Gluing device for wood floor production
By designing a combined structure of clamping plate and coating roller, simultaneous gluing of two boards in wood flooring production is achieved, solving the problem of slow gluing speed of coating roller in existing technology and improving gluing efficiency and glue utilization.
Patent Information
- Application Number
- CN202511168420.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing wood flooring production, the coating rollers of the gluing equipment can only coat one side of a board, resulting in a slow coating speed and low efficiency.
A wood flooring production glue application device was designed, which adopts a combination structure of clamping plate and application roller. The application roller is driven by electric slide rail to slide between the boards to apply glue, so as to apply glue to two boards at the same time. It is equipped with glue storage tank and stirring blade to ensure glue uniformity and supply.
It improves the glue application efficiency in wood flooring production, ensures uniform glue application, increases the accuracy of board bonding and the practicality of the device, and reduces glue waste.
Smart Images

Figure CN120902072A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of wood flooring production technology, specifically to a wood flooring adhesive application device. Background Technology
[0002] There are many types of wood flooring, including composite wood flooring, which has a low rate of shrinkage and expansion, good dimensional stability, and retains the natural wood grain and comfortable feel of solid wood flooring. Composite wood flooring is made by gluing multiple boards together. In existing technologies, when bonding wood flooring, environmentally friendly formaldehyde-free adhesives are required. Currently, the traditional method of applying adhesive involves pressing the coating roller against the bottom roller to ensure full contact between the coating roller and the adhesive surface, applying adhesive to the top surface of the board. However, with this method, the coating roller can only coat one side of a board with each rotation, making the adhesive application process relatively slow.
[0003] Therefore, this invention proposes a wood flooring production adhesive application device to improve this problem. Summary of the Invention
[0004] The purpose of this application is to provide a wood flooring production adhesive applicator in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this application specifically adopts the following technical solution: A wood flooring production adhesive application apparatus, comprising: A frame with two fixing members spaced apart, the fixing members including a clamping plate slidably mounted on the frame for clamping the sheet metal, a drive plate slidably mounted on the frame, the sliding direction of the drive plate being perpendicular to the sliding direction of the clamping plate, and a hinge rod hinged to the drive plate, the free end of the hinge rod being hinged to the clamping plate. A coating component includes a drive rod slidably mounted on a first plate via an electric slide rail, a ring plate mounted on the drive rod, and an application roller rotatably mounted on the ring plate, the application roller being located between two fixed components.
[0006] Furthermore, the frame includes a first plate and a second plate, with two fasteners respectively mounted on the first plate and the second plate, and the second plate being slidably connected to the first plate via a hydraulic rod.
[0007] Furthermore, a fixed frame is mounted on the drive plate, a sliding rod is slidably mounted on the frame, a first connecting rod and a second connecting rod are hinged on the sliding rod, and a limiting plate for insertion into the fixed frame is slidably mounted on the frame. There are two limiting plates, one of which is hinged to the first connecting rod and the other is hinged to the second connecting rod.
[0008] Further, the frame is provided with a glue storage barrel, an outlet pipe is arranged on the glue storage barrel, the coating roller comprises a rotating shaft core connected with the ring plate, a cavity is arranged on the rotating shaft core, an opening is arranged on the cavity, a plurality of through holes are arranged on the rotating shaft core, and the rotating shaft core is wrapped with a rubber coating cloth.
[0009] Further, a stirring blade is rotatably arranged in the glue storage barrel, a stirring blade shaft penetrates the glue storage barrel and is arranged outside, a connecting gear is arranged on the stirring blade shaft, an installation rod is arranged on the ring plate, and a connecting rack engaged with the connecting gear is arranged on the installation rod.
[0010] Further, the second plate is provided with a frame plate, the inner frame length of the frame plate is consistent with the length of the plate, and the inner frame width of the frame plate is consistent with the width of the plate.
[0011] Further, a sliding hole slidably matched with the hydraulic rod is arranged on the second plate, a shielding plate is arranged on the telescopic end of the hydraulic rod, an extension plate penetrating the second plate is arranged on the frame plate, the extension plate is connected with the free end of the hydraulic rod, and the shielding plate and the extension plate are respectively arranged on the two sides of the second plate.
[0012] Further, a guide rod is arranged on the frame, a guide plate is arranged on the limiting plate, and a guide hole slidably matched with the guide rod is arranged on the guide plate.
[0013] Further, a rubber pad is arranged on the clamping plate, and the clamping plate is in contact with the plate through the rubber pad.
[0014] Further, a bearing frame is arranged on the frame, the glue storage barrel is arranged on the bearing frame, and a leakage hole is arranged on the side of the bearing frame away from the glue storage barrel.
[0015] The beneficial effects of the present application are as follows: When the present application is used, the clamping plate clamps the plate through the sliding drive plate, so that the plate can be stably located on the frame. After the plate is fixed, the drive rod is driven through the electric slide rail, and then the coating roller is driven to move between the two plates through the sliding of the drive rod and the ring plate. When the coating roller contacts the plate, the glue on the coating roller is evenly coated between the plates, so that the device can coat glue on two plates at a time when the device is working, thereby increasing the processing efficiency of the device. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a schematic diagram of the three-dimensional structure of the present application; Figure 2 is a schematic diagram of the structure of the first plate of the present application; Figure 3 is a schematic diagram of the structure of the frame of the present application; Figure 4is another schematic view of the first plate structure of the present application; Figure 5 is a schematic view of the second plate structure of the present application; Figure 6 is a schematic view of the coating member structure of the present application; Figure 7 is a schematic view of the fixing member structure of the present application; Figure 8 is another schematic view of the second plate structure of the present application; Figure 9 is an exploded view of part of the structure of the present application; Figure 10 is an exploded view of the guide plate and guide rod structure of the present application; Figure 11 is an exploded view of the glue storage barrel structure of the present application; Figure 12 is a perspective sectional view of the coating roller structure of the present application.
[0017] The reference signs: 1, rack; 101, first plate; 102, second plate; 103, hydraulic rod; 2, fixing member; 201, clamping plate; 202, driving plate; 203, hinged rod; 3, coating member; 301, electric slide rail; 302, driving rod; 303, ring plate; 304, coating roller; 3041, rotating shaft core; 3042, cavity; 3043, opening; 3044, through hole; 3045, rubber cloth; 4, fixing frame; 5, sliding rod; 6, first connecting rod; 7, second connecting rod; 8, limiting plate; 9, glue storage barrel; 901, stirring blade; 902, connecting gear; 903, mounting rod; 904, connecting rack; 10, outlet pipe; 11, frame plate; 12, sliding hole; 13, shielding plate; 14, extension plate; 15, guide rod; 16, guide plate; 17, guide hole; 18, rubber pad; 19, bearing frame; 20, leakage hole; 21, threaded rod; 22, jacking ring. DETAILED DESCRIPTION
[0018] To make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application.
[0019] As shown in Figure 1 - Figure 12 The present application proposes a wood floor production glue coating device in some embodiments, which comprises: A rack 1 is provided with two fixing members 2 thereon at intervals, and the fixing members 2 have a gap therebetween, so that the board materials can also have a gap therebetween after the fixing members 2 fix the board materials, the fixing member 2 comprises a clamping plate 201 slidably mounted on the rack 1, and a driving plate 202 is arranged on the clamping plate 201 and connected with the clamping plate 201 through a hinged rod 203, and the hinged rod 203 is arranged to be capable of being driven by a hydraulic rod 103 to drive the clamping plate 201 to slide on the rack 1. Figure 1For the main view, the clamping plate 201 slides along the horizontal direction, one fixed part 2 contains two clamping plates 201, in use, the plate is placed between the two clamping plates 201, the clamping plate 201 is close to each other, and the plate is clamped, the clamping plate 201 is used for clamping the plate, the rack 1 is slidably installed with the driving plate 202, the sliding direction of the driving plate 202 is perpendicular to the sliding direction of the clamping plate 201, the driving plate 202 is hinged with the hinge rod 203, the free end of the hinge rod 203 is hinged with the clamping plate 201, so that Figure 1 For the main view, the driving plate 202 is slidably installed on the rack 1 along the vertical direction, when the plate is installed, the plate is placed between the clamping plates 201, the driving plate 202 is slid by pulling, when the driving plate 202 slides, the hinge rod 203 is pulled, the clamping plate 201 is pulled by the hinge rod 203, the clamping plate 201 is forced to be close to each other, the plate is clamped, the stability of the plate during the glue coating is increased; The coating part 3 comprises a driving rod 302 slidably installed on the first plate 101 through the electric slide rail 301, the driving rod 302 is installed with a ring plate 303, the ring plate 303 is rotatably installed with a coating roller 304, the coating roller 304 is located between the two fixed parts 2, before use, the coating roller 304 is attached with glue on the outer circumferential side, the electric slide rail 301 is prior art, comprising track and slide block and other components, the driving rod 302 is installed on the slide block, when the plate is installed, the electric slide rail 301 is started, so that the driving rod 302 can drive the ring plate 303 and the coating roller 304 to reciprocally slide on the rack 1, when the coating roller 304 contacts the plate, the coating roller 304 is rotated by friction, so that the glue attached to the outside of the coating roller 304 can be uniformly attached to the plate, so that the two plates on the fixed part 2 are coated with glue on the side facing each other, so that the device can simultaneously coat the two plates, increasing the coating efficiency of the device; Wherein, when the plate is fed and discharged, the plate can be clamped and placed by the mechanical hand, and the driving plate 202 can be slid by the mechanical hand, increasing the processing efficiency of the device; Compared with the prior art, in use, the clamping plate 201 clamps the plate by sliding the driving plate 202, so that the plate can be relatively stably located on the rack 1, when the plate is fixed, the driving rod 302 is driven by the electric slide rail 301, and then the coating roller 304 is driven to move between the two plates by the sliding of the driving rod 302 and the ring plate 303, when the coating roller 304 contacts the plate, the coating roller 304 uniformly coats the glue on the plate, so that the device can coat the glue on the two plates at one time when working, increasing the processing efficiency of the device.
[0020] AsFigure 1 As shown in the drawings, part of the structure on the rack 1 is disclosed, in some embodiments, the rack 1 comprises a first plate 101 and a second plate 102, two fixing members 2 are respectively installed on the first plate 101 and the second plate 102, the second plate 102 is slidably connected with the first plate 101 through a hydraulic rod 103, the second plate 102 is connected with the free end of the hydraulic rod 103, the rack 1 further comprises a rack body, the first plate 101 is fixedly installed on the rack body of the rack 1, the length of the second plate 102 is less than the length of the first plate 101, the length of the electric slide rail 301 is greater than the length of the plate, so that when the device is idle, the electric slide rail 301 drives the coating roller 304 to be located at the starting position, so that the projection of the coating roller 304 on the rack 1 is located outside the second plate 102, after the device coats the glue on the plate, the electric slide rail 301 stops working, so that the coating roller 304 moves to the position where the first plate 101 does not coincide with the second plate 102, and does not block the second plate 102, at this time, the second plate 102 is driven by the hydraulic rod 103 to approach the first plate 101, so that the plate located on the second plate 102 approaches the plate located on the first plate 101, and the two plates are laminated, so that the device can also laminate the plate after coating the glue on the plate, during the process, since the fixing member 2 clamps and fixes the plate, therefore, the position between the plates is also positioned by the fixing member 2 when laminating, which increases the accuracy of the plate lamination; When the device is used, not only can the plate be coated with glue, but also the plate can be laminated, thereby increasing the practicability of the device.
[0021] As shown in the drawings, Figure 3 and Figure 10 As shown in the drawings, part of the structure on the rack 1 is disclosed, in some embodiments, the rack 1 comprises a first plate 101 and a second plate 102, two fixing members 2 are respectively installed on the first plate 101 and the second plate 102, the second plate 102 is slidably connected with the first plate 101 through a hydraulic rod 103, the second plate 102 is connected with the free end of the hydraulic rod 103, the rack 1 further comprises a rack body, the first plate 101 is fixedly installed on the rack body of the rack 1, the length of the second plate 102 is less than the length of the first plate 101, the length of the electric slide rail 301 is greater than the length of the plate, so that when the device is idle, the electric slide rail 301 drives the coating roller 304 to be located at the starting position, so that the projection of the coating roller 304 on the rack 1 is located outside the second plate 102, after the device coats the glue on the plate, the electric slide rail 301 stops working, so that the coating roller 304 moves to the position where the first plate 101 does not coincide with the second plate 102, and does not block the second plate 102, at this time, the second plate 102 is driven by the hydraulic rod 103 to approach the first plate 101, so that the plate located on the second plate 102 approaches the plate located on the first plate 101, and the two plates are laminated, so that the device can also laminate the plate after coating the glue on the plate, during the process, since the fixing member 2 clamps and fixes the plate, therefore, the position between the plates is also positioned by the fixing member 2 when laminating, which increases the accuracy of the plate lamination; Figure 1 For the front view, the slide rod 5 can only slide on the rack 1 in the vertical direction; The rack 1 slidably installs a limiting plate 8 for being inserted into the fixed frame 4, the limiting plate 8 has two numbers, one of the limiting plates 8 is hinged with the first connecting rod 6, and the other limiting plate 8 is hinged with the second connecting rod 7, so that Figure 1For the main view, the limiting plate 8 is slidably mounted on the frame 1 in the horizontal direction, a motor is mounted on the frame 1, a threaded rod 21 is mounted on the output shaft of the motor, a top ring 22 is threadedly sleeved on the threaded rod 21, the top ring 22 is connected with the sliding rod 5, so that the sliding rod 5 can also limit the top ring 22, so that the top ring 22 cannot rotate with the threaded rod 21, ensuring that the top ring 22 can be smoothly driven by the threaded rod 21 and can reciprocate in the vertical direction on the frame 1 along with the rotation of the threaded rod 21; When the device is in use, after the plate is installed, the threaded rod 21 is rotated by the motor, so that the top ring 22 pushes the sliding rod 5, and then the sliding rod 5 pushes the first connecting rod 6 and the second connecting rod 7, so that the limiting plate 8 is forced to move away from each other, so that the limiting plate 8 can be inserted into the fixed frame 4, and then the sliding of the driving plate 202 is limited by the fixed frame 4, increasing the stability of the fixed part 2 when clamping the plate in use; Wherein, the length of the limiting plate 8 is greater than the thickness of the fixed frame 4, so that when the hydraulic rod 103 drives the second plate 102 to move towards the first plate 101, the fixed frame 4 has enough sliding distance on the limiting plate 8 to meet the movement of the second plate 102, increasing the feasibility of the device.
[0022] As shown in Figure 2 and Figure 12 It is shown that part of the structure on the frame 1 is disclosed, in some embodiments, a glue storage barrel 9 is mounted on the frame 1, which is used to store glue, and an outlet pipe 10 is provided on the glue storage barrel 9, an electromagnetic valve is mounted on the outlet pipe 10, the outlet pipe 10 is opened or closed by electric control, the coating roller 304 includes a rotating shaft core 3041 rotatably connected with the ring plate 303, a cavity 3042 is provided on the rotating shaft core 3041, an opening 3043 facing the outlet pipe 10 is provided on the cavity 3042, a plurality of through holes 3044 are provided on the rotating shaft core 3041, and a glue coating cloth 3045 is wrapped around the rotating shaft core 3041, the glue coating cloth 3045 is cloth, when the electric sliding rail 301 drives the coating roller 304 to move out of position with the second plate 102, the opening 3043 is aligned with the outlet pipe 10, at this time the electromagnetic valve makes the outlet pipe 10 open, the glue in the glue storage barrel 9 is affected by gravity and enters the cavity 3042, and the glue in the cavity 3042 contacts the glue coating cloth 3045 through the through holes 3044, the glue coating cloth 3045 is cloth, and the cloth has a plurality of gaps, so that the glue can contact the plate through the glue coating cloth 3045, and then the plate is coated with glue, so that the device can supplement the glue on the coating roller 304 when in use, increasing the practicability of the device; The through hole 3044 in the figure is enlarged for display. In actual use, the hole diameter of the through hole 3044 is small, so that the amount of glue overflow is reduced, the possibility of glue waste during use is reduced, and the possibility of insufficient glue in the cavity 3042 for one round of the coating roller 304 is reduced, thereby increasing the feasibility of the device. The length of the electric slide rail 301 is fixed, one end is set as the movement end, and the other end is set as the feeding end. When the coating roller 304 moves to the movement end, the coating roller 304 contacts the end of the plate far from the glue storage barrel 9. When the coating roller 304 moves to the feeding end, the coating roller 304 is at the maximum limit in the direction of the feeding end on the electric slide rail 301. At this time, the coating roller 304 cannot continue to move in the direction of the feeding end, so that the opening 3043 can be aligned with the outlet pipe 10, thereby increasing the feasibility of the device.
[0023] As shown in Figure 11 In some embodiments, the glue storage barrel 9 is rotatably installed with stirring blades 901. In use, the stirring blades 901 are rotated to stir the glue, thereby reducing the possibility of glue clumping during storage and increasing the practicality of the device. The stirring blade 901 shaft penetrates the glue storage barrel 9 and is located outside. The stirring blade 901 shaft is installed with a connecting gear 902. The ring plate 303 is installed with a mounting rod 903, and the mounting rod 903 is installed with a connecting rack 904 engaged with the connecting gear 902. Since the glue storage barrel 9 is fixedly installed on the rack 1, and the ring plate 303 needs to move with the coating roller 304 in use, the relative movement between the connecting gear 902 on the glue storage barrel 9 and the connecting rack 904 on the mounting rod 903 is enabled. When the coating roller 304 coats the glue on the plate, the connecting rack 904 can slide with the coating roller 304, thereby driving the connecting gear 902 to rotate and drive the stirring blades 901 to rotate to stir the glue, thereby increasing the practicality of the device. The glue storage barrel 9 is installed with a plate body, as shown in Figure 11As shown, the plate body is provided with a groove, the connecting rack 904 is slidingly installed in the groove, and the inner wall of the groove limits the side wall of the connecting rack 904, so that the connecting rack 904 can only slide in a straight line. The storage glue barrel 9 is installed with a sealing bearing at the hole penetrated by the shaft of the stirring blade 901, and the stirring blade 901 is rotatably connected to the storage glue barrel 9 through the sealing bearing, which limits the sliding of the stirring blade 901 in the axial direction. The stirring blade 901 can only rotate in the storage glue barrel 9. In use, the ring plate 303 is directly connected with the driving rod 302, so that when the driving rod 302 is driven by the electric slide rail 301, the two only make linear reciprocating motion on the electric slide rail 301, and the entire coating part 3 rotates with the mopping roller 304. Therefore, the device will not cause the connecting rack 904 and the connecting gear 902 to be out of position during use, thereby increasing the feasibility of the device.
[0024] As Figure 5 shown, the structure on the second plate 102 is disclosed. In some embodiments, the frame plate 11 is installed on the second plate 102, the inner frame length of the frame plate 11 is greater than or equal to the length of the plate material, the inner frame width of the frame plate 11 is greater than or equal to the width of the plate material, and the gap between the inner wall of the frame plate 11 and the plate material is less than or equal to 0.5 mm. When the frame plate 11 passes through the joint of the plate material, the thickness of the glue overflowed at the joint of the plate material is less than or equal to 0.5 mm, so as to meet the critical value of glue overflow. The inner frame length of the frame plate 11 is consistent with the length of the plate material, and the inner frame width of the frame plate 11 is consistent with the width of the plate material. When the plate materials are attached to each other, the glue between them will inevitably overflow. When the second plate 102 is close to the first plate 101 so that the plate materials are attached to each other, the frame plate 11 is located on the side of the joint of the plate materials close to the first plate 101. At this time, the limiting plate 8 is removed from the limiting of the fixed frame 4 by rotating the threaded rod 21. First, the fixing part 2 on the second plate 102 is removed. At this time, the second plate 102 is pushed away from the first plate 101 by the hydraulic rod 103. During the process, the frame plate 11 is also away from the first plate 101 along with the second plate 102. During the process, the frame plate 11 will pass through the joint between the plate materials. The overflowed glue at the joint of the plate materials is scraped off by the frame plate 11. The overflowed glue is scraped off in time, which reduces the possibility that the overflowed glue is difficult to remove after solidification, and increases the practicability of the device.
[0025] As Figure 4 , Figure 5 and Figure 8As shown, a portion of the structure of the second plate 102 and the hydraulic rod 103 is disclosed. In some embodiments, the second plate 102 has a sliding hole 12 that slides with the hydraulic rod 103. The telescopic end of the hydraulic rod 103 is inserted into the sliding hole 12, making it slidably connected to the sliding hole 12. A baffle plate 13 is installed on the telescopic end of the hydraulic rod 103. The baffle plate 13 is located on the side of the second plate 102 closer to the first plate 101. An extension plate 14 that penetrates the second plate 102 is installed on the frame plate 11. The extension plate 14 is connected to the free end of the hydraulic rod 103. The end of the hydraulic rod 103 is connected through the plate body, and the extension plate 14 is connected to the plate body. The baffle plate 13 and the extension plate 14 are located on opposite sides of the second plate 102. The extension plate 14 is L-shaped and is located on the side of the second plate 102 away from the first plate 101. In use, when the hydraulic rod 103 moves the second plate 102 closer to the first plate 101, The system first moves the frame plate 11 and the extension plate 14 to slide. When the frame plate 11 is pulled to a position close to the first plate 101, the extension plate 14 contacts the second plate 102. The extension plate 14 then pushes the second plate 102 closer to the first plate 101. At this time, the frame plate 11 is located at the joint of the plates, close to the first plate 101. When the hydraulic rod 103 pushes the second plate 102 away from the first plate 101, it first pushes the extension plate 14 and the frame plate 11 away from the first plate 101, causing the frame plate 11 to scrape off the excess glue. When the free end of the hydraulic rod 103 moves to the position where the baffle plate 13 contacts the second plate 102, it then pushes the second plate 102 away from the first plate 101. This ensures that when the second plate 102 and the first plate 101 approach each other, the frame plate 11 moves closer to the first plate 101 first. When the two need to separate, the frame plate 11 is also driven to scrape off the excess glue first, increasing the feasibility of the device.
[0026] like Figure 10 As shown, a portion of the structure on the frame 1 is disclosed. In some embodiments, a guide rod 15 is installed on the frame 1, and a guide plate 16 is installed on the limiting plate 8. The guide plate 16 has a guide hole 17 that slides with the guide rod 15. The guide rod 15 is slidably inserted into the guide hole 17. By inserting the guide rod 15 into the guide hole 17, the limiting plate 8 is slidably installed on the frame 1. The guide rod 15 is restricted by the inner wall of the guide hole 17, so that the limiting plate 8 can only slide along a straight line on the frame 1, thereby increasing the stability of the limiting plate 8 when sliding.
[0027] like Figure 7 As shown, the structure on the clamping plate 201 is disclosed. In some embodiments, a rubber pad 18 is installed on the clamping plate 201. The clamping plate 201 contacts the plate through the rubber pad 18. When the clamping plate 201 contacts the plate through the rubber pad 18, the friction between the clamping plate 201 and the plate is increased by the rubber pad 18 when clamping the plate, thereby increasing the connection strength of the clamping plate 201 and increasing the clamping effect of the device on the plate.
[0028] As Figure 9 shown, part of the structure on the rack 1 is disclosed, in some embodiments, the rack 1 is installed with a bearing frame 19, the glue storage barrel 9 is installed on the bearing frame 19, the bearing frame 19 is opened with a leakage hole 20 away from one side of the glue storage barrel 9, the bearing frame 19 is opened with a leakage hole 20 on one side of the bottom of the glue storage barrel 9, the bearing frame 19 can not only provide installation position for the glue storage barrel 9, and when the glue storage barrel 9 pours glue into the cavity 3042, there is inevitably glue residue at the outlet pipe 10 pipe orifice after pouring, at this time, the glue drops downward will fall to the outside of the device through the leakage hole 20, a barrel or other container can be set below the leakage hole 20 to collect, by setting the leakage hole 20, the possibility of glue falling into the electric slide rail 301 after falling on the device is reduced, the practicability of the device is increased. Among them, the diameter of the leakage hole 20 is greater than the diameter of the outlet pipe 10, so that when the glue drops, even if the flow guide structure is not set on the bearing frame 19, the glue can also drop smoothly into the leakage hole 20, the feasibility of the device is increased.
[0029] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A wood floor production glue applying device, characterized in that, The utility model relates to a board material coating device, including: Rack (1) is provided with two fixed parts (2) on interval, the fixed part (2) includes the clamping plate (201) slidingly installed on rack (1), and the clamping plate (201) is used for clamping board material, the slidingly installed drive plate (202) on rack (1), and the sliding direction of drive plate (202) is perpendicular to the sliding direction of clamping plate (201), and the drive plate (202) is hinged with the hinge rod (203), and the free end of hinge rod (203) is hinged with clamping plate (201), and rack (1) includes first plate (101) and second plate (102), and two fixed parts (2) are installed on first plate (101) and second plate (102) respectively, and the second plate (102) is slidingly connected with first plate (101) by hydraulic rod (103), and the frame plate (11) is installed on second plate (102), and the inner frame length of frame plate (11) is consistent with the length of board material, and the inner frame width of frame plate (11) is consistent with the width of board material; Coating part (3) includes the drive rod (302) slidingly installed on first plate (101) by electric slide rail (301), and the drive rod (302) is installed with ring plate (303), and the ring plate (303) is rotatably installed with smearing roller (304), and smearing roller (304) is located between two fixed parts (2).
2. The wood floor production gluing device according to claim 1, characterized in that, The drive plate (202) is installed with fixed frame (4), the rack (1) is slidingly installed with sliding rod (5), the sliding rod (5) is hinged with first connecting rod (6) and second connecting rod (7), the rack (1) is slidingly installed with the limiting plate (8) for being inserted in fixed frame (4), and the number of limiting plate (8) is two, wherein one limiting plate (8) is hinged with first connecting rod (6), and the other limiting plate (8) is hinged with second connecting rod (7).
3. The wood floor production gluing device according to claim 2, characterized in that, The rack (1) is installed with glue storage barrel (9), and the outlet pipe (10) is formed in the glue storage barrel (9), the smearing roller (304) includes the rotating shaft core (3041) rotatably connected with ring plate (303), the rotating shaft core (3041) is provided with cavity (3042), the cavity (3042) is provided with opening (3043), the rotating shaft core (3041) is provided with multiple through holes (3044), and the rotating shaft core (3041) is wrapped with glue coating cloth (3045).
4. The wood floor production gluing device according to claim 3, characterized in that, The stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), the stirring blade (901) is rotatably installed in the glue storage barrel (9), 5. The wood floor production gluing device according to claim 4, characterized in that, The second plate (102) is provided with a sliding hole (12) for sliding cooperation with a hydraulic rod (103), the telescopic end of the hydraulic rod (103) is provided with a shielding plate (13), the frame plate (11) is provided with an extension plate (14) penetrating through the second plate (102), the extension plate (14) is connected with the free end of the hydraulic rod (103), and the shielding plate (13) and the extension plate (14) are respectively located on the two sides of the second plate (102).
6. The wood floor production gluing device according to claim 5, characterized in that, The rack (1) is provided with a guide rod (15), the limiting plate (8) is provided with a guide plate (16), and the guide plate (16) is provided with a guide hole (17) for sliding cooperation with the guide rod (15).
7. The wood floor production gluing device according to claim 6, characterized in that, The clamping plate (201) is provided with a rubber pad (18), and the clamping plate (201) is in contact with the plate through the rubber pad (18).
8. The wood floor production gluing device according to claim 7, characterized in that, The rack (1) is provided with a bearing frame (19), the glue storage barrel (9) is arranged on the bearing frame (19), and the bearing frame (19) is provided with a leakage hole (20) away from the glue storage barrel (9).