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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Microstructural evolution of Si3N4/Ti6Al4V joints brazed with nano-Si3N4 reinforced AgCuTi composite filler
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Microstructural evolution of Si3N4/Ti6Al4V joints brazed with nano-Si3N4 reinforced AgCuTi composite filler

机译:用纳米Si3N4增强Agcuti复合填料钎焊Si3N4 / Ti6Al4V关节的微观结构演化

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摘要

A novel nano-Si3N4 particle reinforced AgCuTi composite filler (AgCuTic) was used to braze Ti6Al4V and Si3N4 ceramic in the study and brazing cycles that peak at 880 degrees C for 0-20 min. Effects of holding time on interfacial microstructure and mechanical property, were studied by scanning electron microscopy, energy dispersive spectrometer, transmission electron microscopy, and universal testing machine. TiN and Ti5Si3 were identified as the main product of the reaction between Si3N4 and Ti. The interfacial microstructure evolved considerably with joining time, eventually leading to a high degree of inhomogeneity across the length of the joint, and the maximal shear strength of 78.3 MPa was obtained when the joint was brazed at 880 degrees C for 10 min. A limited number of Si3N4/Si3N4 and Ti6A14V/Ti6A14V joints using AgCuTic with different content of Ti particles were also studied to clarify the influences of diffusion and dissolution behaviors of element Ti on interfacial microstructure. In terms of characterizing the interfacial phases, efforts were made to understand the microstructural evolution mechanism of Si3N4/Ti6A14V brazed joints. (C) 2017 Elsevier Ltd. All rights reserved.
机译:新型纳米Si3N4颗粒增强的Agcuti复合填料(Acccutic)用于在研究中钎焊Ti6Al4V和Si3N4陶瓷,钎脱循环在880℃下达到0-20分钟。通过扫描电子显微镜,能量分散光谱仪,透射电子显微镜和通用试验机研究了保持时间对界面微观结构和力学性能的影响。锡和Ti5SI3被鉴定为Si3N4和Ti之间的反应的主要产物。接合时间随着接合的长度而导致高度的不均匀性,在接头以880℃下钎焊10分钟时,最终在接头的长度上产生高度的不均匀性,最终导致高度的不均匀性。还研究了有限数量的Si3N4 / Si3N4和Ti6a14V / Ti6a14V与不同含量的Ti颗粒含量的Si3N4V / Ti6a14V接头,以阐明元素Ti的扩散和溶解行为对界面微观结构的影响。就表征界面阶段而言,努力了解Si3N4 / Ti6a14V钎焊接头的微观结构演化机制。 (c)2017 Elsevier Ltd.保留所有权利。

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