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Employing reactive synthesis for metal to ceramic joining for high temperature applications

机译:采用反应性合成技术将金属连接至陶瓷,以实现高温应用

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摘要

Joining of dissimilar materials allows the properties of both materials to be exploited in a device or structure. The main reasons for the incorporation of dissimilar materials are to achieve function, improve efficiency and to reduce cost. Silicon nitride is an engineering ceramic that has outstanding properties but has yet to find its full commercial potential. Silicon nitride is suitable for high temperature applications, however, its incorporation into devices or structures tends to be restricted due to a lack of suitable joining techniques. This paper presents the results of joining between the high temperature and corrosion resistant iron-chromium-aluminium alloy (Fecralloy) with silicon nitride by a nickel aluminide (NiAl) interlayer. The formation of NiAl from its constituent elements (Ni-Al compact was used) by reactive synthesis is highly exothermic and this was utilised to cause partial melting of the Fecralloy interface and reactive wetting of the silicon nitride interface. Joints with average shear strength of 94.3 MPa were fabricated under optimum processing conditions (900degreesC, 15 min, 45 MPa). Thermal cycling at 850degreesC in air showed that the joints could be used at this temperature. The primary focus of this work was on the effects of process conditions upon the microstructure and mechanical properties of the joint. The reactive synthesis of NiAl was studied using differential thermal analysis (DTA), where the effects of varied heating rate were investigated. (C) 2004 Kluwer Academic Publishers. [References: 28]
机译:异种材料的连接允许在设备或结构中利用两种材料的特性。引入异种材料的主要原因是为了实现功能,提高效率并降低成本。氮化硅是一种工程陶瓷,具有出色的性能,但尚未发现其全部商业潜力。氮化硅适用于高温应用,但是由于缺乏合适的连接技术,其掺入器件或结构的趋势受到限制。本文介绍了通过铝化镍(NiAl)中间层将高温和耐腐蚀的铁铬铝合金(Fecralloy)与氮化硅结合的结果。通过反应合成从其组成元素(使用Ni-Al压块)形成NiAl的反应是高度放热的,这被用来引起Fecralloy界面的部分熔融和氮化硅界面的反应性润湿。在最佳加工条件(900℃,15分钟,45 MPa)下制造了平均剪切强度为94.3 MPa的接头。在850摄氏度的空气中进行热循环表明该接头可在此温度下使用。这项工作的主要重点是工艺条件对接头的微观结构和机械性能的影响。使用差热分析(​​DTA)研究了NiAl的反应合成,并研究了不同加热速率的影响。 (C)2004 Kluwer学术出版社。 [参考:28]

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