Gluing device
By designing adjustable glue coating and pressing parts in the glue coating device, the frequent replacement problem caused by fixing the glue coating amount is solved, and flexible adjustment of glue coating amount and improvement of working efficiency is achieved.
Patent Information
- Application Number
- CN202421861922.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The amount of glue applied to existing glue coating devices is fixed and cannot be adjusted according to demand, resulting in staff changing the device frequently, affecting processing efficiency.
A glue coating device is designed, by providing adjustable glue coating parts and pressing parts on the shell, the distance between the glue coating parts and pressing parts is controlled by using the seventh driving part to achieve flexible adjustment of the glue coating amount.
It realizes convenient adjustment of glue application, meets different usage needs, and improves work efficiency and simplicity of operation.
Smart Images

Figure CN223197385U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of gluing, in particular to a gluing device. Background Art
[0002] The gluing device is mainly used to apply glue to the surface of the workpiece and to preliminarily fix the workpiece.
[0003] However, during the gluing process, the amount of glue applied needs to be increased or decreased according to actual needs. The glue application amount of existing coating devices is often fixed, and the range of glue application amount cannot be set according to demand. As a result, the staff can only constantly replace the gluing device according to demand, which cannot meet production needs and also affects processing efficiency.
[0004] Therefore, based on the above problems, it is necessary to improve the existing glue coating device to solve the above problems. Utility Model Content
[0005] In view of the problems existing in the above-mentioned prior art, the utility model provides a glue coating device, which is convenient for adjusting the glue coating amount to meet different usage requirements.
[0006] In order to solve the above technical problems, the technical solution of the utility model is:
[0007] A glue coating device, comprising:
[0008] a seventh driving member and a housing, wherein the upper and lower ends of the housing are opened, a gluing assembly is provided in the housing, and the seventh driving member and the gluing assembly are assembled;
[0009] The housing includes two side plates arranged opposite to each other, the side plates are provided with two connecting holes, and both ends of the side plates are respectively provided with a first support plate;
[0010] The gluing assembly includes a gluing part and a gluing part, and the gluing part and the gluing part are respectively rotatably connected to the connecting holes, wherein one of the connecting holes extends horizontally along the side plate to adjust the distance between the gluing part and the gluing part.
[0011] Preferably, the side panel is provided with a moving block, and the moving block can be assembled with the first support panel or the side panel.
[0012] Preferably, the seventh driving member is assembled with the glue coating member, and the moving block is assembled with the glue pressing member, or the seventh driving member is assembled with the glue pressing member, and the glue coating member is assembled with the moving block.
[0013] Preferably, the seventh driving member is connected to the gluing assembly via a coupling or the seventh driving member is connected to the gluing assembly via gears.
[0014] Preferably, one of the side panels is provided with a glue feeding portion.
[0015] Preferably, a second support plate is provided between the seventh driving member and the first support plate, so that the seventh driving member and the first support plate are assembled together.
[0016] Preferably, a guide plate is provided below the glue coating assembly, and the guide plate is assembled with the shell.
[0017] Preferably, the guide plate is arranged at an angle.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] It is convenient to adjust the amount of glue applied to meet different usage requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional diagram of a screw machine.
[0021] Figure 2 This is the rear view of the screw machine.
[0022] Figure 3 It is a side view of the screw machine.
[0023] Figure 4 It is a partial structural diagram of a screw machine.
[0024] Figure 5 It is another structural diagram of the screw machine.
[0025] Figure 6 It is a schematic diagram of the internal structure of the screw machine.
[0026] Figure 7 It is a three-dimensional view of the screw locking assembly.
[0027] Figure 8 It is a structural diagram of the transmission component in the screw locking component.
[0028] Figure 9 It is a structural diagram of the locking mouth body in the screw locking assembly.
[0029] Figure 10 It is a cross-sectional view of the locking mouth body in the screw locking assembly.
[0030] Figure 11 It is a three-dimensional diagram of the gluing device.
[0031] Figure 12 It is a top view of the gluing device.
[0032] Figure 13 It is a structural diagram of the side plate in the gluing device. DETAILED DESCRIPTION
[0033] The following is combined with Figure 1-13 , the specific implementation methods of the utility model are further described in detail to make the technical solution of the utility model easier to understand and grasp.
[0034] In this embodiment, it should be understood that the terms "middle", "upper", "lower", "top", "right", "end", "front", "back", "middle", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0035] In addition, in this specific embodiment, if the connection or fixing method between components is not specifically described, the connection or fixing method can be through bolt fixing or pin fixing, or pin shaft connection, etc. commonly used in the prior art, and therefore, it is not described in detail in this embodiment.
[0036] The following is combined with Figure 1-13 This application is described in further detail.
[0037] like Figure 1-6 As shown, a screw machine includes:
[0038] A machine 1 and a conveying device 2, the conveying device 2 cooperates with the machine 1, and the conveying device 2 includes a moving component 21 and two pushing components 22, the two pushing components 22 are respectively located at both ends of the machine 1, the moving component 21 is located above the pushing component 22, and can move back and forth along the distance direction between the two pushing components 22; at least one screw locking component 3 and at least one screw conveying component 4, the screw locking component 3 cooperates with the machine 1, and the screw conveying component 4 is assembled with the screw locking component 3 to convey screws to the screw locking component 3.
[0039] The machine 1 is provided with a glue box 11 and a funnel 12. The funnel 12 is used to provide glue and is connected to a regulating valve 13 via a delivery tube (not shown); and two object placement members 14 that cooperate with the pushing component 22. One end of the bottom of the placement member 14 is provided with a notch. The placement member 14 is used to place workpieces. Specifically, one placement member 14 is used to place small plates, and the other placement member 14 is used to place large plates. The notch facilitates the pushing component 22 to push the small and large plates out of the notch at the bottom of the placement member 14.
[0040] like Figure 1-6As shown, the moving assembly 21 includes a first connecting member 211, a first driving member 212, and a second driving member 213 assembled with the first connecting member 211. The second driving member 213 can drive the first driving member 212 to move back and forth in the horizontal direction. The first driving member 212 is assembled with at least one clamping assembly 23, and the first driving member 212 can drive the clamping assembly 23 to move back and forth in the vertical direction. The clamping assembly 23 is used to clamp the small plate. In this embodiment, the first driving member 212 is an electric cylinder, and the second driving member 213 is a planetary reducer.
[0041] like Figure 1-6 As shown, the moving assembly 21 also includes at least one first slide rail 214 and a rack 215. The first slide rail 214 is provided with at least one first slider 216 that cooperates with the first slide rail 214. The first connecting member 211 and the first slider 216 are assembled. The second driving member 213 is provided with a gear 2131 that cooperates with the rack 215 to drive the first driving member 212 to reciprocate in the horizontal direction. The arrangement of the slide rail and the slider makes the movement smoother.
[0042] A second connecting member 217 is assembled with the first driving member 212. The clamping assembly 23 is driven by the first driving member 212 to move back and forth in the vertical direction through the second connecting member 217. At least one second slide rail 218 is provided between the second connecting member 217 and the first connecting member 211. At least one second slider 219 is provided on the second slide rail 218. The arrangement of the slide rail and the slider makes the movement smoother.
[0043] like Figure 1-6 As shown, the pushing assembly 22 includes a fourth driving member 221 and a pushing plate 222 that cooperates with the fourth driving member 221;
[0044] At least one third slide rail 223 is provided with at least one third slider 224 on the third slide rail 223. The push plate 222 and the third slider 224 are combined. The pushing component 22 is used to push the plate on the storage part 14 out, and then the moving component 21 located above the pushing component 22 clamps the plate through the clamping component 23 to realize horizontal movement of the plate.
[0045] like Figure 1-6 As shown, a first positioning assembly 5 and a second positioning assembly 6 are provided on the machine 1. The first positioning assembly 5 includes a third driving member 51 and at least one first limiting member 52 provided on the machine 1. The third driving member 51 is a cylinder. The third driving member 51 can limit the small plate according to the size of the small plate, and cooperate with the first limiting member 52 to prevent the small plate from excessive displacement, thereby avoiding the situation where the clamping assembly 23 cannot clamp the small plate.
[0046] The second positioning assembly 6 includes two tenth driving members 61 and two second limiting members 62. The tenth driving member 61 is provided with a third limiting member 63 for fixing the plate; an eleventh driving member 64 is combined with one of the tenth driving members 61 to drive the tenth driving member 61 to move back and forth in the horizontal direction. When unloading, the tenth driving member 61 can be pushed away to avoid the subsequent eighth driving member 65 being blocked by the plate when moving downward. The eleventh driving member 64 pushes the tenth driving member 61 to move horizontally and can also be used to adapt to plates of different sizes and lengths, thereby improving the practicality of the product. In this embodiment, the tenth driving member and the eleventh driving member are cylinders.
[0047] An eighth driving member 65, which is an electric cylinder, is provided with a support plate 651 on the eighth driving member 65. The eighth driving member 65 can drive the support plate 651 to move up and down. A first electric guide rail 66 and a second electric guide rail 67 are respectively provided at both ends of the support plate 651. A tenth driving member 61 and a second limiting member 62 are provided on the first electric guide rail 66, and another tenth driving member 61 and a second limiting member 62 are provided on the second electric guide rail 67.
[0048] A ninth driving member 68, which is an electric cylinder, is combined with the first electric guide rail 66 or the second electric guide rail 67 to drive the first electric guide rail 66 or the second electric guide rail 67 to move horizontally. In this embodiment, the ninth driving member 68 is combined with the second electric guide rail 67 to drive the second electric guide rail 67 to move horizontally, and can also further limit the plate according to the size of the plate; it also has the function of pushing the tenth driving member 61 away when unloading, to avoid the eighth driving member 65 being blocked by the plate when moving downward.
[0049] At least one fifth slide rail 69 is provided between the second electric guide rail 67 and the support plate 651 , and a fifth slider 60 is provided on the fifth slide rail 69 . The second electric guide rail 67 and the fifth slider 60 are combined to make the movement smoother through the setting of the slide rail and the slider.
[0050] By providing the conveying device 2, the user does not need to manually carry the plates one by one to work. He only needs to classify the plates by size and then place the plates of different sizes in the storage part 14 respectively. The moving component 21 and the pushing component 22 can transport the plates of different sizes, saving time and effort and improving work efficiency.
[0051] like Figure 1 and Figures 7 to 10As shown, the screw locking assembly 3 includes a fifth driving member 31, a sixth driving member 32, a transmission assembly 33 and a lock mouth body 34, the fifth driving member 31 is an electric cylinder, the sixth driving member 32 is a servo motor, the transmission assembly 33 is detachably arranged between the sixth driving member 32 and the lock mouth body 34, and the transmission assembly 33 can be bent. The fifth driving member 31 and the sixth driving member 32 are assembled through the first connecting block 35, and the fifth driving member 31 can drive the sixth driving member 32 to reciprocate in the vertical direction; by bending the transmission assembly 33 The arrangement is convenient for users to adjust, and the transmission component 33 can adapt to different distances between the screw holes of the plate according to usage requirements, so that even if the screw locking component 3 is not removed, the lock mouth body 34 can better adapt to the distances between different screw holes, which is convenient for operation; and the existing transmission component 33 has a fixed distance, which is very inconvenient to assemble. The present application bends the transmission component 33 to retain the existing working function, and the transmission component 33 can be bent. One end can be installed first and then the other end, which is very convenient for users to disassemble and assemble.
[0052] A first channel 341 and a second channel 342 are formed in the lock body 34 and are connected to each other. Two screw clamps 343 are provided on the lock body 34. The screw clamps 343 are movably mounted on the lock body 34. The first channel 341 is used to place a screw bit, and the second channel 342 is used to place a screw.
[0053] A third channel 3431 is formed in the two screw clamps 343, and the third channel 3431 is connected to the first channel 341. The inner diameter of the third channel 3431 is smaller than the inner diameter of the first channel 341. The setting of the third channel 3431 ensures that the screw can flow smoothly through the first channel 341; and the purpose of making the inner diameter of the third channel 3431 smaller than the inner diameter of the second channel 342 is to make the screw fall into the third channel 3431 more accurately, prevent the nail from getting stuck, improve the smoothness of the entire process, and enhance the user experience.
[0054] In order to better fix small and large plates, the screw locking assembly 3 in this embodiment can also be provided with a clamping assembly 23, so that the plate can be clamped during the screw locking process to prevent displacement, which can better achieve the fixation of large and small plates, or the clamping assembly 23 can directly press the plate without clamping.
[0055] like Figure 8As shown, the transmission assembly 33 includes at least one transmission shaft 331 and at least one mounting member 332 assembled with the transmission shaft 331; the mounting member 332 includes a first mounting portion 3321 and a second mounting portion 3322, a mounting block 3323 is provided between the first mounting portion 3321 and the second mounting portion 3322, and the first mounting portion 3321 and the second mounting portion 3322 are rotatably connected to the mounting block 3323 respectively;
[0056] In this embodiment, two transmission shafts 331 are provided, two mounting members 332 are provided, and a protrusion 3324 is provided on the side of each mounting block 3323. The first mounting portion 3321 and the second mounting portion 3322 are rotatably connected to the mounting block 3323 via the protrusion 3324; a screwdriver bit 333 is provided at one end of one transmission shaft 331 near the lock body 34, and the screwdriver bit 333 can be extended into the first channel 341. A guide tube 39 is provided on the surface of the screwdriver bit 333.
[0057] like Figure 7 As shown, a third connecting member 36 is assembled with the fifth driving member 31, and a fourth slide rail 37 is provided between the fifth driving member 31 and the third connecting member 36. The fourth slide rail 37 is assembled with the third connecting member 36, and at least one fourth slider 38 is provided on the fourth slide rail 37. Through the setting of the slide rail and the slider, the movement is smoother.
[0058] In this embodiment, two fourth sliders 38 are provided, which are respectively provided at both ends of the fourth slide rail 37, and one of the fourth sliders 38 is combined with the first connecting block 35, and the other fourth slider 38 is combined with a second connecting block 381. The fifth driving member 31 is combined with the first connecting block 35 and the second connecting block 381 through the screw rod 311.
[0059] The conduit 39 is provided with at least one third connection block 391 that matches the second connection block 381 , and the third connection block 391 is movable relative to the second connection block 381 , so that the user can adjust the position according to the needs of use.
[0060] like Figure 11-13 As shown, it also includes a gluing device 7, which includes a seventh driving member 71 and a shell 72. The seventh driving member 71 is a speed-regulating motor. The upper and lower ends of the shell 72 are opened to facilitate the subsequent entry and outflow of glue. A gluing component 73 is provided in the shell 72, and the seventh driving member 71 and the gluing component 73 are combined.
[0061] like Figure 11-13 As shown, the seventh driving member 71 can be connected to the glue coating assembly 73 through a coupling or the seventh driving member 71 and the glue coating assembly 73 can be connected through a gear 2131. In this embodiment, the seventh driving member 71 is connected to the glue coating assembly 73 through a coupling.
[0062] The housing 72 includes two side plates 721 arranged opposite to each other. The side plates 721 are provided with two connecting holes 722. A first support plate 723 is provided at each end of the side plates 721. The glue-spreading assembly 73 includes a glue-spreading member 731 and a glue-pressing member 732. The glue-spreading member 731 and the glue-pressing member 732 are rotatably connected to the connecting holes 722 respectively. One of the connecting holes 722 extends horizontally along the side plates 721 to adjust the distance between the glue-spreading member 731 and the glue-pressing member 732 to control the output of the glue-spreading member 731. Glue amount; one side plate 721 is provided with a glue feeding portion 7211, and the side plate 721 is provided with a movable block 74. The movable block 74 can be assembled with the first support plate 723 or the side plate 721. In this embodiment, the seventh driving member 71 is assembled with the glue coating member 731, the movable block 74 is assembled with the glue pressing member 732, and the movable block 74 is assembled with the first support plate 723. In other embodiments, the seventh driving member 71 is assembled with the glue pressing member 732, and the glue coating member 731 is assembled with the movable block 74. The glue coating device 7 in the present application is simple to control the glue output amount without replacing the entire device. It only needs to adjust the horizontal distance of the movable block 74, that is, adjust the distance between the glue coating member 731 and the glue pressing member 732, to control the glue output amount of the glue coating member 731. The operation is simple and the work efficiency is high.
[0063] A second support plate 724 is provided between the seventh driving member 71 and the first support plate 723 to facilitate assembly of the seventh driving member 71 and the first support plate 723 , thereby facilitating subsequent assembly of the entire member with the machine 1 and subsequent maintenance and disassembly of the seventh driving member 71 .
[0064] A guide plate 75 is provided below the glue coating assembly 73. The guide plate 75 is assembled with the housing 72 and is tilted. This tilt facilitates the subsequent outflow of glue, improves the flow stability, and ensures that the glue flows accurately into the glue box 11. The delivery pipe is connected to the glue inlet 7211 to fix the delivery pipe. The delivery pipe is equipped with a regulating valve 13 to control the flow rate of the glue. If there is too much glue in the glue box 11, it can be pulled out for disposal.
[0065] Compared with the manual assembly by existing workers, the screw machine of the present application can effectively reduce manufacturing costs and improve assembly work efficiency.
[0066] Principle description:
[0067] Glue is put into the funnel 12 , and then the regulating valve 13 is opened, and the glue flows from the delivery pipe to the glue coating component 73 .
[0068] Place the large and small plates into different placement pieces 14 respectively (the placement piece 14 located in the first positioning component 5 is used to place small plates, and the placement piece 14 located in the second positioning component 6 is used to place large plates). Then start the pushing component 22 located at the small plate. The pushing plate 222 pushes the small plate to move from the gap of the placement piece 14, and is then stopped by the first limiting piece 52.
[0069] The moving assembly 21 moves downward, fixes the small plate through the clamping assembly 23, and then moves horizontally toward the large plate. At this time, it passes through the gluing device 7 in the middle of the machine 1 to apply glue to the small plate.
[0070] The pushing assembly 22 located at the large plate is also started when the small plate is started, and the pushing plate 222 is used to push the large plate to move from the gap of the storage part 14. The large plate is supported by the second limit member 62, and then the small plate is placed on the large plate. The second positioning assembly 6 clamps the two large and small plates, and the first electric guide rail 66 and the second electric guide rail 67 respectively push the second positioning assembly 6 to move to the bottom of the screw locking assembly 3.
[0071] Because the screw locking assembly 3 can also be provided with a clamping assembly 23, the clamping assembly 23 can clamp or press, at this time the eighth driving member 65 will drive the entire support plate 651 to move downward, and separate the second positioning assembly 6 from the large and small plates, and the first electric guide rail 66 and the second electric guide rail 67 will drive the second positioning assembly 6 to move backward. After returning to the initial position, the eighth driving member 65 will drive the support plate 651 to move upward for the next plate transportation; at the same time, the screw locking assembly 3 will assemble the large and small plates.
[0072] After the screw locking assembly 3 has completed processing of the large and small plates, the first electric guide rail 66 and the second electric guide rail 67 will continue to drive the plates forward. At this time, the second positioning assembly 6 will push the processed large and small plates to the position of the plate discharge end.
[0073] The technical effects of this utility model are mainly reflected in the following aspects:
[0074] It is convenient to adjust the amount of glue applied to meet different usage requirements.
[0075] Of course, the above are only typical examples of the present invention. In addition, the present invention may have many other specific implementation methods. Any technical solution formed by equivalent replacement or equivalent transformation falls within the scope of protection required by the present invention.
Claims
1. A gluing device, characterized in that: include: A seventh driving member (71) and a housing (72), wherein the upper and lower ends of the housing (72) are opened, a glue coating component (73) is provided in the housing (72), and the seventh driving member (71) and the glue coating component (73) are assembled; The housing (72) includes two side plates (721) arranged opposite to each other, the side plates (721) are provided with two connecting holes (722), and a first support plate (723) is provided at each end of the side plates (721); The gluing assembly (73) includes a gluing member (731) and a gluing member (732), wherein the gluing member (731) and the gluing member (732) are rotatably connected to the connecting hole (722), respectively, wherein one of the connecting holes (722) extends horizontally along the side plate (721) so as to adjust the distance between the gluing member (731) and the gluing member (732).
2. The gluing device according to claim 1, characterized in that: The side plate (721) is provided with a moving block (74), and the moving block (74) can be assembled with the first support plate (723) or the side plate (721).
3. The gluing device according to claim 2, characterized in that: The seventh driving member (71) is assembled with the glue coating member (731), and the moving block (74) is assembled with the glue pressing member (732), or the seventh driving member (71) is assembled with the glue pressing member (732), and the glue coating member (731) is assembled with the moving block (74).
4. The gluing device according to claim 1, characterized in that: The seventh driving member (71) is connected to the gluing assembly (73) via a coupling or the seventh driving member (71) is connected to the gluing assembly (73) via gears.
5. The gluing device according to claim 1, characterized in that: One of the side panels (721) is provided with a glue feeding portion (7211).
6. The gluing device according to claim 1, characterized in that: A second support plate (724) is provided between the seventh driving member (71) and the first support plate (723), so that the seventh driving member (71) and the first support plate (723) are assembled.
7. The gluing device according to claim 1, characterized in that: A guide plate (75) is provided below the glue coating assembly (73), and the guide plate (75) is assembled with the housing (72).
8. The gluing device according to claim 7, characterized in that: The guide plate (75) is arranged at an angle.