首页> 外文会议>2010 2nd International Conference on Computer Engineering and Technology.;vol. 1. >Triaxial Compressive Experiment of Failure Complete Process of Sandstone Corroded by Chemical Solution and the Evolutionary Neural Network Constitutive Model
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Triaxial Compressive Experiment of Failure Complete Process of Sandstone Corroded by Chemical Solution and the Evolutionary Neural Network Constitutive Model

机译:化学溶液腐蚀砂岩破坏完成过程的三轴压缩试验及演化神经网络本构模型

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The triaxial compressive tests for sandstone specimens corroded by different chemical solutions are concudted and their complete stress-strain processes are obtained. The characteristics of chemical corrosion effect on various stages of the complete stress-strain curve are analyzed. The law of the deformation and strength of sandstone corroded by different chemical solutions is obtained. The evolutionary neural network constitutive model is established to describe the stress-strain relationship of specimen by applying the theory of evolutionary computation and neural network. It is indicated that the evolutionary neural network constitutive model can better describe the mapping relationship between stress and strain of rockmass under chemical corrosion environments. The predicted results are in good agreement with the experimental results.
机译:总结了不同化学溶液腐蚀的砂岩试件的三轴压缩试验,得到了完整的应力应变过程。分析了化学腐蚀对完整应力-应变曲线各个阶段的影响的特征。得到了不同化学溶液腐蚀下砂岩的变形和强度规律。应用演化计算和神经网络理论建立了演化神经网络本构模型,描述了试样的应力-应变关系。结果表明,进化神经网络本构模型可以较好地描述化学腐蚀环境下岩体应力与应变的映射关系。预测结果与实验结果吻合良好。

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