Novel exterior wall decorative plate rapid laying device
By designing a new type of rapid installation device for exterior wall decorative panels, utilizing a panel conveyor, a multi-directional adjustable telescopic arm, an adhesive coating unit, and a scraping unit, the problem of uneven adhesive application on exterior wall decorative panels was solved, achieving rapid and uniform adhesive application and tight bonding, thus improving the bonding strength and aesthetics of the exterior wall decorative panels.
Patent Information
- Application Number
- CN202511569334.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-10-30
AI Technical Summary
Existing adhesive application devices for exterior wall decorative panels are unable to achieve fast and uniform adhesive application, resulting in problems such as weak and uneven adhesion.
A novel rapid installation device for exterior wall decorative panels has been designed, comprising a panel conveyor, a multi-directional adjustable telescopic arm, an adhesive coating unit, an adhesive spreading unit, and an adhesive scraping unit. These components enable rapid clamping, adhesive application, spreading, and scraping of exterior wall decorative panels, ensuring uniform adhesive coating and tight filling.
It improves the adhesion and adhesive uniformity of exterior wall decorative panels, increases installation efficiency, and ensures that the exterior wall decorative panels are tightly adhered and flat and aesthetically pleasing.
Smart Images

Figure CN121024298B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of exterior wall decoration technology, specifically to a novel rapid installation device for exterior wall decorative panels. Background Technology
[0002] The installation of exterior wall cladding panels is an important step in beautifying and protecting the exterior walls of buildings. Common exterior wall decoration methods include paint, stone, ceramic tiles, wood, metal, and glass. The installation of exterior wall cladding panels requires the use of hoisting equipment, positioning tools, fixing tools, and cutting tools to help construction workers install the cladding panels quickly and accurately.
[0003] The installation of exterior wall decorative panels can be divided into several steps, including preparation, marking and positioning, appropriate cutting, gluing and bonding, positioning and laying, ensuring horizontal and vertical alignment, fixing and tapping, and cleaning and tidying. Throughout the installation process, it is necessary to ensure the proper use of materials and quality control.
[0004] However, existing installation methods may have the following problems: when applying adhesive to exterior wall decorative panels, it is not easy to quickly and evenly apply the adhesive to the inside of the panels, resulting in inconsistent curvature, uneven adhesive application, and hollow areas on the inside of the panels, making the adhesion weak. Summary of the Invention
[0005] The purpose of this invention is to provide a novel rapid installation device for exterior wall decorative panels to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a novel rapid laying device for exterior wall decorative panels, comprising a main body mechanism, the main body mechanism comprising a panel conveyor, a multi-directional adjustable telescopic arm rotatably connected to the upper part of the panel conveyor, and a laying mechanism movably connected to the front end of the multi-directional adjustable telescopic arm.
[0007] The laying mechanism includes a panel clamping unit, which is installed at the front end of the multi-directional adjustable telescopic arm and is used to clamp the exterior wall decorative panels.
[0008] The laying mechanism also includes an adhesive coating unit, which is located on the upper outer side of the panel clamping unit and is used for rapid adhesive application to the exterior wall decorative panels.
[0009] The laying mechanism also includes an adhesive spreading unit, which is located on the outer side of the lower end of the adhesive coating unit. The adhesive spreading unit works in conjunction with the adhesive coating unit to spread the adhesive coated on the surface of the exterior wall decorative panel evenly.
[0010] An adhesive scraping unit is provided on the outside of the adhesive spreading unit. The adhesive scraping unit is used in conjunction with the adhesive spreading unit to scrape off excess adhesive from the outer edge of the exterior wall decorative panel.
[0011] Preferably, the plate clamping unit includes a drive base, which is rotatably connected to the front end of the multi-directional adjustable telescopic arm. Two side clamping plates are slidably connected inside the lower end of the drive base. A threaded rod is rotatably connected inside the drive base. A servo motor that is fixedly connected to the side wall of the drive base is installed at one end of the threaded rod. Two symmetrical sliders are threadedly connected to the outside of the threaded rod. The two sliders are fixedly connected to the upper end of the two side clamping plates respectively. An ejection component is movably connected to the inner side of the side clamping plate near the connecting seat.
[0012] Preferably, the ejection assembly includes a folding frame and an electric push rod. The two ends of the folding frame are movably connected to the inner sides of two side clamps, respectively. The electric push rod is installed inside the rotating shaft of the folding frame, and a push plate is fixedly connected to one end of the inner side of the electric push rod.
[0013] Preferably, the colloid coating unit includes an automatically reversing horizontal drive module, a vertical movement adjustment module, and a glue application module. The horizontal drive module is fixedly connected to the upper part of the drive base, the vertical movement adjustment module is movably connected to the front end of the horizontal drive module, and the glue application module is movably installed at the lower end of the vertical movement adjustment module. The horizontal drive module includes a support base, which is movably connected to the front end of the multi-directional adjustable telescopic arm. A reversing screw is rotatably connected inside the support base, and a guide seat is threadedly connected to the external of the reversing screw. Compression springs are respectively provided on both sides of the guide seat. The front of the guide seat is movably connected to the vertical movement adjustment module. The drive base is fixedly connected to the bottom of the support base, and a connecting seat is provided on the back of the support base. The sheet metal conveyor is assembled and connected to the support base through the connecting seat. The horizontal drive module also includes a reversing component.
[0014] Preferably, the reversing assembly includes a reversing box and a positioning box, which are respectively installed at both ends of the support base. The reversing screw passes through the interior of the reversing box and the positioning box. A drive motor is installed inside the reversing box, and a drive gear is fixedly connected to the output end of the drive motor. A bearing rod is fixedly connected to the inner side of the reversing box of the drive motor. A driven gear is rotatably connected to the outer end of the bearing rod. The drive gear meshes with the driven gear. The diameter of the drive gear is smaller than that of the driven gear, and the thickness of the drive gear is twice the thickness of the driven gear. A large gear and a small gear are respectively provided inside the drive gear and the driven gear. Both the large gear and the small gear are fixedly connected to one end of the reversing screw. A gap of not less than the thickness of a small gear is provided between the large gear and the small gear. Two sets of elastic positioning elements are provided inside the positioning box, and an annular positioning groove is provided near the elastic positioning elements on the reversing screw.
[0015] Preferably, the up-and-down movement adjustment module includes a guide frame, which is fixedly connected to the front of the guide seat. The guide frame is U-shaped, and its inner side is fixedly connected to the front of the guide seat. Two double-sided toothed plates are provided on the inner side of the guide frame. A cross link is movably connected to the inner side of the two double-sided toothed plates. A support spring is fixedly connected between the top of the cross link and the double-sided toothed plates. Tooth grooves are opened on the inner sides of both ends of the guide frame. The outer tooth surface of the double-sided toothed plates engages with the tooth grooves. Two bevel gear transmission groups are provided on the inner side of the double-sided toothed plates. A longitudinal gear is connected to the front end of the bevel gear transmission group through a pipe. A gap is provided between the inner tooth surface of the double-sided toothed plates and the longitudinal gear. A dual-shaft reducer is installed on the inner side of the two bevel gear transmission groups. The rear end of the dual-shaft reducer is fixedly connected to the inside of the guide seat. A paint seat is movably connected to the lower end of the double-sided toothed plates. The lower ends of the two double-sided toothed plates are slidably connected to the two inner sides of the paint seat, respectively.
[0016] Preferably, the elastic positioning element includes a cylindrical slide groove, which is formed inside the positioning box. A return spring is sleeved inside the cylindrical slide groove. A ball is provided at one end of the inner side of the return spring. An annular positioning groove is located near one end of the cylindrical slide groove. The return spring pushes the ball into the corresponding annular positioning groove.
[0017] Preferably, the coating module includes a coating bend tube, which is fixedly connected inside the coating holder and extends to the bottom of the coating holder. The coating bend tube faces the inside of the coating holder. The upper end of the coating bend tube is connected to a telescopic tube, and the other end of the telescopic tube is fixedly connected to a material conveying tube. The material conveying tube is set inside the double-sided toothed plate and extends to the outside of its upper end.
[0018] Preferably, the colloid spreading unit includes a spreading seat, which is movably connected to the lower part of the coating seat. The spreading seat has a groove inside, and the outlet of the coating bend is located inside the groove. Horizontal spreading chamfer plates are provided on both sides of the spreading seat. Vertical spreading chamfer plates are fixedly connected to the upper and lower sides of the spreading seat. A short-stroke reciprocating module is fixedly connected to the upper part of the spreading seat. The short-stroke reciprocating module includes a dual-shaft reducer II, which is fixedly connected inside the coating seat. A rotating column is installed at the lower end of the dual-shaft reducer II. A typical annular groove is provided on the outer circumference of the rotating column. A slide rod is slidably connected to the side of the typical annular groove. A sleeve is fixedly connected to the outside of the slide rod. The lower end of the sleeve is slidably connected to the upper part of the spreading seat. A gap is provided between the lower end of the rotating column and the inner side of the sleeve.
[0019] Preferably, the colloid scraping unit includes an outer scraper and a flipping module. The outer scraper is fixedly connected to the outside of the material leveling seat, and the flipping module is installed on the upper part of the material leveling seat. The lower end of the outer scraper is provided with a lower cutting edge, and the two sides of the outer scraper are provided with side cutting edges. The flipping module includes a steering gear, an intermediate gear, and a linkage gear. The steering gear is fixedly connected to the outside of the upper end of the paint bend. The upper end of the paint bend is rotatably connected to a rotary pipe joint. The intermediate gear is fixedly connected to a shaft, which is rotatably connected to the paint seat. A separation spring is sleeved on the outside of the shaft and is located below the intermediate gear. The shaft extends to the upper end of the paint seat, and a pressure plate is fixedly connected to the upper end of the shaft. The pressure plate is located below the guide frame. The linkage gear is connected to the upper shaft of the dual-shaft reducer. Positioning holes are symmetrically provided on both sides of the paint bend, and elastic positioning elements are provided on the outside of the positioning holes.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] 1. This invention uses an adhesive coating unit at the front end of a panel conveyor to quickly clamp, fix, and lift the exterior wall decorative panel. The adhesive coating unit automatically applies adhesive to the inner side of the exterior wall decorative panel. The adhesive spreading unit spreads the applied adhesive evenly. The panel conveyor then moves and pushes the exterior wall decorative panel onto the exterior wall surface. The adhesive spreading unit spreads the adhesive evenly, making the bonding surface of the exterior wall decorative panel more uniform and the adhesion stronger. The electric push rod of the ejector component pushes the exterior wall decorative panel out of the inner side of the side clamp through the push plate, causing the exterior wall decorative panel to compress the adhesive on its inner side, making the adhesive tightly fill the space between the exterior wall decoration and the exterior wall surface, resulting in a tighter and stronger bond. Finally, the adhesive scraping unit scrapes off the adhesive from the edges of the exterior wall decorative panel, which facilitates the rapid positioning and lifting of the exterior wall decorative panel and the rapid automatic adhesive application, improving the laying efficiency.
[0022] 2. This invention utilizes the movement of the sheet metal conveyor and the control of the multi-directional adjustable telescopic arm to quickly clamp and lift the exterior wall decorative panels. Simultaneously, an adhesive coating unit rapidly applies adhesive to the exterior wall decorative panels, making the entire laying process faster and more efficient, significantly improving work efficiency. It also ensures uniform adhesive application. The adhesive coating unit, through a horizontal drive module and a vertical adjustment module, enables the coating module to move in an S-shaped reciprocating motion inside the exterior wall decorative panel, resulting in more even adhesive application. During the application process, an adhesive scraping unit removes excess adhesive, ensuring a tighter fit and more uniform coating of the exterior wall decorative panels.
[0023] 3. This invention pushes the exterior wall decorative panel out of the inner side of the side clamp by the push-out component, so that the adhesive is fully filled on the wall surface, reducing the hollow phenomenon, improving the adhesion, ensuring that the exterior wall decorative panel is tightly bonded, and beautifying the gaps. The adhesive scraping unit scrapes off the excess adhesive in the gaps between the exterior wall decorative panels through the outer scraper and the flipping module, and repairs the gaps, so that the exterior wall decorative panel is flat and beautiful overall. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0025] Figure 2 This is a schematic diagram of the sheet metal clamping unit in this invention;
[0026] Figure 3 This is a schematic diagram of the laying mechanism in this invention;
[0027] Figure 4 This is a schematic diagram of the structure of the colloidal coating unit in this invention;
[0028] Figure 5 This is a schematic diagram of the vertical movement adjustment module in this invention;
[0029] Figure 6 This is a schematic diagram of the commutation component in this invention;
[0030] Figure 7 for Figure 6 Enlarged view of point A in the middle;
[0031] Figure 8 for Figure 6 Enlarged view of point B in the middle;
[0032] Figure 9 This is a schematic diagram of the colloid spreading unit in this invention;
[0033] Figure 10 This is a schematic diagram of the front structure of the colloid spreading unit in this invention;
[0034] Figure 11 for Figure 4 Enlarged view of point C in the middle;
[0035] Figure 12 This is a cross-sectional view of the internal structure of the coating holder in this invention;
[0036] Figure 13 for Figure 12 Enlarged view of point D in the middle.
[0037] In the diagram: 1. Main structure; 11. Sheet conveyor; 12. Multi-directional adjustable telescopic arm; 2. Laying mechanism; 20. Sheet clamping unit; 2001. Side clamping plate; 2002. Drive base; 2003. Threaded rod; 2004. Servo motor; 2005. Slider; 2006. Push-out assembly; 2007. Folding frame; 2008. Electric push rod; 2009. Push plate; 21. Colloid coating unit; 2101. Horizontal drive module; 2102. Support base; 2103. Reversing screw; 2104. Guide seat; 2105. Compression spring; 2106. Connecting seat; 2107. Reversing assembly; 2171. Reversing box; 2172. Positioning box; 2173. Drive motor; 2174. Drive gear; 2175. Driven gear; 2176. Large gear; 2177. Small gear; 2178. Elastic positioning element; 2179. Annular positioning groove; 2190. Cylindrical slide; 2191. Return spring; 2192. Ball; 2110. Up and down movement adjustment module; 21 11. Guide frame; 2112. Double-sided toothed plate; 2113. Cross linkage; 2114. Support spring; 2115. Bevel gear transmission assembly; 2116. Longitudinal gear; 2117. Dual-shaft reducer; 2118. Paint holder; 2120. Glue application module; 2121. Paint bend; 2122. Telescopic pipe; 2123. Material conveying pipe; 22. Colloid spreading unit; 2201. Spreading base; 2202. Pipe groove; 2203. Transverse spreading chamfer plate; 2204. Longitudinal spreading chamfer plate Angle plate; 2205, Short-stroke reciprocating module; 2206, Dual-shaft reducer II; 2207, Rotary column; 2208, Typical annular groove; 2209, Slide rod; 2210, Sleeve; 3, Colloid scraping unit; 301, Outer scraper; 302, Tilting module; 303, Lower cutting blade; 304, Side cutting blade; 305, Steering gear; 306, Intermediate gear; 307, Linkage gear; 308, Shaft; 309, Separation spring; 310, Pressure plate; 311, Rotary pipe joint; 313, Positioning hole. Detailed Implementation
[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention. Example
[0039] Please see Figure 1-13The present invention provides a technical solution: a novel rapid laying device for exterior wall decorative panels, including a main body 1, the main body 1 including a panel conveyor 11, the panel conveyor 11 including a movable seat, a counterweight, a multi-directional adjustable telescopic arm 12 and a hydraulic component, and the front end of the multi-directional adjustable telescopic arm 12 is movably connected to the laying mechanism 2.
[0040] The laying mechanism 2 includes a panel clamping unit 20, which is installed at the front end of the multi-directional adjustable telescopic arm 12. The panel clamping unit 20 is used to clamp the exterior wall decorative panel.
[0041] The laying mechanism 2 also includes an adhesive coating unit 21, which is located on the upper outer side of the panel clamping unit 20. The adhesive coating unit 21 is used for quickly applying adhesive to the exterior wall decorative panel.
[0042] As a further definition of the laying mechanism 2 of the present invention, the plate clamping unit 20 includes a drive seat 2002, which is rotatably connected to the front end of the multi-directional adjustable telescopic arm 12. Two side clamping plates 2001 are slidably connected inside the lower end of the drive seat 2002. A threaded rod 2003 is rotatably connected inside the drive seat 2002. A servo motor 2004 is installed at one end of the threaded rod 2003. Two symmetrical sliders 2005 are threadedly connected to the outside of the threaded rod 2003. The two sliders 2005 are respectively connected to the two side clamping plates 2001. The end is fixedly connected, and the inner side of the side clamping plate 2001 near the connecting seat 2106 is movably connected to the push-out component 2006. The plate clamping unit 20 clamps the exterior wall decorative panel, and the multi-directional adjustable telescopic arm 12 controls the plate clamping unit 20 to bring it closer to the outside of the wall, which facilitates the lifting, installation and positioning of the exterior wall decorative panel. The servo motor 2004 drives the threaded rod 2003 to rotate, and the two sliders 2005 inside the drive seat 2002 move closer, thereby driving the two side clamping plates 2001 to move closer to clamp and fix the exterior wall decorative panel.
[0043] The ejection assembly 2006 includes a folding frame 2007 and an electric push rod 2008. The two ends of the folding frame 2007 are movably connected to the inner sides of the two side clamps 2001, respectively. The electric push rod 2008 is installed inside the pivot of the folding frame 2007. The telescopic end of the electric push rod 2008 is fixedly connected to a push plate 2009. The ejection assembly 2006 pushes the exterior wall decorative panel close to the wall from the inner side of the side clamps 2001, so that it is adhered to the wall. The folding frame 2007 supports the electric push rod 2008. The folding frame 2007 is telescopically adjusted according to the distance between the two side clamps 2001. The electric push rod 2008 pushes the push plate 2009, and the push plate 2009 pushes the exterior wall decorative panel out.
[0044] The colloid coating unit 21 includes an automatically reversing horizontal drive module 2101, a vertical movement adjustment module 2110, and a coating module 2120. The horizontal drive module 2101 is fixedly connected to the upper part of the drive base 2002. The vertical movement adjustment module 2110 is movably connected to the front end of the horizontal drive module 2101. The coating module 2120 is movably installed at the lower end of the vertical movement adjustment module 2110. The horizontal drive module 2101 includes a support base 2102, which is movably connected to the front end of the multi-directional adjustable telescopic arm 12. An internal sliding connection is provided with a reversing screw 2103, and an external threaded connection is provided with a guide seat 2104. Compression springs 2105 are respectively provided on both sides of the guide seat 2104. The front of the guide seat 2104 is movably connected to the up-down movement adjustment module 2110. The drive seat 2002 is fixedly connected to the bottom of the support seat 2102. A connecting seat 2106 is provided on the back of the support seat 2102. The plate conveyor 11 is assembled and connected to the support seat 2102 through the connecting seat 2106. The horizontal drive module 2101 also includes a reversing component 2107.
[0045] The horizontal drive module 2101, in conjunction with the vertical adjustment module 2110, drives the adhesive application module 2120 to perform horizontal reciprocating movement and equidistant vertical movement. This allows the adhesive application module 2120 to move in an S-shape along the inner side of the exterior wall decorative panel for uniform coating. The horizontal drive module 2101 moves the adhesive application module 2120 to one side of the exterior wall decorative panel. At this point, the double-sided toothed plate 2112 on one side slides inward under the pressure of the side clamping plate 2001. Since the two double-sided toothed plates 2112 are movably connected to a cross link 2113 on their inner sides, the cross link 2113 causes the two double-sided toothed plates 2112 to simultaneously retract inward. The outer tooth surface of the double-sided toothed plate 2112 separates from the tooth groove on the inner side of the guide frame 2111. Simultaneously, the two double-sided toothed plates 2112 mesh with the two inner longitudinal gears 2116. The dual-shaft reducer 2117 drives the two sets of bevel gear transmission groups 2115 to rotate, which in turn drives the longitudinal gears 2116. 6. Rotation: At this time, the longitudinal gear 2116 rotates, driving the double-sided toothed plate 2112 to rise along the inner side of the guide seat 2104. The two double-sided toothed plates 2112 drive the paint seat 2118 to move upward. The compression spring 2105 on the side of the guide seat 2104 begins to compress. When the pressure of the compression spring 2105 reaches a certain value, it pushes the reversing screw 2103 in the other direction, thereby separating the large gear 2176 from the driving gear 2174 and meshing the small gear 2177 with the driven gear 2175. Since the rotation directions of the driving gear 2174 and the driven gear 2175 are opposite, the driving direction of the reversing screw 2103 is changed, causing the reversing screw 2103 to rotate in the opposite direction. When it moves to the other side of the exterior wall decorative panel, the double-sided toothed plate 2112 meshes with the longitudinal gear 2116 again and moves upward. The reversing screw 2103 switches directions again, realizing S-shaped reciprocating movement, so that the colloid coating unit 21 can quickly and evenly apply glue to the exterior wall panel.
[0046] The commutation assembly 2107 includes a commutation box 2171 and a positioning box 2172, which are respectively mounted at both ends of the support base 2102. A commutation screw 2103 passes through the interiors of both the commutation box 2171 and the positioning box 2172. A drive motor 2173 is installed inside the commutation box 2171. A drive gear 2174 is fixedly connected to the output end of the drive motor 2173. A bearing rod is fixedly connected to the commutation box 2171 inside the drive motor 2173. A driven gear 2175 is rotatably connected to one end of the bearing rod. The drive gear 2174 meshes with the driven gear 2175. The diameter of the drive gear 2174 is smaller than the diameter of the driven gear 2175, and the thickness of the drive gear 2174 is twice the thickness of the driven gear 2175. The driven gear 2174 and driven gear 2175 are respectively provided with a large gear 2176 and a small gear 2177 on their inner sides. Both the large gear 2176 and the small gear 2177 are fixedly connected to one end of the reversing screw 2103. There is a gap between the large gear 2176 and the small gear 2177 that is not less than the thickness of the small gear 2177. The positioning box 2172 is provided with two sets of elastic positioning elements 2178. The reversing screw 2103 is provided with an annular positioning groove 2179 near the elastic positioning elements 2178. The elastic positioning elements 2178 are used to position the reversing screw 2103 after it is reversed, ensuring its stability. The return spring 2191 pushes the ball 2192 into the annular positioning groove 2179 corresponding to the reversing direction of the reversing screw 2103, so as to keep it stable.
[0047] The vertical adjustment module 2110 includes a guide frame 2111, which is fixedly connected to the front of the guide seat 2104. The guide frame 2111 is U-shaped, and its inner side is fixedly connected to the front of the guide seat 2104. Two double-sided toothed plates 2112 are provided on the inner side of the guide frame 2111. A cross link 2113 is movably connected to the inner side of the two double-sided toothed plates 2112. A support spring 2114 is fixedly connected between the top of the cross link 2113 and the double-sided toothed plate 2112. Tooth grooves are opened on the inner sides of both ends of the guide frame 2111. The outer tooth surface of the double-sided toothed plate 2112 engages with the tooth groove. Two bevel gear transmission groups 2115 are provided on the inner side of the double-sided toothed plate 2112. A longitudinal gear 2116 is connected to the front end of the bevel gear transmission group 2115 through a pipe. A gap is provided between the inner tooth surface of the double-sided toothed plate 2112 and the longitudinal gear 2116. Two bevel gear transmission groups 2115 are equipped with a dual-shaft reducer 2117 on their inner sides. The rear end of the dual-shaft reducer 2117 is fixedly connected to the inside of the guide seat 2104. The lower end of the double-sided toothed plate 2112 is movably connected to the paint seat 2118. The lower ends of the two double-sided toothed plates 2112 are slidably connected to the inner sides of the paint seat 2118 on both sides respectively. The double-sided toothed plate 2112 is stabilized inside the guide frame 2111 through the guide frame 2111. When the two double-sided toothed plates 2112 are not compressed and contracted, the double-sided toothed plates 2112 are engaged with the inner tooth groove of the guide frame 2111 to stabilize them. When the double-sided toothed plates 2112 are compressed and separated from the inner tooth groove of the guide frame 2111, the dual-shaft reducer 2117 drives the longitudinal gear 2116 through the bevel gear transmission group 2115. The longitudinal gear 2116 then drives the double-sided toothed plate 2112 to move up and down in the vertical direction.
[0048] The elastic positioning element 2178 includes a cylindrical slide groove 2190, which is formed inside the positioning box 2172. A return spring 2191 is sleeved inside the cylindrical slide groove 2190. A ball 2192 is provided at one end of the inner side of the return spring 2191. An annular positioning groove 2179 is close to one end of the cylindrical slide groove 2190. The return spring 2191 pushes the ball 2192 into the corresponding annular positioning groove 2179.
[0049] The adhesive application module 2120 includes a paint bend 2121, which is fixedly connected inside the paint base 2118 and extends to the bottom of the paint base 2118. The paint bend 2121 faces the inside of the paint base 2118. One end of the upper telescopic tube 2122 of the paint bend 2121 is connected, and the other end of the telescopic tube 2122 is fixedly connected to a material conveying tube 2123. The material conveying tube 2123 is set inside the double-sided toothed plate 2112 and extends to the outside of its upper end.
[0050] The specific implementation of this embodiment is as follows: The exterior wall decorative panel is quickly clamped and fixed by the colloid coating unit 21 at the front end of the panel conveyor 11, and then lifted. The colloid coating unit 21 automatically applies adhesive to the inner side of the exterior wall decorative panel. The colloid spreading unit 22 spreads the applied adhesive evenly. Then, the panel conveyor 11 moves the exterior wall decorative panel and pushes it onto the exterior wall surface. The colloid spreading unit 22 spreads the adhesive evenly, making the wall bonding surface of the exterior wall decorative panel more uniform and the adhesion more firm. The panel is then pushed out of the conveyor. The electric push rod 2008 of component 2006 pushes the exterior wall decorative panel out of the inner side of the side clamp 2001 through the push plate 2009, so that the exterior wall decorative panel squeezes the adhesive on its inner side, making the adhesive tightly fill the space between the exterior wall decoration and the exterior wall surface, reducing hollowness and making the exterior wall decorative panel more tightly and firmly bonded. Finally, the adhesive scraping unit 3 scrapes off the adhesive on the edge of the exterior wall decorative panel, making the outside of the exterior wall decorative panel smoother and more beautiful. This structure is conducive to the rapid positioning and lifting of the exterior wall decorative panel, and at the same time, it can quickly and automatically apply adhesive, improving the laying efficiency. Example
[0051] Please see Figure 1-13 The present invention provides a technical solution: a novel rapid installation device for exterior wall decorative panels. The present invention makes corresponding improvements to the technical problems mentioned in the background art.
[0052] As a further limitation of the present invention, the colloid spreading unit 22 includes a spreading seat 2201, which is movably connected to the lower part of the coating seat 2118. A groove 2202 is formed inside the spreading seat 2201, and the outlet of the coating bend 2121 is located inside the groove 2202. Horizontal spreading chamfering plates 2203 are provided on both sides of the spreading seat 2201 located in the groove 2202. Vertical spreading chamfering plates 2204 are fixedly connected to the upper and lower sides of the spreading seat 2201. A short-stroke reciprocating module 2205 is fixedly connected to the upper part of the spreading seat 2201. The system includes a dual-shaft reducer 2206, which is fixedly connected inside the coating holder 2118. A rotating column 2207 is installed at the lower end of the dual-shaft reducer 2206. A typical annular groove 2208 is provided on the outer periphery of the rotating column 2207. A sliding rod 2209 is slidably connected to the side of the typical annular groove 2208. A sleeve 2210 is fixedly connected to the outside of the sliding rod 2209. The lower end of the sleeve 2210 is slidably connected to the upper part of the material leveling seat 2201. A gap is provided between the lower end of the rotating column 2207 and the inner side of the sleeve 2210. The colloid spreading unit 22 stably spreads the colloid, ensuring the uniformity of the coating.
[0053] The specific implementation of this embodiment is as follows: The short-stroke reciprocating module 2205 drives the material leveling seat 2201 to move up and down repeatedly. The dual-shaft reducer 2206 drives the lower rotating column 2207 to rotate. The typical annular groove 2208 on the outer periphery of the rotating column 2207 drives the sliding rod 2209 to move up and down quickly and regularly. The sliding rod 2209 is fixedly connected to the sleeve 2210, so that the sleeve 2210 drives the material leveling seat 2201 to move up and down quickly and in a short stroke. The longitudinal material leveling chamfer plate 2204 of the material leveling seat 2201 spreads the colloid evenly in the vertical direction. At the same time, the material leveling seat 2201 moves horizontally following the paint bend 2121. The transverse material leveling chamfer plates 2203 on both sides inside the material leveling seat 2201 smooth it in the horizontal direction, improve the uniformity of the colloid coating, ensure the consistent thickness of the exterior wall decorative panel, and make the exterior wall decorative panel evenly and stably pasted on the exterior wall surface, reducing the possibility of it delaminating and falling off, and improving the speed and stability of the exterior wall decorative panel laying. Example
[0054] Please see Figure 1-13 The present invention provides a technical solution: a novel rapid installation device for exterior wall decorative panels. The present invention makes corresponding improvements to the technical problems mentioned in the background art.
[0055] As a further limitation of the present invention, the colloid scraping unit 3 includes an outer scraper 301 and a flipping module 302. The outer scraper 301 is fixedly connected to the outside of the material distribution seat 2201, and the flipping module 302 is installed on the upper part of the material distribution seat 2201. The lower end of the outer scraper 301 is provided with a lower cutting blade 303, and the two sides of the outer scraper 301 are provided with side cutting blades 304. The flipping module 302 includes a steering gear 305, an intermediate gear 306, and a linkage gear 307. The steering gear 305 is fixedly connected to the outside of the upper end of the paint bend 2121. The upper end of the paint bend 2121 is rotatably connected to a rotary pipe joint 311. The intermediate gear 306 is internally fixedly connected to a shaft 308, and the shaft 308 is rotatably connected to the paint bend 2121. On the base 2118, a separation spring 309 is sleeved on the outside of the shaft 308. The separation spring 309 is located below the intermediate gear 306. The shaft 308 extends to the upper end of the paint base 2118 and a pressure plate 310 is fixedly connected to the upper end of the shaft 308. The pressure plate 310 is located below the guide frame 2111. The linkage gear 307 is connected to the upper shaft of the dual-shaft reducer 2206. Positioning holes 313 are symmetrically arranged on both sides of the paint bend 2121. An elastic positioning element 2178 is arranged on the outside of the positioning hole 313. The colloid scraping unit 3 is set to easily scrape off the excess colloid of the exterior wall decorative panel, repair the gap between the exterior wall decorative panels, achieve the effect of sealing the joint, and make the exterior wall decorative panel flat and beautiful overall.
[0056] The specific implementation of this embodiment is as follows: The outer scraper 301 is flipped and adjusted by the flipping module 302 to facilitate the scraping of excess adhesive on the outer side of the exterior wall decorative panel. The lower cutting edge 303 of the outer scraper 301 scrapes the excess adhesive at the edge of the gap downwards. The adhesive scraping unit 3 moves horizontally with the horizontal drive module 2101 and scrapes the excess adhesive at the gap horizontally with the side cutting edge 304 to remove the adhesive and beautify the gap. When the pressure plate 310 moves with the paint seat 2118 to below the guide frame 2111, the guide frame 2111 presses down on the pressure plate 310, causing the shaft 3 to... 08 downwards, while the intermediate gear 306 meshes with the steering gear 305 and the linkage gear 307. The linkage gear 307 is connected to the upper shaft of the dual-shaft reducer 2206, so the dual-shaft reducer 2206 drives the linkage gear 307, which in turn drives the steering gear 305 to rotate. The steering gear 305 causes the paint bending tube 2121, the uniform material seat 2201, and the outer scraper 301 to rotate, thereby causing the outer scraper 301 to scrape off the adhesive at multiple angles. The elastic positioning element 2178 rotates the paint bending tube 2121 for positioning, ensuring the stability of the paint and the adhesive during scraping.
[0057] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus.
[0058] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A new type of fast laying device for exterior wall decorative plate, comprising a main body mechanism (1), characterized in that: The main body mechanism (1) comprises a plate conveyor (11), a multidirectional adjusting telescopic arm (12) is rotationally connected to the upper portion of the plate conveyor (11), and a laying mechanism (2) is movably connected to the front end of the multidirectional adjusting telescopic arm (12); The laying mechanism (2) comprises a plate clamping unit (20), the plate clamping unit (20) is installed at the front end of the multidirectional adjusting telescopic arm (12), the plate clamping unit (20) is used for clamping the outer wall decorative plate, and the plate clamping unit (20) comprises a driving seat (2002), the driving seat (2002) is rotationally connected to the front end of the multidirectional adjusting telescopic arm (12), two side clamping plates (2001) are slidably connected to the inner lower end of the driving seat (2002), a threaded rod (2003) is rotationally connected to the inner portion of the driving seat (2002), one end of the threaded rod (2003) is provided with a servo motor (2004) fixedly connected to the side wall of the driving seat (2002), two symmetrical sliding blocks (2005) are threadedly connected to the outer portion of the threaded rod (2003), the two sliding blocks (2005) are fixedly connected to the upper ends of the two side clamping plates (2001), respectively, and a pushing assembly (2006) is movably connected to the inner side of one end of the side clamping plate (2001) close to the connecting seat (2106); The laying mechanism (2) further comprises a colloid coating unit (21), the colloid coating unit (21) is arranged on the upper outer side of the plate clamping unit (20), the colloid coating unit (21) is used for quickly coating the outer wall decorative plate, and the colloid coating unit (21) comprises an automatic reversing horizontal driving module (2101), an up-down moving adjusting module (2110) and a coating module (2120), the horizontal driving module (2101) is fixedly connected to the upper portion of the driving seat (2002), the up-down moving adjusting module (2110) is movably connected to the inner front end of the horizontal driving module (2101), and the coating module (2120) is movably installed at the lower end of the up-down moving adjusting module (2110); the horizontal driving module (2101) comprises a supporting seat (2102), the supporting seat (2102) is movably connected to the front end of the multidirectional adjusting telescopic arm (12), a reversing lead screw (2103) is rotationally connected to the inner portion of the supporting seat (2102), a guide seat (2104) is threadedly connected to the outer portion of the reversing lead screw (2103), compression springs (2105) are arranged on the two sides of the guide seat (2104), respectively, when the colloid coating unit (21) moves to the end portion of the reversing lead screw (2103), the supporting seat (2102) is movably connected with the compression springs (2105), the compression springs (2105) are movably connected with the reversing lead screw (2103), the guide seat (2104) is movably connected with the up-down moving adjusting module (2110) in the front, the driving seat (2002) is fixedly connected with the bottom of the supporting seat (2102), the back of the supporting seat (2102) is provided with the connecting seat (2106), the plate conveyor (11) is assembled and connected with the supporting seat (2102) through the connecting seat (2106), and the horizontal driving module (2101) further comprises a reversing assembly (2107). The commutation assembly (2107) includes a commutation box (2171) and a positioning box (2172). The commutation box (2171) and the positioning box (2172) are respectively installed at both ends of the support base (2102). The commutation screw (2103) passes through the interior of the commutation box (2171) and the positioning box (2172). A drive motor (2173) is installed inside the commutation box (2171). The output end of the drive motor (2173) is fixedly connected to a drive gear (2174). A bearing rod is fixedly connected to the inner side of the commutation box (2171) of the drive motor (2173). A driven gear (2175) is rotatably connected to one end of the outer side of the bearing rod. The drive gear (2174) meshes with the driven gear (2175). 74) The diameter is smaller than that of the driven gear (2175). The thickness of the driving gear (2174) is twice the thickness of the driven gear (2175). The inner sides of the driving gear (2174) and the driven gear (2175) are respectively provided with a large gear (2176) and a small gear (2177). The large gear (2176) and the small gear (2177) are both fixedly connected to one end of the reversing screw (2103). There is a gap between the large gear (2176) and the small gear (2177) that is not less than the thickness of the small gear (2177). The positioning box (2172) is provided with two sets of elastic positioning elements (2178). The reversing screw (2103) is provided with an annular positioning groove (2179) near the elastic positioning elements (2178). The laying mechanism (2) also includes an adhesive spreading unit (22), which is located on the lower outer side of the adhesive coating unit (21). The adhesive spreading unit (22) works in conjunction with the adhesive coating unit (21) to spread the adhesive coated on the surface of the exterior wall decorative panel. An adhesive scraping unit (3) is provided on the outside of the adhesive spreading unit (22). The adhesive scraping unit (3) is used in conjunction with the adhesive spreading unit (22) to scrape off excess adhesive from the outer edge of the exterior wall decorative panel.
2. The device for fast laying of new facade cladding panels according to claim 1, characterized in that: The launch assembly (2006) includes a folding frame (2007) and an electric push rod (2008). The two ends of the folding frame (2007) are movably connected to the inner sides of two side clamps (2001), respectively. The electric push rod (2008) is installed inside the rotating shaft of the folding frame (2007), and a push plate (2009) is fixedly connected to one end of the inner side of the electric push rod (2008).
3. The device for fast laying of new facade cladding panels according to claim 1, characterized in that: The up-and-down adjustment module (2110) includes a guide frame (2111), which is fixedly connected to the front of the guide seat (2104). The guide frame (2111) is U-shaped, and its inner side is fixedly connected to the front of the guide seat (2104). Two double-sided toothed plates (2112) are provided on the inner side of the guide frame (2111). A cross link (2113) is movably connected to the inner side of the two double-sided toothed plates (2112). A support spring (2114) is fixedly connected between the top of the cross link (2113) and the double-sided toothed plate (2112). Toothed grooves are provided on the inner sides of both ends of the guide frame (2111). The outer toothed surface of the double-sided toothed plate (2112) engages with the toothed groove. The double-sided toothed plate (2112) has two bevel gear transmission groups (2115) on its inner side. The front end of the bevel gear transmission group (2115) is connected to a longitudinal gear (2116) through a pipe. There is a gap between the inner tooth surface of the double-sided toothed plate (2112) and the longitudinal gear (2116). The inner side of the two bevel gear transmission groups (2115) is jointly equipped with a dual-shaft reducer (2117). The rear end of the dual-shaft reducer (2117) is fixedly connected to the inside of the guide seat (2104). The lower end of the double-sided toothed plate (2112) is movably connected to a paint seat (2118). The lower ends of the two double-sided toothed plates (2112) are slidably connected to the two inner sides of the paint seat (2118).
4. The novel device for quickly laying the outer wall decoration plate of claim 1, characterized in that: The elastic positioning component (2178) includes a cylindrical slide groove (2190), which is opened inside the positioning box (2172). A return spring (2191) is sleeved inside the cylindrical slide groove (2190). A ball (2192) is provided at one end of the inner side of the return spring (2191). An annular positioning groove (2179) is located near one end of the cylindrical slide groove (2190). The return spring (2191) pushes the ball (2192) into the corresponding annular positioning groove (2179).
5. The novel device for quickly laying the outer wall decoration plate of claim 1, characterized in that: The adhesive application module (2120) includes a paint bend (2121), which is fixedly connected inside the paint base (2118) and extends to the bottom of the paint base (2118). The paint bend (2121) faces the inside of the paint base (2118). The upper end of the paint bend (2121) is connected to a telescopic tube (2122), and the other end of the telescopic tube (2122) is fixedly connected to a material conveying tube (2123). The material conveying tube (2123) is located inside the double-sided toothed plate (2112) and extends to the outside of its upper end.
6. The device for fast laying of new facade cladding panels according to claim 5, characterized in that: The colloid spreading unit (22) includes a spreading seat (2201), which is movably connected to the bottom of the paint seat (2118). A tube groove (2202) is provided inside the spreading seat (2201). The outlet of the paint bend (2121) is located inside the tube groove (2202). A transverse spreading chamfer plate (2203) is provided on both sides of the spreading seat (2201) located in the tube groove (2202). A longitudinal spreading chamfer plate (2204) is fixedly connected to the upper and lower sides of the spreading seat (2201). A short-stroke reciprocating module (2205) is fixedly connected to the upper part of the spreading seat (2201). Module (2205) includes a dual-shaft reducer II (2206), which is fixedly connected inside the paint holder (2118). A rotating column (2207) is installed at the lower end of the dual-shaft reducer II (2206). A typical annular groove (2208) is provided on the outer periphery of the rotating column (2207). A sliding rod (2209) is slidably connected to the side of the typical annular groove (2208). A sleeve (2210) is fixedly connected to the outside of the sliding rod (2209). The lower end of the sleeve (2210) is slidably connected to the upper part of the uniform material holder (2201). A gap is provided between the lower end of the rotating column (2207) and the inner side of the sleeve (2210).
7. The device for fast laying of new facade cladding panels according to claim 5, characterized in that: The colloid scraping unit (3) includes an outer scraper (301) and a flipping module (302). The outer scraper (301) is fixedly connected to the outside of the material distribution seat (2201). The flipping module (302) is installed on the upper part of the material distribution seat (2201). The lower end of the outer scraper (301) is provided with a lower cutting edge (303), and the two sides of the outer scraper (301) are provided with side cutting edges (304). The flipping module (302) includes a steering gear (305), an intermediate gear (306), and a linkage gear (307). The steering gear (305) is fixedly connected to the outside of the upper end of the paint bend (2121). The upper end of the paint bend (2121) is rotatably connected with a rotary pipe joint (311). The intermediate gear (306) An internal fixed shaft (308) is rotatably connected to a paint holder (2118). A separation spring (309) is sleeved on the outside of the shaft (308). The separation spring (309) is located below the intermediate gear (306). The shaft (308) extends to the upper end of the paint holder (2118), and a pressure plate (310) is fixedly connected to the upper end of the shaft (308). The pressure plate (310) is located below the guide frame (2111). The linkage gear (307) is connected to the upper shaft of the dual-shaft reducer (2206). Positioning holes (313) are symmetrically arranged on both sides of the paint bend (2121). An elastic positioning element (2178) is arranged on the outside of the positioning hole (313).
Citation Information
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