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Fabrication of silicon carbide composites with carbon nanofiber addition and their fracture toughness

机译:添加碳纳米纤维的碳化硅复合材料的制备及其断裂韧性

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摘要

The authors have examined the fabrication conditions of SiC composites containing carbon nanofiber, i.e., vapor-grown carbon nanofiber (VGCF), to enhance the fracture toughness. Commercially available ultrafine SiC powder (specific surface area: 47.5 m2 g−1) was mixed with VGCF and sintering aid in the Al4C3–B4C system. Approximately 1.5 g of the mixture was uniaxially pressed at 50 MPa to obtain a compact with a diameter of 20 mm and a thickness of approximately 1.5 mm. The resulting compact was hot-pressed at 1800 °C for 1 h in Ar atmosphere under a pressure of 62 MPa. The relative density of hot-pressed SiC composite decreased from 98.0 to 96.3%, whereas the fracture toughness was enhanced from 3.8 to 5.2 MPa m1/2, as the amount of VGCF increased from 0 to 6 mass%. Furthermore, an acid treatment of VGCF was conducted to enhance its dispersibility within the SiC matrix, owing to the formation of COO− groups on the VGCF surface. As a result of this treatment, the relative density and fracture toughness of hot-pressed SiC composite with 6 mass% acid-treated VGCF addition increased to 99.0% and 5.7 MPa m1/2, respectively.
机译:作者已经检查了包含碳纳米纤维,即气相生长的碳纳米纤维(VGCF)的SiC复合材料的制造条件,以提高断裂韧性。将市售的超细SiC粉末(比表面积:47.5 m 2 g -1 )与VGCF和烧结助剂在Al 4 C中混合 3 –B 4 C系统。将约1.5g的混合物在50MPa下单轴压制以获得直径为20mm且厚度为约1.5mm的压块。将所得的压块在Ar气氛中在62MPa的压力下在1800℃下热压1h。随着VGCF含量从0质量增加到6质量,热压SiC复合材料的相对密度从98.0降低到96.3%,而断裂韧性从3.8 MPa提高到5.2 m m.sup1 / 2 。 %。此外,由于在VGCF表面形成了COO -基,对VGCF进行了酸处理以​​增强其在SiC基体中的分散性。通过该处理,添加了6质量%的酸处理的VGCF的热压SiC复合材料的相对密度和断裂韧性分别提高到99.0%和5.7MPa m 1/2

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