Glue collecting device for glue tank
By designing a glue collection device for the glue tank, and utilizing a combination structure of support plate, conveyor belt, scraper and sliding plate, the problem of glue dripping from the hand mold seat cannot be collected, thus achieving efficient recycling and reuse of glue and simplifying the processing procedure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-22
- Publication Date
- 2026-03-17
AI Technical Summary
In the production of latex gloves, excess latex dripping from the glue tank in the hand mold cannot be effectively collected, resulting in waste and increasing the difficulty of subsequent processing.
Design a rubber material collection device for a glue tank, including an inclined support plate, a conveyor belt, a scraper and a sliding plate. The conveyor belt is driven by a power component to move. The rubber material drips down and is scraped off by the scraper and flows into the sliding plate, eventually flowing back into the glue tank. The sliding plate achieves reciprocating motion through a rotating wheel and an elastic component.
It enables efficient collection and recycling of dripping adhesive from the hand mold base, reducing waste, simplifying the processing flow, and improving production efficiency.
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Figure CN223998830U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of latex glove production equipment, and in particular to a latex material collection device for a latex tank. Background Technology
[0002] In latex glove production lines, the main method of production is to use a chain to drive the movement of the mold holder, thereby achieving streamlined production of latex gloves. The impregnation of the mold holder with latex is a crucial step. As the chain drives the mold holder, it enters the glue tank, allowing the latex material to adhere to its surface, which is then further processed through drying and vulcanization.
[0003] When the chain drives the hand mold holder out of the glue tank, the excess glue adsorbed on the surface of the hand mold holder will drip down. After the hand mold holder comes out of the glue tank, the glue drips onto the workshop floor, causing waste of glue. By setting a collection box at one end of the glue tank, the glue dripping into the collection box can be collected, but the collection box needs to be moved and disposed of afterward, which is quite troublesome. Utility Model Content
[0004] To facilitate the collection and reuse of adhesive dripping from the hand mold base, this application provides an adhesive collection device for an adhesive tank.
[0005] The technical solution adopted in this application is as follows:
[0006] A rubber material collection device for a rubber trough includes a support plate disposed at one end of the rubber trough, the support plate being inclined upwards away from the rubber trough; an installation groove is formed on the support plate, and a conveyor belt is rotatably mounted in the installation groove; a power component for driving the synchronous belt is mounted on the support plate; a scraper is disposed on the surface of the support plate near the rubber trough, one side of the scraper abutting against the surface of the conveyor belt; a sliding plate is slidably disposed on the surface of the support plate near the rubber trough, the sliding direction of the sliding plate being perpendicular to the movement direction of the conveyor belt, the scraper being located above the sliding plate, the scraper and the conveyor belt being linked, the movement of the conveyor belt driving the sliding plate to reciprocate.
[0007] By adopting the above technical solution, when the hand mold holder moves, the adhesive material can drip onto the conveyor belt. The moving conveyor belt pulls the adhesive material downwards, and after being scraped off by the scraper, the adhesive material can continue to flow downwards and into the adhesive trough. During the movement of the conveyor belt, the sliding plate can slide back and forth, thereby promoting the sliding of the adhesive material on the sliding plate.
[0008] Optionally, it also includes a positioning post, wherein the support plate has a positioning groove at one end near the glue groove, the positioning post is installed on the glue groove and abuts against the positioning groove; two sliding plates are provided and are respectively located on both sides of the positioning groove.
[0009] By adopting the above technical solution, the support plate is tilted and the positioning post is engaged in the positioning groove, which can limit the position of the support plate and improve its stability.
[0010] Optionally, the support plate is provided with a relief groove, the relief groove passes through the end face of the support plate, the sliding plate is installed in the relief groove, and the surface of the sliding plate is flush with the surface of the support plate.
[0011] By adopting the above technical solution, the adhesive can more easily flow from the scraper onto the surface of the sliding plate.
[0012] Optionally, two rotating shafts are rotatably arranged in the mounting groove, the conveyor belt is connected between the two rotating shafts, and the power component is connected to one of the rotating shafts.
[0013] By adopting the above technical solution, the conveyor belt is installed through two rotating shafts, which then drive the movement of the conveyor belt.
[0014] Optionally, a rotating wheel is rotatably mounted on the support plate, and an abutment rod is provided at one end of the sliding plate. The abutment rod slides through the side wall of the support plate, and an elastic element is installed on the side wall of the abutment rod. The elastic element is used to drive the end of the abutment rod to abut against the rotating wheel. The rotating wheel is linked with one of the rotating shafts so that the rotating shaft rotates and drives the rotating wheel to rotate. A trigger part is provided on the rotating wheel. When the rotating wheel rotates, the abutment rod can be pressed by the trigger part and slide away from the rotating wheel, and the elastic element is compressed.
[0015] By adopting the above technical solution, during the rotation of the rotating wheel, the trigger part intermittently pushes the contact rod to slide, thereby driving the sliding plate to slide, and under the action of the elastic element, the sliding plate is driven to reset, thereby realizing the reciprocating sliding of the sliding plate.
[0016] Optionally, the trigger portion includes a protrusion disposed on the side of the rotating wheel facing the sliding plate, and the protrusion is provided at multiple intervals along the circumference of the rotating wheel.
[0017] By adopting the above technical solution, when the rotating wheel rotates, the protrusion pushes the abutment rod, thereby achieving the effect of pushing the abutment rod to slide.
[0018] Optionally, an abutment body is provided at one end of the abutment rod near the rotating wheel, the diameter of the abutment body being larger than the diameter of the abutment rod, and the elastic element is connected between the abutment body and the side wall of the support plate.
[0019] By adopting the above technical solution, it is convenient to install the elastic element and also convenient for the protrusion to push the abutment rod to slide.
[0020] Optionally, a synchronous pulley is coaxially fixed to the rotating wheel, and a synchronous belt connects the synchronous pulley and the rotating shaft.
[0021] By adopting the above technical solution, the rotating wheel and the rotating shaft can rotate synchronously under the action of the timing belt, so no additional power is needed to drive the rotating wheel to rotate.
[0022] Optionally, the support plate surface is provided with a retaining edge, which is provided along the edge of the positioning groove, and the retaining edge can always abut against the surface of the sliding plate when the sliding plate slides back and forth.
[0023] By adopting the above technical solution, the flow of rubber material into the relief groove can be reduced under the action of the retaining edge, thereby further improving the adaptability of the device.
[0024] In summary, this application includes at least one of the following beneficial effects:
[0025] 1. The rubber material drips onto the conveyor belt. The continuous movement of the conveyor belt drives the agitator to move downwards, and it can flow onto the scraper and then onto the sliding plate. The reciprocating movement of the sliding plate promotes the rubber material to drip from the sliding plate back into the rubber trough.
[0026] 2. Rotating the rotating wheel causes the protrusion to push the abutment rod to slide, and the elastic element drives the abutment rod to reset, thereby realizing the reciprocating sliding of the abutment rod. Attached Figure Description
[0027] Figure 1 This is a schematic diagram illustrating the usage state of an embodiment of this application;
[0028] Figure 2 This is a structural schematic diagram of an embodiment of this application;
[0029] Figure 3 This is an exploded view of an embodiment of this application.
[0030] Explanation of reference numerals in the attached drawings: 1. Glue tank; 2. Support plate; 3. Mounting groove; 4. Conveyor belt; 5. Power component; 6. Scraper; 7. Sliding plate; 8. Positioning groove; 9. Positioning column; 10. Clearance groove; 11. Rotating shaft; 12. Bearing seat; 13. Rotating wheel; 14. Abutting rod; 15. Elastic component; 16. Triggering part; 161. Protrusion; 17. Abutting body; 18. Synchronous pulley; 19. Synchronous belt; 20. Edge retaining wall; 21. Cover plate. Detailed Implementation
[0031] The present application will be further described in detail below with reference to the accompanying drawings.
[0032] This application discloses a glue collection device for a glue tank 1. (Refer to...) Figure 1The collecting device includes a support plate 2, which is located at one end of the glue tank 1. The support plate 2 is inclined upwards in a direction away from the glue tank 1 and is located at the discharge end of the glue tank 1. After the hand mold holder comes out of the glue tank 1, it passes over the support plate 2. The end of the support plate 2 away from the glue tank 1 is provided with a support leg to support the support plate 2. The support plate 2 can also be erected on a corresponding frame of the production line.
[0033] Reference Figure 2 and Figure 3 A mounting groove 3 is provided on the support plate 2, and a conveyor belt 4 is rotatably mounted in the mounting groove 3. A power component 5 for driving the conveyor belt 4 to rotate is also mounted on the support plate 2. The conveyor belt 4 rotates towards the glue trough 1, so the glue can drip onto the conveyor belt 4 and be driven downward by the conveyor belt 4. A scraper 6 is mounted on the support plate 2. The side of the scraper 6 closest to the conveyor belt 4 can abut against the surface of the conveyor belt 4, and the glue on the conveyor belt 4 can flow onto the scraper 6 and continue to flow from the surface of the scraper 6 towards the glue trough 1. In order to facilitate the scraping of the glue on the conveyor belt 4 by the scraper 6, the scraper 6 has a thin sheet structure.
[0034] Furthermore, two rotating shafts 11 are rotatably mounted in the mounting groove 3, and the conveyor belt 4 is installed between the two rotating shafts 11. The power component 5 is preferably a motor, and the power component 5 is connected to one of the rotating shafts 11. The power component 5 can drive the rotating shaft 11 to rotate, and the synchronous belt 19 drives the conveyor belt 4 to move.
[0035] In a further embodiment, refer to Figure 2 and Figure 3 A sliding plate 7 is slidably mounted on one end of the support plate 2 near the glue tank 1. The sliding direction of the sliding plate 7 is perpendicular to the movement direction of the conveyor belt 4. The scraper 6 is located on the surface of the sliding plate 7, allowing the glue to flow from the conveyor belt 4 onto the scraper 6, then onto the surface of the sliding plate 7, and finally slide off the sliding plate 7 into the glue tank 1. The sliding plate 7 and the conveyor belt 4 are linked; the movement of the conveyor belt 4 synchronously moves the sliding plate 7 to slide back and forth, making it easier for the glue on the surface of the sliding plate 7 to flow back into the glue tank 1.
[0036] A positioning groove 8 is formed at one end of the support plate 2 near the glue tank 1, and the positioning groove 8 is located in the middle of the support plate 2. The collecting device also includes a positioning post 9 fixed to the glue tank 1, and the positioning post 9 abuts against the positioning groove 8. Because the support plate 2 is set at an inclination, the stability of the support plate 2 is improved by the positioning post 9 abutting against the positioning groove 8.
[0037] In a further embodiment, a relief groove 10 is provided at one end of the support plate 2 near the glue groove 1. The sliding plate 7 is slidably installed in the relief groove 10, and the surface of the sliding plate 7 is flush with the surface of the support plate 2. The relief groove 10 passes through one end of the support plate 2, and the sliding plate 7 has a portion extending beyond the end of the support plate 2. An abutment rod 14 is fixed to one end of the sliding plate 7. The abutment rod 14 slides through the support plate 2 and extends out from the side wall of the support plate 2. An elastic member 15 is installed on the outer wall of the abutment rod 14. Under the action of the elastic member 15, one end of the sliding plate 7 can abut against the inner wall of the relief groove 10.
[0038] A rotating wheel 13 is rotatably mounted on the support plate 2. The rotating wheel 13 is linked to one of the rotating shafts 11, preferably the rotating shaft 11 adjacent to the rotating wheel 13. The rotating wheel 13 is rotatably mounted on the surface of the support plate 2 via a bearing seat 12, and a synchronous wheel 18 is coaxially fixed on the rotating wheel 13. The synchronous wheel 18 and the adjacent rotating shaft 11 are connected by a synchronous belt 19. Therefore, when the rotating shaft 11 rotates, the synchronous belt 19 causes the rotating wheel 13 to rotate. A trigger part 16 is mounted on the side of the rotating wheel 13 facing the abutment rod 14. Under the action of the elastic member 15, one end of the abutment rod 14 abuts against the surface of the rotating wheel 13. When the rotating wheel 13 rotates, the trigger part 16 pushes the abutment rod 14 to slide, thereby causing the sliding plate 7 to slide. The abutment rod 14 and the trigger part 16 disengage, and the elastic member 15 drives the abutment rod 14 to reset, causing the sliding plate 7 to reset.
[0039] The triggering part 16 includes a protrusion 161 fixed to the side of the rotating wheel 13 near the abutment rod 14. The protrusion 161 is preferably an arc-shaped protrusion 161, which facilitates the abutment action between the abutment rod 14 and the protrusion 161. Furthermore, multiple protrusions 161 are provided at intervals along the circumference of the rotating wheel 13. In this embodiment, four protrusions are provided.
[0040] Reference Figure 3 An abutment body 17 is fixed to the outer wall of the abutment rod 14 near the rotating wheel 13. The diameter of the abutment body 17 is larger than the diameter of the abutment rod 14. The elastic element 15 is located between the abutment body 17 and the side wall of the support plate 2. The abutment body 17 can abut against the protrusion 161, and the end of the abutment body 17 near the rotating wheel 13 is rounded to facilitate the abutment action against the protrusion 161. The elastic element 15 is preferably a spring, with one end abutting against the support plate 2 and the other end abutting against the abutment body 17. When the rotating wheel 13 pushes the sliding plate 7 to slide, the spring is compressed.
[0041] In a further embodiment, since the sliding plate 7 slides in the relief groove 10, there is a possibility that the adhesive material may flow into the relief groove 10. Therefore, a retaining edge 20 is fixed on the upper surface of the support plate 2. The retaining edge 20 is arranged around the edge of the positioning groove 8, and the retaining edge 20 can abut against the surface of the sliding plate 7 and cover the gap between the end of the sliding plate 7 away from the contact rod 14 and the relief groove 10. Furthermore, a cover plate 21 can be fixed on the support plate 2. The cover plate 21 covers the gap between the end of the sliding plate 7 near the rotating wheel 13 and the relief groove 10.
[0042] The implementation principle of the adhesive collection device for adhesive tank 1 in this application embodiment is as follows: During the operation, the adhesive drips onto the conveyor belt 4 and flows into the scraper 6 and the sliding plate 7 in sequence, and finally drips into the adhesive tank 1. The sliding plate 7 slides back and forth continuously, promoting the flow of adhesive on the surface of the sliding plate 7 into the adhesive tank 1.
[0043] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A rubber collection device for a rubber trough, characterized by: The application relates to a rubber conveying device, which comprises a support plate (2) arranged at one end of a rubber groove (1) and inclined upward away from the rubber groove (1); an installation groove (3) is formed in the support plate (2), a conveying belt (4) is rotatably arranged in the installation groove (3), a power element (5) is arranged on the support plate (2) and used for driving the conveying belt (4) to move; a scraper (6) is arranged on the surface of one end of the support plate (2) close to the rubber groove (1), one side of the scraper (6) abuts against the surface of the conveying belt (4); a sliding plate (7) is slidably arranged on the surface of one end of the support plate (2) close to the rubber groove (1), the sliding direction of the sliding plate (7) is perpendicular to the moving direction of the conveying belt (4), the scraper (6) is located above the sliding plate (7), the scraper (6) and the conveying belt (4) are linked, and the movement of the conveying belt (4) can drive the sliding plate (7) to reciprocate.
2. A material collection device for a glue slot according to claim 1, wherein: The device further comprises a positioning column (9), the support plate (2) is provided with a positioning groove (8) at one end close to the rubber groove (1), the positioning column (9) is arranged on the rubber groove (1) and abuts in the positioning groove (8); the sliding plate (7) is provided with two and located at the two sides of the positioning groove (8) respectively.
3. A material collection device for a glue slot as claimed in claim 2, wherein: The support plate (2) is provided with a giving-way groove (10), the giving-way groove (10) penetrates the end surface of the support plate (2), the sliding plate (7) is arranged in the giving-way groove (10), and the surface of the sliding plate (7) is flush with the surface of the support plate (2).
4. A material collection device for a glue slot according to claim 3, wherein: Two rotating shafts (11) are rotatably arranged in the installation groove (3), the conveying belt (4) is connected between the two rotating shafts (11), and the power element (5) is connected with one of the rotating shafts (11).
5. A material collection device for a glue slot as claimed in claim 4, wherein: A rotating wheel (13) is rotatably arranged on the support plate (2), one end of the sliding plate (7) is provided with a contact rod (14), the contact rod (14) is slidably arranged through the side wall of the support plate (2), an elastic element (15) is arranged on the side wall of the contact rod (14), the end of the contact rod (14) is arranged to abut against the rotating wheel (13) by the elastic element (15), the rotating wheel (13) is linked with one of the rotating shafts (11), so that the rotating shaft (11) rotates to drive the rotating wheel (13) to rotate, and the rotating wheel (13) is provided with a triggering part (16), when the rotating wheel (13) rotates, the contact rod (14) can be pressed on the triggering part (16) to slide away from the rotating wheel (13), and the elastic element (15) is compressed.
6. A material collection device for a glue slot as claimed in claim 5, wherein: The triggering part (16) comprises a protrusion (161) arranged on the side of the rotating wheel (13) facing the sliding plate (7), and a plurality of protrusions (161) are arranged along the circumference of the rotating wheel (13).
7. A material collection device for a glue slot as defined in claim 5, wherein: The abutting rod (14) is provided with an abutting body (17) near one end of the rotating wheel (13), the diameter of the abutting body (17) is larger than that of the abutting rod (14), and the elastic member (15) is connected between the abutting body (17) and the side wall of the support plate (2).
8. A material collection device for a glue slot according to claim 6, wherein: The rotating wheel (13) is coaxially fixed with a synchronous wheel (18), and the synchronous wheel (18) and the rotating shaft (11) are connected with a synchronous belt (19).
9. A material collection device for a glue slot as defined in claim 6, wherein: The support plate (2) is provided with a blocking edge (20) on the surface, the blocking edge (20) is arranged along the edge of the positioning groove (8), and the blocking edge (20) can always abut against the surface of the sliding plate (7) when the sliding plate (7) reciprocally slides.