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2198和C24S異種鋁鋰合金攪拌摩擦焊接頭的顯微組織和力學(xué)性能
2198和C24S異種鋁鋰合金攪拌摩擦焊接頭的顯微組織和力學(xué)性能Microstructures and mechanical properties of friction stir welding dissimilar 2198 and C24S Al-Li alloys
對(duì)2198和C24S異種鋁鋰合金進(jìn)行攪拌摩擦焊對(duì)接試驗(yàn),分析接頭的顯微組織和力學(xué)性能。結(jié)果表明:前進(jìn)側(cè)和返回側(cè)熱影響區(qū)的板條狀組織均發(fā)生了粗化,前進(jìn)側(cè)熱力影響區(qū)的晶粒被拉長(zhǎng),返回側(cè)熱力影響區(qū)的變形晶粒周圍存在細(xì)小的再結(jié)晶晶粒,焊核區(qū)為細(xì)小的2198和C24S鋁鋰合金再結(jié)晶晶粒,且2198鋁鋰合金的再結(jié)晶晶粒更大。焊接速度在60~120 mm/min變化時(shí),2198鋁鋰合金位于前進(jìn)側(cè)的接頭抗拉強(qiáng)度更高;接頭拉伸試樣的斷裂均發(fā)生在2198鋁鋰合金的熱力影響區(qū),最大抗拉強(qiáng)度為382 MPa,達(dá)到了2198鋁鋰合金母材抗拉強(qiáng)度的82.7%;接頭的焊核區(qū)、熱力影響區(qū)和熱影響區(qū)均發(fā)生軟化,焊核區(qū)中2198鋁鋰合金的硬度比C24S鋁鋰合金的更低。
The friction stir butt welding of dissimilar 2198 and C24S Al-Li alloys was conducted. The microstructures and mechanical properties of the joints were analyzed. The results show that the lath-shaped grains in the heat affected zone (HAZ) of the advancing side (AS) and retreating side become coarsening. The grains in the thermal-mechanically affected zone of the advancing side are elongated, and some fine grains appear in the deformed grains in the thermal-mechanically affected zone of the retreating side. The welding nugget zone exhibits fine recrystallized grains of the 2198 and C24S Al-Li alloys, and the recrystallized grain size of the 2198 Al-Li alloy is larger than that of the C24S Al-Li alloy. With the welding speed increasing from 60 to 120 mm/min, the tensile strength of the joints is higher when the 2198 Al-Li alloys are located in the advancing side than that when the C24S Al-Li alloys are located in the advancing side. The joints are all fractured in the thermal-mechanically affected zone of the 2198 Al-Li alloys, and the highest tensile strength is 382 MPa, which reaches 82.7% of that of the 2198 Al-Li alloy. The welding nugget zone, thermal-mechanically affected zone and heat affected zone are all softened. Moreover, the microhardness of the 2198 Al-Li alloy is lower than that of the C24S Al-Li alloy in the welding nugget zone.
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