Chicken feed processing equipment and method for chicken manure feed utilization

By using reciprocating screens, vibrating screens, and fan blade separation technology in chicken manure feed utilization equipment, the problem of separating impurities and stones in chicken manure has been solved, achieving the complete utilization of chicken manure and ensuring animal health.

CN118872874BActive Publication Date: 2025-11-07XINJIANG BEIJIANG POULTRY BREEDING CO LTD
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Patent Information

Application Number
CN202411291326.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-11-07
Estimated Expiration
2044-09-14

AI Technical Summary

Technical Problem

Existing chicken manure feed utilization equipment cannot effectively remove impurities from chicken manure, resulting in animals consuming both impurities and organic decomposition products at the same time, which harms animal health. Furthermore, chicken manure and impurities cannot be completely separated, leading to incomplete utilization of chicken manure.

Method used

A chicken feed processing device for utilizing chicken manure as feed is adopted. Chicken feathers are separated by reciprocating screen and scraper, stones in chicken manure are separated by vibrating screen and separating screen, and small granular chicken manure is separated by fan blades, so as to achieve complete separation of chicken manure and impurities.

Benefits of technology

It effectively removes impurities and stones from chicken manure, ensuring the purity of animal feed, improving the utilization rate of chicken manure, and avoiding the harm of impurities to animal health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of feed processing, and particularly relates to a chicken feed processing device and method for chicken manure feed conversion, which comprises a shell and a discharging plate, a feeding port is formed in the top of the shell, the discharging plate is slidingly installed on the side wall of the feeding port, a motor one is fixedly installed on the side wall of the shell, and a connecting rod two is fixedly connected with the output shaft of the motor one. The chicken feather in the chicken manure is filtered through the reciprocating screen, and the chicken manure and the stones in the chicken manure are separated through the vibrating screen and the separating screen, so that the impurities and organic decomposition products in the chicken manure after the impurities are removed are simultaneously eaten by animals, but the feed containing impurities cannot be absorbed by animals, and even the impurities in the feed can harm the health of animals. The small granular chicken manure and the stones are separated through the fan blade, so that the chicken manure is still contained in the impurities after the chicken manure removes the impurities, the chicken manure and the impurities cannot be completely separated, and the chicken manure cannot be fully utilized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of feed processing, and particularly relates to a chicken feed processing device and method for chicken manure feed utilization. BACKGROUND

[0002] With the rapid development of animal husbandry, chicken manure is the main waste in the breeding process, but it contains rich organic matter and nutrient components such as protein and minerals. These components can be used as feed raw materials again after proper treatment, thereby reducing resource waste and feed cost. Meanwhile, chicken manure feed utilization can effectively reduce environmental pollution and promote ecological balance. The key to chicken manure feed utilization is to remove or degrade harmful substances in chicken manure through specific processing equipment and methods, while retaining the nutrient components. However, the existing equipment does not effectively remove impurities in chicken manure, so that the impurities and organic matter decomposition products in chicken manure containing impurities are simultaneously consumed by animals after feed utilization. However, the feed containing impurities cannot be absorbed by animals, and even the impurities in the feed can harm the health of animals. In addition, after removing impurities from chicken manure, the impurities still contain chicken manure, and chicken manure and impurities cannot be completely separated, so that chicken manure cannot be fully utilized. SUMMARY

[0003] The present application relates to the technical field of feed processing, and particularly relates to a chicken feed processing device and method for chicken manure feed utilization.

[0004] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0005] The utility model provides a kind of chicken feed processing equipment of chicken manure feed utilization, including shell and blanking plate, the top of the shell is equipped with feed inlet, the blanking plate is slidably installed in the side wall of feed inlet, the side wall of the shell is fixedly installed with motor one, the output shaft of motor one is fixedly connected with connecting rod two, the side wall of blanking plate is rotatably installed with connecting rod one, the side wall of the shell is equipped with sliding slot one and sliding slot six, the connecting rod one is slidably installed in the side wall of sliding slot one, the connecting rod one is rotatably installed in the side wall of connecting rod two, the side wall of the shell is equipped with two symmetric waste port one, discharge port one, discharge port two and waste port two in proper order, two the discharge port one between is equipped with discharge port one, and reciprocating screen is installed between blanking plate and waste port one, the side wall of reciprocating screen is integrally formed with two-way screw hole, the two-way screw hole is slidably installed in sliding slot six, the side wall of the shell is fixedly installed with motor two, the output shaft of motor two is fixedly connected with two-way screw rod, the two-way screw rod is rotatably installed in two-way screw hole, the side wall of the shell is equipped with two spring bins, the spring bin is located above waste port one and one-to-one correspondence, the spring bin is slidably installed with scraper in two The connecting place between scraper and spring bin is equipped with spring one, the side wall of two The scraper is rotatably installed with scraper tooth, and torsional spring is installed in the connecting place between scraper and scraper tooth, the reciprocating screen is fixedly installed with screen one, and two The scraper is located above screen one.

[0006] In the above-mentioned chicken feed processing equipment for chicken manure feed utilization, the shell is provided with a rotating bin, the inner wall of the rotating bin is fixedly installed with an upper pressing plate, the upper pressing plate is located below the discharge port, the inner wall of the rotating bin is rotatably installed with a gear one, the inner wall of the gear one is movably installed with a lower pressing ring, the lower pressing ring is located below the upper pressing plate, the bottom of the lower pressing ring is rotatably installed with a vibrating rod, the inside of the shell is fixedly installed with a fixed ring by screws, the fixed ring is located below the lower pressing ring, and the top of the fixed ring is fixedly installed with a vibrating ring.

[0007] In the above-mentioned chicken feed processing equipment for chicken manure feed utilization, the eccentric part of the top of the upper pressing plate is provided with a discharge port two, the discharge port two and the discharge port one are in communication with each other, the top of the upper pressing plate is provided with a sliding hole and a sliding slot seven, the sliding slot seven penetrates the discharge port two, a sliding rod and a baffle are slidably installed in the sliding hole and the sliding slot seven respectively, a connecting rod seven is movably installed between the sliding rod and the baffle, and a spring two is arranged between the side wall of the baffle and the side wall of the sliding slot seven.

[0008] In the above-mentioned chicken feed processing equipment for chicken manure feed utilization, the inner wall of the lower pressing ring is fixedly installed with a water filter screen, the shape of the water filter screen is consistent with the shape of the bottom of the upper pressing plate, the inside of the shell is fixedly installed with a motor five, the output shaft of the motor five is fixedly connected with a gear two, and the gear two and the gear one are engaged.

[0009] In the chicken feed processing equipment for chicken manure feed utilization, the top and the sidewall opening of the vibration ring are integrally formed with vibration teeth one and vibration teeth two respectively, the two sides of the opening of the vibration ring are provided with inclined surfaces, the bottom of the vibration rod is integrally formed with a sliding tooth, the sliding tooth is slidingly connected to the side edges of the vibration teeth one and the vibration teeth two, the sidewall of the vibration ring is fixedly sleeved with a limiting ring one and a limiting ring two, the limiting ring one and the limiting ring two are provided with an extrusion ring groove and a discharging ring groove, the extrusion ring groove corresponds to the vibration teeth one, the discharging ring groove corresponds to the vibration teeth two, the extrusion ring groove and the discharging ring groove are located above the vibration ring, and the vibration rod is slidingly installed in the inside of the extrusion ring groove and the discharging ring groove.

[0010] In the chicken feed processing equipment and method for chicken manure feed utilization, the sidewall of the fixed ring is fixedly sleeved with a hopper, the hopper is located below the vibration ring, the bottom of the hopper is integrally formed with a drain pipe, the drain pipe penetrates through the sidewall of the shell to the outside, the top of the hopper is fixedly installed with a support rod through screws, the top of the support rod is integrally formed with a top ball, and the top ball is located between the pressing ring and the vibration ring.

[0011] In the chicken feed processing equipment for chicken manure feed utilization, the inside of the shell is movably installed with a vibration screen and a separation screen, the sidewall of the vibration screen is integrally formed with a support rod one and a support rod two, the sidewall of the separation screen is integrally formed with a support rod three and a support rod four, the sidewall of the shell is symmetrically provided with a sliding groove two, a sliding groove three, a sliding groove four and a sliding groove five, the support rod one, the support rod two, the support rod three and the support rod four are slidingly installed in the sliding groove two, the sliding groove three, the sliding groove four and the sliding groove five respectively, and the sidewall of the vibration screen and the sidewall of the separation screen are fixedly installed with a flat plate and a screen two respectively.

[0012] In the chicken feed processing equipment for chicken manure feed utilization, the separation screen is located between the vibration screen and the discharge port one, the sidewall of the shell is fixedly installed with a motor three and a motor four, the output shafts of the motor three and the motor four are fixedly connected with a connecting rod four and a connecting rod six respectively, the connecting rod four and the support rod one are movably connected with a connecting rod three, and the connecting rod six and the support rod three are movably connected with a connecting rod five.

[0013] In the chicken feed processing equipment for chicken manure feed utilization, the sidewall of the shell is rotatably installed with a fan blade, the fan blade corresponds to the discharge port two, the sidewall of the shell is fixedly installed with a motor six, the output shaft of the motor six is fixedly connected with the fan blade, the sidewall of the shell is provided with a plurality of evenly distributed air holes, and the air holes are located between the motor six and the fan blade.

[0014] The chicken feed processing method for chicken manure feed utilization uses the chicken manure feed processing equipment, and specifically comprises the following steps: S1, after the chicken manure is filled into the feed inlet, the chicken manure slides to the lower side of the discharging plate through the side wall of the shell, the discharging plate presses the chicken manure to the direction of the reciprocating screen, the chicken manure is pressed by the discharging plate, so that the chicken manure passes through the screen one, the chicken feather in the chicken manure stays on the surface of the screen one, the chicken feather on the surface of the screen one is scraped by the scraping tooth, and is separated from the surface of the screen one and falls into the waste inlet one for discharge; S2, after the chicken feather is separated, the chicken manure falls onto the filter screen through the discharge port one and the discharge port two, the lower pressing ring drives the filter screen to rotate with the gear one, when the lower pressing ring rotates, the sliding tooth and the vibrating tooth one cooperate with each other, so that the lower pressing ring extrudes the chicken manure above the filter screen to the direction of the upper pressing plate for dehydration, and the chicken manure is extruded into a cake shape by the lower pressing ring and the upper pressing plate, when the sliding tooth and the vibrating tooth two cooperate with each other, the lower pressing ring rotates to the direction away from the upper pressing plate and discharges the cake-shaped chicken manure; S3, the cake-shaped chicken manure falls onto the vibrating screen, when the chicken manure slides downward, the vibrating screen vibrates, so that the cake-shaped chicken manure becomes into a broken block shape and a small particle shape, and falls onto the separating screen, the broken block-shaped chicken manure is separated by the separating screen, so that the broken block-shaped chicken manure is discharged through the discharge port one, the stones and the small particle-shaped chicken manure in the chicken manure are discharged to the waste port two, before the stones and the small particle-shaped chicken manure are discharged to the waste port two, the fan blade discharges air to the discharge port two, so that the small particle-shaped chicken manure is discharged through the discharge port two, and the stones are discharged through the waste port two.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] 1、The present application is characterized in that the reciprocating screen and the breaking scraper cooperate with each other, after the starting of the motor one and the motor two, the discharging plate presses the chicken manure to the direction of the reciprocating screen, the chicken manure passes through the reciprocating filter screen one, so that the chicken manure and the chicken feather in the chicken manure are separated, in order to prevent the chicken feather above the filter screen one from blocking the mesh of the filter screen one, the scraper drives the scraping tooth to slide when the reciprocating screen moves, when the reciprocating screen moves away from the scraping tooth, the scraping tooth scrapes the chicken feather above the filter screen one, the scraped chicken feather is discharged through the waste port one, and the chicken feather in the chicken manure is filtered through the reciprocating screen, so that the problem that the impurities and the organic matter decomposition products in the chicken manure without removing impurities are eaten by animals at the same time after the feed is processed, but the feed containing impurities cannot be absorbed by animals, and even the impurities in the feed can harm the health of animals is solved.

[0017] 2. This invention utilizes the cooperation between a vibrating screen and a separating screen. After the cake-shaped chicken manure falls above the vibrating screen, the vibration of the screen breaks the cake-shaped chicken manure into small pieces and granules. The stones in the chicken manure are separated at the breaking points. When the broken pieces, small granules, and stones fall to the separating screen, the broken pieces of chicken manure are discharged through the outlet. By separating the chicken manure and stones in the chicken manure through the vibrating screen and the separating screen, this invention solves the problem that when chicken manure that has not been impurity removed is processed into feed, the impurities and organic decomposition products in it are simultaneously consumed by animals. However, feed containing impurities cannot be absorbed by animals, and the impurities in the feed may even harm the animals' health.

[0018] 3. This invention utilizes the cooperation between the fan blade and the discharge port two. During the process of small granular chicken manure and pebbles being discharged from the separation screen to the waste port two, the fan blade blows air into the discharge port two. When the small granular chicken manure and pebbles pass through the air source, the generated air carries the small granular chicken manure into the discharge port two and out, thus separating the small granular chicken manure and pebbles. By separating the small granular chicken manure and pebbles through the fan blade, this invention solves the problem that after removing impurities from chicken manure, the impurities still contain chicken manure, and the chicken manure and impurities cannot be completely separated, resulting in the chicken manure not being fully utilized. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0020] Figure 2 This is a cross-sectional view of the overall structure in this invention;

[0021] Figure 3 For the present invention Figure 2 Enlarged view of point A in the middle;

[0022] Figure 4 For the present invention Figure 2 Enlarged view of point B in the middle;

[0023] Figure 5 For the present invention Figure 2 Enlarged view of point C in the middle;

[0024] Figure 6 This is a cross-sectional view of the shell structure in this invention;

[0025] Figure 7 This is a schematic diagram of the reciprocating screen and scraper in this invention;

[0026] Figure 8 This is a schematic diagram of the installation of the bidirectional screw and the first motor in this invention;

[0027] Figure 9 This is a schematic diagram of the installation of motor three and motor four in this invention;

[0028] Figure 10 Structure diagram of the upper pressing plate in the present application;

[0029] Figure 11 Structure diagram of the lower pressing ring in the present application;

[0030] Figure 12 Structure diagram of the funnel in the present application;

[0031] Figure 13 Structure sectional view of the vibrating ring in the present application;

[0032] Figure 14 Structure diagram of the discharging ring groove and the extruding ring groove in the present application.

[0033] In the figure: 1, housing; 111, feeding port; 112, discharging port one; 113, discharging port two; 114, waste port one; 115, waste port two; 121, sliding groove one; 122, sliding groove two; 123, sliding groove three; 124, sliding groove four; 125, sliding groove five; 13, fixed ring; 141, discharging port one; 142, rotating bin; 15, sliding groove six; 16, spring bin; 21, lower plate; 211, connecting rod one; 212, connecting rod two; 213, motor one; 22, reciprocating screen; 221, screen one; 222, scraper; 223, scraping tooth; 224, spring one; 225, bidirectional screw hole; 226, bidirectional screw rod; 227, motor two; 23, vibrating screen; 231, flat plate; 232, support rod one; 233, support rod two; 234, connecting rod three; 235, connecting rod four; 236, motor three; 24, separating screen; 241, screen two; 242, support rod three; 243, support rod four; 244, connecting rod five; 245, connecting rod six; 246, motor four; 31, vibrating ring; 311, limiting ring one; 312, limiting ring two; 313, vibrating tooth one; 314, inclined surface; 315, vibrating tooth two; 316, discharging ring groove; 317, extruding ring groove; 32, funnel; 321, support rod; 322, top ball; 323, drain pipe; 33, upper pressing plate; 331, sliding groove seven; 332, sliding hole; 333, discharging port two; 34, lower pressing ring; 341, water filtering net; 342, vibrating rod; 343, sliding tooth; 35, gear one; 351, gear two; 352, motor five; 36, sliding rod; 361, connecting rod seven; 362, baffle; 363, spring two; 37, fan blade; 371, motor six; 372, air hole. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application.

[0035] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0036] With reference to Figure 1 - Figure 14 As shown in the figure, a chicken feed processing equipment for chicken manure feed utilization includes a shell 1 and a feeding plate 21, the top of the shell 1 is provided with a feeding port 111, the feeding plate 21 is slidingly installed on the side wall of the feeding port 111, a motor one 213 is fixedly installed on the side wall of the shell 1, the output shaft of the motor one 213 is fixedly connected with a connecting rod two 212, a connecting rod one 211 is rotatably installed on the side wall of the feeding plate 21, a sliding groove one 121 and a sliding groove six 15 are provided on the side wall of the shell 1, the connecting rod one 211 is slidingly installed on the side wall of the sliding groove one 121, the connecting rod one 211 is rotatably installed on the side wall of the connecting rod two 212, two symmetrical waste ports one 114, a discharge port one 112, a discharge port two 113 and a waste port two 115 are sequentially provided on the side wall of the shell 1, a discharge port one 141 is provided between the two waste ports one 114, a reciprocating screen 22 is installed between the feeding plate 21 and the waste port one 114, a bidirectional screw hole 225 is integrally formed on the side wall of the reciprocating screen 22, the bidirectional screw hole 225 is slidingly installed in the sliding groove six 15, a motor two 227 is fixedly installed on the side wall of the shell 1, the output shaft of the motor two 227 is fixedly connected with a bidirectional screw rod 226, the bidirectional screw rod 226 is rotatably installed in the bidirectional screw hole 225, two spring bins 16 are provided on the side wall of the shell 1, the spring bins 16 are located above the waste port one 114 and correspond one by one, a scraper 222 is slidingly installed in each of the two spring bins 16, a spring one 224 is provided between the scraper 222 and the spring bin 16, a scraper tooth 223 is rotatably installed on the side wall of each of the two scrapers 222, a torsional spring is installed at the connection between the scraper 222 and the scraper tooth 223, a screen mesh one 221 is fixedly installed in the reciprocating screen 22, and each of the two scraper teeth 223 is located above the screen mesh one 221.

[0037] The working principle of the scraper 222 is as follows: when the reciprocating screen 22 moves towards the scraper 222, the side wall of the reciprocating screen 22 abuts against the scraper tooth 223, the scraper tooth 223 rotates, the scraper 222 is retracted upwards, the scraper tooth 223 slides over the side wall of the reciprocating screen 22, and falls above the screen mesh one 221; when the reciprocating screen 22 moves away from the scraper 222, the scraper tooth 223 abuts against the surface of the screen mesh one 221 and scrapes the chicken feathers on the surface; when the reciprocating screen 22 continues to move away from the scraper 222 and the scraper tooth 223 abuts against the side wall of the reciprocating screen 22, the scraper 222 is retracted upwards, so that the scraper tooth 223 is separated from the reciprocating screen 22; after the scraper tooth 223 is separated from the reciprocating screen 22, the scraper 222 is lowered to the bottom, so that the scraper tooth 223 vibrates, and the chicken feathers scraped by the scraper tooth 223 fall into the waste outlet one 114.

[0038] As shown in Figure 2 , Figure 4 and Figure 6 , the shell 1 is provided with a rotating bin 142, the inner wall of the rotating bin 142 is fixedly installed with an upper pressing plate 33, the upper pressing plate 33 is located below the discharge outlet one 141, the inner wall of the rotating bin 142 is rotatably installed with a gear one 35, the inner wall of the gear one 35 is movably installed with a lower pressing ring 34, the lower pressing ring 34 is located below the upper pressing plate 33, the bottom of the lower pressing ring 34 is rotatably installed with a vibrating rod 342, the inside of the shell 1 is fixedly installed with a fixed ring 13 through a screw, the fixed ring 13 is located below the lower pressing ring 34, and the top of the fixed ring 13 is fixedly installed with a vibrating ring 31.

[0039] As shown in Figure 2 , Figure 13 and Figure 14 , the top and the sidewall opening of the vibrating ring 31 are integrally formed with a vibrating tooth one 313 and a vibrating tooth two 315 respectively, the two sides of the opening of the vibrating ring 31 are provided with inclined surfaces 314, the bottom of the vibrating rod 342 is integrally formed with a sliding tooth 343, the sliding tooth 343 is slidingly connected to the side edges of the vibrating tooth one 313 and the vibrating tooth two 315, the sidewall of the vibrating ring 31 is fixedly sleeved with a limiting ring one 311 and a limiting ring two 312, the limiting ring one 311 and the limiting ring two 312 are provided with an extrusion ring groove 317 and a discharging ring groove 316 therebetween, the extrusion ring groove 317 corresponds to the vibrating tooth one 313, the discharging ring groove 316 corresponds to the vibrating tooth two 315, the extrusion ring groove 317 and the discharging ring groove 316 are located above the vibrating ring 31, and the vibrating rod 342 is slidingly installed in the inside of the extrusion ring groove 317 and the discharging ring groove 316.

[0040] When the vibration rod 342 rotates with the pressing ring 34 and slides in the extrusion ring groove 317, the sliding tooth 343 abuts against the vibration tooth one 313, so that the vibration rod 342 drives the pressing ring 34 to vibrate. When the vibration rod 342 rotates with the pressing ring 34 and slides in the discharging ring groove 316, the sliding tooth 343 slides through the inclined surface 314, the vibration rod 342 drives the inclined pressing ring 34 to tilt away from the upper pressing plate 33, the sliding tooth 343 abuts against the vibration tooth two 315, so that the vibration rod 342 drives the tilted pressing ring 34 to vibrate.

[0041] As shown in Figure 4 , Figure 10 and Figure 11 , the upper pressing plate 33 is provided with a discharging port two 333 at the eccentric position of the top, the discharging port two 333 and the discharging port one 141 are communicated with each other, the top of the upper pressing plate 33 is provided with a sliding hole 332 and a sliding groove seven 331, the sliding groove seven 331 penetrates the discharging port two 333, the sliding hole 332 and the sliding groove seven 331 are respectively provided with a sliding rod 36 and a baffle 362 which are slidably installed, the baffle 362 is movably connected with the sliding rod 36 through a connecting rod seven 361, the baffle 362 is provided with a spring two 363 between the side wall and the sliding groove seven 331, the inner wall of the pressing ring 34 is fixedly provided with a water filtering net 341, the shape of the water filtering net 341 is consistent with the shape of the bottom of the upper pressing plate 33, the inside of the shell 1 is fixedly provided with a motor five 352, the output shaft of the motor five 352 is fixedly connected with a gear two 351, the gear two 351 and the gear one 35 are engaged.

[0042] The working principle of the pressing ring 34 is as follows: when the motor five 352 is started, the gear one 35 and the gear two 351 are engaged with each other, the gear one 35 drives the pressing ring 34 and the water filtering net 341 to rotate, when the pressing ring 34 rotates, the vibration rod 342 drives the pressing ring 34 to reciprocatingly extrude in the direction of the upper pressing plate 33, so that the water filtering net 341 extrudes the chicken manure between the water filtering net 341 and the upper pressing plate 33 in the direction of the upper pressing plate 33, the water in the chicken manure is discharged and the chicken manure is formed into a cake shape, when the chicken manure is extruded into a cake shape, the vibration rod 342 drives the pressing ring 34 to tilt away from the upper pressing plate 33 and continue to vibrate, so that the cake-shaped chicken manure is separated from the water filtering net 341.

[0043] Further referring to Figure 4 , Figure 10 and Figure 11 , the working principle of the baffle 362 is as follows: when the vibration rod 342 drives the pressing ring 34 to reciprocatingly extrude, the pressing ring 34 abuts against the sliding rod 36, so that the sliding rod 36 pulls the baffle 362 through the connecting rod seven 361 to open the discharging port two 333, when the vibration rod 342 drives the pressing ring 34 to tilt, the pressing ring 34 is away from the sliding rod 36, the spring two 363 abuts against the baffle 362, so that the baffle 362 slides in the sliding groove seven 331, and the discharging port two 333 is closed.

[0044] As Figure 2 , Figure 4 and Figure 12 shown, the side wall of the fixed ring 13 is fixedly sleeved with a funnel 32, the funnel 32 is located below the vibration ring 31, the bottom of the funnel 32 is integrally formed with a drain pipe 323, the drain pipe 323 penetrates through the side wall of the shell 1 to the outside, the top of the funnel 32 is fixedly installed with a support rod 321 by screws, the top of the support rod 321 is integrally formed with a top ball 322, and the top ball 322 is located between the pressing ring 34 and the vibration ring 31.

[0045] When the vibration rod 342 drives the pressing ring 34 to reciprocally extrude, the extruded water is discharged through the drain pipe 323, and when the vibration rod 342 drives the pressing ring 34 to tilt, the top ball 322 abuts against the filter screen 341, the filter screen 341 is protruded in the middle, so that the cake-shaped chicken manure is separated from the filter screen 341.

[0046] As Figure 2 , Figure 6 and Figure 9 shown, the inside of the shell 1 is movably installed with a vibrating screen 23 and a separation screen 24, the side wall of the vibrating screen 23 is integrally formed with a first support rod 232 and a second support rod 233, the side wall of the separation screen 24 is integrally formed with a third support rod 242 and a fourth support rod 243, the side wall of the shell 1 is symmetrically provided with a second chute 122, a third chute 123, a fourth chute 124 and a fifth chute 125, the first support rod 232, the second support rod 233, the third support rod 242 and the fourth support rod 243 are respectively slidably installed in the second chute 122, the third chute 123, the fourth chute 124 and the fifth chute 125, the side wall of the vibrating screen 23 and the separation screen 24 is respectively fixedly installed with a flat plate 231 and a second screen 241, the separation screen 24 is located between the vibrating screen 23 and the first discharge port 112, the side wall of the shell 1 is fixedly installed with a third motor 236 and a fourth motor 246, the output shafts of the third motor 236 and the fourth motor 246 are respectively fixedly connected with a fourth connecting rod 235 and a sixth connecting rod 245, the fourth connecting rod 235 and the first support rod 232 are movably connected with a third connecting rod 234, and the sixth connecting rod 245 and the third support rod 242 are movably connected with a fifth connecting rod 244.

[0047] When the cake-shaped chicken manure falls above the vibrating screen 23, the vibrating screen 23 drives the flat plate 231 to vibrate, so that the cake-shaped chicken manure is broken into chicken manure pieces and small chicken manure particles along the inside stones, and the stones are separated from the chicken manure after the cake-shaped chicken manure is broken, and when the stones, the chicken manure pieces and the small chicken manure particles fall to the separation screen 24, the chicken manure pieces are discharged through the first discharge port 112, and the small chicken manure particles and the stones fall to the lower part of the separation screen 24.

[0048] As Figure 2 , Figure 5 and Figure 6As shown, the side wall of the shell 1 is rotatably provided with a fan blade 37 corresponding to the discharge port two 113, and the side wall of the shell 1 is fixedly provided with a motor six 371, and the output shaft of the motor six 371 is fixedly connected with the fan blade 37, and the side wall of the shell 1 is provided with a plurality of evenly distributed air holes 372 between the motor six 371 and the fan blade 37.

[0049] Wherein, when the small granular chicken manure and stones are discharged to the waste port two 115 through the separating screen 24, the motor six 371 drives the fan blade 37 to rotate, and the fan blade 37 blows air to the direction of the discharge port two 113, so that the small granular chicken manure is discharged to the discharge port two 113.

[0050] A chicken feed processing method for chicken manure feed utilization, which uses the above chicken feed processing equipment for chicken manure feed utilization, specifically includes the following steps: S1, after the chicken manure is filled into the feed inlet 111, the chicken manure slides to the lower side of the discharging plate 21 through the side wall of the shell 1, the discharging plate 21 presses the chicken manure to the direction of the reciprocating screen 22, the chicken manure is pressed through the discharging plate 21, so that the chicken manure passes through the screen mesh one 221, the chicken feathers on the surface of the screen mesh one 221 are scraped off by the scraping teeth 223, and fall into the waste port one 114; S2, after the chicken feathers are separated, the chicken manure falls onto the filter screen 341 through the discharge port one 141 and the discharge port two 333, the lower pressing ring 34 drives the filter screen 341 to rotate with the gear one 35, and when the lower pressing ring 34 rotates, the sliding teeth 343 and the vibrating teeth one 313 cooperate with each other to press the chicken manure above the filter screen 341 to the direction of the upper pressing plate 33 for dehydration, and the chicken manure is pressed into a cake shape by the lower pressing ring 34 and the upper pressing plate 33, and when the sliding teeth 343 and the vibrating teeth two 315 cooperate with each other, the lower pressing ring 34 rotates away from the upper pressing plate 33 and discharges the cake-shaped chicken manure; S3, the cake-shaped chicken manure falls onto the vibrating screen 23, and when the chicken manure slides downward, the vibrating screen 23 vibrates to make the cake-shaped chicken manure into pieces and small particles, and falls onto the separating screen 24, the pieces of chicken manure are separated by the separating screen 24, so that the pieces of chicken manure are discharged through the discharge port one 112, and the stones and small particles of chicken manure are discharged to the waste port two 115, and before the stones and small particles of chicken manure are discharged to the waste port two 115, the fan blade 37 blows air to the discharge port two 113, so that the small particles of chicken manure are discharged through the discharge port two 113, and the stones are discharged through the waste port two 115.

[0051] Further, the above-mentioned fixed connection should be understood in a broad sense unless otherwise specified and limited, for example, it can be welding, or gluing, or integrally formed, etc. The skilled in the art is familiar with the conventional means.

[0052] The above description is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent substitutions or changes according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A chicken feed processing device for chicken manure feed utilization, comprising a shell (1) and a discharging plate (21), characterized in that: The top of the shell (1) is provided with a feeding port (111), the blanking plate (21) is slidably installed on the side wall of the feeding port (111), the side wall of the shell (1) is fixedly installed with a motor one (213), the output shaft of the motor one (213) is fixedly connected with a connecting rod two (212), the side wall of the blanking plate (21) is rotatably installed with a connecting rod one (211), the side wall of the shell (1) is provided with a chute one (121) and a chute six (15), the connecting rod one (211) is slidably installed on the side wall of the chute one (121), the connecting rod one (211) is rotatably installed on the side wall of the connecting rod two (212), the side wall of the shell (1) is sequentially provided with two symmetrical waste ports one (114), a discharge port one (112), a discharge port two (113) and a waste port two (115), a discharge port one (141) is arranged between the two waste ports one (114), the blanking plate (21) and the waste port one (114) are provided with a reciprocating screen (22), the side wall of the reciprocating screen (22) is integrally formed with a bidirectional screw hole (225), the bidirectional screw hole (225) is slidably installed in the chute six (15), the side wall of the shell (1) is fixedly installed with a motor two (227), the output shaft of the motor two (227) is fixedly connected with a bidirectional screw rod (226), the bidirectional screw rod (226) is rotatably installed in the bidirectional screw hole (225), the side wall of the shell (1) is provided with two spring bins (16), the spring bins (16) are located above the waste port one (114) and correspond one by one, the spring bins (16) are slidably installed with a scraper (222), the spring one (224) is arranged between the scraper (222) and the spring bin (16), the side wall of the scraper (222) is rotatably installed with a scraping tooth (223), the connection between the scraper (222) and the scraping tooth (223) is provided with a torsion spring, the reciprocating screen (22) is fixedly installed with a screen one (221), the scraping tooth (223) is located above the screen one (221).

2. The chicken feed processing apparatus for chicken manure feed utilization according to claim 1, characterized in that: The shell (1) is provided with a rotating bin (142), the inner wall of the rotating bin (142) is fixedly installed with an upper pressing plate (33), the upper pressing plate (33) is located below the discharge port one (141), the inner wall of the rotating bin (142) is rotatably installed with a gear one (35), the inner wall of the gear one (35) is movably installed with a lower pressing ring (34), the lower pressing ring (34) is located below the upper pressing plate (33), the bottom of the lower pressing ring (34) is rotatably installed with a vibrating rod (342), the inside of the shell (1) is fixedly installed with a fixed ring (13) through screws, the fixed ring (13) is located below the lower pressing ring (34), the top of the fixed ring (13) is fixedly installed with a vibrating ring (31).

3. The chicken feed processing apparatus for chicken manure feed utilization according to claim 2, characterized in that: An eccentricity of the top of the upper pressing plate (33) is provided with a second discharge port (333), the second discharge port (333) and the first discharge port (141) are communicated with each other, the top of the upper pressing plate (33) is provided with a sliding hole (332) and a sliding groove seven (331), the sliding groove seven (331) penetrates the second discharge port (333), the sliding hole (332) and the sliding groove seven (331) are slidably provided with a sliding rod (36) and a baffle (362) respectively, the sliding rod (36) and the baffle (362) are movably provided with a connecting rod seven (361), the side wall of the baffle (362) and the side wall of the sliding groove seven (331) are provided with a second spring (363).

4. The chicken feed processing apparatus for chicken manure feed utilization according to claim 2, characterized in that: The inner wall of the lower pressing ring (34) is fixedly provided with a water filtering net (341), the shape of the water filtering net (341) is consistent with the shape of the bottom of the upper pressing plate (33), the inside of the shell (1) is fixedly provided with a fifth motor (352), the output shaft of the fifth motor (352) is fixedly connected with a second gear (351), the second gear (351) is engaged with the first gear (35).

5. The chicken feed processing apparatus for chicken manure feed utilization according to claim 2, characterized in that: The top and the side wall opening of the vibration ring (31) are integrally formed with a vibration tooth one (313) and a vibration tooth two (315) respectively, both sides of the opening of the vibration ring (31) are provided with inclined surfaces (314), the bottom of the vibration rod (342) is integrally formed with a sliding tooth (343), the sliding tooth (343) is slidably connected to the side edges of the vibration tooth one (313) and the vibration tooth two (315), the side wall of the vibration ring (31) is fixedly provided with a limiting ring one (311) and a limiting ring two (312), the limiting ring one (311) and the limiting ring two (312) are provided with an extrusion ring groove (317) and a discharging ring groove (316), the extrusion ring groove (317) corresponds to the vibration tooth one (313), the discharging ring groove (316) corresponds to the vibration tooth two (315), the extrusion ring groove (317) and the discharging ring groove (316) are located above the vibration ring (31), the vibration rod (342) is slidably installed in the inside of the extrusion ring groove (317) and the discharging ring groove (316).

6. The chicken feed processing apparatus for chicken manure feed utilization according to claim 2, characterized in that: The side wall of the fixed ring (13) is fixedly provided with a hopper (32), the hopper (32) is located below the vibration ring (31), the bottom of the hopper (32) is integrally formed with a drain pipe (323), the drain pipe (323) penetrates the side wall of the shell (1) to the outside, the top of the hopper (32) is fixedly provided with a supporting rod (321) through screws, the top of the supporting rod (321) is integrally formed with a top ball (322), the top ball (322) is located between the lower pressing ring (34) and the vibration ring (31).

7. The chicken feed processing apparatus for chicken manure feed utilization according to claim 1, characterized in that: The inside of the shell (1) movably installs a vibrating screen (23) and a separating screen (24), the side wall of the vibrating screen (23) is integrally formed with a first supporting rod (232) and a second supporting rod (233), the side wall of the separating screen (24) is integrally formed with a third supporting rod (242) and a fourth supporting rod (243), the side wall of the shell (1) is symmetrically provided with a second chute (122), a third chute (123), a fourth chute (124) and a fifth chute (125), the first supporting rod (232), the second supporting rod (233), the third supporting rod (242) and the fourth supporting rod (243) are slidably installed in the second chute (122), the third chute (123), the fourth chute (124) and the fifth chute (125) respectively, and the side wall of the vibrating screen (23) and the separating screen (24) is fixedly installed with a flat plate (231) and a second screen (241) respectively.

8. The chicken feed processing apparatus for chicken manure feed utilization according to claim 7, characterized in that: The separating screen (24) is located between the vibrating screen (23) and the first discharge port (112), the side wall of the shell (1) is fixedly installed with a third motor (236) and a fourth motor (246), the output shafts of the third motor (236) and the fourth motor (246) are fixedly connected with a fourth connecting rod (235) and a sixth connecting rod (245) respectively, the fourth connecting rod (235) and the first supporting rod (232) are movably connected with a third connecting rod (234), and the sixth connecting rod (245) and the third supporting rod (242) are movably connected with a fifth connecting rod (244).

9. The chicken feed processing apparatus for chicken manure feed utilization according to claim 1, characterized in that: The side wall of the shell (1) rotatably installs a fan blade (37), the fan blade (37) corresponds to the second discharge port (113), the side wall of the shell (1) is fixedly installed with a sixth motor (371), the output shaft of the sixth motor (371) is fixedly connected with the fan blade (37), and the side wall of the shell (1) is provided with a plurality of evenly distributed air holes (372), which are located between the sixth motor (371) and the fan blade (37).

10. The chicken feed processing method for chicken manure feed utilization according to claim 1, characterized in that: The chicken feed processing method for chicken manure feed utilization uses a chicken feed processing equipment for chicken manure feed utilization as claimed in claims 1-9, and specifically comprises the following steps: S1, after the chicken manure is filled into the feed inlet (111), the chicken manure slides to the lower side of the discharge plate (21) through the side wall of the shell (1), the discharge plate (21) presses the chicken manure to the direction of the reciprocating screen (22), the chicken manure passes through the pressing of the discharge plate (21), so that the chicken manure passes through the first screen (221), the chicken feathers on the first screen (221) are scraped off by the scraping teeth 223, and the chicken feathers are separated from the surface of the first screen (221) and fall into the waste port (114) for discharge; S2, the chicken manure after separating the feathers falls on the filter net (341) through the discharge port one (141) and the discharge port two (333), the lower pressing ring (34) drives the filter net (341) to rotate with the gear one (35), when the lower pressing ring (34) rotates, the sliding gear (343) and the vibrating gear one (313) cooperate with each other, so that the lower pressing ring (34) extrudes the chicken manure above the filter net (341) to the direction of the upper pressing plate (33) to dehydrate, and the chicken manure is extruded into a cake shape by the lower pressing ring (34) and the upper pressing plate (33), when the sliding gear (343) and the vibrating gear two (315) cooperate with each other, the lower pressing ring (34) rotates away from the upper pressing plate (33) and discharges the cake-shaped chicken manure; S3, the cake-shaped chicken manure falls on the vibrating screen (23), when the chicken manure slides downward, the vibrating screen (23) vibrates to make the cake-shaped chicken manure into a broken block and a small particle, and falls on the separating screen (24), the broken block chicken manure is separated by the separating screen (24), so that the broken block chicken manure is discharged through the discharge port one (112), the stones and small particle chicken manure in the chicken manure are discharged to the waste port two (115), before the stones and small particle chicken manure are discharged to the waste port two (115), the fan blade (37) discharges air to the discharge port two (113), so that the small particle chicken manure is discharged through the discharge port two (113), and the stones are discharged through the waste port two (115).

Citation Information

Patent Citations

  • Feed stirring device for screening and crushing large pellet feed

    CN117816323A

  • Device for accelerating drying of chicken manure in laying hen house

    CN211316813U