Controlled rocking of steel braced frames has been proposed for the seismic retrofit of structures. The controlled rocking approach allows a frame to uplift from its support at the base-of-column to foundation interface while displacement-based steel yielding devices are implemented at the base location to control the response. Past studies have focused on analytical investigations of the response of such a system along with design applications for controlled rocking bridge piers. This paper discusses shake table testing of a 4-legged, steel braced pier representative of a 1/5 length scale highway bridge pier. The model is subjected to a series of seismic excitations about one of its primary orthogonal axes, using horizontal and vertical base motions, and rotated 45deg. to investigate pier behavior that would be expected from bi-directional horizontal base inputs. Ground motions from the 1940 El Centro and 1994 Northridge earthquakes are used along with a synthetically generated motion. The steel yielding devices used during testing are triangular plates that yield in flexure as the pier uplifts and rocks at its base. Results of the testing focus on the overall behavior of the controlled rocking pier including global hysteretic response, uplifting displacements, and pier forces.
[1]
Michael Pollino,et al.
BI-DIRECTIONAL SEISMIC ANALYSIS AND DESIGN OF BRIDGE STEEL TRUSS PIERS ALLOWING A CONTROLLED ROCKING RESPONSE
,
2006
.
[2]
Andre Filiatrault,et al.
Posttensioned Energy Dissipating Connections for Moment-Resisting Steel Frames
,
2002
.
[3]
M. Bruneau,et al.
Seismic Retrofit of Bridge Steel Truss Piers Using a Controlled Rocking Approach
,
2007
.
[4]
Michel Bruneau,et al.
Cyclic Testing of Ductile End Diaphragms for Slab-on-Girder Steel Bridges
,
1999
.
[5]
Chin Tung Cheng,et al.
SEISMIC RESISTANCE OF BRIDGE PIERS BASED ON DAMAGE AVOIDANCE DESIGN
,
1997
.
[6]
M. J. N. Priestley,et al.
SEISMIC RESPONSE OF STRUCTURES FREE TO ROCK ON THEIR FOUNDATIONS
,
1978
.
[7]
J. W. Meek,et al.
Effects of Foundation Tipping on Dynamic Response
,
1975
.
[8]
Ioannis N. Psycharis.
Dynamic behavior of rocking structures allowed to uplift
,
1981
.
[9]
G. Housner.
The behavior of inverted pendulum structures during earthquakes
,
1963
.
[10]
Richard Sause,et al.
Experimental studies of full-scale posttensioned steel connections
,
2005
.