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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Equilibrium of bi-stable flexural-tensegrity segmental beams
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Equilibrium of bi-stable flexural-tensegrity segmental beams

机译:双稳态弯曲 - 矩形节段梁平衡

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摘要

One dimensional discrete systems composed of a simple chain of bi-stable springs, with nearest neighbor interaction, have been used to interpret the complex equilibrium states of materials supporting multiple crystallographic phases, foldable macromolecules and biological structures. A discrete system is here proposed for bending within the broad class of flexural-tensegrity beams, which consist of segments in unilateral contact, with tailored-shaped contact surfaces, pre-stressed by an unbonded tendon. Any contact joint shows a bi-stable response to its relative rotation such as a snap-spring hinge, thanks to the internal carving of the segments that increases the mobility of the tendon within them. The constitutive response is nonlocal, because the tendon is free to slide within well lubricated sheaths. The case of pure bending, representing the counterpart of uniaxial tension in the one-dimensional lattice chain, shows that the system can support stable and metastable configurations, possibly containing one snap-spring hinge in the spinodal part of the energy landscape. Remarkably, not only the maximum hysteresis paths, but also the Maxwell paths, are strain-hardening in type. This is due to the nonlocal effect from the unbonded tendon: the rotation of any contact joint stiffens all the other joints, so that the orderly snaps of the spring-hinges occur at an increasing bending moment. An experimental program has been conducted on 3D printed physical models either in a hard or soft device. Symmetric and non-symmetric equilibrium configurations are obtained that are in perfect agreement with the theoretical predictions. Possible applications are envisaged, but they are yet to be fully appreciated.
机译:由具有最近邻相互作用的简单的双稳态弹簧组成的一维分立系统已经用于解释支持多个晶体相,可折叠大分子和生物结构的复杂的均衡状态。这里提出了一种离散系统,用于弯曲在广泛的弯曲 - 长度梁内,该弯曲梁在单侧接触中由单侧接触的区段组成,具有定制形状的接触表面,由未粘结的肌腱引起压力。任何接触接头都显示了对其相对旋转的双稳态响应,例如卡扣弹簧铰链,因为通过增加肌腱的移动性的段的内部雕刻。构成响应是非局部的,因为肌腱在井润滑的护套内可以自由滑动。纯弯曲的情况,代表一维晶格链中的单轴张力的对应物,示出了该系统可以支撑稳定和稳定的配置,可能在能量景观的微秒部分中包含一个卡扣弹簧铰链。值得注意的是,不仅是最大滞后路径,而且是Maxwell路径,是类型的应变硬化。这是由于来自未粘结的肌腱的非识别效应:任何接触关节旋转所有其他关节,使得弹簧铰链的有序捕捉在增加的弯矩时发生。在硬设备中,在3D印刷物理模型上进行了实验程序。获得对称和非对称平衡配置,其与理论预测完全一致。设想可能的应用,但尚未得到完全赞赏。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2021年第7期|104411.1-104411.24|共24页
  • 作者单位

    Department of Engineering and Architecture University of Parma Parco Area delle Scienze 181/A I-43100 Parma Italy;

    Department of Engineering and Architecture University of Parma Parco Area delle Scienze 181/A I-43100 Parma Italy Construction Technologies Institute - Italian National Research Council (ITC-CNR) Via Lombardia 49 I-20098 San Giuliano Milanese Milano Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flexural tensegrity; Bending; Nonlocal model; Snap-springs; Phase transformations;

    机译:弯曲态度;弯曲;非本体模型;纸板;相变;

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