Powder aquatic veterinary drug V-shaped production device

By employing multiple sets of stirring components and a rotary drive mechanism in the powdered aquatic veterinary drug production device, the problems of low mixing efficiency and clogging have been solved, achieving a highly efficient mixing and clogging-free production process.

CN223530297UActive Publication Date: 2025-11-11TIANJIN DEBANG JIAHONG BIOTECH CO LTD
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Patent Information

Application Number
CN202422610668.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-11-11
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Existing V-type mixers have low mixing efficiency in the production of powdered veterinary drugs, and materials are prone to clogging the discharge port, affecting work efficiency.

Method used

A V-shaped production device for powdered aquatic veterinary drugs was designed. It adopts a first and second sleeve structure arranged opposite to each other, combined with a transverse stirring component and a wall-mounted stirring component. The rotation and stirring of the V-shaped barrel are realized by the material barrel drive component and the rotating shaft drive component, which changes the material movement form, improves the mixing efficiency, and prevents blockage during unloading.

Benefits of technology

It achieves efficient mixing of powdered veterinary drugs, avoids material clogging of the discharge port, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a V-shaped production device for powder aquatic veterinary drugs. Comprising a rack, a first supporting sleeve structure and a second supporting sleeve structure are rotationally connected to the rack, and a V-shaped barrel is installed between the first supporting sleeve structure and the second supporting sleeve structure; a transverse stirring assembly which is rotationally connected with the V-shaped barrel in a sealed mode is arranged in the V-shaped barrel in a penetrating mode, a driven rotating shaft and a driving rotating shaft are rotationally connected into the first supporting sleeve structure and the second supporting sleeve structure respectively, and the driven rotating shaft and the driving rotating shaft are connected with the two ends of the transverse stirring assembly respectively; the device further comprises a material barrel driving assembly and a rotating shaft driving assembly. The wall-attached stirring components are mounted in the V-shaped barrel and are respectively positioned at positions close to the transverse stirring component and a discharge hole close to the V-shaped barrel; the wall-adhering stirring assembly comprises an outer wall mounting seat fixedly connected to the outer wall of the V-shaped barrel, a plurality of groups of stirring blades are rotationally connected to the outer wall mounting seat, and the wall-adhering stirring assembly further comprises a rotation driving mechanism used for driving the plurality of groups of stirring blades to revolve and rotate. The raw materials of powder veterinary drugs can be fully and efficiently mixed, the blocking phenomenon during discharging can be avoided, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of veterinary drug production technology, and in particular relates to a V-type production device for powdered aquatic veterinary drugs. Background Technology

[0002] Against the backdrop of the rapid development of my country's aquaculture industry, the scale of aquaculture has gradually expanded. In order to accelerate the growth rate of aquatic products, increase the production of aquatic products, and prevent the spread of diseases, it is necessary to release veterinary drugs into aquaculture areas for treatment or prevention.

[0003] Veterinary drugs refer to substances (including medicated feed additives) used to prevent, treat, diagnose animal diseases, or purposefully regulate animal physiological functions. Veterinary drugs mainly include: serum products, vaccines, diagnostic products, microecological products, traditional Chinese medicine, prepared Chinese medicines, chemical drugs, antibiotics, biochemical drugs, radioactive drugs, and external insecticides and disinfectants. Currently, veterinary drugs are generally divided into liquid and solid powder forms. In the production process of powdered aquatic veterinary drugs, the mixing process is crucial, determining the uniformity of the mixture and significantly impacting product quality. Currently, V-type mixers are commonly used.

[0004] In existing technologies for producing powdered veterinary drugs using V-type mixers, a motor drives the V-shaped drum to rotate, causing the material inside to mix vertically. However, the movement of the material within the V-shaped drum is relatively simple, resulting in inefficient mixing. Furthermore, during unloading, the powdery material easily clogs the discharge port of the V-shaped drum, requiring manual clearing with auxiliary tools, which prolongs the discharge time and leads to low discharge efficiency, impacting the overall efficiency of powder mixing. Therefore, there is an urgent need to design a V-type production device for powdered aquatic veterinary drugs to solve these problems. Utility Model Content

[0005] This invention provides a V-shaped production device for powdered aquatic veterinary drugs with a reasonable structural design to solve the technical problems existing in the prior art. This invention can fully and efficiently mix the raw materials for powdered veterinary drugs and avoid blockage during discharge, thus improving work efficiency.

[0006] The technical solution adopted by this utility model to solve the technical problems existing in the prior art is as follows: A V-shaped production device for powdered aquatic veterinary drugs includes a frame, on which a first support structure and a second support structure are rotatably connected, and a V-shaped barrel is installed between the first support structure and the second support structure; a transverse stirring assembly is installed inside the V-shaped barrel and is rotatably connected thereto; a driven shaft and a driven shaft are rotatably connected to the first support structure and the second support structure, respectively, and the driven shaft and the driven shaft are respectively connected to both ends of the transverse stirring assembly; it also includes a material barrel driving assembly for driving the rotation of the second support structure and a shaft driving assembly for driving the rotation of the driven shaft; it also includes multiple sets of wall-adhering stirring assemblies installed inside the V-shaped barrel, the multiple sets of wall-adhering stirring assemblies being located adjacent to the transverse stirring assembly and adjacent to the discharge port of the V-shaped barrel; the wall-adhering stirring assembly includes an outer wall mounting seat fixed to the outer wall of the V-shaped barrel, multiple sets of stirring blades are rotatably connected to the outer wall mounting seat, and a rotation driving mechanism for driving the multiple sets of stirring blades to revolve and rotate.

[0007] The advantages and positive effects of this utility model are as follows: This utility model provides a V-shaped production device for powdered aquatic veterinary drugs. By setting up a first and second support structure arranged opposite to each other, and in conjunction with the material barrel drive assembly, the V-shaped barrel can be rotated, thereby allowing the material to be mixed inside. By setting up a driven shaft and a driving shaft, and in conjunction with the shaft drive assembly, the transverse stirring assembly installed inside the V-shaped barrel can be driven to rotate at high speed, thereby changing the single movement mode of the material inside the V-shaped barrel, thus enabling the material to be mixed efficiently. At the same time, the high-speed rotating transverse stirring assembly can break up the agglomerated material and crush the large pieces of material, avoiding the problem of uneven mixing caused by agglomerated and lumpy materials, and improving the mixing effect of the material. By setting up multiple sets of wall-mounted stirring assemblies, the mixing effect of the material is further improved. At the same time, the material at the discharge port of the V-shaped barrel can be disturbed during the unloading operation, preventing the material from blocking the discharge port of the V-shaped barrel and affecting normal operation, thus further improving work efficiency.

[0008] Preferably, the transverse stirring assembly includes a hollow horizontal shaft arranged transversely and rotatably connected to the V-shaped barrel, with multiple sets of short connecting rods fixed to the outer peripheral wall of the hollow horizontal shaft, and a small stirring belt connected to the multiple sets of short connecting rods; multiple sets of long connecting rods are fixed to the outer peripheral wall of the hollow horizontal shaft, and a large stirring belt is connected to the multiple sets of long connecting rods.

[0009] Preferably, the second support structure includes a support rotating sleeve rotatably connected to the frame via a pedestal bearing, an outer mounting sleeve installed at the inner end of the support rotating sleeve, an inner mounting sleeve fixedly connected to the inner cavity of the outer mounting sleeve, and a transition flange sleeve installed between the outer mounting sleeve and the V-shaped barrel; the structure of the first support structure is consistent with the structure of the second support structure.

[0010] Preferably, the rotary drive mechanism includes a stirring shell rotatably connected to an outer wall mounting base, the stirring shell passing through and sealingly rotatably connected to a V-shaped barrel, and a gear ring provided at the lower end of the stirring shell; multiple sets of stirring blades passing through and rotatably connected to the stirring shell, and a stirring bevel gear connected to the inner end of each stirring blade; it also includes a gear mounting column fixedly connected to the outer wall mounting base, an intermediate bevel gear keyed to the upper part of the gear mounting column, and each stirring bevel gear meshing with the intermediate bevel gear; it also includes a stirring motor mounted on the outer wall mounting base, and a drive gear meshing with the gear ring keyed to the output shaft of the stirring motor.

[0011] Preferably, the rotary drive mechanism further includes a mounting screw that penetrates the stirring shell, the mounting screw being connected to the stirring shell via a locking cap, a gear guide plate being mounted at the lower end of the mounting screw, the lower edge of the gear guide plate being located in an annular groove opened at the inner end of the rotating shaft of each stirring blade and in frictional contact with the rotating shaft; it also includes a limiting cover plate that is detachably connected to the mounting base on the outer wall.

[0012] Preferably, the shaft drive assembly includes a gearbox and a drive motor mounted on the frame, a pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the drive shaft.

[0013] Preferably, the material bucket drive assembly includes a gearbox and a drive motor mounted on the frame, a pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the second support structure. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the front sectional view of the present invention;

[0015] Figure 2 yes Figure 1 Enlarged diagram of region A in the image;

[0016] Figure 3 This is an exploded structural diagram of the wall-mounted stirring assembly in this utility model;

[0017] Figure 4 This is a cross-sectional view of the wall-mounted stirring assembly in this utility model;

[0018] Figure 5 yes Figure 1 An enlarged schematic diagram of the horizontal stirring component.

[0019] In the diagram: 1. Wall-mounted mixing assembly; 1-1. Mixing motor; 1-2. Drive gear; 1-3. Outer wall mounting base; 1-4. Gear mounting column; 1-5. Limiting cover plate; 1-6. Intermediate bevel gear; 1-7. Gear guide plate; 1-8. Mounting screw; 1-9. Mixing blade; 1-10. Mixing bevel gear; 1-11. Locking cap; 1-12. Mixing shell; 2. Discharge control valve; 3. Frame; 4. Driven rotor 5. Shaft; 6. First support structure; 7. V-shaped bucket; 8. Horizontal stirring assembly; 7-1. Hollow horizontal shaft; 7-2. Long connecting rod; 7-3. Large stirring belt; 7-4. Short connecting rod; 7-5. Small stirring belt; 8. Second support structure; 8-1. Inner mounting sleeve; 8-2. Adapter flange sleeve; 8-3. Outer mounting sleeve; 8-4. Support rotating sleeve; 9. Active rotating shaft; 10. Rotating shaft drive assembly; 11. Material bucket drive assembly. Detailed Implementation

[0020] To further understand the invention content, features, and effects of this utility model, the following embodiments are provided in detail:

[0021] Please see Figure 1 The present invention relates to a V-shaped production device for powdered aquatic veterinary drugs, comprising a frame 3, on which a first support structure 5 and a second support structure 8 are rotatably connected. A V-shaped barrel 6 is installed between the first support structure 5 and the second support structure 8, and a discharge control valve 2 is installed at the discharge port of the V-shaped barrel 6. A transverse stirring assembly 7 is installed inside the V-shaped barrel 6 and is rotatably connected thereto. A driven shaft 4 and a driven shaft 9 are rotatably connected to the first support structure 5 and the second support structure 8, respectively, and are connected to both ends of the transverse stirring assembly 7.

[0022] like Figure 2 As shown, the second support structure 8 mentioned above includes a support sleeve 8-4 rotatably connected to the frame 3 via a pedestal bearing, an outer mounting sleeve 8-3 installed at the inner end of the support sleeve 8-4, an inner mounting sleeve 8-1 fixedly connected to the inner cavity of the outer mounting sleeve 8-3, and a transition flange sleeve 8-2 installed between the outer mounting sleeve 8-3 and the V-shaped barrel 6.

[0023] The active rotating shaft 9 is rotatably connected to the inner mounting sleeve 8-1 via a rolling bearing, and a copper sleeve is provided between the active rotating shaft 9 and the inner mounting sleeve 8-1; the outer mounting sleeve 8-3 and the supporting rotating sleeve 8-4 are connected by a flange; a sleeve component is fixed to the outer wall of the V-shaped barrel 6, and the aforementioned transition flange sleeve 8-2 is connected to the flange of the sleeve component. Furthermore, in this embodiment, the structure of the first support structure 5 is identical to the structure of the second support structure 8.

[0024] like Figure 1As shown, this embodiment also includes a bucket drive assembly 11 for driving the rotation of the second support structure 8 and a shaft drive assembly 10 for driving the rotation of the drive shaft 9. The shaft drive assembly 10 includes a gearbox and a drive motor mounted on the frame 3. A pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the drive shaft 9. The pulley drive pair includes a drive pulley keyed to the output shaft of the drive motor and a driven pulley keyed to the input shaft of the gearbox. A drive belt drives the drive pulley and the driven pulley. The sprocket drive pair includes a drive sprocket keyed to the output shaft of the gearbox and a driven sprocket keyed to the drive shaft 9. A chain drives the drive sprocket and the driven sprocket.

[0025] Additionally, the material bucket drive assembly 11 includes a gearbox and a drive motor mounted on the frame 3. A pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the second support structure 8. The aforementioned pulley drive pair includes a driving pulley keyed to the output shaft of the drive motor and a driven pulley keyed to the input shaft of the gearbox. A drive belt drives between the driving pulley and the driven pulley. The sprocket drive pair includes a driving sprocket keyed to the output shaft of the gearbox and a driven sprocket keyed to the support sleeve 8-4. A chain drives between the driving sprocket and the driven sprocket.

[0026] See further Figure 5 The aforementioned transverse stirring assembly 7 includes a hollow transverse shaft 7-1 that is transversely arranged and rotatably connected to the V-shaped barrel 6. Multiple sets of short connecting rods 7-4 are fixedly connected to the outer peripheral wall of the hollow transverse shaft 7-1, and a small stirring belt 7-5 is connected through the multiple sets of short connecting rods 7-4. Multiple sets of long connecting rods 7-2 are fixedly connected to the outer peripheral wall of the hollow transverse shaft 7-1, and a large stirring belt 7-3 is connected through the multiple sets of long connecting rods 7-2.

[0027] like Figure 1 As shown, this embodiment also includes multiple sets of wall-mounted stirring components 1 installed inside the V-shaped barrel 6. The multiple sets of wall-mounted stirring components 1 are located near the transverse stirring component 7 and near the discharge port of the V-shaped barrel 6, respectively.

[0028] See further Figure 3 and Figure 4 The aforementioned wall-mounted stirring assembly 1 includes an outer wall mounting base 1-3 fixedly attached to the outer wall of the V-shaped barrel 6, a plurality of stirring blades 1-9 rotatably connected to the outer wall mounting base 1-3, and a rotary drive mechanism for driving the plurality of stirring blades 1-9 to revolve and rotate.

[0029] The rotary drive mechanism includes a stirring shell 1-12 rotatably connected to an outer wall mounting base 1-3. The stirring shell 1-12 passes through the V-shaped barrel 6 and is rotatably and sealed thereto. A gear ring is provided at the lower end of the stirring shell 1-12, and the gear ring is rotatably connected to the outer wall mounting base 1-3 and the limiting cover plate 1-5 through rolling bearings and thrust ball bearings. Multiple sets of stirring blades 1-9 all pass through the stirring shell 1-12 and are rotatably connected to it. A stirring bevel gear 1-10 is connected to the inner end of each stirring blade 1-9. The multiple sets of stirring blades 1-9 are evenly distributed circumferentially.

[0030] The rotary drive mechanism also includes a gear mounting column 1-4 fixedly connected to the outer wall mounting base 1-3, an intermediate bevel gear 1-6 keyed to the upper part of the gear mounting column 1-4, and each stirring bevel gear 1-10 meshing with the intermediate bevel gear 1-6; it also includes a stirring motor 1-1 mounted on the outer wall mounting base 1-3, and a drive gear 1-2 meshing with a gear ring keyed to the output shaft of the stirring motor 1-1.

[0031] The rotary drive mechanism also includes a mounting screw 1-8 that penetrates the stirring housing 1-12. The mounting screw 1-8 is connected to the stirring housing 1-12 via a locking cap 1-11. A gear guide disc 1-7 is mounted at the lower end of the mounting screw 1-8. The lower edge of the gear guide disc 1-7 is located within an annular groove opened at the inner end of the rotating shaft of each stirring blade 1-9.

[0032] Working principle:

[0033] In actual operation, the raw materials for producing powdered aquatic veterinary drugs are fed into the V-shaped drum 6. The drum drive assembly 11 drives the second support structure 8 to rotate, which in turn drives the V-shaped drum 6 to rotate. During rotation, the materials are mixed inside the V-shaped drum 6. Simultaneously, the shaft drive assembly 10 drives the active shaft 9 to rotate. The rotating active shaft 9 drives the transverse stirring assembly 7 to rotate. The high-speed rotating transverse stirring assembly 7 changes the single movement of the materials, thus achieving efficient mixing. In addition, the high-speed rotating large stirring belt 7-3 and small stirring belt 7-5 can also remove agglomerated or large pieces of material from the raw materials. The mixture is either broken up or crushed. In addition, during the mixing process, the stirring motor 1-1 in the wall-mounted stirring assembly 1 starts and drives the drive gear 1-2 installed on it to rotate, which in turn drives the gear ring meshing with it to rotate. The rotating gear ring can drive the stirring shell 1-12 to rotate. In conjunction with the intermediate bevel gear 1-6, the rotating stirring shell 1-12 can drive each stirring blade 1-9 to rotate synchronously and achieve its own rotation, thereby further stirring and mixing the material in the V-shaped barrel 6. During the unloading operation, the material at the discharge port of the V-shaped barrel 6 is disturbed to prevent the material from blocking the discharge port of the V-shaped barrel 6, thus improving production efficiency.

Claims

1. A V-type production device for powdered aquatic veterinary drugs, characterized in that: The device includes a frame (3), on which a first support structure (5) and a second support structure (8) are rotatably connected, and a V-shaped barrel (6) is installed between the first support structure (5) and the second support structure (8). A transverse stirring assembly (7) is installed inside the V-shaped barrel (6) and is rotatably connected thereto. A driven shaft (4) and a driven shaft (9) are rotatably connected to the first support structure (5) and the second support structure (8), respectively, and the driven shaft (4) and the driven shaft (9) are respectively connected to both ends of the transverse stirring assembly (7). The device also includes a mechanism for driving the second support structure (8) to rotate. The container includes a rotating bucket drive assembly (11) and a shaft drive assembly (10) for driving the active rotating shaft (9) to rotate; it also includes multiple sets of wall-adhering stirring assemblies (1) installed inside the V-shaped bucket (6), the multiple sets of wall-adhering stirring assemblies (1) being located adjacent to the transverse stirring assembly (7) and adjacent to the discharge port of the V-shaped bucket (6); the wall-adhering stirring assembly (1) includes an outer wall mounting seat (1-3) fixedly attached to the outer wall of the V-shaped bucket (6), multiple sets of stirring blades (1-9) being rotatably connected to the outer wall mounting seat (1-3), and a rotary drive mechanism for driving the multiple sets of stirring blades (1-9) to revolve and rotate.

2. The V-type production device for powdered aquatic veterinary drugs as described in claim 1, characterized in that: The transverse stirring assembly (7) includes a hollow horizontal shaft (7-1) arranged horizontally and rotatably connected to the V-shaped barrel (6). Multiple sets of short connecting rods (7-4) are fixed to the outer peripheral wall of the hollow horizontal shaft (7-1), and a small stirring belt (7-5) is connected through the multiple sets of short connecting rods (7-4). Multiple sets of long connecting rods (7-2) are fixed to the outer peripheral wall of the hollow horizontal shaft (7-1), and a large stirring belt (7-3) is connected through the multiple sets of long connecting rods (7-2).

3. The V-type production device for powdered aquatic veterinary drugs as described in claim 1, characterized in that: The second support structure (8) includes a support rotating sleeve (8-4) rotatably connected to the frame (3) via a pedestal bearing. An outer mounting sleeve (8-3) is installed at the inner end of the support rotating sleeve (8-4). An inner mounting sleeve (8-1) is fixedly connected to the inner cavity of the outer mounting sleeve (8-3). It also includes a transition flange sleeve (8-2) installed between the outer mounting sleeve (8-3) and the V-shaped barrel (6). The structure of the first support structure (5) is consistent with the structure of the second support structure (8).

4. The V-type production device for powdered aquatic veterinary drugs as described in claim 1, characterized in that: The rotary drive mechanism includes a stirring shell (1-12) rotatably connected to an outer wall mounting base (1-3), the stirring shell (1-12) passing through a V-shaped barrel (6) and rotatably connected thereto in a sealed manner, and a gear ring provided at the lower end of the stirring shell (1-12); multiple sets of stirring blades (1-9) passing through the stirring shell (1-12) and rotatably connected thereto, and a stirring bevel gear (1-10) connected to the inner end of each stirring blade (1-9); it also includes a gear mounting column (1-4) fixedly connected to the outer wall mounting base (1-3), an intermediate bevel gear (1-6) keyed to the upper part of the gear mounting column (1-4), and each stirring bevel gear (1-10) meshing with the intermediate bevel gear (1-6); it also includes a stirring motor (1-1) mounted on the outer wall mounting base (1-3), and a drive gear (1-2) meshing with the gear ring is keyed to the output shaft of the stirring motor (1-1).

5. The V-type production device for powdered aquatic veterinary drugs as described in claim 4, characterized in that: The rotary drive mechanism also includes a mounting screw (1-8) that passes through the stirring shell (1-12). The mounting screw (1-8) is connected to the stirring shell (1-12) through a locking cap (1-11). A gear guide disc (1-7) is installed at the lower end of the mounting screw (1-8). The lower edge of the gear guide disc (1-7) is located in the annular groove opened at the inner end of the rotating shaft of each stirring blade (1-9) and is in frictional contact with the rotating shaft. It also includes a limiting cover plate (1-5) that is detachably connected to the outer wall mounting seat (1-3).

6. The V-type production apparatus for powdered aquatic veterinary drugs as described in claim 1, characterized in that: The shaft drive assembly (10) includes a gearbox and a drive motor mounted on the frame (3), a pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the drive shaft (9).

7. The V-type production apparatus for powdered aquatic veterinary drugs as described in claim 1, characterized in that: The material bucket drive assembly (11) includes a gearbox and a drive motor mounted on the frame (3), a pulley drive pair is installed between the output shaft of the drive motor and the input shaft of the gearbox, and a sprocket drive pair is installed between the gearbox and the second support structure (8).