首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Predicting Distortion in Butt Welded Plates Using an Equivalent Plane Stress Representation Based on Inherent Shrinkage Volume
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Predicting Distortion in Butt Welded Plates Using an Equivalent Plane Stress Representation Based on Inherent Shrinkage Volume

机译:基于固有收缩量的等效平面应力表示法预测对接焊接板的变形

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摘要

Due to the adverse effect that distortion has on assembly fit-up and fabrication costs in welded structures, the ability to predict dimensional changes represents an important engineering concern. While distortion can be analyzed using a full three-dimensional (3D) finite element (FE) model, this often proves to be computationally expensive for medium and large structures. In comparison, a two-dimensional (2D) FE model can significantly reduce the time and effort needed to analyze distortion though such analyses often have reduced accuracy. To address these issues, a 3D plane stress model using shell meshes based on the shrinkage volume approach is proposed. By inversing the plastic shrinkage zone geometry, an eccentric loading condition and equivalent plane stress representation can be developed and used to predict distortion in butt welded plates using an isothermal model. The model was validated using deflection data from welded plates and found to provide good accuracy over the range of thicknesses considered. Results obtained from welding of a large containment tank are also presented and further confirm the utility of the method.
机译:由于变形对焊接结构的装配装配和制造成本具有不利影响,因此预测尺寸变化的能力代表了重要的工程问题。尽管可以使用完整的三维(3D)有限元(FE)模型来分析变形,但是对于中型和大型结构,这通常在计算上非常昂贵。相比之下,二维(2D)有限元模型可以显着减少分析失真所需的时间和精力,尽管此类分析通常会降低准确性。为解决这些问题,提出了一种基于壳体积的基于收缩体积方法的3D平面应力模型。通过反转塑性收缩区的几何形状,可以开发出偏心载荷条件和等效平面应力表示形式,并使用等温模型将其用于预测对接焊板的变形。使用来自焊接板的挠度数据验证了该模型,发现该模型在考虑的厚度范围内具有良好的精度。还介绍了从大型安全壳罐焊接获得的结果,进一步证实了该方法的实用性。

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