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负泊松比蜂窝抗冲击性能分析 被引量:26
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作者 侯秀慧 尹冠生 《机械强度》 CAS CSCD 北大核心 2016年第5期905-910,共6页
对一种新型蜂窝结构-负泊松比多凹角蜂窝及凹角蜂窝的面内抗冲击性能进行了系统分析。首先利用有限元软件Ansys/LS-DYNA分析了多凹角蜂窝及凹角蜂窝结构在不同速度冲击荷载作用下的变形模态,揭示了凹角蜂窝结构特有的负泊松比效应对提... 对一种新型蜂窝结构-负泊松比多凹角蜂窝及凹角蜂窝的面内抗冲击性能进行了系统分析。首先利用有限元软件Ansys/LS-DYNA分析了多凹角蜂窝及凹角蜂窝结构在不同速度冲击荷载作用下的变形模态,揭示了凹角蜂窝结构特有的负泊松比效应对提高其抗冲击强度的作用机制;随后根据经典理论模型,得出凹角蜂窝结构动力学强度的经验公式,与有限元结果的对比分析验证了所得理论经验公式的有效性,同时凹角蜂窝较传统正六边形蜂窝结构更高的动力学强度揭示了凹角蜂窝结构更优的吸能效果。 展开更多
关键词 多凹角蜂窝 有限元模拟 负泊松比 动力学强度 经验公式
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界面位错的瞬态运动和界面裂纹的自相似扩展
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作者 汪越胜 王铎 《宇航学报》 EI CSCD 北大核心 1996年第3期31-39,共9页
本文首先利用Fourier和Laplace变换并结合Cagniard-deHoop反演方法求解了单个界面螺位错的瞬态运动问题,然后以单个位错由静止匀速运动的解作为基本解建立奇异积分方程求解了运动集中载荷作用下界面裂纹... 本文首先利用Fourier和Laplace变换并结合Cagniard-deHoop反演方法求解了单个界面螺位错的瞬态运动问题,然后以单个位错由静止匀速运动的解作为基本解建立奇异积分方程求解了运动集中载荷作用下界面裂纹的反平面非对称自相似扩展。 展开更多
关键词 断裂动力学界面位错界面裂纹动应力强度因子
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Hyperchaos behaviors and chaos synchronization of two unidirectional coupled simplified Lorenz systems 被引量:1
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作者 孙克辉 汪艳 王艳丽 《Journal of Central South University》 SCIE EI CAS 2014年第3期948-955,共8页
To design a hyperchaotic generator and apply chaos into secure communication, a linear unidirectional coupling control is applied to two identical simplified Lorenz systems. The dynamical evolution process of the coup... To design a hyperchaotic generator and apply chaos into secure communication, a linear unidirectional coupling control is applied to two identical simplified Lorenz systems. The dynamical evolution process of the coupled system is investigated with variations of the system parameter and coupling coefficients. Particularly, the influence of coupling strength on dynamics of the coupled system is analyzed in detail. The range of the coupling strength in which the coupled system can generate hyperchaos or realize synchronization is determined, including phase portraits, Lyapunov exponents, and Poincare section. And the critical value of the system parameter between hyperchaos and synchronization is also found with fixed coupled strength. In addition, abundant dynamical behaviors such as four-wing hyperchaotic, two-wing chaotic, single-wing coexisting attractors and periodic orbits are observed and chaos synchronization error curves are also drawn by varying system parameter c. Numerical simulations are implemented to verify the results of these investigations. 展开更多
关键词 HYPERCHAOS chaos synchronization coupling control simplified Lorenz system
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Dynamic recrystallization behavior and kinetics of high strength steel 被引量:3
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作者 吴光亮 周超洋 刘新彬 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1007-1014,共8页
The dynamic recrystallization behavior of high strength steel during hot deformation was investigated.The hot compression test was conducted in the temperature range of 950-1150 °C under strain rates of 0.1,1 and... The dynamic recrystallization behavior of high strength steel during hot deformation was investigated.The hot compression test was conducted in the temperature range of 950-1150 °C under strain rates of 0.1,1 and 5 s-1.It is observed that dynamic recrystallization(DRX) is the main flow softening mechanism and the flow stress increases with decreasing temperature and increasing strain rate.The relationship between material constants(Q,n,α and ln A) and strain is identified by the sixth order polynomial fit.The constitutive model is developed to predict the flow stress of the material incorporating the strain softening effect and verified.Moreover,the critical characteristics of DRX are extracted from the stress-strain curves under different deformation conditions by linear regression.The dynamic recrystallization volume fraction decreases with increasing strain rate at a constant temperature or decreasing deformation temperature under a constant strain rate.The kinetics of DRX increases with increasing deformation temperature or strain rate. 展开更多
关键词 flow stress dynamic recrystallization kinetics high strength steel constitutive model material constants
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Zonal disintegration mechanism of isotropic rock masses around a deep spherical tunnel
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作者 谷新保 毕靖 许明 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4074-4082,共9页
In order to investigate zonal disintegration mechanism of isotropic rock masses around a deep spherical tunnel, a new mechanical model subjected to dynamic unloading under hydrostatic pressure condition is proposed. T... In order to investigate zonal disintegration mechanism of isotropic rock masses around a deep spherical tunnel, a new mechanical model subjected to dynamic unloading under hydrostatic pressure condition is proposed. The total elastic stress-field distributions is determined using the elastodynamic equation. The effects of unloading rate and dynamic mechanical parameters of isotropic deep rock masses on the zonal disintegration phenomenon of the surrounding rock masses around a deep spherical tunnel as well as the total elastic stress field distributions are considered. The number and size of fractured and non-fractured zones are determined by using the Hoek-Brown criterion. Numerical computation is carried out. It is found from numerical results that the number of fractured zones increases with increasing the disturbance coefficient, in-situ stress, unloading time and unloading rate, and it decreases with increasing parameter geological strength index, the strength parameter and the uniaxial compressive strength of intact rock. 展开更多
关键词 zonal disintegration mechanism isotropic rock mass spherical tunnel dynamic unloading
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Effect of strain rate and water-to-cement ratio on compressive mechanical behavior of cement mortar 被引量:6
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作者 周继凯 葛利梅 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1087-1095,共9页
Effects of strain rate and water-to-cement ratio on the dynamic compressive mechanical behavior of cement mortar are investigated by split Hopkinson pressure bar(SHPB) tests. 124 specimens are subjected to dynamic uni... Effects of strain rate and water-to-cement ratio on the dynamic compressive mechanical behavior of cement mortar are investigated by split Hopkinson pressure bar(SHPB) tests. 124 specimens are subjected to dynamic uniaxial compressive loadings.Strain rate sensitivity of the materials is measured in terms of failure modes, stress-strain curves, compressive strength, dynamic increase factor(DIF) and critical strain at peak stress. A significant change in the stress-strain response of the materials with each order of magnitude increase in strain rate is clearly seen from test results. The slope of the stress-strain curve after peak value for low water-to-cement ratio is steeper than that of high water-to-cement ratio mortar. The compressive strength increases with increasing strain rate. With increase in strain rate, the dynamic increase factor(DIF) increases. However, this increase in DIF with increase in strain rate does not appear to be a function of the water-to-cement ratio. The critical compressive strain increases with the strain rate. 展开更多
关键词 cement mortar loading rate compressive strength critical strain stress-strain behavior
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