Enzyme bag dosing equipment and intelligent feeding dosing system
By using enzyme bag dosing equipment and intelligent feeding dosing system, the problems of cumbersome operation and non-closed-loop dosing in traditional pig farming have been solved, achieving precise dosing, reducing labor intensity, and improving pork quality.
Patent Information
- Application Number
- CN202520269348.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Traditional pig farming methods for treating diseases are cumbersome, labor-intensive, and lack a closed-loop system for medication administration, resulting in a high rate of abscesses and wasted medication due to the passive administration of drugs to healthy pigs.
The enzyme bag dosing equipment uses a jet injector and water inlet pipe design to achieve precise mixing and dosing of medicine and water. Combined with an intelligent feeder and feed trough, it enables precise dosing in a single pen.
It reduces labor intensity, allows for precise medication administration down to the pen, reduces abscess rates, minimizes medication waste in healthy pigs, and improves pork quality.
Smart Images

Figure CN223929176U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of livestock breeding equipment, and in particular relates to an enzyme bag dosing device and an intelligent feeding dosing system. Background Technology
[0002] Traditional pig farming typically uses injections to treat diseases in pig herds, but this method is cumbersome, requires strict on-site management, is labor-intensive, and results in a non-closed-loop medication process and a high rate of abscesses. Alternatively, large-scale administration of medication through drinking water or feed can be used, which cannot be precisely targeted to individual pens, leading to passive administration of medication to healthy pigs and resulting in wasted medication. Utility Model Content
[0003] In order to overcome the above-mentioned shortcomings of the prior art, this utility model provides an enzyme bag dosing device and an intelligent feeding dosing system, which solves the above problems.
[0004] To achieve the above objectives, one aspect of this utility model discloses an enzyme bag dosing device, comprising:
[0005] A liquid storage bag, wherein the liquid storage bag is connected to the suction port of the jet injector via a drug extraction tube;
[0006] An ejector, wherein the inlet and mixing port of the ejector are respectively connected to an inlet pipe and an outlet pipe;
[0007] The water inlet pipe is used for water supply.
[0008] When water flows into the ejector from the inlet pipe, a pressure difference is generated inside the ejector, drawing the liquid medicine from the storage bag into the ejector. Then, the liquid medicine and water are mixed at the mixing port and discharged through the outlet pipe.
[0009] Compared with existing technologies, this application offers the following advantages: During use, the storage bag is suspended above the pen where medication is required. It is connected to the suction inlet of an injector via a suction tube. Simultaneously, the injector's inlet and mixing port are connected to the inlet and outlet pipes, respectively. When the inlet pipe is opened, water enters the injector, creating negative pressure that draws the medication from the storage bag into the injector. The medication and water mix within the injector and are then discharged to the pen through the outlet pipe. Therefore, this application simplifies the medication process, reduces labor intensity, and allows for precise pen-level medication application, minimizing problems such as abscesses caused by injection and reducing medication waste from passive medication administration to healthy pigs.
[0010] Furthermore, the storage bag is an enzyme bag.
[0011] Furthermore, the enzyme bag is provided with graduations.
[0012] Furthermore, both the inlet pipe and the outlet pipe are PE pipes, and the medicine extraction pipe is a flexible hose.
[0013] Furthermore, the highest liquid level inside the enzyme bag is lower than the height of the water outlet of the water pipe.
[0014] Furthermore, the highest liquid level inside the enzyme bag is less than 10cm below the height of the water outlet of the water pipe.
[0015] Another aspect of this application discloses an intelligent feeding and medication system, including the aforementioned enzyme bag medication device, intelligent feeder, and feed trough, wherein the intelligent feeder and the enzyme bag medication device are both disposed above the feed trough.
[0016] Furthermore, the intelligent feeder includes a feeder and a water dispenser, with the water dispenser mounted on the feeder.
[0017] Furthermore, the feeder is connected to a feed pipe, which is located above the feed trough.
[0018] Furthermore, the drain device includes a solenoid valve connected to the inlet pipe, and the outlet pipe connected to the drinking rod, which is installed on the discharge pipe and located above the feed trough. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a block diagram of an enzyme bag dosing device according to an embodiment of the present utility model;
[0021] Figure 2 This is a schematic diagram of the structure of an enzyme bag dosing device and an intelligent feeding dosing system according to an embodiment of the present invention.
[0022] The attached figures are labeled as follows:
[0023] 1. Liquid storage bag; 2. Medicine extraction tube; 3. Jet ejector; 4. Water inlet pipe; 5. Water outlet pipe; 6. Intelligent feeder; 7. Feed trough; 8. Feeder; 9. Water dispenser; 10. Feeding pipe; 11. Drinking rod. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] like Figure 1-2 As shown, one aspect of this utility model discloses an enzyme bag dosing device, comprising:
[0026] The liquid storage bag 1 is connected to the suction port of the jet injector 3 through the drug extraction tube 2;
[0027] Ejector 3, the inlet and mixing port of ejector 3 are respectively connected to inlet pipe 4 and outlet pipe 5;
[0028] Water inlet pipe 4 is used for water supply;
[0029] When the water in the inlet pipe 4 enters the ejector 3, a pressure difference is generated in the ejector 3, which draws the medicine in the storage bag 1 into the ejector 3. Then, the medicine and water are mixed at the mixing port and sent to the outlet pipe 5 for discharge.
[0030] Compared with existing technologies, this application has the following advantages: During use, the storage bag 1 is suspended above the pen where medication needs to be administered. It is connected to the suction port of the ejector 3 via a suction pipe 2. Simultaneously, the inlet and mixing port of the ejector 3 are connected to an inlet pipe 4 and an outlet pipe 5, respectively. When the inlet pipe 4 is opened, water enters the ejector 3, creating negative pressure that draws the medication from the storage bag 1 into the ejector 3. The medication and water mix within the ejector 3 and are then discharged to the pen through the outlet pipe 5. Therefore, this application simplifies the medication process, reduces labor intensity, and allows for precise medication administration to the pen, reducing problems such as abscesses caused by injection and minimizing medication waste caused by passive medication administration to healthy pigs.
[0031] Following the above embodiment, more specifically, the liquid storage bag 1 is an enzyme bag, which is used to store liquid. Of course, other liquid storage components can also be used to replace the enzyme bag.
[0032] Following the above embodiments, a more preferable feature is that the enzyme bag is provided with a scale. By setting the scale, it is easy to observe the amount of medicine in the enzyme bag, so as to accurately control the amount of medicine added.
[0033] Following the above embodiments, more specifically, due to the application scenario, both the inlet pipe 4 and the outlet pipe 5 are PE pipes, while the medicine extraction pipe 2 is a flexible hose.
[0034] Following the above embodiment, more specifically, the highest liquid level inside the enzyme bag is lower than the height of the water outlet of the water outlet pipe 5, so as to avoid the siphon phenomenon between the enzyme bag and the ejector 3 and prevent the medicine from flowing from the enzyme bag into the ejector 3.
[0035] Following the above embodiment, more specifically, the highest liquid level inside the enzyme bag is 10cm lower than the height of the water outlet of the water outlet pipe 5. This design clearly defines an installation height for the enzyme bag, which can meet the on-site installation requirements and avoid siphon problems.
[0036] Another aspect of this application discloses an intelligent feeding and medication administration system, such as Figure 2 As shown, the device includes the aforementioned enzyme bag dosing equipment, intelligent feeder 6, and feed trough 7. Both the intelligent feeder 6 and the enzyme bag dosing equipment are positioned above the feed trough 7. The intelligent feeder 6 directly adds feed into the feed trough 7, while water is added to the feed trough 7 via the enzyme bag dosing equipment. The intelligent feeder 6 is a commonly used device in this field, and its specific principle will not be elaborated further.
[0037] Following the above embodiments, more specifically, the intelligent feeder 6 includes a feeder 8 and a water dispenser 9, with the water dispenser 9 installed on the feeder 8.
[0038] Following the above embodiment, more specifically, the feeder 8 is connected to the feed pipe 10, which is located above the feed trough 7. When the feeder 8 discharges feed, the feed flows into the feed trough 7 through the feed pipe 10.
[0039] Following the above embodiment, more specifically, the drainer 9 includes a solenoid valve connected to the inlet pipe 4 and the outlet pipe 5 connected to the drinking rod 11. The drinking rod 11 is installed on the discharge pipe 8 and located above the trough 7. The solenoid valve controls the opening and closing of the water flow. When water is needed, the solenoid valve opens, and water flows through the inlet pipe 4 into the ejector 3, creating a negative pressure within the ejector 3. This negative pressure draws the liquid medicine from the storage bag 1 into the ejector 3. After mixing in the ejector 3, the water and liquid medicine are sent to the drinking rod 11 through the outlet pipe 5. The mixture of medicine and water in the drinking rod 11 flows to the trough 7 under gravity.
[0040] Therefore, this application has the following effects: 1. It reduces the rate of abscesses and other problems by replacing injections with precise single-pen dosing, thereby improving pork quality; 2. It reduces the number of injections in the pig herd, decreases the frequency of personnel entering the pen, reduces the labor intensity of personnel, and reduces the risk of disease transmission; 3. Compared with the existing large-scale dosing, which does not distinguish between sick and healthy pigs in a single unit and adds medication through a centralized water system, this application is precise to the pen, reducing the waste of medication caused by passive dosing to healthy pigs.
[0041] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not 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. An enzyme bag dosing device, characterized in that, include: A liquid storage bag, wherein the liquid storage bag is connected to the suction port of the jet injector via a drug extraction tube; An ejector, wherein the inlet and mixing port of the ejector are respectively connected to an inlet pipe and an outlet pipe; The water inlet pipe is used for water supply. When water flows into the ejector from the inlet pipe, a pressure difference is generated inside the ejector, drawing the liquid medicine from the storage bag into the ejector. Then, the liquid medicine and water are mixed at the mixing port and discharged through the outlet pipe.
2. The enzyme bag dosing device according to claim 1, characterized in that, The storage bag is an enzyme bag.
3. The enzyme bag dosing device according to claim 2, characterized in that, The enzyme bag is marked with graduations.
4. The enzyme bag dosing device according to claim 3, characterized in that, Both the inlet pipe and the outlet pipe are PE pipes, and the medicine extraction pipe is a flexible hose.
5. The enzyme bag dosing device according to claim 3, characterized in that, The highest liquid level inside the enzyme bag is lower than the height of the water outlet of the water pipe.
6. The enzyme bag dosing device according to claim 5, characterized in that, The highest liquid level inside the enzyme bag is less than 10cm below the height of the water outlet of the water pipe.
7. An intelligent feeding and medication administration system, characterized in that, The device includes an enzyme bag dosing device, an intelligent feeder, and a feed trough as described in any one of claims 1-6, wherein the intelligent feeder and the enzyme bag dosing device are both disposed above the feed trough.
8. The intelligent feeding and medication system according to claim 7, characterized in that, The intelligent feeder includes a feeder and a water dispenser, with the water dispenser installed on the feeder.
9. The intelligent feeding and medication system according to claim 8, characterized in that, The feeder is connected to the feed pipe, which is located above the feed trough.
10. The intelligent feeding and medication system according to claim 9, characterized in that, The drain device includes a solenoid valve connected to the inlet pipe and a drinking rod connected to the outlet pipe. The drinking rod is installed on the discharge pipe and located above the feed trough.