Switch cover gluing mechanism and adhesive cover gluing machine
Patent Information
- Application Number
- CN202521860059.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-08-29
AI Technical Summary
[0003]现有技术中,上盖的上胶工序一方面部分设备采用人工上料,效率低且易因人为操作误差导致上盖定位不准;少数自动化上料设备仅通过轨道输送,缺乏二次定位结构,上盖易在轨道末端偏移,影响后续夹取;另一方面传统涂胶方式多为胶管直接点胶或毛刷涂胶,点胶易出现胶水堆积或漏涂,毛刷涂胶则易因刷毛磨损导致涂覆厚度不均,且胶水浪费严重
本申请通过振动盘排序和上料轨道的定位送料,避免上盖在转运前偏移,提高了定位精度,并且利用中部高、两侧低的的盛胶槽结构配合刮板的涂胶结构,可以有效控制胶水涂覆厚度,避免胶水浪费,实现上盖的自动化精准上料、均匀涂胶与高效转运,提升开关生产效率与产品合格率。
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Figure CN224736655U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of switch manufacturing and processing equipment, and in particular to a switch cover gluing mechanism and a gluing cover machine. Background Technology
[0002] During the switch manufacturing process, the assembly of the switch cover (i.e., the top cover) and the base requires first applying glue to the mating surface of the top cover, and then pressing and fixing it.
[0003] In existing technologies, the adhesive application process for the top cover suffers from several problems. Firstly, some equipment relies on manual feeding, which is inefficient and prone to inaccurate positioning due to human error. A few automated feeding devices use only rail transport and lack a secondary positioning structure, making it easy for the top cover to shift at the end of the rail, affecting subsequent gripping. Secondly, traditional adhesive application methods often involve direct dispensing from a tube or applying adhesive with a brush. Dispensing can easily lead to adhesive accumulation or missed areas, while brush application can result in uneven coating thickness due to brush bristle wear and significant adhesive waste. Therefore, existing top cover adhesive application processes suffer from poor feeding stability and insufficient adhesive uniformity. Utility Model Content
[0004] This utility model aims to at least partially solve one of the problems in related technologies. Therefore, one of the objectives of this utility model is to provide a glue-applying mechanism for switch covers, used to achieve automated and precise feeding, uniform glue application, and efficient transfer of the cover, thereby improving switch production efficiency and product qualification rate.
[0005] A gluing mechanism for a switch cover, the gluing mechanism comprising a feeding assembly, a gluing assembly, and a transverse clamping assembly; The feeding assembly includes a vibratory feeder and a feeding track. The discharge port of the vibratory feeder is connected to one end of the feeding track, and the other end of the feeding track extends to the initial station. The glue application assembly is located on one side of the other end of the feeding track. The glue application assembly includes a glue storage bin, a glue application drive, and a glue application scraper. The glue storage bin has a glue-holding trough with the middle section higher than the sides. A glue application station is located in the middle of the glue-holding trough. Glue is stored in the lower sections on both sides of the glue-holding trough. The glue application scraper is located in the glue-holding trough. The glue application drive drives the glue application scraper to move back and forth horizontally on both sides and in the middle of the glue-holding trough to apply glue to the glue application station. The transverse clamping assembly includes a transverse drive and a clamping module. The clamping module is located above the feeding assembly and the gluing assembly and is used to clamp the top cover. The transverse drive drives the clamping module to move between the initial station of the feeding assembly, the gluing station of the gluing assembly, and the subsequent processing station.
[0006] Furthermore, the feeding assembly also includes a feeding cylinder and a feeding plate. The feeding plate is connected to the drive end of the feeding cylinder and is located on one side of the other end of the feeding track. The feeding plate has a material receiving groove, which is connected to the feeding track. The feeding plate pushes the upper cover from the end of the feeding track to the initial station through the feeding cylinder.
[0007] Furthermore, the adhesive application assembly also includes a slide rail, a connecting slider, and a connecting plate. The slide rail is located below the adhesive storage tank, the connecting slider is slidably connected to the slide rail, one end of the connecting plate is connected to the connecting slider, and the other end extends above the adhesive reservoir. The adhesive scraper is connected to the other end of the connecting plate.
[0008] Furthermore, the adhesive application assembly also includes an adhesive application connecting block, the adhesive application connecting block having an isosceles trapezoidal cross-sectional shape, the adhesive application connecting block being placed in the adhesive holding tank, and the top of the adhesive application connecting block being the adhesive application station.
[0009] Furthermore, the adhesive scraper is made of silicone.
[0010] Furthermore, the adhesive application assembly is also provided with a top material module, which includes a top material drive and a top plate. The adhesive holding tank is located at the adhesive application station and has a connection hole. The top material module is located below the adhesive storage tank. The top material drive drives the top plate to move back and forth in the connection hole so as to pass through the connection hole and abut against the bottom of the upper cover.
[0011] Furthermore, the transverse clamping assembly also includes a connecting seat, a vertical drive component, and a mounting plate. The connecting seat extends vertically, the transverse drive component is connected to the upper part of the connecting seat, the vertical drive component is connected to the drive end of the transverse drive component, the mounting plate is mounted on the drive end of the vertical drive component, and the clamping module is mounted on the mounting plate.
[0012] Furthermore, the clamping module includes two horizontally spaced clamping suction heads, which are connected to an air pump and are used to adsorb or release the top cover.
[0013] Furthermore, the distance between the two clamping suction heads is the same as the distance between the initial station and the glue application station, as well as the distance between the glue application station and the subsequent processing station.
[0014] This utility model also proposes an adhesive capping machine, which includes the adhesive application mechanism for the capping mechanism described above.
[0015] The technical solutions provided in this application have the following advantages compared with the prior art: This application uses a vibratory feeder for sorting and a feeding track for positioning and feeding, which prevents the top cover from shifting before transfer, thus improving positioning accuracy. Furthermore, by utilizing a glue-holding trough structure that is high in the middle and low on both sides, combined with a scraper for applying glue, the glue coating thickness can be effectively controlled, avoiding glue waste. This achieves automated and precise feeding, uniform glue application, and efficient transfer of the top cover, thereby improving switch production efficiency and product qualification rate. Attached Figure Description
[0016] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with the present invention and, together with the description, serve to explain the principles of the present invention.
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] In the attached image: Figure 1 This is a schematic diagram of the structure of an embodiment of the adhesive application mechanism for the switch cover of this application; Figure 2 This is a schematic diagram of the structure of another embodiment of the adhesive application mechanism for the switch cover in this application; Figure 3 This is a schematic diagram of the feeding component in one embodiment of the adhesive application mechanism for the switch cover of this application; Figure 4 This is a schematic diagram of the structure of the feeding assembly, the gluing assembly, and the transverse clamping assembly in one embodiment of the switch cover gluing mechanism of this application; Figure 5 for Figure 4 A schematic diagram of the structure of an embodiment of the glue application mechanism for the switch cover from another perspective; Figure 6 for Figure 4 A schematic diagram of the structure of another embodiment of the glue application mechanism for the switch cover; Figure 7 This is a schematic diagram of the top material module in the glue application assembly of an embodiment of the glue application mechanism for the switch cover of this application; Figure 8 This is a schematic diagram of the adhesive application component of an embodiment of the adhesive application mechanism for the switch cover of this application.
[0019] Figure label: 1. A gluing mechanism for a switch cover; 10. Feeding assembly; 11. Vibratory feeder; 12. Feeding track; 13. Feeding cylinder; 14. Feeding plate; 141. Material receiving groove; 20. Glue application assembly; 21. Glue storage bin; 22. Glue holding trough; 221. Low groove position; 23. Glue application drive component; 24. Glue application scraper; 25. Slide rail; 26. Connecting slider; 27. Connecting plate; 28. Glue application connecting block; 281. Glue application station; 29. Top material module; 291. Top material drive component; 292. Top plate; 30. Horizontal movement clamping assembly; 31. Connecting seat; 32. Horizontal movement drive component; 33. Vertical drive component; 34. Mounting plate; 35. Clamping module; 351. Clamping suction head; 352. Air pump; 40. Subsequent processing station. Detailed Implementation
[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0021] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0022] like Figure 1 - Figure 8 As shown, the present application provides a switch cover gluing mechanism 1, which includes a feeding assembly 10, a gluing assembly 20, and a transverse clamping assembly 30; The feeding assembly 10 includes a vibratory feeder 11 and a feeding track 12. The discharge port of the vibratory feeder 11 is connected to one end of the feeding track 12, and the other end of the feeding track 12 extends to the initial working position. The glue application assembly 20 is located on one side of the other end of the feeding track 12. The glue application assembly 20 includes a glue storage bin 21, a glue application drive 23, and a glue application scraper 24. The glue storage bin 21 has a glue holding trough 22 with the middle higher than the sides. The glue holding trough 22 has a glue application station 281 in the middle. The low grooves 221 on both sides of the glue holding trough 22 store glue. The glue application scraper 24 is located in the glue holding trough 22. The glue application drive 23 drives the glue application scraper 24 to move back and forth in the horizontal direction on both sides and in the middle of the glue holding trough 22 to apply glue to the glue application station 281. The transverse clamping assembly 30 includes a transverse drive 32 and a clamping module 35. The clamping module 35 is located above the loading assembly 10 and the gluing assembly 20 and is used to clamp the top cover. The transverse drive 32 drives the clamping module 35 to move between the initial station of the loading assembly 10, the gluing station 281 of the gluing assembly 20, and the subsequent processing station 40.
[0023] The feeding assembly 10 includes a vibratory feeder 11 and a feeding track 12. The vibratory feeder 11 automatically sorts the disordered top covers (e.g., unifying the opening orientation) through vibration and conveys them to the feeding track 12 through the discharge port. The feeding track 12 extends horizontally and gradually conveys the sorted top covers to the end of the track. The vibratory feeder 11 automatically sorts the top covers, eliminating the need for manual placement and improving feeding efficiency. The glue application assembly 20 includes a glue storage tank 21, a glue application drive 23, and a glue application scraper 24. The glue storage tank 21 has a glue-holding trough 22, which has a structure that is high in the middle and low on both sides. The low grooves 221 on both sides are used to store glue, and the raised area in the middle is used to place the top cover. This structure can prevent glue from accumulating in non-glue-applying areas and ensure the flatness of the glue application station 281. The glue application drive 23 (which can be a cylinder or a servo motor and lead screw structure) drives the glue application scraper 24 to move back and forth, thereby moving the glue application scraper 24 between the sides and the middle of the glue storage tank 22. When the scraper moves to the middle, it picks up glue from the low grooves 221 on both sides and evenly applies the glue to the surface of the top cover of the glue application station 281. When the scraper returns to the sides, one glue application cycle is completed. The design of the glue-holding tank 22, which is high in the middle and low on both sides, ensures that the glue is stored only in the lower tanks 221 on both sides. When the scraper moves back and forth, it only picks up a fixed amount of glue, avoiding the accumulation of glue with traditional glue tubes and the uneven thickness of glue applied by brushes, thus meeting the precise fitting requirements of the switch cover and the base.
[0024] The transverse clamping assembly 30 includes a transverse drive 32 and a clamping module 35. The transverse drive 32 moves the clamping module 35 to achieve the transfer of the cover between different workstations. The clamping module 35 is responsible for precisely clamping the cover, ensuring that the cover's position is stable and accurate during material loading, gluing, and subsequent processing. The transverse clamping assembly 30 moves across workstations, avoiding contamination and positioning deviations caused by manual transfer of the cover, reducing labor costs while improving the accuracy of cover transfer. The clamping module 35 can move flexibly between the initial workstation, the gluing workstation 281, and the subsequent processing workstation 40, improving production efficiency.
[0025] Furthermore, the feeding assembly 10 also includes a feeding cylinder 13 and a feeding plate 14. The feeding plate 14 is connected to the driving end of the feeding cylinder 13 and is located on one side of the other end of the feeding track 12. The feeding plate 14 has a receiving groove 141, which is connected to the feeding track 12. The feeding plate 14 pushes the upper cover from the end of the feeding track 12 to the initial station through the feeding cylinder 13.
[0026] The feeding assembly 10 also includes a feeding cylinder 13 and a feeding plate 14. The feeding plate 14 is located at one end of the feeding track 12, and its surface has a receiving groove 141 that matches the shape of the upper cover. The feeding cylinder 13 drives the feeding plate 14 to move horizontally. When the receiving groove 141 aligns with the feeding track 12, the upper cover enters the receiving groove 141. Subsequently, the feeding plate 14 pushes the upper cover to the preset initial position, completing the precise positioning of the upper cover and preparing it for subsequent clamping. The receiving groove 141 matches the shape of the upper cover, which can limit the horizontal displacement of the upper cover. The feeding cylinder 13 has a fixed pushing stroke, which accurately pushes the upper cover to the initial position, avoiding the problem of empty clamping or off-center clamping caused by the clamping module 35 due to the displacement of the upper cover. The feeding plate 14 supports the upper cover through the receiving groove 141, rather than directly clamping it with mechanical claws, which can avoid scratches on the edge of the upper cover due to clamping force.
[0027] Furthermore, the glue application assembly 20 also includes a slide rail 25, a connecting slider 26, and a connecting plate 27. The slide rail 25 is located below the glue storage tank 21. The connecting slider 26 is slidably connected to the slide rail 25. One end of the connecting plate 27 is connected to the connecting slider 26, and the other end extends above the glue holding tank 22. The glue application scraper 24 is connected to the other end of the connecting plate 27.
[0028] The adhesive application assembly 20 also includes a slide rail 25, a connecting slider 26, and a connecting plate 27. The slide rail 25 is located below the adhesive storage tank 21. The connecting slider 26 slides in conjunction with the slide rail 25. One end of the connecting plate 27 is connected to the connecting slider 26, and the other end extends above the adhesive reservoir 22 and is connected to the adhesive scraper 24. The adhesive application drive 23 drives the connecting slider 26 to reciprocate along the slide rail 25, thereby driving the adhesive scraper 24 to move between the sides and the center of the adhesive reservoir 22. When the scraper moves towards the center, it picks up adhesive from the lower groove positions 221 on both sides and evenly applies the adhesive to the upper surface of the adhesive application station 281. When the scraper returns to its original position on both sides, one adhesive application cycle is completed. The sliding fit design between the slide rail 25 and the connecting slider 26 ensures the smoothness and accuracy of the movement of the adhesive scraper 24, avoids shaking during the adhesive application process, and further improves the uniformity of the adhesive application. Meanwhile, this design allows the glue-applying scraper 24 to move flexibly along the length of the glue-collecting tank 22, adapting to the glue-applying needs of top covers of different sizes, thus improving the versatility and flexibility of the equipment.
[0029] Furthermore, the glue application assembly 20 also includes a glue application connecting block 28, the cross-sectional shape of which is an isosceles trapezoid. The glue application connecting block 28 is placed in the glue holding tank 22, and the top of the glue application connecting block 28 is the glue application station 281.
[0030] The isosceles trapezoidal design ensures even distribution of adhesive at the application station 281, preventing excessive accumulation or loss of adhesive in any area and further guaranteeing the uniformity and consistency of the application. Simultaneously, the stable structure of the application connecting block 28 can withstand the pressure of the moving application scraper 24, extending the equipment's service life.
[0031] Furthermore, the adhesive scraper 24 is made of silicone.
[0032] Made of silicone, it prevents scratches on the top cover and ensures even glue adhesion. The glue applicator 24 is made of silicone, which is soft and wear-resistant, allowing it to adhere tightly to the top cover surface during glue application, preventing glue leakage or uneven application. Simultaneously, silicone has good elasticity and resilience, ensuring the shape and size of the glue applicator 24 remain stable over long-term use, guaranteeing consistent and stable glue application quality.
[0033] Furthermore, the adhesive application assembly 20 is also provided with a top material module 29, which includes a top material drive component 291 and a top plate 292. The glue holding tank 22 is located at the adhesive application station 281 and has a connection hole. The top material module 29 is located below the glue storage tank 21. The top material drive component 291 drives the top plate 292 to reciprocate within the connection hole so that it passes through the connection hole and abuts against the bottom of the upper cover.
[0034] The top-loading module 29 is located below the glue storage tank 21 and includes a top-loading drive component 291 (cylinder) and a top plate 292. The glue-holding tank 22 has a connection hole corresponding to the glue application station 281. When the top cover is conveyed to the glue application station 281, the top-loading drive component 291 drives the top plate 292 upward through the connection hole to abut against the bottom of the top cover, achieving secondary positioning of the top cover and preventing it from shifting during glue application. After glue application, the top-loading module 29 can lift the top cover from the glue application station 281, facilitating the transverse clamping assembly 30 to clamp and transfer the top cover to the subsequent processing station 40. The design of the top-loading module 29 realizes automatic lifting and transfer of the top cover, further improving the automation level and production efficiency of the equipment.
[0035] Furthermore, the transverse clamping assembly 30 also includes a connecting seat 31, a vertical drive member 33, and a mounting plate 34. The connecting seat 31 extends vertically, the transverse drive member 32 is connected to the upper part of the connecting seat 31, the vertical drive member 33 is connected to the drive end of the transverse drive member 32, the mounting plate 34 is mounted on the drive end of the vertical drive member 33, and the clamping module 35 is mounted on the mounting plate 34.
[0036] The transverse clamping assembly 30 includes a connecting base 31, a transverse drive component 32 (servo motor and synchronous belt or lead screw), a vertical drive component 33 (cylinder or electric push rod), a mounting plate 34, and a clamping module 35. The connecting base 31 is fixed vertically. The transverse drive component 32 is mounted on the upper part of the connecting base 31, and its drive end is connected to the vertical drive component 33. The drive end of the vertical drive component 33 is connected to the mounting plate 34. The clamping module 35 is mounted below the mounting plate 34. The transverse drive component 32 uses a servo motor in conjunction with a synchronous belt or lead screw structure to achieve precise horizontal movement of the clamping module 35. The vertical drive component 33 uses a cylinder or electric push rod to achieve vertical lifting and lowering of the clamping module 35. This design allows the clamping module 35 to flexibly adjust its position to adapt to the transfer needs between different workstations. At the same time, the combined use of the servo motor and synchronous belt or lead screw ensures the smoothness and accuracy of the movement of the clamping module 35, avoids shaking during transfer, and further improves the stability and production efficiency of the equipment.
[0037] Furthermore, the clamping module 35 includes two horizontally spaced clamping suction heads 351, each clamping suction head 351 is connected to an air pump 352, and the clamping suction head 351 is used to adsorb or release the top cover.
[0038] The clamping module 35 includes two horizontally spaced clamping suction heads 351, connected to an air pump 352. By using negative pressure to suction the cover, the clamping suction heads 351 prevent cover deformation compared to mechanical grippers. The design of the clamping suction heads 351 also accommodates covers of different sizes and shapes, improving the equipment's versatility and flexibility. When suctioning the cover, both clamping suction heads 351 work simultaneously to ensure the cover is securely held; when releasing the cover, the cover can be easily detached by controlling the air pump 352, making operation simple and quick. Furthermore, the clamping suction heads 351 are made of wear-resistant and corrosion-resistant materials, ensuring stability and reliability during long-term use.
[0039] Furthermore, the distance between the two clamping suction heads 351 is the same as the distance between the initial station and the glue application station 281, as well as the distance between the glue application station 281 and the subsequent processing station 40.
[0040] The distance between the two clamping suction heads 351 is the same as the distance between the initial station and the glue application station 281, as well as the distance between the glue application station 281 and the subsequent processing station 40. When the lateral drive 32 moves the clamping module 35, one suction head can simultaneously pick up the cover to be glued from the initial station, and the other suction head can pick up the cover already glued from the glue application station 281; then it moves laterally to the target position, the cover to be glued is placed in the glue application station 281, and the cover already glued is placed in the subsequent processing station 40 (such as the pressing station), realizing the synchronous operation of picking up and placing materials, improving production efficiency and shortening transfer time.
[0041] The working process of the glue application mechanism for the switch cover is as follows: Pour the switch cover to be glued into the vibratory feeder 11. After the vibratory feeder 11 is started, the cover is arranged along the inner wall of the vibratory feeder 11 (opening downwards), enters the feeding track 12 through the discharge port, and is conveyed to the end of the track. The feeding cylinder 13 drives the feeding plate 14 to move, so that the receiving groove 141 is connected with the feeding track 12. After the cover enters the receiving groove 141, the feeding plate 14 pushes the cover to the initial station and then resets.
[0042] The horizontal drive 32 moves the clamping module 35 to above the initial station, the vertical drive 33 drives the mounting plate 34 to descend, and the suction head 351 of the two clamping suction heads 351 that is closer to the initial station contacts the top cover. The air pump 352 starts to generate negative pressure, and the suction head adsorbs the top cover. The vertical drive 33 resets, and the horizontal drive 32 moves the clamping module 35 to above the glue application station 281.
[0043] The glue application drive 23 is activated, driving the glue application scraper 24 to move from one side of the glue tank 22 towards the center, picking up the glue from the two low slots 221 and scraping it onto the surface of the glue application station 281 (top of the glue application connecting block 28). Then the scraper moves to the other low slot 221 to complete the glue application. The vertical drive 33 descends, adsorbing the suction head of the cover to be glued and placing the cover in the glue application station 281. The top material drive 291 drives the top plate 292 upward to hold the bottom of the cover and achieve positioning. The bottom of the cover is adhered with glue. After the adhesion is complete, the top material drive 291 resets and the top plate 292 descends.
[0044] In the clamping module 35, the suction head near the glue application station 281 adsorbs the glued cover, and the vertical drive 33 resets. The horizontal drive 32 moves the clamping module 35 to above the subsequent processing station 40, the vertical drive 33 descends, and the glued cover is placed in the subsequent processing station 40. At the same time, the cover to be glued (adsorbed by another suction head) is placed in the glue application station 281. The air pump 352 stops the negative pressure, the suction head releases the cover, the vertical drive 33 resets, and the horizontal drive 32 moves the clamping module 35 back to the initial station to enter the next cycle.
[0045] This utility model also proposes an adhesive cap fastening machine, which includes a cap fastening and gluing mechanism. The specific structure of the cap fastening and gluing mechanism is as described in the above embodiments. Since this adhesive cap fastening machine adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, and will not be described in detail here.
[0046] The glue-on cover machine includes the aforementioned glue-applying mechanism for switch covers, and also integrates a subsequent pressing mechanism, conveying mechanism, and control system: After the glue-applying mechanism completes the glue application on the cover, it transfers the cover to the pressing station. The pressing mechanism presses and fixes the glued cover to the switch base. The conveying mechanism transports the assembled switch to the next process. The control system (PLC) coordinates the actions of each mechanism to achieve fully automated production.
[0047] It is understood that the above embodiments only illustrate preferred embodiments of the present utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present utility model patent. It should be noted that for those skilled in the art, the above technical features can be freely combined, and several modifications and improvements can be made without departing from the concept of the present utility model, all of which fall within the protection scope of the present utility model. Therefore, all equivalent transformations and modifications made within the scope of the claims of the present utility model should fall within the coverage of the claims of the present utility model.
Claims
1. A switch cover gluing mechanism, characterized in that, Includes a feeding assembly, an adhesive application assembly, and a transverse clamping assembly; The feeding assembly includes a vibratory feeder and a feeding track. The discharge port of the vibratory feeder is connected to one end of the feeding track, and the other end of the feeding track extends to the initial station. The glue application assembly is located on one side of the other end of the feeding track. The glue application assembly includes a glue storage bin, a glue application drive, and a glue application scraper. The glue storage bin has a glue-holding trough with the middle section higher than the sides. A glue application station is located in the middle of the glue-holding trough. Glue is stored in the lower sections on both sides of the glue-holding trough. The glue application scraper is located in the glue-holding trough. The glue application drive drives the glue application scraper to move back and forth horizontally on both sides and in the middle of the glue-holding trough to apply glue to the glue application station. The transverse clamping assembly includes a transverse drive and a clamping module. The clamping module is located above the feeding assembly and the gluing assembly and is used to clamp the top cover. The transverse drive drives the clamping module to move between the initial station of the feeding assembly, the gluing station of the gluing assembly, and the subsequent processing station.
2. The adhesive application mechanism for a switch cover according to claim 1, characterized in that, The feeding assembly also includes a feeding cylinder and a feeding plate. The feeding plate is connected to the drive end of the feeding cylinder and is located on one side of the other end of the feeding track. The feeding plate has a material receiving groove, which is connected to the feeding track. The feeding plate pushes the upper cover from the end of the feeding track to the initial station through the feeding cylinder.
3. The mechanism according to claim 1, wherein The adhesive application assembly further includes a slide rail, a connecting slider, and a connecting plate. The slide rail is located below the adhesive storage tank. The connecting slider is slidably connected to the slide rail. One end of the connecting plate is connected to the connecting slider, and the other end extends above the adhesive tank. The adhesive scraper is connected to the other end of the connecting plate.
4. The switch cover gluing mechanism according to claim 1, wherein The adhesive application assembly also includes an adhesive application connecting block, the cross-sectional shape of which is an isosceles trapezoid. The adhesive application connecting block is placed in the adhesive holding tank, and the top of the adhesive application connecting block is the adhesive application station.
5. The adhesive application mechanism for a switch cover according to claim 1, characterized in that, The adhesive scraper is made of silicone.
6. The mechanism for gluing the switch cover according to claim 1, wherein The adhesive application assembly is also provided with a top material module, which includes a top material drive and a top plate. The glue tank is located at the adhesive application station and has a connection hole. The top material module is located below the glue storage tank. The top material drive drives the top plate to move back and forth in the connection hole so as to pass through the connection hole and abut against the bottom of the upper cover.
7. The mechanism according to claim 1, wherein The transverse clamping assembly further includes a connecting seat, a vertical drive component, and a mounting plate. The connecting seat extends vertically, the transverse drive component is connected to the upper part of the connecting seat, the vertical drive component is connected to the drive end of the transverse drive component, the mounting plate is mounted on the drive end of the vertical drive component, and the clamping module is mounted on the mounting plate.
8. The switch cover gluing mechanism according to claim 1 or 7, characterized in that, The clamping module includes two horizontally spaced clamping suction heads, each connected to an air pump, which are used to adsorb or release the top cover.
9. The mechanism according to claim 8, wherein The distance between the two clamping suction heads is the same as the distance between the initial station and the glue application station, as well as the distance between the glue application station and the subsequent processing station.
10. A glue and cap applicator machine characterized by, Includes the adhesive application mechanism for the switch cover as described in any one of claims 1 to 9.