金属热处理2024,Vol.49Issue(10) :92-95.DOI:10.13251/j.issn.0254-6051.2024.10.014

真空搭接钎焊TC4钛合金接头的组织及力学性能

Microstructure and mechanical properties of vacuum lap brazed joint of TC4 titanium alloy

郑超 胡生双 王浩军 赵虎 张颖云 欧阳德来
金属热处理2024,Vol.49Issue(10) :92-95.DOI:10.13251/j.issn.0254-6051.2024.10.014

真空搭接钎焊TC4钛合金接头的组织及力学性能

Microstructure and mechanical properties of vacuum lap brazed joint of TC4 titanium alloy

郑超 1胡生双 1王浩军 1赵虎 1张颖云 1欧阳德来2
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作者信息

  • 1. 中航西安飞机工业集团股份有限公司,陕西西安 710089
  • 2. 南昌航空大学材料科学与工程学院,江西南昌 330063
  • 折叠

摘要

采用B-Ti57CuZrNi钎料真空搭接钎焊TC4钛合金板材,研究了钎焊温度和时间对焊接接头组织和力学性能的影响.结果表明,钎焊接头的微观组织主要由B-Ti57CuZrNi钎料凝固组织及扩散过渡层针状组织组成.随焊接温度升高,焊缝和针状组织层宽度增加,凝固组织减少.随焊接时间增加,焊缝凝固组织宽度降低,焊缝宽度和针状组织层宽度均增加.钎焊温度低于930℃时会导致室温拉伸性能降低,910℃时的最大断裂力仅为5.1~5.5 kN.钎焊时间高于45 min时会导致室温拉伸性能降低.从钎焊接头力学性能考虑,钎焊温度930~950 ℃、钎焊时间不超过45 min为宜.

Abstract

TC4 titanium alloy plate was vacuum lap brazed with B-Ti57CuZrNi solder,and the effects of brazing temperature and time on microstructure and mechanical properties of the brazed joint were studied.The results show that the microstructure of brazed joint is mainly composed of solidification microstructure of B-Ti57CuZrNi solder and needle-like microstructure of diffusion transition layer.With the increase of brazing temperature,the width of weld and needle-like layer increases,and the width of solidification microstructure decreases.With the increase of brazing time,the width of solidification microstructure decreases,and the width of weld and needle-like layer increases.When the brazing temperature below 930 ℃,the room temperature tensile properties will decrease as the maximum breaking force at 910℃is only 5.1-5.5 kN.When the brazing time is longer than 45 min,the room temperature tensile properties will also decrease.Considering the mechanical properties of the brazed joint,the brazing temperature of 930-950℃and brazing time of less than 45 min are suitable.

关键词

B-Ti57CuZrNi钎料/TC4钛合金/真空搭接钎焊

Key words

B-Ti57CuZrNi solder/TC4 titanium alloy/vacuum lap brazing

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出版年

2024
金属热处理
北京机电研究所 中国机械工程学会热处理学会 中国热处理行业协会

金属热处理

CSTPCDCSCD北大核心
影响因子:0.546
ISSN:0254-6051
参考文献量13
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