[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Qiu et al., 2020 - Google Patents

Experimental tests and finite element simulations of a new SMA-steel damper

Qiu et al., 2020

View PDF
Document ID
16497881947276247201
Author
Qiu C
Wang H
Liu J
Qi J
Wang Y
Publication year
Publication venue
Smart Materials and Structures

External Links

Snippet

Owing to their outstanding recentering capability, shape memory alloy (SMA) dampers are emerging as promising passive dampers for seismic applications. However, compared to typical seismic dampers, the inherent energy dissipation capability of SMAs is often deemed …
Continue reading at iopscience.iop.org (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Qiu et al. Experimental tests and finite element simulations of a new SMA-steel damper
Qiu et al. Behavior and application of self-centering dampers equipped with buckling-restrained SMA bars
Liang et al. Shape memory alloy (SMA)-cable-controlled sliding bearings: development, testing, and system behavior
Wang et al. Development of superelastic SMA angles as seismic-resistant self-centering devices
Fang et al. Feasibility study of shape memory alloy ring spring systems for self-centring seismic resisting devices
Wang et al. Superelastic SMA U-shaped dampers with self-centering functions
Qian et al. Experimental investigations of building structure with a superelastic shape memory alloy friction damper subject to seismic loads
Speicher et al. Experimental results of a NiTi shape memory alloy (SMA)-based recentering beam-column connection
Dezfuli et al. Shape memory alloy wire-based smart natural rubber bearing
Fang et al. Behavior and design of self-centering energy dissipative devices equipped with superelastic SMA ring springs
Lee et al. Non-uniform steel strip dampers subjected to cyclic loadings
Li et al. Development and cyclic testing of an innovative shear-bending combined metallic damper
Sharabash et al. Application of shape memory alloy dampers in the seismic control of cable-stayed bridges
Sultana et al. Seismic performance of steel moment resisting frames utilizing superelastic shape memory alloys
Cao et al. Experimental and numerical investigations on hysteretic response of a multi-level SMA/lead rubber bearing seismic isolation system
Farmani et al. Shape memory alloy-based moment connections with superior self-centering properties
Shi et al. Cyclic behavior of superelastic SMA cable and its application in an innovative self-centering BRB
Dong et al. Overview of potential and existing applications of shape memory alloys in bridges
Taiyari et al. A proposal for energy dissipative braces with U-shaped steel strips
Qian et al. Recentering shape memory alloy passive damper for structural vibration control
Wang et al. Cyclic behavior and deformation mechanism of superelastic SMA U-shaped dampers under in-plane and out-of-plane loadings
Dezfuli et al. Seismic vulnerability assessment of a steel-girder highway bridge equipped with different SMA wire-based smart elastomeric isolators
Chowdhury et al. Improving the seismic performance of post-tensioned self-centering connections using SMA angles or end plates with SMA bolts
Araki et al. Feasibility of tension braces using Cu–Al–Mn superelastic alloy bars
Peng et al. Cyclic behavior of an adaptive seismic isolation system combining a double friction pendulum bearing and shape memory alloy cables