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Multi-physics continuum modelling approaches for metal powder additive manufacturing: a review

机译:金属粉末添加剂制造的多物理连续型方法:综述

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Purpose - This paper aims to present a systematic approach in the literature survey related to metal additive manufacturing (AM) processes and its multi-physics continuum modelling approach for its better understanding. Design/methodology/approach - A systematic review of the literature available in the area of continuum modelling practices adopted for the powder bed fusion (PBF) AM processes for the deposition of powder layer over the substrate along with quantification of residual stress and distortion. Discrete element method (DEM) and finite element method (FEM) approaches have been reviewed for the deposition of powder layer and thermo-mechanical modelling, respectively. Further, thermo-mechanical modelling adopted for the PBF AM process have been discussed in detail with its constituents. Finally, on the basis of prediction through thermo-mechanical models and experimental validation, distortion mitigation/minimisation techniques applied in PBF AM processes have been reviewed to provide a future direction in the field. Findings - The findings of this paper are the future directions for the implementation and modification of the continuum modelling approaches applied to PBF AM processes. On the basis of the extensive review in the domain, gaps are recommended for future work for the betterment of modelling approach. Research limitations/implications - This paper is limited to review only the modelling approach adopted by the PBF AM processes, i.e. modelling techniques (DEM approach) used for the deposition of powder layer and macro-models at process scale for the prediction of residual stress and distortion in the component. Modelling of microstructure and grain growth has not been included in this paper. Originality/value - This paper presents an extensive review of the FEM approach adopted for the prediction of residual stress and distortion in the PBF AM processes which sets the platform for the development of distortion mitigation techniques. An extensive review of distortion mitigation techniques has been presented in the last section of the paper, which has not been reviewed yet.
机译:目的 - 本文旨在在与金属添加剂制造(AM)工艺相关的文献调查中提出系统的方法,以及其更好的理解。设计/方法/方法 - 对粉末融合(PBF)采用的连续型建模实践领域的文献进行系统审查,用于在基板上沉积粉末层的过程以及残留应力和变形的量化。分别介绍了离散元法(DEM)和有限元方法(FEM)方法,分别探讨了粉末层和热机械建模的沉积。此外,已经用其成分详细讨论了用于PBF AM工艺的热机械建模。最后,在通过热机械模型的预测和实验验证的基础上,已经审查了在PBF AM过程中应用的失真缓解/最小化技术,以在现场提供未来的方向。调查结果 - 本文的调查结果是未来的实施和修改适用于PBF AM流程的连续内建模方法的方向。在域中的广泛审查的基础上,建议差距以备将来为更新建模方法的工作。研究限制/含义 - 本文仅限于审查PBF AM过程采用的建模方法,即用于沉积粉末层和宏观模型的建模技术(DEM方法)以预测残余应力和预测组件中的失真。本文未包含微观结构和晶粒生长的建模。原创/价值 - 本文提出了对预测PBF AM过程中的残余应力和失真采用的有限手段的广泛审查,该过程设定了开发失真缓解技术的平台。对失真缓解技术进行了广泛的审查,尚未审查尚未审查。

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