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Volume 51 Issue 11
Mar.  2022
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Article Contents
ZHANG Pu, LI Suchao, FANG Qinghe, WANG Chenyu, WANG Zhiyuan. SEISMIC IMPACT DAMPING MECHANISMS OF SHAPE MEMORY ALLOY PSEUDO-RUBBER ABSORBERS ON ADJACENT SDOF STRUCTURES[J]. INDUSTRIAL CONSTRUCTION, 2021, 51(11): 13-18. doi: 10.13204/j.gyjzG21052502
Citation: ZHANG Pu, LI Suchao, FANG Qinghe, WANG Chenyu, WANG Zhiyuan. SEISMIC IMPACT DAMPING MECHANISMS OF SHAPE MEMORY ALLOY PSEUDO-RUBBER ABSORBERS ON ADJACENT SDOF STRUCTURES[J]. INDUSTRIAL CONSTRUCTION, 2021, 51(11): 13-18. doi: 10.13204/j.gyjzG21052502

SEISMIC IMPACT DAMPING MECHANISMS OF SHAPE MEMORY ALLOY PSEUDO-RUBBER ABSORBERS ON ADJACENT SDOF STRUCTURES

doi: 10.13204/j.gyjzG21052502
  • Received Date: 2021-05-25
    Available Online: 2022-03-29
  • Impact of adjacent structures may cause acceleration amplification, stress damage even collapse during strong ground motions. Based on the characteristics of nonlinear strain hardening and friction energy dissipation in shape memory alloy pseudo-rubber(SMAPR), the seismic impact processes in adjacent single-degree-freedom(SDOF) structures with/without SMAPR absorber were compared, and parametric analysis was conducted to study the effects of axial stiffness of SMAPR on structure impact pounding response. The results showed that SMAPR was characterized by high elasticity, high damping and nonlinear strain hardening, which could prolong the impact time, and effectively reduce the impact response over 90%. Axial stiffness was the sensitive parameter to affect the control response, and the response of shock absorption increased with the decrease of axial stiffness.
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