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首页> 外文期刊>Journal of the European Ceramic Society >Joining of ultra-refractory carbides
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Joining of ultra-refractory carbides

机译:连接超难熔碳化物

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摘要

Transient-liquid-phase (TLP) bonding enables joining at reduced temperatures relative to those required by more traditional joining routes while preserving the potential for high-temperature applications of ultrarefractory carbides. Pure ZrC, HfC and TaC ultra-high temperature ceramics (UHTCs) were joined using a multilayer Ni/Nb/Ni interlayer by executing a 30-min bonding cycle under low load (<1.3kPA) at 1400 deg C in a high-vacuum furnace. Microstructural and microchemical analyses of the resulting joints were conducted using scanning electron microscopy (SEM) and energy-dispersive spectroscopy (EDS). The SEM/EDS analysis suggests that the (Ni,Nb)-containing liquid formed during bonding wets the carbide matrices properly, resulting in well-bonded crack-free interfaces between the UHTCs and the Nb-rich interlayer. Although there were many similarities between the resulting joints, the microstructures in the interlayer-carbide transition regions also exhibited considerable diversity.
机译:相对于更传统的连接路径所要求的温度,瞬态液相(TLP)键合可以在降低的温度下进行连接,同时保留了超耐热碳化物在高温下的应用潜力。使用多层Ni / Nb / Ni中间层将纯ZrC,HfC和TaC超高温陶瓷(UHTC)连接在一起,方法是在1400摄氏度的高真空下于低负载(<1.3kPA)下执行30分钟的粘接循环炉。使用扫描电子显微镜(SEM)和能量分散光谱(EDS)对得到的接头进行了微观结构和微观化学分析。 SEM / EDS分析表明,键合过程中形成的含(Ni,Nb)液体可适当润湿碳化物基体,从而在UHTC和富Nb的中间层之间形成键合良好的无裂纹界面。尽管所得接头之间有许多相似之处,但层间碳化物过渡区的微观结构也表现出相当大的多样性。

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