加载模式对单轴蠕变-疲劳变形的影响基于位错的粘塑性构成模型

IF 9.4 1区 材料科学 Q1 ENGINEERING, MECHANICAL
Kai Song , Lianyong Xu , Lei Zhao , Yongdian Han , Ninshu Ma , Kaimeng Wang , Zhibao Ma , Yongchang Liu
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引用次数: 0

摘要

对 9Cr3Co3WCu 马氏体钢在 650 ℃ 下进行低循环疲劳试验、应变控制蠕变疲劳试验(SNCFTs)和混合应力-应变控制蠕变疲劳试验(HSSCFTs)时的应力-应变响应和微观结构演变进行了全面研究。在 HSSCFT 中,每个循环的蠕变应变累积表现出三个阶段:循环初期应变减少,随后是长时间的稳定增加,最后在断裂前迅速增加。与此相反,SNCFT 的蠕变应变累积在整个试验过程中呈现持续下降趋势。通过采用先进的表征技术,位错密度的演变在所有情况下都呈现出递减率,并且在 HSSCFT 中观察到了以蠕变空隙大为特征的断裂形态。因此,我们建立了一个基于位错的粘塑性构造模型,其中包含一个松弛参数、一个滑移变形阻力模型和一个与晶界相互作用的位错密度演化模型。在疲劳、蠕变、蠕变-疲劳和多步蠕变-疲劳试验中,所提出的模型在实验结果和模拟结果之间表现出了极好的一致性,从而证实了该模型能够全面捕捉各种加载模式下的循环变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of loading modes on uniaxial creep-fatigue deformation: A dislocation based viscoplastic constitutive model

A comprehensive investigation was conducted on the stress-strain responses and microstructural evolutions of 9Cr3Co3WCu martensitic steel at 650 ℃ subjected to low cycle fatigue tests, strain-controlled creep-fatigue tests (SNCFTs), and hybrid stress-strain-controlled creep-fatigue tests (HSSCFTs). The creep strain accumulation per cycle in HSSCFTs exhibited three stages: an initial decrease in the early cycles, followed by a prolonged period of steady increase, culminating in a rapid increase prior to fracture. In contrast, the creep strain accumulation in SNCFTs showed a consistent decreasing trend throughout the test. Through the employment of advanced characterization techniques, the evolution of dislocation density exhibited a decreasing rate in all cases, and a fracture morphology characterized by a large size of creep voids was observed in HSSCFTs. Consequently, a dislocation-based viscoplastic constitutive model was developed, incorporating a relaxation parameter, a slip deformation resistance model and a dislocation density evolution model interacting with the grain boundary. The proposed model demonstrated excellent congruences under fatigue, creep, creep-fatigue, and multi-step creep- fatigue tests between experimental and simulated results, thereby confirming its capability to comprehensively capture cyclic deformation under various loading modes.

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来源期刊
International Journal of Plasticity
International Journal of Plasticity 工程技术-材料科学:综合
CiteScore
15.30
自引率
26.50%
发文量
256
审稿时长
46 days
期刊介绍: International Journal of Plasticity aims to present original research encompassing all facets of plastic deformation, damage, and fracture behavior in both isotropic and anisotropic solids. This includes exploring the thermodynamics of plasticity and fracture, continuum theory, and macroscopic as well as microscopic phenomena. Topics of interest span the plastic behavior of single crystals and polycrystalline metals, ceramics, rocks, soils, composites, nanocrystalline and microelectronics materials, shape memory alloys, ferroelectric ceramics, thin films, and polymers. Additionally, the journal covers plasticity aspects of failure and fracture mechanics. Contributions involving significant experimental, numerical, or theoretical advancements that enhance the understanding of the plastic behavior of solids are particularly valued. Papers addressing the modeling of finite nonlinear elastic deformation, bearing similarities to the modeling of plastic deformation, are also welcomed.
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