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Damping systems that are effective over a wide range of displacement amplitudes using metallic yielding component and viscoelastic damper in series

机译:使用串联的金属屈服部件和粘弹性阻尼器,可在很大的位移幅度范围内有效的阻尼系统

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A damper system that absorbs energy over a wide range of displacement amplitudes during building vibration was proposed. This system uses a serial connection of a metallic yielding component and viscoelastic damper with a displacement limit mechanism. Three types of the system were developed and tested: a diagonal bracing type, inverted V bracing type, and wall type. The test results showed that all these systems have damping ratios higher than 8% at small vibration amplitudes on the order of 0.1 mm. For a large vibration, a displacement limit mechanism with two pins limited the displacement of the viscoelastic damper as designed. Analytical simulations established that the system reduced the acceleration and the story drift to 60-70% and 80%, respectively, during a small earthquake compared with a conventional metallic yielding damper system. Furthermore, it showed an equivalent control performance during a severe earthquake. The damper system requires that a clearance be maintained for the displacement limit mechanism. However, this may be lost through construction error, residual displacement after an earthquake, and temperature effects. The changes in the clearance due to these effects were discussed.
机译:提出了一种阻尼器系统,该阻尼器在建筑物振动期间吸收大范围位移振幅的能量。该系统使用金属屈服部件和带位移限制机构的粘弹性阻尼器的串联连接。开发并测试了三种类型的系统:对角撑杆型,倒V撑杆型和壁式。测试结果表明,所有这些系统在0.1 mm左右的小振幅下,阻尼比都高于8%。对于较大的振动,带有两个销钉的位移限制机构可按设计限制粘弹性阻尼器的位移。分析模拟确定,与传统的金属屈服阻尼器系统相比,该系统在小地震期间的加速度和故事漂移分别降低至60-70%和80%。此外,它在严重地震中表现出同等的控制性能。减震器系统要求为排量限制机构保持间隙。但是,这可能会因施工错误,地震后的残余位移以及温度影响而丢失。讨论了由于这些影响而引起的间隙变化。

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