Combined bending-tension/compression deformation of micro-bars accounting for strain-driven long-range interactions

IF 1.1 4区 工程技术 Q3 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Archives of Mechanics Pub Date : 2019-02-27 DOI:10.24423/AOM.3031
N. Zhang, J. Yan, C. Li, J. Zhou
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引用次数: 6

Abstract

The paper aims to investigate combined bending-tension/compression deformation of a micro-bar. The strain-driven nonlocal differential model which involves information about long-range interactions between atoms is used to develop the mechanical model and theoretical formulations. Subsequently, effects of internal long-range scale parameter, length of micro-bar, external loads and bending rigidity on combined deformation are shown and discussed. In particular, the upper bound of internal longrange scale parameter and the buckling load are achieved during bending-compression analyses. It is demonstrated that the existence of internal scale parameter or axial tensile load decreases combined deformation. The deflection at the midpoint reduces with increasing bending rigidity, while it rises with increasing length of the microbar. Additionally, an effect of the acting position of transverse load on combined deformation is discussed and deflection at the symmetry point of transverse acting position is achieved. When the long-range interaction is taken into consideration, the equivalent stiffness of the micro-bar subjected to combined bending-tension is stiffer than that predicted by classical mechanics, and it validates the existing nonlocal hardening model. The combined bending-compression of the micro-bar reveals that the deflection may increase or decrease with an increase in the long-range scale or structural length, which verifies both the nonlocal softening and hardening models.
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考虑应变驱动的远程相互作用的微杆弯曲-拉伸/压缩组合变形
本文旨在研究微棒的弯曲-拉伸/压缩组合变形。利用包含原子间远程相互作用信息的应变驱动非局部微分模型建立了力学模型和理论公式。分析了内长尺度参数、微杆长度、外载荷和抗弯刚度对组合变形的影响。特别是在弯曲压缩分析中,得到了内部远程尺度参数和屈曲载荷的上界。结果表明,内部尺度参数或轴向拉伸载荷的存在会降低组合变形。中点挠度随弯曲刚度的增加而减小,随微杆长度的增加而增大。此外,还讨论了横向荷载作用位置对组合变形的影响,得到了横向荷载作用位置对称点处的挠度。考虑远程相互作用时,微杆在弯曲-拉伸联合作用下的等效刚度比经典力学预测的刚度更大,验证了现有的非局部硬化模型。微杆的弯曲-压缩组合结果表明,挠度随长尺度或结构长度的增加而增大或减小,验证了非局部软化和硬化模型。
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来源期刊
Archives of Mechanics
Archives of Mechanics 工程技术-材料科学:表征与测试
CiteScore
1.40
自引率
12.50%
发文量
0
审稿时长
>12 weeks
期刊介绍: Archives of Mechanics provides a forum for original research on mechanics of solids, fluids and discrete systems, including the development of mathematical methods for solving mechanical problems. The journal encompasses all aspects of the field, with the emphasis placed on: -mechanics of materials: elasticity, plasticity, time-dependent phenomena, phase transformation, damage, fracture; physical and experimental foundations, micromechanics, thermodynamics, instabilities; -methods and problems in continuum mechanics: general theory and novel applications, thermomechanics, structural analysis, porous media, contact problems; -dynamics of material systems; -fluid flows and interactions with solids. Papers published in the Archives should contain original contributions dealing with theoretical, experimental, or numerical aspects of mechanical problems listed above. The journal publishes also current announcements and information about important scientific events of possible interest to its readers, like conferences, congresses, symposia, work-shops, courses, etc. Occasionally, special issues of the journal may be devoted to publication of all or selected papers presented at international conferences or other scientific meetings. However, all papers intended for such an issue are subjected to the usual reviewing and acceptance procedure.
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