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橄榄石集合体中与位错蠕变相伴随的粒间滑动 被引量:2
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作者 赵永红 王中言 David L KOHLSTEDT 《岩石学报》 SCIE EI CAS CSCD 北大核心 2009年第3期708-712,共5页
为了研究橄榄岩位错蠕变过程中粒间滑动所起的作用,对经脱水干燥的橄榄石集合体试件进行了一系列的变形试验。三轴压缩蠕变试验在T=1473K、P=200和400MPa条件下使用一台高分辨率气体介质变形装置进行,每个试件在介于100~250MPa之间的... 为了研究橄榄岩位错蠕变过程中粒间滑动所起的作用,对经脱水干燥的橄榄石集合体试件进行了一系列的变形试验。三轴压缩蠕变试验在T=1473K、P=200和400MPa条件下使用一台高分辨率气体介质变形装置进行,每个试件在介于100~250MPa之间的不同应力水平下变形,得到的应变率介于10^(-4)~10^(-6)S^(-1)之间。随着差应力的增加,得到扩散蠕变到位错蠕变的过渡,在位错蠕变域,易滑动体系在~50MPa和颗粒尺寸为15μm时伴随粒间滑动。这一粒径敏感蠕变域由应力指数3.2±0.1和粒径指数1.8±0.2来刻划。将这一流动律与其他扩散和位错蠕变结果进行对比,表明本文得出的流动律可应用于粒度小于100μm和差应力大于20MPa时的岩石流动。因此,与粒间滑动相伴的位错蠕变可能是上地幔岩石圈剪切带变形局部化的主要变形机制。 展开更多
关键词 橄榄石 高温高压 粒间滑动 位错蠕变 实验研究
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An adaptive smoothed particle hydrodynamics for metal cutting simulation
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作者 YiJin Cheng Yan Li +2 位作者 Ling Tao Pierre Joli Zhi-Qiang Feng 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第10期125-144,共20页
Normally large amounts of particles are required to accurately simulate the metal cutting process,which consumes a lot of computing time and storage.Adaptive techniques can help decrease the number of particles,hence ... Normally large amounts of particles are required to accurately simulate the metal cutting process,which consumes a lot of computing time and storage.Adaptive techniques can help decrease the number of particles,hence reducing the runtime.This paper presents a novel adaptive smoothed particle hydrodynamics(SPH)method for the metal cutting simulation.The spatial resolution changes adaptively according to the distance to the tool tip by the particle splitting and merging.More particles are selected in the region where the workpiece and the tool are in contact.Since the contact region constantly changes during the cutting process,two quadrilateral frames are adopted in the adaptive algorithm to dynamically change the distribution of particles.One frame for the refinement,the other for the coarsening.These frames move at the same speed as the tool.To test the computational efficiency,the metal cutting process is simulated by using SPH with three different adaptive approaches.Numerical results show that the proposed adaptive algorithm with dynamic refinement and coarsening can significantly optimize the runtime. 展开更多
关键词 Smoothed particle hydrodynamics Metal cutting simulation Dynamic adaptive REFINEMENT COARSENING
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