Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading

Concentrically Braced Frames (CBFs) are structural systems that are recommended to be constructed in earthquake-hazard areas. The brace is a CBF component that plays a role as an energy dissipator due to the seismic action. To result in a good performance, the brace is required to be strengthened. A...

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الحاوية / القاعدة:E3S Web of Conferences
المؤلفون الرئيسيون: Panjaitan Arief, Hasibuan Purwandy, Putra Rudiansyah, Afifuddin Mochammad, Bermansyah Surya, Haiqal Muhammad
التنسيق: مقال
اللغة:الإنجليزية
منشور في: EDP Sciences 2024-01-01
الموضوعات:
الوصول للمادة أونلاين:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/06/e3sconf_aisce2023_01003.pdf
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author Panjaitan Arief
Hasibuan Purwandy
Putra Rudiansyah
Afifuddin Mochammad
Bermansyah Surya
Haiqal Muhammad
author_facet Panjaitan Arief
Hasibuan Purwandy
Putra Rudiansyah
Afifuddin Mochammad
Bermansyah Surya
Haiqal Muhammad
author_sort Panjaitan Arief
collection DOAJ
container_title E3S Web of Conferences
description Concentrically Braced Frames (CBFs) are structural systems that are recommended to be constructed in earthquake-hazard areas. The brace is a CBF component that plays a role as an energy dissipator due to the seismic action. To result in a good performance, the brace is required to be strengthened. Adding a sectional area to the brace is one method for strengthening. Accordingly, the axial load is able to be distributed over a larger area, which may reduce the axial stress in the brace. So far, many kinds of research have been conducted to study brace behavior. However, the influence of adding a sectional area and increasing brace length to enhance brace performance has not yet been clarified. This paper experimentally investigated several braces under cyclic loading. Those braces were distinguished by their sectional area and length. The cyclic loading was managed by yield displacement control. The observation was mainly conducted on the performance parameter, which comprises strength, stiffness, and dissipation energy. The study discovered that enlarging the area section significantly increases the structural performance. Contrarily, the brace's performance tends to decrease when the brace is lengthened. Eventually, it can be recommended that enlarging the sectional area be taken as a solution to improve long-brace seismic performance in the CBFs system.
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spelling doaj-art-e5da3bbb47a145528e53b8bc509039592025-08-20T00:54:17ZengEDP SciencesE3S Web of Conferences2267-12422024-01-014760100310.1051/e3sconf/202447601003e3sconf_aisce2023_01003Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic LoadingPanjaitan Arief0Hasibuan Purwandy1Putra Rudiansyah2Afifuddin Mochammad3Bermansyah Surya4Haiqal Muhammad5Civil Engineering Department, Faculty of Engineering, University of Syiah KualaCivil Engineering Department, Faculty of Engineering, University of Syiah KualaCivil Engineering Department, Faculty of Engineering, University of Syiah KualaCivil Engineering Department, Faculty of Engineering, University of Syiah KualaCivil Engineering Department, Faculty of Engineering, University of Syiah KualaArchitecture Department, Faculty of Engineering, University of Syiah KualaConcentrically Braced Frames (CBFs) are structural systems that are recommended to be constructed in earthquake-hazard areas. The brace is a CBF component that plays a role as an energy dissipator due to the seismic action. To result in a good performance, the brace is required to be strengthened. Adding a sectional area to the brace is one method for strengthening. Accordingly, the axial load is able to be distributed over a larger area, which may reduce the axial stress in the brace. So far, many kinds of research have been conducted to study brace behavior. However, the influence of adding a sectional area and increasing brace length to enhance brace performance has not yet been clarified. This paper experimentally investigated several braces under cyclic loading. Those braces were distinguished by their sectional area and length. The cyclic loading was managed by yield displacement control. The observation was mainly conducted on the performance parameter, which comprises strength, stiffness, and dissipation energy. The study discovered that enlarging the area section significantly increases the structural performance. Contrarily, the brace's performance tends to decrease when the brace is lengthened. Eventually, it can be recommended that enlarging the sectional area be taken as a solution to improve long-brace seismic performance in the CBFs system.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/06/e3sconf_aisce2023_01003.pdfconcentrically braced framebraceseismic performancedissipation energycyclic loading
spellingShingle Panjaitan Arief
Hasibuan Purwandy
Putra Rudiansyah
Afifuddin Mochammad
Bermansyah Surya
Haiqal Muhammad
Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
concentrically braced frame
brace
seismic performance
dissipation energy
cyclic loading
title Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
title_full Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
title_fullStr Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
title_full_unstemmed Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
title_short Structural Performance of Single and Double-Section CBF Braces with Different Lengths Under Cyclic Loading
title_sort structural performance of single and double section cbf braces with different lengths under cyclic loading
topic concentrically braced frame
brace
seismic performance
dissipation energy
cyclic loading
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/06/e3sconf_aisce2023_01003.pdf
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