Automatic skew leveling feed device

By designing an automatic swaying and leveling feeding device, the problems of cargo collision and friction are solved by using buffer and leveling components, achieving efficient cargo transportation and quality inspection, and improving the efficiency of the feeding device.

CN119821996BActive Publication Date: 2025-11-07CHANGZHOU JINZHIDE MASCH TECH CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202510298114.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-11-07
Estimated Expiration
2045-03-13

AI Technical Summary

Technical Problem

In high-precision processing scenarios, existing feeding devices are prone to damage to goods and machines due to collisions and friction with the edges of the conveyor, increasing operating costs.

Method used

Design an automatic swaying and leveling feeding device, including a feeding device base frame, rotating rollers, conveyor belt, auxiliary components and leveling components. Buffer springs, side baffles and leveling components are used to prevent goods from bumping and rubbing. Inclined blocks and push plates push the goods back to the middle of the conveyor belt to prevent accumulation and friction.

Benefits of technology

It effectively prevents goods from bumping and rubbing, improves the efficiency of the feeding device, reduces damage to goods and machines, and lowers operating costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119821996B_ABST
    Figure CN119821996B_ABST
Patent Text Reader

Abstract

The application discloses an automatic deviation leveling feeding device, which comprises a feeding device chassis and an auxiliary assembly, and rotating rollers are rotationally connected to the inside of both sides of the feeding device chassis, one end of one group of the rotating rollers is bolted with a motor, and a conveying belt is commonly transmissionally connected between two groups of the rotating rollers, which is applied to the technical field of feeding devices, two adjacent leveling assemblies can separate two adjacent groups of goods, prevent accumulation and friction between goods, during conveying of the goods to the other end by the conveying belt, a staff member can perform quality inspection on the goods, after the goods are conveyed to the other end, relevant staff members separate the qualified goods and the unqualified goods and convey the goods to the next link from two groups of first conveying mechanisms respectively, and the open design of one end of the feeding device chassis facilitates the second conveying mechanism to stably convey the products to the surface of the conveying belt, so that the use efficiency of the feeding device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of feeding devices, in particular to an automatic deviation flattening feeding device. BACKGROUND

[0002] The feeding device is a key equipment for material conveying and positioning in industrial production, widely used in metal processing, plastic forming, packaging, printing and other fields. The traditional feeding device realizes continuous conveying of materials through mechanical structures such as rollers, chains or conveyors. However, in high-precision processing scenarios, the flatness, position accuracy and stability of materials are extremely high.

[0003] The present application is mainly used in electronic manufacturing, plastic products and automobile parts production lines. In order to improve the efficiency of quality inspection of multiple products, multiple products need to be continuously conveyed to the surface of the conveyor belt for quality inspection. Therefore, multiple products can be placed on the surface of the second conveying mechanism for conveying at the position of the second conveying mechanism. After quality inspection during the conveying process, a dedicated worker will convey the qualified and unqualified products from the two groups of first conveying mechanisms to another link.

[0004] The existing feeding device (conveyor belt, etc.) is prone to cause the goods to knock against each other or fall off the surface of the conveyor belt during the conveying process due to too many goods, causing damage to the goods. Moreover, if the goods rub against the surface of the conveying machine for a long time, it is easy to cause damage to the machine and increase the cost of work. SUMMARY

[0005] The purpose of the present application is to provide an automatic deviation flattening feeding device, which has the advantages of preventing goods from knocking against each other and rubbing against the edge of the conveying machine, and automatically pushing the deviated goods of multiple weights back to the middle of the machine.

[0006] The above technical purpose of the present application is achieved by the following technical scheme: an automatic deviation flattening feeding device, comprising a feeding device chassis and an auxiliary assembly, the feeding device chassis is internally rotatably connected with rotating rollers on both sides, one end of one group of rotating rollers is bolted with a motor, a conveyor belt is commonly transmissionally connected between the two groups of rotating rollers, six groups of auxiliary assemblies are respectively welded on both sides of the upper end of the feeding device chassis, a plurality of flattening assemblies are arranged on the surface of the conveyor belt, a second conveying mechanism is arranged at one end of the feeding device chassis, and two groups of first conveying mechanisms are arranged at the other end of the feeding device chassis.

[0007] The auxiliary assembly is used to prevent the goods from falling off and scratching the edge of the feeding device, and the flattening assembly is used to move the goods of multiple weights to the middle of the conveyor belt and prevent the goods from knocking against each other.

[0008] The application further provides that the auxiliary assembly comprises a stand, a vertical plate and a connecting plate, six groups of the stand are respectively welded on both sides of the upper end of the feeder chassis, six groups of the vertical plate are respectively welded on the upper surface of the six groups of the stand, and three groups of buffer springs are welded on one side of each of the six groups of the vertical plate.

[0009] The buffer spring is used for buffering the movement of the goods to prevent damage to the goods.

[0010] The application further provides that a side baffle is welded on one side of each of the three groups of the buffer spring, an arc-shaped end is welded on one end of the surface of each of the six groups of the side baffle, a spring pull rod is bolted on the upper end of each of the six groups of the stand, an inclined block is bolted on the movable end of each of the six groups of the spring pull rod, and a tempered plate is fixedly connected to one side of the inclined surface of each of the six groups of the inclined block.

[0011] The side baffle is used for blocking the goods, and the arc-shaped end facilitates the movement of the goods in contact with the arc-shaped surface to the front of the side baffle, and the inclined block is used for driving the leveling assembly to operate.

[0012] The application further provides that a fixed block is welded on the upper end of each of the six groups of the inclined block, the six groups of the connecting plate are respectively welded on one side of the surface of the six groups of the fixed block, a sliding column is welded on one side of each of the six groups of the side baffle, and the sliding column passes through the vertical plate and is in sliding connection.

[0013] The sliding column is used for extruding the inclined surface of the inclined block to facilitate the upward movement of the inclined block.

[0014] The application further provides that the leveling assembly comprises a limiting plate and a sliding rod, a plurality of groups of the limiting plate are fixedly connected to the surface of the conveyor belt, two groups of the sliding rod are respectively welded on the surface of the six groups of the stand, and a plurality of groups of a sliding shell are slidingly connected to the surface of the two groups of the sliding rod.

[0015] The limiting plate is used for limiting the front baffle, and the sliding shell can slide on the surface of the sliding rod.

[0016] The application further provides that a front baffle is welded on one side of each of a plurality of groups of the sliding shell, the front baffle is welded between the corresponding two groups of the limiting plate, a lifting plate is welded on one end of each of the six groups of the connecting plate, and a rotating rod is welded on one side of each of a plurality of groups of the front baffle.

[0017] The lifting plate is used for lifting the rotating plate, the rotating rod is used for rotating the gear, and the front baffle is used for isolating the goods.

[0018] The application further provides that a gear is rotationally connected to the surface of each of a plurality of groups of the rotating rod, a rotating plate is welded on one side of the surface of each of a plurality of groups of the gear, and a sliding hole is formed in one side of the surface of each of a plurality of groups of the rotating plate.

[0019] The gear is used to drive the tooth plate to move when rotating, and the sliding hole is used to push the plate to slide.

[0020] The application is further provided that: the sliding hole is slidably connected with a push plate, the push plate is welded with a tooth plate on one side, and the tooth plate is in meshing connection with the gear, the turning plate is welded with a turning plate on one side, and the turning plate is in sliding connection with the push plate.

[0021] The push plate is used to move with the tooth plate, and the push plate is used to push the goods lifted by the turning plate to the center of the conveyor belt.

[0022] In summary, the application has the following advantages:

[0023] In use, the second conveying mechanism conveys goods to the surface of the conveyor belt, and the conveyor belt runs with the rotation of the motor, and then the goods are placed between the adjacent two leveling assemblies, when the goods move and deviate, they will contact the auxiliary assembly, which will buffer the movement of the goods to prevent the goods from moving too fast and affecting the goods, and also prevent the goods from rubbing with the feeder chassis, and the auxiliary assembly has the ability to prevent the goods from being stuck, when the auxiliary assembly is extruded by the goods, it will drive the leveling assembly to run, which can lift the deviated goods, and since the leveling assembly has the function of lifting and pushing the goods, it is suitable for goods of various weights, and the adjacent two leveling assemblies can separate the adjacent two goods to prevent accumulation and friction between the goods, during the conveying of the goods to the other end of the conveyor belt, a worker will conduct quality inspection on the goods, and after the goods are conveyed to the other end, the relevant workers will separate the qualified and unqualified goods and convey them to the next link from the two first conveying mechanisms respectively, the design of the open end of the feeder chassis facilitates the stable conveying of the products to the surface of the conveyor belt by the second conveying mechanism, thereby improving the use efficiency of the feeder. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a schematic perspective view of the overall structure of the application;

[0025] Figure 2 is a schematic perspective view of the limiting plate structure of the application;

[0026] Figure 3 is a schematic perspective view of the side baffle structure of the application;

[0027] Figure 4 is a schematic perspective view of the sliding shell structure of the application;

[0028] Figure 5 is a schematic perspective view of the buffer spring structure of the application;

[0029] Figure 6 is a schematic perspective view of the slide rod structure of the present application.

[0030] Reference signs:

[0031] 1, feeder chassis; 2, motor; 3, rotating roller; 4, leveling assembly; 401, limiting plate; 402, slide rod; 403, slide shell; 404, front baffle; 405, rotating plate; 406, turning plate; 407, push plate; 408, toothed plate; 409, rotating rod; 410, gear; 411, slide hole; 412, lifting plate; 5, auxiliary assembly; 501, stand; 502, vertical plate; 503, buffer spring; 504, arc-shaped end; 505, side baffle; 506, slide column; 507, fixed block; 508, connecting plate; 509, spring pull rod; 510, inclined block; 511, toughened plate; 6, conveyor belt; 7, first conveying mechanism; 8, second conveying mechanism. DETAILED DESCRIPTION

[0032] The present application will be further described in detail below with reference to the accompanying drawings.

[0033] Example 1:

[0034] Reference Figures 1-6 An automatic deflection leveling feeder device, comprising a feeder chassis 1 and an auxiliary assembly 5, both sides of the feeder chassis 1 are rotatably connected with rotating rollers 3, one end of one group of rotating rollers 3 is bolted with a motor 2, both groups of rotating rollers 3 are commonly transmissionally connected with a conveyor belt 6, six groups of auxiliary assemblies 5 are respectively welded on both sides of the upper end of the feeder chassis 1, the surface of the conveyor belt 6 is provided with a plurality of leveling assemblies 4, one end of the feeder chassis 1 is provided with a second conveying mechanism 8, and the other end of the feeder chassis 1 is provided with two groups of first conveying mechanisms 7.

[0035] Brief description of the use process: in use, the second conveying mechanism 8 will deliver the goods to the surface of the conveying belt 6, and as the motor 2 operates, the rotating roller 3 will drive the conveying belt 6 to run, and then the goods will be placed between the two adjacent leveling assemblies 4, when the goods move position offset, it will contact with the auxiliary assembly 5, the auxiliary assembly 5 will buffer the movement of the goods, prevent the goods from moving too fast and affecting the goods, also can prevent the goods from rubbing with the feeder chassis 1, and the auxiliary assembly 5 has the ability to prevent the goods from being stuck, when the auxiliary assembly 5 is extruded by the goods, it will drive the leveling assembly 4 to run, the leveling assembly 4 can lift the offset goods, because the leveling assembly 4 has the function of lifting and pushing the goods, so it is suitable for goods of different weights, and the two adjacent leveling assemblies 4 can separate the two adjacent goods to prevent accumulation and friction between the goods, during the conveying of the goods to the other end of the conveying belt 6, a worker will inspect the goods, when the goods are conveyed to the other end, the relevant workers will separate the qualified and unqualified goods and convey them to the next link from the two first conveying mechanisms 7 respectively, the design of the feeder chassis 1 with an open end facilitates the second conveying mechanism 8 to stably deliver the products to the surface of the conveying belt 6, which improves the use efficiency of the feeder.

[0036] Example 2:

[0037] Based on example 1, referring to Figure 3 and Figure 5 , the auxiliary assembly 5 includes a stand 501, a vertical plate 502 and a connecting plate 508, six stands 501 are respectively welded on the upper end of the feeder chassis 1 on both sides, six vertical plates 502 are respectively welded on the upper surface of the six stands 501, and three sets of buffer springs 503 are welded on one side of each of the six vertical plates 502; a side baffle 505 is welded on the side of each of the three sets of buffer springs 503, an arc end 504 is welded on one end of the surface of each of the six side baffles 505, a spring tension rod 509 is bolted on the upper end of each of the six stands 501, an inclined block 510 is bolted on the movable end of each of the six spring tension rods 509, and a tempered plate 511 is fixedly connected on the inclined surface of each of the six inclined blocks 510; a fixed block 507 is welded on the upper end of each of the six inclined blocks 510, a connecting plate 508 is welded on one side of the surface of each of the six fixed blocks 507, and a slide column 506 is welded on one side of each of the six side baffles 505, the slide column 506 passes through the vertical plate 502 and is in sliding connection.

[0038] Brief use process: when the goods are in contact with the side baffle 505 and are extruded, the buffer spring 503 will buffer the goods, preventing the goods from being bumped due to excessive speed, and the side baffle 505 can block the goods, preventing the goods from rubbing against the feeder chassis 1, and the side baffle 505 will drive the slide column 506 to extrude the tempered plate 511 on the surface of the inclined block 510. Since one side of the inclined block 510 is a slope, and the surface of the tempered plate 511 is relatively smooth, the inclined block 510 will drive the connecting plate 508 to move upwards, thereby driving the lifting plate 412 to move upwards. The lifting plate 412 is used to drive the leveling assembly 4 to operate, and the spring pull rod 509 is used to drive the inclined block 510 to reset after moving. When the goods move too fast and move out of the front contact range of the side baffle 505, the goods will be in contact with the arc-shaped end 504. When the goods are extruded by the arc-shaped end 504, the goods will be brought back to the range where they can be in contact with the side baffle 505 along the arc-shaped end 504. Because the arc-shaped end 504 is a circular arc surface, when it is extruded, the side baffle 505 will move to a certain position, and the goods will slide along the arc surface, achieving the effect of facilitating the buffering of the goods and preventing the goods from being damaged.

[0039] Embodiment 3:

[0040] On the basis of Embodiment 2, referring to Figure 2 , Figure 4 and Figure 6 , the leveling assembly 4 comprises a limiting plate 401 and a slide rod 402. A plurality of sets of limiting plates 401 are fixedly connected to the surface of the conveyor belt 6. Two sets of slide rods 402 are respectively welded to the surfaces of six sets of stands 501. The surfaces of the two sets of slide rods 402 are slidably connected with a plurality of sets of slide shells 403. One side of each of the plurality of sets of slide shells 403 is welded with a front baffle 404, and the front baffle 404 is welded between the corresponding two sets of limiting plates 401. One end of each of the six sets of connecting plates 508 is welded with a lifting plate 412. One side of each of the plurality of sets of front baffles 404 is welded with a rotating rod 409. The surfaces of the plurality of sets of rotating rods 409 are rotatably connected with a plurality of sets of gears 410. One side of the surface of each of the plurality of sets of gears 410 is welded with a rotating plate 405. One side of the surface of each of the plurality of sets of rotating plates 405 is provided with a slide hole 411. The inside of each of the plurality of sets of slide holes 411 is slidably connected with a push plate 407. One side of each of the plurality of sets of push plates 407 is welded with a toothed plate 408, and the toothed plate 408 and the gear 410 are in meshing connection. One side of each of the plurality of sets of rotating plates 405 is welded with a turning plate 406, and the turning plate 406 and the push plate 407 are in sliding connection.

[0041] Brief description of using process: because the front baffle 404 is fixed on the conveying belt 6, when the conveying belt 6 drives the front baffle 404 to move, the rotating plate 405 is located at the upper end of the lifting plate 412, when the lifting plate 412 is lifted, the rotating plate 405 is driven to rotate on the surface of the rotating rod 409 by the gear 410, so that the turnover plate 406 forms an inclined angle, so that the goods slide to the middle of the conveying belt 6, when facing some heavy goods, the rotating plate 405 will make the gear 410 rotate during lifting, so as to drive the push plate 407 at one end of the toothed plate 408 to move in the sliding hole 411, the push plate 407 will push the goods to the middle of the conveying belt 6, when the front baffle 404 moves to the lower part of the conveying belt 6, the rotating plate 405 will rotate with the gear 410, during the rotation, the gear 410 will drive the toothed plate 408 to move to one side, at the same time, the toothed plate 408 will rotate with the rotating plate 405, when moving and rotating to a distance, the toothed plate 408 will be resisted on the surface of the front baffle 404, so as to prevent the rotating plate 405 from continuing to rotate, thereby preventing the rotating plate 405 from vertically downward when moving to the lower part of the conveying belt 6, so as to prevent the normal use, at the same time, the connection between the push plate 407 and the toothed plate 408 is thickened, so as to prevent deformation after stress and unable to use, and the adjacent two groups of front baffles 404 can separate the adjacent two groups of goods, prevent friction and knock, the turnover plate 406 and the push plate 407 are made of aluminum material, which has high strength and light weight, the sliding shell 403 is designed to slide on the surface of the sliding rod 402, which can prevent the conveying belt 6 from wrinkling during use, and can flatten the conveying belt 6 to both sides, so as to facilitate pushing the goods to the middle of the conveying belt 6.

[0042] The specific embodiment is only an explanation of the application, which is not a limitation of the application, and those skilled in the art can make modifications to the embodiment without creative contribution according to the needs after reading the specification, but as long as it is within the scope of the claims of the application, it is protected by the patent law.

Claims

1. An automatic deflection leveling feed arrangement comprising a feed arrangement chassis and an auxiliary assembly, characterized by: Both sides of the inside of the feeding device chassis are rotationally connected with rotating rollers, one end of one group of rotating rollers is bolted with a motor, both groups of rotating rollers are commonly transmissionally connected with a conveying belt, six groups of auxiliary assemblies are respectively welded on both sides of the upper end of the feeding device chassis, the conveying belt surface is provided with several groups of leveling assemblies, one end of the feeding device chassis is provided with a second conveying mechanism, the other end of the feeding device chassis is provided with two groups of first conveying mechanisms, the auxiliary assembly includes a stand, a vertical plate and a connecting plate, six groups of stands are respectively welded on both sides of the upper end of the feeding device chassis, six groups of vertical plates are respectively welded on the upper surfaces of the six groups of stands, one side of each of the six groups of vertical plates is welded with three groups of buffer spring plates, corresponding to one side of the three groups of buffer spring plates is commonly welded with a side baffle, one end of the surface of each of the six groups of side baffles is welded with an arc-shaped end, the upper end of each of the six groups of stands is bolted with a spring pull rod, the movable end of each of the six groups of spring pull rods is bolted with an inclined block, one side of the inclined surface of each of the six groups of inclined blocks is fixedly connected with a tempered plate, the upper end of each of the six groups of inclined blocks is welded with a fixed block, one side of the surface of each of the six groups of fixed blocks is respectively welded with a connecting plate, one side of each of the six groups of side baffles is welded with a sliding column, the sliding column passes through the vertical plate and is slidably connected, the leveling assembly includes a limiting plate and a sliding rod, several groups of limiting plates are fixedly connected to the surface of the conveying belt, two groups of sliding rods are respectively welded on the surfaces of the six groups of stands, the surfaces of the two groups of sliding rods are slidably connected with several groups of sliding shells, one side of each of the several groups of sliding shells is welded with a front baffle, and the front baffle is welded between the corresponding two groups of limiting plates, one end of each of the six groups of connecting plates is welded with a lifting plate, one side of each of the several groups of front baffles is welded with a rotating rod, the surfaces of the several groups of rotating rods are rotationally connected with gears, one side of the surfaces of the several groups of gears is welded with a rotating plate.

Citation Information

Patent Citations

  • Logistics transportation carrying device

    CN111605991A

  • Logistics bill automatic identification device

    CN114940339A

  • Automatic deviation correcting device of belt conveyor

    CN209582808U

  • Transportation device for aquatic feed processing

    CN210162624U

  • Product sorting and conveying device for quality management

    CN213792897U