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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Fabrication of SiC bodies by optimized gel-casting method
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Fabrication of SiC bodies by optimized gel-casting method

机译:优化凝胶铸造方法制备SiC体

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摘要

In this research, acrylate gel maker monomers Mathacrylamide (MAM) and Methylenebisaczylamide (MBAM) were used through a gel casting process to fabricate SiC bodies. Investigation of rheological behavior of suspensions showed that optimum amount of surfactant (Tetramethylammonium hydroxide) was equaled with 0.7 wt% of ceramic powders and ceramic powders could be added up to 37 vol% of solvent without any problems in casting. The effects of monomers content, monomers ratio and also solid loading on gelation time, bending strength of samples were investigated. Results showed that increasing the monomers content (MAM + MBAM) and ceramic solid loading led to the reduction of gelation time. Also alteration of these parameters resulted in variation of samples bending strength from similar to 6 MPa to 19 MPa, the best strength was obtained in the sample containing 35 wt% monomers with the MAM/MBAM ratio of 3 and 35 vol% SiC. Finally the samples containing different amounts of SiC were casted according to the pre-determined optimum parameters and after being dried they were sintered at 2150 degrees C for 1 h. According to the results, the highest density, Young's modulus, hardness and indentation fracture resistance were obtained in sample containing 37 vol% SiC and were equaled with 96.89%, 499.24 GPa, 27.51 GPa and 6.3 MPa.m(1/2), Respectively. Microstructural studies showed that cleavage fracture planes, crack deflection and branching were the most important mechanisms on toughness enhancement.
机译:在该研究中,通过凝胶浇铸方法使用丙烯酸酯凝胶制造商单体Math丙烯酰胺(MAM)和亚甲基异丙基苄基酰胺(MBAM)以制造SiC体。悬浮液的流变行为的研究表明,随着0.7wt%的陶瓷粉末,陶瓷粉末的陶瓷粉末和陶瓷粉末的最佳表面活性剂(四甲基氢氧化铝)也可以加入溶剂,而不会在铸造中的任何问题中加入陶瓷粉末。研究了单体含量,单体比和固体负载对凝胶化时间的影响,研究了样品的弯曲强度。结果表明,增加单体含量(MAM + MBAM)和陶瓷固体载荷导致凝胶化时间的减少。还改变这些参数的改变导致样品的变化弯曲强度与6MPa至19MPa类似,在含有35wt%单体的样品中获得最佳强度,其中MAM / MBAM比为3和35体积%SiC。最后,根据预定的最佳参数铸造含有不同量的SiC的样品,干燥后,将它们在2150℃下烧结1小时。根据结果​​,在含有37体积%SiC的样品中获得最高密度,杨氏模量,硬度和压痕断裂抗性,分别与96.89%,499.24GPa,27.51GPa和6.3mPa.m(1/2)等同。微观结构研究表明,切割裂缝,裂纹偏转和分支是韧性增强的最重要机制。

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