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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Bead geometry prediction using multiple linear regression analysis
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Bead geometry prediction using multiple linear regression analysis

机译:使用多元线性回归分析预测磁珠几何形状

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摘要

Abstract Additive manufacturing processes are currently studied in many research areas. Indeed, to qualify additively manufactured metallic parts, it is important to understand how process and postprocessing treatments influence the microstructure and mechanical properties of the parts. However, it is also essential to understand how the process parameters impact bead geometry. In this paper, various first-order parameters were studied, and beads were measured to identify correlations between input parameters (laser power P, scanning speed V and powder feed rate F) and geometrical outputs of Ti-6Al-4V beads (height, dilution, width) manufactured with the laser metal powder deposition process. Several results of linear or multiple linear regressions were analyzed to quantify the quality of the prediction of bead geometry. The results show that the emerged and diluted heights are correlated with the laser power/powder feed rate ratio (LEPF), energy density (ED) and powder density (PD). Additionally, the dilution rate seems to be better predicted when expressed as a function of P, V and F. Bead width regressions gave accurate predictions with low errors. These equations could be used to predict the bead geometry from input parameters or to predict input parameters as a function of the needed geometric properties.
机译:摘要 增材制造工艺目前在许多研究领域得到广泛研究。事实上,要鉴定增材制造的金属零件,重要的是要了解工艺和后处理如何影响零件的微观结构和机械性能。然而,了解工艺参数如何影响焊条几何形状也很重要。本文研究了各种一阶参数,并测量了磁珠,以确定输入参数(激光功率P、扫描速度V和粉末进给速率F)与激光金属粉末沉积工艺制造的Ti-6Al-4V磁珠的几何输出(高度、稀释度、宽度)之间的相关性。分析了线性或多元线性回归的几个结果,以量化磁珠几何预测的质量。结果表明,出料高度和稀释高度与激光功率/粉末进给率比(LEPF)、能量密度(ED)和粉末密度(PD)相关。此外,当表示为 P、V 和 F 的函数时,稀释率似乎可以更好地预测。这些方程可用于根据输入参数预测磁珠几何形状,或将输入参数预测为所需几何属性的函数。

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