Rubbering apparatus and system
By designing a feeding and unloading structure to switch the contact area of the wiping section in the adhesive wiping equipment, the problem of cross-contamination caused by repeated use of wiping cloths is solved, achieving a highly efficient cleaning effect. It is suitable for processing workpieces with high cleanliness requirements.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LENOVO (BEIJING) LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-07-28
AI Technical Summary
When existing adhesive wiping equipment uses the same wiping cloth to wipe multiple workpieces, it is easy for contaminants to accumulate and transfer to the surface of other workpieces, resulting in poor cleaning effect.
A glue-wiping device was designed. By switching the contact area of the wiping part through the feeding and unloading structures, it ensures that each workpiece has a clean wiping area. Replaceable wiping parts and support components are used to provide stable support and avoid cross-contamination.
It effectively avoids cross-contamination, improves the adhesive application effect, ensures the cleanliness of each workpiece, and is suitable for environments with high cleanliness requirements.
Smart Images

Figure CN224559411U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of adhesive application equipment technology, and more particularly to an adhesive application device and system. Background Technology
[0002] In current industrial manufacturing processes, adhesive application equipment is one of the key tools for ensuring clean and impurity-free workpiece surfaces, and its performance directly affects the quality and efficiency of subsequent processes. Many existing adhesive application devices typically use the same cloth to wipe multiple workpieces. While this method improves material utilization and ease of operation to some extent, with repeated use, the cloth gradually accumulates residues, grease, dust, and other contaminants from different workpieces. These contaminants can transfer to other workpiece surfaces during subsequent wiping processes, causing new workpieces to become contaminated rather than effectively cleaned. Utility Model Content
[0003] To address the aforementioned technical problems, the present disclosure provides the following technical solutions:
[0004] The first aspect of this disclosure provides an adhesive application device, comprising:
[0005] The wiping section has a target area for contacting and wiping the target workpiece.
[0006] Support component, the support component contacts the wiping part to support the target area;
[0007] The first end of the wiping section is connected to the feeding structure.
[0008] The material feeding structure connects the second end of the wiping part to the material feeding structure, which can drive the wiping part to move to switch the target area contacted by the support.
[0009] In some modified embodiments of the first aspect of this disclosure, the feeding structure includes:
[0010] The first rotating shaft is in contact with the wiping part and can drive the wiping part to move;
[0011] The second rotating shaft is connected to the second end of the wiping part, and the second rotating shaft and the first rotating shaft are connected by a belt;
[0012] A clamping element is provided on the side of the wiping part away from the first rotating shaft, which can clamp the wiping part against the first rotating shaft;
[0013] When the torque required by the second shaft is less than that of the first shaft, the first shaft drives the second shaft to rotate via a belt. When the torque required by the second shaft is greater than that of the first shaft, the belt slides relative to the first shaft.
[0014] In some modified embodiments of the first aspect of this disclosure, the feeding structure further includes a first driving member, which is connected to a retaining member so that the retaining member can move in a direction close to the first rotating shaft.
[0015] In some modified embodiments of the first aspect of this disclosure, it further includes:
[0016] The main structure, the feeding structure, the unloading structure, and the supporting components are connected to the main structure.
[0017] The feeding structure includes:
[0018] The third rotating shaft is connected to the first end of the wiping part, and the wiping part can be wound around the third rotating shaft;
[0019] The slider is slidably connected to the main structure. The wiping part bypasses the slider and contacts the support. The wiping part can drive the slider to slide.
[0020] The elastic element is connected to the slider. The elastic element can elastically deform when the slider slides to keep the wiping part in a taut state.
[0021] In some modified embodiments of the first aspect of this disclosure, it further includes:
[0022] A buffer element is provided on the main body and connected to the side of the support element away from the wiping part. The buffer element is capable of elastic deformation in the first direction.
[0023] An adjusting device is connected to the main body, and the adjusting device can drive the main body to move along a first direction.
[0024] In some modified embodiments of the first aspect of this disclosure, it further includes:
[0025] The clamping part is located on both sides of the support member. The clamping part clamps the wiping part so that the target area of the wiping part is in a taut state.
[0026] In some modified embodiments of the first aspect of this disclosure, the clamping part includes:
[0027] The first clamping member is disposed on the first side of the wiping part;
[0028] The second clamping member is disposed on the second side of the wiping part;
[0029] The second driving member is connected to the second clamping member. The second driving member can drive the second clamping member to move in a direction close to the first clamping member to clamp the wiping part.
[0030] In some modified embodiments of the first aspect of this disclosure, it further includes:
[0031] The feeding device is connected to the support member and can provide cleaning material to the target area of the wiping section through the support member;
[0032] The support includes a support head, a connecting structure, and a fixing member. The support head is connected to the fixing member through the connecting structure. The connecting structure is at least partially disposed between the support head and the wiping part. The connecting structure can absorb cleaning material so that the cleaning material is evenly distributed on the connecting structure.
[0033] In some modified embodiments of the first aspect of this disclosure, it further includes:
[0034] Driver module;
[0035] The carrier is disposed on one side of the support and is used to support the target workpiece and drive the target workpiece to move in the second direction so that the target workpiece rubs against the wiping part.
[0036] The load-bearing components include:
[0037] The support base is connected to the drive module, which can drive the support base to reciprocate along the second direction.
[0038] The supporting body is slidably connected to the supporting base along a third direction, and the second direction and the third direction satisfy the vertical condition;
[0039] The load-bearing structure is rotatably connected to the load-bearing body and is used to fix the target workpiece.
[0040] A second aspect of this disclosure provides an adhesive application system, comprising:
[0041] Workbench;
[0042] The adhesive application equipment has workbenches set up between the adhesive application equipment;
[0043] The adhesive application equipment includes:
[0044] The wiping section has a target area for contacting and wiping the target workpiece.
[0045] Support component, the support component contacts the wiping part to support the target area;
[0046] The first end of the wiping section is connected to the feeding structure.
[0047] The material feeding structure connects the second end of the wiping part to the material feeding structure, which can drive the wiping part to move to switch the target area contacted by the support. Attached Figure Description
[0048] The above and other objects, features, and advantages of exemplary embodiments of the present disclosure will become readily apparent upon reading the following detailed description with reference to the accompanying drawings. In the drawings, several embodiments of the present disclosure are illustrated by way of example and not limitation, with the same or corresponding reference numerals denoteing the same or corresponding parts, wherein:
[0049] Figure 1 A schematic diagram of a partial structure of an adhesive application device is shown.
[0050] Figure 2 A schematic diagram of the feeding structure of an adhesive application device is shown.
[0051] Figure 3 A schematic diagram of the structure of a glue-applying device at point A is shown.
[0052] Figure 4 A schematic diagram of a partial internal structure of an adhesive application device is shown.
[0053] Figure 5 A schematic diagram of the structure of the supporting body of an adhesive application device is shown.
[0054] Figure 6 A schematic diagram of a partial structure of an adhesive application device is shown.
[0055] Figure 7 A schematic diagram of a three-dimensional structure of an adhesive application device is shown.
[0056] Figure 8 A schematic diagram of an adhesive application system is shown.
[0057] Explanation of icon numbers:
[0058] 1. Wiping section; 2. Support component; 21. Support head; 22. Fixing component; 23. Pressing block; 24. Connector; 25. Connecting structure; 26. Second driving component; 27. Connecting block; 3. Unloading structure; 31. First rotating shaft; 32. Second rotating shaft; 33. Pressing component; 34. First driving component; 35. Round belt pulley; 36. Round belt; 37. Drive motor; 38. Synchronous belt; 4. Loading structure; 41. Third rotating shaft; 42. Slider; 43. Elastic component; 4 4. Fixed baffle; 45. Control switch; 46. Fixing ring; 47. Miniature single-axis magnetic powder brake; 5. Main structure; 6. Bearing component; 61. Bearing base; 62. Bearing body; 63. Bearing structure; 64. Bearing shaft; 65. Vacuum suction cup; 66. Sensor; 67. Positioning pin; 7. Conveying device; 71. Peristaltic pump; 72. Storage tank; 73. Transport hose; 8. Drive module; 9. Clamping part; 91. First clamping component; 92. Second clamping component; 10. Buffer component; 11. Linear guide rail; 12. Adjusting nut; 13. Target workpiece; 14. Pressure holding box; 15. Adjusting device; 16. Worktable; 17. Glue application equipment; 18. Guide structure. Detailed Implementation
[0059] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
[0060] It should be noted that, unless otherwise stated, the technical or scientific terms used in this disclosure shall have the ordinary meaning as understood by one of ordinary skill in the art to which this disclosure pertains.
[0061] In current industrial manufacturing processes, adhesive application equipment is one of the key tools for ensuring clean and impurity-free workpiece surfaces, and its performance directly affects the quality and efficiency of subsequent processes. Many existing adhesive application devices typically use the same cloth to wipe multiple workpieces. While this method improves material utilization and ease of operation to some extent, with repeated use, the cloth gradually accumulates residues, grease, dust, and other contaminants from different workpieces. These contaminants can transfer to other workpiece surfaces during subsequent wiping processes, causing new workpieces to become contaminated rather than effectively cleaned.
[0062] To address the aforementioned technical problems, this disclosure provides an adhesive application device and system that allows each workpiece to come into contact with different wiping areas, thereby improving the adhesive application effect. Example
[0063] like Figure 1 , Figure 2 and Figure 3 As shown, an adhesive wiping device includes a wiping section 1, a support member 2, a feeding structure 4, and a discharging structure 3. The wiping section 1 has a target area for contacting and wiping a target workpiece 13. The support member 2 contacts the wiping section 1 to support the target area. The first end of the wiping section 1 is connected to the feeding structure 4, and the second end of the wiping section 1 is connected to the discharging structure 3. The discharging structure 3 can drive the wiping section 1 to move to switch the target area contacted by the support member 2.
[0064] The wiping section 1 typically refers to the part used to remove impurities, grease, dust, and other contaminants from the surface of a workpiece. Its main function is to clean the workpiece surface through physical contact, ensuring the quality of subsequent processing steps. The wiping section 1 has a target area for contacting and cleaning the target workpiece 13, and can be replaced or moved by the loading structure 4 and unloading structure 3 to use different clean areas.
[0065] For example, wiping section 1 can be a disposable wiping cloth / paper. This type of wiping section 1 is made of disposable material and is discarded after each use. This method effectively avoids cross-contamination and is particularly suitable for environments with extremely high cleanliness requirements. Wiping section 1 can also be a reusable wiping cloth. This type of wiping section 1 can be reused after washing. Although it does not completely prevent contamination as completely as disposable materials, it can still maintain a high level of cleanliness with proper cleaning procedures. It is suitable for occasions where frequent changes of wiping areas are required but cost control is strict. Wiping section 1 can adopt a roller-type wiping device. In this design, the wiping material (such as cloth or paper) is rolled into a roller form and installed on the equipment. When the wiping material at one end is used up or becomes dirty, a new material can be automatically pushed to the working position by a mechanical device. This method is suitable for automated operation in continuous production processes. Wiping section 1 can use strip-shaped wiping material. Similar to the roller-type design, but using strip-shaped wiping material. It can pull out a new unused section as needed for wiping, and then cut or roll back the used section.
[0066] The support member 2 is the part that directly contacts the wiping unit 1. Its main function is to provide physical support for the target area of the wiping unit 1 during the wiping process, ensuring that the wiping unit 1 can stably clean the workpiece. In this way, the support member 2 helps maintain the consistency and efficiency of the wiping effect. For example, the support member 2 can be a fixed support member 2: this type of support member 2 has a fixed position and is suitable for scenarios where the wiping path is relatively fixed. It can provide stable support force and is suitable for handling workpieces with regular shapes and uniform sizes. The support member 2 can also be an adjustable support member 2. In order to adapt to workpieces of different sizes and shapes, the adjustable support member 2 allows users to adjust the support height or angle according to actual needs. This flexibility makes it very suitable for multi-variety, small-batch production environments, effectively improving the versatility and utilization of the equipment. The support member 2 can also be a floating support member 2, designed to automatically adapt to minor changes or unevenness on the workpiece surface. The floating support member 2 can move up and down within a certain range to ensure that the wiping unit 1 always fits tightly against the workpiece surface, thereby maintaining constant cleaning pressure and effect. This is especially important for handling workpieces with complex geometries or high surface quality requirements. The support 2 can also be a pneumatic or hydraulic support 2, which uses the pressure of gas or liquid to provide support. This type of support 2 can precisely control the pressure applied to the wiping part 1, making the cleaning process gentler and more uniform. They are typically used in applications requiring fine control, such as precision cleaning in the manufacturing of electronic components.
[0067] For example, the support component uses a custom-made wiping head made of 60° silicone material, and the wiping part can use a wiping cloth to simulate the gentle wiping action of a human. The use of a custom-made wiping head made of 60° silicone material means that the component is made of silicone material with a specific hardness (60 degrees) and designed to conform to the workpiece surface. 60° silicone provides moderate softness and elasticity, ensuring cleaning effectiveness while avoiding scratches or damage to the workpiece surface. Silicone materials generally have good chemical resistance, resisting the effects of various cleaning agents and solvents, extending their service life. Silicone maintains its physical properties over a wide temperature range, suitable for operational needs under different environmental conditions. The wiping part uses a wiping cloth, a fabric material specifically designed for cleaning purposes, which typically has good water absorption and adsorption capabilities.
[0068] Common adhesive cleaning cloth materials include non-woven fabrics and microfiber cloths, each with different absorbency and durability. To simulate the effect of gentle manual adhesive application, choosing a soft cleaning cloth is crucial, allowing for effective stain removal without damaging the workpiece.
[0069] The feeding structure 4 refers to a mechanical device used to automatically or semi-automatically transport wiping materials (such as cloth, paper, etc.) from the storage location to the working location. Its main purpose is to ensure that the materials used during the wiping process maintain a high level of cleanliness, avoiding contamination problems caused by reusing the same portion of wiping material. For example, the feeding structure 4 can be a roller type, in which the wiping material is installed on the equipment in roll form. During feeding, a mechanical drive mechanism pulls the wiping material from the roll and delivers it to the working location. When a portion of the wiping material becomes dirty, it can be quickly switched to a new material section, suitable for automated operation in continuous production processes. The wiping section 1 can use strip wiping material and a roller-type feeding structure 4, which can pull out a new unused section for wiping as needed, and then cut or recycle the used section. This design allows for flexible adjustment of the wiping material length according to actual needs. The feeding structure 4 can also use a disc feeding system. For some special wiping materials, such as pre-made round or square wiping sheets, a disc feeding system can be used. This system contains a rotating disk loaded with multiple wiping pads. During operation, the system automatically selects a new wiping pad and places it in the working position.
[0070] The unloading structure 3 refers to a mechanical device used to automatically or semi-automatically remove used wiping material 1 (such as cloth, paper, etc.) from the working position. Its purpose is to ensure that clean material is used for each wipe, thereby guaranteeing the cleanliness of the workpiece surface. The unloading structure 3 can be a roll-up unloading system, in which used wiping material is wound onto a collecting roller. As wiping continues, the collecting roller gradually accumulates used wiping material until it needs to be replaced. This design is suitable for continuous operation environments and can effectively manage large quantities of used wiping material. For disposable wiping materials, a cutting unloading system can also be used. In this system, after a section of wiping material is used, it is automatically cut and falls into a designated waste collection area. This method is simple and direct, and particularly suitable for situations requiring frequent replacement of wiping materials. The unloading structure 3 can remove used wiping material through a push-pull action. For example, in some flat-panel wiping devices, used wiping cloths can be removed from the working area and replaced with new cloths through a simple push-pull mechanism.
[0071] The target workpiece refers to the specific object that requires cleaning in the adhesive application system. These workpieces typically have specific shapes, sizes, and materials, requiring a high degree of cleanliness during production to ensure quality and performance in subsequent processing or use. Target workpieces can be metal parts, such as mechanical parts, electronic component housings, and automotive components. Metal workpieces usually need to be free of grease, oxides, and other contaminants to ensure surface finish and the quality of subsequent processing (such as welding and painting). Target workpieces can also be plastic parts, such as mobile phone cases, mobile phone frames, toy parts, and household appliance housings. Plastic workpieces may require the removal of mold release agents, dust, and electrostatically attracted particles to ensure appearance quality and assembly accuracy.
[0072] In this disclosure, the first end of the wiping part 1 is connected to the feeding structure 4, and the second end of the wiping part 1 is connected to the unloading structure 3. By cooperating with the feeding structure 4 and the unloading structure 3, the target area contacted by the support member 2 is switched to introduce clean wiping material or a new wiping area. The support member 2 provides stable support for the wiping process, ensuring that each workpiece contacts the uncontaminated wiping part 1 (i.e., the target area), thereby avoiding the cross-contamination problem caused by the repeated use of the same wiping cloth in traditional methods, and thus improving the wiping effect.
[0073] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, in some modified embodiments of the first aspect of this disclosure, the feeding structure 3 includes a first rotating shaft 31, a second rotating shaft 32, and a clamping member 33. The first rotating shaft 31 contacts the wiping part 1 and can drive the wiping part 1 to move. The second rotating shaft 32 is connected to the second end of the wiping part 1, and the second rotating shaft 32 and the first rotating shaft 31 are connected by a belt. The clamping member 33 is disposed on the side of the wiping part 1 away from the first rotating shaft 31 and can clamp the wiping part 1 against the first rotating shaft 31. When the torque required by the second rotating shaft 32 is less than the torque of the first rotating shaft 31, the first rotating shaft 31 drives the second rotating shaft 32 to rotate through the belt. When the torque required by the second rotating shaft 32 is greater than the torque of the first rotating shaft 31, the belt slides relative to the first rotating shaft 31.
[0074] The first rotating shaft 31 directly contacts the wiping section 1 and is responsible for moving the wiping section 1, thereby removing the used wiping material and introducing a new wiping area. It is connected to the second rotating shaft 32 via a belt, forming a linkage mechanism. For example, the first rotating shaft 31 can be a drive shaft, acting as the active component, driven by a motor to provide the necessary power to move the wiping section 1. To increase friction or reduce wear, the surface of the first rotating shaft 31 can be specially treated, such as with a coating (rubber, polyurethane, etc.) or a textured design. The first rotating shaft 31 can also be an adjustable tension shaft, allowing adjustment of the tension on the shaft to accommodate wiping materials of different thicknesses or types, ensuring smooth operation.
[0075] The first shaft 31 can be directly connected to the drive motor 37, or it can be connected to the motor via a sprocket or other synchronous belt 38 capable of transmitting high torque. A round belt 36 and a pulley 35 can also be fixedly connected to the outer sides of the first shaft 31 and the second shaft 32 to secure the round belt 36 and prevent it from derailing.
[0076] The second rotating shaft 32 is connected to the second end of the wiping unit 1 and is connected to the first rotating shaft 31 via a belt. Its main function is to assist the first rotating shaft 31 in completing the automatic replacement process of the wiping material. The second rotating shaft 32 can be a driven shaft, not directly driven by a motor, but rotated by belt drive via the first rotating shaft 31, suitable for applications requiring lower torque. The second rotating shaft 32 can also be equipped with an independent power source to meet higher torque demands. The second rotating shaft 32 can also be designed with a self-adjusting mechanism, capable of automatically adjusting its speed or torque according to actual working conditions to ensure system stability.
[0077] Multiple layers of wiping parts 1 are wound around the second rotating shaft 32 to collect and organize the used wiping parts 1. To ensure the stability of the collection, two fixed baffles 44 can be set on the second rotating shaft 32. The two fixed baffles 44 are parallel to each other to form a receiving space. The used wiping parts 1 are collected and wound in this receiving space to ensure that the wiping parts 1 can be wound orderly on the second rotating shaft 32. In order to facilitate the installation and removal of the fixed baffles 44, a fixed ring 46 with a handle can be installed on the fixed baffles 44 to fix the fixed baffles 44 in a set position.
[0078] The clamping element 33 is located on the side of the wiping part 1 away from the first rotating shaft 31. Its function is to press the wiping part 1 tightly against the first rotating shaft 31, ensuring close contact between the two, preventing slippage or misalignment, and ensuring that the wiping part 1 can move smoothly and efficiently while always remaining taut. The clamping element 33 can be a spring-loaded clamping element 33, using the force of the spring to press the wiping part 1 against the first rotating shaft 31. It can automatically adjust the pressure according to the thickness of the wiping material, making it suitable for various material applications. The clamping element 33 can also be a pneumatic / hydraulic clamping element 33, applying a constant clamping force through the pressure of gas or liquid. It can precisely control the pressure on the wiping part 1, making it suitable for applications requiring high precision. The clamping element 33 can also be a mechanical clamping element 33, using screws or other mechanical devices to manually adjust the clamping force. Although it is less flexible than the previous two types, it performs well in applications with fixed conditions and is easy to maintain.
[0079] At the beginning of wiping, the number of wiping parts 1 wrapped around the second rotating shaft 32 is small, and the torque required by the second rotating shaft 32 is less than that of the first rotating shaft 31. The first rotating shaft 31 drives the second rotating shaft 32 to rotate via a belt, which ensures the stable rotation of the feeding structure 3 while keeping the wiping cloth taut. As more workpieces are wiped, the number of wiping parts 1 wrapped around the second rotating shaft 32 gradually increases, and the diameter of the wiping parts 1 on the second rotating shaft 32 becomes larger and larger. The second rotating shaft 32 not only needs to overcome the tension of the wiping part 1, but also needs to overcome the gradually increasing torque caused by the increasing diameter of the wiping part 1. When the torque required by the second rotating shaft 32 is greater than the torque of the first rotating shaft 31, the belt slides relative to the first rotating shaft 31. Under the action of the clamping member 33, the wiping part 1 between the clamping member 33 and the feeding structure 4 remains taut and continues to feed material to the second rotating shaft 32. Due to the belt slippage, the second rotating shaft 32 no longer rotates. This causes the wiping part 1 between the second rotating shaft 32 and the clamping member 33 to become too large and no longer remain taut. As a result, the second rotating shaft 32 no longer needs to overcome the tension of the wiping part 1 to reduce the torque required by the second rotating shaft 32. This allows the second rotating shaft 32 to continue rotating to balance the excessive torque caused by the increasing diameter of the material receiving roll, ensuring that the recycled material roll can be completely collected.
[0080] like Figure 1 , Figure 2 , Figure 3As shown, in some modified embodiments of this disclosure, the feeding structure 3 further includes a first driving member 34, which is connected to the abutment member 33 so that the abutment member 33 can move in a direction close to the first rotating shaft 31. The first driving member 34 is a power source connected to the abutment member 33 and can drive the abutment member 33 to move in a specific direction (i.e., towards or away from the first rotating shaft 31). Its main purpose is to dynamically adjust the pressure applied by the abutment member 33 to the wiping part 1 according to actual needs, ensuring that the wiping material always operates in the best condition. The first driving member 34 can be an electric driving member, using a motor as a power source, and controlling the movement of the abutment member 33 through gears, belts, or other transmission mechanisms. This method facilitates precise control of the moving distance and speed, and is suitable for application scenarios requiring high-precision adjustment. The first driving member 34 can also be a pneumatic driving member, using compressed air as power to push the abutment member 33 to move through a cylinder. The pneumatic system has a rapid response, is easy to integrate into automated production lines, and is relatively simple to maintain. The first drive component 34 can also be a hydraulic drive component, using hydraulic oil as the medium to drive the clamping component 33 through a hydraulic cylinder. The hydraulic system can provide a large thrust, making it suitable for applications requiring high pressure. The first drive component 34 can also be a manually adjustable drive component, allowing the operator to manually adjust the position of the clamping component 33 according to actual conditions, making it suitable for small-scale production or laboratory environments.
[0081] Due to the presence of the first driving component 34, the clamping component 33 not only presses the wiping part 1 against the first rotating shaft 31, but also dynamically adjusts according to actual working needs. When the thickness of the wiping material changes or different contact pressures are required, the first driving component 34 can automatically adjust the position of the clamping component 33 to ensure that the contact between the wiping part 1 and the first rotating shaft 31 remains optimal. This design also improves the equipment's adaptability to different types and sizes of workpieces, ensuring good wiping results whether handling thick or thin wiping materials. By precisely controlling the position of the clamping component 33, wear caused by excessive pressure or slippage caused by insufficient pressure can be avoided, thereby extending the equipment's service life and improving work efficiency.
[0082] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, in some modified embodiments of this disclosure, a structural body 5 is also included, with a feeding structure 4, a discharging structure 3, and a support member 2 connected to the structural body 5; the feeding structure 4 includes a third rotating shaft 41, a slider 42, and an elastic member 43, the third rotating shaft 41 is connected to the first end of the wiping part 1, and the wiping part 1 can be wound around the third rotating shaft 41; the slider 42 is slidably connected to the structural body 5, the wiping part 1 bypasses the slider 42 and contacts the support member 2, and the wiping part 1 can drive the slider 42 to slide; the elastic member 43 is connected to the slider 42, and the elastic member 43 can elastically deform when the slider 42 slides to keep the wiping part 1 in a taut state.
[0083] The main structure 5 forms the basic frame of the entire adhesive application equipment 17, used to fix and support various functional components, such as the feeding structure 4, the unloading structure 3, and the support component 2. It provides a unified installation platform for all parts, ensuring the stability and consistency of the system during operation. The third rotating shaft 41 is connected to the first end of the wiping section 1 and is used to store new or clean wiping material. The wiping section 1 can be wound around the third rotating shaft 41; when the wiping material needs to be replaced, the third rotating shaft 41 is rotated to release a new wiping area. The third rotating shaft 41 can be driven by a motor for automated control, or it can be driven by a mechanism where the second rotating shaft 32 rotates, causing the wiping section 1 to rotate, which in turn drives the third rotating shaft. The surface is specially treated (e.g., coated) to increase friction and ensure that the wiping material can be smoothly spread.
[0084] The third rotating shaft 41 can also be connected to the miniature single-axis magnetic powder brake 47, so that the third rotating shaft 41 can only rotate in one direction, avoiding the third rotating shaft 41 from rotating back and forth and thus damaging the tension of the wiping part 1.
[0085] The slider 42 is slidably connected to the main body 5. After the wiping part 1 exits from the third rotating shaft 41, it passes around the slider 42 and contacts the support member 2. The design of the slider 42 allows the tension of the wiping part 1 to be adjusted as needed, ensuring that it maintains an appropriate tension during wiping. The slider 42 can slide along a preset track under the drive of the wiping part 1, thereby adapting to the needs of wiping materials of different lengths and maintaining the flatness and tension of the material. The elastic element 43 is connected to the slider 42, and its main function is to undergo elastic deformation when the slider 42 slides, so that the wiping part 1 is always kept in a taut state. The elastic element 43 includes springs or elastic bands, which can automatically adjust the elastic force according to the position change of the slider 42, ensuring that the wiping material does not become loose or overstretched during use.
[0086] A controller can be installed inside the main structure 5. The controller is connected to a control switch 45, which can control the opening and closing of the driving components. For example, the control switch 45 can control the opening and closing of the first driving component 34 and the second driving component 26.
[0087] The wiping unit can be made of adhesive tape. Before use, the wiping unit can be installed on the third rotating shaft of the feeding structure, the adhesive tape fixing baffle can be installed, and the handle-type fixing ring can be locked. Then, the tape end can be pulled out. Figure 2 The winding method shown involves winding and fixing the adhesive cloth through the adhesive cloth guide structure 18 → slider → another adhesive cloth guide structure 18 → support member → first rotating shaft and clamping member → finally to the second rotating shaft, and then covering it with a baffle to lock the fixing ring, thus completing the adhesive cloth feeding.
[0088] When the equipment starts, the wiping material on the third rotating shaft 41 is gradually released and passes around the slider 42, eventually contacting the support member 2 to prepare for wiping. As the wiping process proceeds, the wiping part 1 drives the slider 42 to slide along the track on the main structure 5, while the elastic member 43 deforms to maintain the tension of the wiping material. This ensures that the wiping part 1 always fits tightly against the workpiece surface, providing a consistent cleaning effect. When the unloading structure 3 detects that the currently used wiping area has become dirty, the first rotating shaft 31 starts to rotate and, through the belt, links the second rotating shaft 32 to remove the used wiping material and introduce a new clean area to continue the work.
[0089] like Figure 3 and Figure 6 As shown, in some modified embodiments of this disclosure, a buffer 10 is also included. The buffer 10 is disposed on the main body and connected to the side of the support 2 away from the wiping part 1. The buffer 10 is elastically deformable in a first direction. The adjusting device 15 is connected to the main body and can drive the main body to move along the first direction.
[0090] The buffer 10 is disposed on the main body 5 and connected to the support 2 on the side away from the wiping part 1. Its main function is to elastically deform in a first direction (e.g., a direction perpendicular to the workpiece surface) to absorb and mitigate impacts or vibrations that may affect the wiping effect. It can simulate the soft wiping action of a human hand, avoiding damage to the target workpiece while ensuring that the support 2 can smoothly apply appropriate pressure to the wiping part 1.
[0091] The buffer 10 can be a spring buffer 10, which achieves elastic deformation by compressing a spring, suitable for applications requiring a large stroke and strong restoring force. The buffer 10 can also be a rubber buffer 10: utilizing the elasticity and shock-absorbing properties of rubber, it provides good cushioning, suitable for applications requiring noise and vibration reduction. The buffer 10 can also be a pneumatic / hydraulic buffer 10: using gas or liquid as a medium, the cushioning force is adjusted by controlling the pressure, suitable for applications requiring high precision, and providing a very smooth cushioning effect.
[0092] For example, the buffer 10 and the support 2 can be mounted on the same linear guide 11. An adjusting nut 12 is provided on the side of the buffer 10 away from the support 2. The buffering effect of the buffer 10 can be adjusted by adjusting the position of the adjusting nut 12 on the linear guide 11. When the support 2 is subjected to external force from the wiping part 1 or the workpiece, the buffer 10 can undergo elastic deformation in the first direction, effectively absorbing these external forces and preventing uneven wiping or damage caused by instantaneous impact. This not only improves the stability of the wiping process but also extends the service life of the equipment.
[0093] The adjusting device 15 is connected to the main body 5, and its main function is to move the entire main body along the first direction. This allows the operator to adjust the position of the support 2 according to actual needs, thereby changing the contact pressure or angle between the wiping part 1 and the workpiece to ensure optimal wiping effect. The adjusting device 15 can be an electric adjusting device 15: driven by a motor, it can precisely adjust the position of the main body through the control system, suitable for highly automated production lines. The adjusting device 15 can also be a manual adjusting device 15, which is manually adjusted by a handwheel or other mechanical device. Although not as precise as the electric method, it performs well in some fixed-condition applications and is easy to maintain. The adjusting device 15 can also be a pneumatic / hydraulic adjusting device 15, which uses the pressure of gas or liquid to drive the main body to move. It has a rapid response, is easy to integrate into the automation system, and can provide a large adjustment range. Depending on the different workpiece shapes, sizes, or cleaning requirements, the adjusting device 15 can move the main body along the first direction, thereby adjusting the position of the support 2. This design greatly enhances the adaptability and flexibility of the equipment, ensuring that the ideal cleaning effect is achieved with each wipe.
[0094] like Figure 1 and Figure 3 As shown, in some modified embodiments of this disclosure, a clamping part 9 is further included. The clamping part 9 is disposed on both sides of the support member 2, and clamps the wiping part 1 so that the target area of the wiping part 1 is in a taut state. The clamping part 9 is disposed on both sides of the support member 2, and its main function is to fix the wiping part 1 by physical clamping, so that the target area of the wiping part 1 can be kept in an ideal taut state. This design helps to ensure that the contact between the wiping part 1 and the workpiece surface is more uniform and tighter during the wiping process, and avoids the decrease in cleaning effect caused by slack or irregular tension.
[0095] The clamping part 9 can be a mechanical clamping part 9, which uses a mechanical structure (such as a clamp, pressure plate, etc.) to directly apply pressure to the wiping part 1, keeping it taut. This method is simple and direct, suitable for applications requiring stable and continuous tension. The clamping part 9 can also be a pneumatic or hydraulic clamping part 9, which uses the pressure of gas or liquid to adjust the clamping force, providing more precise and smooth control, suitable for applications with high precision requirements. The clamping part 9 can also be an automatically adjusting clamping part 9: equipped with sensors and a control system, it can automatically adjust the clamping force according to the actual working conditions to adapt to different thicknesses or types of wiping materials, ensuring that optimal tension is always maintained.
[0096] The clamping part 9 physically holds the wiping part 1 in place on both sides, preventing it from loosening during use. This ensures that the target area of the wiping part 1 remains taut throughout the operation, improving wiping efficiency and cleaning quality. The clamping part 9 also reduces the risk of displacement or twisting of the wiping part 1 during the wiping process, ensuring the consistency and stability of the wiping path, which is particularly important for applications requiring high-precision cleaning.
[0097] Multiple guide structures 18 can be provided between the clamping part 9 and the feeding structure 4 and the unloading structure 3. The multiple guide structures 18 are symmetrically arranged on both sides of the support member 2, and the wiping part 1 is guided to the position of the support member 2 by the guide structures 18. The multi-level guidance can further ensure that the wiping part 1 can be kept in a taut state.
[0098] like Figure 1 and Figure 3 As shown, in some modified embodiments of this disclosure, the clamping part 9 includes a first clamping member 91, a second clamping member 92, and a second driving member 26. The first clamping member 91 is disposed on a first side of the wiping part 1, and the second clamping member 92 is disposed on a second side of the wiping part 1. The second driving member 26 is connected to the second clamping member 92, and the second driving member 26 can drive the second clamping member 92 to move in a direction close to the first clamping member 91 to clamp the wiping part 1.
[0099] The first clamping member 91 is disposed on the first side of the wiping part 1, serving as one of the fixing points, and cooperates with the second clamping member 92 to clamp the wiping part 1. The first clamping member 91 provides a stable support point, helping to maintain the tension of the wiping part 1 and ensuring stability and consistency during the wiping process. For example, the first clamping member 91 can be a polyurethane pressure block, which has a certain degree of elasticity to ensure that it is pressed firmly onto the workpiece while avoiding damage to the structure of the wiping part 1.
[0100] The second clamping member 92 is disposed on the second side of the wiping part 1 (at one end opposite to the first clamping member 91) and works together with the first clamping member 91 to clamp the wiping part 1. Through linkage with the second driving member 26, it can move towards or away from the first clamping member 91, realizing the clamping and releasing operation of the wiping part 1. For example, the first clamping member 91 can be a clamping rod, which can be a cylindrical structure. The clamping rod utilizes the side of the cylindrical structure to cooperate with the second clamping member 92 to achieve clamping, which is particularly suitable for long, narrow side wiping parts 1.
[0101] The second driving component 26 is connected to the second clamping component 92 and is responsible for driving the second clamping component 92 to move in a direction close to the first clamping component 91, thereby clamping the wiping part 1. The second driving component 26 can be an electric driving component, such as a motor-driven component, which can precisely control the moving distance and speed, suitable for applications requiring high-precision adjustment. The second driving component 26 can also be a pneumatic driving component, using compressed air as a power source, offering rapid response and easy integration into automation systems, suitable for applications requiring quick adjustments. The second driving component 26 can also be a hydraulic driving component, using hydraulic oil as a medium, suitable for applications requiring greater thrust, providing stable power output. The second driving component 26 can also be a manually adjustable driving component, manually driving the second clamping component 92 to move.
[0102] The second driving member 26 can be connected to two second clamping members 92 symmetrically distributed on both sides of the support member 2 via the connecting block 27. This allows the two second clamping members 92 to move synchronously, thereby maintaining the balance of clamping.
[0103] like Figure 1 and Figure 7 As shown, in some modified embodiments of this disclosure, a feeding device 7 is also included. The feeding device 7 is connected to the support member 2 and can provide cleaning material to the target area of the wiping part 1 through the support member 2. The support member 2 includes a support head 21, a connecting structure 25, and a fixing member 22. The support head 21 is connected to the fixing member 22 through the connecting structure 25. The connecting structure 25 is at least partially disposed between the support head 21 and the wiping part 1. The connecting structure 25 can absorb cleaning material so that the cleaning material is evenly distributed on the connecting structure 25.
[0104] The feeding device 7 is connected to the support member 2, and its main function is to provide cleaning materials (such as detergents, solvents, etc.) to the target area of the wiping part 1. In this way, the cleaning material can be applied simultaneously during the wiping process, enhancing the cleaning effect. The feeding device 7 can be a spray-type feeding device 7, which uses nozzles to evenly spray the cleaning material onto the wiping part 1 or directly onto the workpiece surface. The feeding device 7 can also be an immersion-type feeding device 7, which allows the wiping part 1 to absorb the cleaning material through immersion or contact, ensuring that the cleaning material is evenly distributed across the entire wiping surface. The feeding device 7 can also be a coating-type feeding device 7, which uses rollers or other coating tools to apply the cleaning material to the wiping part 1, ensuring uniform coverage of the cleaning material.
[0105] For example, the conveying device 7 may include a transport hose 73, a storage tank 72, and a peristaltic pump 71. The transport hose 73 is a channel connecting the storage tank 72 and the support member 2, used to transport cleaning materials (such as cleaning agents or solvents). It has good flexibility and chemical resistance, ensuring that the cleaning materials can be smoothly and unimpededly transferred from the storage tank 72 to the support member 2 and finally to the wiping section 1. In addition, the transport hose 73 needs to be able to withstand certain pressure changes to ensure the stability of material flow. The storage tank 72 is connected to the transport hose 73 and is used to store the cleaning materials. It can be installed in a fixed position on the equipment. In addition to storing sufficient cleaning materials, the storage tank 72 also needs to have sealing performance to prevent material leakage or evaporation, and may also include a level indicator or automatic replenishment system to facilitate monitoring and management of material quantity. The peristaltic pump 71 is a pumping device particularly suitable for precise flow control. It propels fluid forward by squeezing the hose. In this system, the peristaltic pump 71 is responsible for pumping the cleaning materials in the storage tank 72 to the transport hose 73 as needed, and further to the support member 2. Its advantage lies in its ability to provide very precise flow control, avoiding overfeeding that leads to waste or underfeeding that affects cleaning results. The peristaltic pump 71 also has self-priming capability, allowing it to draw liquid from lower positions with minimal risk of contamination of the cleaning materials.
[0106] like Figure 7 As shown, a support 19 is provided at the bottom of the main structure, and a storage space is provided inside the support 19; the storage tank 72 of the material conveying device can be installed in the storage space.
[0107] like Figure 3As shown, the support member 2 consists of three key parts: a support head 21, a connecting structure 25, and a fixing member 22. This design not only improves the functionality of the support member 2 but also enhances its adaptability and flexibility. The support head 21 is the part that directly contacts the wiping part 1, responsible for providing physical support and helping to maintain the tension of the wiping part 1. The support head 21 ensures that the wiping part 1 can stably contact the workpiece surface while allowing the cleaning material to be evenly distributed on the wiping surface. The support head 21 can be connected to the transport hose 73 through the connecting joint 24 to ensure the stability of the transmission. The support head 21 has multiple connecting holes inside, which connect to the connecting joint 24 to evenly distribute the cleaning material conveyed by the conveying device 7 on the wiping surface of the support head 21.
[0108] The connecting structure 25 connects the support head 21 and the fixing member 22, and is at least partially disposed between the support head 21 and the wiping part 1. In addition to providing a mechanical connection, the connecting structure 25 can absorb and store cleaning material, allowing it to be evenly distributed throughout the wiping process. This helps maintain a consistent supply of cleaning material, preventing localized over- or under-supply. For example, the connecting structure 25 can be a pressure head fixing band that wraps around the wiping surface of the support head 21 and connects between the fixing member 22 and the support head 21. A clamping block 23 can also be provided to press the connecting structure 25 against both sides of the support head 21.
[0109] The fastener 22 is used to mount the support 2 onto the main body of the equipment, ensuring its fixed and stable position. The fastener 22 provides a solid foundation, allowing the support head 21 and the connecting structure 25 to maintain the correct posture and pressure during operation. For example, the fastener 22 can be a groove structure, whereby the support head 21 is embedded within the fastener 22 to ensure the stability of the support 2.
[0110] For example, the support head 21 can be made by custom molding and potting, with evenly distributed regular through holes in its interior design to ensure that alcohol can flow out and be installed on the fixing part 22. It is then wrapped with a connecting structure and fixed and pressed by a clamping block. Each time the glue is applied, the second drive part retracts and clamps the polyurethane pressure block to hold the wiping part in place, ensuring that the wiping part will not deviate or fall off due to excessive friction during the application of the glue.
[0111] The feeding device 7 begins supplying cleaning material to the connecting structure 25. The connecting structure 25 absorbs an appropriate amount of cleaning material and prepares to distribute it evenly to the target area of the wiping section 1. As the wiping process proceeds, the cleaning material on the connecting structure 25 gradually transfers to the wiping section 1 and is evenly distributed across the entire wiping surface through the wiping action. This design ensures a continuous supply and uniform coverage of cleaning material, improving cleaning efficiency and quality.
[0112] For example, the cleaning material can be alcohol. When using it, one end of the alcohol delivery hose can be connected to the alcohol storage container, and the other end to... Figure 3 Connect the nozzle to the connector shown, then attach the middle section of the hose to the peristaltic pump. The pump's rotation compresses air, drawing out the alcohol, which flows to the support head and permeates the wiping area. The flow rate of alcohol can be controlled by adjusting the peristaltic pump's speed and start-up time through program settings.
[0113] like Figure 5 and Figure 6 As shown, in some modified embodiments of this disclosure, a drive module 8 and a carrier 6 are also included. The carrier 6 is disposed on one side of the support 2 and is used to support the target workpiece 13 and drive the target workpiece 13 to move along the second direction so that the target workpiece 13 rubs against the wiping part 1. The carrier 6 includes a carrier base 61, a carrier body 62 and a carrier structure 63. The carrier base 61 is connected to the drive module 8, and the drive module 8 can drive the carrier base 61 to reciprocate along the second direction. The carrier body 62 is slidably connected to the carrier base 61 along the third direction. The second direction and the third direction satisfy the perpendicular condition. The carrier structure 63 is rotatably connected to the carrier body 62 and is used to fix the target workpiece 13.
[0114] The support base 61 is the foundation of the entire drive module 8 support component 6, and it is directly connected to the drive module 8. The drive module 8 controls the support base 61 to reciprocate along a second direction (e.g., the horizontal direction), thereby moving the entire support component 6 and the target workpiece 13 fixed on it. This design ensures that the workpiece can make full contact with the wiping part 1 according to a preset path, achieving the ideal cleaning effect.
[0115] The carrier body 62 is slidably connected to the carrier base 61 along a third direction (approximately perpendicular to the second direction, i.e., the front-to-back direction). The carrier body 62 can slide up and down on the carrier base 61, adjusting its front-to-back position relative to the wiping part 1. This allows the device to be compatible with different types of target workpieces and to flexibly adjust the contact pressure and angle according to workpieces of different sizes and shapes, ensuring optimal cleaning results.
[0116] The support structure 63 is rotatably connected to the support body 62 via the support shaft 64, and is specifically designed to fix the target workpiece 13. The support structure 63 allows the workpiece to rotate or tilt as needed for cleaning from different angles. For example, the angle can be adjusted from 0° to 120° around the support shaft 64 to accommodate different types of target workpieces. Furthermore, it can be equipped with clamps or other fixing devices to ensure the workpiece remains stable during cleaning, avoiding uneven cleaning caused by workpiece displacement.
[0117] A vacuum suction cup 65 can be installed on the support structure 63 to hold the target workpiece 13. The target workpiece 13 can be loaded into a pressure-holding box 14, which holds pressure on the target workpiece 13. At this time, the vacuum suction cup 65 can hold the pressure-holding box 14, thereby indirectly fixing the target workpiece 13. A positioning pin 67 can be installed on the support structure 63 to prevent the pressure-holding box 14 from being placed in the wrong direction. A sensor 66 can also be installed on the support structure 63 to sense the presence or absence of a product on the carrier.
[0118] For example, the target workpiece can be a mobile phone frame. When in use, the pressure-holding box with the mobile phone frame is placed on the support structure 63. The sensor detects the bottom of the pressure-holding box and activates the vacuum generator function. The vacuum suction cup adsorbs and fixes the pressure-holding box. The drive module drives the support body to move back and forth 3 times in the second direction. During the movement, the support head and wiping part contact the mobile phone frame and wipe off the excess glue. After the glue wiping action is completed, the vacuum is closed, and the next operator takes out the product.
[0119] The inclusion of the carrier component 6 allows the adhesive application device to be compatible with various electronic devices, including curved-screen and flat-screen mobile phones, tablets, and laptops. For example, by adjusting the front and rear positions of the carrier body 62, adjusting the angle of the carrier structure 63 via the carrier pivot 64, and adjusting the vertical positions of the support component 2 and the wiping part 1 and their distance from the carrier component 6 via the adjustment device 15, the device can accommodate the clamping and adhesive application of various types of electronic devices, such as curved-screen and flat-screen mobile phones, tablets, and laptops. Example
[0120] like Figure 8 As shown, an adhesive application system includes a worktable 16 and adhesive application devices 17, with the worktable 16 positioned between the adhesive application devices 17. The adhesive application device 17 includes a wiping section 1, a support member 2, a feeding structure 4, and a discharging structure 3. The wiping section 1 has a target area for contacting and wiping a target workpiece 13. The support member 2 contacts the wiping section 1 to support the target area. A first end of the wiping section 1 is connected to the feeding structure 4, and a second end of the wiping section 1 is connected to the discharging structure 3. The discharging structure 3 can drive the wiping section 1 to move to switch the target area contacted by the support member 2.
[0121] The workbench 16, located between the adhesive application devices 17, provides a stable and flat surface for placing the target workpiece 13. The workbench 16 ensures the workpiece remains fixed and stable during cleaning, facilitating effective cleaning operations by the adhesive application devices 17. Operators can work on the workbench 16 manually; for example, they can rotate the workpiece supporting the structure 63 on the workbench 16 so that the next adhesive application device 17 can apply adhesive to the other side of the workpiece. Operators can also apply adhesive to other parts of the workpiece on the workbench 16 that are not in contact with the adhesive application devices 17, thus completing the entire adhesive application process.
[0122] The specific structure of the adhesive application device 17 can be as described in Embodiment 1, and will not be repeated here. In this disclosure, the first end of the wiping part 1 of the wiping system is connected to the feeding structure 4, and the second end of the wiping part 1 is connected to the unloading structure 3. The feeding structure 4 and the unloading structure 3 cooperate to switch the target area contacted by the support member 2 to introduce clean wiping material or a new wiping area. The support member 2 provides stable support for the wiping process, ensuring that each workpiece contacts the uncontaminated wiping part 1 (i.e., the target area), thereby avoiding the cross-contamination problem caused by the repeated use of the same adhesive cloth in traditional methods, and thus improving the adhesive application effect.
[0123] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A glue-applying device, characterized in that, include: A wiping section having a target area for contacting and wiping a target workpiece; A support member that contacts the wiping portion to support the target area; A feeding structure, wherein the first end of the wiping part is connected to the feeding structure; The material feeding structure is provided, with the second end of the wiping part connected to the material feeding structure. The material feeding structure can drive the wiping part to move to switch the target area contacted by the support member.
2. The adhesive application equipment according to claim 1, characterized in that, The feeding structure includes: A first rotating shaft is in contact with the wiping part and can drive the wiping part to move; The second rotating shaft is connected to the second end of the wiping part, and the second rotating shaft and the first rotating shaft are connected by a belt; A clamping member is disposed on the side of the wiping part away from the first rotating shaft, which can clamp the wiping part against the first rotating shaft; When the torque required by the second rotating shaft is less than that required by the first rotating shaft, the first rotating shaft drives the second rotating shaft to rotate via a belt. When the torque required by the second rotating shaft is greater than that required by the first rotating shaft, the belt slides relative to the first rotating shaft.
3. The adhesive application equipment according to claim 2, characterized in that, The feeding structure further includes a first driving member, which is connected to the abutment so that the abutment can move in a direction close to the first rotating shaft.
4. The adhesive application equipment according to claim 2, characterized in that, Also includes: The main body of the structure, the feeding structure, the unloading structure and the supporting member are connected to the main body of the structure; The feeding structure includes: A third rotating shaft is connected to the first end of the wiping part, and the wiping part can be wound around the third rotating shaft; A slider is slidably connected to the main structure, and the wiping part bypasses the slider and contacts the support member. The wiping part can drive the slider to slide. An elastic element is connected to the slider, and the elastic element is capable of elastic deformation when the slider slides to keep the wiping part in a taut state.
5. The adhesive application equipment according to claim 4, characterized in that, Also includes: A buffer member is disposed on the main body and connected to the side of the support member away from the wiping part, and the buffer member is capable of elastic deformation in a first direction; An adjustment device is connected to the main body, and the adjustment device is capable of driving the main body to move along a first direction.
6. The adhesive application equipment according to claim 1, characterized in that, Also includes: The clamping part is disposed on both sides of the support member, and the clamping part clamps the wiping part so that the target area of the wiping part is in a taut state.
7. The adhesive application equipment according to claim 6, characterized in that, The clamping part includes: A first clamping member is disposed on a first side of the wiping portion; The second clamping member is disposed on the second side of the wiping part; The second driving member is connected to the second clamping member. The second driving member can drive the second clamping member to move in a direction close to the first clamping member to clamp the wiping part.
8. The adhesive application equipment according to claim 1, characterized in that, Also includes: A feeding device, which is connected to the support member, is able to provide cleaning material to the target area of the wiping part through the support member; The support member includes a support head, a connecting structure, and a fixing member. The support head is connected to the fixing member through the connecting structure. The connecting structure is at least partially disposed between the support head and the wiping part. The connecting structure can absorb the cleaning material so that the cleaning material is evenly distributed on the connecting structure.
9. The adhesive application equipment according to claim 1, characterized in that, Also includes: Driver module; A carrier is disposed on one side of the support member and is used to support the target workpiece and drive the target workpiece to move along the second direction so that the target workpiece rubs against the wiping part; The carrier includes: A support base is connected to a drive module, which is capable of driving the support base to reciprocate along a second direction. A supporting body is slidably connected to the supporting base along a third direction, wherein the second direction and the third direction satisfy a perpendicular condition; A load-bearing structure is rotatably connected to the load-bearing body and is used to fix the target workpiece.
10. An adhesive application system, characterized in that, include: Workbench; A glue-applying device, wherein the workbench is arranged between the glue-applying devices; The adhesive application equipment includes: A wiping section having a target area for contacting and wiping a target workpiece; A support member that contacts the wiping portion to support the target area; A feeding structure, wherein the first end of the wiping part is connected to the feeding structure; The material feeding structure is provided, with the second end of the wiping part connected to the material feeding structure. The material feeding structure can drive the wiping part to move to switch the target area contacted by the support member.