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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >3D printing of porcelain: finite element simulation of anisotropic sintering
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3D printing of porcelain: finite element simulation of anisotropic sintering

机译:瓷器3D打印:各向异性烧结的有限元模拟

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摘要

Sintering is a key step that determines the mechanical performances and shape quality of 3D printed ceramics. In this domain, there is an increasing interest in complex thin structures and low fill density shapes. However, these complex structures may suffer from distortions by gravity forces developed on the light structure, friction with supports, shrinkage anisotropy, or thermal gradients. Finite element simulation of the sintering process is then of high importance for predicting the specimens distortions. This paper focuses on the identification of the model parameters in the special case of anisotropic sintering of porcelain with final stage swelling. This study points out the printed specimen high resistance to high temperature shear deformation due to the alignment of the printed rods. A mesoscale simulation has been carried out to explain this mechanism. The resulting model was tested for the sintering of a thin wall cup shape.
机译:烧结是决定3D打印陶瓷机械性能和形状质量的关键步骤。在这个领域,人们对复杂的薄结构和低填充密度形状越来越感兴趣。然而,这些复杂的结构可能会受到轻质结构上产生的重力、与支撑的摩擦、收缩各向异性或热梯度的扭曲。因此,烧结过程的有限元模拟对于预测试样变形非常重要。本文重点研究了瓷器各向异性烧结末期膨胀特例下的模型参数辨识。本研究指出,由于打印棒的对准,打印试样对高温剪切变形具有很高的抵抗力。为了解释这一机制,已经进行了中尺度模拟。对所得模型进行了薄壁杯形烧结测试。

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