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PARAMETRIC STUDY AND MULTI-CRITERIA OPTIMIZATION IN LASER DIRECTED ENERGY DEPOSITION OF 316L STAINLESS STEEL

机译:316L不锈钢激光定向能量沉积中的参数研究和多标准优化

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Directed Energy Deposition (DED) is an additive manufacturing technique in which a heat source is used to generate a small pool of molten material while powder feedstock is fed into the melt pool to create tracks of raised material on the surface of a part. Given the appropriate process parameters for the chosen material system and process conditions, fully dense complex geometric features are able to be constructed. In order to generate a high quality clad, two main criteria must be met: sufficient bonding with the substrate with minimized dilution of the clad by the base material and minimal porosity. Track shape is a key indicator in determining the quality of the process. This paper evaluates the influence of several of the key processing parameters - laser power, scanning speed, and powder mass flow rate - on single-clad track morphology. An analysis of variance (ANOVA) is performed to evaluate the significance of the main input parameters and the interactions between multiple parameters. A second-order polynomial model is then fit to the data to allow for predictive modelling of track shape based on a set of inputs. Finally, a multi-criteria cost function is generated, and sequential quadratic programming is performed to solve the objective function. Through these operations, the correct combination of processing parameters can be selected in order to generate a cladded track with desirable geometric traits.
机译:定向能量沉积(DED)是一种添加剂制造技术,其中热源用于产生小熔池,而粉末原料进入熔池,以在部件表面上产生凸起的凸起材料。鉴于所选材料系统和工艺条件的适当工艺参数,能够构造完全密集的复杂几何特征。为了产生高质量的包层,必须满足两个主要标准:通过基材最小化稀释的基板足够键合,并通过基础材料和最小的孔隙率。轨道形状是确定过程质量的关键指示器。本文评估了几个关键处理参数的影响 - 激光功率,扫描速度和粉末质量流速 - 对单包层轨道形态。执行对方差(ANOVA)的分析以评估主输入参数的重要性和多个参数之间的相互作用。然后将二阶多项式模型适合数据,以允许基于一组输入来预测轨道形状的预测建模。最后,生成多标准成本函数,并执行顺序二次编程以解决客观函数。通过这些操作,可以选择处理参数的正确组合,以便产生具有所需几何特征的包包轨道。

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