¶ 冷軋型鋼構造建築物結構設計規範及解說 主管體系:國土管理專業分類:結構設計狀態:現行公發布日:2004-03-25(民國 93 年 03 月 25 日)修正日期:2015-10-29(民國 104 年 10 月 29 日)廢止日期:未提供發文字號:台內營字第1040815215號 令官方詳情:內政部主管法規查詢系統 ¶ 本規範目錄第一章 總則 (原檔第 2 頁)1.1 適用範圍 ............................................................................................................ (原檔第 2 頁)1.2 品質要求 ............................................................................................................ (原檔第 2 頁)1.3 設計基準 ............................................................................................................ (原檔第 2 頁)1.4 常數 .................................................................................................................... (原檔第 2 頁)第二章 載重 (原檔第 2 頁)2.1 適用範圍 ............................................................................................................ (原檔第 2 頁)2.2 載重組合 ............................................................................................................ (原檔第 2 頁)第三章 材料 (原檔第 2 頁)3.1 一般規定 ............................................................................................................ (原檔第 2 頁)3.2 適用鋼材 ............................................................................................................ (原檔第 2 頁)3.3 降伏應力 ............................................................................................................ (原檔第 2 頁)3.4 冷作成型之影響 ................................................................................................ (原檔第 2 頁)3.5 延展性 ................................................................................................................ (原檔第 2 頁)3.6 鋼材厚度 ............................................................................................................ (原檔第 2 頁)第四章 肢材設計 (原檔第 2 頁)4.1 適用範圍 ............................................................................................................ (原檔第 2 頁)4.2 肢材尺寸之限制與考量 .................................................................................... (原檔第 2 頁)4.3 加勁肢材之有效寬度 ........................................................................................ (原檔第 2 頁)4.4 未加勁肢材之有效寬度 .................................................................................... (原檔第 2 頁)4.5 具邊緣加勁材之均部受壓肢材的有效寬度 .................................................... (原檔第 2 頁)4.6 具中間加勁材之均部受壓加勁肢材或邊緣加勁肢材的有效寬度 ................ (原檔第 2 頁)第五章 受拉構材 (原檔第 2 頁)5.1 適用範圍 ............................................................................................................ (原檔第 2 頁)5.2 受拉強度 ............................................................................................................ (原檔第 2 頁)第六章 撓曲構材 (原檔第 3 頁)6.1 適用範圍 ............................................................................................................ (原檔第 3 頁)6.2 一般撓曲 ............................................................................................................ (原檔第 3 頁)6.3 剪力強度 ............................................................................................................ (原檔第 3 頁)6.4 撓曲–剪力強度 ................................................................................................ (原檔第 3 頁)6.5 腹板皺曲強度 .................................................................................................... (原檔第 3 頁)6.6 撓曲–腹板皺曲強度 ........................................................................................ (原檔第 3 頁)6.7 撓曲–扭轉作用 ................................................................................................ (原檔第 3 頁)6.8 加勁材 ................................................................................................................ (原檔第 3 頁)第七章 軸心載重受壓構材 (原檔第 3 頁)7.1 適用範圍 ............................................................................................................ (原檔第 3 頁)7.2 降伏、撓曲挫屈、撓曲-扭轉與扭轉挫屈之標稱強度 .................................. (原檔第 3 頁)7.3 扭曲挫屈強度 .................................................................................................... (原檔第 3 頁)第八章 承受軸力及彎矩之構材 (原檔第 3 頁)8.1 適用範圍 ............................................................................................................ (原檔第 3 頁)8.2 軸向拉力與撓曲交互作用強度 ........................................................................ (原檔第 3 頁)8.3 軸向壓力與撓曲交互作用強度 ........................................................................ (原檔第 3 頁)第九章 中空圓管構材 (原檔第 3 頁)9.1 適用範圍 ............................................................................................................ (原檔第 3 頁)9.2 撓曲強度 ............................................................................................................ (原檔第 3 頁)9.3 軸向壓力強度 .................................................................................................... (原檔第 3 頁)9.4 軸向壓力與撓曲作用強度 ................................................................................ (原檔第 3 頁)第十章 組合構材 (原檔第 3 頁)10.1 適用範圍 .......................................................................................................... (原檔第 3 頁)10.2 組合斷面 .......................................................................................................... (原檔第 3 頁)10.3 側向支撐 .......................................................................................................... (原檔第 3 頁)10.4 冷軋型鋼框架式構造 ...................................................................................... (原檔第 3 頁)10.5 樓板、屋頂或牆體鋼隔板構造 ...................................................................... (原檔第 3 頁)10.6 金屬屋頂與牆體系統 ...................................................................................... (原檔第 3 頁)第十一章 接合設計 (原檔第 4 頁)11.1 一般規定 .......................................................................................................... (原檔第 4 頁)11.2 銲接接合 .......................................................................................................... (原檔第 4 頁)11.3 螺栓接合 .......................................................................................................... (原檔第 4 頁)11.4 螺絲接合 .......................................................................................................... (原檔第 4 頁)11.5 撕裂 .................................................................................................................. (原檔第 4 頁)11.6 其他材料的接合 .................................................................................................. (原檔第 4 頁)第十二章 製作、安裝、品管 (原檔第 4 頁)12.1 適用範圍 .......................................................................................................... (原檔第 4 頁)12.2 一般規定 .......................................................................................................... (原檔第 4 頁)12.3 製造 .................................................................................................................. (原檔第 4 頁)12.4 安裝 .................................................................................................................. (原檔第 4 頁)12.5 品質管制計畫 .................................................................................................. (原檔第 4 頁)第十三章 耐震及耐風設計特別規定 (原檔第 4 頁)13.1 適用範圍 .......................................................................................................... (原檔第 4 頁)13.2 冷軋鋼輕型剪力牆之耐震及耐風要求 .......................................................... (原檔第 4 頁)13.3 應用條件 .......................................................................................................... (原檔第 4 頁)13.4 設計抗剪力 ...................................................................................................... (原檔第 4 頁)13.5 耐震設計規定 .................................................................................................. (原檔第 4 頁)第一章 總則 (原檔第 5 頁)1.1 適用範圍 (原檔第 5 頁)1.2 品質要求 (原檔第 6 頁)1.3 設計基準 (原檔第 6 頁)1.3.1 容許強度法 (ASD) (原檔第 7 頁)1.3.2 載重及強度係數設計法 (LRFD) (原檔第 7 頁)1.4 常數 (原檔第 12 頁)第二章 載重 (原檔第 13 頁)2.1 適用範圍 (原檔第 13 頁)2.2 載重組合 (原檔第 13 頁)2.2.1 容許強度法的載重組合 (原檔第 13 頁)2.2.2 載重與強度係數設計法的載重組合 (原檔第 14 頁)1.2 Ds +1.6 Cw+1.4C (原檔第 15 頁)第三章 材料 (原檔第 16 頁)3.1 一般規定 (原檔第 16 頁)3.1.1 冷軋型鋼構材 (原檔第 16 頁)3.1.2 鋼材檢驗 (原檔第 16 頁)3.1.3 鋼材品質證明 (原檔第 16 頁)3.3 降伏應力 (原檔第 19 頁)3.4 冷作成型之影響 (原檔第 20 頁)3.5 延展性 (原檔第 23 頁)3.6 鋼材厚度 (原檔第 23 頁)第四章 肢材設計 (原檔第 24 頁)4.1 適用範圍 (原檔第 24 頁)4.2 肢材尺寸之限制與考量 (原檔第 26 頁)4.2.1 翼板平板段之寬厚比 (原檔第 26 頁)4.3 加勁肢材之有效寬度 (原檔第 30 頁)6.5 節。 (原檔第 40 頁)4.4 未加勁肢材之有效寬度 (原檔第 40 頁)4.4.1 均布受壓之未加勁肢材 (原檔第 40 頁)4.4.2 具應力坡度之未加勁肢材及邊緣加勁材 (原檔第 41 頁)4.5 具邊緣加勁材之均布受壓肢材的有效寬度 (原檔第 43 頁)4.6 具中間加勁材之均布受壓加勁肢材或邊緣加勁肢材的有效寬度 (原檔第 45 頁)4.6.1 具單個或數個中間加勁材之均布受壓加勁肢材 (原檔第 45 頁)4.6.1.1 具中間加勁材之均布受壓肢材的板挫屈係數 (原檔第 48 頁)4.6.2 具中間加勁材之邊緣加勁肢材的有效寬度 (原檔第 49 頁)第五章 受拉構材 (原檔第 51 頁)5.1 適用範圍 (原檔第 51 頁)5.2 受拉強度 (原檔第 51 頁)第六章 撓曲構材 (原檔第 53 頁)6.1 適用範圍 (原檔第 53 頁)6.2 一般撓曲 (原檔第 53 頁)6.2.1 標稱撓曲強度 (原檔第 53 頁)6.2.2.1 構材具開放型斷面之側向扭轉挫屈強度 (原檔第 58 頁)6.2.2.2 閉合箱型構材之側向扭轉挫屈強度 (原檔第 66 頁)10.6.1 及10.6.2 節之構材,其標稱撓曲強度應依下列公式計算,本節中所列之安全係數及強度 (原檔第 67 頁)6.3 剪力強度 (原檔第 72 頁)6.3.1 腹板無開孔之剪力強度 (原檔第 72 頁)6.3.2 C 型斷面腹板有開孔之剪力強度 (原檔第 74 頁)6.4 撓曲 - 剪力強度 (原檔第 75 頁)6.4.1 容許強度法(ASD) (原檔第 75 頁)6.4.2 載重及強度係數法(LRFD) (原檔第 76 頁)6.5 腹板皺曲強度 (原檔第 78 頁)6.5.1 腹板無開孔之腹板皺曲強度 (原檔第 78 頁)6.5.2 C 型斷面腹板有開孔之腹板皺曲強度 (原檔第 85 頁)6.6 撓曲 - 腹板皺曲強度 (原檔第 87 頁)6.6.1 容許強度法(ASD) (原檔第 87 頁)6.6.2 載重與強度係數設計法(LRFD) (原檔第 88 頁)6.7 撓曲 - 扭轉作用 (原檔第 91 頁)6.8 加勁材 (原檔第 91 頁)6.8.1 承壓加勁材 (原檔第 91 頁)6.8.2 C 型撓曲構材中的承壓加勁材 (原檔第 92 頁)6.8.3 剪力加勁材 (原檔第 93 頁)第七章 軸向受壓構材 (原檔第 95 頁)7.1 適用範圍 (原檔第 95 頁)7.2 降伏、撓曲挫屈、撓曲-扭轉與扭轉挫屈強度 (原檔第 95 頁)7.2.1 無扭轉挫屈或撓曲-扭轉挫屈之斷面 (原檔第 102 頁)7.2.2 扭轉挫屈或撓曲-扭轉挫屈的雙對稱或單對稱斷面 (原檔第 103 頁)7.2.1 節之公式(7.2-2)或下列公式(7.2-2)之較小值。 (原檔第 103 頁)7.2.3 點對稱斷面構材 (原檔第 104 頁)7.2.4 非對稱斷面構材 (原檔第 104 頁)7.3 扭曲挫屈強度 (原檔第 104 頁)第八章 承受軸力及彎矩之構材 (原檔第 109 頁)8.1 適用範圍 (原檔第 109 頁)8.2 軸向拉力與撓曲交互作用強度 (原檔第 109 頁)8.2.1 容許強度法 (ASD) (原檔第 109 頁)8.2.2 載重及強度係數設計法 (LRFD) (原檔第 109 頁)8.3 軸向壓力與撓曲交互作用強度 (原檔第 110 頁)8.3.1 容許強度法(ASD) (原檔第 110 頁)8.3.2 載重及強度係數設計法 (LRFD) (原檔第 115 頁)第九章 中空圓管構材 (原檔第 118 頁)9.1 適用範圍 (原檔第 118 頁)9.2 撓曲強度 (原檔第 120 頁)9.3 軸向壓力強度 (原檔第 121 頁)9.4 軸向壓力與撓曲作用強度 (原檔第 122 頁)第十章 組合構材 (原檔第 123 頁)10.1 適用範圍 (原檔第 123 頁)10.2 組合斷面 (原檔第 123 頁)10.2.1 兩C 型斷面構成I 型斷面的撓曲構材 (原檔第 123 頁)10.2.2 兩斷面組合的受壓構材 (原檔第 125 頁)10.2.3 受壓肢材之接合間距 (原檔第 126 頁)10.3 側向支撐 (原檔第 127 頁)10.3.1 對稱梁與柱 (原檔第 127 頁)10.3.2 C 型斷面與Z 型斷面撓曲構材 (原檔第 128 頁)10.3.2.1 翼板不與外覆材連結的C 型斷面與Z 型斷面 (原檔第 128 頁)6.2.2.1 節規定之所需強度。 (原檔第 129 頁)10.3.3 受軸向壓力構材的側支撐 (原檔第 132 頁)10.4 冷軋型鋼框架式構造 (原檔第 133 頁)10.4.1 牆立柱組合的全鋼設計 (原檔第 134 頁)10.5 樓板、屋頂或牆體鋼膈板構造 (原檔第 134 頁)10.6 金屬屋頂與牆體系統 (原檔第 136 頁)10.6.1 翼板以貫穿式接合於鋼承板或外覆板之梁 (原檔第 136 頁)10.6.2 翼板連接屋頂系統摺板之撓曲構材 (原檔第 137 頁)10.6.3 翼板連接鋼承板或外覆板之受壓構材 (原檔第 138 頁)10.6.4 承受重力載重之屋頂系統的支撐之錨定—上翼板連結外覆材者 (原檔第 140 頁)第十一章 接合設計 (原檔第 143 頁)11.1 一般規定 (原檔第 143 頁)11.2 銲接接合 (原檔第 143 頁)11.2.1 對接開槽銲 (原檔第 144 頁)11.2.2 電弧點銲 (原檔第 145 頁)11.2.2.1 剪力 (原檔第 146 頁)11.2.2.2 拉力 (原檔第 151 頁)11.2.3 電弧縫銲 (原檔第 152 頁)11.2.4 填角銲 (原檔第 154 頁)11.2.5 喇叭形開槽銲 (原檔第 157 頁)11.2.6 電阻銲接 (原檔第 161 頁)11.2.7 淨斷面積之破壞(非平板之剪力遲滯) (原檔第 162 頁)11.3 螺栓接合 (原檔第 163 頁)11.3.1 接合部剪力強度、間距及邊距 (原檔第 165 頁)11.3.2 接合部淨斷面之破壞(剪力遲滯) (原檔第 167 頁)11.3.3 承壓強度 (原檔第 168 頁)11.3.4 螺栓的剪力及拉力 (原檔第 170 頁)6.4 mm≤d<12.7 (原檔第 173 頁)6.4 mm≤d<12.7 (原檔第 173 頁)6.4 mm≤d<12.7 (原檔第 173 頁)6.4 mm≤d<12.7 (原檔第 173 頁)12.7 mm(1/2 in)與25.4 mm(1 in.)直徑螺栓的平均拉應力面與全斷面比值為0.75,兩者間相 (原檔第 174 頁)11.4 螺絲接合 (原檔第 174 頁)11.4.1 最小間距 (原檔第 176 頁)11.4.2 最小邊距 (原檔第 176 頁)11.4.3 剪力 (原檔第 176 頁)11.4.3.1 接合部剪力 (原檔第 176 頁)11.4.3.2 邊距大小影響連結物之剪力強度 (原檔第 178 頁)11.4.3.3 螺絲的剪力強度 (原檔第 178 頁)11.4.4 受拉強度 (原檔第 178 頁)11.4.4.1 螺絲拔出破壞 (原檔第 178 頁)11.4.4.2 螺絲穿刺破壞 (原檔第 179 頁)11.4.4.3 螺絲拉力強度 (原檔第 180 頁)11.4.5 剪力與穿刺力之交互作用 (原檔第 180 頁)11.4.5.1 ASD 方式 (原檔第 181 頁)11.4.5.2 LRFD 方式 (原檔第 181 頁)11.5 撕裂 (原檔第 182 頁)11.5.1 剪力撕裂 (原檔第 182 頁)11.5.2 張力撕裂 (原檔第 183 頁)11.5.3 塊狀剪力撕裂 (原檔第 183 頁)11.6 其他材料的接合 (原檔第 184 頁)11.6.1 承壓力 (原檔第 184 頁)11.6.2 拉力 (原檔第 184 頁)11.6.3 剪力 (原檔第 184 頁)第十二章 製作、安裝、品管 (原檔第 185 頁)12.1 適用範圍 (原檔第 185 頁)12.1.1 定義 (原檔第 185 頁)12.2 一般規定 (原檔第 185 頁)12.3 製造 (原檔第 186 頁)12.3.1 材料 (原檔第 186 頁)12.3.2 切割 (原檔第 186 頁)12.3.3 彎曲與整平加工 (原檔第 186 頁)12.3.4 開口 (原檔第 186 頁)12.3.5 銲接 (原檔第 186 頁)12.3.6 表面處理 (原檔第 187 頁)12.3.6.1 防銹塗裝 (原檔第 187 頁)12.3.6.2 鍍鋅法 (原檔第 188 頁)12.3.7 成品儲放 (原檔第 188 頁)12.3.8 成品運輸及吊放 (原檔第 188 頁)12.4 安裝 (原檔第 189 頁)12.4.1 安裝計畫書內容 (原檔第 189 頁)12.5 品質管制計畫 (原檔第 189 頁)12.5.1 工廠製造品質管制計畫 (原檔第 189 頁)12.5.2 工地安裝品質管制計畫 (原檔第 190 頁)第十三章 耐震及耐風設計特別規定 (原檔第 192 頁)13.1 適用範圍 (原檔第 192 頁)13.2 冷軋鋼輕型剪力牆之耐震及耐風要求 (原檔第 192 頁)0.8 或 1.1 (原檔第 193 頁)1.1 或 1.73 (原檔第 193 頁)1.1 or 1.37 (原檔第 193 頁)0.8 (最小) (原檔第 193 頁)0.8 (最小) (原檔第 193 頁)13.3 應用條件 (原檔第 194 頁)13.3.1 表 13.2(1),13.2(2)及13.2(3)之限制 (原檔第 194 頁)13.3.2 木質板外覆材 (原檔第 194 頁)13.3.3 石膏板外覆材 (原檔第 195 頁)13.3.4 鋼板外覆材 (原檔第 195 頁)13.3.5 纖維板外覆材 (原檔第 195 頁)13.4 設計抗剪力 (原檔第 196 頁)13.5 耐震設計規定 (原檔第 196 頁)13.5.1 邊界構材 (原檔第 196 頁)13.5.2 接合物 (原檔第 196 頁)13.5.3 跨間有斜撐之構材 (原檔第 196 頁)13.5.4 木質板外覆材 (原檔第 196 頁)13.5.5 對角斜撐 (原檔第 197 頁)冷軋型鋼構造建築物結構設計規範及解說-第 198–203 頁44.2 t (原檔第 225 頁)39.8 t (原檔第 225 頁)14.3 t (原檔第 225 頁)12.9 t (原檔第 225 頁)65.7 t (原檔第 226 頁)59.2 t (原檔第 226 頁)1.5 倍計算 (原檔第 230 頁)冷軋型鋼構造建築物結構設計規範及解說-第 237–243 頁冷軋型鋼構造建築物結構設計規範及解說-第 244–245 頁1.10 Hsiao, L. E., W. W. Yu and T. V. Galambos; “AISI LRFD Method for Cold–Formed Steel (原檔第 253 頁)1.11 Ellingwood, B., T. V. Galambos, J. G. MacGregor, and C. A. Cornell, “Development of a (原檔第 253 頁)1.12 Galambos, T. V., B. Ellingwood, J. G. MacGregor, and C. A. Cornell, “Probability Based Load (原檔第 253 頁)1.13 Rang, T. N., T. V. Galambos, and W. W. Yu, “Load and Resistance Factor Design of (原檔第 253 頁)1.14 Rang, T. N., T. V. Galambos, and W. W. Yu, “Load and Resistance Factor Design of (原檔第 254 頁)1.15 Rang, T. N., T. V. Galambos, and W. W. Yu, “Load and Resistance Factor Design of (原檔第 254 頁)1.16 Rang, T. N., T. V. Galambos, and W. W. Yu, “Load and Resistance Factor Design of (原檔第 254 頁)1.17 Supomsilaphachai, B., T. V. Galambos, and W. W. Yu, “Load and Resistance Factor Design of (原檔第 254 頁)1.18 Ellingwood, B., J. G. MacGregor, T. V. Galambos, and C. A. Cornell, “Probability Based Load (原檔第 254 頁)1.19 Hsiao, L. E., W. W. Yu and T. V. Galambos, “Load and Resistance Factor Design of Cold-Formed (原檔第 254 頁)4.10 Nguyen, P. and W. W. Yu, “Structural Behavior of Transversely Reinforced Beams Webs,” Final (原檔第 255 頁)4.11 Nguyen, P. and W. W. Yu, “Structural Behavior of Longitudinally Reinforced Beams Webs,” (原檔第 255 頁)4.12 Yu, W. W., Cold-Formed Steel Design, 2 (原檔第 256 頁)4.13 Bleich, F., Buckling strength of Metal Structures, McGraw-Hill Book Co., New York, NY, 1952. (原檔第 256 頁)4.14 Weng, C. C. and T. B. Pekoz, “Subultimate Behavior of Uniformly Compressed Stiffened Plate (原檔第 256 頁)4.15 Ortiz-Colberg, R. and T. B. Pekoz, “Load Carrying Capacity of Perforated Cold-Formed Steel (原檔第 256 頁)4.16 Miller, T. H. and T. Pekoz, “Unstiffened Strip Approach for Perforated Wall Studs,” Journal of (原檔第 256 頁)4.17 Pan, C. L. and J. L., Peng, “Performance of Cold-Formed Steel Wall Frames under (原檔第 256 頁)4.18 Pekoz, T. B., “Development of a Unified Approach to the Design of Cold-Formed Steel (原檔第 256 頁)4.19 Cohen, J. M. and T. B. Pekoz, “Local Buckling Behavior of Plate Elements,” Research Report, (原檔第 256 頁)4.20 Schafer, B. W. and T. Pekoz, “Laterally Braced Cold-formed Steel Flexural Members with Edge (原檔第 256 頁)4.21 Shan, M. Y., R. A. LaBoube, and W. W. Yu, “Behavior of Web Elements with Openings Subjected (原檔第 256 頁)4.22 Bambach, M. R. and K. J. R. Rasmussen, “Tests on Unstiffened Elements under Combined (原檔第 256 頁)4.23 Bambach, M. R. and K. J. R. Rasmussen, “Elastic and Plastic Effective Width Equations for (原檔第 256 頁)4.24 Bambach, M. R. and K. J. R. Rasmussen, “Design Method for Thin-Walled Sections Containing (原檔第 256 頁)4.25 Bulson, P. S., The Stability of Flat Plates, American Elsevier Publishing Company, New York, NY, (原檔第 256 頁)4.26 Pekoz, T. B., “Development of a Unified Approach to the Design of Cold-Formed Steel (原檔第 256 頁)4.27 Desmond, T. P., T. B. Pekoz, and G. Winter, “Edge Stiffeners for Thin-Walled Members,” (原檔第 257 頁)4.28 Schafer, B. W., A. Sarawit, T. Pekoz, “Complex Edge Stiffeners for Thin-Walled Members,” (原檔第 257 頁)4.29 Yang, H. and B. W. Schafer, “Comparison of AISI Specification Methods for Members with (原檔第 257 頁)5.1 American Institute of Steel Construction, Specification for Structural Steel Buildings, ANSI/AISC (原檔第 257 頁)6.1 American Iron and Steel Institute, LRFD Cold-Formed Steel Design Manual, Washington, D. C., (原檔第 257 頁)6.2 Hsiao, L. E., W. W. Yu, and T. V. Galambos, “Load and Resistance Factor Design of Cold-Formed (原檔第 257 頁)6.3 Reck, H. P., T. Pekoz, and G. Winter, “Inelastic Strength of Cold-Formed Steel Beams,” Journal (原檔第 257 頁)6.4 Yener, M. and T. B. Pekoz, “Partial Stress Redistribution in Cold-Formed Steel,” Journal of (原檔第 257 頁)6.5 Yener, M. and T. B. Pekoz, “Partial Moment Redistribution in Cold-Formed Steel,” Journal of (原檔第 257 頁)6.6 American Iron and Steel Institute, Cold-Formed Steel Design Manual, Washington, D. C., 2008. (原檔第 257 頁)6.7 Yu, W. W., Cold-Formed Steel Design, 3rd edition, John Wiley & Sons, NY, 2000. (原檔第 257 頁)6.8 Bambach, M. R. and K. J. R. Rasmussen, “Tests on Unstiffened Elements under Combined (原檔第 257 頁)6.9 Bambach, M. R. and K. J. R. Rasmussen, “Elastic and Plastic Effective Width Equations for (原檔第 257 頁)6.10 Winter, G., Discussion of “Strength of Beams as Determined by Lateral Buckling,” by Karl de (原檔第 258 頁)6.11 Winter, G., “Lateral Stability of Unsymmetrical I-beams and Trusses,” Transactions, ASCE, Vol. (原檔第 258 頁)6.12 Kirby, P. A. and D. A. Nethercot, Design for Structural Stability, John Wiley and Sons, Inc., NY, (原檔第 258 頁)6.13 Pekoz, T. B. and G. Winter, “Torsional-Flexural Buckling of Thin-Walled Sections Under (原檔第 258 頁)6.14 Pekoz, T. B. and N. Celebi, “Torsional-Flexural Buckling of Thin-Walled Sections Under Eccentric (原檔第 258 頁)6.15 Galambos, T. V., “Guide to Stability Design Criteria for Metal Structures,” Fifth Edition, John (原檔第 258 頁)6.16 Yu, C. and B. W. Schafer, “Distorsional Buckling Tests on Cold-Formed Steel Beams,” Journal (原檔第 258 頁)6.17 American Iron and Steel Institute, Commentary on North American Specification for the Design of (原檔第 258 頁)6.18 Schafer, B. W. and T. Pekoz, “Lateral Braced Cold-Formed Steel Flexural Members with Edge (原檔第 258 頁)6.19 Schafer, B. W., A. Sarawit, and T. Pekoz, “Complex Edge Stiffeners for Thin-Walled Members,” (原檔第 258 頁)6.20 .Schuster, R. M., C. A. Rogers, and A. Celli, “Research into Cold-Formed Steel Perforated (原檔第 258 頁)6.21 Shan, M. Y., R. A. LaBoube, and W. W. Yu, “Behavior of Web Elements with Openings Subjected (原檔第 258 頁)6.22 Bleich, F., Buckling Strength of Metal Structures, Mcgraw-Hill, NY, 1952. (原檔第 258 頁)6.23 LaBoube, R. A. and W. W. Yu, “Structural Behavior of Beam Webs Subjected Primarily to Shear (原檔第 258 頁)6.24 Winter, G. and R. H. J. Pian, “Crushing Strength of Thin Steel Webs,” Cornell Bulletin 35, pt. 1, (原檔第 258 頁)6.25 Zetlin, L., “Elastic Instability of Flat Plates Subjected to Partial Edge Loads,” Journal of (原檔第 259 頁)6.26 Hetrakul, N. and W. W. Yu, “Structural Behavior of Beam Webs Subjected to Web Crippling and a (原檔第 259 頁)6.27 Bhaka, B. H., R. A. LaBoube, and W. W. Yu, “The Effect of Flange Restraint on Web Crippling (原檔第 259 頁)6.28 Cain, D. E., R. A. LaBoube, and W. W. Yu, “The Effect of Flange Restraint on Web Crippling (原檔第 259 頁)6.29 Laboube, R. A., J. N. Nunney, and R. E. Hodge, “Web Crippling Behavior of Nested Z-Purlins,” (原檔第 259 頁)6.30 LaBoube, R. A. and W. W. Yu, “Tensile and Bearing Capacities of Bolted Connections,” Final (原檔第 259 頁)6.31 Gergers, R. R. and R. M. Schuster, “Web Crippling of Members Using High-Strength Steels,” (原檔第 259 頁)6.32 Beshara, B. and R. M. Schuster, “Web Crippling of Cold-Formed C- and Z-Sections,” Proceeding (原檔第 259 頁)6.33 Langan, J. E, R. A. LaBoube,. and W. W. Yu, “Structural Behavior of Perforated Web Element of (原檔第 259 頁)6.34 Uphoff, C. A., “Structural Behavior of Circular Holes in Web Element of Cold-Formed Steel (原檔第 259 頁)6.35 Deshmukh, S. U., “Behavior of Cold-Formed Steel Web Element with Web Openings Subjected to (原檔第 259 頁)6.36 Nguyen, P. and W. W. Yu, “Structural Behavior of Transversely Reinforced Beam Webs,” Final (原檔第 260 頁)6.37 Hsiao, L. E., W. W. Yu, and T. V. Galambos, “Load and Resistance Factor Design of Cold-Formed (原檔第 260 頁)6.38 Fox, S. R. and R. M. Schuster, “Bearing Stiffeners in Cold-Formed Steel C Sections,” Final (原檔第 260 頁)6.39 Fox, S. R, “Bearing Stiffeners in Cold-Formed Steel C Sections,” Ph.D. Thesis, Department of (原檔第 260 頁)6.40 American Institute of Steel Construction, Specification for the Design, Fabrication and Erection of (原檔第 260 頁)7.10 Yu, W. W., Cold-Formed Steel Design, 2 (原檔第 261 頁)7.11 Pekoz, T. B. and G. Winter, “Torsional-Flexural Buckling of Thin-Walled Section Under Eccentric (原檔第 261 頁)7.12 Popovic, D., G.J. Hancock, and K.J.R. Rasmussen, “Axial Compression Tests of Cold-Formed (原檔第 261 頁)7.13 Schafer, B.W., “Local, Distortional, and Euler Buckling in Thin-Walled Columns,” Journal of (原檔第 261 頁)7.14 Schafer, B.W., Sarawit, A., Peköz, T., “Complex Edge Stiffeners for Thin-Walled Members.” (原檔第 261 頁)7.15 American Iron and Steel Institute, Commentary on North American Specification for the Design of (原檔第 261 頁)8.1 American Institute of Steel Construction, Load and Resistance Factor Design (原檔第 261 頁)10.1 Winter, G., Commentary on the 1968 Edition of the Specification for the Design of Cold–Formed (原檔第 262 頁)10.2 Yu, W. W., Cold–Formed Steel Design, 2 (原檔第 262 頁)10.3 Bleich, F., Buckling strength of Metal Structures, McGraw-Hill Book Co., New York, NY, 1952. (原檔第 262 頁)10.4 Winter, G., “Lateral Bracing of Columns and Beams,” Transactions, ASCE, Vo1. 125, 1960. (原檔第 262 頁)10.5 Haussler, R. W., “Strength of Elastically Stabilized Beams,” Journal of Structural Division, (原檔第 262 頁)10.6 Haussler, R. W. and R. F. Pahers,”Connection Strength in Thin Metal Roof Structures,” (原檔第 262 頁)10.7 Lutz, L. A. and J. M. Fisher, “A Unified Approach for Stability Bracing Requirements,” (原檔第 262 頁)10.8 Salmon, C. G., and J. E. Johnson, Steel Structures: Design and Behavior, Third Edition, Harper & (原檔第 262 頁)10.9 Yura, J. A., “Fundamentals of Beam Bracing,” Is Your Structure Suitably Braced? Structural (原檔第 262 頁)10.10 Structural Stability Research Council, Is Your Structure Suitably Braced ? , Lehigh University, (原檔第 262 頁)10.11 Murray, T. M. and S. Elhouar, “Stability Requirements of Z-Purlin Supported Conventional Metal (原檔第 262 頁)10.12 Winter, G., W. Lansing, and R. B. McCalley, Jr., “Performance of Laterally Loaded Channel (原檔第 262 頁)10.13 Ellifritt, D.S., T. Sputo, and J. Haynes, “Flexural Capacity of Discretely Braced C’s and Z’s,” (原檔第 262 頁)10.14 Green, P.S., T. Sputo, and V. Urala, “Bracing Strength and Stiffness Requirements for Axial (原檔第 262 頁)10.15 American Institute of Steel Construction, Specification for Structural Steel Buildings, ANSI/AISC (原檔第 263 頁)10.16 Sputo, T. and K. Beery, “Accumulation of Bracing Strength and Stiffness Demand in Cold-Formed (原檔第 263 頁)10.17 Green, G. G., G. Winter and T. R. Cuykendall, “Light Gage Steel Columns in Wall-Braced (原檔第 263 頁)10.18 Simaan, A., “Bucking of Diaphragm-Braced Columns of Unsymmetrical Sections and Applications (原檔第 263 頁)10.19 Simaan, A.and T. Pekoz,”Diaphragm-Braced Members and Design of Wall Studs,” Journal of the (原檔第 263 頁)10.20 Davis, C. S. and W. W. Yu, “The Structural Performance of Cold–Formed Steel Members with (原檔第 263 頁)10.21 Rack Manufacturers Institute, Specification for the Design, Testing, and Utilization of Industrial (原檔第 263 頁)10.22 Yu, W. W., Cold–Formed Steel Design, 3rd Edition, John Wiley & Sons, New York, NY, 2000. (原檔第 263 頁)10.23 LaBoube, R. A., “Roof Panel to Purlin Connection: Rotational Restraint Factor,” Proceedings of (原檔第 263 頁)10.24 Glaser, N. J., R. C. Kaehler, and J. M. Fisher, “Axial Load Capacity of Sheeted C and Z (原檔第 263 頁)10.25 Hatch, J., W. S. Easterling, and T. M. Murray, “Strength Evaluation of Strut-Purlins,” (原檔第 263 頁)10.26 Pekoz, T. B., “Design of Cold–Formed Steel Columns,” Proceedings of the Ninth International (原檔第 263 頁)10.27 Miller, T. H. and T. Pekoz, “Studies on the Behavior of Cold–Formed Steel Wall Stud (原檔第 263 頁)10.28 Miller, T. H. and T. Pekoz, “Unstiffened Strip Approach for Perforated Wall Studs,” Journal of (原檔第 263 頁)11.1 Brokenbrough, Rl L., Fastening of Cold-Formed Steel Framing, American Iron and Steel Institute, (原檔第 264 頁)11.2 Pekoz, T. B. and W. McGuire, “Welding of Sheet Steel,” Report SG-79-2, American Iron and (原檔第 264 頁)11.3 Yu, W. W., Cold–Formed Steel Design, 3 (原檔第 264 頁)11.4 American Welding Society, Structural Welding Code – Sheet Steel, ANSI/AWS D1.3-89, Miami, (原檔第 264 頁)11.5 Tangorra, F. M., R. M. Schuster, and LaBoube, R. A. “Calibration of Cold Formed Steel Welded (原檔第 264 頁)11.6 LaBoube, R. A., “Tensile on Arc Spot Welded Connections- AISI Section E2.2.2,” University of (原檔第 264 頁)11.7 LaBoube, R. A., “Arc Spot Welds in Sheet-to-Sheet Connections,” Department of Civil (原檔第 264 頁)11.8 Steel Deck Institute, Inc. “Steel Deck Institute Diaphragm Design Manual”, Canton, OH, 1987. (原檔第 264 頁)11.9 The, L.H. and G.J. Hancock, “Strength of Fillet Welded Connection in G450 Sheet Steels,” (原檔第 264 頁)11.10 American Welding Society, Structural Welding Code – Steel, ANSI/AWS D1.1-96, Miami, FL, (原檔第 264 頁)11.11 American Welding Society, Recommended Practice for Resistance Welding, AWS C1.1-66, Miami, (原檔第 264 頁)11.12 AWS, Recommended Practice for Resistance Welding Coated Low Carbon Steels, AWS C1.3-70, (原檔第 264 頁)11.13 American Welding Society, Recommended Practice for Resistance Welding, ANSI/AWS (原檔第 264 頁)11.14 內政部,“鋼構造建築物鋼結構設計技術規範”。 (原檔第 264 頁)11.15 Research Council and Structural Connections, Allowable Stress Design Specification for Structural (原檔第 264 頁)11.16 Research Council and Structural Connections, Load and Resistance Factor Design Specification for (原檔第 264 頁)11.17 Winter, G, “Light Gage Steel Connections with High-Strength, High-Torqued Bolts,” (原檔第 264 頁)11.18 Winter, G., “Tests on Bolted Connections in Light Gage Steel,” Journal of the Structural Division, (原檔第 265 頁)11.19 Yu, W. W., “AISI Design Criteria for Bolted Connections,” Proceedings of the Sixth (原檔第 265 頁)11.20 Yu, W. W., Cold-Formed Steel Design, Wiley-Interscience, New York, NY, 1985. (原檔第 265 頁)11.21 Yu, W. W., Cold-Formed Steel Design, 2 (原檔第 265 頁)11.22 Chong, K. P. and R. B. Matlock, “Light Gage Steel Bolted Connections without Washers,” (原檔第 265 頁)11.23 Rogers, C. A., and G. J. Hancock, “Bolted Connection Tests of Thin G550 and G300 Sheet (原檔第 265 頁)11.24 Wallace, J. A., R. A. LaBoube, and R. M. Schuster, “Calibration of Bolted Cold-Formed Steel (原檔第 265 頁)11.25 Pekoz, T.B., “Design of Cold-Formed Steel Screw Connections,” Proceedings of the Tenth (原檔第 265 頁)11.27 British Standards Institution, British Standard: Structural Use of Steelwork in Building, “Part 5 – (原檔第 265 頁)11.28 American Iron and Steel Institute, “Test Methods for Mechanically Fastened Cold-Formed Steel (原檔第 265 頁)11.29 British Standards Institution, British Standard: Structural Use of Steelwork in Building, “Part 5 – (原檔第 265 頁)11.30 Birkernoe, P. C. and M. I. Gilmor, “Behavior of Bearing – Critical Double-Angle Beam (原檔第 265 頁) ¶ 1. 冷軋型鋼構造建築物結構設計規範及解說-第 2–3 頁¶ 2. 冷軋型鋼構造建築物結構設計規範及解說-第 4–12 頁¶ 3. 冷軋型鋼構造建築物結構設計規範及解說-第 13–15 頁¶ 4. 冷軋型鋼構造建築物結構設計規範及解說-第 16–23 頁¶ 5. 冷軋型鋼構造建築物結構設計規範及解說-第 24–28 頁¶ 6. 冷軋型鋼構造建築物結構設計規範及解說-第 29–44 頁¶ 7. 冷軋型鋼構造建築物結構設計規範及解說-第 45–50 頁¶ 8. 冷軋型鋼構造建築物結構設計規範及解說-第 51–52 頁¶ 9. 冷軋型鋼構造建築物結構設計規範及解說-第 53–72 頁¶ 10. 冷軋型鋼構造建築物結構設計規範及解說-第 73–89 頁¶ 11. 冷軋型鋼構造建築物結構設計規範及解說-第 90–92 頁¶ 12. 冷軋型鋼構造建築物結構設計規範及解說-第 93–94 頁¶ 13. 冷軋型鋼構造建築物結構設計規範及解說-第 95–108 頁¶ 14. 冷軋型鋼構造建築物結構設計規範及解說-第 109–117 頁¶ 15. 冷軋型鋼構造建築物結構設計規範及解說-第 118–122 頁¶ 16. 冷軋型鋼構造建築物結構設計規範及解說-第 123–142 頁¶ 17. 冷軋型鋼構造建築物結構設計規範及解說-第 143–150 頁¶ 18. 冷軋型鋼構造建築物結構設計規範及解說-第 151–159 頁¶ 19. 冷軋型鋼構造建築物結構設計規範及解說-第 160–179 頁¶ 20. 冷軋型鋼構造建築物結構設計規範及解說-第 180–182 頁¶ 21. 冷軋型鋼構造建築物結構設計規範及解說-第 183–184 頁¶ 22. 冷軋型鋼構造建築物結構設計規範及解說-第 185–191 頁¶ 23. 冷軋型鋼構造建築物結構設計規範及解說-第 192–197 頁¶ 24. 冷軋型鋼構造建築物結構設計規範及解說-第 198–203 頁¶ 25. 冷軋型鋼構造建築物結構設計規範及解說-第 204–236 頁¶ 26. 冷軋型鋼構造建築物結構設計規範及解說-第 237–243 頁¶ 27. 冷軋型鋼構造建築物結構設計規範及解說-第 244–245 頁¶ 28. 冷軋型鋼構造建築物結構設計規範及解說-第 246–257 頁¶ 29. 冷軋型鋼構造建築物結構設計規範及解說-第 258–266 頁 官方附件#附件類別用途官方連結1冷軋型鋼構造建築物結構設計規範及解說.pdf圖表附件正文來源官方檔案