Hoisting device for wall-ground integrated metal veneer

AU2023417035B2Pending Publication Date: 2026-08-06SHANGHAI BUILDING DECORATION ENG GRP CO LTD
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Patent Information

Authority / Receiving Office
AU · AU
Patent Type
Applications
Current Assignee / Owner
SHANGHAI BUILDING DECORATION ENG GRP CO LTD
Filing Date
2023-03-30
Publication Date
2026-08-06

AI Technical Summary

Technical Problem

Existing technologies face inefficiencies in surface cleaning, uneven adhesive dispensing, and hoisting difficulties during the installation of large metal veneers, particularly in large-area applications, leading to unreliable bonding and increased manpower requirements.

Method used

A hoisting device comprising a control assembly, dispensing assembly, and hoisting assembly, which allows for rapid selection of cleaning and dispensing modes, uniform adhesive application, and precise angle control of metal veneers, utilizing a combination of gears, motors, and vacuum suction cups for automated operation.

Benefits of technology

The device simplifies operations, ensures timely and uniform adhesive dispensing, reduces manpower needs, and facilitates efficient installation of metal veneers by enabling rapid cleaning and precise angle adjustment.

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Patent Text Reader

Abstract

A hoisting device for a wall-ground integrated metal veneer. The hoisting device comprises a control assembly (1), a dispensing assembly (2), a hoisting assembly (3) and a bottom plate (4). By means of arranging the control assembly (1), the device can be rapidly controlled to select a cleaning mode or a dispensing mode by means of simple control; by means of arranging the dispensing assembly (2), a cleaning operation and a dispensing operation can be rapidly and uniformly achieved in a working process; and by means of arranging the hoisting assembly (3), the angle of a metal veneer can be rapidly controlled after dispensing is completed so as to assist a worker in rapid mounting.
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Description

TECHNICAL FIELD The invention relates to the technical field of metal veneer processing, in particular to a hoisting device for a wall-ground integrated metal veneer. BACKGROUND With the development of science, technology and economy, the interior decoration design of large venues has become more and more complex, and the sizes of metal veneers have become larger and larger. A metal veneer refers to a novel interior decoration composite material with metal being the surface material. It is a decorative layer formed on a wall surface by decorative materials like metal plates or blocks through installation processes such as inlay or structural connection. The decorative layer can directly reflect the decorative effect of the building, make full use of natural or artificial materials to express the designer's decorative design style, and play a good role in covering and protecting the wall. During installation, the bonding surface should be cleaned first to ensure that there are no pollutants on the bonding surface. When dispensing adhesive to the veneer, it cannot be poured directly on the veneer surface. Instead, a paint brush is used to apply the adhesive, evenly distribute it with a scraper, and then let the adhesive dry naturally. The degree of drying should be sticky to the touch, but not sticky to the hand, otherwise the surface will bubble or the veneer will peel off. In addition, adhesive should be dispensed to the area for mounting the veneer and to the veneer at the same time as much as possible to make the adhesion of the two in the best state. The existing technology requires manual operation when dispensing adhesive. For large-area veneers, cleaning and dispensing require a lot of manpower and cost, which is inefficient. Moreover, uneven and untimely dispensing can easily cause a problem to the adhesion of the metal veneer. Furthermore, the hoisting of large veneers is also a major difficulty. Chinese utility model patent publication No. CN210395793U discloses a multiangle inclined ceiling structure, which includes a tray and a veneer suspended under the tray. The structure also includes a fillet measuring device for measuring the inclination angle of the veneer. A suspension rod is vertically arranged downward at the center of the tray, and the lower part of the suspension rod is connected to the veneer through a lock. Two length-adjustable hangers for connecting with the veneer are hung at the edge of the tray. The fillet measuring device is fixedly connected to the veneer and arranged parallel to the veneer. An angle between the fillet measuring device and the suspension rod is measured. The utility model has the effect of facilitating accurate adjustment of the inclination angle of the veneer. However, the prior art fails to solve the problems of surface cleaning, the uneven and untimely adhesive dispensing of the metal veneer and the difficulty in hoisting. SUMMARY OF THE INVENTION In view of the above technical problems, the present invention provides the following technical solution: a hoisting device for a wall-ground integrated metal veneer, including a bottom plate, further including a control assembly, a dispensing assembly, and a hoisting assembly, wherein the control assembly is slidably arranged on the bottom plate, the dispensing assembly is fixedly arranged on the control assembly, and the hoisting assembly is rotatably arranged on the bottom plate, wherein the control assembly engages with the hoisting assembly when moved to a predetermined position, wherein the dispensing assembly includes: a dispensing conical fixation column fixedly arranged on a control rotating plate; a gear ring fixedly arranged in the dispensing conical fixation column; a second dispensing gear and a first dispensing gear meshed with the dispensing conical fixation column; a dispensing bracket on which the second dispensing gear and the first dispensing gear are rotatably arranged; a first control pinion gear having an output shaft on which the dispensing bracket is fixedly arranged; a dispensing fixation disk fixedly arranged on the output shaft of the first control pinion gear; a second dispensing sheet and a first dispensing sheet slidably arranged on the dispensing fixation disk; a first dispensing connecting rod having one end movably arranged on the first dispensing sheet and the other end slidably arranged on the first dispensing gear, the first dispensing connecting rod being rotatably arranged on the dispensing fixation disk; and a second dispensing connecting rod having one end movably arranged on the second dispensing sheet and the other end slidably arranged on the second dispensing gear, the second dispensing connecting rod being rotatably arranged on the dispensing fixation disk. Further, an adhesive extrusion cylinder is fixedly arranged on the dispensing fixation disk. A dispensing sliding plug is slidably arranged in the adhesive extrusion cylinder. A dispensing sliding rod is fixedly arranged on the dispensing sliding plug. A return spring is fixedly arranged between the dispensing sliding plug and the adhesive extrusion cylinder. One end of a dispensing pull rope is rotatably arranged on the dispensing sliding rod and the other end is rotatably arranged on the first dispensing connecting rod. One end of the adhesive extrusion cylinder is coupled to an adhesive storage box through a pipeline, and a first dispensing check valve is fixedly arranged between the adhesive storage box and the adhesive extrusion cylinder. The adhesive extrusion cylinder is further connected to a first dispensing sheet through a conduit, and the first dispensing sheet and the second dispensing sheet are coupled through another conduit. Further, the control assembly includes a control fixation column slidably arranged on the bottom plate; a control cylinder fixedly arranged on the control fixation column with an end of the control cylinder fixedly arranged on the bottom plate; a control motor and a first control fixed gear fixedly arranged on the control fixation column; a first control fixed gear, a second control sliding gear, a control gear ring and a first control sliding gear rotatably arranged on an output shaft of the control motor; and a control sliding ring fixedly arranged on the first control sliding gear, wherein the control sliding ring and the first control sliding gear are slidably arranged on the control gear ring, and the control gear ring is rotatably arranged on the control fixation column, wherein the control sliding ring is rotatably arranged on the second control sliding gear and fixedly arranged on a control handle, and the control handle is slidably arranged on the control fixation column. Further, a second control fixed gear and a control large gear are fixedly arranged on the output shaft of the control motor. A second control small gear is rotatably arranged on a control rotating plate and meshed with the control large gear. A first control small gear is rotatably arranged on the control rotating plate and meshed with the second control small gear. A control gear ring is meshed with the first control small gear. The control rotating plate is rotatably arranged on the control fixation column. Further, the control gear ring is engaged with the hoisting assembly. The hoisting assembly includes: a hoisting sliding plate meshed with the control gear ring; hoisting fixation blocks symmetrically fixed on a hoisting fixation bracket, the hoisting sliding plate being slidably arranged on the hoisting fixation blocks; a hoisting flip motor fixedly arranged on the hoisting sliding plate; and a hoisting vacuum suction cup fixedly arranged on an output shaft of the hoisting flip motor, wherein the output shaft of the hoisting flip motor is rotatably arranged on the hoisting sliding plate. Further, the hoisting fixation bracket is rotatably arranged on the hoisting connecting rod, and the hoisting connecting rod is rotatably arranged on the bottom plate. A hoisting cylinder is rotatably arranged on the hoisting connecting rod on one side, and the other side of the hoisting cylinder is rotatably arranged on the bottom plate. Further, multiple groups of the hoisting fixation bracket, the hoisting cylinder, and the hoisting connecting rod are symmetrically arranged. Further, multiple units of the first dispensing sheet, the second dispensing sheet, the first dispensing connecting rod, the second dispensing connecting rod, the first dispensing gear, and the second dispensing gear are symmetrically arranged. The beneficial effects of the present invention compared with the prior art are: 1. By means of arranging the control assembly, the device can be rapidly controlled to select a cleaning mode or a dispensing mode through simple control, thereby simplifying the operation and improving the work efficiency. 2. By means of arranging the dispensing assembly, a cleaning operation and a dispensing operation can be rapidly and uniformly achieved in a working process, thereby enabling the dispensing operation to be carried out in a timely manner and avoiding the problem of unreliable bonding caused by untimely and uneven dispensing. 3. By means of arranging the hoisting assembly, the angle of a metal veneer can be rapidly controlled after dispensing is completed so as to assist a worker in rapid mounting, thereby saving manpower and cost. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic diagram of a front view of the overall structure of the present invention. FIG. 2 is a schematic diagram of the overall structure of the present invention from a side view. FIG. 3 is a schematic diagram of the overall structure of the present invention. FIG. 4 is a schematic diagram of a partial structure of the present invention. FIG. 5 is a first schematic diagram of a partial structure of a control assembly of the present invention. FIG. 6 is a second schematic diagram of the partial structure of the control assembly of the present invention. FIG. 7 is a first schematic diagram of a partial structure of a dispensing assembly of the present invention. FIG. 8 is a second schematic diagram of the partial structure of the dispensing assembly of the present invention. FIG. 9 is a third schematic diagram of the partial structure of the dispensing assembly of the present invention. FIG. 10 is a partial cross-sectional view of the dispensing assembly of the present invention. FIG. 11 is a first schematic diagram of a partial structure of a hoisting assembly of the present invention. FIG. 12 is a second schematic diagram of the partial structure of the hoisting assembly of the present invention. Reference numerals: 1-control assembly; 2-dispensing assembly; 3-hoisting assembly; 4-bottom plate; 101-control handle; 102-control fixation column; 103-control cylinder; 104-control sliding ring; 105-first control fixed gear; 106-first control sliding gear; 107-second control fixed gear; 108-control gear ring; 109-control large gear; 110-first control small gear; 111-second control small gear; 112-control motor; 113-control rotating plate; 114-second control sliding gear; 201-dispensing conical fixation column; 202-adhesive extrusion cylinder; 203-adhesive storage box; 204-first dispensing sheet; 205-second dispensing sheet; 206-first dispensing connecting rod; 207-second dispensing connecting rod; 208-dispensing bracket; 209-first dispensing gear; 210-second dispensing gear; 211-dispensing sliding plug; 212-dispensing sliding rod; 213-dispensing fixation disk; 214-dispensing pull rope; 215-first dispensing check valve; 302-hoisting connecting rod; 303-hoisting cylinder; 304-hoisting fixation bracket; 305-hoisting fixation block; 306-hoisting sliding plate; 307-hoisting flip motor; 308-hoisting vacuum suction cup. DETAILED DESCRIPTION The technical solutions in the embodiments of the present invention will be further described in detail below in conjunction with the accompanying drawings of the embodiments. The described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by an ordinary person skilled in the art without creative work are within the scope of protection of the present invention. As shown in FIGs. 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11 and 12, a hoisting device for a wall-ground integrated metal veneer includes a control assembly 1, a dispensing assembly 2, a hoisting assembly 3 and a bottom plate 4. The control assembly 1 is slidably arranged on the bottom plate 4, the dispensing assembly 2 is fixedly arranged on the control assembly 1, and the hoisting assembly 3 is rotatably arranged on the bottom plate 4. When the control assembly 1 is moved to a predetermined position, it engages with the hoisting assembly 3. The dispensing assembly 2 includes a dispensing conical fixation column 201 fixedly arranged on a control rotating plate 113. A gear ring is fixedly arranged in the dispensing conical fixation column 201. The dispensing conical fixation column 201 is meshed with a second dispensing gear 210 and a first dispensing gear 209. The second dispensing gear 210 and the first dispensing gear 209 are rotatably arranged on a dispensing bracket 208. The dispensing bracket 208 is fixedly arranged on an output shaft of a first control pinion 110. A dispensing fixation disk 213 is also fixedly arranged on the output shaft of the control pinion 110. A second dispensing sheet 205 and a first dispensing sheet 204 are slidably arranged on the dispensing fixation disk 213. A first dispensing connecting rod 206 is movably arranged on the first dispensing sheet 204, and the other end of the first dispensing connecting rod 206 is slidably arranged on the first dispensing gear 209. The first dispensing connecting rod 206 is rotatably arranged on the dispensing fixation disk 213. A second dispensing connecting rod 207 is movably arranged on the second dispensing sheet 205, and the other end of the second dispensing connecting rod 207 is slidably arranged on the second dispensing gear 210. The second dispensing connecting rod 207 is rotatably arranged on the dispensing fixation disk 213. An adhesive extrusion cylinder 202 is fixedly arranged on the dispensing fixation disk 213. A dispensing sliding plug 211 is slidably arranged in the adhesive extrusion cylinder 202. A dispensing sliding rod 212 is fixedly arranged on the dispensing sliding plug 211, and a return spring is fixedly arranged between the dispensing sliding plug 211 and the adhesive extrusion cylinder 202. A dispensing pull rope 214 is rotatably arranged on the dispensing sliding rod 212, and the material of the dispensing pull rope 214 is rubber. The other end of the dispensing pull rope 214 is rotatably arranged on the first dispensing connecting rod 206. One end of the adhesive extrusion cylinder 202 is fixedly connected to an adhesive storage box 203 through a pipeline. A first dispensing check valve 215 is fixedly arranged between the adhesive storage box 203 and the adhesive extrusion cylinder 202. The adhesive extrusion cylinder 202 is also connected to the first dispensing sheet 204 through a conduit, and a second check valve is fixedly arranged on the first dispensing sheet 204. The first dispensing sheet 204 is connected to the second dispensing sheet 205 through another conduit. There are multiple groups of the first dispensing sheet 204, the second dispensing sheet 205, the first dispensing connecting rod 206, the second dispensing connecting rod 207, the first dispensing gear 209, and the second dispensing gear 210. These groups are symmetrically arranged. The control assembly 1 includes a control fixation column 102 slidably arranged on the bottom plate 4. A control cylinder 103 is fixedly arranged on the control fixation column 102. The other end of the control cylinder 103 is fixedly arranged on the bottom plate 4. A control motor 112 and a first control fixed gear 105 are fixedly arranged on the control fixation column 102. A first control fixed gear 105, a second control sliding gear 114, a control gear ring 108, and a first control sliding gear 106 are rotatably arranged on an output shaft of the control motor 112. A control sliding ring 104 is fixedly arranged on the first control sliding gear 106. The control sliding ring 104 and the first control sliding gear 106 are slidably arranged on the control gear ring 108. The control gear ring 108 is rotatably arranged on the control fixation column 102. The control sliding ring 104 is rotatably arranged on the second control sliding gear 114. The control sliding ring 104 is fixedly arranged on a control handle 101, and the control handle 101 is slidably arranged on the control fixation column 102. A second control fixed gear 107 and a control large gear 109 are fixedly arranged on the output shaft of the control motor 112. The control large gear 109 meshes with a second control small gear 111 rotatably arranged on a control rotating plate 113. The second control small gear 111 meshes with a first control small gear 110 rotatably arranged on the control rotating plate 113. The first control small gear 110 meshes with the control gear ring 108. The control rotating plate 113 is rotatably arranged on the control fixation column 102. The control gear ring 108 is engaged with the hoisting assembly 3. The hoisting assembly 3 includes a hoisting sliding plate 306 meshed with the control gear ring 108. The hoisting sliding plate 306 is slidably arranged on hoisting fixation blocks 305. The hoisting fixation blocks 305 are symmetrically and fixedly mounted on the hoisting fixation bracket 304. A hoisting flip motor 307 is fixedly arranged on the hoisting sliding plate 306. A hoisting vacuum suction cup 308 is fixedly arranged on an output shaft of the hoisting flip motor 307. The output shaft of the hoisting flip motor 307 is rotatably arranged on the hoisting sliding plate 306. The hoisting fixation bracket 304 is rotatably arranged on a hoisting connecting rod 302. The hoisting connecting rod 302 is rotatably mounted on the bottom plate 4. A hoisting cylinder 303 is rotatably arranged on the hoisting connecting rod 302. The other side of the hoisting cylinder 303 is rotatably connected to the bottom plate 4. Multiple sets of the hoisting fixation bracket 304, the hoisting cylinder 303, and the hoisting connecting rod 302 are provided and symmetrically arranged. The present invention discloses a hoisting device for a wall-ground integrated metal veneer, whose working principle is as follows: Activate the hoisting vacuum suction cup 308 to adsorb the metal veneer. The hoisting flip motor 307 drives the hoisting vacuum suction cup 308 to adjust the position of the metal veneer, and the control cylinder 103 pushes the control fixation column 102 to drive the dispensing assembly 2 to move to the position where it engages with the metal veneer for cleaning and adhesive dispensing. During cleaning, activate the control motor 112 to drive the second control fixed gear 107 and the control large gear 109 to rotate. Manually push the control handle 101 to push the second control sliding gear 114 and the first control sliding gear 106 so that the first control sliding gear 106 is meshed with the second control fixed gear 107. At this time, the second control fixed gear 107 and the control large gear 109 drive the control ring gear 108 to rotate. The first control small gear 110 and the second control small gear 111 revolve around the control large gear 109 without rotating, and at the same time, the control rotating plate 113 rotates to drive the multiple first dispensing sheets 204 and second dispensing sheet 205 on the dispensing assembly 2 to rotate to clean the metal veneer. In this process, the control ring gear 108 rotates, and a part of the ring gear arranged on the outer ring of the control ring gear 108 is meshed with the rack on the hoisting sliding plate 306, driving the hoisting sliding plate 306 to slide on the hoisting fixation blocks 305, so that the second dispensing sheets 205 and the first dispensing sheets 204 on the dispensing assembly 2 can fully clean the metal veneer. During the dispensing process, the control motor 112 is activated to drive the second control fixed gear 107 and the control large gear 109 to rotate. The control handle 101 is manually pulled to make the second control sliding gear 114 mesh with the first control fixed gear 105, and the first control sliding gear 106 is disengaged from the second control fixed gear 107. At this time, the second control fixed gear 107 and the control large gear 109 rotate, and the control gear ring 108 is kept still. The control large gear 109 drives the second control small gear 111, and the second control small gear 111 drives the first control small gear 110. Since the control gear ring 108 is kept stationary, the first control small gear 110 drives the control rotating plate 113 to revolve around the control large gear 109 while rotating. The first control small gear 110 rotates to drive the dispensing bracket 208, and the dispensing bracket 208 drives the second dispensing gear 210 and the first dispensing gear 209 to revolve and rotate on the dispensing conical fixation column 201. The second dispensing gear 210 and the first dispensing gear 209 rotate to drive the second dispensing connecting rod 207 and the first dispensing connecting rod 206 to further drive the first dispensing sheets 204 and the second dispensing sheets 205 to slide on the dispensing fixation disk 213, and the second dispensing sheets 205 and the first dispensing sheets 204 slide to pull the dispensing pull rope 214 which further pulls the dispensing sliding rod 212. The adhesive in the adhesive storage box 203 is sucked into the adhesive extrusion cylinder 202 through the first dispensing check valve 215, and the dispensing sliding plug 211 is pushed under the action of the return spring to inject the adhesive from the adhesive extrusion cylinder 202 through the conduit into the holes on the second dispensing sheets 205 and the first dispensing sheets 204 to evenly dispense adhesive onto the metal veneer. After the adhesive dispensing is completed, the control cylinder 103 pulls the control fixation column 102 to retrieve the control assembly 1 and the dispensing assembly 2 to predetermined positions. The hoisting cylinder 303 pushes the hoisting connecting rod 302 to move the hoisting fixation bracket 304 to an appropriate position, and the hoisting flip motor 307 adjusts the metal veneer on the hoisting vacuum suction cup 308 to locate the veneer in a position convenient for installation, thereby completing the entire assisting process.

Claims

1. A hoisting device for a wall-ground integrated metal veneer, including a bottom plate (4), characterized in that the hoisting device further includes a control assembly (1), a dispensing assembly (2), and a hoisting assembly (3), wherein the control assembly (1) is slidably arranged on the bottom plate (4), the dispensing assembly (2) is fixedly arranged on the control assembly (1), and the hoisting assembly (3) is rotatably arranged on the bottom plate (4), wherein the control assembly (1) is configured to engage with the hoisting assembly (3) when moved to a predetermined position, wherein the dispensing assembly (2) includes: a dispensing conical fixation column (201) fixedly arranged on a control rotating plate (113); a gear ring fixedly arranged in the dispensing conical fixation column (201); a second dispensing gear (210) and a first dispensing gear (209) meshed with the dispensing conical fixation column (201); a dispensing bracket (208) on which the second dispensing gear (210) and the first dispensing gear (209) are rotatably arranged; a first control pinion gear (110) having an output shaft on which the dispensing bracket (208) is fixedly arranged; a dispensing fixation disk (213) fixedly arranged on the output shaft of the first control pinion gear (110); a second dispensing sheet (205) and a first dispensing sheet (204) slidably arranged on the dispensing fixation disk (213); a first dispensing connecting rod (206) having one end movably arranged on the first dispensing sheet (204) and the other end slidably arranged on the first dispensing gear (209), the first dispensing connecting rod (206) being rotatably arranged on the dispensing fixation disk (213); and a second dispensing connecting rod (207) having one end movably arranged on the second dispensing sheet (205) and the other end slidably arranged on the second dispensing gear (210), the second dispensing connecting rod (207) being rotatably arranged on the dispensing fixation disk (213).

2. The hoisting device for a wall-ground integrated metal veneer according to claim 1, including: an adhesive extrusion cylinder (202) fixedly arranged on thedispensing fixation disk (213); a dispensing sliding plug (211) slidably arranged in the adhesive extrusion cylinder (202); a dispensing sliding rod (212) fixedly arranged on the dispensing sliding plug (211); a return spring fixedly arranged between the dispensing sliding plug (211) and the adhesive extrusion cylinder (202); a dispensing pull rope (214) having one end rotatably arranged on the dispensing sliding rod (212) and the other end rotatably arranged on the first dispensing connecting rod (206), wherein one end of the adhesive extrusion cylinder (202) is coupled to an adhesive storage box (203) through a pipeline, and a first dispensing check valve (215) is fixedly arranged between the adhesive storage box (203) and the adhesive extrusion cylinder (202), wherein the adhesive extrusion cylinder (202) is further connected to a first dispensing sheet (204) through a conduit, and the first dispensing sheet (204) and the second dispensing sheet (205) are coupled through another conduit.

3. The hoisting device for a wall-ground integrated metal veneer according to claim 2, wherein the control assembly (1) includes: a control fixation column (102) slidably arranged on the bottom plate (4); a control cylinder (103) fixedly arranged on the control fixation column (102) with an end of the control cylinder (103) fixedly arranged on the bottom plate (4); a control motor (112) and a first control fixed gear (105) fixedly arranged on the control fixation column (102); a first control fixed gear (105), a second control sliding gear (114), a control gear ring (108) and a first control sliding gear (106) rotatably arranged on an output shaft of the control motor (112); and a control sliding ring (104) fixedly arranged on the first control sliding gear (106), wherein the control sliding ring (104) and the first control sliding gear (106) are slidably arranged on the control gear ring (108), and the control gear ring (108) is rotatably arranged on the control fixation column (102), wherein the control sliding ring (104) is rotatably arranged on the second control sliding gear (114) and fixedly arranged on a control handle (101), and the control handle (101) is slidably arranged on the control fixation column (102).

4. The hoisting device for a wall-ground integrated metal veneer according to claim 3, including: a second control fixed gear (107) and a control large gear (109) fixedly arranged on the output shaft of the control motor (112); a second control small gear (111) rotatably arranged on a control rotating plate (113) and meshed with the control large gear (109); a first control small gear (110) rotatably arranged on the control rotating plate (113) and meshed with the second control small gear (111); and a control gear ring (108) meshed with the first control small gear (110), wherein the control rotating plate (113) is rotatably arranged on the control fixation column (102).

5. The hoisting device for a wall-ground integrated metal veneer according to claim 4, wherein the control gear ring (108) is engaged with the hoisting assembly (3), the hoisting assembly (3) including: a hoisting sliding plate (306) meshed with the control gear ring (108); hoisting fixation blocks (305) symmetrically fixed on a hoisting fixation bracket (304), the hoisting sliding plate (306) being slidably arranged on the hoisting fixation blocks (305); a hoisting flip motor (307) fixedly arranged on the hoisting sliding plate (306); and a hoisting vacuum suction cup (308) fixedly arranged on an output shaft of the hoisting flip motor (307), wherein the output shaft of the hoisting flip motor (307) is rotatably arranged on the hoisting sliding plate (306).

6. The hoisting device for a wall-ground integrated metal veneer according to claim 5, wherein the hoisting fixation bracket (304) is rotatably arranged on the hoisting connecting rod (302), and the hoisting connecting rod (302) is rotatably arranged on the bottom plate (4), wherein a hoisting cylinder (303) is rotatably arranged on the hoisting connecting rod (302) on one side, and the other side of the hoisting cylinder (303) is rotatably arranged on the bottom plate (4).

7. The hoisting device for a wall-ground integrated metal veneer according to claim 6, including a plurality of groups each consisted of the hoisting fixation bracket (304), the hoisting cylinder (303), and the hoisting connecting rod (302), the plurality of groups being symmetrically arranged.

8. The hoisting device for a wall-ground integrated metal veneer according to claim 1, including a plurality of units each consisted of the first dispensing sheet (204), the second dispensing sheet (205), the first dispensing connecting rod (206), the second dispensing connecting rod (207), the first dispensing gear (209), and the second dispensing gear (210), the plurality of units being symmetrically arranged.

Citation Information

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