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Investigation on Mechanical Properties of Pulsed Nd:YAG Laser Welding on AISI 304 Stainless Steel to AISI 1008 Steel

机译:脉冲Nd的力学性能调查:YAG激光焊接AISI 304不锈钢到AISI 1008钢铁

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Product with low cost, lightweight and enhanced mechanical properties were the main reasons welding dissimilar materials thrived by most of the industries. The laser welding technique which has high-energy density beam was found suitable of carrying this task. This paper attempts to investigate welding of AISI 304 stainless steel to AISI 1008 steel through Nd:YAG pulse laser method. The main objective of this study was to find out the weldability of these materials and investigate the mechanical properties of the welded butt joints. Peak power, pulse duration and weld speed combinations were carefully selected with the aims of producing weld with a good tensile strength, minimum heat affected zone (HAZ) and acceptable welding profile. Response surface methodology (RSM) approach was adopted as statistical design technique for tensile strength optimization. Statistical based mathematical model was developed to describe effects of each process parameters on the weld tensile strength and for response prediction within the parameter ranges. The microstructure of the weld and heat affected zones were observed via optical microscope. The results indicate the developed model can predict the response within ±9% of error from the actual values.
机译:产品成本低,重量轻,力量增强的机械性能是焊接不同材料蓬勃发展的主要原因。找到具有高能密度光束的激光焊接技术,适用于承载这项任务。本文试图通过ND:YAG脉冲激光法调查AISI 304不锈钢到AISI 1008钢的焊接。本研究的主要目的是找出这些材料的可焊性,并研究焊接对接接头的机械性能。用焊接具有良好的拉伸强度,最小热影响区域(HAZ)和可接受的焊接轮廓的旨在仔细选择峰值功率,脉冲持续时间和焊接速度组合。采用响应面方法(RSM)方法作为拉伸强度优化的统计设计技术。开发了基于统计的数学模型,以描述每个工艺参数对焊接拉伸强度的影响和参数范围内的响应预测。通过光学显微镜观察焊接和热影响区域的微观结构。结果表明,开发的模型可以从实际值中预测±9%的误差内的响应。

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