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High-rise building steel structure construction method and building material hoisting mechanism thereof
The invention discloses a high-rise building steel structure construction method and a building material hoisting mechanism thereof, and relates to the field of building construction.The high-rise building steel structure construction method comprises the following steps that firstly, design and preparation are conducted; 2, the building material hoisting mechanism enters a site; thirdly, the electric forklift enters the yard; 4, building materials enter the site; 5, on-site building is carried out; step 6, painting and corrosion prevention; and step 7, debugging and acceptance. The building materials are conveniently hoisted to the roof of the high-rise building through the building material hoisting mechanism, the problem that vertical transportation and hoisting cannot be carried out on site through a tower crane is solved, secondary reshipment and hoisting are carried out through a winch, a steel structure is vertically transported to the roof through a mast crane firstly and then horizontally transported to an installation position, and the construction efficiency is improved. The construction method has the advantages that the occupied area is small, the construction method is not limited by sites, the use is convenient, workers can conveniently construct the construction method, the hoisting transportation route of the components is determined in advance, the whole components are ensured not to be delayed due to transportation, and the installation engineering quality and the engineering progress are ensured.
本发明公开了一种高层建筑钢结构施工方法及其建材吊装机构,涉及建筑施工领域,包括以下步骤:步骤一、设计和准备;步骤二、建材吊装机构进场;步骤三、电动叉车进场;步骤四、建材进场;步骤五、现场搭建;步骤六、涂漆和防腐;步骤七、调试和验收。本申请通过建材吊装机构方便对建材起吊于高层建筑屋面,解决因现场无法用塔吊进行垂直运输及吊装,通过采用卷扬机进行二次倒运及吊装,先采用桅杆吊进行钢结构的垂直运输到屋面,再水平运输到安装位置,接着用电动叉车进行立柱及横梁的吊装,占地面积小,不受场地限制,使用方便,方便工人施工,提前确定好构件的起吊运输路线,确保整个构件的安装不会因为运输耽误,确保安装工程质量和工程进度。
High-rise building steel structure construction method and building material hoisting mechanism thereof
The invention discloses a high-rise building steel structure construction method and a building material hoisting mechanism thereof, and relates to the field of building construction.The high-rise building steel structure construction method comprises the following steps that firstly, design and preparation are conducted; 2, the building material hoisting mechanism enters a site; thirdly, the electric forklift enters the yard; 4, building materials enter the site; 5, on-site building is carried out; step 6, painting and corrosion prevention; and step 7, debugging and acceptance. The building materials are conveniently hoisted to the roof of the high-rise building through the building material hoisting mechanism, the problem that vertical transportation and hoisting cannot be carried out on site through a tower crane is solved, secondary reshipment and hoisting are carried out through a winch, a steel structure is vertically transported to the roof through a mast crane firstly and then horizontally transported to an installation position, and the construction efficiency is improved. The construction method has the advantages that the occupied area is small, the construction method is not limited by sites, the use is convenient, workers can conveniently construct the construction method, the hoisting transportation route of the components is determined in advance, the whole components are ensured not to be delayed due to transportation, and the installation engineering quality and the engineering progress are ensured.
本发明公开了一种高层建筑钢结构施工方法及其建材吊装机构,涉及建筑施工领域,包括以下步骤:步骤一、设计和准备;步骤二、建材吊装机构进场;步骤三、电动叉车进场;步骤四、建材进场;步骤五、现场搭建;步骤六、涂漆和防腐;步骤七、调试和验收。本申请通过建材吊装机构方便对建材起吊于高层建筑屋面,解决因现场无法用塔吊进行垂直运输及吊装,通过采用卷扬机进行二次倒运及吊装,先采用桅杆吊进行钢结构的垂直运输到屋面,再水平运输到安装位置,接着用电动叉车进行立柱及横梁的吊装,占地面积小,不受场地限制,使用方便,方便工人施工,提前确定好构件的起吊运输路线,确保整个构件的安装不会因为运输耽误,确保安装工程质量和工程进度。
High-rise building steel structure construction method and building material hoisting mechanism thereof
一种高层建筑钢结构施工方法及其建材吊装机构
ZHANG TIAN (Autor:in) / ZHAO HANGFEI (Autor:in) / REN WENBO (Autor:in) / ZHU HAOWEN (Autor:in) / DENG GAO (Autor:in) / QIU QINGFENG (Autor:in)
19.04.2024
Patent
Elektronische Ressource
Chinesisch
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