Mixing device for functional feed production

By introducing a mixing and dispersing mechanism into the feed production unit, and utilizing multi-angle adjustment and component combination, the problems of clumping and uneven mixing caused by the inability to adjust the stirring shaft are solved, achieving a highly efficient feed mixing and dispersing effect.

CN121155412APending Publication Date: 2025-12-19ANHUI XIAOGUO AGRICULTURE AND ANIMAL HUSBANDRY INDUSTRY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511525916.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2025-12-19

AI Technical Summary

Technical Problem

In existing technologies, the inability to adjust the stirring shaft results in limited stirring range and precision, which easily leads to problems such as clumping and uneven mixing of feed during discharge.

Method used

The system employs a mixing and dispersing mechanism, including mixing components one and two. The position and angle of the mixer are adjusted by vertical and horizontal adjustment mechanisms. Combined with the rotating and dispersing components, it achieves multi-angle mixing and dispersing, preventing feed from clumping and becoming unevenly mixed.

Benefits of technology

It enables multi-level mixing and dispersing of feed, avoiding clumping and uneven mixing during discharge, and improving mixing efficiency and precision.

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Abstract

The invention is applicable to the technical field of feed production, and provides a functional feed production mixing device which comprises a base, a mixing mechanism is mounted at the top of the base, a scattering mechanism is arranged on one side of the mixing mechanism, and the scattering mechanism is communicated with the mixing mechanism; when the first mixing assembly in the mixing mechanism works, the stirring machine can be adjusted front and back and up and down in the first mixing box, so that feed to flow into the feed conveying pipe is primarily and uniformly mixed, and the situation that large-area feed is not uniformly mixed when the feed enters the second mixing assembly is prevented; and the mixing assembly II is used for uniformly mixing the feed again through double shafts in the mixing assembly II.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of feed production, and particularly relates to a mixing device for functional feed production. BACKGROUND

[0002] Feed processing is a feed production and processing activity of farms and farmers for raising livestock and poultry, and the feed processing is basically divided into several steps of raw material crushing, proportioning, mixing, and packaging, wherein the mixing is a relatively important part of the feed processing.

[0003] A chicken feed mixing device is disclosed in Chinese patent application CN107259621A, which comprises a shell and a stirring mechanism; the shell is provided with a raw material adding port and a discharge port; the stirring mechanism comprises a rotating mechanism arranged on one side of the shell, a stand column arranged on the other side of the shell, and a rotating shaft having one end connected with the rotating mechanism and the other end rotatably arranged on the stand column; the rotating shaft is provided with a plurality of stirring blades.

[0004] However, the above patent has the following disadvantages: 1. The above patent stirs the feed by rotating the stirring blades, and the stirring range and stirring precision of the single stirring shaft are limited due to the inability to adjust the stirring shaft, and the feed often has the phenomenon of caking and the state of not being mixed when being discharged. SUMMARY

[0005] The application provides a mixing device for functional feed production, and aims to solve the problem that the stirring range and stirring precision are limited due to the inability to adjust the stirring shaft, and the feed often has the phenomenon of caking and the state of not being mixed when being discharged.

[0006] In order to achieve the above purpose, the application adopts the following technical scheme: The utility model provides a kind of mixing device for functional feed production, including base, the top of the base is equipped with mixing mechanism, one side of the mixing mechanism is equipped with scattering mechanism, the scattering mechanism is connected with the mixing mechanism, and the scattering mechanism is connected with the base;The mixing mechanism includes the mixing component one for preliminary mixing of feed and the mixing component two for mixing feed again, the mixing component one is located on the mixing component two, and the mixing component two is located on the base;The scattering mechanism includes the receiving component for receiving material, the rotating component for driving the receiving component to rotate transversely, the scattering component for scattering material in the receiving component back and forth, and the driving component for providing driving source for the rotating component and the scattering component, the receiving component is located on the base, the rotating component and the scattering component are located on the receiving component, and the driving component is located on the scattering component.

[0007] Preferably, the mixing component one includes a mixing box one, the top of the mixing box one is provided with a feeding hopper, one side of the feeding hopper is provided with a transmission shell, the transmission shell is connected with the mixing box one, the inside of the transmission shell is provided with a stirrer, the stirrer is installed with a vertical adjusting machine, the vertical adjusting machine is installed with a horizontal adjusting machine, the horizontal adjusting machine is connected with the mixing box one, the side wall of the mixing box one is provided with a conveying pipe, one end of the conveying pipe is connected with the mixing box one, the other end of the conveying pipe is connected with the mixing component two, the bottom wall inside the mixing box one is installed with a guide piece, and the guide piece corresponds to the conveying pipe;In this scheme, by setting the vertical adjusting machine and the horizontal adjusting machine, the vertical adjusting machine can adjust the height of the stirrer, and the horizontal adjusting machine can adjust the front and back position of the stirrer, so that the device can circulate and stir the material near the conveying pipe before discharging the material in the mixing box one, to prevent the material entering the mixing component two from being not mixed evenly.

[0008] Preferably, the vertical adjusting machine includes a support plate, the support plate is located on the horizontal adjusting machine and connected with the horizontal adjusting machine, the top of the support plate is installed with a bottom plate, the top of the bottom plate is installed with a stand column, the top of the stand column is installed with a top plate, one side of the stand column is provided with a screw rod, both ends of the screw rod are rotatably connected with the bottom plate and the top plate respectively, the side wall of the screw rod is threadedly connected with a nut, one side of the nut is provided with a falling piece, the falling piece is connected with the nut, and the stirrer is located on the falling piece;In this scheme, by setting the screw rod and the nut, the screw rod can drive the nut to fall by rotating, thereby realizing the height adjustment of the stirrer.

[0009] Preferably, the top of the top plate is provided with an extension plate, a motor one is arranged at one end of the extension plate away from the top plate, a transmission wheel one is arranged above the extension plate, a transmission wheel two is arranged on one side of the transmission wheel one, the transmission wheel one and the transmission wheel two are rotationally connected with the extension plate, the transmission wheel one and the transmission wheel two are drivingly connected through a belt one, and the motor one is used to drive the transmission wheel one to rotate.

[0010] Preferably, the lateral adjusting machine comprises a front plate, the front plate is arranged on the inner wall of the transmission shell and fixedly connected with the transmission shell, a rear plate is arranged behind the front plate, a fixed rail is arranged between the rear plate and the front plate, the rear plate and the front plate are fixedly connected through the fixed rail, a lead screw is arranged above the fixed rail, both ends of the lead screw are rotationally connected with the front plate and the rear plate respectively, a nut is threadedly connected on the side wall of the lead screw, the nut is fixedly connected with the support plate, and the nut is slidingly connected with the fixed rail.

[0011] Preferably, a motor two is arranged on the rear side wall of the rear plate, an output shaft of the motor two is fixedly connected with the lead screw through a shaft coupling, a sliding block is arranged on the bottom of the nut, a sliding rail is slidingly arranged on the sliding block, the sliding rail is fixedly connected with the fixed rail, and the nut is slidingly connected with the fixed rail through the sliding block and the sliding rail.

[0012] Preferably, the receiving assembly comprises a receiving shell, the receiving shell is arranged on one side of the mixing assembly two and fixedly connected with the base, a receiving hopper is arranged in the receiving shell, the receiving hopper is rotationally connected with the receiving shell, and the receiving hopper is communicated with the mixing assembly two.

[0013] Preferably, the rotating assembly comprises a shaft body, the shaft body is located at the bottom of the receiving hopper, one end of the shaft body is fixedly connected with the receiving hopper, the other end of the shaft body is rotatably connected with the receiving shell, a gear is sleeved and mounted on the side wall of the shaft body, a worm is engaged on the side wall of the gear, and both ends of the worm are rotatably connected with the receiving shell; in this scheme, the worm and the gear are arranged, the rotation of the worm can drive the rotation of the gear, and then the receiving hopper is rotated; the rotating receiving hopper can cause the collision and movement of the feed in the receiving hopper; compared with the static feed in the receiving hopper, the device can not only mix the feed again, but also can achieve the purpose of breaking the agglomerated feed through the collision between the feed and the feed.

[0014] Preferably, the breaking assembly comprises a first fixed column, the first fixed column is located in the interior of the receiving shell and is fixedly connected with the receiving shell, a transmission shaft one is horizontally arranged in the interior of the top end of the first fixed column, the transmission shaft one is rotatably connected with the first fixed column, and a transmission member is sleeved and mounted on the side wall of the transmission shaft one; a second fixed column is arranged between the first fixed column and the receiving hopper, the second fixed column is fixedly connected with the receiving shell, a fixed plate is arranged above the receiving hopper, the fixed plate is fixedly connected with the second fixed column, a breaking plate is hingedly connected to the rear side wall of the fixed plate, a connecting rod is arranged between the breaking plate and the transmission member, and the top end of the breaking plate is connected with the transmission member through the connecting rod; in this scheme, the transmission member and the connecting rod are arranged, the left and right swinging of the breaking plate can be driven by the connecting rod through the rotating transmission member, so that the efficiency of mixing the feed and the effect of breaking the agglomerated feed can be improved.

[0015] Preferably, the driving assembly comprises a second transmission shaft, the second transmission shaft is located below the first transmission shaft and is rotatably connected with the first fixed column, a third transmission wheel is sleeved and mounted on the side wall of the first transmission shaft, the third transmission wheel is located in front of the transmission member, a fourth transmission wheel is sleeved and mounted on the side wall of the second transmission shaft, the third transmission wheel and the fourth transmission wheel are drivingly connected through a second belt, a fifth transmission wheel is arranged in front of the fourth transmission wheel, the fifth transmission wheel is fixedly connected with the second transmission shaft, a sixth transmission wheel is arranged on one side of the fifth transmission wheel, the sixth transmission wheel is fixedly connected with the worm, the fifth transmission wheel and the sixth transmission wheel are drivingly connected through a third belt, a third motor is mounted on the rear side wall of the first fixed column, and the third motor is used to drive the first transmission shaft to rotate; in this scheme, the third motor is arranged, the left and right swinging of the breaking plate and the transverse rotation of the receiving hopper can be driven by the transmission wheel and the belt; compared with two third motors respectively driving the breaking plate and the receiving hopper to work, the device can save the arrangement of the third motor and reduce the generation of noise.

[0016] Compared with the prior art, the device has the following beneficial effects: 1. Through setting the mixing mechanism, the mixing assembly in the mixing mechanism can make the mixer to carry out the front and back and up and down adjustment operation in the mixing box, so as to preliminarily mix the feed to be flowed into the feed pipe, prevent the feed from entering into the mixing assembly two, and the mixing assembly two carries out the secondary mixing operation on the feed through the double shafts in the mixing assembly two; the scattering mechanism carries the feed after the secondary mixing through the receiving assembly in the scattering mechanism, the rotating assembly can not only make the feed to be mixed again, but also make the feed to collide with each other to achieve the purpose of preliminarily scattering the caking; the setting of the scattering assembly can drive the scattering plate to swing left and right, so as to not only improve the mixing effect of the feed, but also improve the scattering effect of the feed, the device can carry out the layer-by-layer treatment on the feed, and avoid the caking phenomenon and the unmixed state of the discharged feed. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the specific embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0018] Figure 1 It is a structural schematic diagram of the present application. Figure 2 It is a structural schematic diagram of the mixing mechanism of the present application. Figure 3 It is a sectional view of the transmission shell of the present application. Figure 4 It is a structural schematic diagram of the screw of the present application. Figure 5 It is a side view of the horizontal adjustment machine of the present application. Figure 6 It is a partial sectional view of the receiving shell of the present application. Figure 7 It is Figure 6 It is an enlarged view of structure at A on the fixed column. Figure 8 It is a structural schematic diagram of the receiving hopper of the present application.

[0019] In the figure: 1, base; 2, mixing mechanism; 3, scattering mechanism; 4, discharge pipe; 5, valve body; 21, mixing assembly one; 22, mixing assembly two; 31, receiving assembly; 32, rotating assembly; 33, scattering assembly; 34, driving assembly. 211, mixing box one; 212, feeding hopper; 213, transmission shell; 214, stirrer; 215, vertical adjusting machine; 216, horizontal adjusting machine; 217, conveying pipe; 218, guide; 221, mixing box two; 222, stirring shaft one; 223, stirring shaft two; 224, driving wheel; 225, driven wheel; 226, transmission belt; 227, motor four; 311, receiving shell; 312, receiving hopper; 313, supporting plate; 321, shaft body; 322, gear wheel; 323, worm; 331, fixed column one; 332, transmission shaft one; 333, transmission member; 334, fixed column two; 335, fixed plate; 336, scattering plate; 337, connecting rod; 338, motor three; 341, transmission shaft two; 342, transmission wheel three; 343, transmission wheel four; 344, belt two; 345, transmission wheel five; 346, transmission wheel six; 347, belt three; 2141, motor five; 2142, connecting shaft; 2143, stirring shaft three; 2144, stirring member; 2151, supporting plate; 2152, bottom plate; 2153, vertical column; 2154, top plate; 2155, screw; 2156, nut; 2157, landing member; 2158, extension plate; 2159, motor one; 2210, transmission wheel one; 2211, transmission wheel two; 2212, belt one; 2213, guide column; 2214, guide sleeve; 2215, connecting plate; 2216, limiting rod; 2217, limiter; 2218, limiting column; 2161, front plate; 2162, rear plate; 2163, fixed rail; 2164, screw; 2165, nut; 2166, motor two; 2167, coupling; 2168, sliding block; 2169, sliding rail. DETAILED DESCRIPTION

[0020] The technical solutions of the present application will be described clearly and completely below in combination with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments.

[0021] The components of the embodiments of the present application generally described and shown in the drawings herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but merely represents selected embodiments of the present application.

[0022] Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present application.

[0023] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate 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. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0024] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0025] Please refer to Figures 1-8 A kind of mixing device for functional feed production, including base 1, the top of base 1 is equipped with mixing mechanism 2, one side of mixing mechanism 2 is provided with scattering mechanism 3, scattering mechanism 3 is communicated with mixing mechanism 2, scattering mechanism 3 is connected with base 1;Mixing mechanism 2 includes the mixing assembly one 21 for carrying out preliminary mixing to feed and the mixing assembly two 22 for mixing feed again, mixing assembly one 21 is located on mixing assembly two 22, and mixing assembly two 22 is located on base 1;Scattering mechanism 3 includes the receiving assembly 31 for receiving material, the rotating assembly 32 for driving receiving assembly 31 to rotate transversely, the scattering assembly 33 for scattering material in receiving assembly 31 back and forth, and the driving assembly 34 for providing driving source for rotating assembly 32 and scattering assembly 33, receiving assembly 31 is located on base 1, rotating assembly 32 and scattering assembly 33 are located on receiving assembly 31, and driving assembly 34 is located on scattering assembly 33.

[0026] Specifically, the mixing assembly two 22 comprises a mixing box two 221 located at the bottom of the mixing box one 211 and communicated with the mixing box one 211 through the feed pipe 217, a stirring shaft one 222 horizontally arranged in the mixing box two 221, a stirring shaft two 223 arranged on one side of the stirring shaft one 222, the stirring shaft one 222 and the stirring shaft two 223 being in driving connection, a driving wheel 224 and a driven wheel 225 arranged in front of the mixing box two 221, the driving wheel 224 and the driven wheel 225 being respectively sleeved and arranged on the stirring shaft one 222 and the stirring shaft two 223, the driving wheel 224 and the driven wheel 225 being in driving connection through a transmission belt 226, a motor four 227 further arranged on the front side wall of the mixing box two 221, the motor four 227 being used to drive the driving wheel 224 to rotate, and stirring blades arranged on the stirring shaft one 222 and the stirring shaft two 223, the motor four 227 driving the stirring shaft one 222 and the stirring shaft two 223 to rotate, so that the material in the mixing box two 221 can be uniformly mixed through the stirring blades.

[0027] The side wall of the mixing box two 221 is further provided with a discharge pipe 4, one end of the discharge pipe 4 being communicated with the mixing box two 221, the other end of the discharge pipe 4 being communicated with the receiving hopper 312, and a valve body 5 arranged on the side wall of the discharge pipe 4, the valve body 5 being used to control whether the feed enters into the receiving hopper 312.

[0028] Further, the mixing assembly one 21 comprises the mixing box one 211, the top of the mixing box one 211 being provided with the feed hopper 212, one side of the feed hopper 212 being provided with the transmission shell 213, the transmission shell 213 being communicated with the mixing box one 211, the inside of the transmission shell 213 being provided with the stirrer 214, the vertical adjusting machine 215 being arranged on the stirrer 214, the horizontal adjusting machine 216 being arranged on the vertical adjusting machine 215, the horizontal adjusting machine 216 being connected with the mixing box one 211, the side wall of the mixing box one 211 being provided with the feed pipe 217, one end of the feed pipe 217 being communicated with the mixing box one 211, the other end of the feed pipe 217 being communicated with the mixing assembly two 22, and the guide 218 being arranged on the bottom wall in the mixing box one 211, the guide 218 corresponding to the feed pipe 217.

[0029] Specifically, the end of the feed pipe 217 is further provided with a solenoid valve, the solenoid valve being used to control whether the feed in the mixing box one 211 enters into the feed pipe 217.

[0030] The stirring machine 214 comprises a motor 2141 located on and fixedly connected to the landing piece 2157, a connecting shaft 2142 is installed on an output shaft of the motor 2141, a stirring shaft 2143 is installed at the bottom of the connecting shaft 2142, and a stirring piece 2144 is installed at the bottom of the stirring shaft 2143; when the motor 2141 drives the connecting shaft 2142 and the stirring shaft 2143 to rotate, the stirring piece 2144 also works, thereby realizing the stirring and mixing of the feed.

[0031] Further, the vertical adjusting machine 215 comprises a support plate 2151 located on and connected to the horizontal adjusting machine 216, a bottom plate 2152 is installed at the top of the support plate 2151, a stand column 2153 is installed at the top of the bottom plate 2152, a top plate 2154 is installed at the top of the stand column 2153, a screw rod 2155 is arranged on one side of the stand column 2153, both ends of the screw rod 2155 are rotationally connected to the bottom plate 2152 and the top plate 2154, a nut 2156 is threadedly connected to the side wall of the screw rod 2155, a landing piece 2157 is arranged on one side of the nut 2156, the landing piece 2157 is connected to the nut 2156, and the stirring machine 214 is located on the landing piece 2157.

[0032] Specifically, a limiting rod 2216 is arranged behind the screw rod 2155, both ends of the limiting rod 2216 are fixedly connected to the top plate 2154 and the bottom plate 2152, two limiters 2217 are installed on the limiting rod 2216, and a limiting column 2218 is further installed on the connecting plate 2215; when the limiting column 2218 collides with the limiter 2217, the limiter 2217 can control the motor 2159 to stop working, thereby avoiding the nut 2156 from excessively rising or falling.

[0033] Further, an extension plate 2158 is installed at the top of the top plate 2154, a motor 2159 is installed at an end of the extension plate 2158 away from the top plate 2154, a transmission wheel one 2210 is arranged above the extension plate 2158, a transmission wheel two 2211 is arranged on one side of the transmission wheel one 2210, the transmission wheel one 2210 and the transmission wheel two 2211 are both rotationally connected to the extension plate 2158, the transmission wheel one 2210 and the transmission wheel two 2211 are transmissionally connected through a belt one 2212, and the motor 2159 is used to drive the transmission wheel one 2210 to rotate; a guide column 2213 is arranged in front of and behind the screw rod 2155, both ends of the two guide columns 2213 are fixedly connected to the bottom plate 2152 and the top plate 2154, guide sleeves 2214 are both sleeved on the side walls of the two guide columns 2213, the guide sleeves 2214 are both fixedly connected to the landing piece 2157, a connecting plate 2215 is sleeved on the side wall of the nut 2156, one end of the connecting plate 2215 is fixedly connected to the nut 2156, and the other end of the connecting plate 2215 is fixedly connected to the landing piece 2157.

[0034] Further, the lateral adjustment machine 216 comprises a front plate 2161 located on the inner wall of the transmission shell 213 and fixedly connected with the transmission shell 213, a rear plate 2162 arranged behind the front plate 2161, a fixed rail 2163 arranged between the rear plate 2162 and the front plate 2161, the rear plate 2162 and the front plate 2161 being fixedly connected through the fixed rail 2163, a lead screw 2164 arranged above the fixed rail 2163, both ends of the lead screw 2164 being rotatably connected with the front plate 2161 and the rear plate 2162 respectively, a nut 2165 threadedly connected with the side wall of the lead screw 2164, the nut 2165 being fixedly connected with the support plate 2151, and the nut 2165 being slidably connected with the fixed rail 2163.

[0035] Further, a motor two 2166 is mounted on the rear side wall of the rear plate 2162, an output shaft of the motor two 2166 being fixedly connected with the lead screw 2164 through a shaft coupling 2167, a sliding block 2168 being mounted at the bottom of the nut 2165, a sliding rail 2169 being slidably arranged on the sliding block 2168, the sliding rail 2169 being fixedly connected with the fixed rail 2163, and the nut 2165 being slidably connected with the fixed rail 2163 through the sliding block 2168 and the sliding rail 2169.

[0036] Further, the receiving assembly 31 comprises a receiving shell 311 located on one side of the mixing assembly two 22 and fixedly connected with the base 1, the inside of the receiving shell 311 being provided with a receiving hopper 312, the receiving hopper 312 being rotatably connected with the receiving shell 311, and the receiving hopper 312 being in communication with the mixing assembly two 22.

[0037] Specifically, a supporting plate 313 is further mounted in the inside of the receiving shell 311, and the supporting plate 313 is used for supporting the receiving hopper 312. A box door is rotatably connected with the rear side wall of the receiving shell 311 through a hinge, and a worker can open the box door to collect the feed in the receiving hopper 312.

[0038] Further, the rotating assembly 32 comprises a shaft body 321 located at the bottom of the receiving hopper 312, one end of the shaft body 321 being fixedly connected with the receiving hopper 312, the other end of the shaft body 321 being rotatably connected with the receiving shell 311, a gear wheel 322 being sleeved and mounted on the side wall of the shaft body 321, a worm 323 being engaged with the side wall of the gear wheel 322, and both ends of the worm 323 being rotatably connected with the receiving shell 311.

[0039] Specifically, the worm 323 further has two supporting seats for supporting the worm 323 to rotate.

[0040] Further, the dispersing assembly 33 comprises a first fixed column 331 located inside the receiving shell 311 and fixedly connected with the receiving shell 311, a transmission shaft 332 horizontally arranged inside the top end of the first fixed column 331 and rotationally connected with the first fixed column 331, and a transmission member 333 mounted on the side wall of the transmission shaft 332; a second fixed column 334 is arranged between the first fixed column 331 and the receiving hopper 312, the second fixed column 334 is fixedly connected with the receiving shell 311, a fixed plate 335 is arranged above the receiving hopper 312, the fixed plate 335 is fixedly connected with the second fixed column 334, a dispersing plate 336 is hingedly connected to the rear side wall of the fixed plate 335, a connecting rod 337 is arranged between the dispersing plate 336 and the transmission member 333, and the top end of the dispersing plate 336 is connected with the transmission member 333 through the connecting rod 337.

[0041] Further, the driving assembly 34 comprises a second transmission shaft 341 located below the transmission shaft 332 and rotationally connected with the first fixed column 331, a third transmission wheel 342 mounted on the side wall of the transmission shaft 332 and located in front of the transmission member 333, a fourth transmission wheel 343 mounted on the side wall of the second transmission shaft 341, the third transmission wheel 342 and the fourth transmission wheel 343 are drivingly connected through a second belt 344, a fifth transmission wheel 345 is arranged in front of the fourth transmission wheel 343 and fixedly connected with the second transmission shaft 341, a sixth transmission wheel 346 is arranged on one side of the fifth transmission wheel 345 and fixedly connected with the worm 323, the fifth transmission wheel 345 and the sixth transmission wheel 346 are drivingly connected through a third belt 347, and a third motor 338 is mounted on the rear side wall of the first fixed column 331 and used to drive the transmission shaft 332 to rotate.

[0042] In summary, by arranging the mixing mechanism 2, when the mixing assembly 21 in the mixing mechanism 2 works, the stirrer 214 can be adjusted forward and backward and up and down in the mixing box 211 to preliminarily mix the feed flowing into the feed pipe 217, so that the feed is not mixed when entering the mixing assembly 22; the mixing assembly 22 mixes the feed again through the double shafts; the receiving assembly 31 of the dispersing mechanism 3 receives the feed mixed again, the rotating assembly 32 not only mixes the feed again, but also makes the feed collide with each other to preliminarily disperse the clumps; the dispersing assembly 33 drives the dispersing plate 336 to swing left and right, so that the mixing effect of the feed is improved, and the dispersing effect of the feed is also improved, the device can treat the feed layer by layer, and the discharged feed is not clumped and not mixed.

[0043] The foregoing description enables one of ordinary skill in the art to make or use the application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A mixing device for producing functional feed, comprising a base (1), characterized in that: A mixing mechanism (2) is installed on the top of the base (1), and a dispersing mechanism (3) is provided on one side of the mixing mechanism (2). The dispersing mechanism (3) is connected to the mixing mechanism (2), and the dispersing mechanism (3) is connected to the base (1). The mixing mechanism (2) includes a mixing component one (21) for preliminary mixing of feed and a mixing component two (22) for further mixing of feed. The mixing component one (21) is located on the mixing component two (22), and the mixing component two (22) is located on the base (1). The dispersing mechanism (3) includes a receiving component (31) for receiving materials, a rotating component (32) for driving the receiving component (31) to rotate laterally, a dispersing component (33) for dispersing the materials in the receiving component (31) back and forth, and a driving component (34) for providing a driving source for the rotating component (32) and the dispersing component (33). The receiving component (31) is located on the base (1), the rotating component (32) and the dispersing component (33) are both located on the receiving component (31), and the driving component (34) is located on the dispersing component (33).

2. The mixing device for functional feed production as described in claim 1, characterized in that: The mixing assembly (21) includes a mixing chamber (211), the top of which has a feed hopper (212). A transmission housing (213) is provided on one side of the feed hopper (212). The transmission housing (213) is connected to the mixing chamber (211). A mixer (214) is provided inside the transmission housing (213). A vertical adjustment mechanism (215) is installed on the mixer (214). A horizontal adjustment mechanism (215) is installed on the vertical adjustment mechanism (215). 16), the transverse adjustment machine (216) is connected to the mixing box one (211). A conveying pipe (217) is provided on the side wall of the mixing box one (211). One end of the conveying pipe (217) is connected to the mixing box one (211), and the other end of the conveying pipe (217) is connected to the mixing component two (22). A guide (218) is installed on the bottom wall inside the mixing box one (211). The guide (218) corresponds to the conveying pipe (217).

3. The mixing device for functional feed production as described in claim 2, characterized in that: The vertical adjustment mechanism (215) includes a support plate (2151), which is located on and connected to the horizontal adjustment mechanism (216). A base plate (2152) is installed on the top of the support plate (2151), a column (2153) is installed on the top of the base plate (2152), and a top plate (2154) is installed on the top of the column (2153). One side of the column (2153) is provided with... A screw (2155) is provided, and the two ends of the screw (2155) are rotatably connected to the bottom plate (2152) and the top plate (2154) respectively. A nut (2156) is threadedly connected to the side wall of the screw (2155). A dropper (2157) is provided on one side of the nut (2156). The dropper (2157) is connected to the nut (2156). The mixer (214) is located on the dropper (2157).

4. The mixing device for functional feed production as described in claim 3, characterized in that: An extension plate (2158) is installed on the top of the top plate (2154). A motor (2159) is installed on the end of the extension plate (2158) away from the top plate (2154). A transmission wheel (2210) is arranged above the extension plate (2158). A transmission wheel (2211) is arranged on one side of the transmission wheel (2210). Both the transmission wheel (2210) and the transmission wheel (2211) are rotatably connected to the extension plate (2158). The transmission wheel (2210) and the transmission wheel (2211) are connected by a belt (2212). The motor (2159) is used to drive the transmission wheel (2210) to rotate. Guide posts (2213) are provided at the front and rear of the screw (2155). The two ends of the two guide posts (2213) are fixedly connected to the bottom plate (2152) and the top plate (2154) respectively. Guide sleeves (2214) are fitted on the side walls of the two guide posts (2213). The two guide sleeves (2214) are fixedly connected to the landing component (2157). A connecting plate (2215) is fitted on the side wall of the nut (2156). One end of the connecting plate (2215) is fixedly connected to the nut (2156), and the other end of the connecting plate (2215) is fixedly connected to the landing component (2157).

5. The mixing device for functional feed production as described in claim 3, characterized in that: The lateral adjustment mechanism (216) includes a front plate (2161), which is located on the inner wall of the transmission housing (213) and fixedly connected to the transmission housing (213). A rear plate (2162) is provided behind the front plate (2161), and a fixed rail (2163) is provided between the rear plate (2162) and the front plate (2161). The rear plate (2162) and the front plate (2161) are connected by the fixed rail (2163). 63) Fixed connection: A lead screw (2164) is provided above the fixed rail (2163). The two ends of the lead screw (2164) are rotatably connected to the front plate (2161) and the rear plate (2162) respectively. A nut (2165) is threaded on the side wall of the lead screw (2164). The nut (2165) is fixedly connected to the support plate (2151). The nut (2165) is slidably connected to the fixed rail (2163).

6. The mixing device for functional feed production as described in claim 5, characterized in that: A second motor (2166) is installed on the rear side wall of the rear plate (2162). The output shaft of the second motor (2166) is fixedly connected to the lead screw (2164) through a coupling (2167). A slider (2168) is installed at the bottom of the lead screw nut (2165). A slide rail (2169) is slidably arranged on the slider (2168). The slide rail (2169) is fixedly connected to the fixed rail (2163). The lead screw nut (2165) is slidably connected to the fixed rail (2163) through the slider (2168) and the slide rail (2169).

7. The mixing device for functional feed production as described in claim 1, characterized in that: The receiving component (31) includes a receiving shell (311), which is located on one side of the mixing component (22) and fixedly connected to the base (1). The receiving shell (311) has a receiving hopper (312) inside, which is rotatably connected to the receiving shell (311) and communicates with the mixing component (22).

8. The mixing device for functional feed production as described in claim 7, characterized in that: The rotating assembly (32) includes a shaft (321) located at the bottom of the receiving hopper (312). One end of the shaft (321) is fixedly connected to the receiving hopper (312), and the other end of the shaft (321) is rotatably connected to the receiving shell (311). A gear (322) is sleeved on the side wall of the shaft (321), and a worm (323) meshes on the side wall of the gear (322). Both ends of the worm (323) are rotatably connected to the receiving shell (311).

9. The mixing device for functional feed production as described in claim 8, characterized in that: The dispersing component (33) includes a fixed column (331), which is located inside the receiving shell (311) and fixedly connected to the receiving shell (311). A transmission shaft (332) is horizontally arranged inside the top of the fixed column (331), which is rotatably connected to the fixed column (331). A transmission component (333) is sleeved on the side wall of the transmission shaft (332). A second fixed column (334) is provided between the first fixed column (331) and the receiving hopper (312). The second fixed column (334) is fixedly connected to the receiving shell (311). A fixed plate (335) is provided above the receiving hopper (312). The fixed plate (335) is fixedly connected to the second fixed column (334). A disintegrating plate (336) is hinged to the rear side wall of the fixed plate (335). A connecting rod (337) is provided between the disintegrating plate (336) and the transmission component (333). The top end of the disintegrating plate (336) is connected to the transmission component (333) through the connecting rod (337).

10. The mixing device for functional feed production as described in claim 9, characterized in that: The drive assembly (34) includes a second drive shaft (341), which is located below the first drive shaft (332) and rotatably connected to the first fixed column (331). A third drive wheel (342) is sleeved on the side wall of the first drive shaft (332) and is located in front of the transmission component (333). A fourth drive wheel (343) is sleeved on the side wall of the second drive shaft (341). The third drive wheel (342) and the fourth drive wheel (343) are connected by a second belt (344). A transmission wheel five (345) is provided in front of the fourth (343), and the transmission wheel five (345) is fixedly connected to the second transmission shaft (341). A transmission wheel six (346) is provided on one side of the transmission wheel five (345), and the transmission wheel six (346) is fixedly connected to the worm (323). The transmission wheel five (345) and the transmission wheel six (346) are connected by a belt three (347). A motor three (338) is installed on the rear side wall of the first fixed column (331), and the motor three (338) is used to drive the first transmission shaft (332) to rotate.

Citation Information

Patent Citations

  • Chicken feed-mixing device

    CN107259621A