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Effect of fabrication methods on the ultimate strength of aluminum hull girders

机译:制作方法对铝壳梁极限强度的影响

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A three-dimensional nonlinear finite element model was developed to simulate the welding process of extruded and non-extruded aluminum tee-bar stiffened plates joined together by friction stir welding (FSW), metal inert gas (MIG) butt and MIG fillet welding. The three-dimensional residual stress and distortion fields as well as the heat affected zones (HAZ) for all three welding methods were obtained and compared. The load-shortening curves for stiffened plates and the ultimate moment capacity of a hull girder made up of the stiffened plates were analyzed. The results showed that MIG welding resulted in tensile and compressive residual stress of as much as 88% and 30% of the material yield strength, and a considerable level of distortion while residual stresses and distortions formed in the friction stir welding model were negligible. The load-shortening responses showed that extruded stiffened plates joined by FSW attained a 26% higher buckling load than the non-extruded stiffened plates joined by MIG fillet welding, which in turn resulted in a 28% higher ultimate moment capacity of the hull girder fabricated using FSW on extruded elements. The results also indicated that the presence of the residual stress and HAZ had the most significant effect on hull girders fabricated by MIG fillet welding on non-extruded plates where respective reductions of 10.5% and 7.5% in the ultimate moment capacity of the hull girders as a result of residual stresses and HAZ were observed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了三维非线性有限元模型,以模拟通过搅拌摩擦焊(FSW),金属惰性气体(MIG)对接和MIG角焊将挤压的和未挤压的铝三通三通加强板的焊接过程。获得并比较了所有三种焊接方法的三维残余应力和变形场以及热影响区(HAZ)。分析了加劲板的载荷缩短曲线和由加劲板组成的船体梁的极限弯矩能力。结果表明,MIG焊接产生的拉伸和压缩残余应力分别高达材料屈服强度的88%和30%,并且变形程度相当大,而在搅拌摩擦焊接模型中形成的残余应力和变形可以忽略不计。载荷缩短响应表明,与MIG角焊连接的非挤压刚性板相比,FSW挤压的刚性板的屈曲载荷高26%,从而使船体梁的极限弯矩承载力提高了28%。在挤压元素上使用FSW。结果还表明,残余应力和HAZ的存在对在非挤压板上用MIG角焊焊接的船体梁的影响最大,其中,船体梁的极限弯矩能力分别降低了10.5%和7.5%。观察到残余应力和热影响区。 (C)2016 Elsevier Ltd.保留所有权利。

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