Journal Title:International Journal Of Fatigue
Typical subjects discussed in International Journal of Fatigue address:
Novel fatigue testing and characterization methods (new kinds of fatigue tests, critical evaluation of existing methods, in situ measurement of fatigue degradation, non-contact field measurements)
Multiaxial fatigue and complex loading effects of materials and structures, exploring state-of-the-art concepts in degradation under cyclic loading
Fatigue in the very high cycle regime, including failure mode transitions from surface to subsurface, effects of surface treatment, processing, and loading conditions
Modeling (including degradation processes and related driving forces, multiscale/multi-resolution methods, computational hierarchical and concurrent methods for coupled component and material responses, novel methods for notch root analysis, fracture mechanics, damage mechanics, crack growth kinetics, life prediction and durability, and prediction of stochastic fatigue behavior reflecting microstructure and service conditions)
Models for early stages of fatigue crack formation and growth that explicitly consider microstructure and relevant materials science aspects
Understanding the influence or manufacturing and processing route on fatigue degradation, and embedding this understanding in more predictive schemes for mitigation and design against fatigue
Prognosis and damage state awareness (including sensors, monitoring, methodology, interactive control, accelerated methods, data interpretation)
Applications of technologies associated with fatigue and their implications for structural integrity and reliability. This includes issues related to design, operation and maintenance, i.e., life cycle engineering
Smart materials and structures that can sense and mitigate fatigue degradation
Fatigue of devices and structures at small scales, including effects of process route and surfaces/interfaces.
International Journal of Fatigue 地址中讨论的典型主题:
新型疲劳测试和表征方法(新型疲劳测试、现有方法的批判性评估、疲劳退化的原位测量、非接触现场测量)
材料和结构的多轴疲劳和复杂载荷效应,探索循环载荷下退化的最新概念
高循环状态下的疲劳,包括从表面到地下的失效模式转变、表面处理、加工和加载条件的影响
建模(包括退化过程和相关驱动力、多尺度/多分辨率方法、耦合组件和材料响应的分层计算和并发方法、缺口根分析的新方法、断裂力学、损伤力学、裂纹扩展动力学、寿命预测和耐久性,以及反映微观结构和使用条件的随机疲劳行为预测)
明确考虑微观结构和相关材料科学方面的疲劳裂纹形成和扩展早期阶段的模型
了解对疲劳退化的影响或制造和加工路线,并将这种理解嵌入到更具预测性的方案中,以缓解和设计抗疲劳
预测和损伤状态感知(包括传感器、监测、方法、交互控制、加速方法、数据解释)
与疲劳相关的技术应用及其对结构完整性和可靠性的影响。这包括与设计、运营和维护相关的问题,即生命周期工程
可以感知和缓解疲劳退化的智能材料和结构
小规模设备和结构的疲劳,包括工艺路线和表面/界面的影响。
大类学科 | 小类学科 | 分区 | Top期刊 | 综述期刊 |
材料科学 | ENGINEERING, MECHANICAL 工程:机械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 | 1区 | 是 | 是 |
大类学科 | 小类学科 | 分区 |
材料科学 | ENGINEERING, MECHANICAL 工程:机械 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 | 1区 |
期刊名称 | 领域 | 中科院分区 | 影响因子 |
Transactions Of Nonferrous Metals Society Of China | 材料科学 | 1区 | 4.500 |
Transactions Of Nonferrous Metals Society Of China | 材料科学 | 1区 | 4.500 |
Electrochemical Energy Reviews | 材料科学 | 1区 | 31.300 |
Npj Computational Materials | 材料科学 | 1区 | 9.700 |
International Materials Reviews | 材料科学 | 1区 | 16.100 |
Ndt & E International | 材料科学 | 1区 | 4.200 |