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深过冷液态金属Cu的热物理性质和原子分布
  • ISSN号:0412-1961
  • 期刊名称:《金属学报》
  • 时间:0
  • 分类:O469[理学—凝聚态物理;理学—电子物理学;理学—物理]
  • 作者机构:西北工业大学应用物理系,西安710072
  • 相关基金:国家自然科学基金项目Nos.51474175和51522102及陕西省工业科技攻关项目No.2015GY138
中文摘要:

针对液态金属Cu在深过冷亚稳条件下的热物理性质和液态结构数据缺乏的问题,采用分子动力学方法结合修正嵌入原子势,研究了常规液态和亚稳液态金属Cu的热物理性质(熔点、密度、比热容和自扩散系数)和原子分布规律,体系温度范围为800~2400K,最大过冷度达到556K。通过构建晶体.液体一晶体结构,探索了金属Cu的熔化过程,获得最优的熔点计算温度为1341K,与实验值误差1.11%。获得了宽广温度范围内液态金属Cu的密度随温度的变化规律,采用Mishin势函数计算的熔点处密度模拟值为7.86g/cm3,与文献报道的实验结果的误差小于2%。液态金属Cu的焓在800~2400K范围内随温度呈线性关系变化,即比热容几乎不随过冷度变化而变化,而自扩散系数则随温度呈指数关系变化。根据不同温度原子的位置变化,获得了相应的双体分布函数,发现液态体系始终处于短程有序、长程无序的状态,且原子短程有序度随温度升高而降低,短程有序结构仅保持在3-4个原子间距范围内,且随间距增大而展现出典型的无序特征。

英文摘要:

Cu is commonly used in the field of electricity and electronics because of its high ductility, and electrical and thermal conductivity. The thermophysical properties and the atomic structure of liquid Cu, especially for undercooled state, are of practical significance in both application and fundamen- tal researches. The major approaches to obtain thermophysical properties of undercooled metals are con- tainedess techniques based on electrostatic levitation, electromagnetic levitation and ultrasonic levitation et al. However, the strong volatility of liquid Cu results in great difficulties to measure the thermophysical properties. Accordingly, computational prediction is becoming an expected method to obtain the thermo- physical data of liquid Cu. The molecular dynamics (MD) simulation, in combination with a resonable potential model, has been extensively employed in studying the physical properties of several metals as a powerful approach. In this work, the atomic distribution and thermophysical properties including melting temperature, density, specific heat and self-diffusion coefficient of liquid Cu were studied by molecular dynamics simulation. Mishin's and Zhou's embedded-atom method potentials, and the modified embedded-atom method potential proposed by Baskes were used over the temperature range of 800-2400 K, reaching the maximum undercooling of 556 K. The simulated results are in good agreement with the re- ported experimental results. The crystal-liquid-crystal sandwich structure has been used to calculate the melting point. The melting point calculated by Baskes' potential model is 1341 K, just a difference of 1.11% from the experimental value. The density at the melting point calculated by Mishin's potential is 7.86 g/cm2, with a difference less than 2% compared with the reported data. It is found that the enthalpy of liquid Cu increases linearly with the increase of temperature. The specific heat is obtained to be 31.89 J/(moI.K) by Mishin's potential, which is constant in the corr

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期刊信息
  • 《金属学报》
  • 中国科技核心期刊
  • 主管单位:中国科学协术协会
  • 主办单位:中国金属学会
  • 主编:柯俊
  • 地址:沈阳文化路72号
  • 邮编:110016
  • 邮箱:shxiao@imr.ac.cn
  • 电话:024-23971286
  • 国际标准刊号:ISSN:0412-1961
  • 国内统一刊号:ISSN:21-1139/TG
  • 邮发代号:2-361
  • 获奖情况:
  • 第一、二届全国优秀科技期刊评比一等奖,第一、二、三届国家期刊奖,国家期刊方阵"双高"期刊,第一、二、三届中国科学院科技期刊评比一等奖,中国科学院优秀期刊特别奖,第一、二、三、五届中国科协优秀科技期刊评比一等奖,中国科协精品期刊工程A类、B类,第一、二、三、四、五届中国百种杰出学术期刊,首届出版政府奖
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  • 被引量:26785