Material storage mechanism and rubberizing device
By designing the material storage mechanism, the problem of interruption in the supply of adhesive paper in traditional adhesive patching devices is solved, and the continuous supply of adhesive paper and the production efficiency is improved, while reducing the space occupation of the device.
Patent Information
- Application Number
- CN202423123526.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Traditional adhesive patching devices lack material storage mechanisms, resulting in interruption of the supply of adhesive paper and affecting production efficiency.
A material storage mechanism is designed, including a material storage rack, feed guide structure, support guide structure, material storage structure and discharge guide structure. Through the combined guide and sliding roller design of these structures, the continuous supply of adhesive paper is realized, and when the adhesive paper in the feed mechanism is not materialized, the material is switched to the material storage mechanism to use.
The continuous supply of tape is achieved, the downtime is avoided, the production efficiency is improved, and the equipment is occupied by the space.
Smart Images

Figure CN223149918U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of adhesive application, and particularly relates to a material storage mechanism and an adhesive application device. Background Art
[0002] In modern industrial production, adhesive tapes are widely used. There are many problems with traditional adhesive application devices. One of them is the lack of a material storage mechanism, which causes the adhesive tape to lose high continuity and results in supply interruption during material replacement, greatly affecting production efficiency.
[0003] Therefore, it is necessary to improve the existing technology to overcome the defects in the existing technology. Summary of the Utility Model
[0004] In view of this, an embodiment of the present application provides a material storage mechanism for solving at least one problem in the background art, including:
[0005] A material storage rack;
[0006] A feeding guiding structure, installed on the material storage rack, including a first guiding roller and a second guiding roller adapted to the first guiding roller, and the adhesive tape is adapted to pass between the first guiding roller and the second guiding roller;
[0007] A supporting guiding structure, installed on one side of the feeding guiding structure along a first direction, including a third guiding roller and a fourth guiding roller, and the adhesive tape passing through the feeding guiding structure passes between the third guiding roller and the fourth guiding roller;
[0008] A material storage structure, located below the supporting guiding structure, including a fixed roller disposed close to the feeding guiding structure and a plurality of sliding rollers disposed away from the feeding guiding structure, and the adhesive tape passing through the supporting guiding structure alternately winds around the sliding rollers and the fixed roller in sequence, so that the plurality of sliding rollers move close to the fixed roller when acted upon by the adhesive tape;
[0009] A discharging guiding structure, including a fifth guiding roller and a sixth guiding roller, and the adhesive tape passing through the material storage structure passes between the fifth guiding roller and the sixth guiding roller;
[0010] Wherein, the feeding guiding structure is disposed between the discharging guiding structure and the supporting guiding structure and is disposed close to the feeding guiding structure.
[0011] Optionally, for the above material storage mechanism, the material storage mechanism further includes a sliding structure, the sliding structure includes a second guiding rail disposed along the height direction and a sliding plate adapted to the second guiding rail, the sliding plate extends along the first direction, and the plurality of sliding rollers are fixed on the sliding plate.
[0012] Optionally, for the above-mentioned material storage mechanism, the material storage mechanism further includes a detection structure provided on the material storage rack;
[0013] The material storage rack is provided with a first detection position above and a second detection position below. The detection structure includes a first detector and a second detector respectively provided above the first detection position and the second detection position. The first detector alarms when it detects the plurality of sliding rollers.
[0014] Optionally, for the above-mentioned material storage mechanism, the sliding structure further includes a limiting structure provided below the guide rail.
[0015] The present application also provides a glue pasting device, including:
[0016] A mounting rack, including a mounting plate and a first frame body, is mounted on the mounting plate through a first guide rail and can move along a first direction under the action of an external force;
[0017] A material pulling mechanism, located above the mounting plate, is used to contact a first target position to attach the adhesive tape to the first target position and generate a pulling force at the same time;
[0018] A material storage mechanism, provided below the mounting plate, includes the material storage mechanism described in any one of the above;
[0019] A feeding mechanism, provided above the mounting plate, is used for winding the adhesive tape;
[0020] Wherein, the adhesive tape passes through the feeding guide structure, the material storage structure, and the discharging guide structure in sequence after being wound by the feeding mechanism.
[0021] Optionally, for the above-mentioned glue pasting device, the device further includes a power mechanism provided between the material pulling mechanism and the feeding mechanism. The power mechanism includes a power source, a first pressure wheel connected to the power source, and a second pressure wheel adapted to the first pressure wheel. The power source can drive the first pressure wheel to drive the second pressure wheel to rotate.
[0022] Optionally, for the above-mentioned glue pasting device, the power mechanism further includes a third slide rail provided on the first frame body;
[0023] The second pressure wheel is provided with a slider adapted to the slide rail, and the second pressure wheel can move closer to or away from the first pressure wheel along the slide rail.
[0024] Optionally, for the above-mentioned adhesive pasting device, the feeding mechanism includes a fourth slide rail fixed on the mounting plate, a mounting seat movable relative to the fourth slide rail, a winding rack mounted on the mounting seat, and an extension plate located on one side of the winding rack. A plurality of first winding disks are arranged on the winding rack, and the adhesive tape is wound on the first winding disks, and the end of the adhesive tape extends to the extension plate.
[0025] Optionally, for the above-mentioned adhesive pasting device, a pre-sticking block is arranged on the extension plate for fixing the end of the adhesive tape.
[0026] Compared with the prior art, the present application has the following beneficial effects: By providing a storage mechanism, sufficient materials are stored in the storage mechanism. When the adhesive tape in the feeding mechanism runs out of materials and needs to be replaced, the materials in the storage mechanism can be temporarily used, so that the adhesive pasting device can maintain high continuity without downtime, improving work efficiency; In addition, by arranging the feeding guiding structure and the discharging guiding structure close to each other, the distance between other mechanisms on both sides of the storage mechanism can be reduced, reducing the occupied space. Description of the Drawings
[0027] Figure 1 is a schematic structural diagram of the adhesive pasting device shown in this embodiment;
[0028] Figure 2 is a schematic structural diagram of the adhesive pasting device in another direction shown in this embodiment;
[0029] Figure 3 is a schematic structural diagram of the feeding mechanism of the adhesive pasting device shown in this embodiment;
[0030] Figure 4 is a schematic partial structural diagram of the adhesive pasting device shown in this embodiment;
[0031] Figure 5 is Figure 4 the enlarged schematic diagram of the shown part;
[0032] Figure 6 is a schematic structural diagram of the tape pulling mechanism of the adhesive pasting device shown in this embodiment;
[0033] Figure 7 is a schematic structural diagram of the cutting and pressure maintaining mechanism of the adhesive pasting device shown in this embodiment;
[0034] Figure 8 is a schematic structural diagram of another part of the adhesive pasting device shown in this embodiment;
[0035] Figure 9 is a schematic structural diagram of the storage mechanism of the adhesive pasting device shown in this embodiment;
[0036] Figure 10It is a schematic structural diagram of the transportation component of the adhesive pasting device shown in this embodiment.
[0037] Reference numerals: A - adhesive tape, B - connecting belt;
[0038] 1 - mounting frame, 11 - mounting plate, 12 - first frame body, 13 - first guide rail;
[0039] 2 - feeding mechanism, 21 - fourth slide rail, 22 - mounting seat, 23 - winding frame, 231 - first winding disc, 24 - extension plate, 241 - pre - sticking block;
[0040] 3 - transition mechanism, 31 - transition wheel;
[0041] 4 - pulling mechanism, 41 - second frame body, 42 - first pressure wheel assembly, 421 - first motor, 422 - first pressure wheel, 423 - second pressure wheel, 424 - fourth cylinder, 425 - first slide rail, 426 - first limiting member, 43 - guide wheel assembly;
[0042] 5 - connecting mechanism, 51 - second winding disc, 52 - second pressure wheel assembly, 521 - third pressure wheel, 522 - fourth pressure wheel, 53 - shearing assembly, 54 - transportation component, 541 - seventh cylinder, 542 - connecting arm, 543 - suction attachment, 55 - detection component, 551 - sliding wheel, 552 - second slide rail, 553 - photoelectric detection element, 56 - adhesive pressing component, 561 - adhesive pressing block, 562 - fifth cylinder, 563 - adhesive pressing plate, 57 - clamping component, 571 - sixth cylinder, 572 - jaw;
[0043] 6 - cutting and pressure - maintaining mechanism, 61 - fixing frame, 62 - first cylinder, 63 - second cylinder, 64 - cutter, 65 - third cylinder, 66 - pressing plate;
[0044] 7 - elongation plate;
[0045] 8 - power mechanism, 81 - power source, 82 - first pressure wheel, 83 - second pressure wheel, 84 - third slide rail, 85 - slider;
[0046] 9 - storage mechanism, 91 - storage rack, 92 - feeding guiding structure, 921 - first guiding roller, 922 - second guiding roller, 93 - supporting guiding structure, 931 - third guiding roller, 932 - fourth guiding roller, 94 - storage structure, 941 - fixed roller, 942 - sliding roller, 95 - discharging guiding structure, 951 - fifth guiding roller, 952 - sixth guiding roller, 96 - sliding structure, 961 - second guiding rail, 962 - sliding plate, 97 - detection structure, 971 - first detector, 973 - limiting structure. Detailed implementation manners
[0047] Exemplary embodiments disclosed in the present application will be described in more detail below. In the following description, numerous specific details are given to provide a more thorough understanding of the present application. However, it will be apparent to those skilled in the art that the present application may be practiced without one or more of these details. In other instances, some well-known technical features are not described in order to avoid obscuring the present application; that is, not all features of the actual embodiments are described here, and the well-known functions and structures are not described in detail.
[0048] It should be understood that when an element or layer is referred to as being "on", "adjacent to", "connected to" or "coupled to" another element or layer, it can be directly on, adjacent to, connected or coupled to the other element or layer, or there may be intervening elements or layers. In contrast, when an element is referred to as being "directly on", "directly adjacent to", "directly connected to" or "directly coupled to" another element or layer, there are no intervening elements or layers. It should be understood that although the terms first, second, third, etc. may be used to describe various elements, components, regions, layers and / or parts, these elements, components, regions, layers and / or parts should not be limited by these terms. These terms are only used to distinguish one element, component, region, layer or part from another element, component, region, layer or part. Thus, without departing from the teachings of the present application, the first element, component, region, layer or part discussed below may be referred to as the second element, component, region, layer or part. And when discussing the second element, component, region, layer or part, it does not imply that the present application necessarily has a first element, component, region, layer or part.
[0049] Spatial relationship terms such as "under", "below", "beneath", "underneath", "above", "over", etc. are used herein for convenience in describing the relationship of one element or feature shown in the figures to other elements or features. It should be understood that, in addition to the orientation shown in the figures, the spatial relationship terms are intended to also include different orientations of the device in use and operation.
[0050] The purpose of the terms used herein is only to describe specific embodiments and is not a limitation of the present application. As used herein, the singular forms "a", "an" and "the" are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the terms "comprising" and / or "including", when used in this specification, specify the presence of the stated features, integers, steps, operations, elements and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components and / or groups. As used herein, the term "and / or" includes any and all combinations of the related listed items.
[0051] To thoroughly understand this application, detailed steps and structures will be presented in the following description to illustrate the technical solution of this application. The preferred embodiments of this application are described in detail below. However, in addition to these detailed descriptions, this application may have other implementation manners.
[0052] Please refer to Figure 1 and Figure 2 As shown, the glue - sticking device according to an embodiment of this application is adapted to stick the adhesive tape to a first target position, which can be anywhere such as a desktop, a wall surface, etc. The glue - sticking device includes a mounting frame 1, a feeding mechanism 2, a transition mechanism 3, and a tape - pulling mechanism 4. Among them, the mounting frame 1 includes a mounting plate 11 and a first frame body 12. The first frame body 12 is installed on the mounting plate 11 through a first guide rail 13 and can move along a first direction under the action of an external force. The feeding mechanism 2 is installed on the mounting plate 11 and is used to provide the adhesive tape. The tape - pulling mechanism 4 can pull the adhesive tape on the feeding mechanism 2 to stick it to the first target position.
[0053] Specifically, referring to Figure 1 and Figure 3 As shown, the feeding mechanism 2 is arranged above the mounting plate 11 and includes a fourth slide rail 21 fixed on the mounting plate 11, a mounting seat 22 that can move relative to the fourth slide rail 21, a winding frame 23 installed on the mounting seat 22, and an extension plate 24 located on one side of the winding frame 23. A number of first winding disks 231 are arranged on the winding frame 23, and the adhesive tape is wound around the number of first winding disks 231, and the end of the adhesive tape extends to the extension plate 24.
[0054] It should be noted that in this embodiment, the number of first winding disks 231 is installed on the winding frame 23 along a second direction, and the adhesive tape is wound on each first winding disk 231. Each first winding disk 231 can move along the fourth slide rail 21 in the second direction under the action of an external force. When the adhesive tape on one of the first winding disks 231 is used up, the entire winding frame 23 is pushed to move along the second direction so that the adhesive tape on other first winding disks 231 can continue to stick.
[0055] Furthermore, a pre - sticking block 241 is arranged on the extension plate 24, and the pre - sticking block 241 is used to fix the end of the adhesive tape on each first winding disk 231 to prevent the end from warping and affecting subsequent glue - sticking related operations.
[0056] Refer to Figure 1 and Figure 4 As shown, the transition mechanism 3 is installed on the first frame body 12. The transition mechanism 3 includes at least one transition wheel 31, and the adhesive tape wound from the winding frame 23 passes through at least one transition wheel 31 in sequence.
[0057] Refer to Figure 1 and Figure 6As shown in the figure, the tape pulling mechanism 4 includes a second frame body 41, a first pressure wheel assembly 42 mounted on the second frame body 41, and a guide wheel assembly 43. The first frame body 12 is located between the second frame body 41 and the feeding mechanism 2. Specifically, the first pressure wheel assembly 42 includes a first motor 421 mounted on the second frame body 41, a first pressure wheel 422 connected to the first motor 421, a second pressure wheel 423 located above the first pressure wheel 422, a fourth cylinder 424 connected to the second pressure wheel 423, and a first slide rail 425 provided on the second frame body 41. The fourth cylinder 424 can drive the second pressure wheel 423 to approach or move away from the first pressure wheel 422 along the first slide rail 425 to have a separation position and a pressing position, so as to press the adhesive tape passing between the first pressure wheel 422 and the second pressure wheel 423. When the second pressure wheel 423 is in the pressing position, the first motor 421 can drive the first pressure wheel 422 to rotate, so as to drive the second pressure wheel 423 to rotate, thereby providing conveying power for the adhesive tape passing between the first pressure wheel 422 and the second pressure wheel 423, and realizing that while pasting the adhesive tape in the tape pulling mechanism 4, the first winding disc 231 on the feeding mechanism 2 can continuously supply the adhesive tape.
[0058] It can be understood that the second pressure wheel 423 is set as a structure that can move relative to the first pressure wheel 422. On the one hand, it is convenient to pass the adhesive tape between the first pressure wheel 422 and the second pressure wheel 423. On the other hand, it is convenient to replace the adhesive tape with different thicknesses.
[0059] In this embodiment, the first pressure wheel assembly 42 further includes a first limiting member 426 provided above the first slide rail 425 to prevent the second pressure wheel 423 from disengaging from the first slide rail 425.
[0060] Furthermore, in the horizontal direction, the first pressure wheel assembly 42 is arranged higher than the guide wheel assembly 43, so as to form a reasonable slope during the conveying process of the adhesive tape, facilitate the smooth passing of the adhesive tape from the feeding structure through the first pressure wheel assembly 42 and the guide wheel assembly 43, reduce the jamming of the adhesive tape during the conveying process, and improve the conveying smoothness of the adhesive tape.
[0061] In practical applications, if the adhesive tape in one of the first winding discs 231 is used up and other first winding discs 231 need to be replaced, the entire device needs to be shut down, reducing the pasting efficiency.
[0062] To solve the above technical problems, in this embodiment, refer to Figure 1 、 Figure 4 、 Figure 5 and Figure 7As shown, the taping device further includes an articulation mechanism 5 and a cutting and pressing mechanism 6 installed on one side of the feeding mechanism 2. Among them, the articulation mechanism 5 is used to provide an articulation tape to connect the heads and tails of two sections of adhesive tape, and the cutting and pressing mechanism 6 is used to cut and fix the adhesive tape. It should be noted that in this embodiment, the articulation tape can be the same as the adhesive tape on the first winding disc 231 or other articulation tapes. This embodiment does not specifically limit the specific type of the articulation tape, which is determined according to the actual situation.
[0063] It can be understood that in this embodiment, the cutting and pressing mechanism 6 is used to cut the used-up adhesive tape from the corresponding first winding disc 231 to separate it, and can press the articulation tape attached to the two sections of adhesive tape. It can be understood that when an articulation tape is needed to connect two sections of adhesive tape, the cutting and pressing mechanism 6 first cuts and disconnects the end of the used-up adhesive tape from the corresponding first winding disc 231, and then moves the winding rack 23 so that the end of the adhesive tape on the extension plate 24 corresponding to another first winding disc 231 is aligned with the end of the other adhesive tape. The articulation mechanism 5 places the articulation tape above the two sections of adhesive tape, and the cutting and pressing mechanism 6 presses and holds the articulation tape to improve the connection stability between the articulation tape and the two sections of adhesive tape.
[0064] Specifically, referring to Figure 5 As shown, the articulation mechanism 5 includes a second winding disc 51, a second pressure wheel assembly 52, a shearing assembly 53, and a transportation assembly 54 located on one side of the shearing assembly 53. Among them, the second winding disc 51 is used to wind the articulation tape, the second pressure wheel assembly 52 is adapted to generate a conveying force to pull the articulation tape out from the second winding disc 51, the shearing assembly 53 is adapted to shear the pulled-out articulation tape, and the transportation assembly 54 is used to transport the articulation tape above the two sections of adhesive tape to connect the end of the adhesive tape on the pulling mechanism 4 with the head of the adhesive tape on the feeding mechanism 2, so as to realize the replacement of the first winding disc 231 without stopping the machine and improve the taping efficiency.
[0065] More specifically, the second pressure wheel assembly 52 includes a third pressure wheel 521 connected to a rotating motor and a fourth pressure wheel 522 adapted to the third pressure wheel 521. The fourth pressure wheel 522 can approach or move away from the third pressure wheel 521 in the height direction to press or release the articulation tape passing between the third pressure wheel 521 and the fourth pressure wheel 522; when an articulation tape is needed to connect two sections of adhesive tape, the fourth pressure wheel 522 and the third pressure wheel 521 are pressed together, and the rotating motor drives the third pressure wheel 521 to rotate, thereby driving the fourth pressure wheel 522 to rotate to realize the conveying of the articulation tape on the second winding disc 51. In this embodiment, the fourth pressure wheel 522 is set to a structure that can move relative to the third pressure wheel 521, which can realize the passing of articulation tapes with different thicknesses.
[0066] Referring to Figure 10As shown in the figure, the transportation component 54 includes a seventh cylinder 541, a connecting arm 542 connected to the seventh cylinder 541, and an adsorbing component 543 connected to the connecting arm 542. The adsorbing component 543 can adsorb the sheared connecting belt through the adsorption force. The seventh cylinder 541 can drive the connecting arm 542 to drive the adsorbing component 543 to move, so as to convey the sheared connecting belt to the second target position, which is above the two adhesive tapes.
[0067] The connecting mechanism 5 further includes a detection component 55 located between the second pressing wheel component 52 and the shearing component 53. The detection component 55 includes a sliding wheel 551, a second sliding rail 552, and two photoelectric detection components 553 arranged at both ends of the second sliding rail 552. The connecting belt pulled out from the second winding disc 51 passes through the second pressing wheel component 52 and then winds around the sliding wheel 551. The sliding wheel 551 can move up and down along the second sliding rail 552 under the tension of the connecting belt.
[0068] The connecting mechanism 5 further includes a glue pressing component 56 and a clamping component 57 respectively arranged on both sides of the shearing component 53. Among them, the glue pressing component 56 is arranged between the detection component 55 and the shearing component 53, and the glue pressing component 56 is used to fix the adhesive tape, and the shearing component 53 is used to shear the adhesive tape.
[0069] Specifically, the glue pressing component 56 includes a glue pressing block 561 installed on the first frame 12, a fifth cylinder 562 connected to the glue pressing block 561, and a glue pressing plate 563 installed on the first frame 12. The fifth cylinder 562 can drive the glue pressing block 561 to move, so as to press the connecting belt against the glue pressing plate 563; the clamping component 57 includes a sixth cylinder 571 and a pair of clamping jaws 572 connected to the sixth cylinder 571. The sixth cylinder 571 can drive the pair of clamping jaws 572 to move relatively or towards each other, so as to clamp or release the connecting belt.
[0070] When it is necessary to use the connecting belt to connect two adhesive tapes, the end of the connecting belt extends between a pair of clamping jaws 572, and the sixth cylinder 571 drives the pair of clamping jaws 572 to move relatively, so as to clamp the end of the connecting belt. At this time, the connecting belt passes through the shearing component 53, and the fifth cylinder 562 drives the glue pressing block 561 to move, so as to press the connecting belt against the glue pressing plate 563, so that the connecting belt between the glue pressing block 561 and the clamping jaws 572 is tightened, so as to keep the tension force, so as to facilitate the shearing component 53 to shear the connecting belt.
[0071] In this embodiment, the connection mechanism 5 further includes an extension plate 7 installed on the first frame 12. The extension plate 7 can move in the first direction following the first frame 12 to approach or move away from the extension plate 24 of the feeding mechanism 2, so as to align and approach the tail end of the adhesive tape on the feeding mechanism 2 with the head end of the adhesive tape on the tape pulling mechanism 4, facilitating the adsorption assembly to place the cut connection tape above the two sections of adhesive tape. It should be noted that in this embodiment, a detector is also provided on the extension plate 7, and this detector is used to detect whether the two sections of adhesive tape are successfully connected. This detector can be an optoelectronic sensor, a vision sensor, an ultrasonic sensor, an infrared sensor, etc.
[0072] As described above, referring to Figure 7 As shown, the cutting and pressing mechanism 6 includes a fixed frame 61, a first cylinder 62 installed on the fixed frame 61, a second cylinder 63 connected to the first cylinder 62, a cutter 64 connected to the second cylinder 63, a third cylinder 65 installed on the fixed frame 61, and a pressing plate 66 connected to the third cylinder 65. The cutter 64 and the pressing plate 66 are respectively located on both sides of the extension plate 24. The first cylinder 62 and the second cylinder 63 cooperate to drive the cutter 64 to move so as to cut the adhesive tape, and the third cylinder 65 can drive the pressing plate 66 to press the connection tape and the adhesive tape to connect the connection tape with the two sections of adhesive tape.
[0073] In this embodiment, the cutting operation and the pressing operation are integrally arranged, making the entire cutting and pressing mechanism 6 have a compact structure and small occupied space, thereby reducing the occupied space of the entire device. Moreover, the integrated setting reduces the connection and coordination time between components. When performing the cutting and pressing operations, since the components are relatively close, the action response is faster, and the process from cutting the adhesive tape to pressing can be quickly completed, improving the work efficiency.
[0074] In this embodiment, referring to Figure 1 and Figure 4 As shown, the adhesive tape pasting device further includes a power mechanism 8 arranged between the tape pulling mechanism 4 and the feeding mechanism 2. This power mechanism 8 is installed on the first frame 12 and includes a power mechanism 8 arranged between the tape pulling mechanism 4 and the feeding mechanism 2. The power mechanism 8 includes a power source 81, a first pressure wheel 82 connected to the power source 81, and a second pressure wheel 83 adapted to the first pressure wheel 82. The power source 81 can drive the first pressure wheel 82 to drive the second pressure wheel 83 to rotate. Further, the power mechanism 8 further includes a third slide rail 84 arranged on the first frame 12; a slider 85 adapted to the third slide rail 84 is arranged on the second pressure wheel 83, and the second pressure wheel 83 can move along the third slide rail 84 to approach or move away from the first pressure wheel 82, so as to facilitate adjusting the pressure between the first pressure wheel 82 and the second pressure wheel 83 and can be applicable to adhesive tapes of different thicknesses, ensuring versatility.
[0075] As described above, in this embodiment, referring toFigure 8 and Figure 9 As shown in Figure 9 , the taping device further includes a material storage mechanism 9, which includes a material storage rack 91 installed below the mounting plate 11, a feeding guiding structure 92 installed on the material storage rack 91, a supporting guiding structure 93 installed along the first direction on one side of the feeding guiding structure 92, and a material storage structure 94 and a discharging guiding structure 95 located below the supporting guiding structure 93; the adhesive tape passing through the automatic power mechanism 8 sequentially passes through the material storage mechanism 9 and the tape pulling mechanism 4. The advantage of such a setting is that the material storage mechanism 9 is arranged below the mounting plate 11, which can not only realize the storage of the adhesive tape, prevent the feeding mechanism 2 from running out of materials or the connecting belt from being connected, and there is no adhesive tape for the tape pulling mechanism 4 to pull out, resulting in shutdown or damage to the device, but also does not increase the occupied area of the entire device in the horizontal direction, and the structure of the entire device is compact.
[0076] It should be noted that in this embodiment, the feeding guiding structure 92 is arranged between the discharging guiding structure 95 and the supporting guiding structure 93 and is close to the feeding guiding structure 92. By arranging the feeding guiding structure 92 and the discharging guiding structure 95 close to each other, the adhesive tape passing through the automatic power mechanism 8 can first pass through the feeding guiding structure 92 and then pass through the discharging guiding structure 95 to the tape pulling mechanism 4, so that the tape pulling mechanism 4 above the mounting plate 11 and the power mechanism 8 can also be arranged relatively close to each other. That is to say, by reducing the distance between the feeding guiding structure 92 and the discharging guiding structure 95 in the first direction, the distance between the power mechanism 8 and the tape pulling mechanism 4 in the first direction can be reduced, further making the structure of the entire device compact and reducing the occupied space.
[0077] Specifically, the feeding guiding structure 92 includes a first guiding roller 921 and a second guiding roller 922 adapted to the first guiding roller 921, and the adhesive tape is adapted to pass between the first guiding roller 921 and the second guiding roller 922 to guide the adhesive tape.
[0078] The supporting guiding structure 93 includes a third guiding roller 931 and a fourth guiding roller 932, and the adhesive tape passing through the feeding guiding structure 92 passes between the third guiding roller 931 and the fourth guiding roller 932 to guide the adhesive tape.
[0079] The discharging guiding structure 95 includes a fifth guiding roller 951 and a sixth guiding roller 952, and the adhesive tape passing through the material storage structure 94 passes between the fifth guiding roller 951 and the sixth guiding roller 952.
[0080] The material storage structure 94 includes a fixed roller 941 disposed close to the feeding guide structure 92 and a plurality of sliding rollers 942 disposed away from the feeding guide structure 92. The adhesive tape passing through the self-supporting guide structure 93 is alternately wound around the sliding rollers 942 and the fixed roller 941 in sequence, so that the plurality of sliding rollers 942 move close to the fixed roller 941 when acted upon by the adhesive tape.
[0081] The material storage mechanism 9 further includes a sliding structure 96. The sliding structure 96 includes a second guide rail 961 disposed in the height direction and a sliding plate 962 adapted to the second guide rail 961. The sliding plate 962 extends in the first direction, and a plurality of sliding rollers 942 are fixed on the sliding plate 962 to ensure the consistency of the plurality of sliding rollers 942.
[0082] Further, the material storage mechanism 9 further includes a detection structure 97 disposed on the material storage rack 91; a first detection position is provided above and a second detection position is provided below on the material storage rack 91. The detection structure 97 includes a first detector 971 and a second detector respectively disposed above the first detection position and the second detection position. The first detector 971 alarms when detecting the plurality of sliding rollers 942.
[0083] In this embodiment, the sliding structure 96 further includes a limiting structure 973 disposed below the guide rail to prevent the sliding plate 962 from disengaging from the second guide rail 961.
[0084] In summary, the working process of the glue - sticking device shown in this embodiment is as follows: Under the action of an external force, a certain first winding disc in the feeding mechanism moves to the vicinity of the cutting and pressure - maintaining mechanism, so that the extension plate corresponding to the first winding disc is aligned with the elongation plate on the first frame body. Then, the adhesive tape on the first winding disc passes through or winds around the power mechanism, several transition wheels, the feeding guiding structure, the material - storing structure, the discharging guiding structure, the guiding wheel assembly, and the first pressing wheel assembly in sequence. The adhesive tape passing through the first pressing wheel assembly is attached to the first target position, and at the same time, the first winding disc is pulled to rotate to complete the glue - sticking. When the adhesive tape on the first winding disc is used up, the first cylinder and the second cylinder of the cutting and pressure - maintaining mechanism cooperate to drive the cutter to move, so as to cut off the tail end of the adhesive tape from the first winding disc. The material - pulling mechanism continuously pulls the material, so that the tail end is located on the elongation plate on the first frame body. The fifth cylinder drives the glue - pressing block to move to press the tail end tightly on the elongation plate. At the same time, another first winding disc is moved so that its corresponding extension plate is aligned with the elongation plate. Then, the connecting belt is sheared by the shearing assembly and transported by the transportation assembly to the upper part of the two sections of adhesive tape. The third cylinder can drive the pressing plate to move to press the connecting belt and the two sections of adhesive tape tightly to connect them. Among them, during the connection process, since the tail end of the first section of adhesive tape is pressed tightly on the elongation plate by the glue - pressing block, when the material - pulling mechanism continues to pull the material, the pulling force will drive the sliding plate in the material - storing mechanism to move towards the fixed roller to temporarily feed the stored adhesive tape. At this time, the sliding plate will gradually approach the first position from the second position below. During the connection process of the connecting belt, if the first detector detects the sliding plate, it means that there is no material in the material - storing mechanism, and at this time, the device needs to be stopped; if the first detector does not detect the sliding plate, it means that there is still some adhesive tape in the material - storing mechanism; if the second detector detects the sliding plate, it means that the connection process is over, and the sliding plate returns to the second position under the action of gravity, and at this time, the material - storing mechanism is full of material.
[0085] The above is only a specific implementation manner of the present application. Any improvement made on the premise of the present application's concept is regarded as the protection scope of the present application.
Claims
1. A material storage mechanism, characterized in that, Comprising: A storage rack; A feeding guiding structure, mounted on the storage rack, including a first guiding roller and a second guiding roller adapted to the first guiding roller, and the adhesive tape is adapted to pass between the first guiding roller and the second guiding roller; A supporting guiding structure, mounted on one side of the feeding guiding structure along a first direction, including a third guiding roller and a fourth guiding roller, and the adhesive tape passing through the feeding guiding structure passes between the third guiding roller and the fourth guiding roller; A storage structure, located below the supporting guiding structure, including a fixed roller disposed close to the feeding guiding structure and a plurality of sliding rollers disposed away from the feeding guiding structure, and the adhesive tape passing through the supporting guiding structure sequentially and alternately winds around the sliding rollers and the fixed roller, so that the plurality of sliding rollers move close to the fixed roller when subjected to the acting force of the adhesive tape; A discharging guiding structure, including a fifth guiding roller and a sixth guiding roller, and the adhesive tape passing through the storage structure passes between the fifth guiding roller and the sixth guiding roller; Wherein, the feeding guiding structure is disposed between the discharging guiding structure and the supporting guiding structure, and is disposed close to the feeding guiding structure.
2. The storage mechanism according to claim 1, characterized in that, The storage mechanism further includes a sliding structure, and the sliding structure includes a second guiding rail disposed along the height direction and a sliding plate adapted to the second guiding rail, the sliding plate extends along the first direction, and the plurality of sliding rollers are fixed on the sliding plate.
3. The storage mechanism according to claim 2, wherein The storage mechanism further includes a detection structure disposed on the storage rack; A first detection position is disposed above the storage rack and a second detection position is disposed below the storage rack, the detection structure includes a first detector and a second detector respectively disposed above the first detection position and the second detection position, and the first detector alarms when detecting the plurality of sliding rollers.
4. The storage mechanism according to claim 2, wherein The sliding structure further includes a limiting structure disposed below the guiding rail.
5. A gluing device, characterized in that, Comprising: A mounting rack, including a mounting plate and a first rack body, mounted on the mounting plate through a first guiding rail, and capable of moving along the first direction under the action of an external force; A tape pulling mechanism, located above the mounting plate, for contacting a first target position to attach the adhesive tape to the first target position and generate a pulling force at the same time; A storage mechanism, disposed below the mounting plate, including the storage mechanism according to any one of claims 1-4; A feeding mechanism, disposed above the mounting plate, for winding the adhesive tape; Wherein, the adhesive tape sequentially passes through the feeding guiding structure, the storage structure, and the discharging guiding structure after being wound by the feeding mechanism.
6. The glue - sticking device according to claim 5, characterized in that, The device further includes a power mechanism disposed between the tape pulling mechanism and the feeding mechanism, and the power mechanism includes a power source, a first pressure wheel connected to the power source, and a second pressure wheel adapted to the first pressure wheel, and the power source can drive the first pressure wheel to drive the second pressure wheel to rotate.
7. The gluing device according to claim 6, characterized in that, The power mechanism further includes a third sliding rail disposed on the first rack body; A slider adapted to the sliding rail is disposed on the second pressure wheel, and the second pressure wheel can move close to or away from the first pressure wheel along the sliding rail.
8. The gluing device according to claim 6, wherein, The feeding mechanism includes a fourth slide rail fixed on the mounting plate, a mounting seat movable relative to the fourth slide rail, a winding rack mounted on the mounting seat, and an extension plate located on one side of the winding rack. A plurality of first winding discs are provided on the winding rack, and the adhesive tape is wound on the first winding discs, and the end of the adhesive tape extends to the extension plate.
9. The gluing device according to claim 8, characterized in that, A pre-sticking block is provided on the extension plate for fixing the end of the adhesive tape.