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Experimental and numerical studies on new multi-dimensional earthquake isolation and mitigation device:Horizontal properties 被引量:7

Experimental and numerical studies on new multi-dimensional earthquake isolation and mitigation device:Horizontal properties
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摘要 Earthquake is a complex multi-dimensional excitation. Counter-measures of such multi-dimensional excitation on many critical structures,such as long-span structures and high-rise buildings,must be taken into account to avert the structural failure. Many types of earthquake mitigation or isolation devices for mitigating earthquake-induced effects in the horizontal direction have been proposed and applied to real applications. However,study on multi-dimensional earthquake isolation and mitigation devices for structures has been received much less attention. In this paper,a new multi-dimensional earthquake isolation and mitigation device was developed and tested. Effects of excitation frequency and environmental temperature on horizontal properties of this device were considered. At the same time,fatigue properties of the device under different amplitude horizontal excitations were also studied experimentally. The equivalent standard solid model which can effectively describe the effect of frequency and temperature on the horizontal properties of the device was proposed and verified. From the experimental results,it may be concluded that the multi-dimensional earthquake isolation and mitigation device owns fine energy dissipation and fatigue resistance capabilities. Earthquake is a complex multi-dimensional excitation. Counter-measures of such multi-dimensional excitation on many critical structures,such as long-span structures and high-rise buildings,must be taken into account to avert the structural failure. Many types of earthquake mitigation or isolation devices for mitigating earthquake-induced effects in the horizontal direction have been proposed and applied to real applications. However,study on multi-dimensional earthquake isolation and mitigation devices for structures has been received much less attention. In this paper,a new multi-dimensional earthquake isolation and mitigation device was developed and tested. Effects of excitation frequency and environmental temperature on horizontal properties of this device were considered. At the same time,fatigue properties of the device under different amplitude horizontal excitations were also studied experimentally. The equivalent standard solid model which can effectively describe the effect of frequency and temperature on the horizontal properties of the device was proposed and verified. From the experimental results,it may be concluded that the multi-dimensional earthquake isolation and mitigation device owns fine energy dissipation and fatigue resistance capabilities.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第10期2658-2667,共10页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.90915004) the Jiangsu Province Natural Science Foundation(Grant No.BK2008282) the Doctoral Fund of Ministry of Education of China(Grant No.20090092110012) the Program for New Century Excellent Talents in Ministry of Education of China(Grant No.NCET-06-0472)
关键词 MULTI-DIMENSIONAL EARTHQUAKE isolation and MITIGATION device energy DISSIPATION VISCOELASTIC multi-dimensional earthquake isolation and mitigation device energy dissipation viscoelastic
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