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铝合金薄壁圆锥体结构的焊接变形 被引量:5

Welding distortion of thin wall cone structure of aluminum alloy
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摘要 利用实物模型试验、自动脉冲TIG焊接工艺分别研究了铝合金薄壁圆锥体结构的焊接变形及其变化规律。研究结果表明,焊接后结构的变形主要表现为沿母线的纵向挠曲变形和圆周方向椭圆度变化。采用纯氩气保护、两层两道焊接时,结构的最大挠度和椭圆度变化均小于采用氩气加氦气混合保护、一道焊接时的最大挠度值和椭圆度变化。同时采用解析方法对挠曲变形进行了计算,分析了造成两种焊接工艺挠度不同的原因,从而为下一步圆锥体薄壁结构的焊接数值模拟提供验证数据,进而为最终减小和控制结构的焊接变形提供了理论和试验依据。 The welding distortion and changing law of aluminum alloy thin wall cone were investigated by means of model test, automatic pulse tungsten inert gas welding. The results showed that the welding distortion was mainly deflection deformation and change of circumference. The maximum deflection of cone structure welded with argon shield was smaller than that welded with argon and helium mixture. The deflection was analyzed with resolving method, the influence of the welding process on deflection was proposed, and the verification data had been provided for numerical simulation of thin wall cone structure, moreover, the experimental basis had been provided for reduction and controlling of welding distortion.
出处 《焊接学报》 EI CAS CSCD 北大核心 2005年第1期21-24,共4页 Transactions of The China Welding Institution
基金 国家计委产业化前期关键技术研究项目 (计高技【1998】2077号) 清华大学 985重点项目
关键词 铝合金 薄壁圆锥体 焊接变形 脉冲TIG焊 收缩体积 Computer simulation Cones Deformation Inert gas welding Thin walled structures
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