Recovery device

By leveraging the synergistic effect of the gripping, adsorption, and pushing components, the problem of difficult recycling of adhesive parts has been solved, achieving a highly efficient and stable recycling process.

CN224105078UActive Publication Date: 2026-04-10FU TAI HUA IND SHENZHEN +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

When recycling adhesive-coated parts, it is difficult to dispose of the parts due to the adhesive residue, and the existing recycling methods are inefficient.

Method used

The device employs a clamping component to grip the adhesive parts, an adsorption component to adsorb the non-adhesive surfaces, a lifting component to stack the adhesive parts, and a pushing component to push the stacked adhesive parts into the recycling area. Stable pushing is achieved by utilizing the difference in adhesive force between the adhesive parts and the receiving plate.

Benefits of technology

It improves recycling stability, reduces recycling time, and increases recycling efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224105078U_ABST
    Figure CN224105078U_ABST
Patent Text Reader

Abstract

The utility model discloses a recycling device. The recycling device comprises a clamping assembly, an adsorption assembly, a jacking assembly and a pushing assembly. The clamping assembly is used for clamping the pasting piece and driving the pasting piece to move. The adsorption assembly is located on one side of the clamping assembly and used for adsorbing the non-bonding face of the bonding piece. The jacking assembly comprises a bearing plate, the bearing plate is used for moving towards the adsorption assembly, the bonding face of the first pasting piece is bonded with the bearing plate, the bonding faces of the other pasting pieces are sequentially bonded with the non-bonding face of the previous pasting piece, and the bonding force between the pasting pieces and the bearing plate is smaller than the bonding force between the adjacent pasting pieces. When the pasting pieces are stacked to the preset height, the pushing assembly is used for pushing the stacked pasting pieces into the recycling position. The multiple pasting pieces are stacked through the jacking assembly, the bonding force between the pasting pieces and the bearing plate is smaller than the bonding force between the adjacent pasting pieces, the stacked pasting pieces can be conveniently pushed by the pushing assembly, the recycling stability is improved, the recycling time is shortened, and the recycling efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the field of waste recycling, and particularly relates to a recycling device. BACKGROUND

[0002] Currently, the recycling of the adhesive member is usually performed by means of vacuum suction of a waste drum or direct throwing of the adhesive member into the waste drum. Since the adhesive member is attached with adhesive, it is difficult to throw the adhesive member. CONTENT OF THE UTILITY MODEL

[0003] Therefore, it is necessary to provide a recycling device which improves recycling stability, reduces recycling time and improves recycling efficiency.

[0004] Embodiments of the present application provide a recycling device, which comprises a clamping assembly, a suction assembly, a jacking assembly and a pushing assembly. The clamping assembly is used for clamping the adhesive member and moving the adhesive member. The suction assembly is located on one side of the clamping assembly and is used for suctioning the non-adhesive surface of the adhesive member. The jacking assembly comprises a receiving plate, which is used for moving towards the suction assembly, so that the adhesive surface of the first adhesive member is attached to the receiving plate, and the adhesive surfaces of other adhesive members are sequentially attached to the non-adhesive surface of the previous adhesive member. The adhesive force between the adhesive member and the receiving plate is smaller than the adhesive force between adjacent adhesive members. When the adhesive members are stacked to a predetermined height, the pushing assembly is used for pushing the stacked adhesive members into a recycling area. By stacking the plurality of adhesive members through the jacking assembly, the adhesive force between the adhesive member and the receiving plate is smaller than the adhesive force between adjacent adhesive members, which is conducive to the pushing assembly for pushing the stacked adhesive members into the recycling area, improves the recycling stability, reduces the recycling time and improves the recycling efficiency.

[0005] Optionally, in some embodiments of the present application, the receiving plate comprises a receiving surface, and the receiving surface is configured to have an adhesive area smaller than the adhesive area between adjacent adhesive members. This facilitates the pushing assembly to separate the first adhesive member from the receiving surface, and is conducive to the pushing assembly for pushing the stacked adhesive members into the recycling area.

[0006] Optionally, in some embodiments of the present application, the receiving plate comprises a slope connected to the receiving surface, the receiving surface is provided with a plurality of convex portions arranged at intervals and a concave portion formed between adjacent convex portions, the first adhesive member is separated from the slope and partially attached to the convex portion. This is conducive to reducing the adhesive area between the first adhesive member and the receiving surface, and further reducing the adhesive force between the first adhesive member and the receiving surface, which facilitates the pushing assembly to separate the first adhesive member from the receiving surface.

[0007] Optionally, in some embodiments of the present application, the pushing assembly comprises a base, a pushing rod and a rotating shaft, the rotating shaft is connected to the base and the pushing rod, and the pushing rod moves from the side of the slope away from the receiving surface to the receiving surface. This is conducive to the pushing rod closely attaching to the receiving surface, and further facilitates the pushing assembly to separate the first adhesive member from the receiving surface.

[0008] Optionally, in some embodiments of the present application, the pushing assembly comprises a cover plate and a limiting piece, the cover plate is connected to the base, the limiting piece passes through the cover plate and is located above the pushing rod, and the extending direction of the limiting piece is perpendicular to the rotation axis of the pushing rod. The rotation angle of the pushing rod is limited, so that the pushing rod does not rotate too much during movement, and the pushing rod does not separate from the receiving surface, so that the pushing rod cannot separate the first sticking piece from the receiving surface, and the recovery efficiency is affected.

[0009] Optionally, in some embodiments of the present application, the pushing assembly comprises an elastic piece, the elastic piece is connected to the base and the pushing rod.

[0010] Optionally, in some embodiments of the present application, the clamping assembly comprises a clamping jaw piece and a movement driving piece connected to the clamping jaw piece, the movement driving piece drives the clamping jaw piece to rotate by a predetermined angle, so that part of the sticking piece is located below the adsorption assembly.

[0011] Optionally, in some embodiments of the present application, the clamping assembly comprises a sensor, and the movement driving piece controls the clamping jaw piece to clamp the sticking piece based on the sensor.

[0012] Optionally, in some embodiments of the present application, the jacking assembly comprises a jacking driving piece and a jacking plate, the jacking driving piece is connected to the jacking plate, and the jacking plate is connected to the receiving plate.

[0013] Optionally, in some embodiments of the present application, a containing piece for recovering the sticking piece is further included, the containing piece is located between the clamping assembly and the jacking assembly, and the projection of the receiving plate intersects with the projection of the containing piece along the jacking direction of the jacking assembly. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 A structural schematic diagram of a recovery device in an embodiment is shown.

[0015] Figure 2 A structural schematic diagram of part of a recovery device in an embodiment is shown.

[0016] Figure 3 A structural schematic diagram of a receiving plate in an embodiment is shown.

[0017] Figure 4 A structural schematic diagram of a pushing assembly in an embodiment is shown.

[0018] MAIN ELEMENT SYMBOL EXPLANATION

[0019] Recovery device 100

[0020] Fixing seat 101

[0021] Clamping assembly 10

[0022] Clamping jaw piece 11

[0023] Clamping jaw 111

[0024] clamping jaw driving member 112

[0025] moving driving member 12

[0026] first fixing member 13

[0027] sensor 14

[0028] suction assembly 20

[0029] suction plate 21

[0030] display member 22

[0031] jacking assembly 30

[0032] receiving plate 31

[0033] receiving surface 311

[0034] convex portion 311a

[0035] concave portion 311b

[0036] inclined surface 312

[0037] jacking driving member 32

[0038] jacking plate 33

[0039] connecting plate 34

[0040] buffer member 35

[0041] pushing assembly 40

[0042] base 41

[0043] pushing rod 42

[0044] rotation shaft 43

[0045] cover plate 44

[0046] limiting member 45

[0047] elastic member 46

[0048] connecting member 47

[0049] pushing driving member 48

[0050] accommodating member 50

[0051] adhesive member 200

[0052] non-adhesive surface 201

[0053] adhesive surface 202

[0054] The following specific embodiments will further illustrate the present application in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION

[0055] The following detailed description is presented to provide a basic understanding of the application. No limitation on the scope of the application is intended by this description. Various embodiments presented herein are examples only, and are not intended to be limiting. One of ordinary skill in the art will readily recognize a wide variety of suitable alternatives based on the description provided herein.

[0056] When an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. When an element is referred to as being "connected" to or "coupled" to another element, it can be directly connected to the other element or intervening elements can also be present.

[0057] It should be understood that the term "vertical" is used herein to describe a relationship between two components. In actual production or use, the relationship between the two components can be approximately vertical or equal. For example, in connection with numerical description, vertical can refer to the angle between two straight lines within the range of 90°±10°, vertical can also refer to the dihedral angle between two bonding surfaces within the range of 90°±10°, and vertical can also refer to the angle between a straight line and a bonding surface within the range of 90°±10°. The two components described as "vertical" can not be absolute straight lines or bonding surfaces, but can be approximately straight lines or bonding surfaces, and as a whole, the overall extension direction is considered to be a straight line or a bonding surface.

[0058] Unless otherwise defined, the term "plurality" as used herein to describe a number of components specifically refers to two or more of the components.

[0059] Some embodiments of the present application will be described in detail with reference to the drawings.

[0060] Please refer to Figure 1 The embodiment of the present application provides a recycling device 100, which comprises a clamping assembly 10, a suction assembly 20, a jacking assembly 30 and a pushing assembly 40. The clamping assembly 10 is used to clamp the adhesive member 200 and drive the adhesive member 200 to move. The suction assembly 20 is located on one side of the clamping assembly 10 and is used to suck the non-adhesive surface 201 of the adhesive member 200. The jacking assembly 30 comprises a receiving plate 31, which is used to move towards the suction assembly 20, so that the adhesive surface 202 of the first adhesive member 200 is bonded to the receiving plate 31, and the adhesive surfaces 202 of other adhesive members 200 are sequentially bonded to the non-adhesive surface 201 of the previous adhesive member 200. The bonding force between the adhesive member 200 and the receiving plate 31 is smaller than the bonding force between adjacent adhesive members 200. When the adhesive members 200 are stacked to a predetermined height, the pushing assembly 40 is used to push the stacked adhesive members 200 into a recycling position.

[0061] Optionally, the adhesive member 200 can be any one of a label, a release paper, a release film, and a protective film.

[0062] It can be understood that the first adhesive member 200 refers to the adhesive member 200 that is bonded to the receiving plate 31 among the plurality of adhesive members 200 stacked to a predetermined height.

[0063] The present application stacks the plurality of adhesive members 200 through the jacking assembly 30, and the bonding force of the adhesive member 200 to the receiving plate 31 is less than the bonding force between adjacent adhesive members 200, which is conducive to the pushing assembly 40 pushing the stacked adhesive members 200 into the recycling position, improving recycling stability, reducing recycling time, and improving recycling efficiency.

[0064] Please refer to Figure 1 In some embodiments, the recycling device 100 comprises a fixed seat 101, and the clamping assembly 10, the adsorption assembly 20, the jacking assembly 30, and the pushing assembly 40 are fixed to the fixed seat 101.

[0065] In some embodiments, the clamping assembly 10 comprises a clamping jaw member 11 and a moving driving member 12. The clamping jaw member 11 is connected to the moving driving member 12, and the moving driving member 12 drives the clamping jaw member 11 to rotate by a predetermined angle, so that part of the adhesive member 200 is located below the adsorption assembly 20.

[0066] In some embodiments, the moving driving member 12 drives the clamping jaw member 11 to rotate by 180°, and in other embodiments, the moving driving member 12 drives the clamping jaw member 11 to rotate by other angles, such as 90°, 270°, etc. Optionally, the moving driving member 12 comprises a rotary air cylinder.

[0067] In some embodiments, the clamping jaw member 11 comprises a clamping jaw 111 and a clamping jaw driving member 112, and the clamping jaw driving member 112 is connected to the clamping jaw 111 and drives the clamping jaw 111 to clamp the adhesive member 200.

[0068] In some embodiments, the clamping assembly 10 comprises a first fixing member 13, and the first fixing member 13 is fixed to the fixed seat 101, and the moving driving member 12 is fixed to the first fixing member 13.

[0069] In some embodiments, the clamping assembly 10 comprises a sensor 14, and the sensor 14 is fixed to the first fixing member 13. When the sensor 14 detects the adhesive member 200, the moving driving member 12 controls the clamping jaw member 11 to clamp the adhesive member 200 based on the detection signal of the sensor 14. Optionally, the sensor 14 comprises a photoelectric sensor. Optionally, the sensor 14 can also be an infrared sensor, a distance sensor, etc.

[0070] Please refer to Figure 1 and Figure 2In some embodiments, the adsorption assembly 20 comprises an adsorption plate 21 provided with adsorption holes. The adsorption plate 21 is connected to a vacuum device, and the partial non-adhesive surface 201 of the adhesive member 200 is adsorbed through the adsorption holes.

[0071] In some embodiments, the adsorption force of the adsorption plate 21 on the adhesive member 200 is greater than the adhesive force of the adhesive surface 202 of the adhesive member 200 on the clamping jaw member 11, so as to facilitate the adsorption of the adhesive member 200 by the adsorption plate 21.

[0072] In some embodiments, the adsorption assembly 20 comprises a display member 22 connected to the same pipeline as the adsorption plate 21, which is connected to the vacuum device, and displays the adsorption force of the adsorption plate 21 in real time, so as to facilitate timely adjustment of the adsorption force of the adsorption plate 21 according to the adsorption condition.

[0073] In some embodiments, the jacking assembly 30 comprises a jacking drive member 32 and a jacking plate 33, the jacking drive member 32 is connected to the jacking plate 33, and the jacking plate 33 is connected to the receiving plate 31. The jacking drive member 32 drives the jacking plate 33 to rise, and the jacking plate 33 drives the receiving plate 31 to rise, so that the receiving plate 31 contacts the adhesive surface 202 of the first adhesive member 200.

[0074] In some embodiments, the jacking plate 33 is slidingly connected to the fixing seat 101, so as to improve the stability of the movement of the receiving plate 31.

[0075] In some embodiments, the jacking assembly 30 comprises a connecting plate 34 and a buffer member 35, the connecting plate 34 is connected to the jacking drive member 32 and the jacking plate 33, and the buffer member 35 is located between the jacking drive member 32 and the connecting plate 34, which is beneficial to buffer the impact force of the movement of the receiving plate 31, and further improves the stability of the movement of the receiving plate 31.

[0076] Please refer to Figure 3 In some embodiments, the receiving plate 31 comprises a receiving surface 311 for bonding the adhesive member 200. The receiving surface 311 is configured to have an adhesive area smaller than the adhesive area between adjacent adhesive members 200, so that the adhesive force between the first adhesive member 200 and the receiving plate 31 is smaller than the adhesive force between adjacent adhesive members 200, which facilitates the separation of the first adhesive member 200 and the receiving surface 311 by the pushing assembly 40, and is beneficial to the pushing assembly 40 to push the stacked whole adhesive member 200 into the recycling area.

[0077] In some embodiments, the receiving surface 311 is provided with a plurality of protrusions 311a arranged at intervals, recesses 311b being formed between adjacent protrusions 311a, and the first adhesive member 200 is partially bonded to the protrusions 311a, which is conducive to reducing the bonding area of the first adhesive member 200 and the receiving surface 311, and further reducing the bonding force between the first adhesive member 200 and the receiving surface 311, so as to facilitate the pushing assembly 40 to separate the first adhesive member 200 from the receiving surface 311. Optionally, the protrusions 311a are in a zigzag shape.

[0078] In some embodiments, the receiving plate 31 comprises an inclined surface 312 connected to the receiving surface 311, and the first adhesive member 200 is spaced apart from the inclined surface 312, which is further conducive to facilitating the pushing assembly 40 to separate the first adhesive member 200 from the receiving surface 311.

[0079] Please refer to Figure 4 In some embodiments, the pushing assembly 40 comprises a base 41, a pushing rod 42, and a rotating shaft 43, and the rotating shaft 43 connects the base 41 and the pushing rod 42. The pushing rod 42 is rotatable relative to the base 41 through the rotating shaft 43 and is movable to the receiving surface 311 from a side of the inclined surface 312 away from the receiving surface 311, which is conducive to facilitating the pushing rod 42 to abut against the receiving surface 311, and further facilitating the pushing assembly 40 to separate the first adhesive member 200 from the receiving surface 311.

[0080] In some embodiments, the pushing assembly 40 comprises a cover plate 44 and a limiting member 45, the cover plate 44 is connected to the base 41, and the limiting member 45 penetrates through the cover plate 44 and is located above the pushing rod 42. The extending direction of the limiting member 45 is perpendicular to the rotating axis of the pushing rod 42. When the pushing rod 42 is rotated relative to the base 41 through the rotating shaft 43, the pushing rod 42 contacts the limiting member 45, which in turn limits the rotating angle of the pushing rod 42, so as to avoid the pushing rod 42 from moving away from the receiving surface 311 due to an excessively large rotating angle during the movement of the pushing rod 42, which causes the pushing rod 42 to fail to separate the first adhesive member 200 from the receiving surface 311 and affects the recovery efficiency.

[0081] In some embodiments, the pushing assembly 40 comprises an elastic member 46, the elastic member 46 is located between the pushing rod 42 and the inner wall of the base 41 and connects the base 41 and the pushing rod 42. During the process in which the pushing rod 42 pushes the stacked adhesive members 200, the elastic member 46 is in a compressed state and plays a buffering role.

[0082] In some embodiments, the pushing assembly 40 comprises a connecting member 47 and a pushing driving member 48, the pushing driving member 48 is fixed to the fixing seat 101, and the connecting member 47 is connected to the pushing driving member 48. The base 41 is fixed to the connecting member 47. The pushing driving member 48 drives the connecting member 47 to move towards the receiving plate 31, the connecting member 47 drives the base 41 and the pushing rod 42 to move towards the receiving plate 31, and the base 41 and the pushing rod 42 push the stacked adhesive members 200.

[0083] Please refer toFigure 1 In some embodiments, the recycling device 100 comprises a receiving member 50 for recycling the adhesive member 200, the receiving member 50 is located between the clamping assembly 10 and the jacking assembly 30. The projection of the receiving plate 31 along the jacking direction of the jacking plate 33 meets the projection of the receiving member 50, which is conducive to the receiving member 50 receiving the stacked adhesive member 200 falling from the receiving plate 31.

[0084] In use, the above recycling device 100 first clamps the first adhesive member 200 by the clamping jaw member 11, and drives the clamping jaw member 11 to rotate a predetermined angle by the movement driving member 12, so that part of the adhesive member 200 is located below the adsorption plate 21. By the vacuum equipment, the adsorption hole adsorbs part of the non-adhesive surface 201 of the first adhesive member 200. The jacking driving member 32 drives the jacking plate 33 to rise, and the jacking plate 33 drives the receiving plate 31 to rise, so that the receiving plate 31 contacts the adhesive surface 202 connected to the first adhesive member 200. The jacking plate 33 drives the receiving plate 31 to descend, the clamping jaw member 11 clamps another adhesive member 200, and the movement driving member 12 drives the clamping jaw member 11 to rotate a predetermined angle, so that part of the other adhesive member 200 is located below the adsorption plate 21. By the vacuum equipment, the adsorption hole adsorbs part of the non-adhesive surface 201 of the other adhesive member 200. The jacking driving member 32 drives the jacking plate 33 to rise, and the jacking plate 33 drives the receiving plate 31 to rise, so that the adhesive surface 202 of the other adhesive member 200 is connected to the non-adhesive surface 201 of the first adhesive member 200. In this way, the adhesive member 200 is stacked to a predetermined height, and then the pushing rod 42 is moved towards the stacked plurality of adhesive members 200 by the pushing driving member 48. The pushing rod 42 is rotated relative to the base 41 by the rotating shaft 43 to move from the side of the inclined surface 312 away from the receiving surface 311 to the receiving surface 311, and pushes the stacked plurality of adhesive members 200 into the receiving member 50, thereby completing the recycling.

[0085] The present application stacks a plurality of adhesive members 200, pushes the stacked plurality of adhesive members 200 into the receiving member 50 by the pushing rod 42, and the adhesive force between the adhesive member 200 and the receiving plate 31 is less than the adhesive force between adjacent adhesive members 200, which is conducive to the pushing rod 42 pushing the stacked adhesive members 200, improves the recycling stability, reduces the recycling time, and improves the recycling efficiency.

[0086] Those skilled in the art should understand that the above embodiments are only used to illustrate the present application, and are not used as a limitation to the present application. Any appropriate changes and variations made to the above embodiments within the spirit and principles of the present application fall within the scope of the present application.

Claims

1. A recycling device, characterized in that, The application relates to a device for recycling adhesive pieces, comprising: a clamping assembly for clamping the adhesive pieces and moving the adhesive pieces; a suction assembly located on one side of the clamping assembly and used for adsorbing non-adhesive surfaces of the adhesive pieces; a jacking assembly comprising a receiving plate, the receiving plate being used for moving towards the suction assembly, so that an adhesive surface of a first adhesive piece is adhered to the receiving plate, and adhesive surfaces of other adhesive pieces are sequentially adhered to non-adhesive surfaces of previous adhesive pieces, and the adhesive force between the adhesive pieces is smaller than the adhesive force between adjacent adhesive pieces; a pushing assembly used for pushing the stacked adhesive pieces into a recycling position when the adhesive pieces are stacked to a predetermined height.

2. The recycling apparatus of claim 1, wherein The receiving plate comprises a receiving surface, and the receiving surface is configured to have an adhesive area smaller than the adhesive area between adjacent adhesive pieces.

3. The recycling apparatus of claim 2, wherein, The receiving plate comprises a slope surface connected to the receiving surface, the receiving surface is provided with a plurality of convex parts arranged at intervals, and concave parts are formed between adjacent convex parts, the first adhesive piece is separated from the slope surface and partially adheres to the convex parts.

4. The recycling apparatus of claim 3, wherein The pushing assembly comprises a base, a pushing rod and a rotating shaft, the rotating shaft is connected to the base and the pushing rod, and the pushing rod moves from a side of the slope surface away from the receiving surface to the receiving surface.

5. The recycling apparatus of claim 4, wherein, The pushing assembly comprises a cover plate and a limiting piece, the cover plate is connected to the base, the limiting piece passes through the cover plate and is located above the pushing rod, and the extending direction of the limiting piece is perpendicular to the rotating axis of the pushing rod.

6. The recycling apparatus of claim 4, wherein The pushing assembly comprises an elastic piece, the elastic piece is connected to the base and the pushing rod.

7. The recycling apparatus of claim 1, wherein The clamping assembly comprises a clamping jaw and a moving drive connected to the clamping jaw, the moving drive drives the clamping jaw to rotate by a predetermined angle, so that part of the adhesive piece is located below the suction assembly.

8. The recycling apparatus of claim 7, wherein, The clamping assembly comprises a sensor, and the moving drive controls the clamping jaw to clamp the adhesive piece based on the sensor.

9. The recycling apparatus of claim 1, wherein, The jacking assembly comprises a jacking drive and a jacking plate, the jacking drive is connected to the jacking plate, and the jacking plate is connected to the receiving plate.

10. The recycling apparatus of claim 1, wherein, The device further comprises a containing piece used for recycling the adhesive pieces, the containing piece is located between the clamping assembly and the jacking assembly, the projection of the receiving plate is connected to the projection of the containing piece along the jacking direction of the jacking assembly.