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采用粘弹塑性模型计算单桩沉降 被引量:2
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作者 李潘武 夏正中 《长安大学学报(建筑与环境科学版)》 2003年第3期1-4,共4页
单桩的沉降计算是依据地基土在外荷载作用下的应力 -应变关系来建立计算模型的 ,但目前所建立的这些模型的计算结果 ,大多都与工程实际有较大的误差 .根据地基土的变形特征和桩 -土协同工作的原理 ,采用地基土的粘弹塑性模型和桩身混凝... 单桩的沉降计算是依据地基土在外荷载作用下的应力 -应变关系来建立计算模型的 ,但目前所建立的这些模型的计算结果 ,大多都与工程实际有较大的误差 .根据地基土的变形特征和桩 -土协同工作的原理 ,采用地基土的粘弹塑性模型和桩身混凝土的弹性变形模型 ,提出了单桩的沉降计算的基本理论 .经与工程实例对比分析 ,具有较好的一致性 . 展开更多
关键词 单桩 沉降 粘弹塑性模型 弹性变形模型 应力—应变关系
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溶浸过程耦合机理及数值模拟分析 被引量:1
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作者 刘金枝 杨保华 李羽航 《矿冶工程》 CAS CSCD 北大核心 2015年第2期114-116,共3页
考虑堆浸过程中溶液流动和岩石骨架的弹性变形,发展了一弹性变形模型。在常水头情况下,用Comsol Multiphysics数值模拟软件求解相应的定解问题。数值模拟结果给出了浸出过程中矿堆内部的弹性变形规律,以及溶剂浓度与溶质浓度的分布规律。
关键词 堆浸 弹性变形模型 传质 数值分析
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A model of deformation of thin-wall surface parts during milling machining process 被引量:12
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作者 王凌云 黄红辉 +2 位作者 Rae W.WEST 李厚佳 杜继涛 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第5期1107-1115,共9页
A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The alumi... A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The aluminum alloy impeller was designated as the object to be processed and the boundary conditions which met the actual machining were set. Through the solution, the physical quantities such as the three-way cutting force, the tool temperature, and the tool stress were obtained, and the calculation of the elastic deformation of the thin-walled blade of the free-form surface at the contact points between the tool and the workpiece was realized. The elastic deformation law of the thin-walled blade was then predicted. The results show that the maximum deviation between the predicted value and the actual measured machining value of the elastic deformation was 26.055 μm; the minimum deviation was 2.011 μm, with the average deviation being 10.154 μm. This shows that the prediction is in close agreement with the actual result. 展开更多
关键词 thin-walled surface parts milling force elastic deformation finite element model
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Elastoplastic model for discontinuous shear deformation of deep rock mass 被引量:3
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作者 王明洋 范鹏贤 +1 位作者 钱七虎 邓宏见 《Journal of Central South University》 SCIE EI CAS 2011年第3期866-873,共8页
Deep rock mass possesses some unusual properties due to high earth stress,which further result in new problems that have not been well understood and explained up to date.In order to investigate the deformation mechan... Deep rock mass possesses some unusual properties due to high earth stress,which further result in new problems that have not been well understood and explained up to date.In order to investigate the deformation mechanism,the complete deformation process of deep rock mass,with a great emphasis on local shear deformation stage,was analyzed in detail.The quasi continuous shear deformation of the deep rock mass is described by a combination of smooth functions:the averaged distribution of the original deformation field,and the local discontinuities along the slip lines.Hence,an elasto-plastic model is established for the shear deformation process,in which the rotational displacement is taken into account as well as the translational component.Numerical analysis method was developed for case study.Deformation process of a tunnel under high earth stress was investigated for verification. 展开更多
关键词 deep rock mass discontinuous deformation elasto-plastic model
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Slope analysis based on local strength reduction method and variable-modulus elasto-plastic model 被引量:5
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作者 杨光华 钟志辉 +3 位作者 傅旭东 张玉成 温勇 张明飞 《Journal of Central South University》 SCIE EI CAS 2014年第5期2041-2050,共10页
Employing an ideal elasto-plastic model,the typically used strength reduction method reduced the strength of all soil elements of a slope.Therefore,this method was called the global strength reduction method(GSRM).How... Employing an ideal elasto-plastic model,the typically used strength reduction method reduced the strength of all soil elements of a slope.Therefore,this method was called the global strength reduction method(GSRM).However,the deformation field obtained by GSRM could not reflect the real deformation of a slope when the slope became unstable.For most slopes,failure occurs once the strength of some regional soil is sufficiently weakened; thus,the local strength reduction method(LSRM)was proposed to analyze slope stability.In contrast with GSRM,LSRM only reduces the strength of local soil,while the strength of other soil remains unchanged.Therefore,deformation by LSRM is more reasonable than that by GSRM.In addition,the accuracy of the slope's deformation depends on the constitutive model to a large degree,and the variable-modulus elasto-plastic model was thus adopted.This constitutive model was an improvement of the Duncan–Chang model,which modified soil's deformation modulus according to stress level,and it thus better reflected the plastic feature of soil.Most importantly,the parameters of the variable-modulus elasto-plastic model could be determined through in-situ tests,and parameters determination by plate loading test and pressuremeter test were introduced.Therefore,it is easy to put this model into practice.Finally,LSRM and the variable-modulus elasto-plastic model were used to analyze Egongdai ancient landslide.Safety factor,deformation field,and optimal reinforcement measures for Egongdai ancient landslide were obtained based on the proposed method. 展开更多
关键词 slope stability local strength reduction method variable-modulus elasto-plastic model in-situ test
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