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A model to predict deposition parameters for directed energy deposition: part I theory and modeling

机译:预测定向能量沉积沉积参数的模型:第一部分理论和建模

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Purpose Directed energy deposition (DED) with laser powder-feed is an additive manufacturing process that is used to produce metallic components by simultaneously providing a supply of energy from a laser and mass from a powder aerosol. The breadth of alloys used in DED is currently limited to a very small range as compared to wrought or cast alloys. The purpose of this paper is to develop the new alloys for DED is limited because current models to predict operational processing parameters are computationally expensive and trial-and-error based experiments are both expensive and time-consuming. Design/methodology/approach In this research, an agile DED model is presented to predict the geometry produced by a single layer deposit. Findings The utility of the model is demonstrated for type 304 L stainless steel and the significance of the predicted deposition regimes is discussed. The proposed model incorporates concepts from heat transfer, welding and laser cladding; and integrates them with experimental fits and physical models that are relevant to DED. Originality/value The utility of the model is demonstrated for type 304 L stainless steel and the significance of the predicted deposition regimes is discussed.
机译:目的,具有激光粉末进料(DED)的能量沉积(DED)是一种添加剂制造方法,其用于通过同时提供来自粉末气溶胶的激光和质量的能量供应来产生金属组分。与锻造或铸造合金相比,DED中使用的合金的广度目前限于非常小的范围。本文的目的是开发DED的新合金是有限的,因为目前用于预测操作处理参数的模型是计算昂贵的并且基于试验的实验既昂贵又耗时。本研究中的设计/方法/方法,提出了一种敏捷的DED模型,以预测单层沉积物产生的几何形状。结果表明模型的效用对于304 L不锈钢,讨论了预测的沉积制度的重要性。该拟议模型包括来自传热,焊接和激光熔覆的概念;并将它们与与DED相关的实验拟合和物理模型集成。原创性/值对于304L不锈钢,对模型的效用进行了说明,并且讨论了预测的沉积制度的重要性。

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