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过冷Fe_(85)Ni_(15)熔体的结构及动力学研究
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作者 方腾 王丽 宫建红 《原子与分子物理学报》 CAS CSCD 北大核心 2012年第4期701-707,共7页
基于嵌入原子势(EAM),采用分子动力学(MD)模拟的方法探讨了过冷液态Fe_(85)Ni_(15)合金的微观结构及动力学性质.对B-T结构因子(SF)与相对长度(Correlation length)的分析发现:Fe_(85)Ni_(15)熔体具有相分离的趋势,但不十分明显.配位数(... 基于嵌入原子势(EAM),采用分子动力学(MD)模拟的方法探讨了过冷液态Fe_(85)Ni_(15)合金的微观结构及动力学性质.对B-T结构因子(SF)与相对长度(Correlation length)的分析发现:Fe_(85)Ni_(15)熔体具有相分离的趋势,但不十分明显.配位数(CN)及F-Z结构因子的计算结果证实了体系的短程序对应着二十面体结构.均方位移(MSD)的计算结果表明:Fe_(85)Ni_(15)合金属于脆性液体.将获得的扩散激活能与其它合金系进行对比发现扩散激活能并不能反映熔体的玻璃形成能力,熔体中的二十面体结构不利于非晶的形成. 展开更多
关键词 Fe85Ni15过冷熔体 结构动力学参数 二十面体短程序 扩散激活能 玻璃形成能力 分子动力学模拟
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Numerical simulation of effect of bionic V-riblet non-smooth surface on tire anti-hydroplaning 被引量:4
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作者 周海超 王国林 +1 位作者 杨建 薛开鑫 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3900-3908,共9页
Inspired by the idea that bionic non-smooth surfaces(BNSS) can reduce fluid adhesion and resistance, and the effect of bionic V-riblet non-smooth structure arranged in tire tread pattern grooves surface on anti-hydrop... Inspired by the idea that bionic non-smooth surfaces(BNSS) can reduce fluid adhesion and resistance, and the effect of bionic V-riblet non-smooth structure arranged in tire tread pattern grooves surface on anti-hydroplaning performance was investigated by using computational fluid dynamics(CFD). The physical model of the object(model of V-riblet surface distribution, hydroplaning model) and SST k-ω turbulence model were established for numerical analysis of tire hydroplaning. With the help of a orthogonal table L16(45), the parameters of V-riblet structure design compared to the smooth structure were analyzed, and obtained the priority level of the experimental factors as well as the best combination within the scope of the experiment. The simulation results show that V-riblet structure can reduce water flow resistance by disturbing the eddy movement in boundary layers. Then, the preferred type of V-riblet non-smooth structure was arranged on the bottom of tire grooves for hydroplaning performance analysis. The results show that bionic V-riblet non-smooth structure can effectively increase hydroplaning velocity and improve tire anti-hydroplaning performance. Bionic design of tire tread pattern grooves is a good way to promote anti-hydroplaning performance without increasing additional groove space, so that tire grip performance and roll noise are avoided due to grooves space enlargement. 展开更多
关键词 TIRE anti-hydroplaning bionic non-smooth surfaces(BNSS) numerical simulation
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