Sealing ring anti-blocking feeding device

By blowing ion air into the feeding trough to neutralize static electricity and providing a limit, the problem of blockage in the feeding track caused by static adhesion and bouncing of the sealing ring is solved, thus achieving smooth and automated feeding process.

CN223865627UActive Publication Date: 2026-02-03SHENZHEN EAST WIN TECH CO LTD
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Patent Information

Application Number
CN202520092386.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-02-03
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

After leaving the vibratory feeder, the sealing ring is prone to sticking to the feeding track due to static electricity, causing blockage.

Method used

A plasma blower and air supply channel are used to blow ion air into the feeding trough to neutralize the static electricity on the surface of the sealing ring. At the same time, the pressing component provides appropriate limit to prevent the sealing ring from bouncing.

Benefits of technology

It effectively prevents the sealing ring from sticking and bouncing due to static electricity, ensures a smooth feeding process, reduces downtime, improves the reliability and production efficiency of the feeding system, and realizes automated feeding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sealing ring feeding, and particularly discloses a sealing ring anti-blocking feeding device which comprises a vibration disc, a feeding device and a feeding device. The feeding track is provided with a feeding groove; the air supply cover plate is provided with an air supply channel for communicating a plasma blower to the feeding groove; the material pressing assembly is provided with a material pressing air outlet communicated to the feeding groove; the material pressing assembly has the material blocking state that the material pressing assembly moves to the position above the end, away from the vibration disc, of the feeding rail so as to limit the sealing ring to be separated from the feeding groove upwards. And in the material taking state, the material taking device moves to be separated from the feeding rail so as to take out the sealing ring from the feeding groove. The anti-blocking feeding device for the sealing ring can effectively solve the problem that the feeding track is easily blocked by the sealing ring due to electrostatic interaction.
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Description

Technical Field

[0001] This utility model relates to the field of sealing ring feeding technology, and in particular to a sealing ring anti-clogging feeding device. Background Technology

[0002] Generally, sealing rings are fed by a vibratory feeder. However, when the sealing ring leaves the vibratory feeder and is transported to the unloading robot by the feeding track, the sealing ring is prone to sticking to the feeding track due to static electricity. Since the sealing ring is relatively light, the feeding track is often blocked due to static electricity.

[0003] Therefore, it is necessary to improve the existing sealing ring feeding device to solve the problem that the sealing ring is easily blocked by static electricity in the feeding track.

[0004] The information disclosed in this background section is included only to enhance the understanding of the context of this disclosure, and therefore may contain information that does not constitute prior art known to those skilled in the art. Utility Model Content

[0005] One objective of this invention is to provide a sealing ring anti-clogging feeding device, which can effectively solve the problem that the sealing ring is easily blocked by static electricity in the feeding track.

[0006] To achieve the above objectives, this utility model provides a sealing ring anti-clogging feeding device, comprising:

[0007] A vibratory feeder, used to deliver a sealing ring;

[0008] A feeding track is provided with a feeding trough; wherein one end of the feeding trough is connected to the discharge port of the vibrating plate;

[0009] An air supply cover is located above one end of the feeding track near the vibratory plate and is provided with an air supply channel for connecting the plasma blower to the feeding trough.

[0010] A pressing assembly extends above the end of the feeding track away from the vibratory feeder and is provided with a pressing air outlet communicating with the feeding trough;

[0011] The pressing assembly has a blocking state in which it moves to the top of the feeding track away from the vibratory plate to prevent the sealing ring from disengaging upward from the feeding groove; and a picking state in which it moves to disengage from the feeding track to remove the sealing ring from the feeding groove.

[0012] Optionally, the air supply cover is fastened to the feeding track by fasteners.

[0013] Optionally, the side of the air supply cover is provided with an air supply connector for connecting the plasma blower to the air supply channel.

[0014] Optionally, the pressing assembly includes a pressing cover plate with the pressing air outlet, and a pressing plate linear drive mechanism that drives the pressing cover plate to move closer to or away from the feeding track in a horizontal direction.

[0015] Optionally, it may also include a pusher assembly for pushing the sealing ring upward out of the feed trough.

[0016] Optionally, the top material assembly includes a top material head extending upward into the feeding trough, and a top material linear drive mechanism that drives the top material head to move up and down relative to the feeding track.

[0017] Optionally, the bottom of the feeding trough is provided with a through hole for the top material head to pass through at a position directly below the pressing air outlet.

[0018] Optionally, a waste box is provided on the side of the pressing assembly away from the vibratory feeder.

[0019] The beneficial effects of this utility model are as follows: It provides a sealing ring anti-clogging feeding device, which continuously blows ion air into the feeding trough by installing a plasma blower and an air supply channel. This ion air can effectively neutralize the static electricity on the surface of the sealing ring, thereby avoiding the adhesion problem caused by static electricity.

[0020] Furthermore, the pressure assembly provides appropriate limits during the movement of the sealing ring, preventing it from bouncing off the feeding track due to vibration, and ensuring that the sealing ring can move smoothly along the track to the picking position. This design not only ensures a smooth feeding process but also reduces downtime caused by static electricity and bouncing, improving the reliability and production efficiency of the feeding system, automating the feeding process, and greatly reducing the need for manual intervention, thereby improving the overall performance of the feeding system.

[0021] Furthermore, due to the setting of the pressing air outlet, the high pressure caused by the ion wind in the feeding trough can be avoided, which would prevent the vibratory feeder from feeding material.

[0022] Therefore, the sealing ring anti-clogging feeding device provided by this utility model can effectively solve the problem that the sealing ring is easily blocked by static electricity in the feeding track. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of the sealing ring anti-clogging feeding device provided in the embodiment;

[0025] Figure 2 An exploded schematic diagram of the sealing ring anti-clogging feeding device provided in the embodiment.

[0026] In the picture:

[0027] 1. Vibratory feeder;

[0028] 2. Feeding track; 201. Feeding chute;

[0029] 3. Air supply cover; 301. Air supply duct; 302. Fasteners; 303. Air supply connector;

[0030] 4. Material pressing assembly; 401. Material pressing cover plate; 4011. Material pressing air outlet; 402. Linear drive mechanism for the pressing plate;

[0031] 5. Ejector assembly; 501. Ejector head; 502. Ejector linear drive mechanism;

[0032] 6. Waste box. Detailed Implementation

[0033] In this utility model, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment can be included in at least one embodiment of this utility model. The term "embodiment" appearing in various places throughout the specification does not necessarily refer to the same embodiment, nor does it specifically limit its independence or connection with other embodiments. In principle, in this utility model, as long as there are no technical contradictions or conflicts, the technical features mentioned in each embodiment can be combined in any way to form corresponding implementable technical solutions.

[0034] Unless otherwise defined, the technical terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the use of related terms herein is merely for the purpose of describing particular embodiments and is not intended to limit the invention.

[0035] In the description of this utility model, the term "and / or" is used to describe the logical relationship between objects, indicating that three relationships can exist. For example, A and / or B means: A exists, B exists, and A and B exist simultaneously. Additionally, the character " / " generally indicates that the preceding and following objects have an "or" logical relationship.

[0036] In this invention, terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any actual quantity, hierarchy, or order between these entities or operations.

[0037] Without further limitations, the use of terms such as “comprising,” “including,” “having,” or other similar expressions in this invention is intended to cover non-exclusive inclusion, which does not exclude the presence of additional elements in a process, method, or product that includes the stated elements, such that a process, method, or product that includes a series of elements may include not only those defined elements but also other elements not expressly listed, or elements inherent to such a process, method, or product.

[0038] Similar to the understanding in the Examination Guidelines, in this utility model, expressions such as "greater than," "less than," and "exceeding" are understood to exclude the stated number; expressions such as "above," "below," and "within" are understood to include the stated number. Furthermore, in the description of the embodiments of this utility model, "multiple" means two or more (including two), and similar expressions related to "multiple" are also understood in this way, such as "multiple groups" and "multiple times," unless otherwise explicitly specified.

[0039] In the description of the embodiments of this utility model, the space-related expressions used, such as "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "vertical," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," indicate the orientation or positional relationship based on the orientation or positional relationship shown in the specific embodiments or drawings. They are only for the convenience of describing the specific embodiments of this utility model or for the reader's understanding, and do not indicate or imply that the device or component referred to must have a specific position, a specific orientation, or be constructed or operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this utility model.

[0040] Unless otherwise expressly specified or limited, the terms "installation," "connection," "linking," "fixing," and "setting," as used in the description of the embodiments of this utility model, should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral setting; it can be a mechanical connection, an electrical connection, or a communication connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two components or the interaction between two components. For those skilled in the art to which this utility model pertains, the specific meaning of the above terms in the embodiments of this utility model can be understood according to the specific circumstances.

[0041] See Figure 1 and Figure 2 This utility model provides a sealing ring anti-clogging feeding device, including a vibratory plate 1, a feeding track 2, an air supply cover 3, and a pressing component 4.

[0042] The vibratory feeder 1 is used to deliver the sealing ring; the feeding track 2 is provided with a feeding groove 201; wherein, one end of the feeding groove 201 is connected to the discharge port of the vibratory feeder 1; the air supply cover 3 is located above the end of the feeding track 2 near the vibratory feeder 1, and is provided with an air supply channel 301 for connecting the plasma blower to the feeding groove 201; the pressing assembly 4 extends above the end of the feeding track 2 away from the vibratory feeder 1, and is provided with a pressing air outlet 4011 connected to the feeding groove 201.

[0043] The pressing assembly 4 has a blocking state in which it moves to the top of the end of the feeding track 2 away from the vibrating plate 1 to prevent the sealing ring from moving upward away from the feeding groove 201; and a picking state in which it moves away from the feeding track 2 to remove the sealing ring from the feeding groove 201.

[0044] The sealing ring anti-clogging feeding device provided in this embodiment operates as follows:

[0045] ① Vibratory plate 1, vibratory plate 1 starts working according to the preset vibration frequency and amplitude, and orderly feeds the sealing rings to the feeding trough 201;

[0046] ② The sealing ring moves along the feeding groove 201, and at the same time the air supply channel 301 on the air supply cover 3 opens, and the plasma blower blows an appropriate amount of ion air into the feeding groove 201 through the air supply channel 301.

[0047] ③ The ion wind neutralizes the static electricity on the surface of the sealing ring, preventing the sealing ring from sticking to the feeding track 2 due to static electricity.

[0048] ④ As the sealing ring moves, the pressing component 4 remains in the blocking state to prevent the sealing ring from bouncing upward and detaching from the feeding trough 201 due to vibration or airflow. Furthermore, due to the setting of the pressing air outlet 4011, the ion wind can be prevented from causing blockage and high pressure in the feeding trough 201, which would prevent the vibrating plate 1 from feeding material.

[0049] ⑤ When the sealing ring reaches the end of the feeding track 2, the air supply is stopped, and the pressing component 4 changes from the blocking state to the picking state and moves to the position where it is separated from the feeding track 2.

[0050] ⑥ The material handling robot or other material handling device removes the sealing ring at the end of the feeding trough 201 to complete the feeding process;

[0051] ⑦ The material pressing component 4 returns to the material blocking state, ready for the next material feeding cycle.

[0052] The sealing ring anti-clogging feeding device provided in this embodiment continuously blows ion air into the feeding trough 201 by installing a plasma blower and an air supply channel 301. This ion air can effectively neutralize the static electricity on the surface of the sealing ring, thereby avoiding the adhesion problem caused by static electricity.

[0053] Furthermore, the pressing assembly 4 provides appropriate limiting during the movement of the sealing ring, preventing it from bouncing off the feeding track 2 due to vibration, and ensuring that the sealing ring can move smoothly along the track to the picking position. This design not only ensures a smooth feeding process but also reduces downtime caused by static electricity and bouncing, improves the reliability and production efficiency of the feeding system, automates the feeding process, and greatly reduces the need for manual intervention, thereby improving the overall performance of the feeding system.

[0054] Furthermore, due to the setting of the pressing air outlet 4011, the high pressure caused by the ion wind to block the feeding trough 201 can be avoided, which would prevent the vibratory plate 1 from feeding material.

[0055] Therefore, the sealing ring anti-clogging feeding device provided by this utility model can effectively solve the problem that the sealing ring is easily blocked by static electricity in the feeding track 2.

[0056] In this embodiment, the air supply cover 3 is fastened to the feeding track 2 by fasteners 302. The side of the air supply cover 3 is provided with an air supply connector 303 for connecting the plasma blower to the air supply channel 301.

[0057] In this embodiment, the pressing assembly 4 includes a pressing cover plate 401 with the pressing air outlet 4011, and a pressing plate linear drive mechanism 402 that drives the pressing cover plate 401 to move horizontally closer to or further away from the feeding track 2. When the pressing plate linear drive mechanism 402 extends, the pressing cover plate 401 moves to the blocking state, and the pressing air outlet 4011 is aligned with the feeding trough 201; when the pressing plate linear drive mechanism 402 retracts, the pressing cover plate 401 moves to the material-receiving state, so as to expose the sealing ring at the end of the feeding trough 201.

[0058] In this embodiment, the sealing ring anti-clogging feeding device further includes a material ejection assembly 5 for ejecting the sealing ring upward from the feeding groove 201.

[0059] Optionally, the top material assembly 5 includes a top material head 501 extending upward into the feeding trough 201, and a top material linear drive mechanism 502 that drives the top material head 501 to move up and down relative to the feeding track 2. Accordingly, the bottom of the feeding trough 201 is provided with a through hole for the top material head 501 to pass through at a position directly below the pressing air outlet 4011.

[0060] After the pressure cover plate 401 is separated from the feeding track 2, the ejector linear drive mechanism 502 drives the ejector head 501 to extend upward into the feeding groove 201, thereby ejecting the sealing ring upward out of the feeding groove 201, so that the material handling robot or other material handling device can take out the sealing ring at the end of the feeding groove 201.

[0061] Optionally, a waste box 6 is provided on the side of the pressing assembly 4 away from the vibratory feeder 1. When the delivered sealing ring is damaged or defective, the material handling robot or other material handling device can directly throw the defective sealing ring into the waste box 6.

[0062] It should be noted that the linear drive mechanism mentioned in this utility model can be a cylinder, hydraulic cylinder, electric cylinder, or motor lead screw linear module, etc., and the rotary drive mechanism mentioned can be a brushed motor, brushless motor, or rotary cylinder, etc. This utility model does not limit the specific structural form of the linear drive mechanism and the rotary drive mechanism.

[0063] The sealing ring anti-clogging feeding device provided in this embodiment has the following advantages:

[0064] ① Static electricity neutralization effect: By installing a plasma blower and air supply channel 301, the device can blow ion air into the feeding trough 201, effectively neutralizing the static electricity on the surface of the sealing ring, preventing the sealing ring from sticking due to static electricity, and ensuring the continuity and stability of the feeding.

[0065] ② Preventing the sealing ring from bouncing: The design of the pressure assembly 4 can provide appropriate pressure during the movement of the sealing ring, preventing the sealing ring from bouncing upward and detaching from the feeding trough 201 due to vibration or airflow, thus ensuring that the sealing ring can move smoothly along the track.

[0066] ③ Avoid high pressure blockage: The setting of the pressing air outlet 4011 helps to avoid the high pressure caused by the ion wind blocking the feeding trough 201, ensuring that the vibrating plate 1 can feed normally, and further improving the reliability of the feeding system.

[0067] ④ Top Material Assembly 5: The design of the top material assembly 5 allows the sealing ring to be pushed upward out of the feeding groove 201, which facilitates the removal of the sealing ring by the material handling robot or other material handling device, further improving the convenience of material handling.

[0068] Finally, it should be noted that although the above embodiments have been described in the text and drawings of this application, this should not limit the scope of patent protection of this application. Any technical solutions that are based on the essential concept of this application and utilize the content described in the text and drawings of this application, resulting in equivalent structural or procedural substitutions or modifications, as well as the direct or indirect application of the technical solutions of the above embodiments to other related technical fields, are all included within the scope of patent protection of this application.

Claims

1. A sealing ring anti-clogging feeding device, characterized in that, include: Vibratory plate (1), the vibratory plate (1) is used to deliver the sealing ring; The feeding track (2) is provided with a feeding trough (201); wherein one end of the feeding trough (201) is connected to the discharge port of the vibrating plate (1); Air supply cover (3), the air supply cover (3) is located above one end of the feeding track (2) near the vibrating plate (1), and is provided with an air supply channel (301) for connecting the plasma blower to the feeding trough (201). The pressing assembly (4) extends above the end of the feeding track (2) away from the vibrating plate (1) and is provided with a pressing air outlet (4011) connected to the feeding trough (201). The pressing assembly (4) has a blocking state in which it moves to the top of the end of the feeding track (2) away from the vibrating plate (1) to restrict the sealing ring from moving upward away from the feeding groove (201); and a picking state in which it moves away from the feeding track (2) to remove the sealing ring from the feeding groove (201).

2. The sealing ring anti-clogging feeding device according to claim 1, characterized in that, The air supply cover (3) is fastened to the feeding track (2) by fasteners (302).

3. The sealing ring anti-clogging feeding device according to claim 1, characterized in that, The side of the air supply cover (3) is provided with an air supply connector (303) for connecting the plasma blower to the air supply channel (301).

4. The sealing ring anti-clogging feeding device according to claim 1, characterized in that, The pressing assembly (4) includes a pressing cover plate (401) with the pressing air outlet (4011) and a pressing plate linear drive mechanism (402) that drives the pressing cover plate (401) to move closer to or away from the feeding track (2) in the horizontal direction.

5. The sealing ring anti-clogging feeding device according to claim 1, characterized in that, It also includes a pusher assembly (5) for pushing the sealing ring upward out of the feed trough (201).

6. The sealing ring anti-clogging feeding device according to claim 5, characterized in that, The top material assembly (5) includes a top material head (501) extending from bottom to top into the feeding trough (201) and a top material linear drive mechanism (502) that drives the top material head (501) to move up and down relative to the feeding track (2).

7. The sealing ring anti-clogging feeding device according to claim 6, characterized in that, The bottom of the feeding trough (201) is provided with a through hole for the top material head (501) to pass through, located directly below the pressing air outlet (4011).

8. The sealing ring anti-clogging feeding device according to claim 1, characterized in that, The material pressing assembly (4) has a waste box (6) on the side away from the vibratory plate (1).