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    Seismic Capacity Quantification of Gusset-Plate Connections to Fracture for Ductility-Based Design

    Source: Journal of Structural Engineering:;2018:;Volume ( 144 ):;issue: 010
    Author:
    Skalomenos Konstantinos A.;Nakashima Masayoshi;Kurata Masahiro
    DOI: 10.1061/(ASCE)ST.1943-541X.0002193
    Publisher: American Society of Civil Engineers
    Abstract: This paper presents an experimental study on the seismic performance up to fracture of gusset-plate brace connections. During the inelastic behavior of a bracing member (e.g., buckling), weak-axis bending in the gusset is induced by brace-end rotation and a plastic hinge is formed in a predefined inelastic zone (clearance distance) of the gusset. Five gusset-plate connections that can develop restraint-free plastic rotations to accommodate the brace-end rotation demands are tested. The test parameters include the plate thickness, length of clearance distance, and several inelastic rotation demands. The connections are tested using an innovative substructure-based hybrid test method that simulates the complex boundary and load conditions that exist between the gusset-plate connections and brace member. The tests quantify the maximum rotation ductility and strength capacity of the gusset-plate connections under actual cyclic inelastic rotations and varying axial loading. The test results also provide a basis for developing a ductility-based design methodology that determines the rotation ductility of gusset-plate connections using the brace-end rotation demand at a given axial deformation capacity of the brace. A design application example demonstrates the necessity of considering explicitly in the seismic design of steel braced frames the gusset-plate fracture capacity.
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      Seismic Capacity Quantification of Gusset-Plate Connections to Fracture for Ductility-Based Design

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4248078
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    contributor authorSkalomenos Konstantinos A.;Nakashima Masayoshi;Kurata Masahiro
    date accessioned2019-02-26T07:35:12Z
    date available2019-02-26T07:35:12Z
    date issued2018
    identifier other%28ASCE%29ST.1943-541X.0002193.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4248078
    description abstractThis paper presents an experimental study on the seismic performance up to fracture of gusset-plate brace connections. During the inelastic behavior of a bracing member (e.g., buckling), weak-axis bending in the gusset is induced by brace-end rotation and a plastic hinge is formed in a predefined inelastic zone (clearance distance) of the gusset. Five gusset-plate connections that can develop restraint-free plastic rotations to accommodate the brace-end rotation demands are tested. The test parameters include the plate thickness, length of clearance distance, and several inelastic rotation demands. The connections are tested using an innovative substructure-based hybrid test method that simulates the complex boundary and load conditions that exist between the gusset-plate connections and brace member. The tests quantify the maximum rotation ductility and strength capacity of the gusset-plate connections under actual cyclic inelastic rotations and varying axial loading. The test results also provide a basis for developing a ductility-based design methodology that determines the rotation ductility of gusset-plate connections using the brace-end rotation demand at a given axial deformation capacity of the brace. A design application example demonstrates the necessity of considering explicitly in the seismic design of steel braced frames the gusset-plate fracture capacity.
    publisherAmerican Society of Civil Engineers
    titleSeismic Capacity Quantification of Gusset-Plate Connections to Fracture for Ductility-Based Design
    typeJournal Paper
    journal volume144
    journal issue10
    journal titleJournal of Structural Engineering
    identifier doi10.1061/(ASCE)ST.1943-541X.0002193
    page4018195
    treeJournal of Structural Engineering:;2018:;Volume ( 144 ):;issue: 010
    contenttypeFulltext
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