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External wall panel hoisting and placing stabilizer for fabricated building
The invention relates to an external wall panel hoisting and placing stabilizer for a fabricated building, and discloses an external wall panel hoisting and placing stabilizer which can buffer the impact force of an external wall panel by utilizing the rotation motion of an impact reducing plate in cooperation with a torsion spring and can realize the repeated utilization of a device by utilizingan air bag structure. The external wall panel hoisting and placing stabilizer is characterized in that a central groove is formed in the middle of a fixed seat, the cross section of the central grooveis rectangular, two arc chutes are formed in the fixed seat and located at the two ends of the central groove correspondingly, the arc chutes communicate with the central groove, and the cross section of each arc chute is semicircular; two air bag grooves are formed in the fixed seat and located in the two sides of the central groove, two impact reduction grooves are formed in the two ends of thefixed seat, and the vertical section of each impact reduction groove is in a T shape; and two semicircular blocks are arranged in the two arc chutes in a rolling mode through connecting shafts correspondingly, torsion springs are arranged on the connecting shafts in a sleeved mode, one ends of the torsion springs are connected with the semicircular blocks, the other ends of the torsion springs are connected with the chute walls of the arc chutes, and two impact reduction plates are connected with the two semicircular blocks correspondingly.
本发明一种装配式建筑用外墙板吊设安放稳定器公开了一种不仅能够利用减冲板的旋转运动配合扭曲弹簧进行外墙板冲击力的缓冲,而且能够利用气囊结构实现装置重复利用的外墙板吊设安放稳定器,其特征在于固定座中部开有中心槽,所述中心槽截面为矩形,两个弧滑槽置于固定座上,且分别位于中心槽两端,所述弧滑槽和中心槽相连通,所述弧滑槽截面为半圆,两个气囊槽位于固定座上,且位于中心槽两侧,两个减冲槽置于固定座两端,所述减冲槽竖截面为T型,两个半圆块分别通过连接轴可滚动的置于两个弧滑槽内,连接轴上套置有扭转弹簧,所述扭转弹簧一端和半圆块相连接,另一端和弧滑槽槽壁相连接,两个减冲板分别和两个半圆块相连接。
External wall panel hoisting and placing stabilizer for fabricated building
The invention relates to an external wall panel hoisting and placing stabilizer for a fabricated building, and discloses an external wall panel hoisting and placing stabilizer which can buffer the impact force of an external wall panel by utilizing the rotation motion of an impact reducing plate in cooperation with a torsion spring and can realize the repeated utilization of a device by utilizingan air bag structure. The external wall panel hoisting and placing stabilizer is characterized in that a central groove is formed in the middle of a fixed seat, the cross section of the central grooveis rectangular, two arc chutes are formed in the fixed seat and located at the two ends of the central groove correspondingly, the arc chutes communicate with the central groove, and the cross section of each arc chute is semicircular; two air bag grooves are formed in the fixed seat and located in the two sides of the central groove, two impact reduction grooves are formed in the two ends of thefixed seat, and the vertical section of each impact reduction groove is in a T shape; and two semicircular blocks are arranged in the two arc chutes in a rolling mode through connecting shafts correspondingly, torsion springs are arranged on the connecting shafts in a sleeved mode, one ends of the torsion springs are connected with the semicircular blocks, the other ends of the torsion springs are connected with the chute walls of the arc chutes, and two impact reduction plates are connected with the two semicircular blocks correspondingly.
本发明一种装配式建筑用外墙板吊设安放稳定器公开了一种不仅能够利用减冲板的旋转运动配合扭曲弹簧进行外墙板冲击力的缓冲,而且能够利用气囊结构实现装置重复利用的外墙板吊设安放稳定器,其特征在于固定座中部开有中心槽,所述中心槽截面为矩形,两个弧滑槽置于固定座上,且分别位于中心槽两端,所述弧滑槽和中心槽相连通,所述弧滑槽截面为半圆,两个气囊槽位于固定座上,且位于中心槽两侧,两个减冲槽置于固定座两端,所述减冲槽竖截面为T型,两个半圆块分别通过连接轴可滚动的置于两个弧滑槽内,连接轴上套置有扭转弹簧,所述扭转弹簧一端和半圆块相连接,另一端和弧滑槽槽壁相连接,两个减冲板分别和两个半圆块相连接。
External wall panel hoisting and placing stabilizer for fabricated building
一种装配式建筑用外墙板吊设安放稳定器
2020-11-27
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
Fabricated external wall panel hoisting device for building construction
European Patent Office | 2021
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