Feed inlet buffer device for magnetic material processing

The magnetic material processing inlet buffer device addresses the issue of material collisions in vibratory feeders by using a curved and inclined design with flow control and cushioning mechanisms to minimize damage and ensure stable delivery.

CN223101859UActive Publication Date: 2025-07-15BAOTOU HENGYU MAGSOURCE TECH CO LTD
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Patent Information

Application Number
CN202422174852.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-15
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

When conveying raw materials to the vibrating disk, the height of the feeding mechanism can easily cause the raw materials to collide with the bottom of the vibrating disk, causing damage to the raw materials or vibrating disk.

Method used

A feed-inlet buffering device for magnetic material processing is designed, including a connecting component, a diversion mechanism, a buffer mechanism and an extension mechanism. Through components such as bent parts, inclined parts, blocking plates, elastic plates and rubber plates, the diversion, buffering and lowering of the drop height of raw materials is achieved.

Benefits of technology

It effectively reduces the collision between raw materials and the bottom of the vibration disk, prevents damage to raw materials and vibration disk, and ensures that the raw materials enter the next process in an orderly and stable manner.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a material inlet buffer device for magnetic material processing, which comprises a connecting assembly, the connecting assembly is connected with a feeding mechanism of a vibration disc, one end of the connecting assembly is provided with a shunting mechanism, the rear end of the connecting assembly is provided with a buffer mechanism, and the end part of the connecting assembly is provided with an extension mechanism; the connecting assembly comprises a bending part, the flow dividing mechanism comprises a blocking plate, the buffering mechanism comprises an elastic plate, and the extending mechanism comprises a supporting acrylic plate and a rubber plate. The bending part and the inclined part are arranged in the connecting assembly, so that the height of the buffer device is conveniently reduced; the raw materials are shunted through the blocking plate, and shunting control over the raw materials is completed; the buffering mechanism blocks the raw materials through springs and elastic plates on the two sides, and buffering control over the raw materials is completed. And the extension mechanism is arranged, so that the raw materials can contact the bottom of the vibration disc conveniently and are prevented from falling from a high place to damage the raw materials or the vibration disc.
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Description

Technical Field

[0001] The utility model relates to the technical field of feeding, in particular to a feeding port buffer device for magnetic material processing. Background Technique

[0002] A vibrating bowl is an auxiliary feeding device for an automatic assembly or automatic processing machine. It can arrange various products in an orderly manner, and cooperate with an automatic assembly device to assemble each part of the product into a complete product, or cooperate with an automatic processing machine to complete the processing of workpieces.

[0003] There is a pulse electromagnet under the vibrating bowl hopper, which can make the hopper vibrate in the vertical direction, and drive the hopper to do torsional vibration around its vertical axis by an inclined spring plate. The parts in the hopper rise along the spiral track due to this vibration. During the rising process, through a series of track screening or posture changes, the parts can automatically enter the assembly or processing position in a unified state according to the requirements of assembly or processing. Its working purpose is to automatically arrange disordered workpieces in an orderly and accurate manner through vibration and convey them to the next process.

[0004] In order to reduce the operation of replenishing raw materials into the vibrating bowl, an automated feeding mechanism is used to convey raw materials into the vibrating bowl. However, when conveying raw materials into the vibrating bowl, due to the height of the feeding mechanism, it is easy to cause the raw materials to collide with the bottom of the vibrating bowl, which is likely to cause damage to the raw materials or the vibrating bowl. Content of the Utility Model

[0005] The purpose of the utility model is to provide a feeding port buffer device for magnetic material processing, which has the advantages of slowing down the feeding height, realizing the diversion, buffering of raw materials and reducing the falling height of raw materials, etc., so as to solve the problems put forward in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solutions:

[0007] A feeding port buffer device for magnetic material processing includes a connection component, the connection component is connected to the feeding mechanism of the vibrating bowl, a diversion mechanism is arranged at one end of the connection component, a buffer mechanism is arranged at the rear end of the connection component, and an extension mechanism is arranged at the end of the connection component;

[0008] The connection component includes a bending part, the diversion mechanism includes a blocking plate, the buffer mechanism includes an elastic plate, and the extension mechanism includes a supporting acrylic plate and a rubber plate.

[0009] Further, the connection component includes a connection part, one side of the connection part is provided with the bending part, one side of the bending part is provided with an inclined part, the connection part, the bending part and the inclined part are of an integrally formed structure, and the connection part is connected with the feeding mechanism of the vibrating disk.

[0010] Further, the shunting mechanism includes side positioning plates, the side positioning plates are fixedly welded on both sides of the connection part, and both sides of the side positioning plates are connected by a double-headed threaded rod, and both ends of the double-headed threaded rod are respectively threadedly connected with fixing nuts located outside the side positioning plates.

[0011] Further, a movable sleeve is sleeved on the double-headed threaded rod, a blocking plate is fixedly connected to the lower part of the movable sleeve, the blocking plate is arranged in the middle of the connection part, and the blocking plate is movably located in the feeding mechanism of the vibrating disk.

[0012] Further, engaging grooves are formed on both sides of the end of the inclined part, an engaging part is fixedly arranged at the end of the elastic plate, and the engaging part is engaged and connected inside the engaging groove.

[0013] Further, mounting parts are arranged on the outer sides of the tails of both sides of the elastic plates, a spring is fixedly installed on one side of the mounting part, and the other end of the spring is fixedly connected with the inner side wall of the inclined part.

[0014] Further, first connection heads are fixedly arranged on both sides of the end of the inclined part, and the first connection heads are movably connected with one end of the supporting acrylic plate through a first shaft rod.

[0015] Further, second connection heads are fixedly arranged on both sides of the upper part of the inclined part, and the second connection heads are movably connected with one end of the rubber plate through a second shaft rod

[0016] Compared with the prior art, the beneficial effects of the present utility model are:

[0017] When the present utility model is in use, it is connected with the feeding mechanism of the vibrating disk through the connection component, and the connection component is provided with a bending part and an inclined part, which are convenient for reducing the height of the buffer device, and the setting of the bending part and the inclined part is convenient for the raw materials to fall;

[0018] And the double-headed threaded rod in the shunting mechanism can not only fixedly connect the connection component and the feeding mechanism of the vibrating disk to maintain the stability of the connection, but also can install the blocking plate, so that the blocking plate can shunt the raw materials, and under the action of the movable sleeve, it can rotate, which is convenient for the raw materials to be pushed to open and discharge materials, and completes the shunting control of the raw materials;

[0019] The buffer mechanism blocks the raw materials through the springs and elastic plates on both sides. Due to the extrusion of the raw materials, the springs can be forced to contract, and the elastic plates can bend, enabling the raw materials to be discharged and processed, thus completing the buffer control of the raw materials.

[0020] The setting of the extension mechanism facilitates the raw materials to contact the bottom of the vibrating disk, preventing damage to the raw materials or the vibrating disk caused by falling from a height. That is, the raw materials are supported and discharged through the supporting acrylic plate, and the rubber plate hinders the raw materials, enabling the raw materials to fall slowly and preventing damage to the raw materials or the vibrating disk caused by falling at high speed. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic side view structure diagram of the present invention;

[0022] Figure 2 is a schematic top view structure diagram of the present invention;

[0023] Figure 3 is a schematic diagram of the shunt mechanism, buffer mechanism and extension mechanism of the present invention;

[0024] Figure 4 is a schematic diagram of the connection component of the present invention.

[0025] In the figure: 1. Connection component; 101. Connection part; 102. Bending part; 103. Tilted part; 104. Engaging groove; 2. Shunt mechanism; 201. Side positioning plate; 202. Double-headed threaded rod; 203. Fixed nut; 204. Movable sleeve; 205. Blocking plate; 3. Buffer mechanism; 301. Elastic plate; 302. Engaging part; 303. Mounting part; 304. Spring; 4. Extension mechanism; 401. First connection head; 402. First shaft rod; 403. Supporting acrylic plate; 404. Second connection head; 405. Second shaft rod; 406. Rubber plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0027] Please refer to Figures 1-4 , the present invention provides a technical solution:

[0028] A feeding port buffer device for magnetic material processing, including a connection component 1, the connection component 1 is connected to the feeding mechanism of the vibrating bowl, one end of the connection component 1 is provided with a shunting mechanism 2, the rear end of the connection component 1 is provided with a buffering mechanism 3, and the end of the connection component 1 is provided with an extension mechanism 4;

[0029] The connection component 1 includes a bending part 102, the shunting mechanism 2 includes a blocking plate 205, the buffering mechanism 3 includes an elastic plate 301, and the extension mechanism 4 includes a supporting acrylic plate 403 and a rubber plate 406.

[0030] In order to facilitate the falling of raw materials, reduce the falling height of raw materials, and realize the connection with the feeding mechanism of the vibrating bowl, in this embodiment, preferably, the connection component 1 includes a connection part 101, one side of the connection part 101 is provided with the bending part 102, one side of the bending part 102 is provided with an inclined part 103, the connection part 101, the bending part 102 and the inclined part 103 are of an integrally formed structure, and the connection part 101 is connected to the feeding mechanism of the vibrating bowl.

[0031] In order to realize the fixed connection between the connection part 101 and the feeding mechanism of the vibrating bowl and maintain the stability of the connection, in this embodiment, preferably, the shunting mechanism 2 includes side positioning plates 201, the side positioning plates 201 are fixedly welded on both sides of the connection part 101, and the two side positioning plates 201 are connected by a double-headed threaded rod 202, and both ends of the double-headed threaded rod 202 are respectively threadedly connected with fixing nuts 203 located outside the side positioning plates 201.

[0032] In order to make the blocking plate 205 easy to rotate and can be automatically opened due to the pushing of raw materials when blocking raw materials, in this embodiment, preferably, a movable sleeve 204 is sleeved on the double-headed threaded rod 202, the lower part of the movable sleeve 204 is fixedly connected with the blocking plate 205, the blocking plate 205 is arranged in the middle of the connection part 101, and the blocking plate 205 is movably located in the feeding mechanism of the vibrating bowl.

[0033] In order to install the elastic plate 301 and maintain the stable installation of the elastic plate 301, in this embodiment, preferably, clamping grooves 104 are opened on both sides of the end of the inclined part 103, a clamping part 302 is fixedly arranged at the end of the elastic plate 301, and the clamping part 302 is clamped and connected inside the clamping grooves 104.

[0034] In order to elastically support the elastic plate 301 so that the elastic plate 301 is easily forced to open and realize the conveying of raw materials, in this embodiment, preferably, mounting portions 303 are provided on the outer sides of the tails of the two elastic plates 301. A spring 304 is fixedly installed on one side of the mounting portion 303, and the other end of the spring 304 is fixedly connected to the inner side wall of the inclined portion 103.

[0035] In order to install and connect the supporting acrylic plate 403, in this embodiment, preferably, first connecting heads 401 are fixedly provided on both sides of the end of the inclined portion 103. The first connecting heads 401 are movably connected to one end of the supporting acrylic plate 403 through a first shaft rod 402.

[0036] In order to movably install and connect the rubber plate 406, in this embodiment, preferably, second connecting heads 404 are fixedly provided on both sides of the upper part of the inclined portion 103. The second connecting heads 404 are movably connected to one end of the rubber plate 406 through a second shaft rod 405.

[0037] Working principle: When in use, the connecting portion 101 in the connecting assembly 1 is fixedly connected to the feeding mechanism of the vibrating disk through the side positioning plate 201, the double-headed threaded rod 202 and the fixing nut 203 in the shunting mechanism 2. And when the raw materials are conveyed, the intermittent conveying of the raw materials is realized through the blocking plate 205, and the blocking plate 205 is connected through the movable sleeve 204 and will automatically open under the pushing of the raw materials, facilitating the conveying of the raw materials. When the raw materials are conveyed, they fall through the bending portion 102 and the inclined portion 103 and are conveyed by relying on gravity;

[0038] And when the raw materials are conveyed, they are buffered by the buffer mechanism 3, and it is prevented that there are too many raw materials or the moving speed is too fast. And the buffer mechanism 3 includes an elastic plate 301. One end of the elastic plate 301 is installed on the inner side of the inclined portion 103 through a clamping portion 302, and a spring 304 is installed on one side of the elastic plate 301 through a mounting portion 303 to support the elastic plate 301, so that the elastic plate 301 can slow down the moving speed of the raw materials under its own elastic action and the action of the spring 304, and complete the buffered conveying of the raw materials;

[0039] When the buffer mechanism 3 discharges the raw materials, the raw materials enter the extension mechanism 4, and the supporting acrylic plate 403 supports and discharges the raw materials, and the rubber plate 406 presses the raw materials to increase the friction force of the raw material movement and prevent the moving speed of the raw materials from being too fast. And the extension mechanism 4 can approach the bottom of the vibrating disk, reducing the conveying height of the raw materials, so that when the raw materials fall into the vibrating disk, the speed and height are both low and the raw materials and the vibrating disk will not be damaged.

[0040] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A feeding port buffer device for magnetic material processing, characterized in that: It includes a connecting component (1) which is connected to the feeding mechanism of the vibrating bowl. One end of the connecting component (1) is provided with a shunting mechanism (2), the rear end of the connecting component (1) is provided with a buffering mechanism (3), and the end of the connecting component (1) is provided with an extending mechanism (4). The connecting component (1) includes a bending part (102), the shunting mechanism (2) includes a blocking plate (205), the buffering mechanism (3) includes an elastic plate (301), and the extending mechanism (4) includes a supporting acrylic plate (403) and a rubber plate (406).

2. The feeding port buffer device for magnetic material processing according to claim 1, characterized in that: The connecting component (1) includes a connecting part (101). The bending part (102) is provided on one side of the connecting part (101), and an inclined part (103) is provided on one side of the bending part (102). The connecting part (101), the bending part (102) and the inclined part (103) are of an integrally formed structure, and the connecting part (101) is connected to the feeding mechanism of the vibrating bowl.

3. The feeding port buffer device for magnetic material processing according to claim 2, wherein: The shunting mechanism (2) includes side positioning plates (201) which are fixedly welded on both sides of the connecting part (101). The two side positioning plates (201) are connected by a double-headed threaded rod (202), and fixing nuts (203) are respectively threadedly connected to both ends of the double-headed threaded rod (202) outside the side positioning plates (201).

4. A feeding port buffer device for magnetic material processing according to claim 3, characterized in that: A movable sleeve (204) is sleeved on the double-headed threaded rod (202). The lower part of the movable sleeve (204) is fixedly connected to the blocking plate (205). The blocking plate (205) is arranged in the middle of the connecting part (101), and the blocking plate (205) is movably located in the feeding mechanism of the vibrating bowl.

5. The feeding port buffer device for magnetic material processing according to claim 2, characterized in that: Engaging grooves (104) are formed on both sides of the end of the inclined part (103). The end of the elastic plate (301) is fixedly provided with an engaging part (302), and the engaging part (302) is engaged and connected inside the engaging grooves (104).

6. The feeding port buffer device for magnetic material processing according to claim 5, characterized in that: Mounting parts (303) are provided on the outer sides of the tails of the two elastic plates (301). A spring (304) is fixedly installed on one side of the mounting part (303), and the other end of the spring (304) is fixedly connected to the inner side wall of the inclined part (103).

7. A feeding port buffer device for magnetic material processing according to claim 2, characterized in that: First connecting heads (401) are fixedly provided on both sides of the end of the inclined part (103), and the first connecting heads (401) are movably connected to one end of the supporting acrylic plate (403) through a first shaft rod (402).

8. The feeding port buffer device for magnetic material processing according to claim 2, wherein: Second connecting heads (404) are fixedly provided on both sides of the upper part of the inclined part (103), and the second connecting heads (404) are movably connected to one end of the rubber plate (406) through a second shaft rod (405).