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NONLINEAR FINITE ELEMENT MODELING OF PRESTRESSED LEAD EXTRUSION DAMPERS
F. Çalim
*
,
A. Güllü
, C. Soydan
,
E. Yüksel
*
Corresponding author for this work
Department of Civil Engineering
Texas State University
Namik Kemal University
Research output
:
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Dive into the research topics of 'NONLINEAR FINITE ELEMENT MODELING OF PRESTRESSED LEAD EXTRUSION DAMPERS'. Together they form a unique fingerprint.
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Keyphrases
Modeling Strategy
100%
Prestress
100%
Lead Extrusion Damper
100%
Nonlinear Finite Element Method
100%
Geometric Properties
66%
Numerical Model
33%
Mean Error
33%
Cyclic Behavior
33%
Hysteretic Behavior
33%
Seismic Energy
33%
Bulge
33%
Forced Displacement
33%
Structural System
33%
Energy Dissipation Characteristic
33%
Finite Element Modeling
33%
Performance Level
33%
3D Finite Element Model
33%
Targeting Performance
33%
Extrusion
33%
Material Characteristics
33%
Damper Force
33%
Relative Difference
33%
Three Dimensional Model
33%
Seismic Energy Dissipation
33%
Coupon Test
33%
Proper Design
33%
Energy Dissipative Devices
33%
Device Behavior
33%
Earthquake-resistant Design
33%
Metallic Damper
33%
Geometric Diameter
33%
Structural Response Control
33%
Engineering
Modeling Strategy
100%
Fem Model
100%
Energy Dissipation
33%
Experimental Result
33%
Numerical Model
33%
Relative Difference
33%
Force Displacement
33%
Structural System
33%
Structural Response
33%
Material Characteristic
33%
Displacement Relationship
33%
Damper Force
33%
Three-Dimensional Models
33%
Resistant Design
33%
Test Coupon
33%
Device Behavior
33%
Proper Design
33%
Material Science
Finite Element Modeling
100%
Light-Emitting Diode
100%
Shaft
40%