Production system of veterinary drug powder
By using a V-shaped mixer and a square cone mixer in the veterinary medicine powder production system, and using a column hopper elevator and a mobile silo to achieve dust-free transport, the mixing and transport difficulties in dust-free environment and mass production are solved, and efficient veterinary medicine powder production is achieved.
Patent Information
- Application Number
- CN202421662044.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-15
AI Technical Summary
In dust-free environments and large-scale production conditions, there are difficulties in mixing and transporting veterinary drug powders, and the existing technology is difficult to meet the requirements of the new industry standards.
Drug premix is performed using a V-shaped mixer, followed by mixing with the matrix in a square cone mixer, and dust-free transport is achieved through a column hopper and a mobile silo.
It realizes efficient mixing and transport of veterinary medicine powders under dust-free conditions, reduces working intensity and meets the needs of mass production.
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Figure CN222918565U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of veterinary drug preparation, and particularly relates to a production system for veterinary drug powder. Background Art
[0002] Veterinary powder refers to a powdered preparation made by uniformly mixing drugs (traditional Chinese medicine or western medicine) with a suitable matrix. The drugs in veterinary powder should be dried and crushed first. The matrix used in veterinary powder includes carriers, diluents, etc. The matrix should be stable, have good fluidity, and be easy to mix with the drug to achieve drug administration at a certain drug concentration.
[0003] like Figure 1 The figure below shows the preparation flow chart of veterinary powder containing traditional Chinese medicine. In the new industry standard, there are two major changes: one is the need for dust-free production, and the other is the change from 1 ton to 2 tons per batch.
[0004] For example, the patent with application number CN202220629552.9 discloses a square cone mixer for veterinary medicine, which includes a left frame, a right frame, a rotating shaft horizontally arranged between the left frame and the right frame, a mixing barrel arranged on the rotating shaft, and a driving motor arranged on the right frame and connected to the rotating shaft. The mixing barrel is provided with a feeding barrel, and the square cone mixer also includes a manual escalator arranged on the side of the left frame and adapted to the feeding barrel, a hoist arranged on the top of the left frame and adapted to the feeding barrel, and a vacuum feeder arranged on one side of the left frame and adapted to the feeding barrel. The patent discloses a common square cone mixer.
[0005] For example, the patent with application number CN201320889261.4 discloses a closed automated production equipment for veterinary premixes, including a bag opening station, a first storage bin is integrally connected below the bag opening station, a transverse screw feeder is sealed at the discharge port of the first storage bin, a weighing bucket is sealed at the lower end of the discharge port of the transverse screw feeder, a second storage bin is sealed below the weighing bucket, a vacuum loader is provided on the right side of the second storage bin, the vacuum loader is connected to the discharge port of the second storage bin through an air flow conveying pipeline, a warm air pipeline is provided on the opposite side of the air flow conveying pipeline, and the vacuum loader The discharge port of the machine is tightly connected with the feed port of the square cone mixer below, the discharge port of the square cone mixer is tightly connected with the feed end of the third storage bin below, a longitudinal screw feeder is installed at the discharge port of the third storage bin, the discharge end of the longitudinal screw feeder is tightly connected with the feed end of the spiral metering machine, the discharge end of the spiral metering machine is tightly connected with the fully automatic packaging machine below, a drying system is also provided on the right side of the fully automatic packaging machine, the drying system is connected with the warm air duct, and a cleaning system is installed on the first storage bin, weighing bucket, second storage bin, square cone mixer, and third storage bin. This patent has a complex structure and is not suitable for the preparation of small batches (such as two tons) of veterinary drugs.
[0006] Previously, the standard did not require the operation to be carried out under dust-free conditions. The mixing process (implemented by a square cone mixer) was carried out in one workshop, and the packaging process (implemented by a packaging device) was carried out in another workshop. The veterinary drug powder was transferred from the mixing device to the packaging device through a corresponding transfer structure (such as a trolley). In addition, the output per batch increased, resulting in higher requirements for mixing. Summary of the Invention
[0007] To solve the above problems, the embodiments of the present invention provide a production system for veterinary drug powder. First, a V-shaped mixer is used to premix various drugs, and then the drugs are mixed with the matrix in a square cone mixer to ensure the mixing effect under a larger amount and the same mixing time. Through the setting of a column type hoist and a mobile bin, dust-free transfer of veterinary drug powder is achieved and the working intensity is reduced. The technical solutions are as follows:
[0008] The embodiments of the present invention provide a production system for veterinary drug powder, which includes a square cone mixer 1, a packaging device 2, a V-shaped mixer 3, a vacuum feeder, a column type hoist 4, and a plurality of mobile bins 5. The V-shaped mixer 3 is located beside the square cone mixer 1, and its loading capacity is 1 / 60 - 1 / 20 of that of the square cone mixer 1. Its discharge port can be connected to the feed port of the square cone mixer 1 through a hose with a vacuum feeder. The top of the packaging device 2 is provided with a second feed port 21, and a seal cover is detachably provided on the second feed port 21. The column type hoist 4 is located beside the packaging device 2, and the lifting fork frame 43 thereon can move upward above the packaging device 2 and rotate to be directly above the second feed port 21. The top of the mobile bin 5 is provided with a first feed port 55, the bottom is provided with a first discharge port 56, and a jack 57 cooperating with the lifting fork frame 43 is provided thereon. A seal cover is detachably provided on the first feed port 55, and a cloth connecting pipe 6 is detachably provided on the discharge port of the square cone mixer 1. The first discharge port 56 cooperates with the second feed port 21, and the first feed port 55 cooperates with the lower end of the cloth connecting pipe 6 and can be detachably connected to the lower end of the cloth connecting pipe 6. When the square cone mixer 1 discharges materials, the mobile bin 5 is located directly below the square cone mixer 1 and is connected to the discharge port of the square cone mixer 1 through a cloth bag pipe 6. At this time, the seal cover on the first feed port 55 is removed and connected to the lower end of the cloth connecting pipe 6. When the packaging device 2 feeds materials, the mobile bin 5 is suspended on the lifting fork frame 43, the seal cover is sealed on the first feed port 55, and its first discharge port 56 is connected to the second feed port 21. At this time, the seal cover on the second feed port 21 is removed.
[0009] Specifically, the loading capacity of the square cone mixer 1 in the embodiments of the present invention is 2000 kg, the loading capacity of the V-shaped mixer 3 is 50 kg, and the volume of the mobile bin 5 is 600 L.
[0010] Specifically, the V-shaped mixer 3 in the embodiment of the present utility model is perpendicular to the square cone mixer 1 and is located on the adjacent outer side of a fixed arm of the square cone mixer 1.
[0011] Among them, the mobile bin 5 in the embodiment of the present utility model includes a rectangular frame 51, a square bin 52 at the top of the rectangular frame 51 and cooperating with the rectangular frame 51, four universal wheels 53 at the bottom of the rectangular frame 51, four inverted U-shaped frames on the rectangular frame 51 and cooperating with the lifting fork frame 43, two push handles 54 arranged side by side on one side of the square bin 52, a first feed inlet 55 at the top of the square bin 52, and a first discharge outlet 56 at the bottom of the square bin 52; the lower part of the square bin 52 is conical; a plate valve is provided on the first discharge outlet 56; the four universal wheels 53 are respectively arranged at the four corners of the bottom of the rectangular frame 51; the four inverted U-shaped frames are arranged in a rectangle and are located on the upper side of the lower frame edge of the rectangular frame 51 and are respectively located at the two ends of the opposite two lower frame edges; the two inverted U-shaped frames at the same end form a jack 57 to cooperate with a fork rod at the corresponding end of the lifting fork frame 43.
[0012] Among them, the packaging device 2 in the embodiment of the present utility model is a horizontal bagging machine arranged along the left-right direction. The column type hopper elevator 4 is located behind the packaging device 2 and includes a base 41, a lifting column 42 arranged vertically and capable of rotating 90° on the base 41, and a lifting fork frame 43 capable of moving up and down on the left or right side of the lifting column 42. The lifting fork frame 43 includes two fork rods arranged side by side front and back; when the lifting fork frame 43 is in the low position, the two fork rods are respectively inserted into the jacks 57 at the corresponding ends of the mobile bin 5. At this time, the mobile bin 5 is located on the ground; when the lifting fork frame 43 is in the high position, the mobile bin 5 is located above the packaging device 1. After the lifting column 42 rotates 90°, the first discharge outlet 56 is arranged opposite to the second feed inlet 21 and is located adjacent above the second feed inlet 21.
[0013] Furthermore, a positioning structure 44 capable of adjusting along the direction of the fork rod is provided on the fork rod of the embodiment of the present utility model. The positioning structure 44 blocks and limits the mobile bin 5 and includes a positioning sleeve sleeved on the fork rod and a locking bolt on the upper side of the positioning sleeve. The locking bolt locks and fixes the positioning sleeve on the fork rod.
[0014] Among them, the cloth connecting pipe 6 in the embodiment of the present utility model is a cone with a small upper part and a large lower part. An upper fixing ring cooperating with the discharge outlet of the square cone mixer 1 is coaxially provided at its upper end, and a lower fixing ring cooperating with the first feed inlet 55 is coaxially provided at its lower end; the upper fixing ring and the discharge outlet of the square cone mixer 1 can be detachably connected through a hoop, the lower fixing ring and the first feed inlet 55 can be detachably connected through a hoop, and the first discharge outlet 56 and the second feed inlet 21 can be detachably connected through a hoop.
[0015] Specifically, the column type hoist 4 and the packaging device 2 in the embodiments of the present utility model are located in one workshop, and the square cone mixer 1, the V-shaped mixer 3 and the vacuum feeding machine are located in another workshop.
[0016] The beneficial effects brought by the technical solution provided by the embodiments of the present utility model are as follows: The embodiments of the present utility model provide a production system for veterinary medicine powder. First, a V-shaped mixer is used to premix a variety of drugs, and then the drugs are mixed with the matrix in a square cone mixer to ensure the mixing effect under a larger amount and the same mixing time (about 20 minutes of mixing in the square cone mixer); through the setting of the column type hoist and the mobile bin, the dust-free transfer of veterinary medicine powder is realized and the working intensity is reduced (the single batch output is large, and the working intensity also becomes larger). Description of the Drawings
[0017] Figure 1 is the preparation flow chart of veterinary medicine powder;
[0018] Figure 2 is the structural schematic diagram of the combination of the square cone mixer and the V-shaped mixer;
[0019] Figure 3 is the structural schematic diagram of the combination of the square cone mixer, the mobile bin and the V-shaped mixer;
[0020] Figure 4 is the structural schematic diagram of the mobile bin;
[0021] Figure 5 is the structural schematic diagram of the combination of the packaging device and the column type hoist;
[0022] Figure 6 is the structural schematic diagram of the combination of the packaging device, the column type hoist and the mobile bin and when the column type hoist is in the low position;
[0023] Figure 7 is the structural schematic diagram of the combination of the packaging device, the column type hoist and the mobile bin and when the column type hoist is in the high position.
[0024] In the figure: 1 square cone mixer, 2 packaging device, 3 V-shaped mixer, 4 column type hoist, 5 mobile bin, 6 cloth connecting pipe;
[0025] 21 second feed inlet;
[0026] 41 base, 42 lifting column, 43 lifting fork frame, 44 positioning structure;
[0027] 51 rectangular frame, 52 square bin, 53 universal roller, 54 push handle, 55 first feed inlet, 56 first discharge outlet. Detailed Embodiments
[0028] To make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0029] Embodiment 1
[0030] See Figure 2-7 , Embodiment 1 provides a production system for veterinary medicine powder, which system includes a square cone mixer 1, a packaging device 2, a V-shaped mixer 3, a vacuum feeder (not shown in the figure, which is a conventional structure), a column type hopper elevator 4 and a plurality of mobile bins 5, etc.
[0031] Among them, the V-shaped mixer 3 is located beside the square cone mixer 1, and its loading capacity is 1 / 60 - 1 / 20 of the loading capacity of the square cone mixer 1. Its discharge port can be connected to the feed inlet of the square cone mixer 1 through a hose with a vacuum feeder (the hose is removed when the V-shaped mixer 3 and the square cone mixer 1 are mixing). The V-shaped mixer 3 is used to mix a variety of drugs (in a small amount), and the mixing time is 10 - 20 minutes.
[0032] Among them, the top of the packaging device 2 is provided with a second feed inlet 21, which is specifically a horizontal bagging machine arranged along the left-right direction. A sealing cover is detachably provided on the second feed inlet 21. When the mobile bin 5 is not connected to the second feed inlet 21, the sealing cover closes the second feed inlet 21.
[0033] Among them, the column type hopper elevator 4 is located beside the packaging device 2, and the lifting fork frame 43 thereon can move upward to the upper part of the packaging device 2 and rotate to the directly upper part of the second feed inlet 21. Specifically, the column type hopper elevator 4 is located behind the packaging device 2 and it includes a base 41, a lifting column 42 arranged vertically and capable of rotating 90° on the base 41 (driven by a corresponding structure, which is an existing structure), a lifting fork frame 43 on the left or right side of the lifting column 42 and capable of moving up and down (driven by a corresponding structure, which is an existing structure), and two positioning structures 44, etc. The lifting fork frame 43 includes two fork rods arranged side by side front and back, and the two positioning structures 44 are respectively arranged on the two fork rods. The positioning structure 44 blocks and limits the mobile bin 5, and it can be adjusted along the direction where the fork rod is located. It is arranged close to the lifting column 42, and it includes a positioning sleeve sleeved on the fork rod and a locking bolt on the upper side of the positioning sleeve, etc. The positioning sleeve is specifically a rectangular sleeve slightly larger than the fork rod. The locking bolt is arranged vertically and it locks and fixes the positioning sleeve on the fork rod. Loosen the locking bolt to adjust the positioning structure 44. When the lifting fork frame 43 is in the low position, the two fork rods can be opposite to two jacks 57, and push the mobile bin 5 left and right to insert the two fork rods into the jacks 57 at the corresponding ends of the mobile bin 5 respectively; at this time, the mobile bin 5 is on the ground. When the lifting fork frame 43 is in the high position, the mobile bin 5 is located above the packaging device 1. After the lifting column 42 rotates 90°, the first discharge port 56 is arranged opposite to the second feed inlet 21 and is located adjacent to the upper side of the second feed inlet 21.
[0034] Among them, the movable bin 5 includes a rectangular frame 51, a square bin 52 at the top of the rectangular frame 51 and cooperating with the rectangular frame 51, four universal wheels 53 at the bottom of the rectangular frame 51, four inverted U-shaped frames on the rectangular frame 51 and cooperating with the lifting fork 43, two push handles 54 arranged side by side on one side of the square bin 52, a first feed inlet 55 at the middle position of the top of the square bin 52, a first discharge outlet 56 at the bottom of the square bin 52, etc. The four sides of the square bin 52 are respectively flush with the corresponding sides of the rectangular frame 51, and its lower part is conical. A sealing cover is detachably provided on the first feed inlet 55, and a plate valve is provided on the first discharge outlet 56. The four universal wheels 53 are respectively arranged at the four corners of the bottom of the rectangular frame 51. The four inverted U-shaped frames are arranged in a rectangle, which is located on the upper side of the lower frame edge of the rectangular frame 51, and they are respectively located at both ends of the two opposite lower frame edges. The two inverted U-shaped frames at the same end (arranged side by side) form a jack 57 (a total of two) to cooperate with a fork rod at the corresponding end of the lifting fork 43. The two push handles 54 are respectively located on both sides of the center line of the square bin 52, and they are both vertically arranged and are of U-shaped structure. Taking the movable bin 5 on the lifting fork 43 as an example, the two push handles 54 are located on the left or right side of the square bin 52 and are arranged far away from the lifting column 42. The inverted U-shaped frames are arranged in the left-right direction. Two inverted U-shaped frames are provided at the front and rear ends of the lower frame edge on the left side of the rectangular frame 51, and two inverted U-shaped frames are provided at the front and rear ends of the lower frame edge on the right side of the rectangular frame 51. The two inverted U-shaped frames at the front end are arranged side by side left and right and form a jack 57, and the two inverted U-shaped frames at the rear end are arranged side by side left and right and form another jack 57. The two push handles 54 are arranged side by side front and rear and are arranged on the left or right side of the square bin 52.
[0035] Among them, a cloth connecting pipe 6 is detachably provided at the discharge outlet of the square cone mixer 1. When the square cone mixer 1 is mixing materials, the cloth connecting pipe 6 is removed. The first discharge outlet 56 cooperates with the second feed inlet 21, and the first feed inlet 55 cooperates with the lower end of the cloth connecting pipe 6 and can be detachably connected to the lower end of the cloth connecting pipe 6. Specifically, the cloth connecting pipe 6 is a conical cylinder with a smaller upper part and a larger lower part. An upper fixing ring cooperating with the discharge outlet of the square cone mixer 1 is coaxially provided at its upper end, and a lower fixing ring cooperating with the first feed inlet 55 is coaxially provided at its lower end. The upper fixing ring and the discharge outlet of the square cone mixer 1 can be detachably connected through a hoop, the lower fixing ring and the first feed inlet 55 can be detachably connected through a hoop, and the first discharge outlet 56 and the second feed inlet 21 can be detachably connected through a hoop.
[0036] Among them, when the square cone mixer 1 discharges materials, the movable bin 5 is located directly below the square cone mixer 1 and is connected to the discharge outlet of the square cone mixer 1 through the cloth bag pipe 6. At this time, the sealing cover on the first feed inlet 55 is removed and connected to the lower end of the cloth connecting pipe 6.
[0037] Among them, when the packaging device 2 feeds materials; the movable bin 5 is suspended on the lifting fork frame 43, a sealing cover is sealed on its first feeding port 55, and its first discharging port 56 is connected to the second feeding port 21. At this time, the sealing cover on the second feeding port 21 is removed.
[0038] Specifically, referring to Figure 2-3 , the V-shaped mixer 3 in the embodiment of the present invention is perpendicular to the square cone mixer 1 and is located on the adjacent outer side of a fixed arm of the square cone mixer 1.
[0039] Embodiment 2
[0040] Embodiment 2 provides a production system for veterinary powder, whose structure is basically the same as that of Embodiment 1, the differences being: the loading capacity of the square cone mixer 1 in this embodiment is 2000 kg, the loading capacity of the V-shaped mixer 3 is 50 kg, the volume of the movable bin 5 is 600 L to ensure that a person can push it on the premise of loading as much material as possible, and the number of movable bins 5 is 2. Specifically, the model of the vacuum feeder is ZKS-6 (parameters: 5.5 KW; 1000 - 3200 kg / h); the model of the square cone mixer 1 is HGD-2000; the model of the packaging device 2 is DGD-280AJ.
[0041] Embodiment 3
[0042] Embodiment 3 provides a production system for veterinary powder, whose structure is basically the same as that of Embodiment 1, the differences being: the column type hoist 4 and the packaging device 2 in this embodiment are located in one workshop, and the square cone mixer 1, the V-shaped mixer 3 and the vacuum feeder are located in another workshop.
[0043] Among them, the "first" and "second" in the embodiments of the present invention only play a role in distinction and have no other special meaning.
[0044] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A production system for veterinary drug powders, comprising a square cone mixer (1) and a packaging device (2); characterized in that: It also includes a V-shaped mixer (3), a vacuum feeder, a column-type hopper elevator (4) and a plurality of mobile silos (5); the V-shaped mixer (3) is located next to the square-cone mixer (1), and its charge amount is 1 / 60-1 / 20 of the charge amount of the square-cone mixer (1), and its discharge port can be connected to the feed port of the square-cone mixer (1) through a hose with a vacuum feeder; The packaging device (2) is provided with a second feed port (21) at the top, and a sealing cover is detachably provided on the second feed port (21); the column hopper elevator (4) is located next to the packaging device (2), and the lifting fork frame (43) thereon can move upward to the top of the packaging device (2) and rotate to the top of the second feed port (21); the mobile silo (5) is provided with a first feed port (55) at the top, and a first discharge port (56) is provided at the bottom, and a plug hole (57) is provided on the first feed port (55) for matching with the lifting fork frame (43); a sealing cover is detachably provided on the first feed port (55), and a cloth connecting pipe (6) is detachably provided on the discharge port of the square cone mixer (1); the first discharge port (56) matches with the second feed port (21), and the first feed port (55) matches with the lower end of the cloth connecting pipe (6) and can be detachably connected to the lower end of the cloth connecting pipe (6); When the square cone mixer (1) is discharging materials, the mobile silo (5) is located directly below the square cone mixer (1) and is connected to the material discharge port of the square cone mixer (1) via a cloth connecting pipe (6). At this time, the sealing cover on the first feed port (55) is removed and connected to the lower end of the cloth connecting pipe (6); When the packaging device (2) is feeding, the mobile silo (5) is suspended on the lifting fork frame (43), its first feed port (55) is sealed with a sealing cover, and its first discharge port (56) is connected to the second feed port (21); at this time, the sealing cover on the second feed port (21) is removed.
2. The veterinary drug powder production system according to claim 1, characterized in that: The charge amount of the square cone mixer (1) is 2000 kg, the charge amount of the V-shaped mixer (3) is 50 kg, and the volume of the mobile silo (5) is 600 L.
3. The production system of veterinary drug powder according to claim 2, characterized in that: The V-shaped mixer (3) is perpendicular to the square cone mixer (1) and is located adjacent to the outer side of a fixed arm of the square cone mixer (1).
4. The production system of veterinary drug powder according to claim 1, characterized in that: The mobile silo (5) comprises a rectangular frame (51), a square silo (52) on the top of the rectangular frame (51) and matched with the rectangular frame (51), four universal rollers (53) on the bottom of the rectangular frame (51), four inverted U-shaped frames on the rectangular frame (51) and matched with the lifting fork frame (43), two push handles (54) arranged side by side on one side of the square silo (52), a first feeding port (55) on the top of the square silo (52) and a a first discharge port (56); the lower part of the square silo (52) is conical; a plate valve is provided on the first discharge port (56); four universal rollers (53) are respectively provided at the four corners of the bottom of the rectangular frame (51); four inverted U-shaped frames are arranged in a rectangular shape, and are located on the upper side of the lower frame edge of the rectangular frame (51), and are respectively located at the two ends of the two opposite lower frame edges; the two inverted U-shaped frames at the same end form a plug hole (57) to cooperate with a fork rod at the corresponding end of the lifting fork frame (43).
5. The production system of veterinary drug powder according to claim 4, characterized in that: The packaging device (2) is a horizontal bag-feeding bag filling machine arranged in a left-right direction, the column-type hopper elevator (4) is located at the rear of the packaging device (2) and comprises a base (41), a lifting column (42) arranged vertically and capable of rotating 90 degrees on the base (41), and a lifting fork frame (43) on the left or right side of the lifting column (42) and capable of moving up and down, and the lifting fork frame (43) comprises two fork rods arranged side by side in front and back; When the lifting fork frame (43) is in a low position, the two fork rods are respectively inserted into the insertion holes (57) at the corresponding ends of the mobile silo (5), and at this time, the mobile silo (5) is located on the ground; When the lifting fork frame (43) is in a high position, the mobile silo (5) is located above the packaging device (2), and after the lifting column (42) rotates 90°, the first discharge port (56) is arranged opposite to the second feed port (21) and is located adjacent to and above the second feed port (21).
6. The production system of veterinary drug powder according to claim 5, characterized in that: The fork rod is provided with a positioning structure (44) that can be adjusted along its direction. The positioning structure (44) blocks and limits the movable silo (5) and comprises a positioning sleeve sleeved on the fork rod and a locking bolt on the upper side of the positioning sleeve. The locking bolt locks and fixes the positioning sleeve on the fork rod.
7. The veterinary drug powder production system according to claim 1, characterized in that: The cloth connecting pipe (6) is a conical cylinder with a small upper part and a large lower part, and an upper fixing ring coaxially arranged at its upper end for cooperating with the discharge port of the square cone mixer (1), and a lower fixing ring coaxially arranged at its lower end for cooperating with the first feed port (55); the upper fixing ring and the discharge port of the square cone mixer (1) can be detachably connected via a clamp, the lower fixing ring and the first feed port (55) can be detachably connected via a clamp, and the first discharge port (56) and the second feed port (21) can be detachably connected via a clamp.
8. The veterinary drug powder production system according to claim 1, characterized in that: The column hopper elevator (4) and the packaging device (2) are located in one workshop, and the square cone mixer (1), the V-shaped mixer (3) and the vacuum feeder are located in another workshop.
Citation Information
Patent Citations
Closed automatic production device for animal premix
CN203735386U
Square cone mixer for veterinary drugs
CN217940027U