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Finite element analysis of stress distribution and the effects of geometry in a laser-generated single-stage ceramic tile grout seal using ANSYS

机译:使用ANSYS对激光产生的单级瓷砖灌浆密封中的应力分布和几何形状影响进行有限元分析

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摘要

Optimisation of the geometry (curvature of the vitrified enamel layer) of a laser-generated single-stage ceramic tile grout seal has carried out with a finite element (FE) model. The overall load bearing capacities and load-displacement plots of three selected geometries were determined experimentally by the indentation technique. Simultaneously, a FE model was developed utilising the commercial ANSYS package to simulate the indentation. Although the load-displacement plots generated by the FE model consistently displayed stiffer identities than the experimentally obtained results, there was reasonably close agreement between the two sets of results. Stress distribution profiles of the three FE models at failure loads were analysed and correlated so as to draw an implication on the prediction of a catastrophic failure through an analysis of FE-generated stress distribution profiles. It was observed that although increased curvatures of the vitrified enamel layer do enhance the overall load-bearing capacity of the single-stage ceramic tile grout seal and bring about a lower nominal stress, there is a higher build up in stress concentration at the apex that would inevitably reduce the load-bearing capacity of the enamel glaze. Consequently, the optimum geometry of the vitrified enamel layer was determined to be flat.
机译:激光产生的单级瓷砖灌浆密封的几何形状(陶瓷釉质层的曲率)的优化已通过有限元(FE)模型进行。通过压痕技术,通过实验确定了三个选定几何形状的总体承重能力和载荷-位移图。同时,利用商业ANSYS软件包开发了有限元模型来模拟压痕。尽管有限元模型生成的载荷-位移图始终显示出比实验获得的结果更严格的同一性,但两组结果之间还是有相当紧密的一致性。对三种有限元模型在破坏载荷下的应力分布曲线进行了分析和关联,从而通过对有限元生成的应力分布曲线进行分析,对灾难性破坏的预测产生了影响。观察到,尽管玻璃化釉质层的曲率增加确实增强了单级瓷砖灌浆密封的整体承载能力,并带来了较低的标称应力,但在顶点处的应力集中却增加了不可避免地会降低搪瓷釉料的承载能力。因此,玻璃化的搪瓷层的最佳几何形状被确定为平坦的。

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