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Carbon fiber/SiC composites modified SiC nanowires with improved strength and toughness

机译:碳纤维/ SiC复合材料改性的SiC纳米线具有更高的强度和韧性

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In this study, Cf/SiC composite was modified with SiC nanowires (SiCnws) grown in-situ in SiC matrix. Effects of SiCnwon bending strength and fracture toughness were investigated by comparison with conventional Cf/SiC. Results showed that SiCnwsignificantly improved both strength and fracture toughness of Cf/SiC. Compared to Cf/SiC, flexural strengths of Cf/SiC-SiCnw/PyC and Cf/SiC-SiCnwcomposites increased from 363.1 MPa to 375 MPa and 466.9 MPa, respectively. Bending strength and fracture toughness were estimated to 565 MPa and 20.30 MPa m1/2for Cf/SiC containing SiCnwat high temperature (1000 °C), respectively. These values were 13.2% and 16.1% higher than that of conventional Cf/SiC. The latter was attributed to deflection, bridging, and pull-out of SiC nanowires to cracks. Improvements in mechanical properties of modified C/SiC composites were mainly attributed to deflection and bridging of SiC nanowires on cracks and pulling out of SiC nanowires from the matrix.
机译:在这项研究中,Cf / SiC复合材料被SiC基体中原位生长的SiC纳米线(SiCnws)改性。通过与常规Cf / SiC的比较,研究了SiCnwon弯曲强度和断裂韧性的影响。结果表明,SiCn显着提高了Cf / SiC的强度和断裂韧性。与Cf / SiC相比,Cf / SiC-SiCnw / PyC和Cf / SiC-SiCnw复合材料的抗弯强度分别从363.1 MPa增加到375 MPa和466.9 MPa。对于含有SiCnwat高温(1000 C)的Cf / SiC,弯曲强度和断裂韧性分别估计为565 MPa和20.30 MPa m1 / 2。这些值比常规Cf / SiC分别高13.2%和16.1%。后者归因于SiC纳米线的挠曲,桥接和拉出至裂纹。改性C / SiC复合材料机械性能的改善主要归因于SiC纳米线在裂纹上的挠曲和桥接以及从基体中拉出SiC纳米线。

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