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Effect of shielding gas parameters on weld metal thermal properties in gas metal arc welding

机译:气体保护电弧参数对气体保护金属电弧焊焊接金属热性能的影响

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摘要

This study considered the effect of shielding gas parameters (composition, supply method and flow rate) on the post weld thermal properties (thermal expansion, specific heat capacity, thermal diffusivity and thermal conductivity) of the weld metal in gas metal arc welding. This is of importance as the thermal properties influences the temperature distribution and therefore the residual stresses and distortion present within the final structure. Due to the lack of accurate thermal data, computational modelling techniques (such as FEA, CFD, etc.) used for modelling the welding process generally make assumptions regarding the material thermal properties, and it is often the case that the parent material thermal properties are extended to the weld metal, introducing errors to the simulation. It was determined that the weld metal posses considerably different thermal properties to the DH36 grade steel parent material, and that the shielding gas parameters significantly alter key thermal properties of the solidified weld metal. A lower shielding gas flow rate exhibited beneficial properties including a lower thermal expansion, and higher specific heat capacity and thermal conductivity than a higher shielding gas flow rate.
机译:这项研究考虑了保护气体参数(组成,供应方法和流速)对气体金属电弧焊中焊接金属的焊后热性能(热膨胀,比热容,热扩散率和导热率)的影响。这一点很重要,因为热特性会影响温度分布,因此会影响最终结构内的残余应力和变形。由于缺乏准确的热数据,用于对焊接过程进行建模的计算建模技术(例如FEA,CFD等)通常会假设有关材料的热性能,并且通常情况下母体材料的热性能是扩展到焊接金属,将误差引入仿真。已确定,焊接金属具有与DH36级钢母材明显不同的热性能,并且保护气体参数显着改变了凝固的焊接金属的关键热性能。与较高的保护气体流速相比,较低的保护气体流速表现出有益的性质,包括较低的热膨胀,较高的比热容和导热率。

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