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复杂结构锻件的坯料质量分配
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作者 王星星 刘淑梅 +1 位作者 陈凯 何文涛 《上海工程技术大学学报》 CAS 2015年第1期19-22,26,共5页
基于对常见热锻成形零件结构的分析,研究了复杂锻件坯料的优化设计方法,并给出了以金属流长为中心的坯料质量分配原则.通过有限元模拟,研究了坯料设计对转向节热锻成形过程的影响.研究结果表明:当坯料的金属流长过大时,锻件容易出现充... 基于对常见热锻成形零件结构的分析,研究了复杂锻件坯料的优化设计方法,并给出了以金属流长为中心的坯料质量分配原则.通过有限元模拟,研究了坯料设计对转向节热锻成形过程的影响.研究结果表明:当坯料的金属流长过大时,锻件容易出现充不满和折叠的缺陷;当金属流长为负值时,飞边宽度过大造成材料浪费;合理地改变金属流长并不会使成形载荷和材料利用率大幅度波动,这为坯料优化设计提供了新思路. 展开更多
关键词 热锻成形 质量分配 金属流长 转向节 有限元法
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Effective Channel Length Degradation under Hot-Carrier Stressing
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作者 Anucha Ruangphanit Kunagone Kiddee +2 位作者 Rangson Muanghlua Surasak Niemcharoen Ampom Poyai 《Computer Technology and Application》 2011年第11期926-929,共4页
This article describes the effective channel length degradation under hot carrier stressing. The extraction is based on the IDs-Vcs characteristics by maximum transconductance (maximum slope of IDs & VGS) in the li... This article describes the effective channel length degradation under hot carrier stressing. The extraction is based on the IDs-Vcs characteristics by maximum transconductance (maximum slope of IDs & VGS) in the linear region. The transconductance characteristics are determine for the several devices of difference drawn channel length. The effective channel length of submicron LDD (Lightly Doped Drain) NMOSFETs (Metal Oxide Semiconductor Field Effect Transistor) under hot carrier stressing was measured at the stress time varying from zero to 10,000 seconds. It is shown that the effective channel length was increased with time. This is caused by charges trapping in the oxide during stress. The increased of effective channel length (△Leff) is seem to be increased sharply as the gate channel length is decrease. 展开更多
关键词 NMOSFETs (metal oxide semiconductor field effect transistor) effective channel length hot carrier stressing
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Phase-field simulation of dendritic growth in a forced liquid metal flow coupling with boundary heat flux 被引量:5
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作者 DU LiFei ZHANG Rong ZHANG LiMin 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第10期2586-2593,共8页
A phase-field model with forced liquid metal flow was employed to study the effect of boundary heat flux on the dendritic structure forming of a Ni-40.8%Cu alloy with liquid flow during solidification.The effect of th... A phase-field model with forced liquid metal flow was employed to study the effect of boundary heat flux on the dendritic structure forming of a Ni-40.8%Cu alloy with liquid flow during solidification.The effect of the flow field coupling with boundary heat extractions on the morphology change and distributions of concentration and temperature fields was analyzed and discussed.The forced liquid flow could significantly affect the dendrite morphology,concentration and temperature distributions in the solidifying microstructure.And coupling with boundary heat extraction,the solute segregation and concentration diffusion were changed with different heat flux.The morphology,concentration and temperature distributions were significantly influenced by increasing the heat extraction,which could relatively make the effect of liquid flow constrained.With increasing the initial velocity of liquid flow,the lopsided rate of the primary dendrite arm was enlarged and the transition of developing manner of the secondary arms moved to the large heat extraction direction.It was the competition between heat flux and forced liquid flow that finally determined microstructure forming during solidification. 展开更多
关键词 phase-field simulation liquid flow heat flux SOLIDIFICATION
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Numerical simulation of shock wave interaction with a deformable particle based on the pseudo arc-length method 被引量:9
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作者 NING JianGuo WANG Xing +1 位作者 MA TianBao WANG Cheng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第5期848-857,共10页
In this paper, we combine the pseudo arc-length numerical method with the mathematical model of multiphase compressible flow for simulating the shock wave interaction with a deformable particle. Firstly, an arc-length... In this paper, we combine the pseudo arc-length numerical method with the mathematical model of multiphase compressible flow for simulating the shock wave interaction with a deformable particle. Firstly, an arc-length parameter is introduced to weaken the discontinuous singularity of governing equations, and an efficient pseudo arc-length numerical method of multiphase compressible flow is proposed. Then the accuracy and adaptive moving mesh property of this algorithm are tested. Finally, the multiphase pseudo arc-length numerical method is applied to the problem of interaction between shock wave and the deformable particle. Through the flow flied change and data analysis of key points, it can be found the complex wave structures are presented after the interactions between the planar incident shock wave and the metal particle, and all these wave interactions lead to the movement and deformation of metal particle, and then the deformed particle will affect the transmitted shock wave back. According to the discussion, the deformation of particle and shock wave propagation in the particle are determined by the shock wave impedance of each medium and shock speed, so the interaction between shock wave and the deformable particle can be studied on the basis of physical properties of explosive mediums. 展开更多
关键词 multiphase compressible length singularity deformed governing simulating impedance explosive discussion
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