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首页> 外文期刊>Strength of Materials >Study of Residual Stresses in Welded Joints of Heat-Resistant ML10 Magnesium Alloy After Electrodynamic Treatment
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Study of Residual Stresses in Welded Joints of Heat-Resistant ML10 Magnesium Alloy After Electrodynamic Treatment

机译:电热处理后耐热ML10镁合金焊接接头残余应力的研究

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摘要

Airframes from ML10 magnesium alloy are repaired using argon-arc welding with nonconsumable electrodes. The residual stresses occurring in the repair welds deteriorate the operating characteristics of restored parts. The presence of residual stresses necessitates postweld heat treatment, which increases the prime cost of repair operations. This implies the option of applying the alternative methods of weld stress state adjustment, including the electrodynamic treatment, which make it possible to reduce the level of residual stresses in welded joints and, thus, the cost of repair welding operations for airframes from this alloy. The results of the performed experiments show that electrodynamic treatment allows one to reduce the initial level of stresses in welded joints (which reaches 120 MPa) to 30 MPa and to form, at definite geometric characteristics of specimens, compression stress fields in the treatment zone, whose values reach -50 MPa. It is demonstrated that the optimal distance between the treatment zones is 5 mm, which ensures granted overlapping of electrodynamic action zones and, hence, the maximum effectiveness of electrodynamic treatment.
机译:ML10镁合金的机身通过氩弧焊和不消耗性电极进行维修。修补焊缝中产生的残余应力会破坏修复零件的工作特性。残余应力的存在需要进行焊后热处理,这增加了维修工作的主要成本。这意味着可以选择采用其他替代方法来进行焊接应力状态调整,包括电动力学处理,从而可以降低焊接接头中的残余应力水平,从而降低了用这种合金修复机身的焊接操作的成本。进行的实验结果表明,电动力处理可以将焊接接头的初始应力水平(达到120 MPa)降低至30 MPa,并在标本的明确几何特征下形成处理区域的压缩应力场,其值达到-50 MPa。结果表明,治疗区域之间的最佳距离为5 mm,这确保了电动作用区域的合理重叠,从而确保了电动治疗的最大有效性。

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