Liquids Under Negative Pressure

Liquids Under Negative Pressure
复制标题

负压液体

DOI:
--
复制
发表时间:
2002
期刊:
影响因子:
--
通讯作者:
P. Williams
P. Williams
中科院分区:
--
文献类型:
--
作者:
A. R. Imre;H. Maris;P. Williams

文献摘要

被引文献

相似文献

介绍。参加者照片。参与者。第一部分:稳定性、亚稳态和不稳定性。液体在张力作用下的稳定性极限[j] Speedy。负压下水溶液的极限过热度。负绝对温度或负绝对压力状态的经典热力学。来自实验室和医学研究的液体和玻璃的限制张力在最大密度温度附近大范围压力下极化水模型的热力学性质研究第二部分:负压下液体的物理化学。正负压下的水,斯坦利等。负压下熔炼线上液体的热物理性质负压下二元混合物的液-液相平衡。在绝对负压下测量液体和液体混合物的性质毛细管凝聚液体的极限拉伸强度。关于隐藏在负压区的棒状介层各向同性向列过渡的三临界点第三部分:负压和凝固。高聚物结晶过程中的负压发展。等规聚丙烯和聚亚甲基氧化物等温结晶过程中的空化现象。第四部分:负压下的氦气。液氦的亚稳态极限。M. Barranco,等。量子液体负压状态的量子蒙特卡罗研究[j]。液氦中电子对气泡成核的影响。亚稳态液氦的量子统计。第五部分:静态和动态张力时的空化现象。海水声空化阈值。基于经典成核理论和分子动力学模拟的液体空化用原子力显微镜研究空化现象。激波反射下液体中的空化阈值、自由表面和空腔簇动力学。脉冲加载下空化液体的弛豫效应和崩解问题。动应力作用下液体空化阈值的脉冲张力测量反射压力脉冲的负压尾:一种晶格-玻尔兹曼研究。室温下氟利昂的超声空化。第六部分:非均相成核。水/金属Berhelot管系统负压对金属中杂质气体种类的依赖异相形核,异相波动对空化强度的影响,以及含相夹杂液体的过冷性。
Introduction. Photograph of the participants. Participants. Part I: Stability, metastability and instability. Limits of stability for liquids under tension R.J. Speedy. Limiting superheat of aqueous solutions at negative pressures V.E. Vinogradov, P.A. Pavlov. Classical thermodynamics of states with negative absolute temperature or with negative absolute pressure K. Martinas, A.R. Imre. Limiting tensions for liquids and glasses from laboratory and MD studies Q. Zheng, et al. Investigation of the thermodynamic properties of a polarizable water model in a wide range of pressures around the temperature of maximum density P. Jedlovsky, R. Vallauri. Part II: Physical chemistry of liquids under negative pressure. Water at positive and negative pressures H.E. Stanley, et al. The thermophysical properties of liquids on the melting line at negative pressures M. Faizullin, V.P. Skripov. Liquid-liquid phase equilibria in binary mixtures under negative pressure A.R. Imre. Measuring the properties of liquids and liquid mixtures at absolute negative pressures L.P.N. Rebelo, et al. Limiting tensile strength of capillary-condensed liquids W.D. Machin. On the tricritical point of the isotropic-nematic transition in a rod-like mesogen hidden in the negative pressure region S.J. Rzoska, A. Drozd-Rzoska. Part III: Negative pressure and solidification. Negative pressure development during crystalization of polymers A. Galeski, E. Piorkowska. Cavitation during isothermal crystallization of isotactic polypropylene and poly(methylene oxide) E. Piorkowska, R. Nowacki. Part IV: Helium under negative pressure. The limits of metastability of liquid helium S. Balibar, F. Caupin. Cavitation in 3He-4He liquid mixtures M. Barranco,et al. A Quantum Monte Carlo study of the negative pressure regime in quantum liquids J. Boronat, J. Casulleras. Nucleation of bubbles on electrons in liquid helium H.J. Maris, D. Konstantinov. Quantum statistics of metastable liquid helium F. Caupin, S. Balibar. Part V: Cavitation during static and dynamic tensions. Acoustic cavitation thresholds of ocean water V.A. Akulichev. Cavitation in liquids by classical nucleation theory and molecular dynamics simulations C. Xiao, et al. A study of cavitation phenomena using an atomic force microscope M.S. Barrow, et al. Cavitation thresholds, free surface and cavity cluster dynamics in liquids at shock wave reflection A. Besov, et al. Relaxation effects and disintegration problems of cavitating liquids at pulse loading V.K. Kedrinskii. Measurement of the cavitation threshold of liquids under dynamic stressing by pulses of tension P.R. Williams, R.L. Williams. Negative pressure tail of a reflected pressure pulse: A lattice-Boltzmann study G. Hazi, A.R. Imre. Ultrasonic cavitation in freon at room temperature F. Caupin, V. Fourmond. Part VI: Heterogeneous nucleation. Dependence on kinds of impurity gases in metals of negative pressures in water/metal Berhelot tube systems Y. Ohde, Y. Tanzawa. Heterogeneous nucleation, influence of heterophase fluctuations on the cavitation strength, and the supercooling of liquids with phase inclusions V.A. Bulanov.