Finished feed grading and packaging device

The grading and screening device, which combines a belt conveyor and a blower, solves the problem of feed particles clogging the screen holes, achieves effective grading and screening of feed particles, and ensures the smoothness and accuracy of grading and screening.

CN223683961UActive Publication Date: 2025-12-19HENAN HUIDING BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422621610.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2025-12-19
Estimated Expiration
2035-09-02

AI Technical Summary

Technical Problem

In existing feed packaging equipment, feed particles easily clog the sieve holes during the screening process, resulting in ineffective grading and screening.

Method used

The feed pellets are graded and screened by using a first belt conveyor and a second belt conveyor in conjunction with a blower. The feed pellets are spread evenly by using the vibration devices of the guide rods and the second guide rods, and then graded and screened by the blower.

Benefits of technology

It achieves effective grading and screening of feed pellets, avoids clogging, and ensures the smoothness and accuracy of grading and screening.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223683961U_ABST
    Figure CN223683961U_ABST
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Abstract

The utility model provides a feed finished product grading and packaging device. According to the finished feed product grading and packaging device, feed particles discharged from the interior of a feeding hopper can be conveyed through driving of a first belt conveyor, and meanwhile the feed particles with light weight can be blown into a second shaftless spiral conveyor through a second guide pipe to be collected through wind power generated by driving of a first fan; the first-stage sorting of the feed particles is achieved, the feed particles subjected to the first-stage sorting can be conveyed through driving of a second belt conveyor, and meanwhile, the feed particles with relatively light weight can be blown into a first shaftless spiral conveyor through a first material guide pipe to be collected through wind power generated by driving of a second draught fan; by the adoption of the structure, the feed particles are not prone to being blocked in the process of sorting the feed particles, and feed can be effectively classified and screened according to different weights of the feed particles.
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Description

TECHNICAL FIELD

[0001] The utility model relates to feed finished product packaging technical field, specifically disclose a feed finished product grading and packaging device. BACKGROUND

[0002] The existing feed packaging device adopts the screen to screen the feed particles in the process of using, and the feed particles of different lengths can fall from the screen hole of the same size, and the feed particles are easy to block the screen hole, so that the packaging device cannot effectively grade and screen the feed. CONTENT OF THE UTILITY MODEL

[0003] In view of above-mentioned defects or insufficient in prior art, the present application aims at providing a feed finished product grading and packaging device, which comprises a first packaging machine, a second packaging machine and a third packaging machine, and a stock bin fixedly installed above the second packaging machine through a fixing frame, one side of the stock bin is provided with a first shaftless screw conveyor, and the other side of the stock bin is provided with a second shaftless screw conveyor, the bottom of the stock bin is communicated with a first discharge pipe communicated with the second packaging machine, the outer side of one end of the first shaftless screw conveyor is communicated with a second discharge pipe communicated with the first packaging machine, the outer side of one end of the second shaftless screw conveyor is communicated with a third discharge pipe communicated with the third packaging machine, one side of the top of the stock bin is provided with a feeding hopper, one side of the stock bin is communicated with a first material guide pipe communicated with the first shaftless screw conveyor, the other side of the stock bin is communicated with a second material guide pipe communicated with the second shaftless screw conveyor, the inner side of the stock bin is respectively installed with a first belt conveyor and a second belt conveyor distributed upward and downward, and the inner side of the stock bin above the first belt conveyor and the second belt conveyor is fixedly installed with a flattening mechanism, the inner side of the stock bin is fixedly installed with a first fan and a second fan respectively below the first belt conveyor and the second belt conveyor, the inner side of the stock bin is provided with a first material guide plate and a second material guide plate respectively on one side of the first material guide pipe and the second material guide pipe, the inner side of the feeding hopper is installed with a feeding mechanism, the inside of the side of the stock bin close to the second material guide pipe is provided with an air inlet, and the inner side of the air inlet is fixedly installed with a filter screen.

[0004] Preferably, the feeding mechanism comprises a material blocking plate clamped in the inner side of the feeding hopper, a motor telescopic rod fixedly installed in the inner side of the stock bin is fixedly installed in the inner side of the material blocking plate, one side of the bottom of the material blocking plate is provided with a fixed block, and a supporting rod movably sleeved in the inner side of the feeding hopper is fixedly sleeved in the inner side of the fixed block.

[0005] Preferably, the flattening mechanism comprises first and second support plates fixedly installed on the inner side of the bin, first and second guide rods movably sleeved on the inner side of the first and second support plates respectively, a fixed seat arranged between the first and second guide rods, a vibration exciter fixedly installed on the top of the fixed seat, a brush arranged on the bottom of the fixed seat, and springs sleeved on the outer side of one end of the first and second guide rods.

[0006] Preferably, the first and second fans are controlled by stepless speed regulating switches.

[0007] Beneficial effects are as follows:

[0008] 1. The feed product grading and packaging device can drive the first belt conveyor to convey the feed particles discharged from the inside of the feed hopper, and the wind power generated by driving the first fan can blow the feed particles with relatively light weight through the second guide pipe to the inside of the second shaftless screw conveyor for collection, so that the first-stage selection of the feed particles is realized; the second belt conveyor can be driven to convey the feed particles after the first-stage selection, and the wind power generated by driving the second fan can blow the feed particles with relatively light weight through the first guide pipe to the inside of the first shaftless screw conveyor for collection, so that the second-stage selection of the feed particles is realized; the structure can prevent the feed particles from being blocked during the selection process, and can effectively grade and screen the feed according to the different weights of the feed particles.

[0009] 2. The feed product grading and packaging device can drive the fixed seat to reciprocatingly vibrate along the axial direction of the first and second guide rods through the driving of the vibration exciter, and the brush can flatten the feed particles on the conveying belts of the first and second belt conveyors, so that the feed particles are not stacked on the conveying belts, and the distribution of the feed particles is ensured to be uniform, so that the wind power generated by driving the first and second fans can be used for the selection of the feed particles. BRIEF DESCRIPTION OF DRAWINGS

[0010] Other characteristics, objects and advantages of the present application will become more apparent from the following detailed description of non-restrictive embodiments, made with reference to the attached drawings:

[0011] Figure 1 It is a structural schematic view of the utility model;

[0012] Figure 2 It is a structural schematic view of the utility model; Figure 1 It is an enlarged schematic view of the structure at A in the utility model;

[0013] Figure 3 It is an enlarged schematic view of the structure at B in the utility model; Figure 1 ​

[0014] Figure 4 For Figure 1 Enlarged schematic view of the structure at C;

[0015] Figure 5 For the partial schematic view of the feeding mechanism of the utility model;

[0016] Figure 6 For the schematic view of the flat mechanism of the utility model.

[0017] In the figure: 1, the first packaging machine; 2, the second packaging machine; 3, the third packaging machine; 4, the fixed frame; 5, the stock bin; 6, the first shaftless screw conveyor; 7, the second shaftless screw conveyor; 8, the first discharge pipe; 9, the second discharge pipe; 10, the third discharge pipe; 11, the feeding hopper; 12, the first guide pipe; 13, the second guide pipe; 14, the first belt conveyor; 15, the second belt conveyor; 16, the flat mechanism; 161, the first support plate; 162, the second support plate; 163, the first guide rod; 164, the second guide rod; 165, the fixed seat; 166, the vibration exciter; 167, the brush; 168, the spring; 17, the first fan; 18, the second fan; 19, the first guide plate; 20, the second guide plate; 21, the feeding mechanism; 211, the baffle; 212, the fixed pin; 213, the electric telescopic rod; 214, the fixed block; 215, the support rod; 22, the air inlet; 23, the filter screen. DETAILED DESCRIPTION

[0018] The application will be further described below in detail in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the related utility model, and not to limit the utility model. In addition, it should be noted that, in order to facilitate the description, only the parts related to the utility model are shown in the drawings.

[0019] The different kinds of section lines in the drawings of the embodiments of the utility model are not marked according to the national standard, and the material of the element is not required, which is to distinguish the sectional view of the element in the drawing.

[0020] Please refer to Figures 1-6The utility model provides a kind of feed finished product grading packaging device, including first packaging machine 1, second packaging machine 2 and third packaging machine 3 and bin 5 fixedly installed above second packaging machine 2, one side of bin 5 is provided with first shaftless screw conveyor 6, and the other side of bin 5 is provided with second shaftless screw conveyor 7, the bottom of bin 5 is communicated with first discharge pipe 8 between second packaging machine 2, the outside of one end of first shaftless screw conveyor 6 is communicated with second discharge pipe 9 between first packaging machine 1, the outside of one end of second shaftless screw conveyor 7 is communicated with third discharge pipe 10 between third packaging machine 3, one side of the top of bin 5 is provided with feed hopper 11, one side of bin 5 is communicated with first material guide pipe 12 between first shaftless screw conveyor 6, the other side of bin 5 is communicated with second material guide pipe 13 between second shaftless screw conveyor 7, the inside of bin 5 is respectively installed with first belt conveyor 14 and second belt conveyor 15 distributed in upper and lower, and the inside of bin 5 is fixedly installed with flat mechanism 16 above first belt conveyor 14 and second belt conveyor 15, the inside of bin 5 is fixedly installed with first fan 17 and second fan 18 below first belt conveyor 14 and second belt conveyor 15 respectively, the inside of bin 5 is provided with first material guide plate 19 and second material guide plate 20 on the side of first material guide pipe 12 and second material guide pipe 13 respectively, the first material guide plate 19 and the second material guide plate 20 can guide the separated feed particles, the inside of feed hopper 11 is installed with feeding mechanism 21, the inside of bin 5 is provided with air inlet 22 near the side of second material guide pipe 13, the air inlet 22 is fixedly installed with filter screen 23, the outside air can enter the inside of bin 5 when first fan 17 and second fan 18 are driven, and the air can be filtered and dusted by filter screen 23.

[0021] Wherein, feeding mechanism 21 includes the baffle plate 211 of clamping in the inside of feed hopper 11, the inside of baffle plate 211 is fixedly installed with electric telescopic rod 213 of fixed sleeve in the inside of bin 5 by fixed pin 212, the side of baffle plate 211 bottom is provided with fixed block 214, fixed block 214 is fixedly sleeved with support rod 215 of movable sleeve in the inside of feed hopper 11, the opening size of the bottom of feed hopper 11 can be adjusted when baffle plate 211 is moved by the drive of electric telescopic rod 213, so that the feeding amount of feed particles can be automatically controlled, and baffle plate 211 can be supported by the cooperation of fixed block 214 and support rod 215, to ensure that baffle plate 211 is not easy to bend when bearing external force, so as to move baffle plate 211 under the drive of electric telescopic rod 213.

[0022] The first support plate 161 and the second support plate 162 are movably sleeved with the first guide rod 163 and the second guide rod 164, respectively, a fixed seat 165 is arranged between the first guide rod 163 and the second guide rod 164, the top of the fixed seat 165 is fixedly installed with a vibration exciter 166, and the bottom of the fixed seat 165 is provided with a brush 167, the outer side of one end of the first guide rod 163 and the second guide rod 164 is sleeved with a spring 168, the vibration generated by the vibration exciter 166 during driving can be buffered through the spring 168, and the fixed seat 165 can be reciprocated in the horizontal direction under the driving of the vibration exciter 166, so that the feed particles on the conveying belt can be laid flat through the brush 167.

[0023] The first fan 17 and the second fan 18 are controlled by stepless speed regulation switches, the rotation speed of the first fan 17 and the second fan 18 can be controlled independently through the stepless speed regulation switches, so that the wind power generated by the first fan 17 and the second fan 18 during driving can effectively blow the feed particles with light weight.

[0024] When the packaging device is used, the feed particles are sent to the inside of the feeding hopper 11 in advance, the first shaftless screw conveyor 6, the second shaftless screw conveyor 7, the vibration exciter 166, the electric telescopic rod 213, the first belt conveyor 14, the second belt conveyor 15, the first fan 17 and the second fan 18 are started, the electric telescopic rod 213 drives the movable head of the blocking plate 211 to open the discharge port at the bottom of the feeding hopper 11, at this time, the feed particles in the feeding hopper 11 are discharged onto the first belt conveyor 14, the feed particles are conveyed through the driving of the first belt conveyor 14, the brush 167 at the bottom of the fixed seat 165 is vibrated along the axial direction of the first guide rod 163 and the second guide rod 164 through the driving of the vibration exciter 166, the feed particles on the first belt conveyor 14 are laid flat through the vibration of the brush 167, the feed particles after laying flat fall from the conveying belt under the conveying of the first belt conveyor 14, the wind power generated by the driving of the first fan 17 blows the feed particles with light weight through the second guide pipe 13 to the inside of the second shaftless screw conveyor 7, and the first-stage selection of the feed particles is completed, the feed particles are conveyed into the third packaging machine 3 through the third discharge pipe 10 through the driving of the second shaftless screw conveyor 7.

[0025] The feed particles after the first sorting flow to the second belt conveyor 15 through the second guide plate 20, and the feed particles are continuously conveyed by the driving of the second belt conveyor 15. The brush 167 at the bottom of the fixed seat 165 is vibrated along the axial direction of the first guide rod 163 and the second guide rod 164 by the driving of the vibration generator 166, and the feed particles on the second belt conveyor 15 are flattened by the vibration of the brush 167. The flattened feed particles fall from the conveyor belt under the conveying of the second belt conveyor 15, and the relatively light feed particles are blown into the interior of the first shaftless screw conveyor 6 through the first guide pipe 12 by the wind power generated by the driving of the second fan 18, so that the second sorting of the feed particles is completed. The feed particles are conveyed into the interior of the first packaging machine 1 through the second discharge pipe 9 by the driving of the first shaftless screw conveyor 6, and the feed particles after the second sorting are conveyed into the interior of the second packaging machine 2 through the first guide plate 19 and the first discharge pipe 8. The contents not described in detail in the description belong to the prior art known to those skilled in the art.

[0026] It should be noted that the embodiments and the features in the embodiments in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.

[0027] The above description is only the preferred embodiments of the present application and the explanation of the applied technical principles. It should be understood by those skilled in the art that the utility model scope involved in the present application is not limited to the technical solutions formed by the specific combination of the above technical features, and should also cover other technical solutions formed by the arbitrary combination of the above technical features or their equivalent features without departing from the utility model concept. For example, the above features are replaced with the technical features disclosed in the present application (but not limited to) having similar functions to form the technical solutions.

Claims

1. A feed finished product grading and packaging device comprising a first packaging machine (1), a second packaging machine (2) and a third packaging machine (3) and a bin (5) fixedly mounted above the second packaging machine (2) by means of a fixed frame (4), characterized in that: The side of the bunker (5) is provided with a first shaftless screw conveyor (6), and the other side of the bunker (5) is provided with a second shaftless screw conveyor (7), the bottom of the bunker (5) is communicated with a first discharge pipe (8) communicated with the second packaging machine (2), the outer side of one end of the first shaftless screw conveyor (6) is communicated with a second discharge pipe (9) communicated with the first packaging machine (1), the outer side of one end of the second shaftless screw conveyor (7) is communicated with a third discharge pipe (10) communicated with the third packaging machine (3), one side of the top of the bunker (5) is provided with a feeding hopper (11), one side of the bunker (5) is communicated with a first guide pipe (12) communicated with the first shaftless screw conveyor (6), the other side of the bunker (5) is communicated with a second guide pipe (13) communicated with the second shaftless screw conveyor (7), the inner side of the bunker (5) is respectively provided with a first belt conveyor (14) and a second belt conveyor (15) distributed upward and downward, and the inner side of the bunker (5) above the first belt conveyor (14) and the second belt conveyor (15) is fixedly provided with a flattening mechanism (16), the inner side of the bunker (5) is fixedly provided with a first fan (17) and a second fan (18) below the first belt conveyor (14) and the second belt conveyor (15) respectively, the inner side of the bunker (5) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first guide pipe (12) and the second guide pipe (13) respectively, the inner side of the feeding hopper (11) is provided with a feeding mechanism (21), the inner side of the feeding hopper (11) is provided with a first guide plate (19) and a second guide plate (20) on one side of the first 2. A feed product grading and packaging apparatus according to claim 1, characterised in that: ​ 3. A feed product grading and packaging apparatus according to claim 1 wherein: ​ 4. A feed product grading and packaging apparatus according to claim 1, wherein: The first fan (17) and the second fan (18) are controlled by stepless speed regulation switches.