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The Joining Behavior of Titanium and Q235 Steel Joined by Cold Metal Transfer Joining Technology

机译:钛和Q235钢冷金属转移连接技术的连接行为

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摘要

Cold metal transfer process is applied to join titanium and Q235 steel with copper filler metal. Scanning electron microscope (SEM), energy dispersive spectrometer (EDS) analysis, micro-hardness tests, and tensile strength test were performed to investigate the joining mechanism and strength of joints. The results show that the stacking order of two base metals affected the joining modes and strength. For top Q235 steel to bottom Ti-TA2 lapped joint, there was no distinct interface reaction layer between the steel base metal and the weld metal; dispersed TiFe2 intermetalics (IMCs) IMCs between the steel base metal and the Ti base metal greatly improved the strength of joint; the tensile force of the joint could reach up to 93% that of steel-steel joint using the same welding parameters. Additionally, the joints were fractured in dimple mode at the steel base metal. For top Ti-TA2 to bottom Q235 steel lapped joint, the increasing volume fraction of Ti-Cu IMCs at the Ti-Cu weld metal interface contributed to the strength of joint degradation. The joints under tensile loading are initiated at the Ti-Cu weld metal interface between the weld metal and Ti base metal, then propagated to weld metal, finally fractured with brittle mode.
机译:采用冷金属转移工艺将钛和Q235钢与铜填充金属连接在一起。进行了扫描电子显微镜(SEM),能量色散谱仪(EDS)分析,显微硬度测试和拉伸强度测试,以研究接头的连接机理和强度。结果表明,两种贱金属的堆积顺序影响了连接方式和强度。对于顶部Q23​​5钢与底部Ti-TA2搭接接头,钢母材和焊缝金属之间没有明显的界面反应层。钢基金属和Ti基金属之间分散的TiFe2金属间化合物(IMC)IMC大大提高了接头强度。在相同焊接参数下,接头的拉力可达钢-钢接头的93%。另外,接头在钢母材处以凹窝方式断裂。对于顶部Ti-TA2至底部Q235钢搭接接头,Ti-Cu焊接金属界面处的Ti-Cu IMC体积分数的增加有助于接头的强度降低。承受拉伸载荷的接头在焊缝金属和Ti母材之间的Ti-Cu焊缝金属界面处开始,然后传播到焊缝金属,最后以脆性模式断裂。

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