具有旋转方形的机械超材料非线性力学和互动性的多尺度实验表征

IF 7.1 2区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES Composite Structures Pub Date : 2025-03-01 Epub Date: 2025-02-05 DOI:10.1016/j.compstruct.2025.118931
Kazi Zahir Uddin , Matthew Heras , George Youssef , Thomas Kiel , Behrad Koohbor
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引用次数: 0

摘要

由旋转正方形制成的负泊松比结构由于其可调的形状控制、强度和应变能吸收能力而引起了相当大的关注。本研究旨在探讨增材制造的旋转方形增材在压缩载荷作用下的中尺度运动学与宏观力学行为之间的相互关系。具体而言,通过实验测量和数学模型的结合,研究了网格的旋转自由度、单元铰链的力学变形与宏观非线性力学和泊松行为之间的相关性。采用立体光刻增材制造技术制备了可变单元铰链厚度的结构,然后在准静态和动态条件下承受应变速率相差几个数量级的压缩载荷。利用数字图像相关(DIC)分析了每种情况下结构的多尺度力学变形。实验表征表明,在所检测的结构中存在强烈的非线性和速率敏感的形变行为。讨论了单元铰厚度的作用,根据这些组件施加的机械约束的旋转自由度的实体正方形在结构中,同时造成非线性应变硬化行为。
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Multiscale experimental characterization of nonlinear mechanics and auxeticity in mechanical metamaterials with rotating squares
Auxetic (negative Poisson’s ratio) structures made from rotating squares have attracted considerable attention due to their tunable shape control, strength, and strain energy absorption capacity. The present study aims to explore the interrelations between mesoscale kinematics and the macroscopic mechanical behavior of additively manufactured rotating-square auxetics under compressive loads. Specifically, correlations between the rotational degree of freedom of the squares, mechanical deformation of the cell hinges, and the macroscopic nonlinear mechanical and Poisson’s behaviors are investigated using experimental measurements supplemented by mathematical models. Structures with variable cell hinge thicknesses are fabricated by stereolithography additive manufacturing technique and then subjected to compressive loads applied at quasi-static and dynamic conditions with several orders of magnitude difference in strain rate. Multiscale mechanical deformation of the structure in each case is analyzed using digital image correlation (DIC). Experimental characterizations indicate strongly nonlinear and rate-sensitive auxetic behaviors in the examined structures. The role of cell hinge thickness is discussed in terms of the mechanical constraint that these components impose on the rotational degree of freedom of the solid squares in the structure, concurrently causing a nonlinear strain hardening behavior.
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来源期刊
Composite Structures
Composite Structures 工程技术-材料科学:复合
CiteScore
12.00
自引率
12.70%
发文量
1246
审稿时长
78 days
期刊介绍: The past few decades have seen outstanding advances in the use of composite materials in structural applications. There can be little doubt that, within engineering circles, composites have revolutionised traditional design concepts and made possible an unparalleled range of new and exciting possibilities as viable materials for construction. Composite Structures, an International Journal, disseminates knowledge between users, manufacturers, designers and researchers involved in structures or structural components manufactured using composite materials. The journal publishes papers which contribute to knowledge in the use of composite materials in engineering structures. Papers deal with design, research and development studies, experimental investigations, theoretical analysis and fabrication techniques relevant to the application of composites in load-bearing components for assemblies, ranging from individual components such as plates and shells to complete composite structures.
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