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Experimental determination of optimum parameters for stainless steel 316L annealed ultrasonic consolidation

机译:316L不锈钢退火超声固结最佳参数的实验确定

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Purpose - The purpose of this paper is to explore the effect of different parameter configurations of oscillation amplitude, welding speed, and normal force at 478 K (400°F) on the linear welding density of stainless steel 316L annealed utrasonically consolidated (UC) samples, and present an optimum parameter set based upon maximum linear welding density criteria. Design/methodology/approach - The paper describes the application of analysis of variance to different experimental designs in order to compare factor effects and obtain the optimum linear welding density parameter set for the ultrasonic consolidation of stainless steel 316L annealed samples. Findings - This work includes experimental results at assessing the explained variation due to factor effects on linear welding density, the statistical significance of these factors, and the combination of UC process parameters that maximizes linear welding density in stainless steel 316L annealed samples. Research limitations/implications - The paper presents results obtained with a specific UC system, a standard sample configuration, and relatively constant frictional conditions. Originality/value - This work is a first step towards a reproducible UC of stainless steel 316L foils with high linear welding density.
机译:目的-本文的目的是探讨478 K(400°F)下的振幅,焊接速度和法向力的不同参数配置对316L退火超声波(UC)退火不锈钢样品的线性焊接密度的影响,并根据最大线性焊接密度标准提出最佳参数集。设计/方法/方法-本文介绍了方差分析在不同实验设计中的应用,以便比较因素影响并获得用于316L不锈钢退火样品的超声固结的最佳线性焊接密度参数集。研究结果-这项工作包括评估因线性焊接密度的因素影响,这些因素的统计显着性以及UC工艺参数的组合而导致的解释变化的实验结果,这些参数使316L不锈钢退火样品的线性焊接密度最大化。研究局限性/意义-本文介绍了使用特定UC系统,标准样品配置以及相对恒定的摩擦条件所获得的结果。原创性/价值-这项工作是迈向具有高线性焊接密度的可复制316L不锈钢箔UC的第一步。

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