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Size-dependent mechanical behavior and boundary layer effects in entangled metallic wire material systems

机译:纠缠金属丝材料体系中与尺寸相关的力学行为和边界层效应

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摘要

This paper describes the influence on the compressive and dissipative behavior of entangled metallic wire material (EMWM) samples provided by their size and mutual connectivity. The mechanical properties of EMWM specimens with different thicknesses are obtained from quasi-static compressive and cyclic loading. The behavior of the stress-strain curves, tangent modulus, and loss factor are strongly dependent on the thickness of the samples. The analysis from samples connected in different layouts shows that apart from the global thickness, size scale effects and contact interface also play important roles in controlling the behavior of EMWM systems. The importance of the sample size and its connectivity with adjacent different layers are defined by the unique microstructure and contact properties of the wires near the specimen boundary layer. The boundary layer produces different mechanical behaviors and a distinct structural configuration compared to the EMWM bulk solid. These peculiar characteristics are confirmed by microstructural and qualitative observations obtained from computed tomography scanning. The results and analysis presented in this work are relevant to designing EMWM material systems with adaptive performance under different loading and geometric constraints.
机译:本文描述了纠缠金属线材料(EMWM)样品的尺寸和相互连通性对它们的压缩和耗散行为的影响。通过准静态压缩和循环载荷获得不同厚度的EMWM试样的力学性能。应力-应变曲线、切线模量和损耗因子的行为与样品的厚度密切相关。对不同布局连接的样品的分析表明,除了全局厚度外,尺寸尺度效应和接触界面在控制EMWM系统的行为方面也起着重要作用。样品尺寸的重要性及其与相邻不同层的连通性由样品边界层附近导线的独特微观结构和接触特性决定。与EMWM块状固体相比,边界层产生不同的机械行为和独特的结构配置。这些奇特的特征通过计算机断层扫描获得的微观结构和定性观察得到证实。本文的结果和分析结果与设计在不同载荷和几何约束下具有自适应性能的EMWM材料系统具有相关性。

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