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| 基本信息 |
| 文件大小 |
940.47K |
文件格式 |
(rar) |
| 上传作者 |
中国投标网 |
责任编辑 |
shi |
| 上传时间 |
2008-9-29 |
点击次数 |
82人次 |
| 所属分类 |
毕业设计 -> 建筑工程 |
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| 价格信息 |
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| 资料描述(-学士-某门式刚架(单跨)装配车间设计计算书) |
目录 1 建筑设计 1.1 工程概况…………………………………………………………………(1) 1.2 平面设计…………………………………………………………………(1) 1.3 剖面设计…………………………………………………………………(1) 1.4 立面设计…………………………………………………………………(1) 1.5 建筑做法…………………………………………………………………(2) 2 主刚架设计 2.1 结构选型及布置………………………………………………………… (3) 2.2 主刚架设计计算………………………………………………………… (3) 2.3 荷载计算………………………………………………………………… (4) 2.4 内力分析计算…………………………………………………………… (5) 2.5 内力组合……………………………………………………………… (12) 2.6 截面的选择与强度验算……………………………………………… (14) 2.7 位移验算……………………………………………………………… (19) 2.8 梁柱节点计算………………………………………………………… (21) 2.9 柱脚节点计算………………………………………………………… (24) 3 墙梁的设计 3.1 设计说明……………………………………………………………… (27) 3.2 荷载及内力的计算…………………………………………………… (28) 3.3 截面选择……………………………………………………………… (30) 4 压型墙面板设计 4.1 设计说明……………………………………………………………… (35) 4.2 计算压型钢板的截面特征…………………………………………… (35) 4.3 压型钢板整体强度及刚度计算的允许板面荷载…………………… (38) 4.4 其他验算……………………………………………………………… (38) 5 柱下独立基础的设计 5.1 设计说明……………………………………………………………… (40) 5.2 地基承载力设计值计算……………………………………………… (40) 5.3 基础底面尺寸的确定………………………………………………… (41) 5.4 地基软弱下卧层承载力验算………………………………………… (42) 5.5 基础配筋设计计算…………………………………………………… (42) 5.6 配筋计算……………………………………………………………… (44) 参考文献……………………………………………………………………… (47) 致 谢……………………………………………………………………… (48) 门式轻型刚架的设计应用 摘要:本设计工程为一门式刚架轻型钢结构单跨装配车间,主要依据《钢结构设计规范》(GB50017-2003 )和《门式刚架轻型房屋钢结构技术规程》(CECS 102:2002 )等国家规范,综合考虑设计工程的规模、跨度、高度及用途,依据“适用、经济、在可能条件下注意美观”的原则,对各组成部分的选型、选材、连接和经济性作了比较,最终选用单层门式刚架的结构形式。梁、柱节点为刚性连接的门式刚架具有结构简洁、刚度良好、受力合理、使用空间大及施工方便等特点,便于工业化、商品化的制作生产,与轻型维护材料相配套的轻型钢结构框架体系已广泛应用于建筑结构中。 本设计就是对轻型钢结构的实际工程进行建筑、结构设计与计算。主要对承重结构进行了内力分析(并作了结构内力手算与结构力学求解器计算的比较)和内力组合,在此基础上确定梁柱截面,对梁柱作了弯、剪强度验算(不考虑屈曲后与考虑屈曲后强度),验算了其平面内外的稳定性,并作了结构的位移验算。结构构件(墙梁、墙面板)的设计计算,其设计计算公式严格遵守《门式刚架轻型房屋钢结构技术规》中的规定。最后,依据《基础工程》一书对柱下独立基础进行了设计计算。梁柱均采用Q235钢,10.9 级摩擦型高强螺栓连接,局部焊接采用E43型焊条,柱脚铰接连接,屋面采用太空轻质大型屋面板,墙体1.2m以下用砖砌墙体,1.2m以上用压型钢板。
关键词:门式刚架 工业化 屈曲后强度 稳定性
指导老师签名:
light Door-frame design and Apply Student name: hu miao sheng Class: 048102 Supervisor: zhang shao qin Abstact : The design is a light steel-frame cross-assembly plant, Based on 《steel structure design specifications》 (GB50017-2003) and 《the door frame of light steel structure housing technical point of order》(CECS 102:2002) and other national norms,Considers the design of the scale、long-span、 height and use, Basis “Economy and the possible conditions under the attention of handsome” principle. The various components of the Selection、 Selection 、connect、 and a comparison of the economy, The final choice of the single portal frame structure. Beam、rigid-node for the portal frame structure with simple, good stiffness, reasonable force, the use of a large space and construction of convenient features, Facilitate the industrialization and commercialization of the production of the production, maintenance and light materials complement the light steel frame system has been widely used in building structures. The design of light steel structure is the actual construction works, structural design and calculation. The main load-bearing structure of the internal forces (compare a hand count of internal forces with structural mechanics for calculating) and the combination of internal forces, Determined on the basis of this cross-section beams, The beams were bending, shear strength checking (without regard to buckling and after considering post-buckling strength), checking its stability both within and outside the plane and made the displacement of checking. Structural components (wall beams, wall panels) the design, calculation formula designed to strictly abide by 《the door frame of light steel structure housing technical regulations》 in the provisions. Finally, based on 《basic project》a book, design and calculation the basis of independence. Steel beams are used Q235, Connection bolts are high strenth bolt of friction type with behavoure grade 10.9, local use of E43-welding electrode, hinged-pin connector, a roof space large roof slab of light, 1.2 m below the wall with masonry walls, 1.2 m above With pressure plate. Key words: Door frame Industrialization After buckling strength Stability Signature of Supervisor :
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