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首页> 外文期刊>Journal of the European Ceramic Society >An engineering ceramic-used high-temperature-resistant inorganic phosphate-based adhesive self-reinforced by in-situ growth of mullite whiskers
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An engineering ceramic-used high-temperature-resistant inorganic phosphate-based adhesive self-reinforced by in-situ growth of mullite whiskers

机译:通过莫来石晶须原位生长的工程陶瓷用过的高温无机磷酸酯粘合剂自增强

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摘要

Mullite whiskers were successfully in-situ synthesized in phosphate-based adhesive by taking Si and Al(OH)(3) as reaction sources and AlF3 as the catalytic initiator. After calcination at 1300 degrees C, both strength and toughness of whisker-growth adhesive got greatly improved, which were increased by 75% and 156%, respectively. The bonding strength was enhanced to 23.8 MPa, which was close to some hot preceramic polymer-based adhesives. An approximate yield stage appeared on its corresponding loading-curve, showing unprecedented toughness and high damage capacity. In addition, the residual rate of bonding strength still maintained 63% after 20 thermal cycles (room temperature-1300 degrees C).
机译:通过服用Si和Al(OH)(3)作为反应源和AlF 3作为催化引发剂,在基于磷酸盐的粘合剂中成功地原位地原位。 在1300摄氏度下煅烧后,晶须 - 生长粘合剂的强度和韧性均得到大大提高,分别增加了75%和156%。 将粘合强度提高至23.8MPa,其接近一些热型聚合物基粘合剂。 其相应的负载曲线上出现近似的产量阶段,显示出前所未有的韧性和高损伤能力。 此外,在20个热循环(室温-1300℃)后,粘合强度的残余速率仍保持63%。

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