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The equivalent plasticity strain analysis of snow-melting heated pavement concrete exposed to inner elevated temperatures

机译:内部温度升高的融雪加热路面混凝土的等效塑性应变分析

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The equivalent plasticity strain (EPS) of snow-melting heated pavement concrete that exposed to inner elevated temperatures is analyzed with finite element simulations. An optimal mix proportion of the concrete with high thermal conductivity was obtained through mechanical and thermal experiments, which helps facilitate reducing the damage in snow-melting pavement. A three-dimensional (3D) finite element model is developed based on the concrete damage plastic (CDP) model with parameters. The EPS is considered as the performance evaluation index for damage in snow-melting heated pavement concrete. Based on the results of finite element simulations, the EPS of snow-melting heated pavement concrete that exposed to inner elevated temperatures was analyzed under different pavement structures and external conditions. Furthermore, two EPS prediction models were proposed: the one is for EPS and the inner elevated temperature, the other is for EPS and five key factors. The outputs of 3D finite element simulations were verified by an experiment result. It indicated that numerical results agreed with experimental results very well. A prediction and evaluation method of damage for snow-melting heated pavement concrete was established as well. (C) 2017 Elsevier Ltd. All rights reserved.
机译:利用有限元模拟分析了融雪加热的路面混凝土在内部高温下的当量塑性应变(EPS)。通过机械和热力实验获得了具有高导热率的最佳混凝土配合比,这有助于减少融雪路面的破坏。基于带参数的混凝土破坏塑性(CDP)模型,开发了三维(3D)有限元模型。 EPS被认为是融雪加热的路面混凝土的性能评估指标。根据有限元模拟的结果,分析了在不同路面结构和外部条件下,融雪加热的路面混凝土在内部高温下的EPS。此外,提出了两种EPS预测模型:一种用于EPS和内部高温,另一种用于EPS和五个关键因素。实验结果验证了3D有限元模拟的输出。结果表明,数值结果与实验结果吻合良好。建立了融雪加热路面混凝土破坏的预测和评价方法。 (C)2017 Elsevier Ltd.保留所有权利。

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