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首页> 外文期刊>Journal of the European Ceramic Society >Thermo - mechanical properties of SPS produced self-healing thermal barrier coatings containing pure and alloyed MoSi2 particles
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Thermo - mechanical properties of SPS produced self-healing thermal barrier coatings containing pure and alloyed MoSi2 particles

机译:SPS的热机械性能产生含有纯和合金MOSI2颗粒的自愈热阻挡涂层

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摘要

Yttria - partially stabilised zirconia (YPSZ) MoSi2 composites have been designed to prolong the lifetime of the matrix by self - healing cracks during thermal cycling. The healing reaction at high temperatures is based on the decomposition of MoSi2, leading to a volumetrically expanding reaction product, which seals the crack. In this work, coefficient of thermal expansion (CTE) and the fracture toughness of composites containing MoSi2 particles, produced by spark plasma sintering (SPS) have been compared to conventional YPSZ. The CTE mismatch between YPSZ and MoSi2 was found to be small, implying that thermally induced mismatch stresses will be small and the composites have a similar CTE to conventional YPSZ. Fracture toughness was found not to be affected by the particles and showed similar values to unreinforced YPSZ. Cracks introduced by indentation have been shown neither to prefer, or avoid, the particles suggesting that such a composite system is capable of autonomously activating the self - healing reaction.
机译:YTTRIA - 部分稳定的氧化锆(YPSZ)MOSI2复合材料设计用于在热循环期间通过自愈合裂缝延长基质的寿命。高温下的愈合反应基于MOSI2的分解,导致体积膨胀的反应产物,其密封裂缝。在这项工作中,将通过火花等离子体烧结(SPS)产生的热膨胀系数(CTE)和复合材料的骨折韧性与常规的YPSZ进行比较。发现YPSZ和MOSI2之间的CTE不匹配是小的,暗示热诱导的不匹配应力小,并且复合材料具有与传统的YPSZ类似的CTE。发现断裂韧性不会受到颗粒的影响,并且显示出类似的值为未粘合的YPSZ。通过压痕引入的裂缝既不愿意何种愿意或避免,颗粒表明这种复合体系能够自主激活自愈反应。

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