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Simulation of the evolution of floor covering ceramic tiles during the firing

机译:烧制过程中地板瓷砖的演变模拟

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摘要

In the context of the firing of ceramic tiles the problem of simulating the final shape of the body is relevant because several defects can occur and the tile can be rejected if the conditions of the firing are inadequate for the geometry and materials of the tile -- The existing literature on this problem indicates that previous works present limitations in aspects such as not using a model characteristic of ceramics at high temperatures and oversimplifying the problem -- As a response to such shortcomings, this article presents a simulation with a 3-dimensional Norton’s model, which overcomes the difficulties because it is characteristic of ceramics at high temperatures -- The results of our simulated experiments show advantages with respect to the identification of the mechanisms that contribute to the final shape of the body -- Our work is able to divide the history of temperatures in stages where the evolution of the thermal, elastic and creep deformations is simplified and meaningful -- That is achieved because our work found that curvature is the most descriptive parameter of the simulation, the most important contribution of this article -- Future work is to be realized in the creation of a model that takes into account that the shrinkage is dependent on the history of temperatures -- The main shortcoming of the paper is the lack of physical experiments to corroborate the simulations
机译:在烧制瓷砖的情况下,模拟主体最终形状的问题很重要,因为如果烧制的条件不足以适应瓷砖的几何形状和材料,则可能会出现一些缺陷并且可以拒绝瓷砖-有关此问题的现有文献表明,以前的工作在以下方面存在局限性,例如在高温下不使用陶瓷的模型特征以及过分简化了问题。作为对此类缺点的回应,本文提出了使用3维诺顿定律的模拟方法。模型,克服了困难,因为它是高温下陶瓷的特征-我们的模拟实验结果显示出在确定有助于人体最终形状的机理方面的优势-我们的工作能够分解简化和表示热,弹性和蠕变变形演变阶段的温度历史gful-之所以能够实现,是因为我们的工作发现曲率是模拟的最描述性参数,也是本文最重要的贡献。将来的工作将在创建模型时实现,该模型应考虑到收缩率是取决于温度的历史-本文的主要缺点是缺乏物理实验来证实模拟结果

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