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Thermo-mechanical strain rate-dependent behavior of shape memory alloys as vibration dampers and comparison to conventional dampers

机译:形状记忆合金作为减振器的热机械应变率相关行为,并与常规减振器进行比较

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摘要

A study on shape memory alloy materials as vibration dampers is reported. An important component is the strain rate-dependent and temperature-dependent constitutive behavior of shape memory alloy, which can significantly change its energy dissipation capacity under cyclic loading. The constitutive model used accounts for the thermo-mechanical strain rate-dependent behavior and phase transformation. With increasing structural flexibility, the hysteretic loop size of shape memory alloy dampers increases due to increasing strain rates, thus further decreasing the response of the structure to cyclic excitation. The structure examined is a beam, and its behavior with shape memory alloy dampers is compared to the same beam with conventional dampers. Parametric studies reveal the superior performance of the shape memory alloy over the conventional dampers even at the resonance frequency of the beam-damper system. An important behavior of the shape memory alloy dampers is discovered, in that they absorb energy from the fundamental and higher vibration modes. In contrast, the conventional dampers transfer energy to higher modes. For the same beam control, the stiffness requirement for the shape memory alloy dampers is significantly less than that of the conventional dampers. Response quantities of interest show improved performance of the shape memory alloy over the conventional dampers under varying excitation intensity, frequency, temperature, and strain rate.
机译:报道了形状记忆合金材料作为减振器的研究。一个重要的组成部分是形状记忆合金的应变率相关和温度相关的本构行为,它可以在循环载荷下显着改变其能量耗散能力。本构模型用于说明热机械应变率相关的行为和相变。随着结构柔性的增加,形状记忆合金阻尼器的滞回环尺寸由于应变率的增加而增加,从而进一步降低了结构对循环激励的响应。所检查的结构是一个梁,并将其与形状记忆合金阻尼器的性能与常规阻尼器的相同梁进行了比较。参数研究表明,即使在电子束阻尼器系统的共振频率下,形状记忆合金的性能也优于传统阻尼器。发现形状记忆合金阻尼器的重要特性,因为它们从基本和更高的振动模式吸收能量。相反,传统的阻尼器将能量传递到更高的模式。对于相同的梁控制,形状记忆合金阻尼器的刚度要求明显低于常规阻尼器。感兴趣的响应量表明,在变化的激励强度,频率,温度和应变率下,形状记忆合金的性能优于常规阻尼器。

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