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金属液充型过程中夹杂物运动的数值模拟
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作者 徐玉桥 于梅 《沈阳工业大学学报》 EI CAS 2007年第4期392-395,共4页
铸造过程计算机模拟技术是材料科学的重要前沿领域.利用计算机对金属液和夹杂物注入型腔内的运动过程、夹杂物集聚位置进行了数值模拟.用连续方法、N-S方程、粒子运动方程建立数学模型,利用有限差分法和四阶龙格库塔法对数学模型进行了... 铸造过程计算机模拟技术是材料科学的重要前沿领域.利用计算机对金属液和夹杂物注入型腔内的运动过程、夹杂物集聚位置进行了数值模拟.用连续方法、N-S方程、粒子运动方程建立数学模型,利用有限差分法和四阶龙格库塔法对数学模型进行了离散化,编制计算程序进行了计算,并结合水力模拟实验验证了计算结果的准确性.结果表明,本数值计算系统能够较好地模拟金属液和夹杂物在充型过程中的运动过程及夹杂物集聚位置,对于优化铸造工艺方案有一定的借鉴意义. 展开更多
关键词 夹杂物 流体 充型过程 数值模拟 水力模拟实验
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Mesomechanical simulation of direct shear test on outwash deposits with granular discrete element method 被引量:6
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作者 石崇 王盛年 +2 位作者 刘琳 孟庆祥 张强 《Journal of Central South University》 SCIE EI CAS 2013年第4期1094-1102,共9页
The mechanical properties of outwash deposits which are taken as unconsolidated geo-materials with the characteristics of non-uniformity, heterogeneity and multiphase have attracted much attention in engineering. Acco... The mechanical properties of outwash deposits which are taken as unconsolidated geo-materials with the characteristics of non-uniformity, heterogeneity and multiphase have attracted much attention in engineering. According to the results of laboratory direct shear test on the remolded samples, the soil particle parameters of numerical model based on in-situ particle size cumulative curves and 3D granular discrete element method were determined. Then, numerical experiments on different lithology, stone content and gradation composition were conducted. The results show that it is not a flat surface but a shear band that yields in the sample. The curve of particle velocity vs distance from the designed shear surface of test model that is taken as a datum plane in the vertical section of sample shows in "S" shape. The shear disturbance area is about twice the maximum diameter of stone blocks. The greater the stiffness of stone is, the rougher the shear surface is. The shear strength of outwash deposits is largely controlled by lithology and stone content, and the bite force between stone blocks is the root reason of larger friction angle. It is also shown that strain hardening and low shear dilatancy occur under high confining pressure as well as possibility of shear shrinkage. But it is easy to behave shear dilatation and strain softening under low confining pressure. The relationship between particle frictional coefficient and stone content presents an approximately quadratic parabola increase. The strain energy first increases and then drops with the increase of frictional energy. The cohesion increases with soil stiffness increasing but decreases with stone stiffness increasing. Numerical results are consistent with the laboratory test results of remolded samples, which indicate that this method can be a beneficial supplement to determine the parameters of engineering deposit bodies. 展开更多
关键词 outwash deposit direct shear test granular discrete element MESOMECHANICS
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