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首页> 外文期刊>International Journal of Mechanical Sciences >SMA-based tension control block for metallic tendons
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SMA-based tension control block for metallic tendons

机译:基于SMA的金属肌腱张力控制块

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摘要

Metallic tendons are frequently used in arches and vaults to absorb the lateral thrusting forces due to gravity loads or inertial forces caused by an earthquake. Traditional tendons, however, have some limitations (e.g. sensitivity to temperature variations, buckling under compression, etc.). Shape memory alloys (SMAs) can be used to enhance the performances of metallic tendons both in service and seismic conditions. This is achieved with the tensioning control block (TCB) system. The basic components of TCB are pre-strained superelastic SMA wires, in series with the metallic tendon. The number and diameter of the SMA wires is selected based on the force levels to reach. The length is optimised with respect to the thermal behavior of the system. A number of theoretical and experimental studies have been conducted to fully understand the thermal and mechanical behavior of TCB. In the paper, the main outcomes of these studies are described.
机译:金属筋经常用于拱门和拱顶,以吸收由于地震引起的重力载荷或惯性力而产生的侧向推力。然而,传统的肌腱具有一些局限性(例如,对温度变化的敏感性,在压缩下的屈曲等)。形状记忆合金(SMA)可用于在使用和地震条件下增强金属腱的性能。这是通过张紧控制块(TCB)系统实现的。 TCB的基本组件是与金属腱串联的预应变超弹性SMA线。 SMA导线的数量和直径是根据要达到的作用力水平来选择的。相对于系统的热性能优化了长度。为了充分了解TCB的热和机械行为,已经进行了许多理论和实验研究。在本文中,描述了这些研究的主要结果。

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