Feeding device
By designing a feeding device with a double-sided toothed synchronous belt and an idler pulley structure, the problem of material adhesion in the production of rubber-cushioned valves is solved, and efficient and stable material transportation is achieved.
Patent Information
- Application Number
- CN202422701828.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-06
AI Technical Summary
During the production process of rubber-cushioned valve stems, soft materials such as rubber are prone to adhesion, resulting in accumulation of materials during transportation, affecting feeding efficiency and effect.
A feeding device was designed, which uses two double-sided toothed synchronous belts to form a conveying gap. The material enters the groove between the teeth, and the tension of the conveyor belt is ensured by connecting the bridge and the idler pulley. The conveying speed is adjusted by the servo reduction motor to prevent material collision and adhesion.
It realizes the orderly transportation of materials, avoids adhesion and extrusion, improves the transportation efficiency and stability, and adapts to the needs of different material sizes.
Smart Images

Figure CN223457543U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material conveying field, concretely relates to a feeding device. BACKGROUND
[0002] Part of material exists the need of order transfer, for example, the rubber etc. of rubber pad air valve production process is used soft material and is easy to stick, if the rubber pad contacts in the transfer process, easy to appear mutual sticking condition, lead to two even more rubber pad air valve accumulation after feeding, influence feeding efficiency and effect.
[0003] In view of the above problem, the utility model designs and manufactures a feeding device to overcome the above-mentioned defects. UTILITY MODEL CONTENT
[0004] For the problems existing in the prior art, the feeding device provided by the utility model can realize the orderly conveying of the conveyed material, and the conveying is stable and efficient.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: a feeding device, comprising a support, a fixed beam is supported on the support, a first vertical conveyor belt is arranged on the fixed beam;
[0006] A second vertical conveyor belt is arranged in parallel on one side of the first vertical conveyor belt, the first vertical conveyor belt and the second vertical conveyor belt are both double-sided tooth synchronous belts, and a conveying gap is arranged between the second vertical conveyor belt and the first vertical conveyor belt;
[0007] The material can enter the tooth gap groove outside the first vertical conveyor belt and the second vertical conveyor belt in the conveying gap, and the second vertical conveyor belt and the first vertical conveyor belt on both sides of the conveying gap can orderly convey the material in the same direction.
[0008] Preferably, the transmission wheels at both ends of the first vertical conveyor belt are rotatably connected to the fixed beam;
[0009] The transmission wheels at both ends of the second vertical conveyor belt are connected to the fixed beam through the connecting bridge respectively, and the connecting bridge spans from above the first vertical conveyor belt and the second vertical conveyor belt;
[0010] One end of the connecting bridge is connected to the fixed beam, and the other end of the connecting bridge is connected with the transmission wheel.
[0011] Preferably, the second vertical conveyor belt can adjust the size of the conveying gap between the first vertical conveyor belt through the connecting bridge.
[0012] Preferably, the connecting bridge comprises a fixed frame and a movable frame, and the movable frame can be adjusted in position relative to the fixed frame.
[0013] The fixed frame is connected with the fixed beam, and the transmission wheels at two ends of the second vertical conveying belt are connected with the moving frame.
[0014] Preferably, a pressing rod is connected at the bottom of the connecting bridge above the conveying gap, and the pressing rod can limit the conveyed material in the conveying gap.
[0015] Preferably, the first vertical conveying belt and / or the second vertical conveying belt is connected with an idler wheel, and the idler wheel can tension the first vertical conveying belt and / or the second vertical conveying belt.
[0016] The idler wheel is arranged on the first vertical conveying belt and / or the second vertical conveying belt away from the conveying gap side.
[0017] Preferably, the idler wheel on the first vertical conveying belt is arranged on the fixed beam.
[0018] And / or the idler wheel on the second vertical conveying belt is fixed on an idler connecting bridge, and the idler connecting bridge is connected with the fixed beam.
[0019] And / or, the position of the idler wheel can be adjusted, and the first vertical conveying belt and the second vertical conveying belt can be respectively tensioned by adjusting the position of the corresponding idler wheel.
[0020] Preferably, at least one inner centralizing pulley is arranged on the inner side of the first vertical conveying belt, and the inner centralizing pulley is rotationally connected with the fixed beam.
[0021] Preferably, a servo reduction motor is connected with one of the transmission wheels of the first vertical conveying belt, and the servo reduction motor is installed on the fixed beam.
[0022] The transmission wheel at one end of the second vertical conveying belt is connected with the transmission wheel at one end of the first vertical conveying belt through a transmission structure, or the transmission wheel at one end of the second vertical conveying belt is also connected with a servo reduction motor, and the servo reduction motor driving the second vertical conveying belt is installed on the connecting bridge.
[0023] Preferably, a third vertical conveying belt is arranged in parallel on the other side of the first vertical conveying belt, and the third vertical conveying belt is also arranged on the fixed beam.
[0024] A fourth vertical conveying belt is further included, and the third vertical conveying belt is located between the fourth vertical conveying belt and the first vertical conveying belt, and a conveying gap is also arranged between the third vertical conveying belt and the fourth vertical conveying belt.
[0025] The transmission wheels at two ends of the fourth vertical conveying belt are also respectively connected with the fixed beam through connecting bridges, and the connecting bridges connected with the transmission wheels at two ends of the fourth vertical conveying belt span above the third vertical conveying belt and the fourth vertical conveying belt.
[0026] The utility model has the advantages of:
[0027] 1. The utility model discloses a conveying gap between two double-sided tooth synchronous belts is used for conveying materials, the recess between the teeth of the outer side of the two conveyors can clamp the materials and then convey in order, prevents the collision and adhesion of the materials in the conveying process, and good conveying effect is obtained, and the materials are guided into the recess between the teeth, avoiding extruding the materials.
[0028] 2. The utility model discloses a connecting bridge is used for fixing the second vertical conveyor, and the distance between the second vertical conveyor and the first vertical conveyor is adjusted conveniently, the connecting bridge is crossed from the top of the two conveyors, and the bottom of the conveying gap is provided with sufficient space for conveying the air valve of the rubber pad, in addition, the connecting bridge is crossed above the conveying gap, and the connecting of the pressing rod is facilitated.
[0029] 3. The utility model discloses that the first vertical conveyor and the second vertical conveyor are both connected with idlers, and the two idlers are arranged on the first vertical conveyor and the second vertical conveyor away from the conveying gap, so that the two conveyors on both sides of the conveying gap are kept in a taut state, and the stability of the materials in the conveying gap is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0030] Fig. 1 It is a structural schematic view of a feeding device;
[0031] Fig. 2 It is a front view of a feeding device;
[0032] Fig. 3 It is a schematic view of the material conveyed by the utility model.
[0033] In the drawing: 1 - support, 2 - fixed beam, 3 - first vertical conveyor, 4 - second vertical conveyor, 5 - conveying gap, 6 - connecting bridge, 7 - servo reducer motor, 8 - idler connecting bridge, 9 - idler, 10 - inner centralizing pulley, 11 - transmission wheel, 12 - pressing rod. DETAILED DESCRIPTION
[0034] In order to facilitate the understanding of those skilled in the art, the utility model is further explained below in combination with the drawings.
[0035] Example one:
[0036] As Figs. 1 to 3 shown, a feeding device includes a support 1, the support 1 is supported with a fixed beam 2, the fixed beam 2 in the embodiment is inclined and arranged upwards on the support 1, facilitating the transfer of materials from the bottom to the top.
[0037] Specifically, the first vertical conveying belt 3 is arranged on the fixed beam 2, and a second vertical conveying belt 4 is arranged on one side of the first vertical conveying belt 3 in parallel, the first vertical conveying belt 3 and the second vertical conveying belt 4 are both double-sided tooth synchronous belts, and a conveying gap 5 is arranged between the second vertical conveying belt 4 and the first vertical conveying belt 3.
[0038] The material can enter the tooth gap groove outside the first vertical conveying belt 3 and the second vertical conveying belt 4 in the conveying gap 5, the second vertical conveying belt 4 and the first vertical conveying belt 3 on both sides of the conveying gap 5 can orderly convey the material to the same direction, the collision and adhesion of the material in the conveying process are prevented, good conveying effect is achieved, and the material is guided into the tooth gap groove, so that extrusion of the material is avoided.
[0039] Specifically, the transmission wheels 11 at both ends of the first vertical conveying belt 3 are rotationally connected to the fixed beam 2, the transmission wheels 11 at both ends of the second vertical conveying belt 4 are connected to the fixed beam 2 through the connecting bridge 6 respectively, the connecting bridge 6 spans above the first vertical conveying belt 3 and the second vertical conveying belt 4, one end of the connecting bridge 6 is connected to the fixed beam 2, and the other end of the connecting bridge 6 is connected with the transmission wheel 11.
[0040] The second vertical conveying belt 4 can adjust the size of the conveying gap 5 between the first vertical conveying belt 3 through the connecting bridge 6, specifically, a long slot hole connecting structure can be arranged at one end of the connecting bridge 6, the position of the connecting bridge 6 is adjusted by adjusting the long slot hole relative to the connecting bolt structure, and then the conveying requirements of different material sizes are met.
[0041] The connecting bridge 6 can also include a fixed frame and a movable frame, the movable frame can be adjusted relative to the position of the fixed frame, the fixed frame is connected to the fixed beam 2, and the transmission wheels 11 at both ends of the second vertical conveying belt 4 are connected to the movable frame, and the structure can also meet the adjustment requirements of the conveying gap 5.
[0042] The bottom of the connecting bridge 6 above the conveying gap 5 is preferably connected with the material pressing rod 12, the material pressing rod 12 can limit the material conveyed in the conveying gap 5, prevent the material from protruding, skewing and other conditions in the conveying process, and further prevent the material from being contacted and adhered.
[0043] In summary, the arrangement of the connecting bridge 6 realizes the fixation of the second vertical conveying belt 4, and also facilitates the adjustment of the distance between the second vertical conveying belt 4 and the first vertical conveying belt 3; moreover, the connecting bridge 6 spans above the two conveying belts, sufficient space is left at the bottom of the conveying gap 5, the conveying of the rubber pad air valve is facilitated, and in addition, the connecting of the material pressing rod 12 is also facilitated by the spanning of the connecting bridge 6 above the conveying gap 5.
[0044] The utility model discloses a first vertical conveying belt 3 and / or second vertical conveying belt 4 is connected with idler 9, and idler 9 can tension first vertical conveying belt 3 and / or second vertical conveying belt 4, and idler 9 is arranged on first vertical conveying belt 3 and / or second vertical conveying belt 4 away from the side of conveying gap 5, and the position of idler 9 can be adjusted, and the position of corresponding idler 9 can be adjusted to tension first vertical conveying belt 3 and second vertical conveying belt 4 respectively, which ensures that the two conveying belts on the both sides of conveying gap 5 are in the state of being taut, and further ensures the stability of material conveying in conveying gap 5.
[0045] Specifically, the idler 9 on the first vertical conveying belt 3 is arranged on the fixed beam 2, and the idler 9 on the second vertical conveying belt 4 is fixed on the idler connecting bridge 8, and the idler connecting bridge 8 is connected with the fixed beam 2.
[0046] The utility model discloses that the inside of first vertical conveying belt 3 is equipped with at least one inside centralizing pulley 10, and the inside centralizing pulley 10 is rotatably connected to the fixed beam 2, and the inside centralizing pulley 10 can be used to centralize the first vertical conveying belt 3.
[0047] The utility model discloses that the drive wheel 11 of first vertical conveying belt 3 is connected with servo reduction motor 7, and the servo reduction motor 7 is installed on the fixed beam 2, and the drive wheel 11 at one end of second vertical conveying belt 4 is connected with the drive wheel 11 at one end of first vertical conveying belt 3 through a transmission structure, or the drive wheel 11 at one end of second vertical conveying belt 4 is also connected with servo reduction motor 7, and the servo reduction motor 7 driving second vertical conveying belt 4 is installed on the connecting bridge 6.
[0048] Embodiment two:
[0049] The utility model discloses that the other side of first vertical conveying belt 3 is provided with third vertical conveying belt in parallel, and the third vertical conveying belt is arranged on the fixed beam 2.
[0050] The other side of third vertical conveying belt is provided with fourth vertical conveying belt in parallel, and conveying gap 5 is also arranged between third vertical conveying belt and fourth vertical conveying belt, and material is conveyed through third vertical conveying belt and fourth vertical conveying belt in conveying gap 5.
[0051] The drive wheel 11 at both ends of fourth vertical conveying belt is also connected with the fixed beam 2 through connecting bridge 6, and the connecting bridge 6 spans from the top of third vertical conveying belt and fourth vertical conveying belt.
[0052] The embodiment includes four conveying belts, forms two conveying gaps 5, and the two conveying gaps 5 are located on both sides of the fixed beam 2, and specifically, first vertical conveying belt 3 and third vertical conveying belt are fixed on the fixed beam 2, and the other two conveying belts are respectively on the outermost two sides.
[0053] Compared with the first embodiment, the number of conveying gaps 5 for conveying materials is increased, and the conveying efficiency is improved.
[0054] The first embodiment of the utility model works as follows:
[0055] The first vertical conveyor belt 3 and the second vertical conveyor belt 4 are started to transfer the materials to the input end of the conveying gap 5. The tooth gap groove outside the first vertical conveyor belt 3 and the second vertical conveyor belt 4 will move the materials, and the materials will be sequentially transferred to the input end of the conveying gap 5. The materials will be orderly transferred, and the materials will not collide with each other or be adhered to each other. The lifting speed can be adjusted according to the actual situation through the servo reduction motor 7. The feeding process runs stably and has high efficiency. The tightness of the first vertical conveyor belt 3 and the second vertical conveyor belt 4 can be adjusted by adjusting the position of the idler 9.
[0056] It should be understood that the use of these embodiments is only for the purpose of illustrating the utility model and is not intended to limit the protection scope of the utility model. In addition, it should also be understood that after reading the technical content of the utility model, those skilled in the art can make various modifications, modifications and / or variations to the utility model, and all these equivalent forms also fall within the protection scope defined by the claims attached to the present application.
Claims
1. A feeding device, characterized in that, Including support (1), the fixed beam (2) is supported on the support (1), and the first vertical conveying belt (3) is arranged on the fixed beam (2); The first vertical conveying belt (3) is provided with a second vertical conveying belt (4) on one side in parallel, the first vertical conveying belt (3) and the second vertical conveying belt (4) are both provided as double-sided tooth synchronous belts, and the second vertical conveying belt (4) and the first vertical conveying belt (3) are provided with a conveying gap (5) therebetween; The material can enter the tooth gap groove outside the first vertical conveying belt (3) and the second vertical conveying belt (4) in the conveying gap (5), and the second vertical conveying belt (4) and the first vertical conveying belt (3) on both sides of the conveying gap (5) can orderly convey the material to the same direction.
2. A feeder as claimed in claim 1, wherein The transmission wheel (11) at both ends of the first vertical conveying belt (3) is rotatably connected to the fixed beam (2); The transmission wheel (11) at both ends of the second vertical conveying belt (4) is connected to the fixed beam (2) through the connecting bridge (6) respectively, and the connecting bridge (6) spans from above the first vertical conveying belt (3) and the second vertical conveying belt (4); One end of the connecting bridge (6) is connected to the fixed beam (2), and the other end of the connecting bridge (6) is connected with the transmission wheel (11).
3. A feeder device according to claim 2, wherein, The second vertical conveying belt (4) can adjust the size of the conveying gap (5) between the first vertical conveying belt (3) through the connecting bridge (6).
4. A feeder as claimed in claim 2, wherein The connecting bridge (6) comprises a fixed frame and a movable frame, and the movable frame can be adjusted in position relative to the fixed frame; The fixed frame is connected to the fixed beam (2), and the transmission wheel (11) at both ends of the second vertical conveying belt (4) is connected to the movable frame.
5. A feeder as claimed in claim 2, wherein The bottom of the connecting bridge (6) located above the conveying gap (5) is connected with the material pressing rod (12), and the material pressing rod (12) can limit the material conveyed in the conveying gap (5).
6. A feeder as claimed in claim 1, wherein The first vertical conveying belt (3) and / or the second vertical conveying belt (4) is connected with the idler (9), and the idler (9) can tension the first vertical conveying belt (3) and / or the second vertical conveying belt (4); The idler (9) is arranged on the first vertical conveying belt (3) and / or the second vertical conveying belt (4) away from the conveying gap (5).
7. A feeder device according to claim 6, wherein The idler (9) on the first vertical conveying belt (3) is arranged on the fixed beam (2); And / or, the idler (9) on the second vertical conveying belt (4) is fixed on the idler connecting bridge (8), and the idler connecting bridge (8) is connected with the fixed beam (2); And / or, the position of the idler (9) can be adjusted, and by adjusting the position of the corresponding idler (9), the first vertical conveying belt (3) and the second vertical conveying belt (4) can be tensioned respectively.
8. A feeder as claimed in claim 1, wherein At least one inner centralizing pulley (10) is arranged on the inner side of the first vertical conveying belt (3), and the inner centralizing pulley (10) is rotatably connected to the fixed beam (2).
9. A feeder as claimed in claim 2, wherein One of the transmission wheels (11) of the first vertical conveying belt (3) is connected with a servo reduction motor (7), and the servo reduction motor (7) is mounted on the fixed beam (2); The transmission wheel (11) at one end of the second vertical conveying belt (4) is connected with the transmission wheel (11) at one end of the first vertical conveying belt (3) through a transmission structure, or the transmission wheel (11) at one end of the second vertical conveying belt (4) is also connected with a servo reduction motor (7) for driving the second vertical conveying belt (4), and the servo reduction motor (7) is installed on the connecting bridge (6).
10. A feeder device according to claim 2, wherein, A third vertical conveying belt is arranged on the other side of the first vertical conveying belt (3) in parallel, and the third vertical conveying belt is also arranged on the fixed beam (2); A fourth vertical conveying belt is further arranged between the third vertical conveying belt and the first vertical conveying belt (3), and a conveying gap (5) is arranged between the third vertical conveying belt and the fourth vertical conveying belt; The transmission wheels (11) at two ends of the fourth vertical conveying belt are respectively connected with the fixed beam (2) through the connecting bridges (6), and the connecting bridges (6) connected with the transmission wheels (11) at two ends of the fourth vertical conveying belt span from above the third vertical conveying belt and the fourth vertical conveying belt.