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B-Ti57CuZrNi钎料对接钎焊TC4钛合金接头的组织和性能
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作者 王浩军 胡生双 +4 位作者 肖君 张颖 张颖云 高婷婷 欧阳德来 《金属热处理》 CAS CSCD 北大核心 2023年第7期148-152,共5页
采用B-Ti57CuZrNi钎料对TC4钛合金进行了对接钎焊,研究了B-Ti57CuZrNi钎料在TC4钛合金表面的润湿性和钎焊工艺参数对TC4钛合金钎焊接头微观组织和力学性能的影响。结果表明,B-Ti57CuZrNi钎料在TC4钛合金表面铺展良好,形成了有效的冶金... 采用B-Ti57CuZrNi钎料对TC4钛合金进行了对接钎焊,研究了B-Ti57CuZrNi钎料在TC4钛合金表面的润湿性和钎焊工艺参数对TC4钛合金钎焊接头微观组织和力学性能的影响。结果表明,B-Ti57CuZrNi钎料在TC4钛合金表面铺展良好,形成了有效的冶金结合。随钎焊温度和保温时间的增加,钎缝整体宽度变宽,向焊缝中心生长的针状α相变多变长。焊接温度低且保温时间短时,接头组织存在大块富Cu、Ni白色铸造组织。钎焊温度为930℃、钎焊时间为15 min时,接头室温抗拉强度低,易脆断于焊缝,而钎焊时间低于30 min时的室温断后伸长率较低。高钎焊温度(>960℃)和长保温时间(>45 min)对钎焊接头400℃抗拉强度和断后伸长率均不利。从获得钎焊接头优良的室温和400℃拉伸性能来考虑,宜选取钎焊温度为950℃,保温时间为30 min。 展开更多
关键词 B-Ti57CuZrNi钎料 TC4钛合金 对焊钎焊 力学性能
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Wettability, microstructure and properties of 6061 aluminum alloy/304 stainless steel butt joint achieved by laser-metal inert-gas hybrid welding-brazing 被引量:7
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作者 Jun-yu XUE Yuan-xing LI +1 位作者 Hui CHEN Zong-tao ZHU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第10期1938-1946,共9页
Laser-metal inert-gas(MIG)hybrid welding-brazing was applied to the butt joint of 6061-T6 aluminum alloy and 304 stainless steel.The microstructure and mechanical properties of the joint were studied.An excellent join... Laser-metal inert-gas(MIG)hybrid welding-brazing was applied to the butt joint of 6061-T6 aluminum alloy and 304 stainless steel.The microstructure and mechanical properties of the joint were studied.An excellent joint-section shape was achieved from good wettability on both sides of the stainless steel.Scanning electron microscopy,energy-dispersive spectroscopy and X-ray diffractometry indicated an intermetallic compound(IMC)layer at the 6061-T6/304 interface.The IMC thickness was controlled to be^2μm,which was attributed to the advantage of the laser-MIG hybrid method.Fe3Al dominated in the IMC layer at the interface between the stainless steel and the back reinforcement.The IMC layer in the remaining regions consisted mainly of Fe4Al13.A thinner IMC layer and better wettability on both sides of the stainless steel were obtained,because of the optimized energy distribution from a combination of a laser beam with a MIG arc.The average tensile strength of the joint with reinforcement using laser-MIG hybrid process was improved to be 174 MPa(60%of the 6061-T6 tensile strength),which was significantly higher than that of the joint by traditional MIG process. 展开更多
关键词 WELDING-BRAZING laser-metal inert-gas hybrid welding butt joint microstructure
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