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Discrete Element Simulation of Powder Sintering for Spherical Particles

机译:球形粒子粉末烧结的离散元素模拟

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This paper presents a numerical simulation of powder sintering. The numerical model presented in this paper uses the discrete element method, which suggests that the material can be modeled by a large set of discrete elements (particles) of a spherical shape that interact with each other. A methodology has been developed to determine the DEM parameters of bulk materials based on machine vision and a neural network algorithm. The approach is suitable for obtaining the exact values of the DEM parameters of the investigated bulk material by comparing the visual images of the material's behavior at the experimental stand in reality and in the model. Simulation of sintering requires an introduction of cohesive interaction between particles representing interparticle sintering forces. Numerical sintering studies were supplemented with experimental studies that provided data for calibration and model validation. The experimental results have shown a significant capability of the designed numerical model in modeling sintering processes. Evolution of microstructure and density during sintering have been studied under the laboratory conditions.
机译:本文呈现了粉末烧结的数值模拟。本文呈现的数值模型使用离散元件方法,这表明材料可以由彼此相互作用的球形的一大组分立元件(颗粒)来建模。已经开发了一种方法来确定基于机器视觉和神经网络算法的散装材料的DEM参数。该方法是适用于通过比较实验站在实际和模型中的实验站的材料的视觉图像来获得研究的散装材料的DEM参数的精确值。烧结仿真需要引入代表颗粒晶体烧结力的颗粒之间的内聚相互作用。补充了数值烧结研究,实验研究提供了用于校准和模型验证的数据。实验结果显示了设计的数值模型在烧结过程中的显着能力。在实验室条件下研究了烧结过程中微观结构和密度的演变。

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