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Journal of Phase Equilibria and Diffusion 中科院4区 JCR:Q4 JCR:Q3 SCIE EI CA PubMed JST
发文量 3,157
被引量 25,154
影响因子(2025版) 1.000

The Journal of Phase Equilibria and Diffusion (JPED) is an archival, peer-reviewed, bimonthly publication that focuses on the crystallographic, chemical, diffusion, thermodynamic, and kinetic properties of phases in inorganic materials systems with special emphasis on alloy systems. It features critically reviewed basic and applied research results, as well as critical phase diagram evaluations of scientifically and industrially important materials. JPED covers new research techniques, equipment, modeling, data evaluation, nomenclature, presentation, and other aspects, in particular phase diagram preparation and use. It includes information on kinetic control of equilibrium, phase transformation, solidification, coherency effects, impurity effects, and environmental performance.

  • 主办单位: SPRINGER
  • 出版地区: NEW YORK
  • 出版周期: 双月刊
  • 别名: J PHASE EQUILIB DIFF;J. Phase Equilib. Diffus.;Journal of Phase Equilibria & Diffusion;相平衡与扩散杂志;JOURNAL OF PHASE EQUILIBRIA AND DIFFUSION
  • 国际标准连续出版物号/电子版 ISSN 1547-7037 / EISSN 1863-7345
  • 创刊时间: 2004年
  • 曾用名: Journal of phase equilibria (Online)
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期刊信息

  • 主办单位:SPRINGER
  • 主  编:Ursula Kattner
  • 地  址: NEW YORK

期刊简介

The Journal of Phase Equilibria and Diffusion (JPED) is an archival, peer-reviewed, bimonthly publication that focuses on the crystallographic, chemical, diffusion, thermodynamic, and kinetic properties of phases in inorganic materials systems with special emphasis on alloy systems. It features critically reviewed basic and applied research results, as well as critical phase diagram evaluations of scientifically and industrially important materials. JPED covers new research techniques, equipment, modeling, data evaluation, nomenclature, presentation, and other aspects, in particular phase diagram preparation and use. It includes information on kinetic control of equilibrium, phase transformation, solidification, coherency effects, impurity effects, and environmental performance.