• 沒有找到結果。

參考書目 參考書目 參考書目 參考書目

參考書目

ASCE. (1992). “Structural fire protection.” ASCE committee on fire protection, Manual, No. 78, ASCE, Reston, Va..

Arioz, O. (2007). “Effects of elevated temperatures on properties of concret.” Fire Safety Journal, 42(8), 516-522.

ASTM E21 (2009). “Standard Test Method for Elevated Temperature Tension Tests of Metallic Materials.” American Society for Testing and Materials.

BS 1902-5.5 (1991) Methods of testing refractory materials. Refractory and thermal properties. Determination of thermal conductivity (panel/calorimeter method) (method 1902-505). British Standards Institution.

BS 1902-5.8 (1992) Methods of testing refractory materials. Refractory and thermal properties. Determination of thermal conductivity (split column method) (method 1902-508). British Standards Institution.

BS 476-20 (1987). “Fire tests on building materials and structures, Part 20, Method of determination of the fire resistance of elements of construction (general principles).” BS 476-20, 1987, British Standards Institution, London.

BS 476-21 (1987). “Fire tests on building materials and structures, Part 21, Method for determination of the fire resistance of load bearing elements of construction.” BS 476-21, 1987, British Standards Institution, London.

Ellobody, E., and Young, B. (2010). “Investigation of concrete encased steel composite columns at elevated temperatures,” Thin-Walled Structures, 48(8), 597-608

Ellingwood, B., and Shaver, JR. (1980). “Effects of fire on reinforced-concrete members.” Journal of the structural division-ASCE, 106(11), 2151-2166.

Eurocode 2. (1996). “Design of concrete structures, Part 1.2, General rules-structural fire design.” Eurocode 2 DD ENV 1992-1-2:1996, British Standards Institution, London.

Eurocode 3. (2005). “Design of steel structures, Part 1.2, General rules-structural fire design.” Eurocode 3 DD ENV 1993-1-2:2005, British Standards Institution,

150

London.

Eurocode 4. (2005). “Design of composite steel and concrete structures, Part 1.2, General rules-structural fire design.” Eurocode 4 DD ENV 1994-1-2:2005, British Standards Institution, London.

Harmathy, T. Z. and Alien, L. W. (1973), “Thermal properties of selected masonry unit concretes.” Journal of the American Concrete Institute, 70, 132-162

Huang, Z.-F., Tan, K.-H., and Phng, G.-H. (2007). “Axial restraint effects on the fire resistance of composite columns encasing I-section steel.” Journal of Constructional Steel Research, 63(4), 437-447.

Huang, Z.-F., Tan, K.-H., Toh, W.-S., and Phng, G.-H. (2008). “Fire resistance of composite columns with embedded I-section steel - Effects of section size and load level.” Journal of Constructional Steel Research, 64, 312-325.

JIS A1412-1 (1999) Test method for thermal resistance and related properties of thermal insulations – Part 3: Circular pipe apparatus. Japanese Industrial Standards.

ISO 11357-1 (2009) Plastics – Differential scanning calorimetry (DSC) – Part 1:

General principles. International Organization for Standardization.

ISO/TR 15655 (3003) Fire resistance – Guidelines for evaluating the predictive capability of calculation models for structural fire behaviour. International Organization for Standardization.

ISO 8301 (1991) Thermal insulation – Determination of steady-state thermal resistance and related properties – Heat flow meter apparatus. International Organization for Standardization.

151

ISO 6892-2 (2011) Metallic materials – Tensile testing – Part 2: Method of test at elevated temperature. International Organization for Standardization.

ISO 8302 (1991) Thermal insulation – Determination of steady-state thermal resistance and related properties – Guarded hot plate apparatus. International Organization for Standardization.

ISO 834. (1999). “Fire resistance tests-elements of building construction, Part 1, General requirements.” International Standard ISO 834, Geneva.

Kodur, V. K. R. (2010). “High-temperature properties of steel for fire resistance modeling of structures.” Journal of material in Civil Engineering, ASCE, 22(5), 423-434.

Kodur, V. K. R., and Sultan, M. A. (2003). “Effect of temperature on thermal properties of high-strength concrete.” Journal of Materials in Civil Engineering, 15(2), 101-107.

Lie, T. T. (1972). “Fire and buildings,” Applied Science, London

Lie, T. T. (1994). “Fire resistance of circular steel columns filled with bar-reinforced concrete.” Journal of Structural Engineering, ASCE, 120(5), 1489-1509.

Li, L. Y., and Purkiss, J. (2005). “Stress-strain constitutive equations of concrete material at elevated temperatures.” Fire Safety Journal, 40(7), 669-686.

Mao, X. Y., and Kodur, V. K. R. (2011). “Fire resistance of concrete encased steel column under 3- and 4-side standard heating.” Journal of Constructional Steel Research, 67(3), 270-280.

Raut, N. K., and Kodur, V. K. R. (2011). “Response of high strength concrete columns under design fire exposure.” Journal of Structural Engineering, ASCE, 67(4), 69-79.

Touloukian, Y. S., Kirby, R. K., Taylor, R. E., Desai, P. D. (1977). “Thermal Expansion Metallic Elements and Alloys,” IFI/Plenum. New York, NY.

The Structural Engineer, “Structural design benefits sustainability,” Volume 85, Issue 9, 2007.

Tang, A., Lee, W. C., and Cheng, P. “Case studies – composite structural design of a high-rise building in Hong Kong and the Haeco aircraft maintenance facility in

152

Hong Kong International Airport,” 第六屆海峽兩岸及香港鋼及組合結構技 術研討會,香港,2010。

Yu, J.-T., Lu, Z.-D., and Xie, Q. (2007). “Nonlinear analysis of SRC columns subjected to fire.” Fire Safety Journal, 42(1), 1-10.

林銅柱(1995),「高性能混凝土耐火性能之探討」,內政部建築研究所專題研究成 題研究計畫報告 NSC89-2211-E011-010。

危時秀(2003),「普通混凝土熱傳導性質之研究」,中原大學土木工程學系碩士論

153

何奇鈺(2007),「鋼結構用防火被覆材料之熱傳特性研究」,國立成功大學航空太 空工程學系碩士論文,賴維祥指導。

邱耀正(2007),「複合構件 SRC 柱及 H 型鋼梁之火害行為研究-先期規畫研究」, 內政部建築研究所委託研究成果報告。

黃彰斌、林誠興、徐瑞祥(2006),「鋼筋混凝土梁受火害之溫度分佈與殘餘強度 分析」,技術學刊,第二十一卷,第二期,pp. 175-188,民國九十五年。

徐瑞祥、林誠興、黃彰斌(2004) ,「鋼筋混凝土樑受火害後之剪力強度數值模 擬」,中華民國建築學會「建築學報」,第四十八期,pp. 59-73,民國九十 三年。

中華民國國家標準 CNS 12514 (2010),「建築物構造部分耐火試驗法」,經濟部 標準檢驗局。

中華民國國家標準 CNS 5336 (1997),「鋼鐵及耐熱合金之高溫拉伸試驗法」,經 濟部標準檢驗局。

楊華(2010),「單面受火的矩形鋼管混凝土柱截面溫度場分析」,天津大學學報,

第四十三卷,第五期。

內政部營建署(2004),「鋼骨鋼筋混凝土構造設計與解說」。

陳舜田(1999),「建築物火害及災後安全評估法」,科技圖書股份有限公司。

154

155

鋼骨鋼筋混凝土高溫材料性質之研究 出版機關:內政部建築研究所

電話:(02)89127890

地址:新北市新店區北新路 3 段 200 號 13 樓 網址:http://www.abri.gov.tw

編者:陳誠直、趙文成 出版年月:100 年 12 月 版次:第一版

ISBN:978-986-03-0611-8 (平裝)