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Interfacial microstructure and shear strength of TC4 alloy joints vacuum brazed with Ti-Zr-Ni-Cu filler metal

机译:Ti-Zr-Ni-Cu钎料真空钎焊TC4合金接头的界面组织和剪切强度

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摘要

Ti-6Al-4V alloy was successfully vacuum brazed with a commercial Ti-37.5Zr-10Ni-15Cu (wt.%) filler metal. The effect of brazing temperature and time on the microstructure and shear strength of the brazed joints were investigated. When the brazing temperature was 905 ℃ for 10 min, the typical interfacial microstructure of the brazed joint were a single layer of α-Ti with a high concentration of Ti, α-Ti, (Ti, Zr)_2(Cu, Ni) intermetallic compound and eutectoid microstructure. Increasing the brazing temperature and time are beneficial to eliminate the (Ti, Zr)_2(Cu, Ni) intermetallic compound that degrades the properties in the brazed joint. The shear strength of the brazed joint increases first and then decreases with brazing temperature, and increases with the extended holding time. The maximum shear strength of the brazed joint is 635.77 MPa at a brazing temperature of 920 ℃ for 30 min due to the high content of columnar α-Ti. Extending the brazing time is obviously beneficial to increasing the strength. The microstructure and shear strength of the brazed joint are highly dependent on brazing temperature and time.
机译:Ti-6Al-4V合金已成功与商用Ti-37.5Zr-10Ni-15Cu(wt。%)钎料进行真空钎焊。研究了钎焊温度和时间对钎焊接头组织和剪切强度的影响。当钎焊温度为905℃10 min时,钎焊接头的典型界面微观结构是单层的α-Ti,其中含有高浓度的Ti,α-Ti,(Ti,Zr)_2(Cu,Ni)金属间化合物复合和共析微观结构。增加钎焊温度和时间有利于消除会降低钎焊接头性能的(Ti,Zr)_2(Cu,Ni)金属间化合物。钎焊接头的剪切强度先增加,然后随钎焊温度降低,然后随着保温时间的延长而增加。由于柱状α-Ti含量高,在920℃的钎焊温度下30分钟钎焊接头的最大剪切强度为635.77 MPa。延长钎焊时间显然有利于提高强度。钎焊接头的微观结构和剪切强度高度依赖于钎焊温度和时间。

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