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High-impact-toughness steel structure of building high-altitude construction platform
The high-impact-toughness steel structure of the building high-altitude construction platform comprises a fixing frame fixedly installed on an undercarriage and a first supporting platform fixedly installed at the top of the fixing frame, first channel steel and second channel steel are fixedly installed at the bottom of the fixing frame, and a sliding rail is slidably connected to the inner side of the fixing frame through a guide mechanism; and one side of the first steel channel is fixedly connected with a telescopic mechanism fixedly installed at the bottom of the first supporting platform, a second supporting platform is fixedly installed at the top of the sliding rail, and a supporting plate is arranged on one side of the sliding rail. According to the high-impact-toughness steel structure of the building high-altitude construction platform, through cooperative use of a first fixing rod, a second fixing rod, a first guide wheel, a second guide wheel and a third guide wheel, a second supporting platform, located below the first supporting platform, in the high-altitude construction platform can be automatically retracted and released under driving of a fixing plate; and the area of the supporting platform is increased, meanwhile, the operation range of constructors is enlarged, and construction operation is facilitated.
本发明提供有一种建筑高空施工平台的高冲击韧性的钢结构,包括固定安装在起落架上的固定架和固定安装在固定架顶部的第一支撑平台,固定架的底部固定安装有第一槽钢和第二槽钢,固定架的内侧通过导向机构滑动连接有滑轨,第一槽钢的一侧固定连接有固定安装在第一支撑平台底部的伸缩机构,滑轨的顶部固定安装有第二支撑平台,滑轨的一侧设置有支撑板。该建筑高空施工平台的高冲击韧性的钢结构,通过第一固定杆、第二固定杆、第一导轮、第二导轮和第三导轮的配合使用,使得高空施工平台中位于第一支撑平台下方的第二支撑平台能够在固定板的驱动下自动进行收放,进而增大支撑平台面积的同时增大施工人员的作业范围,方便进行施工作业。
High-impact-toughness steel structure of building high-altitude construction platform
The high-impact-toughness steel structure of the building high-altitude construction platform comprises a fixing frame fixedly installed on an undercarriage and a first supporting platform fixedly installed at the top of the fixing frame, first channel steel and second channel steel are fixedly installed at the bottom of the fixing frame, and a sliding rail is slidably connected to the inner side of the fixing frame through a guide mechanism; and one side of the first steel channel is fixedly connected with a telescopic mechanism fixedly installed at the bottom of the first supporting platform, a second supporting platform is fixedly installed at the top of the sliding rail, and a supporting plate is arranged on one side of the sliding rail. According to the high-impact-toughness steel structure of the building high-altitude construction platform, through cooperative use of a first fixing rod, a second fixing rod, a first guide wheel, a second guide wheel and a third guide wheel, a second supporting platform, located below the first supporting platform, in the high-altitude construction platform can be automatically retracted and released under driving of a fixing plate; and the area of the supporting platform is increased, meanwhile, the operation range of constructors is enlarged, and construction operation is facilitated.
本发明提供有一种建筑高空施工平台的高冲击韧性的钢结构,包括固定安装在起落架上的固定架和固定安装在固定架顶部的第一支撑平台,固定架的底部固定安装有第一槽钢和第二槽钢,固定架的内侧通过导向机构滑动连接有滑轨,第一槽钢的一侧固定连接有固定安装在第一支撑平台底部的伸缩机构,滑轨的顶部固定安装有第二支撑平台,滑轨的一侧设置有支撑板。该建筑高空施工平台的高冲击韧性的钢结构,通过第一固定杆、第二固定杆、第一导轮、第二导轮和第三导轮的配合使用,使得高空施工平台中位于第一支撑平台下方的第二支撑平台能够在固定板的驱动下自动进行收放,进而增大支撑平台面积的同时增大施工人员的作业范围,方便进行施工作业。
High-impact-toughness steel structure of building high-altitude construction platform
一种建筑高空施工平台的高冲击韧性的钢结构
XU HAIRONG (author)
2022-03-18
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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