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Void damage evolution of LF6 aluminum alloy welded joints under external load and thermal cycling conditions 被引量:2

Void damage evolution of LF6 aluminum alloy welded joints under external load and thermal cycling conditions
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摘要 Based on the simulated aerospace thermal cycling tests,the effect of thermal cycle on the void damage evolution mechanism of LF6 aluminum alloy welded joint was investigated.The results show that micro-voids form around the second phase particles under the thermal cycling tests.The thermal stress coupled with external stress leads to dislocations pile-up around the particles,and when the dislocation density reaches a certain degree,the stress concentration will exceed the bonding strength at the interface between particles and matrix,resulting in the formation of micro-cracks.The numerical simulation is successfully implemented with the finite element to describe the void damage evolution of the welded joint under thermal cycling conditions. Based on the simulated aerospace thermal cycling tests,the effect of thermal cycle on the void damage evolution mechanism of LF6 aluminum alloy welded joint was investigated.The results show that micro-voids form around the second phase particles under the thermal cycling tests.The thermal stress coupled with external stress leads to dislocations pile-up around the particles,and when the dislocation density reaches a certain degree,the stress concentration will exceed the bonding strength at the interface between particles and matrix,resulting in the formation of micro-cracks.The numerical simulation is successfully implemented with the finite element to describe the void damage evolution of the welded joint under thermal cycling conditions.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第10期1968-1973,共6页 中国有色金属学报(英文版)
基金 Project(90205035) supported by the National Natural Science Foundation of China
关键词 aluminum alloy welded joint thermal stress numerical simulation micro-void 损伤演化 焊接接头 循环条件 铝合金 LF6 荷载作用 热循环试验 第二相粒子
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