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首页> 外文期刊>Journal of intelligent material systems and structures >Comparative study of two types of self-recovery shape-memory alloy pseudo-rubber isolator devices under compression-shear interactions
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Comparative study of two types of self-recovery shape-memory alloy pseudo-rubber isolator devices under compression-shear interactions

机译:压剪作用下两种自恢复形状记忆合金伪橡胶隔振装置的比较研究

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摘要

Two types of novel shape-memory alloy-based devices with three-dimensional isolation potential and deformation recovery abilities were developed. These two types of isolators, which are called shape-memory alloy pseudo-rubber isolators, were both created with martensitic shape-memory alloy wires through weaving, rolling, and punching processes, but they underwent heat treatment at different fabrication stages and for different durations. A series of mechanical tests were performed on these two types of shape-memory alloy pseudo-rubber isolators to investigate their properties under compression, shear, and combined compression-shear loading at room temperature. The restorable shear limit was then investigated, and the corresponding shear failure mechanism was discussed according to a tension test of one thin layer of the shape-memory alloy wire mesh. Subsequently, the deformation recovery ability of the shape-memory alloy pseudo-rubber isolator with residual deformation was tested through heating on a thermo-control stove. Finally, the mechanical-property stabilities, energy-dissipation abilities, and recovery abilities were compared between the two types of shape-memory alloy pseudo-rubber isolator devices. The experimental results indicated that both types of shape-memory alloy pseudo-rubber isolators had excellent residual deformation recovery abilities, and the type-I shape-memory alloy pseudo-rubber isolator device had more stable mechanical properties than the type-II shape-memory alloy pseudo-rubber isolator. The type-I shape-memory alloy pseudo-rubber isolator device is thus an ideal candidate for traditional three-dimensional isolators.
机译:开发了两类具有三维隔离电位和变形恢复能力的新型形状记忆合金基器件。这两种类型的隔离器,即形状记忆合金伪橡胶隔离器,都是用马氏体形状记忆合金线通过编织,轧制和冲压工艺制成的,但它们在不同的制造阶段和不同的时间进行了热处理。对这两种形状记忆合金伪橡胶隔离器进行了一系列的机械测试,以研究它们在室温下的压缩,剪切和组合压缩-剪切载荷下的性能。然后研究了可恢复的剪切极限,并根据形状记忆合金丝网的一层薄层的拉伸试验,讨论了相应的剪切破坏机理。随后,通过在温控炉上加热来测试具有残余变形的形状记忆合金伪橡胶隔离器的变形恢复能力。最后,比较了两种形状记忆合金伪橡胶隔离器装置的机械性能稳定性,能量耗散能力和恢复能力。实验结果表明,两种形状记忆合金伪橡胶隔离器均具有优异的残余变形恢复能力,I型形状记忆合金伪橡胶隔离器的力学性能比II型形状记忆器更稳定。合金假橡胶隔离器。因此,I型形状记忆合金伪橡胶隔离器设备是传统三维隔离器的理想选择。

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