您当前位置: 首页 > 国际期刊-Shape Memory and Superelasticity期刊投稿发表详细信息
Shape Memory and Superelasticity

Shape Memory and Superelasticity Q3

  • 期刊收录:
  • ESCI
  • Scopus
基本信息
  • 期刊ISSN:

    2199-384X

  • 期刊简拼:

    SHAPE MEM SUPERELAST

  • 年发文章数:

    51

  • E-ISSN:

    2199-3858

  • Gold OA文章占比

    21.49%

  • 研究文章占比:

    82.35%

  • 是否OA:

    No

  • Jcr分区:

    Q3

  • 中科院分区:

出版信息
  • 出版商:

    Springer Nature

  • 涉及研究方向:

    MATERIALS SCIENCE, MULTIDISCIPLINARY-

  • 出版国家:

  • 出版语言:

  • 出版周期:

    4 issues per year

  • 出版年份:

  • 2023-2024最新影响因子:2.6
  • 自引率:11.50%
  • 五年影响因子:2.6
  • JCI期刊引文指标:0.43
  • h-index:暂无h-index数据
  • CiteScore:4.20

期刊关键词

3区ESCIScopus

期刊简介

The Shape Memory and Superelasticity journal invites original peer-reviewed papers that focus on shape memory materials research with contributions from materials science, materials engineering, experimental and theoretical mechanics, mathematics and physics. Of particular interest is to understand the response of these materials to   external stimuli such as force, displacement, temperature, magnetic fields, irradiation, corrosive media and so on in pursuit of uncovering new phenomenon, new materials and new applications as follows: (i) the journal papers will examine these materials utilizing the principles of continuum mechanics, micromechanics, microstructuraly informed constitutive modeling, atomistic models, mathematics of microstructures and other methodologies. (ii) the development  and use of advanced experimental techniques to expose and understand the shape memory response including thermal and mechanical cycling, application of magnetic and other external fields,  (iii) the exploration and further understanding of  shape memory materials due to fatigue, fracture and environmental factors are of significant interest,  (iv) novel applications of the materials will be explored in all areas including bio-medical devices, actuators, thin films, robotics, mechanical and aerospace engineering components, civil engineering structures, and micro-electromechanical systems (MEMS).  Specifically, the journal will include the following topics: (1) Behavior of all classes of shape memory materials including metals, non-metals (such as shape memory ceramics, shape memory polymers) and shape memory composites, (2) Stress-strain response in thermo-mechanical loadings (experimental observations and modeling), (3) Life prediction methodologies (different approaches including fracture mechanics, role of grain boundaries, the role of slip and twinning on shape memory behavior, crack nucleation modeling), (4) Thermodynamics of the transformation, the fundamentals of superelasticity and related areas such as twinning, detwinning, residual martensites, (5) Solutions of shape memory problems in industry (including biomedical, electronic,  MEMS, microdevice and microactuator applications and applications in aero-, civil-, mechanical, electrical and other engineering disciplines),  (6) Critical experiments that shed insight into shape memory behavior including digital image correlation, diffraction methodologies (including those using high energy sources), in-situ microscopy, infra red imaging techniques,  and conventional and nano mechanical testing methods,   (7) Novel experimental techniques for shape memory response (ranging from specimens of micron size, wires, laboratory specimens, rings, bent beams, complex shapes to components, and complex loading conditions), (8) Single Crystals and polycrystals of shape memory metals highlighting the role of texture and orientation effects on superelasticity and recoverable strain levels,  and the role of different processing methods on the SMA response, (9) Shape memory response under coupled mechanical-magnetic fields, irradiation effects, magnetic shape memory and thermo-caloric effects, high temperature applications, (10) Alloy design (with cognizance of the chemical composition of underlying phases and crystallography) to tailor the properties to achieve shape memory materials with improved functionality in applications, (11) Surface engineering, corrosion and interaction of SMAs with fluids, behavior of shape memory thin films, and shape memory at nanoscale, (12) Application of atomistic methods (density functional theory and molecular dynamics) to gain insight into properties of such materials and enlighten shape memory alloy design with these materials, (13) Production and processing of shape memory alloys, including shape memory metals, shape memory polymers, shape memory ceramics, thin films, nanosize objects and specimens, and hybrids.  Niche-  The Journal of Shape Memory and Superelasticity supplies the readers with knowledge focused on shape memory materials and highlighting contributions that could influence other disciplinary fields in engineering, sciences,  and medicine.  The journal brings together the latest innovations in this ever-expanding field. The journal provides a forum for researchers, scientists and engineers of varied disciplines to access information about shape memory materials. The journal is aimed at disclosing the most pertinent needs in this area and providing a systematic approach to address these needs with experiments, theory  and simulation. Articles are authored to describe results from original research and provide technical information that can be appreciated by readers in the subdisciplines while providing significant results that may foster research in applications and related areas.  Therefore, the information provided can be utilized in many different disciplines, including medical device design, energy harvesting, structural damping and so on.

《Shape Memory and Superelasticity》期刊已被查看:
期刊简写:SHAPE MEM SUPERELAST

此期刊被最新的JCR期刊ESCI收录

期刊信息

  • 通讯地址
  • 中国科学院《国际期刊预警名单(试行)》名单
  • 2024年02月发布的2024版:不在预警名单中
    2023年01月发布的2023版:不在预警名单中
    2021年12月发布的2021版:不在预警名单中
    2020年12月发布的2020版:不在预警名单中
    此期刊被最新的JCR期刊ESCI收录
  • 审稿速度
  • 收录数据库
  • 是否oa
  • 研究方向
  • ESCI,Scopus
  • No
  • MATERIALS SCIENCE, MULTIDISCIPLINARY-

分区信息

中科院分区
  • 大类学科
  • 分区
  • 小类学科
  • Top期刊
  • 综述期刊
  • 此期刊未被最新的 JCR 收录
WOS分区等级:3区
  • 版本
  • 按学科
  • 分区
  • 影响因子
  • WOS期刊SCI分(2023-2024年最新版)
  • MATERIALS SCIENCE
    MULTIDISCIPLINARY
  • Q3
  • 2.6
IF值(影响因子)趋势图
年发文量趋势图
自引率趋势图
中科院分区

常见问题

  • sci四区价格多少算合理?

     一篇sci4区是sci里最便宜的了 价格一般在3-4左右,如果有人告诉你几k就能发或者五位数出头,个人建议谨慎一点,不能因为贪小便宜吃大亏如果四区就能满足学