INTERNATIONAL JOURNAL OF PLASTICITY

INTERNATIONAL JOURNAL OF PLASTICITY(英文缩写 INT J PLASTICITY),ISSN 0749-6419,eISSN 1879-2154 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
15.400
JCR 分区
Q1
CAS 分区
B1
近一年发文量
1
本站 PubMed 收录统计

发文量统计区间:2025-09-21 至 2026-09-21,按本站收录文献的发表日期统计。

指标来源:jcr_cas_ifqb

ISSN: 0749-6419 · eISSN: 1879-2154 · 缩写: INT J PLASTICITY

期刊简介

暂无简介。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20218.500Q1
20229.800Q1
20239.400Q1
202412.800Q1
202515.400Q1

INTERNATIONAL JOURNAL OF PLASTICITY 最新收录文献

  1. JCR分区: Q1 CAS分区: B1 影响因子: 15.4

    1. Constitutive modelling of hydrolytic degradation and viscoplasticity in glassy polymers: An effective temperature approach.

    作者:
    Zhouzhou Pan, Huanming Chen, Laurence Brassart
    日期:
    2026-06-01

    Hydrolysis is the primary degradation mechanism in biodegradable polymers in aqueous environments, involving water diffusion and polymer chain scission. These two processes dynamically alter the composition of the polymer, significantly influencing its thermomechanical properties and deformation beh…

  2. JCR分区: Q1 CAS分区: B1 影响因子: 15.4

    2. Quasi-static and dynamic response, and texture evolution of two overaged Al 7056 alloy plates in T761 and T721 tempers: Experiments and modeling.

    作者:
    Angela Y Ku, Akhtar S Khan, Thomas Gnäupel-Herold
    日期:
    2020-07-01

    The thermo-mechanical behavior and texture evolution of two overaged Al 7056 alloy plates, in T761 and T721 tempers, are measured over a wide range of strain rates (10 - 3 × 10 s) and temperatures (22-300 °C) under uniaxial tension and compression along the thickness direction, i.e. normal to the pl…

  3. JCR分区: Q1 CAS分区: B1 影响因子: 15.4

    3. Thermally-activated constitutive model including dislocation interactions, aging and recovery for strain path dependence of solid solution strengthened alloys: Application to AA5754-O.

    作者:
    Minh-Son Pham, Mark Iadicola, Adam Creuziger, Lin Hu, Anthony D Rollett
    日期:
    2015-01-01

    A thermally-activated constitutive model is developed based on dislocation interactions, crystallographic orientations and microstructural evolution to describe the elasto-plastic stress-strain behavior during multi-axial loading. The aim is to contribute to the quantification of complex strain path…

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