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首页> 外文期刊>Indian journal of engineering and materials sciences >Effects of process parameters of GMAW on bead geometry, tensile strength, hardness, microstructure and thermo-mechanical simulation of AISI 202 steel
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Effects of process parameters of GMAW on bead geometry, tensile strength, hardness, microstructure and thermo-mechanical simulation of AISI 202 steel

机译:GMAW工艺参数对AISI 202钢的珠子几何,拉伸强度,硬度,微观结构和热机械模拟的影响

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摘要

This paper presents a study on welding of AISI 202 steel using AISI 308L filler wire using gas metal arc welding process. The experiments are conducted using central composite design matrix by varying four input process parameters, viz., welding speed, welding voltage, wire feed rate and gas flow rate. The output parameters like bead height, bead width, bead penetrations and mechanical properties like hardness and tensile strength are measured. Also, microstructure at base metal zone, heat affected zone and weld zone of the weldments are observed. The mathematical models for output parameters are developed using response surface methodology and effects of process parameters on response parameters and microstructure are found out. Furthermore, thermo-mechanical simulation using ANSYS software is carried out to predict the thermally induced residual stresses distribution in the weldment. This work helps the manufacturer in selecting the process parameters to achieve desirable results and improve the weld quality.
机译:本文介绍了使用气体金属电弧焊接工艺使用AISI 308L填充丝焊接AISI 202钢的研究。通过改变四个输入工艺参数,焊接速度,焊接电压,送料速率和气体流速,使用中央复合设计矩阵进行实验。测量输出参数,如珠子高度,珠子宽度,珠粒穿透和机械性能,如硬度和拉伸强度。而且,观察到基础金属区的微观结构,焊接的焊接的热影响区域和焊接区。使用响应表面方法产生输出参数的数学模型,并发现过程参数对响应参数的影响和微观结构。此外,进行使用ANSYS软件的热机械模拟以预测焊接中的热诱导的残余应力分布。这项工作有助于制造商选择过程参数以获得所需的结果并提高焊接质量。

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