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首页> 外文期刊>Journal of Materials Science >Influence of polymer infiltration and pyrolysis process on mechanical strength of polycarbosilane-derived silicon carbide ceramics
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Influence of polymer infiltration and pyrolysis process on mechanical strength of polycarbosilane-derived silicon carbide ceramics

机译:聚合物渗透和热解过程对聚碳硅烷衍生碳化硅陶瓷机械强度的影响

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摘要

In this article, strength evaluation of silicon carbide (Si-C) ceramics fabricated from polycarbosilane (PCS) precursor is described. Si-C ceramics was prepared by firing a green body made of the mixture of Si-C nano-powders and a PCS solution at 1,273 K in N_2 gas for an hour. To obtain dense Si-C, the solution was infiltrated into the produced body, and then it was fired again. The polymer infiltration and pyrolysis (PIP) process was conducted up to 12 cycles. Si-C ceramics was diced to be rectangle shape measuring 1.0 mm × 3.0 mm × 0.5 mm, and was subjected to the three-point bending test for measurement of the Young's modulus and bending strength. Si-C specimens fabricated through PIP processes less than 2 cycles showed non-linear force-displacement curves like a polymer, whereas those through the processes more than 3 cycles showed linear relations and fractured in a brittle manner. The Young's modulus of 12-cycles-PIPs specimen was found to be 56 GPa on average, which was approximately 22-fold of non-PIP specimen. The bending strength was also increased with an increase in the number of PIP process. The maximum value was found to be 157 MPa. The cause of the influence of PIP process on the mechanical characteristics is discussed using a PCS-derived Si-C model.
机译:在本文中,描述了由聚碳硅烷(PCS)前体制成的碳化硅(Si-C)陶瓷的强度评估。通过将由Si-C纳米粉体和PCS溶液的混合物制成的生坯在N_2气体中以1,273 K烧制一个小时来制备Si-C陶瓷。为了获得致密的Si-C,将溶液渗入制成的物体中,然后将其再次烧制。进行聚合物渗透和热解(PIP)过程最多12个循环。将Si-C陶瓷切成1.0mm×3.0mm×0.5mm的矩形,并进行三点弯曲试验以测量杨氏模量和弯曲强度。通过PIP加工少于2个循环制成的Si-C标本显示出非线性的力-位移曲线,如聚合物,而通过3个循环以上的过程显示出线性关系,并以脆性方式断裂。发现12个循环的PIP样品的杨氏模量平均为56 GPa,约为非PIP样品的22倍。弯曲强度也随着PIP处理数量的增加而增加。发现最大值为157MPa。使用PCS衍生的Si-C模型讨论了PIP工艺对机械特性的影响的原因。

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