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《MECHANICS OF ADVANCED MATERIALS AND STRUCTURES》中科院JCR分区

  • 2025年3月升级版:
  • 大类小类学科Top综述期刊
    材料科学 3区
    MATERIALS SCIENCE, CHARACTERIZATION & TESTING
    材料科学:表征与测试
    3区
    MATERIALS SCIENCE, COMPOSITES
    材料科学:复合
    4区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    4区
    MECHANICS
    力学
    4区

  • 2023年12月升级版:
  • 大类小类学科Top综述期刊
    材料科学 3区
    MATERIALS SCIENCE, CHARACTERIZATION & TESTING
    材料科学:表征与测试
    3区
    MATERIALS SCIENCE, COMPOSITES
    材料科学:复合
    4区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    4区
    MECHANICS
    力学
    4区

    《MECHANICS OF ADVANCED MATERIALS AND STRUCTURES》期刊简介:

    The central aim of Mechanics of Advanced Materials and Structures ( MAMS) is to promote the dissemination of significant developments and publish state-of-the-art reviews and technical discussions of previously published papers dealing with mechanics aspects of advanced materials and structures. Refereed contributions describing analytical, numerical, and experimental methods and hybrid approaches that combine theoretical and experimental techniques in the study of advanced materials and structures are published, along with critical surveys of the literature and discussions of papers in the field.

    Mechanics of layered structures, with layers of any materials (metallic, foams, piezoelectric, composites, ceramic, functionally graded, etc.) at various scales, milli/micro/nano-meter is of MAMS interest. Applications to structures subjected to mechanical, thermal, electrical, magnetical, hygrothermal, etc., as well as any coupled combinations of these all are of interests for MAMS. That is mechanics of multi-fields problems at various scale are of interest for MAMS, including fluid-strictures interactions.

    Static and dynamic as well linear and nonlinear problems are of interest; advanced development of new materials with applications to automotive, civil, marine, aeronautical, space and bioengineering structures at various scales are of interest of this journal. Of special interest are methods and techniques for a better understanding of mechanics of metamaterials as well as the interaction with additive manufacturing technologies.

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