Glue rolling equipment for wooden building template

By designing an adaptive gluing and deburring machine for wooden building formwork, the problems of wood size limitations and poor automated gluing effect were solved, enabling efficient gluing and drying of wood of various sizes, and improving the stability of the equipment and the processing quality of the formwork.

CN224157145UActive Publication Date: 2026-04-24WENAN COUNTY ZENGHAI WOOD IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENAN COUNTY ZENGHAI WOOD IND CO LTD
Filing Date
2025-05-19
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing wood formwork gluing equipment has significant limitations on wood size, poor adaptive gluing effect for multi-sized wood, and poor automated gluing processing.

Method used

A device was designed that includes a support frame, a shelf, a drying chamber, a glue-applying roller, a conveying roller, and a deburring mechanism. The conveying mechanism enables adaptive glue application and drying of the wood, while the deburring mechanism ensures uniform removal of burrs from the template edges. The use of large and small gears for transmission improves the stability of the device.

Benefits of technology

It enables adaptive gluing and drying of timber of various sizes, improves the operational stability of the equipment and the processing accuracy of the templates, and reduces template surface damage and equipment failure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glue rolling equipment, and provides wooden building template glue rolling equipment which comprises a support, the side face of the support is slidably connected with an object placing plate, the side face of the object placing plate is fixedly connected with a drying box, the side face of the support is fixedly connected with a side plate, the side face of a cylindrical sliding block is fixedly connected with a glue coating rolling shaft, and the side face of the cylindrical sliding block is fixedly connected with a glue coating roller. Supporting foot pads are fixedly connected to the bottoms of the supports, sliding blocks are slidably connected to the interiors of the sliding grooves, glue dividing rolling shafts are rotatably connected to the side faces of the sliding blocks, springs are fixedly connected to the tops of the sliding blocks, a conveying rolling shaft is rotatably connected to the slide slope of the drying box, and a small motor is fixedly connected to the side face of the conveying rolling shaft. The end, away from the small motor, of the conveying rolling shaft is rotationally connected to the side face of the drying box. According to the technical scheme, the stability of the equipment during operation is guaranteed, the transmission process is more stable, shaking and faults of the equipment are reduced, and the transmission efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of template glue rolling technology, specifically to a wooden building template glue rolling device. Background Technology

[0002] Wooden formwork gluing equipment is specifically designed to improve the efficiency and quality of formwork gluing. It uses high-precision rollers to evenly apply various types of glue, adapting to formwork of different thicknesses. Equipped with an intelligent control system, it precisely controls the amount of glue and the rolling speed, effectively reducing glue waste. With a compact and stable structure, it is easy to operate and maintain, and is widely used in construction formwork production, helping companies improve production capacity and efficiency.

[0003] According to a public announcement (Publication No.: CN221157387U), a roller bonding device includes: a frame and a conveyor belt horizontally mounted on the frame; a roller and two support plates are mounted above the conveyor belt; the two ends of the roller are rotatably mounted on the two support plates; both support plates are slidably connected to the frame; a rack is vertically mounted above each support plate; the lower end of each rack is fixedly connected to a corresponding support plate; an output shaft is horizontally mounted on one side of each rack; the central axes of the two output shafts are collinear; both output shafts are rotatably mounted on the frame; a reducer with two output ends is mounted between the two output shafts; the reducer is fixedly mounted on the frame; the adjacent ends of the two output shafts are fixedly connected to the two output ends; gears are fixed at the far ends of the two output shafts, and the two gears mesh with the two racks respectively.

[0004] However, the above applications lack drying treatment for the colloid and have significant limitations on the size of the wood, resulting in poor performance in adaptive gluing of wood of various sizes and poor automated gluing process. Utility Model Content

[0005] This utility model proposes a wood construction formwork gluing equipment, which solves the problems in related technologies such as large size restrictions on wood, poor adaptive gluing effect for wood of multiple sizes, and poor automated gluing processing.

[0006] According to one aspect, at least one embodiment of this disclosure provides a glue-applying device for wooden building formwork, comprising: a support frame, a shelf slidably connected to the side of the support frame, a drying chamber fixedly connected to the side of the shelf, a side plate fixedly connected to the side of the support frame, a cylindrical groove formed in the side plate, a cylindrical slider slidably connected inside the cylindrical groove, a glue-applying roller fixedly connected to the side of the cylindrical slider, a support foot pad fixedly connected to the bottom of the support frame, a groove formed inside the drying chamber, a slider slidably connected inside the groove, a glue-dispensing roller rotatably connected to the side of the slider, a spring fixedly connected to the top of the slider, the top of the spring fixedly connected to the inside of the drying chamber, a transmission roller rotatably connected to the slope of the drying chamber, a small motor fixedly connected to the side of the transmission roller, and the end of the transmission roller away from the small motor rotatably connected to the side of the drying chamber; and a transmission mechanism provided on the side of the support frame.

[0007] The transmission mechanism includes a motor, the side of which is fixedly connected to the side of a side plate. The output shaft of the motor passes through the side plate, and a rotating wheel is fixedly connected to the output shaft. A pulley is fixedly connected to the circumferential surface of the rotating wheel, and a belt is provided on the circumferential surface of the pulley. A second pulley is connected to the circumferential surface of the pulley via belt drive. A belt groove is provided on the side of the shelf. A shaft is fixedly connected to the side of the bracket, and a rotating wheel is rotatably connected to the side of the shaft. A second pulley is fixedly connected to the circumferential surface of the rotating wheel.

[0008] For example, in at least one embodiment of the present disclosure of a wood construction formwork gluing device, the following features are further provided: two shafts and side plates are provided, symmetrically arranged along the vertical central axis of the support; two sliders and springs are provided, symmetrically arranged along the vertical central axis of the drying chamber, ensuring even weight distribution and preventing swaying, tilting, or even tipping during operation due to center of gravity shift. Two chutes and sliders are provided, symmetrically arranged along the vertical central axis of the support; two belts and belt grooves are provided, symmetrically arranged along the vertical central axis of the support, ensuring synchronized movement or operation and improving overall operating efficiency and coordination. The interior of the chutes is located on the displacement trajectory of the sliders, and the circumferential surface of the gluing roller is located on the displacement trajectory of the belt, allowing the gluing roller to adapt to the size of the wood. The top surface of the belt is higher than the top surface of the shelf, preventing friction between the formwork and the shelf surface, reducing damage to the formwork surface, and also reducing resistance during transmission, making formwork transmission smoother.

[0009] According to another aspect, at least one embodiment of this disclosure also provides a problem of a glue-rolling device for wooden building formwork, including: a deburring mechanism is provided at one end of the rotating wheel two away from the shaft frame, the deburring mechanism includes a small gear, the side of the small gear is fixedly connected to the side of the rotating wheel two away from the shaft, a large gear is meshed on the side of the small gear, a stand is rotatably connected to the side of the large gear, the bottom of the stand is fixedly connected to the side of the support, a rotating shaft is fixedly connected to the side of the large gear, and a deburring roller is fixedly connected to the circumferential surface of the rotating shaft.

[0010] For example, in at least one embodiment of the present disclosure, a wooden building formwork gluing device further includes: two shaft frames symmetrically arranged along the vertical central axis of the second pulley; and two upright frames symmetrically arranged along the vertical central axis of the rotating shaft. This allows the deburring rollers to operate evenly on both sides of the formwork during deburring, ensuring consistent deburring effect on the formwork edges and improving the processing accuracy and quality of the formwork. The larger gear is wider than the smaller gear, increasing the contact area. This reduces the pressure per unit area during gear transmission, allowing it to withstand greater loads and reducing the likelihood of failure modes such as tooth surface wear and adhesion, thus improving the load-bearing capacity and stability of the gear system. The slider is located on the displacement trajectory of the spring. The circumferential surface of the dispensing roller is higher than the top surface of the placement plate. The circumferential surface of the transmission roller is higher than the slope of the drying box. The diameter of the roller groove opened at the slope of the drying box is larger than the diameter of the transmission roller, which makes it easy for the roller to be installed in the roller groove. The gap between the two plays a certain buffering role, absorbing some of the impact and vibration energy, reducing its impact on other parts of the equipment, thereby protecting the overall structure and performance of the equipment.

[0011] The working principle and beneficial effects of this utility model are as follows:

[0012] 1. In this utility model, the mutual cooperation of components such as pulley one, rotating wheel one and belt inside the transmission mechanism, the number of shaft frame and side plate, slide groove and slider, belt and belt groove are set to two and are symmetrical to each other along the vertical central axis of the support, which ensures the stability of the equipment during operation, makes the transmission process more stable, reduces the shaking and failure caused by structural asymmetry of the equipment, and improves the transmission efficiency.

[0013] 2. In this utility model, the deburring mechanism utilizes the cooperation of components such as the large gear, small gear, and deburring roller. The large gear is fixedly connected to the circumferential surface of the rotating shaft, which is connected to the deburring roller. When the rotating wheel rotates, the small gear drives the large gear to rotate, thereby causing the deburring roller to rotate. This process can deburr wooden building templates, effectively removing burrs from the template surface, improving the quality of the template, and reducing damage to the workpiece caused by burrs. Attached Figure Description

[0014] The preferred embodiments will be described below in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages and implementation methods of this utility model.

[0015] Figure 1 This is a three-dimensional appearance structure diagram of the present utility model;

[0016] Figure 2 This is a schematic diagram of the three-dimensional rear view structure of this utility model;

[0017] Figure 3 This is a three-dimensional appearance structural diagram of the first cross section of the present invention;

[0018] Figure 4 This is a three-dimensional external structural diagram of the transmission mechanism of this utility model;

[0019] Figure 5 is a three-dimensional appearance structure diagram of the deburring mechanism of this utility model.

[0020] In the diagram: 1. Bracket; 2. Shelf; 3. Drying oven; 4. Side panel; 5. Support foot pad; 6. Cylindrical slide; 7. Cylindrical slider; 8. Glue roller; 9. Slide; 10. Slider; 11. Spring; 12. Transfer roller; 13. Small motor; 14. Transfer mechanism; 141. Motor; 142. Belt pulley one; 143. Rotating wheel one; 144. Belt; 145. Belt pulley two; 146. Belt groove; 147. Shaft bracket; 148. Rotating wheel two; 15. Deburring mechanism; 151. Small gear; 152. Large gear; 153. Stand; 154. Rotating shaft; 155. Deburring roller; 16. Glue separating roller. Detailed Implementation

[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.

[0022] To keep the drawings concise, only the parts relevant to the utility model are shown schematically in each drawing; these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some drawings, only one of the components with the same structure or function is schematically shown, or only one is labeled. In this document, "a" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."

[0023] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0024] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0025] Example 1

[0026] like Figures 1-5 As shown, a wooden building template gluing device according to an embodiment of the present disclosure is illustrated, comprising: a support 1, a shelf 2 slidably connected to the side of the support 1, a drying box 3 fixedly connected to the side of the shelf 2, a side plate 4 fixedly connected to the side of the support 1, a cylindrical groove 6 formed in the side plate 4, a cylindrical slider 7 slidably connected inside the cylindrical groove 6, a glue-applying roller 8 fixedly connected to the side of the cylindrical slider 7, a support foot pad 5 fixedly connected to the bottom of the support 1, a groove 9 formed inside the drying box 3, a slider 10 slidably connected inside the groove 9, a glue-dispensing roller 16 rotatably connected to the side of the slider 10, a spring 11 fixedly connected to the top of the slider 10, the top of the spring 11 fixedly connected to the inside of the drying box 3, a transmission roller 12 rotatably connected to the slope of the drying box 3, a small motor 13 fixedly connected to the side of the transmission roller 12, the end of the transmission roller 12 away from the small motor 13 rotatably connected to the side of the drying box 3, and a transmission mechanism 14 provided on the side of the support 1.

[0027] The transmission mechanism 14 includes a motor 141, the side of which is fixedly connected to the side of the side plate 4. The output shaft of the motor 141 passes through the side plate 4. The output shaft of the motor 141 is fixedly connected to a rotating wheel 143. A pulley 142 is fixedly connected to the circumferential surface of the rotating wheel 143. A belt 144 is provided on the circumferential surface of the pulley 142. A pulley 145 is connected to the circumferential surface of the pulley 142 via the belt 144. A belt groove 146 is provided on the side of the shelf 2. A shaft frame 147 is fixedly connected to the side of the bracket 1. A rotating wheel 148 is rotatably connected to the side of the shaft frame 147. A pulley 145 is fixedly connected to the circumferential surface of the rotating wheel 148.

[0028] In some examples, the following configurations are also included: two shaft supports 147 and two side plates 4, symmetrically arranged along the vertical central axis of the support 1; two sliders 10 and two springs 11, symmetrically arranged along the vertical central axis of the drying chamber 3, which ensures even weight distribution and prevents swaying, tilting, or even tipping during operation due to a shift in the center of gravity. Two chutes 9 and two sliders 10, symmetrically arranged along the vertical central axis of the support 1; two belts 144 and two belt grooves 146, symmetrically arranged along the vertical central axis of the support 1, ensure synchronized movement or operation, and improve overall equipment efficiency and coordination. The interior of the chutes 9 lies on the displacement trajectory of the sliders 10, and the circumferential surface of the glue-applying rollers 8 lies on the displacement trajectory of the belts 144, allowing the glue-applying rollers 8 to adapt to the size of the wood. The top surface of the belts 144 is higher than the top surface of the shelf 2, preventing friction between the template and the shelf 2 surface, reducing damage to the template surface, and also reducing resistance during transmission, making template transmission smoother.

[0029] For example, as shown in the figure, the worker places the wooden building template on the shelf 2 and starts the motor 141 and the small motor 13. The start of the motor 141 drives the rotation of the rotating wheel 143, which in turn drives the rotation of the pulley 142. The rotation of the pulley 142 drives the rotation of the belt 144. Under the constraint of the belt groove 146, the belt 144 moves linearly. Under the action of friction, the belt 144 drives the wooden building template to move linearly on the shelf 2. The wooden building template passes through the glue-applying roller 8. With the cooperation of the cylindrical slide 6 and the cylindrical slider 7, the glue-applying roller 8 adapts to the size of the wooden building template. It is then transferred to the glue-dispensing roller 16. With the cooperation of the spring 11, the slider 10 and the slide 9, the wooden building template is automatically coated with glue. The glue is dried in the drying box 3 and finally transferred out under the action of the transfer roller 12.

[0030] Example 2

[0031] like Figures 1-5 As shown, it illustrates a wooden building formwork gluing device in another embodiment of this disclosure, which is largely the same as the technical solution of embodiment 1. Therefore, only the differences are described in detail, including: a deburring mechanism 15 is provided at one end of the rotating wheel 148 away from the shaft frame 147. The deburring mechanism 15 includes a small gear 151. The side of the small gear 151 is fixedly connected to the end of the rotating wheel 148 away from the shaft frame 147. A large gear 152 is meshed on the side of the small gear 151. A stand 153 is rotatably connected to the side of the large gear 152. The bottom of the stand 153 is fixedly connected to the side of the support 1. A rotating shaft 154 is fixedly connected to the side of the large gear 152. A deburring roller 155 is fixedly connected to the circumferential surface of the rotating shaft 154.

[0032] In some examples, the following configurations are also included: two shaft supports 147 are provided, symmetrically arranged along the vertical central axis of the pulley 145; two upright supports 153 are provided, symmetrically arranged along the vertical central axis of the shaft 154. This allows the deburring roller 155 to operate evenly on both sides of the template during deburring, ensuring consistent deburring effect on the template edges and thus improving the processing accuracy and quality of the template. The width of the large gear 152 is greater than that of the small gear 151, resulting in a larger contact area. This reduces the pressure per unit area during gear transmission, allowing it to withstand greater loads and reducing the likelihood of failure modes such as tooth surface wear and scuffing. This improves the load-bearing capacity and stability of the gear system. The slider 10 is located on the displacement trajectory of the spring 11. The circumferential surface of the dispensing roller 16 is higher than the top surface of the shelf 2, and the circumferential surface of the transmission roller 12 is higher than the slope of the drying box 3. The diameter of the roller groove opened at the slope of the drying box 3 is larger than the diameter of the transmission roller 12, which makes it easy for the transmission roller 12 to be installed in the roller groove. The gap between the two plays a certain buffering role, absorbing some of the impact and vibration energy, reducing its impact on other parts of the equipment, thereby protecting the overall structure and performance of the equipment.

[0033] For example, as shown in the figure, pulley 145 rotates under the action of pulley 142 via belt 144. The rotation of pulley 145 drives rotating wheel 148 to rotate, which in turn drives pinion 151 to rotate. This, in turn, drives gear 152, which meshes with pinion 151, to rotate. The rotation of gear 152 drives shaft 154 to rotate, thus rotating deburring roller 155 and achieving the deburring effect.

[0034] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A wood building form rolling equipment, characterized in that, The system includes a support frame (1), a shelf (2) slidably connected to the side of the support frame (1), a drying oven (3) fixedly connected to the side of the shelf (2), a side plate (4) fixedly connected to the side of the support frame (1), a cylindrical groove (6) formed in the side plate (4), a cylindrical slider (7) slidably connected inside the cylindrical groove (6), a glue-coated roller (8) fixedly connected to the side of the cylindrical slider (7), a support foot pad (5) fixedly connected to the bottom of the support frame (1), and a groove (9) formed inside the drying oven (3). A slider (10) is connected, and a glue-separating roller (16) is rotatably connected to the side of the slider (10). A spring (11) is fixedly connected to the top of the slider (10). The top of the spring (11) is fixedly connected to the inside of the drying box (3). A transmission roller (12) is rotatably connected to the slope of the drying box (3). A small motor (13) is fixedly connected to the side of the transmission roller (12). The end of the transmission roller (12) away from the small motor (13) is rotatably connected to the side of the drying box (3). A transmission mechanism (14) is provided on the side of the support (1). The transmission mechanism (14) includes a motor (141), the side of which is fixedly connected to the side of the side plate (4). The output shaft of the motor (141) passes through the side plate (4). The output shaft of the motor (141) is fixedly connected to a rotating wheel (143). A belt wheel (142) is fixedly connected to the circumferential surface of the rotating wheel (143). A belt (144) is provided on the circumferential surface of the belt wheel (142). A belt wheel (145) is connected to the circumferential surface of the belt wheel (142) via the belt (144). A belt groove (146) is provided on the side of the shelf (2). A shaft frame (147) is fixedly connected to the side of the bracket (1). A rotating wheel (148) is rotatably connected to the side of the shaft frame (147). A belt wheel (145) is fixedly connected to the circumferential surface of the rotating wheel (148).

2. The wooden building formwork gluing equipment according to claim 1, characterized in that, The number of the shaft bracket (147) and the side plate (4) are two, and they are symmetrical to each other along the vertical central axis of the support (1). The number of the slider (10) and the spring (11) are two, and they are symmetrical to each other along the vertical central axis of the drying box (3).

3. A wood building form rolling apparatus according to claim 2, wherein The number of the slide groove (9) and the slider (10) is two, and they are symmetrical to each other along the vertical central axis of the bracket (1). The number of the belt (144) and the belt groove (146) is two, and they are symmetrical to each other along the vertical central axis of the bracket (1).

4. A wood building form rolling apparatus according to claim 3, wherein The interior of the groove (9) is located on the displacement trajectory of the slider (10), and the circumferential surface of the glue-coating roller (8) is located on the displacement trajectory of the belt (144).

5. A wood building form rolling apparatus according to claim 4, wherein The top surface of the belt (144) is higher than the top surface of the shelf (2).

6. A wood building form rolling apparatus according to claim 5, wherein A deburring mechanism (15) is provided at the end of the rotating wheel (148) away from the shaft frame (147). The deburring mechanism (15) includes a small gear (151). The side of the small gear (151) is fixedly connected to the end of the rotating wheel (148) away from the shaft frame (147). A large gear (152) meshes with the side of the small gear (151). A stand (153) is rotatably connected to the side of the large gear (152). The bottom of the stand (153) is fixedly connected to the side of the bracket (1). A rotating shaft (154) is fixedly connected to the side of the large gear (152). A deburring roller (155) is fixedly connected to the circumferential surface of the rotating shaft (154).

7. A wood building form rolling apparatus according to claim 6, wherein The number of the shaft brackets (147) is two, and they are symmetrical to each other along the vertical central axis of the second pulley (145). The number of the uprights (153) is two, and they are symmetrical to each other along the vertical central axis of the rotating shaft (154).

8. A wood building form rolling apparatus according to claim 7, wherein The width of the large gear (152) is greater than that of the small gear (151).

9. A wood building form rolling apparatus according to claim 8, wherein The slider (10) is located on the displacement trajectory of the spring (11), and the circumferential surface of the glue-separating roller (16) is higher than the top surface of the shelf (2).

10. A wood building form rolling apparatus according to claim 9, wherein The circumferential surface of the transmission roller (12) is higher than the slope of the drying box (3), and the diameter of the roller groove opened at the slope of the drying box (3) is larger than the diameter of the transmission roller (12).

Citation Information

Patent Citations

  • Glue rolling equipment

    CN221157387U