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首页> 外文期刊>Journal of Materials Processing Technology >Numerical and experimental study of nugget size growth in resistance spot welding of austenitic stainless steels
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Numerical and experimental study of nugget size growth in resistance spot welding of austenitic stainless steels

机译:奥氏体不锈钢电阻点焊中熔核尺寸增长的数值和实验研究

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摘要

A 2D axisymmetric electro-thermo-mechanical finite element (FE) model is developed to study the effect of welding time and current intensity on nugget size in resistance spot welding process of AISI type 304L austenitic stainless steel sheets using ANSYS commercial software package. In order to improve the accuracy, temperature-dependent properties of materials are taken into account during the simulation. The diameter and thickness of computed weld nuggets are compared with experimental results. The FE predicted weld nugget growth and nugget size agree well with experimental results. The effects of welding time and current intensity on nugget growth are also studied. Generally, increasing welding time and current is accompanied by an increase in the fusion zone size with a decreasing slope. However if expulsion occurs, nugget size reduces due to melt spattering. Except for an initial nugget formation stage, welding time has minor effect on nugget size in comparison with welding current.
机译:建立了二维轴对称电热机械有限元(FE)模型,以研究使用ANSYS商业软件包在AISI 304L奥氏体不锈钢薄板电阻点焊过程中焊接时间和电流强度对熔核尺寸的影响。为了提高精度,在模拟过程中考虑了材料的温度相关特性。将计算得到的熔核的直径和厚度与实验结果进行了比较。有限元预测焊缝熔核的增长和熔核大小与实验结果吻合良好。还研究了焊接时间和电流强度对熔核生长的影响。通常,增加焊接时间和电流伴随着熔化区尺寸的增加和斜率的减小。但是,如果发生排出,由于熔体飞溅,熔核尺寸会减小。除了最初的熔核形成阶段,与焊接电流相比,焊接时间对熔核尺寸的影响较小。

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