CN-224226623-U - Manual operation type curtain wall glass lifting device
Abstract
The utility model relates to the technical field of curtain wall installation, and particularly discloses a manually operated curtain wall glass lifting device which comprises an inverted T-shaped bracket, a hydraulic linear push rod, a winch assembly and a guide wheel structure, wherein a vacuum sucker A is fixedly connected to the push rod end of the hydraulic linear push rod, a plurality of vacuum sucker B are fixedly arranged at the bottom of a sucker seat, a hydraulic cylinder is arranged at one side of the horizontal end of the inverted T-shaped bracket, and a supporting table is arranged at the top of the hydraulic cylinder. According to the device, the curtain wall glass can be turned to a vertical state to be installed through the winch assembly and the sucker device, the supporting height of the supporting table is adjusted through pushing the hydraulic cylinder, fine adjustment is carried out on the installation height position of the curtain wall glass until the curtain wall glass is aligned with the installation framework frame body, the vacuum sucker device A is fixedly adsorbed to the curtain wall glass and is matched with the hydraulic linear push rod to enable the curtain wall glass to be buckled and assembled with the installation framework frame body, the device replaces manual lifting of the curtain wall glass, installation alignment work of the curtain wall glass is completed, and the efficiency is improved, so that loss is reduced.
Inventors
- CHEN JIAN
Assignees
- 中恒营造建筑科技(北京)集团有限公司
Dates
- Publication Date
- 20260512
- Application Date
- 20250509
Claims (6)
- 1. The manual operation type curtain wall glass lifting device is characterized by comprising an inverted T-shaped support (1), wherein a hydraulic linear push rod (7), a winch assembly (9) and a guide wheel structure (11) fixed at the top of the vertical end of the inverted T-shaped support (1) are sequentially arranged at the vertical end of the inverted T-shaped support (1) from bottom to top, a vacuum chuck A (8) is fixedly connected with the push rod end of the hydraulic linear push rod (7), the winch assembly (9) is connected with a chuck seat (12) through a steel wire rope (10), and a plurality of vacuum chucks B (13) are fixedly arranged at the bottom of the chuck seat (12); A hydraulic cylinder (3) is arranged on one side of the horizontal end of the inverted T-shaped support (1), a supporting table (2) is arranged at the top of the hydraulic cylinder (3), a counterweight table (5) is fixedly arranged on the other side of the horizontal end of the inverted T-shaped support (1), and a hydraulic component (6) and a vacuum pump component are arranged at the top of the counterweight table (5); A controller (15) is arranged on one side of the vertical end of the inverted T-shaped bracket (1).
- 2. The manually operated curtain wall glass lifting device according to claim 1, wherein the vacuum chuck device a (8) and the chuck base (12) are both positioned on the same side of the vertical end of the inverted-T bracket (1), and the winch assembly (9) and the hydraulic linear push rod (7) are both positioned on the side of the vertical end of the inverted-T bracket (1) facing away from the vacuum chuck device a (8).
- 3. The manually operated curtain wall glass lifting device according to claim 1, wherein the front end of the supporting table (2) and the front end of the horizontal end of the inverted-T-shaped bracket (1) are both provided with arc-shaped chamfers.
- 4. The manually operated curtain wall glass lifting device according to claim 1, wherein the winch assembly (9) comprises a bracket, a winch drum and a motor for driving the winch drum to rotate, one end of the steel wire rope (10) is fixedly connected with the surface of the winch drum, and the other end of the steel wire rope (10) is guided to be fixedly connected with the surface of the sucker seat (12) through a guide wheel of the guide wheel structure (11).
- 5. The manually operated curtain wall glass lifting device according to claim 1, wherein the number of the hydraulic cylinders (3) is four, and the four hydraulic cylinders (3) are respectively arranged at four corners of the bottom of the supporting table (2).
- 6. The manually operated curtain wall glass lifting device according to claim 1, wherein a reinforcing rib block (4) is fixedly arranged at the vertical end of the inverted-T bracket (1) and towards one side of the counterweight table (5), and the total height of the reinforcing rib block (4) is half of the total height of the inverted-T bracket (1).
Description
Manual operation type curtain wall glass lifting device Technical Field The utility model relates to the technical field of curtain wall installation, in particular to a manually operated curtain wall glass lifting device. Background The glass curtain wall gives modern sense and technological sense to the building with penetrating, light feel, and through optical characteristics such as reflection, refraction and the like and natural environment interaction, forms unique visual identification. Curtain wall glass needs to be assembled by matching with a curtain wall keel frame, and because the joint size of the curtain wall glass and the curtain wall keel frame needs to be controlled, the installation of the curtain wall glass and the curtain wall keel frame needs to be aligned accurately, the glass curtain wall is large in size and weight, the difficulty of manual overturning alignment is high, accidents and curtain wall glass damage are easy to occur, and therefore the manual operation type curtain wall glass lifting device is proposed. Disclosure of utility model In view of the above technical problems in the related art, the present utility model provides a manually operated curtain wall glass lifting device, which can solve the above problems. In order to achieve the technical purpose, the technical scheme of the utility model is realized as follows: The manual operation type curtain wall glass lifting device comprises an inverted T-shaped bracket, wherein a hydraulic linear push rod, a winch assembly and a guide wheel structure fixed at the top of the vertical end of the inverted T-shaped bracket are sequentially arranged at the vertical end of the inverted T-shaped bracket from bottom to top, a vacuum chuck A is fixedly connected to the push rod end of the hydraulic linear push rod, the winch assembly is connected with a chuck seat through a steel wire rope, and a plurality of vacuum chuck B are fixedly arranged at the bottom of the chuck seat; A hydraulic cylinder is arranged at one side of the horizontal end of the inverted T-shaped support, a supporting table is arranged at the top of the hydraulic cylinder, a counterweight table is fixedly arranged at the other side of the horizontal end of the inverted T-shaped support, and a hydraulic assembly and a vacuum pump assembly are arranged at the top of the counterweight table; one side of the vertical end of the inverted T-shaped bracket is provided with a controller. Further, the vacuum chuck A and the chuck seat are both positioned on the same side of the vertical end of the inverted T-shaped bracket, and the winch assembly and the hydraulic linear push rod are both positioned on one side of the vertical end of the inverted T-shaped bracket, which is away from the vacuum chuck A. Further, the front end of the supporting table and the front end of the horizontal end of the inverted T-shaped bracket are provided with arc-shaped chamfers. Further, the winch assembly comprises a bracket, a winch drum and a motor for driving the winch drum to rotate, one end of the steel wire rope is fixedly connected with the surface of the winch drum, and the other end of the steel wire rope is guided to be fixedly connected with the surface of the sucker seat through a guide wheel of the guide wheel structure. Further, the number of the hydraulic cylinders is four, and the four hydraulic cylinders are respectively arranged at four corners of the bottom of the supporting table. Further, the vertical end of the inverted T-shaped bracket and one side facing the counterweight table are fixedly provided with reinforcing rib blocks, and the total height of the reinforcing rib blocks is half of that of the inverted T-shaped bracket. The device has the beneficial effects that the winch assembly is matched with the sucker device to turn the curtain wall glass to a vertical state for installation, the supporting height of the supporting table is adjusted by pushing the hydraulic cylinder, so that the installation height position of the curtain wall glass is finely adjusted until the curtain wall glass is aligned with the installation framework frame, the vacuum sucker device A is utilized to adsorb and fix the curtain wall glass and is matched with the hydraulic linear push rod to fasten and assemble the curtain wall glass and the installation framework frame, and the device replaces manual lifting of the curtain wall glass and completes installation alignment work of the curtain wall glass, so that the efficiency is improved, and the loss is reduced. Drawings In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to these drawings without inventive effort for a per