Feed production device for broiler breeding
By designing a feed production device that includes screening grinding and drying mechanisms, the problems of single function and uneven drying of the secondary crushing device of chicken feed are solved, and efficient feed crushing and drying process is achieved, and production efficiency is improved.
Patent Information
- Application Number
- CN202211585938.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-06
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2042-12-06
AI Technical Summary
The existing chicken feed secondary crushing device has a single function and cannot be screened and tested. The drying device causes insufficient internal drying of the chicken feed, reducing production efficiency.
A feed production device including a crushing grinding chamber, a screening grinding mechanism and a drying mechanism is designed. Three grinding screening and turning are performed through the screening grinding mechanism, and combined with the pushing and turning structure of the drying mechanism, the crushing and drying efficiency is improved.
Effective screening and three grinding of waste feed during the secondary crushing process is realized, which improves the efficiency of feed crushing and screening, and enhances the drying effect through turning and pushing the feed structure, ensuring uniform drying of chicken feed and improving production efficiency.
Smart Images

Figure CN117324101B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of feed production, in particular to a feed production device for broiler breeding. Background Art
[0002] Chicken feed includes more than ten varieties of feed raw materials, including soybeans, soybean meal, corn, fish meal, amino acids, miscellaneous meal, whey powder, oil, meat and bone meal, grains, feed additives, etc. Chicken feed needs to be crushed before production. After crushing, the raw materials need to be tested to see if they are qualified, and then the crushed raw materials need to be dried.
[0003] The existing chicken feed secondary grinding device still has some shortcomings in actual use. The specific shortcomings are: first, the existing chicken feed secondary grinding device can only perform secondary grinding on the ground raw materials, and has a single function. It is also unable to screen and detect the secondary ground chicken feed during the grinding process. In addition, the existing chicken feed drying device, when in use, needs to pile up the chicken feed and place it in a sealed environment for drying. When drying the piled chicken feed, the outside of the piled chicken feed is completely dried while the inside is often not fully dried, which reduces the drying quality of the chicken feed and reduces the efficiency of chicken feed production. Therefore, a feed production device for broiler breeding is provided. Summary of the Invention
[0004] The object of the present invention is to solve some shortcomings that still exist in the actual use of the existing chicken feed secondary grinding device. The specific shortcomings are: 1. The existing chicken feed secondary grinding device can only perform secondary grinding on the ground raw materials, and has a single function. It is impossible to screen and detect the secondary ground chicken feed during the grinding process. In addition, the existing chicken feed drying device needs to pile up the chicken feed and place it in a sealed environment for drying when in use. When drying the piled chicken feed, the outside of the piled chicken feed is completely dried while the inside is often not fully dried, which reduces the drying quality of the chicken feed and reduces the efficiency of chicken feed production. To solve these problems, a feed production device for broiler breeding is provided.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: a feed production device for broiler breeding, comprising:
[0006] Crushing and grinding chamber, used to prevent waste feed from splashing everywhere;
[0007] The screening and grinding mechanism is located inside the crushing and grinding chamber;
[0008] The drying mechanism is located at the bottom of the crushing and grinding chamber;
[0009] The cam is fixedly provided with a first adjusting device and a second adjusting device, and the cam is fixedly provided with a first adjusting device and a second adjusting device, and the cam is fixedly provided with a first adjusting device and a second adjusting device, and the cam is fixedly provided with a second adjusting device. The top end face of said sliding panel also is provided with an interlocking plate, and the interlocking plate is connected with a up-down knob. The said interlocking plate is connected with a up-down knob. The said interlocking plate is connected with a up-down knob. The said up-down knob
[0010] As a further solution of the present invention: the drying mechanism includes a drying chamber, the drying chamber is located at the bottom end of the crushing and grinding chamber, and is fixedly connected to the bottom end of the crushing and grinding chamber, the middle part of the inner side of the drying chamber is fixedly connected with an intermittent rotating rod, the outer side of the intermittent rotating rod is fixedly connected with a push plate, the top of the intermittent rotating rod is fixedly connected with a bevel gear block, one side of the top of the bevel gear block is meshed with a bevel gear rod, one side of the bevel gear rod is fixedly connected with a connecting gear plate, the outer side of the connecting gear plate is meshed with a connecting tooth chain, the middle parts of both ends of one side of the push plate are fixedly connected with a fixed splint, and the middle part of one end of the fixed splint is fixedly connected The top end of the inner gear is fixedly connected to the outer gear of the adjusting screw rod, and the top end of the inner gear is fixedly connected to the outer gear of the adjusting screw rod.
[0011] As a further solution of the present invention: the size of the outer side of the limiting slider matches the size of the inner side of the limiting slot, and the upper and lower ends of the limiting slide rod are fixedly connected to the upper and lower ends of the inner middle part of the limiting slot.
[0012] As a further solution of the present invention: the size of the inner side of the shrinkage groove matches the size of the outer sides of the two ends of the leakage plate, the outer sides of the two ends of the turning plate are slidably connected with spiral groove holes, and the outer sides of the spiral groove holes are fixedly connected to the positioning support plate.
[0013] As a further solution of the present invention: a digging groove is fixedly connected to the middle of one side of the grinding wheel, and adjustment teeth are fixedly connected to both sides of the top of the leak plate, and the inner side of the adjustment teeth are engaged with the bottom end of the outer side of the spiral rotating rod.
[0014] As a further solution of the present invention: the top view of the combination of the push plate and the intermittent rotating rod is cross-shaped, and the inner and outer ends of the second mixing rod and the first mixing rod are fixedly connected with push rods.
[0015] As a further solution of the present invention: the size of the inner side of the adjusting slider matches the size of the outer side of the adjusting slide rod, and the middle parts of the bottom ends of both sides of the positioning triangle block are fixedly connected with mounting fixing rods.
[0016] Compared with the prior art, the beneficial effects of the present invention are: it is convenient to perform vibration screening on the waste feed during the secondary crushing of the feed and then grind it for the third time, which is beneficial to improving the efficiency of feed crushing and screening; it is convenient to turn the feed to be dried up and down during the drying process of the screened feed to improve the contact between the feed and the drying gas, which is beneficial to improving the efficiency of feed drying.
[0017] 1. Through the screening and grinding mechanism, when the chicken feed is ground and screened, the motor drives the adjusting dial fixedly connected to one side of the T-shaped rotating rod through the output end, so that the second crushing gear rod fixedly connected to the middle part of one side of the adjusting dial rotates with the rotation of the adjusting dial. The rotating second crushing gear rod drives the meshing first crushing gear rod to rotate synchronously. At the same time, the rotating T-shaped rotating rod drives the connecting gear plate meshing at one end of the connecting gear chain to rotate through the connecting gear chain meshing on the outer side of one side. When the crushed chicken feed contacts the first crushing gear rod and the second crushing gear rod through the feed hopper, the relatively rotating first crushing gear rod and the second crushing gear rod perform secondary crushing on the chicken feed, and the secondary crushed chicken feed enters the screening trough. When the first adjusting corrugated groove fixedly connected to the inner teeth of the rotating adjusting dial rotates and passes through the lifting hanger plate, it will drive the lifting hanger plate to slide up and down with the amplitude of the sliding of the first adjusting corrugated groove, thereby driving the screening trough fixedly connected to the bottom end of the lifting hanger plate to slide up and down and vibrate. When the screening trough slides down with the sliding of the lifting hanger plate, it will drive the spiral rotating rods connected to the middle of both sides of the bottom end of the inner side of the screening trough to slide down, so that the spiral rotating rods slide downward along the spiral hole plate connected to the outer side of the spiral rotating rod, so that the spiral rotating rods can rotate and slide along the spiral groove inside the spiral hole plate, and the rotating spiral rotating rod drives the leakage plate meshed at the bottom to slide to one end. When the screening trough slides up with the sliding of the lifting hanger plate, it will drive the spiral rotating rods connected to the middle of both sides of the bottom end of the inner side of the screening trough When the orifice plate slides to the other end, it drives the positioning support plates fixed at both ends of the top of the orifice plate to slide to one end, thereby driving the turning plate connected to the bottom end of the inner bottom of the screening trough to rotate and turn the chicken feed inside the screening trough, and at the same time drives the grinding wheel fixedly connected to the outside of the turning plate to rotate and grind the chicken feed. When the orifice plate slides to the other end, it drives the positioning support plates fixed at both ends of the top of the orifice plate to slide to the other end. The turning plate connected to the bottom end of the inner side of the screening trough is driven to rotate in the opposite direction to turn in the opposite direction, and at the same time, the grinding wheel fixedly connected to the outer side of the turning plate is driven to rotate at the same time to grind the chicken feed, so that the ground chicken feed passes through the screening trough and enters one end of the inner side of the drying chamber under the vibration of the screening trough. When the first guide block connected to the top end of one side of the adjusting turntable is moved to the top end of the lifting plate as the adjusting turntable rotates, the lifting plate pushes the first guide block to rotate to one end and is stuck to the outlet at the other end of the corrugated partition, so that the lifting plate slides into the second adjusting corrugated groove fixedly connected to the inner side of the corrugated partition under the guidance of the first guide block, so that the lifting plate slides up significantly, and the screening trough slides up significantly as the lifting plate slides up significantly.The screw rotating rods connected in the middle of both sides of the bottom end of the inner side of the screening trough rotate and slide upward along the screw hole plate connected to the outer side of the screw rotating rod, thereby the rotating screw rotating rod drives the meshing hole plate connected at the bottom end to slide greatly to the other end, driving the positioning support plates fixedly connected at both ends of the top of the hole plate to slide greatly to one end, thereby driving the turning plate connected to the rotating bottom end of the inner side of the screening trough to rotate greatly to turn the chicken feed inside the screening trough greatly and grind it. The lifting plate is driven by the second adjusting corrugated groove to continue to fluctuate slightly. When the second guide rotating block rotates to the lifting hanging plate, the lifting hanging plate pushes the second guide rotating block to rotate to one end and get stuck on the corrugated partition. Under the guidance of the second guide rotating block, it slides back into the first adjusting corrugated groove, slides down greatly on one side, and then continues to vibrate slightly, which is convenient for improving the efficiency of chicken feed crushing and grinding production. It is convenient for vibrating and screening the waste feed in the process of secondary crushing of the feed and then grinding it for the third time, which is beneficial to improving the efficiency of feed crushing and screening.
[0018] 2. Through the drying mechanism, when drying chicken feed, the rotating connecting gear plate drives the bevel gear rod fixed in the middle of one side to rotate during the vibration screening process. When the tooth groove on the bevel gear rod rotates and is stuck on the bevel gear block, it drives the meshing bevel gear block to rotate, thereby rotating the intermittent rotating rod fixed at the bottom end of the bevel gear block. The rotating intermittent rotating rod drives the pusher plate fixed on the outside to rotate, thereby driving the adjusting screw rod connected to the top of the middle of one side of the pusher plate to rotate in the cavity between the inner gear ring and the outer gear ring. When the adjusting screw rod is meshed with the tooth block on the outside of the inner gear ring, the rotating inner gear ring drives the adjusting screw rod to rotate in the cavity between the inner gear ring and the outer gear ring. The meshing adjustment screw rotates clockwise, and the clockwise rotating adjustment screw drives the sliding pushing block connected to the outer bottom end to slide down, and the sliding pushing block pushes the second mixing rods connected to the two ends of the bottom end of the sliding pushing block, so that the adjustment slider connected to the bottom end of the second mixing rod slides outward under the restriction of the adjustment slider, and synchronously drives the first mixing rod connected to the bottom end of the adjustment slider to slide outward, cutting down and pushing left and right at the same time on the chicken feed stored in the gap space between the push plates fixedly connected to the outside of the intermittent rotating rod connected to the middle of the inner side of the drying chamber, thereby increasing the gap on the surface of the accumulated chicken feed pile, making the drying chamber dry. The heat emitted by the drying chamber can enter the chicken feed pile through the gap cut below. When the adjusting screw rod is meshed with the tooth block fixedly connected to the inner side of the outer gear ring, the rotating outer gear ring drives the meshing adjusting screw rod to rotate counterclockwise, and the rotating adjusting screw rod drives the sliding pushing block connected to the sliding bottom of the outer side to slide upward, and the sliding pushing block that slides upward pulls the second mixing rod that is rotatably connected to the two ends of the bottom end of the sliding pushing block, so that the adjusting slider that is rotatably connected to the bottom end of the second mixing rod slides inward under the restriction of the adjusting slider, and the inward sliding adjusting slider drives the first mixing rod that is rotatably connected to the bottom end to slide inward synchronously, rotating the middle part of the inner side of the drying chamber. The chicken feed stored in the spacing space between the pushing plates fixedly connected to the outside of the connected intermittent rotating rod is pushed outward, so that the chicken feed pile is pushed outward from the inside so that the chicken feed can be turned over, and the heat emitted by the drying chamber can enter the inside of the chicken feed pile through the gap opened on the inside of the chicken feed pile, thereby drying the inside of the chicken feed pile. The second mixing rod and the first mixing rod slide up and down cyclically to push and press the chicken feed pile, which is beneficial to improving the efficiency of chicken feed drying and facilitates the up and down turning of the feed to be dried during the drying process of the screened feed to increase the contact between the feed and the drying gas, thereby improving the efficiency of feed drying. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a structural schematic diagram of the main view and cross-sectional view of the present invention;
[0020] Figure 2 It is a schematic structural diagram of a side view and a cross-sectional view of the present invention;
[0021] Figure 3 This is a schematic structural diagram of a top view of the connection between the inner gear ring and the outer gear ring of the present invention;
[0022] Figure 4 For the present invention Figure 1 The structural diagram of the enlarged view of part A in the middle;
[0023] Figure 5 For the present invention Figure 2 Schematic diagram of the structure of the enlarged view of part B in the middle.
[0024] In the figure: 1. Crushing and grinding chamber; 2. Screening and grinding mechanism; 21. Adjusting turntable; 22. First adjusting corrugated groove; 23. Corrugated partition; 24. Second adjusting corrugated groove; 25. First guide rotating block; 26. Second guide rotating block; 27. First crushing gear rod; 28. Lifting plate; 29. Limiting clamping block; 210. Screw rod; 211. Screening groove; 212. Limiting slide block; 213. Limiting slide groove; 214. Limiting slide bar; 215. First auxiliary spring; 216. Motor; 217. T-shaped rotating rod; 218. Second crushing gear rod; 219. Orifice plate; 220. Positioning support plate; 221. Turning plate Material transfer plate; 222, shrinkage groove; 223, grinding wheel; 224, spiral hole plate; 225, fixed installation boom; 3, drying mechanism; 31, drying chamber; 32, intermittent rotating rod; 33, push plate; 34, positioning triangle block; 35, first mixing rod; 36, fixed splint; 37, second auxiliary spring; 38, adjustment slide bar; 39, adjustment slider; 310, second mixing rod; 311, sliding push block; 312, adjustment spiral rod; 313, inner gear ring; 314, outer gear ring; 315, bevel gear block; 316, bevel gear rod; 317, connecting gear plate; 318, connecting gear chain. DETAILED DESCRIPTION
[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and should not be understood as indicating or implying relative importance. In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", and "set" should be understood in a broad sense, for example, they can be fixedly connected, detachably connected, or connected in one piece; they can be mechanically connected or electrically connected; they can be directly connected, or indirectly connected through an intermediate medium, or they can be internal connections between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances. The following describes an embodiment of the present invention based on its overall structure.
[0027] A feed production device for broiler chicken farming, please refer to Figures 1 to 5 In the embodiment of the present invention, the power supply of the motor 216 is started, and the motor 216 drives the adjustment dial 21 fixedly connected to one side of the T-shaped rotating rod 217 to rotate through the T-shaped rotating rod 217 fixedly connected to the output end, so that the second crushing gear rod 218 fixedly connected to the middle part of one side of the adjusting dial 21 rotates with the rotation of the adjusting dial 21. The rotating second crushing gear rod 218 drives the meshing first crushing gear rod 27 to rotate synchronously. When the crushed chicken feed passes through the feed hopper and contacts the first and second crushing gear rods 27 and 218, the first and second crushing gear rods 27 and 218 that rotate relatively are used to crush the chicken feed for the second time. The chicken feed after the second crushing enters the screening trough 211 for screening. The screened chicken feed enters the drying chamber 31 provided at the bottom end of the screening trough 211. The heat emitted by the heating pipe provided inside the push plate 33 fixedly connected to the outside of the intermittent rotating rod 32 rotating inside the drying chamber 31 dries the chicken feed entering the drying chamber 31.
[0028] When the chicken feed is ground and screened, the motor 216 drives the adjusting dial 21 fixedly connected to one side of the T-shaped rotating rod 217 to rotate through the T-shaped rotating rod 217 fixedly connected to the output end, so that the second crushing gear rod 218 fixedly connected to the middle part of one side of the adjusting dial 21 rotates with the rotation of the adjusting dial 21, and the rotating second crushing gear rod 218 drives the meshing first crushing gear rod 27 to rotate synchronously. At the same time, the rotating T-shaped rotating rod 217 drives the connecting gear plate 317 meshing at one end of the connecting gear chain 318 to rotate through the connecting gear chain 318 meshing on the outer side of one side. When the crushed chicken feed contacts the first crushing gear rod 27 and the second crushing gear rod 218 through the feed hopper, the first crushing gear rod 27 rotating relatively rotates and the feed is fed to the feed hopper. The second crushing gear rod 218 crushes the chicken feed for the second time, and the chicken feed after the second crushing enters the screening trough 211. When the first adjusting corrugated groove 22 fixedly connected to the inner teeth of the rotating adjusting dial 21 rotates and passes through the lifting plate 28, it will drive the lifting plate 28 to slide up and down with the amplitude of the sliding of the first adjusting corrugated groove 22, thereby driving the screening trough 211 fixedly connected to the bottom end of the lifting plate 28 to slide up and down and vibrate. When the screening trough 211 slides down with the sliding of the lifting plate 28, it will drive the spiral rotating rod 210 rotatably connected to the middle of both sides of the bottom end of the inner side of the screening trough 211 to slide down, so that the spiral rotating rod 210 slides downward along the spiral hole plate 224 slidingly connected to the outer side of the spiral rotating rod 210, so that the spiral rotating rod 210 The rod 210 can rotate and slide along the spiral groove inside the spiral hole plate 224, and the rotating spiral rod 210 drives the leakage plate 219 engaged at the bottom to slide to one end. When the screening tank 211 slides up as the lifting plate 28 slides up, it drives the spiral rod 210 connected to the middle of the bottom end of the inner side of the screening tank 211 to slide up, so that the spiral rod 210 slides upward along the spiral hole plate 224 connected to the outer side of the spiral rod 210, so that the spiral rod 210 can rotate and slide along the spiral groove inside the spiral hole plate 224, and the rotating spiral rod 210 drives the leakage plate 219 engaged at the bottom to slide to the other end, so that the leakage plate 219 slides left and right in the screening tank 211. When the orifice plate 219 slides to one end, it drives the positioning support plates 220 fixedly connected at both ends of the top of the orifice plate 219 to slide to one end, thereby driving the turning plate 221 connected to the bottom end of the inner side of the screening trough 211 to rotate and turn the chicken feed inside the screening trough 211, and at the same time drives the grinding wheel 223 fixedly connected to the outer side of the turning plate 221 to rotate and grind the chicken feed. When the orifice plate 219 slides to the other end, it drives the positioning support plates 220 fixedly connected at both ends of the top of the orifice plate 219 to slide to the other end, thereby driving the turning plate 221 connected to the bottom end of the inner side of the screening trough 211 to rotate in the opposite direction and turn in the opposite direction, and at the same time drives the grinding wheel 223 fixedly connected to the outer side of the turning plate 221 to rotate and grind the chicken feed.The ground chicken feed is vibrated by the screening trough 211, and the qualified chicken feed passes through the screening trough 211 and enters one end of the inner side of the drying chamber 31. When the first guide rotating block 25 connected to the top of one side of the adjusting turntable 21 rotates and moves to the top of the lifting plate 28 with the rotation of the adjusting turntable 21, the lifting plate 28 pushes the first guide rotating block 25 to rotate to one end and clamp it to the outlet of the other end of the corrugated partition 23, so that the lifting plate 28 slides into the second adjusting corrugated groove 24 fixedly connected to the inner side of the corrugated partition 23 under the guidance of the first guide rotating block 25, so that the lifting plate 28 slides up significantly, so that the screening trough 211 slides up significantly as the lifting plate 28 slides up significantly, so that the spiral rotating rod 210 connected to the middle of both sides of the inner bottom end of the screening trough 211 slides up significantly along the spiral hole plate 224 connected to the outer side of the spiral rotating rod 210 The rotating spiral rotating rod 210 drives the meshing orifice plate 219 at the bottom end to slide significantly to the other end, driving the positioning support plates 220 fixedly connected at both ends of the top of the orifice plate 219 to slide significantly to one end, thereby driving the turning plate 221 connected to the bottom end of the inner side of the screening trough 211 to rotate significantly, turning and grinding the chicken feed inside the screening trough 211 significantly, and the lifting plate 28 is driven by the second adjusting corrugated groove 24 to continue to fluctuate slightly. When the second guide rotating block 26 rotates onto the lifting plate 28, the lifting plate 28 pushes the second guide rotating block 26 to rotate to one end and get stuck on the corrugated partition 23. Under the guidance of the second guide rotating block 26, it slides back into the first adjusting corrugated groove 22, slides significantly on one side, and then continues to vibrate slightly, which is convenient for improving the efficiency of chicken feed crushing and grinding production.
[0029] The inner sides of the first adjusting corrugated groove 22, the corrugated partition 23 and the second adjusting corrugated groove 24 are all fixedly connected with corrugated blocks. During the rotation of the adjusting turntable 21, when the protrusions on the first adjusting corrugated groove 22, the corrugated partition 23 and the second adjusting corrugated groove 24 rotate onto the lifting plate 28, the lifting plate 28 is pushed to slide up. When the grooves on the first adjusting corrugated groove 22, the corrugated partition 23 and the second adjusting corrugated groove 24 rotate onto the lifting plate 28, the lifting plate 28 is driven to slide down, so that the lifting plate 28 can vibrate up and down with the rotation of the adjusting turntable 21.
[0030] When the lifting plate 28 slides up and down, the limiting blocks 29 fixedly connected to the middle of both sides of the inner side of the grinding chamber 1 limit the sliding trajectory of the lifting plate 28 to prevent the sliding trajectory of the lifting plate 28 from deflecting or shaking.
[0031] When the screening slot 211 slides up and down, the limit sliders 212 fixedly connected at the middle of the two ends of the screening slot 211 will slide along the inner side of the limit slide slot 213 and the outer side of the limit slide rod 214, which is beneficial to prevent the track of the screening slot 211 sliding up and down from deviating. When sliding up and down, the first auxiliary spring 215 cushions the impact of the screening slot 211 sliding up and down, which is beneficial to prevent the screening slot 211 from being damaged due to excessive impact. The limit sliders 212 fixedly connected at both ends of the screening slot 211 collide with the upper and lower ends of the inner side of the limit slide slot 213.
[0032] When the leak plate 219 slides left and right, it shrinks and gets stuck in the shrinkage groove 222. When the positioning support plate 220 slides, the spiral hole fixed on the positioning support plate 220 will push the spiral rotating rods fixedly connected at both ends of the turning plate 221 to rotate, thereby driving the turning plate 221 to rotate. The rotating turning plate 221 drives the grinding wheel 223 fixedly connected to the outside of the turning plate 221 to rotate to screen and grind the chicken feed in the screening trough 211.
[0033] When drying chicken feed, during the process of vibration screening, the rotating connecting gear plate 317 drives the bevel gear rod 316 fixedly connected to the middle part of one side to rotate. When the tooth groove on the bevel gear rod 316 rotates and is stuck on the bevel gear block 315, it drives the meshing bevel gear block 315 to rotate, thereby rotating the intermittent rotating rod 32 fixedly connected to the bottom end of the bevel gear block 315. The rotating intermittent rotating rod 32 drives the pusher plate 33 fixedly connected to the outside to rotate, thereby driving the adjusting screw rod 312 rotatably connected to the top middle part of one side of the pusher plate 33 to rotate in the clamping cavity between the inner gear ring 313 and the outer gear ring 314. When the adjusting screw rod 312 meshes with the tooth block on the outside of the inner gear ring 313, the screw rod 312 is engaged with the tooth block on the outside of the inner gear ring 313. When the locking cam 314 is in the closed position, the locking cam 314 is in the closed position, and the locking cam 314 is in the closed position, so the locking cam 314 is in the closed position, and the locking cam 314 is in the closed position, so the locking cam 314 is in the closed position, and the locking cam 314 is in the closed position, so the locking cam 314 is in the closed position, and the locking cam 314 is in the closed position, so the locking cam 314 is in the closed position, The stored chicken feed is cut downwards and pushed left and right at the same time, increasing the gap on the surface of the accumulated chicken feed pile, so that the heat emitted by the drying chamber 31 can enter the chicken feed pile through the gap cut downwards. When the adjusting screw rod 312 is meshed with the tooth block fixedly connected to the inner side of the outer gear ring 314, the rotating outer gear ring 314 drives the meshed adjusting screw rod 312 to rotate counterclockwise, and the rotating adjusting screw rod 312 drives the sliding pushing block 311 slidably connected to the outer bottom end to slide upward, and the sliding pushing block 311 that slides upward pulls the second mixing rod 310 that is rotatably connected to the two ends of the bottom end of the sliding pushing block 311, so that the adjusting slider 310 that is rotatably connected to the bottom end of the second mixing rod 310 is retracted. 9 slides inwardly under the restriction of the adjusting slide bar 38, and the first mixing rod 35 rotatably connected at the bottom end is driven by the inward sliding adjusting slider 39 to slide inward synchronously, pushing outward the chicken feed stored in the spacing space between the pushing plates 33 fixedly connected to the outside of the intermittent rotating rod 32 rotatably connected to the middle part of the inner side of the drying chamber 31, so that the chicken feed pile is pushed outward from the inside so that the chicken feed can be turned over, so that the heat emitted by the drying chamber 31 can enter the inside of the chicken feed pile through the gap opened inside the chicken feed pile, drying the inside of the chicken feed pile, and the second mixing rod 310 and the first mixing rod 35 slide up and down cyclically to push and press the chicken feed pile, which is beneficial to improving the efficiency of chicken feed drying.
[0034] The inner side of the outer gear ring 314 is fixedly connected to a plurality of tooth blocks, and the outer side of the inner gear ring 313 is fixedly connected to a plurality of tooth blocks. During the sliding process of the adjusting screw rod 312, when the adjusting screw rod 312 rotates and moves to the end of a tooth block group fixedly connected to the inner side of the outer gear ring 314, it will alternately get stuck at the starting end of a tooth block group fixedly connected to the outer side of the inner gear ring 313. The adjusting screw rod 312 is alternately meshed with the outer gear ring 314 and the inner gear ring 313, so that the adjusting screw rod 312 can rotate clockwise and counterclockwise.
[0035] As the sliding pushing block 311 slides up and down, the second mixing rod 310 and the first mixing rod 35 will slide left and right along the adjusting slide bar 38 to push and mix the accumulated chicken feed, so that the heat emitted from the inside of the drying chamber 31 can enter the accumulated chicken feed pile well, thereby improving the drying efficiency of the chicken feed pile.
[0036] The above is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A feed production device for broiler breeding, comprising: A crushing and grinding chamber (1) is used to prevent waste feed from splashing everywhere; A screening and grinding mechanism (2) is located inside the crushing and grinding chamber (1); A drying mechanism (3) is located at the bottom end of the crushing and grinding chamber (1); The invention is characterized in that the screening and grinding mechanism (2) comprises a motor (216), the motor (216) is located in the middle of one side of the crushing and grinding chamber (1), the output end of the motor (216) is fixedly connected to a T-shaped rotating rod (217), one side of the T-shaped rotating rod (217) is fixedly connected to an adjusting turntable (21), the middle part of one side of the adjusting turntable (21) is rotatably connected to a second guide rotating block (26), the top end of one side of the adjusting turntable (21) is rotatably connected to a first guide rotating block (25), the inner side of the adjusting turntable (21) is fixedly connected to a first adjusting corrugated groove (22), the inner side of the first adjusting corrugated groove (22) is fixedly connected to There is a corrugated partition (23), the inner side of the corrugated partition (23) is fixedly connected with a second adjusting corrugated groove (24), the middle part of the other side of the adjusting turntable (21) is fixedly connected with a second crushing tooth rod (218), one end of the second crushing tooth rod (218) is meshedly connected with the first crushing tooth rod (27), the outer sides of both sides of the second crushing tooth rod (218) are rotatably connected with a fixed installation suspension rod (225), one side of the bottom end of the fixed installation suspension rod (225) is fixedly connected with a limiting clamp (29), one side of the limiting clamp (29) is fixedly connected to the inner wall of the crushing and grinding chamber (1), and the inner side of the limiting clamp (29) is slidably connected with A lifting plate (28) is provided, wherein the top end of the lifting plate (28) is slidably connected to the inner side of the adjusting turntable (21), and one side of the bottom end of the limiting clamp (29) is fixedly connected to a spiral hole plate (224), and the inner side of the bottom end of one side of the spiral hole plate (224) is slidably connected to a spiral rotating rod (210), and the outer side of the bottom end of the spiral rotating rod (210) is meshedly connected to a leak plate (219), and both ends of the top end of the leak plate (219) are fixedly connected to a positioning support plate (220), and the bottom end of the lifting plate (28) is fixedly connected to a screening groove (211), and the bottom end of the spiral rotating rod (210) rotates with the bottom end of the inner side of the screening groove (211). The bottom ends of the inner ends of the screening groove (211) are fixedly connected with contraction grooves (222), the bottom ends of the inner sides of the positioning support plate (220) are slidably connected with a turning plate (221), one end of the turning plate (221) is fixedly connected with a grinding wheel (223), the middle parts of both ends of the screening groove (211) are fixedly connected with a limiting slider (212), the outer side of the limiting slider (212) is slidably connected with the limiting slide groove (213), the middle part of the inner side of the limiting slider (212) is slidably connected with a limiting slide rod (214), and the upper and lower ends of the outer side of the limiting slide rod (214) are slidably connected with a first auxiliary spring (215).
2. A broiler chicken feed production device according to claim 1, characterized in that: The drying mechanism (3) comprises a drying chamber (31), the drying chamber (31) being located at the bottom end of the crushing and grinding chamber (1) and being fixedly connected to the bottom end of the crushing and grinding chamber (1), the middle portion of the inner side of the drying chamber (31) being fixedly connected to an intermittent rotating rod (32), the outer side of the intermittent rotating rod (32) being fixedly connected to a push plate (33), the top end of the intermittent rotating rod (32) being fixedly connected to a bevel gear block (315), one side of the top end of the bevel gear block (315) being meshedly connected to a bevel gear rod (316), one side of the bevel gear rod (316) being fixedly connected to a connecting gear plate (317), the outer side of the connecting gear plate (317) being meshedly connected to a connecting tooth chain (318), the middle portions of both ends of one side of the push plate (33) being fixedly connected to a fixed splint (36), the middle portion of one end of the fixed splint (36) being fixedly connected to an adjusting slide bar (38), the adjusting slide bar (38) being fixedly connected to the middle portion of one end of the fixing splint (36), The outer side of the slide rod (38) is slidably connected to an adjusting slider (39), the top end of the adjusting slider (39) is rotatably connected to a second mixing rod (310), the top end of the second mixing rod (310) is rotatably connected to a sliding push block (311), the middle part of the inner side of the sliding push block (311) is slidably connected to an adjusting screw rod (312), the bottom end of the adjusting slider (39) is rotatably connected to a first mixing rod (35), the bottom end of the first mixing rod (35) is rotatably connected to a positioning triangle block (34), the two ends of the adjusting slider (39) are fixedly connected to a second auxiliary spring (37), the top end of one end of the adjusting screw rod (312) is meshedly connected to an outer toothed ring (314), the top end of the other end of the adjusting screw rod (312) is meshedly connected to an inner toothed ring (313), the top ends of the inner toothed ring (313) and the outer toothed ring (314) are fixedly connected to the top end of the inner side of the drying chamber (31).
3. A broiler chicken feed production device according to claim 1, characterized in that: The size of the outer side of the limiting slider (212) matches the size of the inner side of the limiting slide groove (213), and the upper and lower ends of the limiting slide rod (214) are fixedly connected to the upper and lower ends of the inner middle part of the limiting slide groove (213).
4. A broiler chicken feed production device according to claim 1, characterized in that: The size of the inner side of the shrinkage groove (222) matches the size of the outer sides of the two ends of the leak plate (219), and the outer sides of the two ends of the material turning plate (221) are both slidably connected with spiral grooves, and the outer sides of the spiral grooves are fixedly connected to the positioning support plate (220).
5. The broiler chicken feed production device according to claim 1, characterized in that: A digging groove is fixedly connected to the middle of one side of the grinding wheel (223), and both sides of the top of the leak plate (219) are fixedly connected to adjustment grooves, and the inner side of the adjustment groove is meshed with the bottom end of the outer side of the spiral rotating rod (210).
6. A broiler chicken feed production device according to claim 2, characterized in that: The top view of the combination of the push plate (33) and the intermittent rotating rod (32) is cross-shaped, and the inner and outer ends of the second mixing rod (310) and the first mixing rod (35) are fixedly connected with push rods.
7. A broiler chicken feed production device according to claim 2, characterized in that: The size of the inner side of the adjusting slide block (39) matches the size of the outer side of the adjusting slide bar (38), and the middle parts of the bottom ends of both sides of the positioning triangle block (34) are fixedly connected with mounting fixing rods.
Citation Information
Patent Citations
Ball milling device for nano material production
CN216538634U
Crushing and drying device for pig feed
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