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Design of a new energy dissipating device and verification for use in rockfall protection barriers

机译:一种新的消能装置的设计以及用于防落石屏障的验证

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摘要

Flexible barriers are structures used to protect specific areas from falling rocks. In most cases, barriers have energy dissipating devices (or brakes), that help to increase their energy-dissipation capacity by deformation, friction or the two mechanisms together. One drawback that has been detected in existing brakes is that they usually display irregular behaviour so that their real performance can present unexpected results in terms of activation force or total energy absorbed. This paper presents the complete design procedure of a new brake, which is proposed as a potential alternative to solve these uncertainties. The main energy dissipation mechanism is by plastic deformation of its components. The design procedure combines experimental tests and numerical modelling to take advantage of the benefits of both techniques. The final geometry is selected considering its efficiency, which involves not only total absorbed energy, but also energy absorbed per unit of mass.
机译:柔性屏障是用于保护特定区域免受落石袭击的结构。在大多数情况下,障碍物具有消能装置(或制动器),它们通过变形,摩擦或两个机制共同帮助提高其消能能力。现有制动器中已经发现的一个缺点是,它们通常表现出不规则的行为,因此它们的真实性能会在激活力或吸收的总能量方面表现出意想不到的结果。本文介绍了新制动器的完整设计过程,提出了一种解决这些不确定性的潜在选择。主要的能量耗散机制是通过其部件的塑性变形来实现的。设计过程将实验测试和数值建模相结合,以利用两种技术的优势。选择最终几何形状时要考虑其效率,该效率不仅涉及总吸收能量,还涉及单位质量吸收的能量。

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