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多层316L不锈钢板真空扩散连接研究
引用本文:刘向前, 郭小辉, 赵彦营, 李秋龙, 张明辉, 徐哲, 李培跃, 李彦默. 多层316L不锈钢板真空扩散连接研究[J]. 材料开发与应用, 2021, 36(1): 65-70.
作者姓名:刘向前  郭小辉  赵彦营  李秋龙  张明辉  徐哲  李培跃  李彦默
作者单位:中国船舶重工集团公司第七二五研究所, 河南 洛阳 471023
基金项目:装发部装备预研领域基金(61400040402)。
摘    要:实现了150层316L不锈钢板的真空扩散连接,通过拉伸测试和金相观察,得到了接头力学性能和界面组织特征。结果表明,高温退火后母材的屈服强度和拉伸强度明显下降,断后伸长率显著提高。相较于高温退火后母材的力学性能,垂直试样的屈服强度高,但拉伸强度和断后伸长率低;平行试样屈服强度高,拉伸强度与母材相当,断后伸长率低。室温和高温垂直/水平拉伸试样均呈现出典型塑性断裂特征。接头顶部、中部和底部等各区域扩散连接质量良好,界面组织特征相似。

关 键 词:316L不锈钢   真空扩散连接   力学性能   界面组织
收稿时间:2020-02-24

Research on Vacuum Diffusion Bonding of Multi-layer 316L Stainless Steel Plates
LIU Xiangqian, GUO Xiaohui, ZHAO Yanying, LI Qiulong, ZHANG Minghui, XU Zhe, LI Peiyue, LI Yanmo. Research on Vacuum Diffusion Bonding of Multi-layer 316L Stainless Steel Plates[J]. Development and Application of Materials, 2021, 36(1): 65-70.
Authors:LIU Xiangqian  GUO Xiaohui  ZHAO Yanying  LI Qiulong  ZHANG Minghui  XU Zhe  LI Peiyue  LI Yanmo
Affiliation:Luoyang Ship Material Research Institute, Luoyang 471023, China
Abstract:One hundred and fifty layers of 316L stainless steel plates were successfully joined via the vacuum diffusion bonding.The mechanical properties and interfacial microstructure of joints were studied by tensile tests and metallographic observation.The results indicated that the yield strength and tensile strength of the base material(BM)processed by the same diffusion bonding parameters decreased significantly and the elongation increased obviously.Compared with those of the processed BM,the yield strength of the joint perpendicular to the boding interface increased,and the tensile strength and elongation decreased.The yield strength of the joint parallel to the boding interface was higher than that of the BM,the tensile strength equivalent to that of the BM,and the elongation lower than that of the BM.All the tensile samples including room-temperature and elevated samples exhibited typical ductile fracture.Each zone including the top,middle and bottom of the joint showed good bonding appearance,and the interfacial microstructures at different zones were similar.
Keywords:316L stainless steel  vacuum diffusion bonding  mechanical properties  interfacial microstructure
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