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A new method to calculate lateral force acting on stabilizing piles based on multi-wedge translation mechanism 被引量:2
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作者 罗渝 许强 +3 位作者 何思明 李新坡 何尽川 吴永 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期654-661,共8页
A new method based on the multi-wedge translation mechanism is presented to calculate the lateral force acting on the stabilizing piles. At first, there is no assumption for the shape of potential sliding surface, it ... A new method based on the multi-wedge translation mechanism is presented to calculate the lateral force acting on the stabilizing piles. At first, there is no assumption for the shape of potential sliding surface, it is just considered that the potential sliding surface is a composite of a number of straight lines. And then, the potential sliding mass is divided into a number of triangular wedges take with these straight lines as its base. The kinematic theorem of limit analysis is adopted to calculate the rate of external work and the rate of energy dissipation for each triangular wedge, respectively. Furthermore, the multivariate functions are established to calculate the lateral force acting on the stabilizing piles. The lateral force and the corresponding potential sliding surfaces can be obtained by an optimizational technique. At last, an example is taken to illustrate the method. The effect of soil strength parameters, slope angle and pile roughness on the lateral force and the corresponding potential sliding surface are analyzed.The result are compared with those obtained using other methods. 展开更多
关键词 PILE sliding surface limit analysis multi-wedge mechanism
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Finite element analysis and experiment on multi-wedge cross wedge rolling for asymmetric stepped shaft of C45 被引量:1
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作者 JI Hong-chao LIU Jin-ping +3 位作者 FU Xiao-bin TANG Xue-feng WANG Bao-yu HUANG Xu 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第4期854-860,共7页
A rigid-plastic finite element method(FEM) simulation model for a multi-wedge cross wedge rolling(MCWR) was developed to analyze an asymmetric stepped shaft. To evaluate the MCWR process and better understand its defo... A rigid-plastic finite element method(FEM) simulation model for a multi-wedge cross wedge rolling(MCWR) was developed to analyze an asymmetric stepped shaft. To evaluate the MCWR process and better understand its deformation characteristics, the material flowing mechanisms, temperature distributions, strain and rolling force were analyzed. The correctness of the finite element simulation is experimentally verified. Numerical simulations and experiments led to the following conclusions: when α=36° and β=7.5°, the quality of the work piece can be significantly improved. Finally, the development of the asymmetric stepped shaft is applied to industrial production. 展开更多
关键词 multi-wedge CROSS WEDGE ROLLING ASYMMETRIC stepped SHAFT C45
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