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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Finite element analysis of temperature distribution using ABAQUS for a laser-based tile grout sealing process
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Finite element analysis of temperature distribution using ABAQUS for a laser-based tile grout sealing process

机译:使用ABAQUS进行基于激光的瓷砖灌浆密封过程的温度分布的有限元分析

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摘要

A finite element (FE) model has been developed utilizing the commercial ABAQUS package to determine the temperature distribution generated during the high-power diode laser (HPDL) processing of a novel ceramic tile grout seal, known as an amalgamated oxide compound grout (AOCG). The model was developed specifically to find the temperatures reached at the base of the ceramic tile grout seal, since temperatures in excess of 100℃ must be attained so as to ensure certain chemical changes (the complete irreversibility of the water-glass reaction required by the process). Fourier's law and Laplace's equation were employed to build the temperature field equations under appropriate boundary conditions in two-dimensional coordinates, while the ABAQUS FE model was used to calculate the temperature field and model the thermal profile in the ceramic tile grout seal. Both the FE-generated thermal profiles and the resultant operating maps predicted temperatures and vitrification depths which were consistently higher than those obtained experimentally. Notwithstanding this, a comparison of the results revealed that the predicted depths of vitrification were in very close agreement with those observed on AOCG samples treated with the HPDL.
机译:利用商用ABAQUS软件包开发了有限元(FE)模型,以确定在新型瓷砖灌浆密封件(称为汞合金复合灌浆(AOCG))的高功率二极管激光(HPDL)处理过程中产生的温度分布。 。该模型是专门为寻找瓷砖灌浆封口底部所达到的温度而开发的,因为必须达到超过100℃的温度,以确保某些化学变化(水玻璃反应的完全不可逆性)。处理)。利用傅立叶定律和拉普拉斯方程在适当的边界条件下建立二维坐标系中的温度场方程,而ABAQUS FE模型则用于计算温度场并模拟瓷砖灌浆密封中的温度分布。有限元生成的热分布图和生成的运行图均预测温度和玻璃化深度,其始终高于实验获得的温度和玻璃化深度。尽管如此,对结果的比较表明,预测的玻璃化深度与在用HPDL处理的AOCG样品中观察到的非常接近。

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