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Oxidation bonding of porous silicon carbide ceramics

机译:多孔碳化硅陶瓷的氧化结合

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A oxidation-bonding technique was successfully developed to fabricate porous SiC ceramics using the powder mixtures of SiC, Al2O3 and C. The oxidation-bonding behavior, mechanical strength, open porosity and pore-size distribution were investigated as a function of Al2O3 content as well as graphite particle size and volume fraction. The pore size and porosity were observed to be strongly dependent on graphite particle size and volume fraction. In contrast, the degree of SiC oxidation was not significantly affected by graphite particle size and volume fraction. In addition, it was found that the fracture strength of oxidation-bonded SiC ceramics at a given porosity decreases with the pore size but increases with the neck size. Due to the enhancement of neck growth by the additions of Al2O3, a high strength of 39.6 MPa was achieved at a porosity of 36.4%. Moreover, such a porous ceramic exhibited an excellent oxidation resistance and a high Weibull modulus. (C) 2002 Kluwer Academic Publishers. [References: 31]
机译:利用SiC,Al2O3和C的粉末混合物成功开发了一种氧化结合技术来制造多孔SiC陶瓷。研究了氧化结合行为,机械强度,开孔率和孔径分布与Al2O3含量的关系。作为石墨的粒径和体积分数。观察到孔尺寸和孔隙率强烈依赖于石墨颗粒尺寸和体积分数。相反,SiC的氧化程度不受石墨粒径和体积分数的影响。另外,发现在给定的孔隙率下,氧化结合的SiC陶瓷的断裂强度随着孔径的增加而减小,但是随着颈部的大小而增加。由于通过添加Al2O3促进了颈部的生长,在36.4%的孔隙率下获得了39.6 MPa的高强度。此外,这种多孔陶瓷表现出优异的抗氧化性和高的威布尔模量。 (C)2002 Kluwer学术出版社。 [参考:31]

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