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FEM investigation of global mechanisms affecting brick lining stability in a rotary kiln in cold state

机译:有限元法研究冷态回转窑砖衬稳定性的整体机理

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Severe degradation of refractory lining in a rotary kiln often leads to very costly production delays. Use of finite element analysis for understanding the mechanisms behind the failure of the lining is poorly reported in this field. To increase the knowledge and to update the field a simplified model of a kiln and a new methodology for studying stability of the lining are suggested. Behaviour of the lining in cold state - in static and dynamic cases - is studied. Influence of ovality, brick's Young's modulus and friction coefficient on stress and brick displacement are evaluated at two rotational speeds. It was found that the induced loads in the lining are harmless regardless of the tested conditions - challenging the traditional beliefs. On the other hand, recorded brick displacements were found to be significantly affected by rotational speed and ovality. Gaps as large as 80 mm could be observed between the bricks and the casing in a worst case scenario. An integrity coefficient was defined in order to quantify overall integrity of the lining. (C) 2015 Elsevier Ltd. All rights reserved.
机译:回转窑中耐火炉衬的严重降解通常会导致非常昂贵的生产延迟。在该领域,使用有限元分析来了解衬砌破坏背后的机理的报道很少。为了增加知识并更新领域,提出了一种简化的窑炉模型和一种研究炉衬稳定性的新方法。研究了在静态和动态情况下冷态衬砌的行为。在两种转速下,评估椭圆度,砖的杨氏模量和摩擦系数对应力和砖位移的影响。结果发现,无论测试条件如何,衬里中的感应载荷均无害-挑战了传统观念。另一方面,发现记录的砖位移受转速和椭圆度的影响很大。在最坏的情况下,砖和套管之间可能会发现80毫米的间隙。定义完整性系数是为了量化衬里的整体完整性。 (C)2015 Elsevier Ltd.保留所有权利。

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