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Powder bed generation in integrated modelling of additive layer manufacturing of orthopaedic implants

机译:骨科植入物添加层制造的集成建模中的粉末床生成

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摘要

This paper presents an original model of powder\udbed generation developed within the frame of an integrated\udmodelling approach for studying the interaction of physical\udmechanisms in additive layer manufacturing (ALM) of orthopaedic implants. The model is based on cellular automata (CA) approach and describes the relationship between moving particles of different sizes during deposition on a surface in three dimensions. The surface is defined by the horizontal two-dimensional CA on which particles fall and irreversibly stick to a growing deposit. The model allows for consideration of different restructuring cases when particles are allowed to rotate as often as necessary until achievement of a local minimum\udposition. Changes in the packing density of the powder\udbed have been investigated numerically depending on technological parameters, such as particle size distribution, deposition rate and sequence of powder deposition. The model has been developed with the aim of merging to the finite element (FE)-based integrated model and is applicable to a different ranges of materials including metals and also non-metals.
机译:本文介绍了一种在综合\ udmodeling方法框架内开发的粉末\ udbed生成的原始模型,用于研究骨科植入物的添加剂层制造(ALM)中物理\ ud机制的相互作用。该模型基于细胞自动机(CA)方法,并描述了在三维表面上沉积过程中不同大小的移动粒子之间的关系。该表面由水平的二维CA定义,颗粒落在该二维CA上并且不可逆地粘附在生长的沉积物上。当允许粒子尽可能多地旋转直到达到局部最小值\叠加时,该模型可以考虑不同的重组情况。已根据技术参数(例如粒度分布,沉积速率和粉末沉积顺序)对粉末/堆积物的堆积密度的变化进行了数值研究。该模型的开发旨在与基于有限元(FE)的集成模型合并,并且适用于不同范围的材料,包括金属和非金属。

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