考虑阻尼效应的石膏试样循环加载和卸载应变方程及损伤演变

IF 4 2区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY International Journal of Damage Mechanics Pub Date : 2024-05-17 DOI:10.1177/10567895241253735
Di Wu, Laiwang Jing, Wei Jing, Shaochi Peng
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引用次数: 0

摘要

本研究旨在通过考虑阻尼建立石膏试样的应变瞬时方程和损伤因子演变规律。首先,根据单自由度振动模型计算阻尼能,并根据应力平衡方程得到瞬时应变方程。其次,将耗散能分为阻尼能和损伤能,并得出损伤因子修正算法。第三,在不同加载速率和应力幅值下进行循环加载和卸载试验,以验证应变方程的准确性。最后,利用力矩张量声发射模拟监测了试样的振幅曲线和裂纹特征。分析了影响阻尼能量和应变方程的因素、试样的能量和损伤演变规律以及不同加载速率下试样的损伤模式。结果表明,瞬时应变方程和考虑阻尼效应的修正损伤因子能有效反映试样的变形规律和损伤状态。相比之下,变应力实验下限试样的损伤程度低于恒应力实验下限试样的损伤程度。随着加载速率的增加,试样的损伤能量密度降低,单周期内的损伤因子逐渐减小。随着加载速率的增加,模型中裂纹事件的数量显著增加,尺寸变得更加均匀,并依次呈现出密集和稀疏的分布模式,剪切裂纹的百分比显著下降,混合裂纹的数量显著增加,试样的脆性行为变得明显,并达到完全破坏状态,即 "破碎 "状态。这项研究为受到扰动载荷作用的粘弹性塑料材料的损伤评估提供了理论参考。
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Cyclic loading and unloading strain equations and damage evolution of gypsum specimens considering damping effects
This study aims to establish a strain instanton equation and damage factor evolution law for gypsum specimens by considering damping. First, damping energy is calculated based on the single-degree-of-freedom vibration model, and the instantaneous strain equation is obtained based on the stress balance equation. Second, the dissipation energy is divided into damping and damage energies, and a damage-factor correction algorithm is obtained. Third, cyclic loading and unloading tests were performed at different loading rates and stress amplitudes to verify the accuracy of the strain equation. Finally, the specimens’ magnitude curves and crack characteristics were monitored using moment–tensor acoustic emission simulations. The factors influencing the damping energy and strain equations, energy and damage evolution laws of the specimens, and damage patterns of the specimens at different loading rates were analysed. The results show that the instantaneous strain equation and the modified damage factor considering the damping effect can effectively reflect the deformation law and damage state of the specimens. In contrast, the damage to the specimens in the lower limit of the variable stress experiment was lower than that in the lower limit of the constant stress experiment. As the loading rate increases, the damage energy density of the specimen decreases, and the damage factor within a single cycle gradually decreases. As the loading rate increases, the number of crack events in the model increases significantly, size becomes more uniform, and sequentially exhibits dense and sparse distribution patterns, percentage of shear cracks decreases significantly, number of mixed cracks increases significantly, brittle behaviour of the specimen becomes obvious, and a complete damage state is attained known as the ‘crushed’ state. This study provides a theoretical reference for damage assessments of viscoelastic–plastic materials subjected to perturbing loads.
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来源期刊
International Journal of Damage Mechanics
International Journal of Damage Mechanics 工程技术-材料科学:综合
CiteScore
8.70
自引率
26.20%
发文量
48
审稿时长
5.4 months
期刊介绍: Featuring original, peer-reviewed papers by leading specialists from around the world, the International Journal of Damage Mechanics covers new developments in the science and engineering of fracture and damage mechanics. Devoted to the prompt publication of original papers reporting the results of experimental or theoretical work on any aspect of research in the mechanics of fracture and damage assessment, the journal provides an effective mechanism to disseminate information not only within the research community but also between the reseach laboratory and industrial design department. The journal also promotes and contributes to development of the concept of damage mechanics. This journal is a member of the Committee on Publication Ethics (COPE).
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