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Shrinkage-based die design for drying ceramic parts

机译:基于收缩的模具设计,用于干燥陶瓷零件

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摘要

Drying of ceramic parts with complex geometry has been studied with emphasis on the effects of shrinkage on their final dimensions. The first step was to understand the processes governing moisture loss from a porous medium through experimental measurements yielding the coefficient of moisture expansion. As a result, non-homogeneous dimensional changes (shrinkage) occur in three-dimensional artefacts with varying cross-section. The moisture diffusion problem governed by Fick's laws was solved numerically by analogy to the heat conduction problem. To this end the correspondence was established between physical parameters, variables and boundary conditions of heat flow and diffusion, characteristically the coefficient of moisture expansion being analogous to the coefficient of thermal expansion. The numerical model established and solved using finite element analysis predicted moisture distribution inside the part as well as the resulting change in its shape. Validation of numerical predictions was first ensured in two dimensions by modelling a simple slab and comparing with experimental measurements. Validation for a fully three-dimensional shape required use of the well-established iterative closest point algorithm for surface point matching and subsequently the creation of an error map. The reverse of this numerical model was used to predict the appropriate die geometry starting with the shape of the desired part by taking into account the variable drying shrinkage allowance, and the relevant steps are outlined.
机译:已经研究了干燥具有复杂几何形状的陶瓷零件的方法,重点是收缩对其最终尺寸的影响。第一步是通过实验测量来了解控制多孔介质中水分流失的过程,从而得出水分膨胀系数。结果,在具有变化的横截面的三维制品中发生了不均匀的尺寸变化(收缩)。由菲克定律控制的水分扩散问题可以通过类似于热传导问题的方式进行数值求解。为此,在热流和扩散的物理参数,变量和边界条件之间建立了对应关系,其特征在于水分膨胀系数类似于热膨胀系数。使用有限元分析建立并求解的数值模型可预测零件内部的水分分布以及其形状的变化。首先通过对一个简单的平板进行建模并与实验测量值进行比较,在二维上确保数值预测的有效性。验证完整的三维形状需要使用公认的迭代最近点算法来进行表面点匹配,并随后创建误差图。通过考虑可变的干燥收缩率,使用该数值模型的反面来从所需零件的形状开始预测合适的模具几何形状,并概述了相关步骤。

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