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Predictive Modelling of Residual Stresses for Single Bead P420 Laser Cladding onto an AISI 1018 Substrate

机译:单珠P420激光覆层在AISI 1018衬底上的残余应力的预测模型

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Research correlating the process parameters, bead geometry, and induced residual stresses is essential for addressing geometric and functional quality issues for laser cladding based surface treatment and additive manufacturing solutions. However, analysis of variance methods cannot be readily applied, as the residual stresses values vary based on their position within the clad bead or substrate. Experimental data is used to calibrate single bead finite element models, which in turn, are used to seed an artificial neural network model and an adaptive neuro fuzzy interference system (ANFIS) model. Preliminary results indicate that the ANFIS approach has potential.
机译:研究将过程参数,珠子几何形状和诱导的残余应力相关,对于寻址基于激光包层的表面处理和添加剂制造解决方案的几何和功能质量问题至关重要。然而,由于残余应力值基于其在包覆珠粒或衬底内的位置,因此不能容易地施加对方差方法的分析。实验数据用于校准单个珠子有限元模型,其又用于种子人工神经网络模型和自适应神经模糊干扰系统(ANFIS)模型。初步结果表明ANFIS方法具有潜力。

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