Mechanical and Metallurgical Characterisation of CO2 Laser Beam Welding AISI 4130 and AISI 310 Sheets of Steel

Bijivemula Narayana Reddy, P. Hema, C. E. Reddy
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引用次数: 1

Abstract

Abstract Laser Beam Welding (LBW) is the fusion welding technique in which coalescence is produced by heating the work piece by impingement of concentrated beam of laser light. In this paper a full depth butt welding of alloy steel AISI 4130 and stainless steel AISI 310 of 2 mm thickness by using CO2 Laser Beam Welding machine has been performed. Design of experiment is done by using Taguchi method L25 i.e. level 5 by considering process parameters i.e. power, welding speed, beam angle, focal point position and focal length. The experimental output results that are measured for the mechanical properties of welds (Ultimate Tensile Strength and Hardness). The analysis was carried out to explain the influence of the LBW processing parameters values on the mechanical and microstructural aspects. The weld Joint is analysed by Optical Microstructure and Scanning Electron Microscopy (SEM). The Energy Dispersive X-Ray Analysis (EDAX) was carried out to determinate the chemical composition of the weld zone.
CO2激光束焊接AISI 4130和AISI 310钢板的力学和冶金特性
摘要激光光束焊接是一种利用激光集中光束的撞击加热工件产生聚结的熔焊技术。本文采用CO2激光束焊接机对厚度为2mm的合金钢AISI 4130与不锈钢AISI 310进行了全深度对接焊接。考虑功率、焊接速度、光束角度、焦点位置和焦距等工艺参数,采用田口法L25即5级进行实验设计。测量焊缝力学性能(极限抗拉强度和硬度)的实验输出结果。分析了LBW工艺参数值对合金力学和显微组织的影响。采用光学显微组织和扫描电镜对焊接接头进行了分析。利用能量色散x射线分析(EDAX)确定了焊缝区的化学成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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