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Industrialized construction method for reinforcing mesh of lock chamber of ship lock
The invention provides an industrial construction method for a ship lock chamber reinforcing mesh. The industrial construction method comprises the following steps that S1, reinforcing steel bar decomposition design is conducted, specifically, a ship lock chamber reinforcing steel bar structure BIM model is established; s2, steel bar unit piece machining, wherein the size specification of a unit composed of steel bar meshes is automatically generated according to the BIM model, and a task is issued to production equipment; s3, mechanical forming of the reinforcing mesh, wherein the reinforcing mesh is machined and formed through a reinforcing mesh production line; s4, transporting the reinforcing mesh; s5, reinforcing mesh hoisting, wherein according to the structural characteristics of the ship lock, reinforcing mesh installation is divided into plane installation and vertical installation; s6, quickly connecting the reinforcing meshes: mechanically connecting and overlapping the reinforcing meshes; rapid construction of the ship lock chamber reinforcing steel bars is carried out in the assembly mode, the overall construction efficiency is improved, the reinforcing steel bar construction quality is guaranteed in cooperation with a mechanical reinforcing steel bar mesh machining mode, in addition, the high-altitude operation time of constructors is effectively shortened, and the safety risk of ship lock construction is reduced.
本发明提供了一种船闸闸室钢筋网片工业化施工方法,步骤如下:S1、钢筋分解设计:建立船闸闸室钢筋结构BIM模型;S2、钢筋单元件加工:根据BIM模型自动生成钢筋网片所组成单元的尺寸规格,并将任务下发至生产设备;S3、钢筋网片机械化成型:通过钢筋网片生产线进行钢筋网片的加工成型;S4、钢筋网片运输;S5、钢筋网片吊装:根据船闸结构特点,钢筋网片安装分为平面安装和立式安装;S6、钢筋网片快速连接:钢筋网片与网片之间进行机械连接和搭接;通过上述装配化方式进行船闸闸室钢筋的快速施工,提高整体施工效率,配合机械化的钢筋网片加工方式保证了钢筋施工质量,另外,有效减少了施工人员高空作业的时间,降低了船闸施工的安全风险。
Industrialized construction method for reinforcing mesh of lock chamber of ship lock
The invention provides an industrial construction method for a ship lock chamber reinforcing mesh. The industrial construction method comprises the following steps that S1, reinforcing steel bar decomposition design is conducted, specifically, a ship lock chamber reinforcing steel bar structure BIM model is established; s2, steel bar unit piece machining, wherein the size specification of a unit composed of steel bar meshes is automatically generated according to the BIM model, and a task is issued to production equipment; s3, mechanical forming of the reinforcing mesh, wherein the reinforcing mesh is machined and formed through a reinforcing mesh production line; s4, transporting the reinforcing mesh; s5, reinforcing mesh hoisting, wherein according to the structural characteristics of the ship lock, reinforcing mesh installation is divided into plane installation and vertical installation; s6, quickly connecting the reinforcing meshes: mechanically connecting and overlapping the reinforcing meshes; rapid construction of the ship lock chamber reinforcing steel bars is carried out in the assembly mode, the overall construction efficiency is improved, the reinforcing steel bar construction quality is guaranteed in cooperation with a mechanical reinforcing steel bar mesh machining mode, in addition, the high-altitude operation time of constructors is effectively shortened, and the safety risk of ship lock construction is reduced.
本发明提供了一种船闸闸室钢筋网片工业化施工方法,步骤如下:S1、钢筋分解设计:建立船闸闸室钢筋结构BIM模型;S2、钢筋单元件加工:根据BIM模型自动生成钢筋网片所组成单元的尺寸规格,并将任务下发至生产设备;S3、钢筋网片机械化成型:通过钢筋网片生产线进行钢筋网片的加工成型;S4、钢筋网片运输;S5、钢筋网片吊装:根据船闸结构特点,钢筋网片安装分为平面安装和立式安装;S6、钢筋网片快速连接:钢筋网片与网片之间进行机械连接和搭接;通过上述装配化方式进行船闸闸室钢筋的快速施工,提高整体施工效率,配合机械化的钢筋网片加工方式保证了钢筋施工质量,另外,有效减少了施工人员高空作业的时间,降低了船闸施工的安全风险。
Industrialized construction method for reinforcing mesh of lock chamber of ship lock
一种船闸闸室钢筋网片工业化施工方法
ZHANG YONGTAO (Autor:in) / YANG XIULI (Autor:in) / TIAN WEI (Autor:in) / WU ZHONGZHENG (Autor:in) / CHENG MAOLIN (Autor:in) / YAN SHUANGQIAO (Autor:in) / YU CHANGWEN (Autor:in) / CHEN BIN (Autor:in) / DONG QIFENG (Autor:in) / LIU HANG (Autor:in)
19.01.2024
Patent
Elektronische Ressource
Chinesisch
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