Experimental Investigation of High-Force-To-Volume Extrusion Damper Subjected to Cyclic and Time History Loading

IF 1 Q4 ENGINEERING, CIVIL Journal of Applied Engineering Sciences Pub Date : 2023-12-01 DOI:10.2478/jaes-2023-0023
T. Dithurson, C. Daniel, S. Vivekananda Sharma, G. Hemalatha, Shalini R. Nair, A. Arun Solomon
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Abstract

Abstract The ability of energy dissipation from earthquake force in a controlled and iterative manner will play a vital role in maintaining structural reliability for various forces. High force-to-volume (HF2V) extrusion damper is a promising technology with simple designs, high damping force and achieving design requirements. This paper develops HF2V extrusion damper with multiple toothing configuration for seismic application. The experimental verification has been undertaken on lead extrusion dampers with various frequency range of 0.5 to 2 Hz. The maximum load-carrying capacity is 10.48 kN with strokes up to 5mm are observed with hysteresis loop with some recentering capability has a stiffness value up to 2*106 N/m, and force levels up to 2-10 kN. The maximum load carrying capacity for time history loading for Northridge earthquake is 11.57 kN. The overall findings suggest that silicone sealant may be employed to build and characterize extrusion dampers with maximum energy dissipation and high force/volume interactions. The suggested device may be a potentially effective way to provide additional energy dissipation to structures in seismic zones, according to the mechanical characteristics to the frequency. Additionally, the system can withstand for earthquake time histories, and ensuring maintenance-free operation even in the midst of frequent ground vibration.
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受循环和时间历程载荷影响的高力体积挤压阻尼器的实验研究
摘要可控的、迭代的地震力消能能力对于保持结构在各种力作用下的可靠性起着至关重要的作用。高容积力(HF2V)挤压阻尼器具有设计简单、阻尼力大、满足设计要求等优点。研制了一种多齿结构的HF2V挤压阻尼器。对0.5 ~ 2hz不同频率范围的铅挤压阻尼器进行了实验验证。最大承载能力为10.48 kN,行程可达5mm,具有一定的回滞能力,刚度值可达2*106 N/m,力级可达2-10 kN。北岭地震时程荷载的最大承载能力为11.57 kN。总体研究结果表明,硅酮密封胶可以用于构建和表征具有最大能量耗散和高力/体积相互作用的挤出阻尼器。根据频率的力学特性,所建议的装置可能是一种潜在的有效方法,可以为地震带中的结构提供额外的能量耗散。此外,该系统可以承受地震时程,即使在频繁的地面振动中也能确保免维护运行。
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9.10%
发文量
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审稿时长
12 weeks
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