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首页> 外文期刊>Magazine of Concrete Research >Numerical modelling of the thermo-mechanical behaviour of refractory concrete lining
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Numerical modelling of the thermo-mechanical behaviour of refractory concrete lining

机译:耐火混凝土衬砌热力学行为的数值模型

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摘要

Refractory concretes are widely used for the linings of the steel shells of industrial structures subjected to high temperature and pressure. The working linings of steel ladles are made of high-alumina concretes applied in layers that receive heat flow. Modelling the thermo-mechanical behaviour of these layers under service conditions is of paramount importance to evaluate failure or cracking in order to determine their useful life. In this work, the previously studied heating and holding process of linings comprising several layers of different types of refractory with different alumina contents (51, 71 and 90 wt%) was simulated. The developed model employed axisymmetric finite elements and the thermo-mechanical analyses were carried out using the software package Abaqus. The results of the thermo-mechanical responses were compared. It was found that the combination of refractory concrete with 90 wt% of alumina as the inner layer and materials with 71 wt% and 51 wt% alumina as the middle and outer layers, respectively, was the most efficient in terms of the thermal gradient. Therefore, this combination could potentially lead to minor damage to the lining throughout its use. This work highlights the importance of selection of coating materials for layered applications.
机译:耐火混凝土广泛用于工业结构的钢壳的衬里,经受高温和压力的工业​​结构。钢钢包的工作衬里由在接收热流的层中施加的高氧化铝混凝土制成。在服务条件下建模这些层的热力学行为对于评估失败或开裂来说至关重要,以便确定其使用寿命。在这项工作中,模拟了包括含有几种不同类型的耐火剂的衬里的预先研究的加热和保持过程,以不同类型的耐火材料(51,71和90wt%)。使用软件包ABAQUS进行开发的模型采用轴对称有限元和热机械分析。比较了热机械反应的结果。发现耐火混凝土的组合分别具有90wt%的氧化铝作为内层和具有71wt%和51wt%氧化铝作为中间层和外层的材料,是热梯度方面最有效的。因此,这种组合可能导致在整个使用过程中对衬里的轻微损坏。这项工作突出了选择层叠应用的涂料的重要性。

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