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A study on an efficient prediction of welding deformation for T-joint laser welding of sandwich panel PART I : Proposal of a heat source model

机译:夹芯板T型接头激光焊接有效变形预测的研究第一部分:热源模型的建议

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ABSTRACT The use of I-Core sandwich panel has increased in cruise ship deck structure since it can provide similar bending strength with conventional stiffened plate while keeping lighter weight and lower web height. However, due to its thin plate thickness, i.e. about 4~6 mm at most, it is assembled by high power CO 2 laser welding to minimize the welding deformation. This research proposes a volumetric heat source model for T-joint of the I-Core sandwich panel and a method to use shell element model for a thermal elasto-plastic analysis to predict welding deformation. This paper, Part I, focuses on the heat source model. A circular cone type heat source model is newly suggested in heat transfer analysis to realize similar melting zone with that observed in experiment. An additional suggestion is made to consider negative defocus, which is commonly applied in T-joint laser welding since it can provide deeper penetration than zero defocus. The proposed heat source is also verified through 3D thermal elasto-plastic analysis to compare welding deformation with experimental results. A parametric study for different welding speeds, defocus values, and welding powers is performed to investigate the effect on the melting zone and welding deformation. In Part II, focuses on the proposed method to employ shell element model to predict welding deformation in thermal elasto-plastic analysis instead of solid element model.
机译:摘要I-Core夹芯板的使用增加了游轮甲板的结构,因为它可以提供与传统加劲板相似的弯曲强度,同时又可以保持重量更轻,腹板高度更低。然而,由于其薄的板厚度,即最大约4〜6mm,它通过高功率CO 2激光焊接组装以最小化焊接变形。该研究提出了一种用于I型芯夹芯板T形接头的体积热源模型,以及一种使用壳单元模型进行热弹塑性分析以预测焊接变形的方法。本文第一部分着重于热源模型。在传热分析中新提出了一种圆锥型热源模型,以实现与实验中观察到的相似的熔化区。还建议考虑负散焦,该散焦通常用于T型接头激光焊接,因为它可以提供比零散焦更深的穿透力。还通过3D热弹塑性分析对拟议的热源进行了验证,以将焊接变形与实验结果进行比较。对不同的焊接速度,散焦值和焊接功率进行了参数研究,以研究其对熔化区和焊接变形的影响。在第二部分中,着重于所提出的方法,该方法采用壳单元模型来预测热弹塑性分析中的焊接变形,而不是使用实体元素模型。

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