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Ti/Al无针搅拌摩擦搭接点焊接头组织特征 被引量:3
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作者 刘浩 陈玉华 章文滔 《航空学报》 EI CAS CSCD 北大核心 2022年第2期132-144,共13页
采用无针搅拌摩擦搭接点焊对Ti6Al4V钛合金和2A12铝合金异种金属进行焊接,焊后低熔点铝合金受摩擦热影响发生熔化,而高熔点钛合金在焊接过程中始终保持固态,同时与处于液态的铝合金相互作用,最终Ti/Al界面形成熔钎焊接头且接头拉伸剪切... 采用无针搅拌摩擦搭接点焊对Ti6Al4V钛合金和2A12铝合金异种金属进行焊接,焊后低熔点铝合金受摩擦热影响发生熔化,而高熔点钛合金在焊接过程中始终保持固态,同时与处于液态的铝合金相互作用,最终Ti/Al界面形成熔钎焊接头且接头拉伸剪切力达19.20 kN。研究了Ti/Al熔钎焊接头钛合金和铝合金的组织变化以及连接界面的特征形貌。结果表明由于摩擦热及搅拌头下压的影响,焊点处钛合金和铝合金组织发生明显变化。钛侧主要形成热力影响区和母材区;铝侧形成熔核区、热影响区和母材区3个区域,热影响区和熔核区的晶粒尺寸相对母材区变粗大,其组织经历了受热长大、部分熔化到完全熔化3个过程。在搭接接头界面处形成均匀致密且微薄的金属间化合物层,主要成分为TiAl_(3);接头界面区组织变化明显,中间部位有均匀的TiAl_(3)界面层,随着向接头两边延伸界面层逐渐消失且Cu元素聚集在边缘。相对其他Ti/Al搭接点焊的焊接方法,无针搅拌摩擦搭接点焊获得的接头抗拉伸剪切力得到了明显的提升。 展开更多
关键词 钛合金 铝合金 搅拌摩擦搭接点焊 拉伸剪切力 金属间化合物
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Corrosion evaluation of friction stir welded lap joints of AA6061-T6 aluminum alloy 被引量:5
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作者 Farhad GHARAVI Khamirul A.MATORI +2 位作者 Robiah YUNUS Norinsan K.OTHMAN Firouz FADAEIFARD 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第3期684-696,共13页
Corrosion behavior of friction stir lap welded AA6061-T6 aluminum alloy was investigated by immersion tests in sodium chloride + hydrogen peroxide solution. Electrochemical measurement by cyclic potentiodynamic polari... Corrosion behavior of friction stir lap welded AA6061-T6 aluminum alloy was investigated by immersion tests in sodium chloride + hydrogen peroxide solution. Electrochemical measurement by cyclic potentiodynamic polarization, scanning electron microscopy, and energy dispersive spectroscopy were employed to characterize corrosion morphology and to realize corrosion mechanism of weld regions as opposed to the parent alloy. The microstructure and shear strength of welded joint were fully investigated. The results indicate that, compared with the parent alloy, the weld regions are susceptible to intergranular and pitting attacks in the test solution during immersion time. The obtained results of lap shear testing disclose that tensile shear strength of the welds is 128 MPa which is more than 60% of the strength of parent alloy in lap shear testing. Electrochemical results show that the protection potentials of the WNZ and HAZ regions are more negative than the pitting potential. This means that the WNZ and HAZ regions do not show more tendencies to pitting corrosion. Corrosion resistance of parent alloy is higher than that for the weldments, and the lowest corrosion resistance is related to the heat affected zone. The pitting attacks originate from the edge of intermetallic particles as the cathode compared with the Al matrix due to their high self-corrosion potential. It is supposed that by increasing intermetallic particle distributed throughout the matrix of weld regions, the galvanic corrosion couples are increased, and hence decrease the corrosion resistance of weld regions. 展开更多
关键词 friction stir welding lap joints AA6061 alloy pitting corrosion welding process intermetallic particles
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