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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of joining temperature and bonding time on evolution of interfacial microstructure and brazing properties for 4J29/Ag-27Cu-4Ga/4J29 brazed joint
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Effect of joining temperature and bonding time on evolution of interfacial microstructure and brazing properties for 4J29/Ag-27Cu-4Ga/4J29 brazed joint

机译:连接温度和键合时间对4J29 / AG-27CU-4GA / 4J29钎焊接头界面微观结构和钎焊性能的演化的影响

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摘要

As a new type of vacuum filler metal, the effect of heating temperature and holding time on the interfacial microstructure evolution and brazing properties of 4J29 kovar alloy (Fe-29Ni-17Co)/Ag-27Cu-4Ga filler/4J29 kovar alloy brazed joint was observed. The typical interfacial microstructure corresponding to joint brazed at 900 degrees C/10 min could be divided into three different types of regions including 4J29 substrate (gamma phase)/Diffusion zone (Fe (s.$) + Ag (s.s) + Cu(s.s))/residual filler metal region (Ag (s.s)+ Cu(s.s)). Block-shaped beta-Cu solid solution (s.s) extensively scatter in brazing alloy and played a large part in dispersion reinforcement. Owing to Cu and Ga elements diffuse to the interface between the substrate and the filler metal, beta-Cu (s.s) layers generated at brazing interfaces and intensified brazing interface. The shear strength of joint increased from 830 degrees C to 870 degrees/10 min and 5min to 10 min/870 degrees C due to the interfacial reinforcement effect of beta-Cu(s.s) layers. The shear strength decreased from 900 degrees C to 960 degrees C/10 min and 10 min-25 min/870 degrees because of weakened dispersion reinforcement of block-shaped beta-Cu (s.s) phases. The brazed joints obtained a maximum shear strength of 339.6 MPa at optimal brazing parameters.
机译:作为一种新型的真空填充金属,加热温度和保持时间对4J29 KOVAR合金(Fe-29Ni-17Co)/ Ag-27Cu-4Ga填料/ 4J29 Kovar合金钎焊接头的界面微观结构演化和钎焊性能的影响观察到的。对应于900摄氏度的接头的典型界面微观结构可以分为三种不同类型的区域,包括4J29衬底(伽马相)/扩散区(FE(S. $)+ AG(SS)+ Cu(SS) )/残留填料金属区域(Ag(SS)+ Cu(SS))。块状的β-Cu固溶体(S.)在钎焊合金中散布,并在分散钢筋中发挥了很大的作用。由于Cu和Ga元件扩散到基板和填充金属之间的界面,在钎焊界面处产生的β-Cu(S.)层和强化钎焊界面。由于β-Cu(S.S)层的界面增强作用,关节的剪切强度从830℃升至870度/ 10分钟和5分钟至10分钟/ 870℃。由于块状β-Cu(S.S)相的弱化,剪切强度从900℃至960摄氏度和10 min-25 min / 870度降低。钎焊接头在最佳钎焊参数下获得339.6MPa的最大剪切强度。

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