國際簡稱:INT J PLASTICITY 參考譯名:國際可塑性雜志
主要研究方向:材料科學:綜合-工程技術 非預警期刊 審稿周期: 約1.0個月 約9.1周
《國際可塑性雜志》(International Journal Of Plasticity)是一本由Elsevier Ltd出版的以材料科學:綜合-工程技術為研究特色的國際期刊,發(fā)表該領域相關的原創(chuàng)研究文章、評論文章和綜述文章,及時報道該領域相關理論、實踐和應用學科的最新發(fā)現(xiàn),旨在促進該學科領域科學信息的快速交流。該期刊是一本未開放期刊,近三年沒有被列入預警名單。該期刊享有很高的科學聲譽,影響因子不斷增加,發(fā)行量也同樣高。
The purpose of the journal is to report original research on all aspects of plastic deformation, damage and fracture behaviour of isotropic as well as anisotropic solids, including the thermodynamics of plasticity and fracture, continuum theory, and macroscopic as well as microscopic phenomena.
The topics of interest include plastic behaviour of single crystals and polycrystalline metals, ceramics, rocks and soils, composites, nanocrystalline and microelectronics materials, shape memory alloys, ferroelectric ceramics, thin films and polymers, as well as plasticity aspects of failure and fracture mechanics. Significant experimental, numerical or theoretical contributions advancing the understanding of plastic behaviour of solids are of special interest, together with studies relating macroscopic to the microscopic behaviour of solids. Papers on modeling of finite nonlinear elastic deformation, with similarities to modeling of plastic deformation, are also welcome.
The Journal will contain research papers, review articles, research notes, letters to the editor, and academic advertisements (books, journals, conferences, and symposia). Strain-rate dependent and strain-rate independent constitutive models to predict observed phemonena during quasi-static, dynamic or cyclic thermo-mechanical loading, behaviour of granular or porous solids under high confining pressures and at high temperatures, multiscale modeling of various deformation mechanisms (dislocation, twinning, and phase transformation), and models with capability for predicting the behaviour of composite materials based onknown plastic behaviour of matrix and fibers in such materials, are some examples of the main themes of this journal. Revealing applications of the new models of plasticity, including modelling of the observed phenomena in metal forming processes are also of interest.
CiteScore | SJR | SNIP | CiteScore 指數(shù) | ||||||||||||||||
15.3 | 2.894 | 2.356 |
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名詞解釋:CiteScore 是衡量期刊所發(fā)表文獻的平均受引用次數(shù),是在 Scopus 中衡量期刊影響力的另一個指標。當年CiteScore 的計算依據(jù)是期刊最近4年(含計算年度)的被引次數(shù)除以該期刊近四年發(fā)表的文獻數(shù)。例如,2022年的 CiteScore 計算方法為:2022年的 CiteScore =2019-2022年收到的對2019-2022年發(fā)表的文件的引用數(shù)量÷2019-2022年發(fā)布的文獻數(shù)量 注:文獻類型包括:文章、評論、會議論文、書籍章節(jié)和數(shù)據(jù)論文。
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
否 | 否 | 材料科學 | 1區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 1區(qū) 1區(qū) |
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
是 | 否 | 材料科學 | 1區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 1區(qū) 1區(qū) |
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
是 | 否 | 材料科學 | 1區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 1區(qū) 1區(qū) |
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
是 | 否 | 工程技術 | 2區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 3區(qū) 1區(qū) |
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
是 | 否 | 材料科學 | 1區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 1區(qū) 1區(qū) |
Top期刊 | 綜述期刊 | 大類學科 | 小類學科 | ||
是 | 否 | 材料科學 | 1區(qū) | ENGINEERING, MECHANICAL 工程:機械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科學:綜合 MECHANICS 力學 | 1區(qū) 1區(qū) 1區(qū) |
按JIF指標學科分區(qū) | 收錄子集 | 分區(qū) | 排名 | 百分位 |
學科:ENGINEERING, MECHANICAL | SCIE | Q1 | 4 / 180 |
98.1% |
學科:MATERIALS SCIENCE, MULTIDISCIPLINARY | SCIE | Q1 | 59 / 438 |
86.6% |
學科:MECHANICS | SCIE | Q1 | 4 / 170 |
97.9% |
按JCI指標學科分區(qū) | 收錄子集 | 分區(qū) | 排名 | 百分位 |
學科:ENGINEERING, MECHANICAL | SCIE | Q1 | 3 / 180 |
98.61% |
學科:MATERIALS SCIENCE, MULTIDISCIPLINARY | SCIE | Q1 | 27 / 438 |
93.95% |
學科:MECHANICS | SCIE | Q1 | 2 / 170 |
99.12% |
Author: Zhou, Yao; Hu, Qi; Chen, Jun
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 164, Issue , pp. -. DOI: 10.1016/j.ijplas.2023.103593
Author: Guo, Zixu; Song, Ziyuan; Ding, Xin; Guo, Kaimin; Liu, Hongzhuo; Yan, Han; Huang, Dawei; Yan, Xiaojun
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 165, Issue , pp. -. DOI: 10.1016/j.ijplas.2023.103600
Author: Zhang, Shuting; Ding, Xin; Gao, Xuefeng; Chen, Ruirun; Cao, Wenchao; Su, Yanqing; Guo, Jingjie
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 160, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103505
Author: Tian, Yu; Chen, Fei; Cui, Zhenshan; Tian, Xiao
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 160, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103504
Author: Yang, Hao; Zhou, Guowei; Wang, Huamiao; Wu, Peidong; Lee, Myoung-Gyu; Li, Dayong
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 160, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103499
Author: Wu, Bozhao; Wu, Yupeng; Pan, Yangyang; Liu, Ze
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 161, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103501
Author: An, Fengchao; Hou, Junhua; Liu, Jikui; Qian, Bingnan; Lu, Wenjun
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 160, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103509
Author: Cheng, Zinan; Zhang, Cunsheng; Meng, Zijie; Wang, Kuizhao; Chen, Liang; Ji, Zhong; Zhao, Guoqun
Journal: INTERNATIONAL JOURNAL OF PLASTICITY. 2023; Vol. 160, Issue , pp. -. DOI: 10.1016/j.ijplas.2022.103511
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