1. 專著: (1) Guoqiang Li, Peijun Wang. Advanced analysis and design of steel structures in fire, Springer Press. 2012. 2. SCI收錄期刊論文 [23] Zhu Xulin; Wang Peijun, Liu Mei. Behaviors of one-side bolted T-stub through thread holes under tension strengthened with backing plate. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2017,134(1):53-65. [22] Wang Peijun, Zhu Xulin, Liu Mei. Buckling behaviors and simplified design method for steel silos under locally distributed axial load. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH,2017, 134(1):114-134 . [21] Wang Peijun, Xue Zipeng, Xiao Shaowen. Seismic behavior of Self-Buckling-Restrained Steel Plate Shear Wall made by two incline-slotted infill plates. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2017, 133(1): 47-64. [20] Wang Peijun; Xia Jinhuan; Du Qiudi. Temperature Rise of a Protected Steel Column Exposed to Fire from Two Adjacent Sides. FIRE TECHNOLOGY, 2017, 52(6):1887-1914. [19] Wang Peijun, Liu Changbin, Liu Mei. Large deflection behavior of restrained corrugated web steel beams in a fire. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH,2016, 126(1): 92-106. [18] Yicun Chang, Mei Liu, Peijun Wang. Interacted buckling failure of thin-walled irregular-shaped aluminum alloy column under axial compression. Thin-Walled Structures, 2016, 107 (5): 627-47. [17] Peijun Wang, Li Zhu, Xulin Zhu, Flow pattern and normal pressure distribution in flat bottom silo discharged using wall outlet, Powder Technology, Volume 295, July 2016, Pages 104-114 [16] Peijun Wang, Kangrui Guo, Mei Liu, Lulu Zhang, Shear buckling strengths of web-posts in a castellated steel beam with hexagonal web openings, Journal of Constructional Steel Research, Volume 121, June 2016, Pages 173-184 [15] Peijun Wang, Xudong Wang, Mei Liu, Lulu Zhang, Web-post buckling of fully and partially protected cellular steel beams at elevated temperatures in a fire, Thin-Walled Structures, Volume 98, Part A, January 2016, Pages 29-38 [14] Peijun Wang, Changbin Liu, Mei Liu, Xudong Wang, Numerical studies on large deflection behaviour of axially restrained corrugated web steel beams at elevated temperatures, Thin-Walled Structures, Volume 98, Part A, January 2016, Pages 58-74 [13] Mei Liu, Yicun Chang, Peijun Wang, Lulu Zhang, Buckling behaviors of thin-walled aluminum alloy column with irregular-shaped cross section under axial compression in a fire, Thin-Walled Structures, Volume 98, Part A, January 2016, Pages 230-243 [12] Mei Liu, Lulu Zhang, Peijun Wang, Yicun Chang, Experimental investigation on local buckling behaviors of stiffened closed-section thin-walled aluminum alloy columns under compression, Thin-Walled Structures, Volume 94, September 2015, Pages 188-198 [11] Mei Liu, Lulu Zhang, Peijun Wang, Yicun Chang, Buckling behaviors of section aluminum alloy columns under axial compression, Engineering Structures, Volume 95, 15 July 2015, Pages 127-137 [10] Peijun Wang, Xudong Wang, Mei Liu, Practical method for calculating the buckling temperature of the web-post in a cellular steel beam in fire, Thin-Walled Structures, Volume 85, December 2014, Pages 441-455 [9] Peijun Wang, Xudong Wang, Ning Ma, Vertical shear buckling capacity of web-posts in castellated steel beams with fillet corner hexagonal web openings, Engineering Structures, Volume 75, 15 September 2014, Pages 315-326 [8] Peijun Wang, Qijie Ma, Xudong Wang, Investigation on Vierendeel mechanism failure of castellated steel beams with fillet corner web openings, Engineering Structures, Volume 74, 1 September 2014, Pages 44-51 [7] Peijun Wang, Ning Ma, Xudong Wang, Numerical studies on large deflection behaviors of restrained castellated steel beams in a fire, Journal of Constructional Steel Research, Volume 100, September 2014, Pages 136-145 [6] Qijie Ma, Peijun Wang, Simplified stability design method for the stiffened plate with slotted holes under uniform compression, Thin-Walled Structures, Volume 68, July 2013, Pages 35-41 [5] Meng Wang, Peijun Wang, Strategies to increase the robustness of endplate beam–column connections in fire, Journal of Constructional Steel Research, Volume 80, January 2013, Pages 109-120 [4] Wang Peijun, Xia Jinhuan, Du Qiudi. Temperature distribution of steel columns protected by sprayed fire retardant coatings with three sides exposed to fire. Fire and Materials, 2015, 39(5): 487-506 [3] Zheng Yuchao, Yan Yang, Wang Peijun. Buckling Strength of Pressurized Cylindrical Shells under Axial Compression. Applied Mechanics and Materials, 2014, 638-640: 1750-1753 [2] Ma Qijie, Wang Peijun, Huang Quan.Fire Resistance of Web-slotted Cold-formed Channel Columns with Non-uniform Temperature Distributions. Applied Mechanics and Materials, 2013, 353-356: 2313-2318 [1] Wang Peijun, Xia Jinhuan; du,Qiudi. Temperature Rise of a Protected Steel Column Exposed to Fire from Two Adjacent Sides. Fire Technology, 2015, Articles not published yet, but available online Article in Press. 3. 中文期刊論文 [15] 馬寧, 王培軍, 馮樹國. 火災高溫下受約束蜂窩鋼梁懸鏈線效應研究[J]. 建築鋼結構進展,2016,01:1-7+43. [14] 張哲, 劉昌斌, 王培軍. 火災高溫下軸向受約束波紋腹板梁受力性能參數分析[J]. 鋼結構,2016,01:94-99. [13] 王旭東,王培軍. 蜂窩鋼梁孔間腹板屈曲性能研究進展[J]. 建築鋼結構進展,2014,06:1-13. [12] 王培軍, 金環, 杜秋笛. 厚型防火塗料保護鋼柱三面受火時截面溫度分布規律及計算方法[J]. 建築鋼結構進展,2015,01:42-49. [11] 王培軍, 王旭東, 馬寧. 圓角多邊孔蜂窩梁孔間腹板屈曲承載力研究[J]. 工程力學,2015,04:145-152. (EI論文, 通訊作者) [10] 王培軍,夏 金環, 鄭玉超. 防火板保護鋼柱四面受火時截面溫度計算方法[J]. 建築鋼結構進展,2015,02:44-51. [9] 劉梅, 張露露, 王培軍, 孫新城, 常熤存. 閉口加勁薄壁鋁合金軸壓構件局部屈曲性能試驗研究[J]. 建築結構學報,2015,07:81-90. (EI論文, 通訊作者) [8] 劉梅, 張露露, 王培軍. 復雜截面薄壁鋁合金軸壓構件受力性能試驗研究[J]. 建築結構學報,2015,09:83-90. (EI論文, 通訊作者) [7] 張哲, 劉昌斌, 王培軍. 火災下軸向約束波紋腹板梁懸鏈線效應分析[J]. 建築鋼結構進展,2015,05:58-64. [6] 王躍, 鄭玉超, 王培軍, 朱立. 局部壓力下薄壁鋼筒倉屈曲性能研究[J]. 特種結構,2015,04:33-38. [5] 王培軍, 夏金環. 環向加勁鋼筒倉在均勻內壓作用下倉壁等效厚度研究[J]. 特種結構,2014,01:13-19. [4] 王培軍, 鄭玉超. 考慮內壓影響的薄壁鋼板筒倉屈曲承載力研究[J]. 特種結構,2013,06:7-14. [3] 王培軍, 黃權, 管謨達, 王康, 邱學軍, 孫魯魯. 異形截面軸心受壓鋁合金構件屈曲性能試驗研究[J]. 土木建築與環境工程,2013,01:70-75. [2] 王培軍, 王曉. 截面溫度不均勻受約束鋼柱抗火性能試驗研究與有限元分析[J]. 建築結構學報,2013,03:28-34. (EI論文, 通訊作者) [1] 馬奇傑, 王培軍, 鄭英傑. 腹板開槽冷彎薄壁卷邊槽鋼抗火性能有限元分析模型[J]. 防災減災工程學報,2012,02:205-209. |