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Reinforcing structure for bay window aluminum alloy formwork
The invention discloses a reinforcing structure for a bay window aluminum alloy formwork, and relates to the technical field of formworks, the reinforcing structure comprises an upper formwork and a reinforcing rod, a lower formwork is arranged at the bottom of the upper formwork, the reinforcing rod is installed between the upper formwork and the lower formwork, fixing blocks are installed at the two ends of the reinforcing rod, and one side of each fixing block is connected with a rotating rod. When the reinforcing structure for the bay window aluminum alloy formwork is used, a reinforcing rod can be connected between a lower formwork and an upper formwork in a butt joint mode, then a pull rod is pulled, the pull rod drives a wedge-shaped block to not limit an ejector rod, at the moment, the ejector rod drives a clamping block on one side of a first movable block to be separated from a gear ring, and therefore a rotating rod rotates; according to the reinforcing structure for the bay window aluminum alloy formwork, the protruding blocks drive the limiting blocks to be connected into the grooves of the mounting blocks in a butt joint mode, the whole reinforcing rod can be connected between the upper formwork and the lower formwork in a butt joint mode, a user can conveniently and rapidly install and fix the whole reinforcing mechanism, and the using characteristic of the reinforcing structure for the bay window aluminum alloy formwork is that the reinforcing structure for the bay window aluminum alloy formwork is achieved.
本发明公开了一种用于飘窗铝合金模板的加固结构,涉及模板技术领域,包括上模板与加固杆,所述上模板的底部设置有下模板,所述加固杆安装在上模板与下模板之间,所述加固杆的两端安装有固定块,所述固定块的一侧连接有转动杆。该用于飘窗铝合金模板的加固结构在使用时,可以将加固杆对接到下模板与上模板之间,然后拉动拉杆,使得拉杆带动楔形块没有对顶杆限位,此时顶杆带动第一活动块一侧的卡块与齿圈分离,从而使得转动杆旋转,并通过凸块带动限位块对接到安装块的凹槽中,才就可以快速将整个加固杆对接到上模板与下模板之间,从而方便使用者快速对整个加固机构进行安装固定,这就是该用于飘窗铝合金模板的加固结构的使用特点。
Reinforcing structure for bay window aluminum alloy formwork
The invention discloses a reinforcing structure for a bay window aluminum alloy formwork, and relates to the technical field of formworks, the reinforcing structure comprises an upper formwork and a reinforcing rod, a lower formwork is arranged at the bottom of the upper formwork, the reinforcing rod is installed between the upper formwork and the lower formwork, fixing blocks are installed at the two ends of the reinforcing rod, and one side of each fixing block is connected with a rotating rod. When the reinforcing structure for the bay window aluminum alloy formwork is used, a reinforcing rod can be connected between a lower formwork and an upper formwork in a butt joint mode, then a pull rod is pulled, the pull rod drives a wedge-shaped block to not limit an ejector rod, at the moment, the ejector rod drives a clamping block on one side of a first movable block to be separated from a gear ring, and therefore a rotating rod rotates; according to the reinforcing structure for the bay window aluminum alloy formwork, the protruding blocks drive the limiting blocks to be connected into the grooves of the mounting blocks in a butt joint mode, the whole reinforcing rod can be connected between the upper formwork and the lower formwork in a butt joint mode, a user can conveniently and rapidly install and fix the whole reinforcing mechanism, and the using characteristic of the reinforcing structure for the bay window aluminum alloy formwork is that the reinforcing structure for the bay window aluminum alloy formwork is achieved.
本发明公开了一种用于飘窗铝合金模板的加固结构,涉及模板技术领域,包括上模板与加固杆,所述上模板的底部设置有下模板,所述加固杆安装在上模板与下模板之间,所述加固杆的两端安装有固定块,所述固定块的一侧连接有转动杆。该用于飘窗铝合金模板的加固结构在使用时,可以将加固杆对接到下模板与上模板之间,然后拉动拉杆,使得拉杆带动楔形块没有对顶杆限位,此时顶杆带动第一活动块一侧的卡块与齿圈分离,从而使得转动杆旋转,并通过凸块带动限位块对接到安装块的凹槽中,才就可以快速将整个加固杆对接到上模板与下模板之间,从而方便使用者快速对整个加固机构进行安装固定,这就是该用于飘窗铝合金模板的加固结构的使用特点。
Reinforcing structure for bay window aluminum alloy formwork
一种用于飘窗铝合金模板的加固结构
YAN ZHAOXI (author) / LI HUAHU (author) / WANG CHANGBIN (author)
2024-08-13
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
Inclined strut reinforcing structure of aluminum alloy formwork
European Patent Office | 2023
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