。未涂覆的和BN / SiC涂覆的纤维增强复合材料的弹性杨氏模量分别测量为184 q 4 GPa和165 +/- 5 GPa。纤维穿通测试和显微镜检查表明,未涂层或涂层的纤维-基质界面没有化学反应。未涂覆的纤维增强复合材料的低强度可能是由于在加工过程中由于机械表面损坏引起的纤维降解。由于涂覆和未涂覆的纤维增强复合材料均显示出较弱的界面,因此BN-SiC双层的有益作用主要是保护纤维免受加工过程中的机械损伤。

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