1. 1) Harada, Y. , Morita, K. , Yamaguchi, D. and Ishii, T. : Experimental Study on Brittle Fracture in Beam-to-column Connections -Influence of Connection Detail and Material Properties- , Transactions of AIJ. Journal of structural and construction engineering, No.535, pp.141-148, 2000.9 原田幸博,森田耕次,山口大助,石井匠:鋼構造柱梁接合部の脆性的破壊に関する研究-接合ディテール及び材料特性の影響―,日本建築学会構造系論文集,第535号,pp.141-148,2000.9
2. 2) Nakagomi, T. and Fujita, T. : Mechanical Behavior of Rolled H-shaped Steel Beam Connected to Square-shaped Steel Pipe Column with through Diaphragms, Effect of Scallops and Unebenness on Fracture, Transactions of AIJ. Journal of structural and construction engineering, No.455, pp.187-196, 1994.1 中込忠男,藤田哲也:角形鋼管柱に通しダイアフラム形式で溶接接合される圧延H形鋼梁端部の力学性能 梁スカラップの有無および形状と目違いが破壊性状に及ぼす影響,日本建築学会構造系論文集,第455号,pp.187-196,1994.1
3. 3) Tanaka, N. , Sawamoto, Y. and Mitsui, Y. : Effective Horizontal Haunch Length of Beam-to-Box Column Connection, Steel construction engineering of JSSC, Vol.6, No.23, pp.27-39, 1999.9 田中直樹,澤本佳和,三井宜之:水平ハンチ付はりと角形鋼管柱接合部の有効ハンチ長さ,鋼構造論文集,第6巻,第23号,pp.27-39,1999.9
4. 4) Building Research Institute: Study on Performance for Super-High-Rise Steel Buildings against Long-Period Earthquake Ground Motions, Building Research Data, No.160, 2014.6 (in Japanese) 建築研究所:長周期地震動に対する超高層鉄骨造建築物の耐震安全性に関する検討,建築研究資料,No.160,2014.6
5. 5) Japanese Society of Steel Construction: Safety Assessment Methods for Steel Beam at Welded Ends against Long-Period Earthquake Ground Motions, JSSC Technical Report, No.111, pp.21-56, 2016.12(in Japanese) 日本鋼構造協会:長周期地震動に対する鉄骨造梁端接合部の安全性検証方法,JSSCテクニカルレポート,No.111,pp.21-56,2016.12