首页> 外国专利> PROJECTING SCAFFOLD AND METHOD FOR SCAFFOLD OR REINFORCED CONCRETE BRIDGE SPAN STRUCTURE COPING BLOCK ERECTION

PROJECTING SCAFFOLD AND METHOD FOR SCAFFOLD OR REINFORCED CONCRETE BRIDGE SPAN STRUCTURE COPING BLOCK ERECTION

机译:脚手架或钢筋混凝土桥跨结构砌块架设的工程脚手架及方法。

摘要

FIELD: bridge construction, particularly projecting scaffold, which facilitates reinforced concrete bridge span structure member construction or repair.;SUBSTANCE: projecting scaffold comprises beams supporting working plates and suspended to load-bearing member by parallel outer and inner posts to create frame structure connected to support beams through bolts. Working plate railing is fastened to cantilever support beam ends. Load-bearing member parallel to carrying beams has orifice to receive mounting bolt to be connected with anchoring nut. The anchoring nut is adapted to be inserted in reinforced concrete bridge span structure beam or in panel thereof during concreting operation. Pivotally connected to outer post are strut carrying form for span structure cantilevered panel or coping block forming and control rod having variable length to change strut inclination angle. The strut has gusset plate pivotally connected to the control rod. Pressing beam is connected to gusset plate from side panel of the form. Pressing beam is higgledy fastened to another gusset plate end or to strut through adjustable control rod to provide one longitudinal edge of side form panel insertion under lower surface of span structure beam or panel thereof. Another longitudinal edge of side panel may be in contact with pressing beam. Bolsters are arranged between strut and lower panel, pressing beam and panel to be pressed with pressing beam, as well as between reinforced concrete beam of span structure or panel thereof and load-bearing member provided with orifice. One bolster is arranged from span structure beam axis side and has rigidity or hardness exceeding that of other bolsters. Method for cantilevered panel or coping block erection with the use of projecting scaffold involves fixing projecting scaffold under reinforced concrete bridge span structure beam or in panel thereof by connecting scaffold with anchoring nuts of anchoring bolts installed therein and passing through load-bearing members having orifices and provided with bolsters, wherein one bolster has rigidity or hardness exceeding that of other bolsters; installing form panels in design position by rotating pressing beam and strut correspondingly; filling the form with concrete mix and stripping the form after concrete hardening.;EFFECT: increased efficiency and simplicity of scaffold assemblage, decreased metal consumption, possibility of repeated scaffold usage, increased simplicity of adjustment and manual assemblage, prevention of interference in other operations, including ones to be carried out on bridge roadway.;5 cl, 3 dwg
机译:领域:桥梁结构,特别是凸出的脚手架,其有助于钢筋混凝土桥梁跨度结构构件的建造或维修。;实质:凸出的脚手架包括支撑工作板的梁,并通过平行的内外柱悬挂到承重构件上,以建立与之相连的框架结构。通过螺栓支撑梁。工作板栏杆固定在悬臂梁的两端。平行于承载梁的承重构件具有孔口,以容纳要与锚固螺母连接的安装螺栓。锚固螺母适于在混凝土操作期间插入钢筋混凝土桥梁跨度结构梁中或其面板中。跨度结构悬臂板或顶盖形成的支杆承载形式和控制杆枢转地连接到外柱,控制杆具有可变的长度以改变支杆倾斜角度。支柱具有可枢转地连接到控制杆的角撑板。压梁从模板的侧面板连接到角撑板。压梁被束紧地固定到另一片角撑板端部或通过可调节的控制杆撑起,以在侧向结构梁或其面板的下表面下方提供侧模板插入的一个纵向边缘。侧板的另一纵向边缘可以与压梁接触。在支柱和下面板,压梁和要用压梁压制的面板之间,以及在跨度结构或其面板的钢筋混凝土梁与设有孔的承重构件之间,布置承梁。一个枕梁从跨度结构梁轴线侧布置,并且具有超过其他枕梁的刚度或硬度。使用伸出支架的悬臂式面板或应对块的架设方法包括通过将支架与安装在其中的锚定螺栓的锚固螺母连接并穿过具有孔口和承重构件的承重构件,将伸出的支架固定在钢筋混凝土桥跨度结构梁下或其面板中。装有枕垫,其中一个枕垫的刚度或硬度超过其他枕垫;通过相应地旋转压梁和支柱将模板安装在设计位置;效果:增加脚手架组装的效率和简便性,减少金属消耗,重复使用脚手架的可能性,调整和手动组装的简便性增加,防止其他操作受到干扰;包括将要在桥梁巷道上进行的作业; 5 cl,3 dwg

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