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Joining of SiO2-BN ceramic to Nb using a CNT-reinforced brazing alloy

机译:使用CNT增强的钎焊合金将SiO2-BN陶瓷连接到Nb

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摘要

Brazing SiO2-BN ceramics with Nb are often associated with the problems of high residual stress caused by the difference in the thermal expansion coefficients and poor mechanical properties under high temperature. To overcome these problems, here we report a new type of carbon nanotube (CNT)-reinforced TiNi brazing alloy via an "in situ growth" method by PECVD. The CNT/TiNi brazing alloy has very homogeneously dispersed CNTs within the TiNi brazing alloy, produced by in situ growth of CNTs on TiH2 and Ni powders mixed evenly into the CNT/TiH2 powders. It can be applied in the brazing of SiO2-BN and Nb. Results show that the addition of CNTs into the TiNi brazing alloy is very beneficial for the dissolution and diffusion of Nb in the brazed joint, because it can promote more TiNi-(Nb, Ti) eutectics which emerge in most of the brazing seam. Furthermore, the average shear strength of the brazed joint at room temperature is raised from 49 to 85 MPa with 1.5 vol% CNTs added into the TiNi brazing alloy. In particular, at 800 degrees C the brazed joint still has a very high shear strength of 51 MPa, about 1.7 times stronger than that of the TiNi brazing alloy. These results suggest that the CNTs played a key role in reducing the residual stress and reinforcing the mechanical properties (at both room and high temperature) of the brazed joint. It provides a way for the development of CNT-reinforced brazing alloys.
机译:用Nb钎焊SiO2-BN陶瓷通常会伴随着由热膨胀系数差异引起的高残余应力和高温下较差的机械性能等问题。为了克服这些问题,在这里我们通过PECVD的“原位生长”方法报告了一种新型的碳纳米管(CNT)增强的TiNi钎焊合金。 CNT / TiNi钎焊合金在TiNi钎焊合金中具有非常均匀分散的CNT,这是通过在TiH2上原位生长CNT和将Ni粉均匀混合到CNT / TiH2粉末中而产生的。可用于SiO2-BN和Nb的钎焊。结果表明,在TiNi钎焊合金中添加CNTs对于Nb在钎焊接头中的溶解和扩散非常有利,因为它可以促进更多的TiNi-(Nb,Ti)共晶,这些共晶出现在大多数钎焊缝中。此外,在室温下,在TiNi钎料中添加了1.5%(体积)的CNT,钎焊接头的平均剪切强度从49 MPa提高到85 MPa。特别是,在800摄氏度时,钎焊接头仍具有51 MPa的非常高的剪切强度,比TiNi钎焊合金的剪切强度高约1.7倍。这些结果表明,CNT在减少钎焊接头的残余应力和增强机械性能(在室温和高温下)中起着关键作用。它提供了开发CNT增强钎焊合金的方法。

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