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Welding Deformation Controlling Of Aluminum-alloy Thin Plate By Two-direction Pre-stress Method

机译:双向预应力法控制铝合金薄板的焊接变形

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The two-direction pre-stress method was proposed to control welding deformation as well as hot cracking, and it was applied to 2024A1 aluminum alloys. The new method can decrease the tendency of hot cracking caused by the conventional single pre-tension during welding, especially at the starting position of the weld. In tests, the contribution supplied by transverse pre-stress for controlling welding deflection deformation was found, except for preventing cracking. The maximum residual stress was calculated by finite element simulation method under the condition of welding without pre-stress and welding with two-direction pre-stress. The results showed that the deflection deformation of weldments gradually decreased with the increasing of pre-stress value. For given pre-stress value of 0,0.5σ_s, 0.7σ_s in longitudinal direction and 0.7σ_s (longitudinal) + 0.15σ_s (transverse), the maximum deflections were 13 mm, 9 mm, 5 mm, 1.5 mm, respectively.
机译:提出了一种双向预应力控制焊接变形和热裂纹的方法,并将其应用于2024A1铝合金。该新方法可以减少在焊接期间,特别是在焊接的开始位置,由传统的单一预张力引起的热裂纹的趋势。在测试中,除了防止开裂外,还发现了横向预应力对控制焊接变形的贡献。在无预应力焊接和双向预应力焊接条件下,通过有限元模拟方法计算出最大残余应力。结果表明,随着预应力值的增加,焊件挠曲变形逐渐减小。对于给定的纵向预应力值为0,0.5σ_s,纵向为0.7σ_s和纵向为0.7σ_s+横向0.15σ_s,最大挠度分别为13 mm,9 mm,5 mm,1.5 mm。

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