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Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi

Year 2019, Volume: 30 Issue: 1, 8861 - 8886, 01.01.2019
https://doi.org/10.18400/tekderg.309415

Abstract



Bir
tür metalik sönümleyiciler olarak kabul edilen Burkulması önlenmiş Çaprazlar
(BÖÇ) önemli depremlerde çekme ve basınçta akarak dengeli bir histeretik
davranış gösterirler. Bu çalışmada farklı çelik uç detayı malzemesine sahip
BÖÇ’lerin yön değiştiren tekrarlı yükler altındaki histeretik davranışına
ilişkin deneysel bulgu ve değerlendirmeleri verilmektir. Denenen BÖÇ’ler için
kuvvet-yerdeğiştirme histeretik eğrileri, histeretik enerji yutma miktarları ve
etkili sönüm oranları hesaplanarak karşılaştırmalar yapılmıştır. Özgün detaylar
ile üretilen ve denenen BÖÇ’lerin yeterli bir performans gösterdiği ve bu
performansının ileride yapılabilecek çalışmalarla iyileştirilebileceği sonucuna
varılmıştır.




References

  • Wakabayashi, M., Nakamura, T., Katagihara, A., Morisono, T. and Yokoyama, H., Experimental Study of the Elastoplastic Behavior of Braces Enclosed by Precast Concrete Panels Under Horizontal Cyclic Loading, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan (AIJ), 1041–4, 1973.
  • Kimura, K., Yoshioka, K., Takeda, T., Fukuya, Z., Takemoto, K., Tests on Braces Encased by Mortar in-filled Steel Tubes, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan (AIJ), 1041-2, 1976.
  • Watanabe, A., Hitomi, Y., Yaeki, E., Wada, A., Fujimoto, M., “Properties of brace encased in buckling-restraining concrete and steel tube”, In: Proceedings of 9th world conference on earthquake engineering, Tokyo-Kyoto, Japan, 719-724, 1988.
  • Gheidi, A., Mirtaheri, M., Zandi, A. P., Alanjari, P., “Effect of filler material on local and global behaviour of buckling-restrained braces”, The Structural Design of Tall and Special Buildings, 10.1002/tal.555, 2009.
  • Berman, J. W., and Bruneau, M., “Cyclic testing of a buckling restrained braced frame with unconstrained gusset connections”, Journal of Structural Engineering, ASCE, 135(12), 1499-1510, 2009.
  • Celik, O. C., Berman, J. W., Bruneau, M., "Cyclic testing of braces laterally restrained by steel studs", Journal of Structural Engineering, ASCE, 131(7), 1114-1124, 2005.
  • Celik, O. C., Bruneau, M., “Skewed slab-on-girder steel bridge superstructures with bidirectional-ductile end diaphragms”, Journal of Bridge Engineering, ASCE, 16(2), 207-218, 2011.
  • Zhao, J., Wu, B., Li, W., Ou, J., "Local buckling behavior of steel angle core members in buckling-restrained braces: Cyclic tests, theoretical analysis, and design recommendations”, Engineering Structures, 66, 129-145, 2014.
  • Takeuchi, T., Matsui, R., Mihara, S., “Out-of-Plane stability assessment of buckling-restrained braces with chevron configurations”, 8th International Conference on Behavior of Steel Structures in Seismic Areas Shanghai, China, July 1-3, 2015.
  • Fujishita, K, Bal, A, Sutcu, F, Celik, O. C., Takeuchi, T., Matsui, R., and Terashima, M., “Comparing hysteretic behavior of buckling restrained braces (BRBs) with bolted and welded end connections”, In: 8th international symposium on steel structures (ISSS). Nov. 5-7, Jeju, Korea; 2015.
  • Bazaez, R., Dusicka, P., “Cyclic behavior of reinforced concrete bridge bent retrofitted with buckling restrained braces”, Engineering Structures, 119, 34-48, 2016.
  • Chou, C. C., Tsai, W. J., Chung, P. T., “Development and validation tests of a dual-core self-centering sandwiched buckling-restrained brace (SC-SBRB) for seismic resistance”, Engineering Structures, 121, 30-41, 2016.
  • ASTM A 370-08a- Standard Test Methods and Definitions for Mechanical Testing of Steel Products, American Society for Testing and Materials, Philadelphia, PA, 2008.
  • AISC 341-10- Seismic Provisions for Structural Steel Buildings, American Institute of Steel Construction AISC, Chicago, IL, 2010.
  • AISC 360-10- Specification for Structural Steel Buildings, American Institute of Steel Construction, Chicago, IL, 2010.
  • ANSI/AWS D1.1/D1.1M-Structural Welding Code-Steel, American Welding Society, Miami, 2008.
  • Haydaroglu, C., Taskin, K., Celik, O. C., “Ductility enhancement of round HSS braces using CFRP sheet wraps”, In: 6th european conference on steel and composite structures (Eurosteel), Budapest, Hungary, 2011.
  • CSI SAP 2000 V-14, Integrated software for structural analysis and design, analysis reference manual. Berkeley (CA): Computer and Structures Inc., 2009.
  • FEMA-356- Prestandart and Commentary for the Seismic Rehabilitation of Buildings, In: Prepared by American Society of Civil Engineers for the Federal Emergency Management Agency, Washington (DC), 2000.
  • Uang, C. M., Yu, Q. S., Gilton, C. S., “Effects of loading history on cyclic performance of steel RBS moment connections”, Proceedings of the 12th WCEE, Upper Hutt, New Zealand, 2000.
Year 2019, Volume: 30 Issue: 1, 8861 - 8886, 01.01.2019
https://doi.org/10.18400/tekderg.309415

Abstract

References

  • Wakabayashi, M., Nakamura, T., Katagihara, A., Morisono, T. and Yokoyama, H., Experimental Study of the Elastoplastic Behavior of Braces Enclosed by Precast Concrete Panels Under Horizontal Cyclic Loading, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan (AIJ), 1041–4, 1973.
  • Kimura, K., Yoshioka, K., Takeda, T., Fukuya, Z., Takemoto, K., Tests on Braces Encased by Mortar in-filled Steel Tubes, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan (AIJ), 1041-2, 1976.
  • Watanabe, A., Hitomi, Y., Yaeki, E., Wada, A., Fujimoto, M., “Properties of brace encased in buckling-restraining concrete and steel tube”, In: Proceedings of 9th world conference on earthquake engineering, Tokyo-Kyoto, Japan, 719-724, 1988.
  • Gheidi, A., Mirtaheri, M., Zandi, A. P., Alanjari, P., “Effect of filler material on local and global behaviour of buckling-restrained braces”, The Structural Design of Tall and Special Buildings, 10.1002/tal.555, 2009.
  • Berman, J. W., and Bruneau, M., “Cyclic testing of a buckling restrained braced frame with unconstrained gusset connections”, Journal of Structural Engineering, ASCE, 135(12), 1499-1510, 2009.
  • Celik, O. C., Berman, J. W., Bruneau, M., "Cyclic testing of braces laterally restrained by steel studs", Journal of Structural Engineering, ASCE, 131(7), 1114-1124, 2005.
  • Celik, O. C., Bruneau, M., “Skewed slab-on-girder steel bridge superstructures with bidirectional-ductile end diaphragms”, Journal of Bridge Engineering, ASCE, 16(2), 207-218, 2011.
  • Zhao, J., Wu, B., Li, W., Ou, J., "Local buckling behavior of steel angle core members in buckling-restrained braces: Cyclic tests, theoretical analysis, and design recommendations”, Engineering Structures, 66, 129-145, 2014.
  • Takeuchi, T., Matsui, R., Mihara, S., “Out-of-Plane stability assessment of buckling-restrained braces with chevron configurations”, 8th International Conference on Behavior of Steel Structures in Seismic Areas Shanghai, China, July 1-3, 2015.
  • Fujishita, K, Bal, A, Sutcu, F, Celik, O. C., Takeuchi, T., Matsui, R., and Terashima, M., “Comparing hysteretic behavior of buckling restrained braces (BRBs) with bolted and welded end connections”, In: 8th international symposium on steel structures (ISSS). Nov. 5-7, Jeju, Korea; 2015.
  • Bazaez, R., Dusicka, P., “Cyclic behavior of reinforced concrete bridge bent retrofitted with buckling restrained braces”, Engineering Structures, 119, 34-48, 2016.
  • Chou, C. C., Tsai, W. J., Chung, P. T., “Development and validation tests of a dual-core self-centering sandwiched buckling-restrained brace (SC-SBRB) for seismic resistance”, Engineering Structures, 121, 30-41, 2016.
  • ASTM A 370-08a- Standard Test Methods and Definitions for Mechanical Testing of Steel Products, American Society for Testing and Materials, Philadelphia, PA, 2008.
  • AISC 341-10- Seismic Provisions for Structural Steel Buildings, American Institute of Steel Construction AISC, Chicago, IL, 2010.
  • AISC 360-10- Specification for Structural Steel Buildings, American Institute of Steel Construction, Chicago, IL, 2010.
  • ANSI/AWS D1.1/D1.1M-Structural Welding Code-Steel, American Welding Society, Miami, 2008.
  • Haydaroglu, C., Taskin, K., Celik, O. C., “Ductility enhancement of round HSS braces using CFRP sheet wraps”, In: 6th european conference on steel and composite structures (Eurosteel), Budapest, Hungary, 2011.
  • CSI SAP 2000 V-14, Integrated software for structural analysis and design, analysis reference manual. Berkeley (CA): Computer and Structures Inc., 2009.
  • FEMA-356- Prestandart and Commentary for the Seismic Rehabilitation of Buildings, In: Prepared by American Society of Civil Engineers for the Federal Emergency Management Agency, Washington (DC), 2000.
  • Uang, C. M., Yu, Q. S., Gilton, C. S., “Effects of loading history on cyclic performance of steel RBS moment connections”, Proceedings of the 12th WCEE, Upper Hutt, New Zealand, 2000.
There are 20 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Articles
Authors

Çiğdem Avcı Karataş

Oğuz Cem Çelik

Publication Date January 1, 2019
Submission Date April 27, 2017
Published in Issue Year 2019 Volume: 30 Issue: 1

Cite

APA Avcı Karataş, Ç., & Çelik, O. C. (2019). Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi. Teknik Dergi, 30(1), 8861-8886. https://doi.org/10.18400/tekderg.309415
AMA Avcı Karataş Ç, Çelik OC. Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi. Teknik Dergi. January 2019;30(1):8861-8886. doi:10.18400/tekderg.309415
Chicago Avcı Karataş, Çiğdem, and Oğuz Cem Çelik. “Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi Ve Deneysel İncelenmesi”. Teknik Dergi 30, no. 1 (January 2019): 8861-86. https://doi.org/10.18400/tekderg.309415.
EndNote Avcı Karataş Ç, Çelik OC (January 1, 2019) Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi. Teknik Dergi 30 1 8861–8886.
IEEE Ç. Avcı Karataş and O. C. Çelik, “Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi”, Teknik Dergi, vol. 30, no. 1, pp. 8861–8886, 2019, doi: 10.18400/tekderg.309415.
ISNAD Avcı Karataş, Çiğdem - Çelik, Oğuz Cem. “Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi Ve Deneysel İncelenmesi”. Teknik Dergi 30/1 (January 2019), 8861-8886. https://doi.org/10.18400/tekderg.309415.
JAMA Avcı Karataş Ç, Çelik OC. Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi. Teknik Dergi. 2019;30:8861–8886.
MLA Avcı Karataş, Çiğdem and Oğuz Cem Çelik. “Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi Ve Deneysel İncelenmesi”. Teknik Dergi, vol. 30, no. 1, 2019, pp. 8861-86, doi:10.18400/tekderg.309415.
Vancouver Avcı Karataş Ç, Çelik OC. Çelik Çekirdekli Burkulması Önlenmiş Çaprazların (BÖÇ) Tasarımı, Üretimi ve Deneysel İncelenmesi. Teknik Dergi. 2019;30(1):8861-86.