Novel aquatic product microsphere feed additive production device

By designing a novel aquatic microsphere feed additive production device, the problems of low formulation accuracy, low efficiency, high labor intensity, and high safety hazards in existing technologies have been solved. This device enables efficient and precise additive formulation and mixing, meeting the needs of large-scale, high-quality production.

CN223887811UActive Publication Date: 2026-02-10HANSHAN NORMAL UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520416980.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-10
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Current feed additive production suffers from problems such as low formulation accuracy, low production efficiency, high labor intensity, high safety hazards, and low automation, making it difficult to meet the demand for large-scale, high-quality feed production.

Method used

A novel aquatic microsphere feed additive production device was designed, including a support base, a carrier cylinder, an assembly support frame, and an adjustable carrier frame. Through the cooperation of the transmission system and stirring blades, the device can accurately extract and mix the additive concentrate, thereby improving the degree of automation.

Benefits of technology

It enables efficient and precise formulation and mixing of additives, improves production efficiency and product quality, reduces labor intensity and safety hazards, and meets the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223887811U_ABST
    Figure CN223887811U_ABST
Patent Text Reader

Abstract

The utility model provides a novel aquatic product microsphere feed additive production device, relates to the technical field of feed additive comparison production, and aims to solve the problems of low matching precision, low production efficiency, high labor intensity, potential safety hazards, low automation degree, low production device automation degree, low production cost and the like in feed additive comparison production. The requirements of large-scale and high-quality feed production are difficult to meet. Comprising a bearing base, a configuration carrying cylinder, an assembling supporting frame and an adjusting carrying frame. Bearing pillars are mounted at the top of the bearing base; the configuration carrying cylinder is mounted on the inner side of the assembly supporting ring; the assembly support frame is arranged at the top of the configuration carrying cylinder; the adjusting carrying frame is mounted on the inner side of the mounting open groove, and a rotating carrying groove is formed in the inner side of the adjusting carrying frame; when the butt joint open groove is communicated with the extraction open groove and the connection open groove in a butt joint mode, the extraction pump body accurately extracts different additive stock solutions through a fixedly-arranged line pipe, the stock solutions are concentrated on the inner side of the configuration carrying cylinder, and uniform stirring and proportioning are achieved through cooperation of a transmission fulcrum shaft and stirring blades.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the technical field of comparative production of feed additives, and more specifically, it relates to a novel aquatic microsphere feed additive production device. Background Technology

[0002] With the rapid development of my country's animal husbandry, feed additives play an important role in improving animal production performance, feed utilization, and disease prevention. There are many types of feed additives, including nutritional additives, non-nutritive additives, and drug additives. The rational formulation of feed additives is of great significance for ensuring animal health and improving breeding efficiency.

[0003] Based on the above, there are currently many problems in the production of feed additives, including: low formulation accuracy (due to the limitations of manual operation, the formulation of feed additives often has errors, affecting the quality and effectiveness of the feed); low production efficiency (manual formulation is cumbersome, time-consuming, and has low production efficiency); high labor intensity (operators need to stand for long periods of time, resulting in high labor intensity and fatigue); safety hazards (operators directly contact chemical additives during production, posing certain safety hazards); and low automation (existing production equipment has a low degree of automation, making it difficult to meet the needs of large-scale, high-quality feed production). Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a novel aquatic microsphere feed additive production device. This device solves several issues inherent in feed additive production, including: low proportioning accuracy (due to limitations of manual operation, feed additive proportioning often results in errors, affecting feed quality and effectiveness); low production efficiency (manual proportioning is cumbersome, time-consuming, and inefficient); high labor intensity (operators must stand for extended periods, leading to fatigue); safety hazards (operators directly contact chemical additives during production, posing safety risks); and low automation (existing production devices have low automation levels, failing to meet the demands of large-scale, high-quality feed production).

[0005] This utility model discloses a novel aquatic microsphere feed additive production device, which is achieved through the following specific technical means:

[0006] A novel aquatic microsphere feed additive production device comprises the following core components: a support base, a carrier cylinder, an assembly support frame, and an adjustable carrier frame.

[0007] In the load-bearing base, load-bearing columns are firmly installed at both ends of the top. Assembly support rings and rotating brackets are fixed on the sides of the load-bearing columns respectively. One end of the rotating bracket is equipped with a positioning column, which has a transmission groove at one end and mounting columns on both sides. The other end of the load-bearing column is also equipped with a support side column, a positioning frame and a positioning groove to enhance the stability of the equipment connection pipeline.

[0008] The carrier cylinder is fixed inside the assembly support ring, and a bottom mounting groove is provided at the bottom, in which a flow guide carrier is installed; the bottom of the flow guide carrier is equipped with a stirring motor.

[0009] The assembly support frame is located at the top of the configuration carrier cylinder, with a pull-out groove at the bottom and a mounting support frame fixed at the top. An installation slot is also provided at the top for installing and adjusting the carrier frame.

[0010] The adjustable frame is fixed inside the mounting slot, and the inner side is provided with a rotating slot. At both ends, there are extraction slots and connection slots, and the rotating slot is provided with an adjusting shaft seat.

[0011] In addition, the side of the mounting support is equipped with a positioning support shaft, a transmission gear, a drive motor, and a linkage support shaft, forming a transmission system; the side of the guide carrier is equipped with a discharge side trough, a recovery side pipe, a transmission support shaft, and stirring blades.

[0012] The bottom of the assembly support frame is also equipped with an installation base frame and a pump body extraction unit; the side of the adjustment frame is equipped with an extraction connector and a closed support; the side of the adjustment shaft seat is also equipped with an adjustment gear ring and a mating slot.

[0013] This utility model provides a novel aquatic microsphere feed additive production device, which has the following beneficial effects:

[0014] This utility model, by setting up a bearing base, configuring a carrier cylinder, assembling a support frame and adjusting the carrier frame, achieves a fixed connection of multiple sets of conveyor pipes by adjusting the cooperation between the carrier frame and the extraction connector.

[0015] Guide support design: The combination of the positioning support frame and the positioning support groove provides precise guide support for the conveyor pipe;

[0016] Drive and transmission system: The drive motor, through the cooperation of gears and gear chains, enables the linkage shaft and the positioning shaft to work together, driving the transmission gear to rotate;

[0017] Adjusting the rotation of the shaft seat: The engagement of the transmission gear and the adjusting gear ring drives the overall rotation of the adjusting shaft seat, enabling the alternating docking of the slotted joint and multiple sets of extraction slots and connection slots;

[0018] Additive stock solution extraction and mixing: When the docking slot and extraction slot, and the connecting slot are connected, the extraction pump body accurately extracts different additive stock solutions through the fixedly set conduit; the stock solution is concentrated inside the configuration carrier cylinder, and uniform mixing is achieved through the cooperation of the drive shaft and the stirring blades.

[0019] Rapid preparation and recovery: The additive stock solution can be mixed and prepared by rapidly extracting different doses. At the same time, the discharge side tank and the recovery side pipe work together to efficiently recover the prepared additives.

[0020] This enables the large-scale, high-quality, and rapid formulation and production of additives, improving production efficiency and product quality. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall component assembly of the additive production device of this utility model;

[0022] Figure 2 This is a schematic diagram of a partial cross-sectional view of the overall component assembly of the additive production device of this utility model.

[0023] Figure 3 This is a structural diagram showing the assembly and disassembly of the overall components of the bearing base of this utility model;

[0024] Figure 4 This is a structural diagram illustrating the assembly and disassembly of the overall component of the configuration carrier cylinder according to this utility model;

[0025] Figure 5 This is a structural diagram illustrating the assembly and disassembly of the assembly support frame components of this utility model.

[0026] Figure 6 This is a structural diagram illustrating the assembly and disassembly of the overall components of the adjustable frame of this utility model.

[0027] Figure label:

[0028] 1. Support base;

[0029] 101. Load-bearing column; 102. Assembly support ring; 103. Rotating bracket; 1031. Support side column; 1032. Positioning support frame; 1033. Positioning support groove; 104. Positioning carrier column; 105. Transmission carrier groove; 106. Mounting column; 1061. Positioning support shaft; 1062. Transmission gear; 1063. Drive motor; 1064. Linkage support shaft;

[0030] 2. Configure the carrier cylinder;

[0031] 201. Installation base tank; 202. Flow guide carrier; 203. Agitator motor; 204. Discharge side tank; 205. Recovery side pipe; 206. Drive shaft; 207. Agitator blades;

[0032] 3. Assemble the support frame;

[0033] 301. Remove the receiving groove; 302. Install the bottom frame; 303. Remove the pump body; 304. Install the support frame; 305. Install the slot;

[0034] 4. Adjust the frame;

[0035] 401. Rotate the carrier groove; 402. Pull out the groove; 403. Connect the groove; 404. Adjust the shaft seat; 405. Adjust the gear ring; 406. Connect the groove; 407. Pull out the joint; 408. Close the support. Detailed Implementation

[0036] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0037] Example 1: As Figures 1 to 6 As shown, the present invention provides a novel aquatic microsphere feed additive production device, which includes a support base 1, a carrier cylinder 2, an assembly support frame 3, and an adjustable carrier frame 4.

[0038] The top two ends of the support base 1 are fixedly installed with load-bearing columns 101. Assembly rings 102 are fixedly installed on the sides of the load-bearing columns 101. A rotating bracket 103 is fixedly installed on the side of the load-bearing columns 101. A positioning column 104 is fixedly installed at one end of the rotating bracket 103. A transmission groove 105 is formed through one end of the positioning column 104. Installation columns 106 are fixedly installed on both sides of the positioning column 104. A configuration cylinder 2 is fixedly installed inside the assembly ring 102. An installation bottom groove 201 is formed through the bottom of the configuration cylinder 2. A flow guide seat 20 is fixedly installed inside the installation bottom groove 201. 2. A stirring motor 203 is fixedly installed at the bottom of the flow guide carrier 202; an assembly support frame 3 is set at the top of the configuration carrier cylinder 2, and a pull-out groove 301 is opened through the bottom of the assembly support frame 3. An installation support frame 304 is fixedly installed at the top of the assembly support frame 3, and an installation slot 305 is opened at the top of the installation support frame 304; an adjustment carrier frame 4 is fixedly installed inside the installation slot 305, and a rotating carrier groove 401 is opened inside the adjustment carrier frame 4. A pull-out slot 402 and a connecting slot 403 are opened through the two ends of the inner side of the rotating carrier groove 401, and an adjustment shaft seat 404 is rotatably installed inside the rotating carrier groove 401.

[0039] Example 2: Figures 2 to 6 As shown, the bottom of the assembly support frame 3 is also provided with an installation base frame 302 and a pump body 303; the installation base frame 302 is fixedly installed at the bottom of the assembly support frame 3, and the pump body 303 is fixedly installed inside the installation base frame 302.

[0040] The side of the adjusting frame 4 is also provided with an extraction connector 407 and a closed support 408; the extraction connector 407 is fixedly installed on the side of the adjusting frame 4, and the closed support 408 is installed on the inside of the adjusting frame 4 through a threaded structure. The bottom frame 302 can be used to fix and support the extraction pump body 303 to extract and transport the additive stock solution to be prepared.

[0041] The side of the adjusting shaft seat 404 is also provided with an adjusting gear ring 405 and a mating slot 406; the adjusting gear ring 405 is fixedly sleeved on the outside of the adjusting shaft seat 404, and the mating slot 406 is opened through the side of the adjusting shaft seat 404. The adjusting gear ring 405 can drive the adjusting shaft seat 404 to rotate and adjust the entire support of the mating slot 406.

[0042] Example 3: Figures 2 to 5 As shown, one end of the rotating bracket 103 is also provided with a supporting side column 1031, a positioning support frame 1032, and a positioning support groove 1033; the supporting side column 1031 is fixedly installed at one end of the rotating bracket 103, the positioning support frame 1032 is fixedly installed at one end of the supporting side column 1031, and the positioning support groove 1033 is opened through the side of the positioning support frame 1032. The positioning support frame 1032 and the positioning support groove 1033 can be used to fix and connect the pipeline for conveying the additive raw liquid.

[0043] The mounting support 106 also includes a positioning support shaft 1061, a transmission gear 1062, a drive motor 1063, and a linkage support shaft 1064 on its side. The positioning support shaft 1061 is rotatably mounted on the inner side of one end of the mounting support 106. The transmission gear 1062 is fixedly mounted on one end of the positioning support shaft 1061. The drive motor 1063 is fixedly mounted on the side of the other end of the mounting support 106. The linkage support shaft 1064 is rotatably mounted on the inner side of the other end of the mounting support 106. Gears and gear chains are sleeved on the outer sides of the positioning support shaft 1061 and the linkage support shaft 1064. The drive motor 1063, in cooperation with the transmission gear 1062, can drive the adjusting gear ring 405.

[0044] The side of the flow guide carrier 202 is also provided with a discharge side channel 204, a recovery side pipe 205, a transmission support shaft 206 and a stirring blade 207; the discharge side channel 204 is opened on the side of the flow guide carrier 202, the recovery side pipe 205 is fixedly installed inside the discharge side channel 204, the transmission support shaft 206 is rotatably installed inside the flow guide carrier 202, and the stirring blade 207 is fixedly installed on the side of the transmission support shaft 206. The transmission support shaft 206 can support the stirring blade 207 to mix and stir the extracted additive stock solution.

[0045] The specific usage and function of this embodiment are as follows: In use, the mounting support frame 3 supports and adjusts the frame 4, which is fixedly installed on the top of the configuration cylinder 2. The adjustment frame 4, together with the extraction connector 407, fixes the conduit for conveying. At the same time, the positioning support frame 1032, together with the positioning support groove 1033, guides and supports the conduit for conveying. The drive motor 1063, through the transmission gear 1062 and the adjusting gear ring 405, drives the adjusting shaft seat 404 to rotate as a whole, so that the docking slot 406 alternately docks with multiple sets of extraction slots 402 and connecting slots 403. The extraction pump body 303 extracts different additive raw materials through the corresponding connected conduit. The different additive raw materials are concentrated inside the configuration cylinder 2 and uniformly stirred by the transmission support shaft 206 and the stirring blade 207. The configured additives are recovered through the discharge side groove 204 and the recovery side pipe 205.

Claims

1. A novel aquatic microsphere feed additive production device, mainly comprising the following components: a support base (1), a carrier cylinder (2), an assembly support frame (3), and an adjustable carrier frame (4); The bearing base (1) has load-bearing columns (101) fixedly installed at both ends of its top. Assembly rings (102) are fixedly installed on the sides of the load-bearing columns (101). A rotating bracket (103) is fixedly installed on the side of the load-bearing columns (101). A positioning column (104) is fixedly installed at one end of the rotating bracket (103). A transmission groove (105) is opened through one end of the positioning column (104). Mounting columns (106) are fixedly installed on both sides of the positioning column (104). The characteristic of this structure is that… The configuration carrier (2) is fixedly installed inside the assembly support ring (102). A mounting groove (201) is provided through the bottom of the configuration carrier (2). A flow guide seat (202) is fixedly installed inside the mounting groove (201), and a stirring motor (203) is fixedly installed at the bottom of the flow guide seat (202). The assembly support frame (3) is located at the top of the configuration carrier (2). A extraction slot (301) is provided through the bottom of the assembly support frame (3). A mounting frame (304) is fixedly installed on the top, and a mounting slot (305) is opened on the top of the mounting frame (304); the adjusting frame (4) is fixedly installed inside the mounting slot (305), and a rotating slot (401) is opened inside the adjusting frame (4). A pull-out slot (402) and a connecting slot (403) are opened through both ends of the rotating slot (401), and an adjusting shaft seat (404) is rotatably installed inside the rotating slot (401).

2. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The rotating bracket (103) is also provided with a supporting side column (1031), a positioning support frame (1032) and a positioning support groove (1033) at one end; the supporting side column (1031) is fixedly installed at one end of the rotating bracket (103), the positioning support frame (1032) is fixedly installed at one end of the supporting side column (1031), and the positioning support groove (1033) is opened through the side of the positioning support frame (1032).

3. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The mounting post (106) also includes a positioning support shaft (1061), a transmission gear (1062), a drive motor (1063), and a linkage support shaft (1064) on its side. The positioning support shaft (1061) is rotatably mounted on the inner side of one end of the mounting post (106), the transmission gear (1062) is fixedly mounted on one end of the positioning support shaft (1061), the drive motor (1063) is fixedly mounted on the side of the other end of the mounting post (106), and the linkage support shaft (1064) is rotatably mounted on the inner side of the other end of the mounting post (106). Gears and gear chains are sleeved on the outer sides of the positioning support shaft (1061) and the linkage support shaft (1064).

4. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The side of the flow guide carrier (202) is also provided with a discharge side groove (204), a recovery side pipe (205), a transmission support shaft (206) and a stirring blade (207); the discharge side groove (204) is opened on the side of the flow guide carrier (202), the recovery side pipe (205) is fixedly set inside the discharge side groove (204), the transmission support shaft (206) is rotatably set inside the flow guide carrier (202), and the stirring blade (207) is fixedly set on the side of the transmission support shaft (206).

5. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The bottom of the assembly support frame (3) is also provided with an installation base frame (302) and a pump body (303); the installation base frame (302) is fixedly installed at the bottom of the assembly support frame (3), and the pump body (303) is fixedly installed inside the installation base frame (302).

6. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The side of the adjustable frame (4) is also provided with a pull-out connector (407) and a closed support (408); the pull-out connector (407) is fixedly installed on the side of the adjustable frame (4), and the closed support (408) is installed on the inside of the adjustable frame (4) through a threaded structure.

7. The novel aquatic microsphere feed additive production device according to claim 1, characterized in that, The side of the adjusting shaft seat (404) is also provided with an adjusting gear ring (405) and a mating slot (406); the adjusting gear ring (405) is fixedly sleeved on the outside of the adjusting shaft seat (404), and the mating slot (406) is opened through the side of the adjusting shaft seat (404).