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Discrete element simulations of powder-bed sintering-based additive manufacturing

机译:基于粉末烧结的添加剂制造的离散元模拟

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摘要

Additive manufacturing (AM) is the processing of jointing raw materials to make objects, usually in a layer-by-layer fashion, from 3D data. It has become a promising tool for a wide range of applications in recent decades. Nevertheless, qualification and certification remains the major challenge for the AM. One possible approach to address this challenge is using computer simulations as an examination and prediction tools. In this work, we present a prototype discrete element model aimed to replicate one of the most common AM process, the powder-bed sintering. This DEM model is designed to incorporate heat conduction, phase transformation and inter-particle sintering that mimics the powder-bed sintering-based AM process. The DEM-based thermal conductance and bond neck growth models were verified against a closed form analytical solution and the Coblenz model, respectively. Numerical simulations are provided to examine the mechanical properties of the printed objects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:添加剂制造(AM)是从3D数据中加工以逐层制造物体的加工以制造物体。近几十年来,它已成为广泛应用的有前途的工具。尽管如此,资格认证仍然是AM的主要挑战。解决这一挑战的一种可能方法是使用计算机模拟作为检查和预测工具。在这项工作中,我们提出了一种原型离散元件模型,其旨在复制最常见的AM工艺之一,粉末床烧结。该DEM模型旨在掺入导热,相变和颗粒烧结,以模拟粉末床烧结的AM工艺。验证了在闭合形式的分析溶液和CoBlenz模型中验证了基于DEM的热传导和键颈生长模型。提供数值模拟以检查印刷物体的机械性能。 (c)2017 Elsevier Ltd.保留所有权利。

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