A feeding pump structure for chicken frame enzymatic pulp feeding
By designing conveying and unblocking components for the chicken carcass enzymatic hydrolysis slurry feeding pump, the problems of clogging and inconvenient cleaning of the chicken carcass enzymatic hydrolysis slurry feeding pump were solved, achieving efficient conveying and convenient cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG BAIWEI RUNRAO BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-07-23
- Publication Date
- 2026-07-21
Smart Images

Figure CN224529553U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of feeding pump structure, and in particular to a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry. Background Technology
[0002] Chicken carcass enzymatic hydrolysate is a special fluid with high viscosity, high solid content, possibly containing oils, and possessing certain corrosiveness or biological activity. For the transportation of this material, a feed pump is used to transport the fluid.
[0003] When feeding chicken carcass enzymatic hydrolysate into the pump, the presence of bone fragments, semi-solid fats, and highly viscous proteins in the hydrolysate can cause blockages. These substances adhere to the inner wall of the discharge port, leading to clogging after a period of operation. This blockage prevents further delivery of the hydrolysate, requiring operators to spend time clearing the blockage and reducing efficiency. Prolonged blockage can also cause pump malfunctions, resulting in economic losses. Furthermore, the large amount of semi-solid fats and highly viscous proteins adhering to the inner wall of the pump after feeding necessitates cleaning the pump body by removing the lid. Traditional chicken carcass enzymatic hydrolysate pumps are cumbersome to install and remove the lid, further hindering cleaning efficiency. Utility Model Content
[0004] The purpose of this invention is to solve the problems in the prior art where excessive debris can cause blockage at the outlet during feeding and make it troublesome to install and remove the bucket lid during cleaning. Therefore, this invention proposes a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry includes a conveying tank and a lid. The lid is installed at the end of the conveying tank. Mounting brackets are symmetrically arranged on both side walls of the conveying tank. A first drive motor is provided at the end of the lid. A conveying assembly is provided at the output end of the first drive motor. A conveying pipe is provided at the end of the lid. A fixing plate is provided on the side wall of the mounting bracket. A second drive motor is provided at the end of the fixing plate. A transmission assembly is provided at the output end of the second drive motor. A unclogging rod is provided inside the conveying tank and is connected to the transmission assembly. Fixing blocks are symmetrically arranged on the side wall of the conveying tank. A limiting rod for limiting the position of the lid is provided on the fixing block. A resetting assembly for driving the limiting rod to reset is provided inside the fixing block.
[0006] Preferably, the conveying assembly includes a rotating shaft and helical blades, the rotating shaft being coaxially fixed at the output end of the first drive motor, and the helical blades being coaxially fixed at the outer side wall of the rotating shaft.
[0007] Preferably, the transmission assembly includes a first gear and a fixed ring. The first gear is coaxially fixed at the output end of the second drive motor, and the fixed ring is coaxially fixed at the bottom of the conveying tank. The bottom of the fixed ring is provided with an annular groove.
[0008] Preferably, the transmission assembly further includes an annular slider and a second gear. The annular slider is slidably disposed coaxially in an annular groove, and the second gear is fixedly disposed coaxially at the bottom of the annular slider. The inner sidewall of the second gear is fixedly connected to the end of the unblocking rod, and the second gear and the first gear mesh with each other.
[0009] Preferably, the reset assembly includes a sliding plate and a spring. The fixing block has a groove. The sliding plate is slidably disposed in the groove through a sliding block assembly. The sliding plate is fixedly connected to the limiting rod. One end of the spring is disposed on the inner sidewall of the groove, and the other end of the spring is connected to the end of the sliding plate.
[0010] Preferably, the bucket lid has a limiting hole adapted to the limiting rod, and the limiting rod extends into the limiting hole, and the unblocking rod has an arc-shaped plate structure.
[0011] Compared with the prior art, the present invention has the following advantages: 1. This utility model, by setting a transmission component, enables the first gear to drive the unblocking rod to rotate through the second gear. The side wall of the unblocking rod rotates along the inner side wall of the discharge port. The side wall of the unblocking rod scrapes the highly viscous proteins and other impurities adhering to the inner side wall of the discharge port, reducing the situation where the discharge port is blocked due to excessive highly viscous substances adhering to the inner side wall of the discharge port, making it impossible to feed the chicken carcass enzymatic hydrolysate.
[0012] 2. This utility model improves the efficiency of conveying chicken carcass enzymatic hydrolysate by setting up a conveying component, which drives the rotating shaft to rotate the spiral blades. The spiral blades remove bone debris contained in the chicken carcass enzymatic hydrolysate. By setting up a reset component, the limiting rod can limit the barrel lid, reducing the time for operators to install and remove the barrel lid. Attached Figure Description
[0013] Figure 1 This is an isometric view of a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to the present invention; Figure 2 A partial schematic diagram (A) shows the structure of a feeding pump for feeding chicken carcass enzymatic hydrolysis slurry according to this utility model. Figure 3The following are two isometric views of the front and rear of a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to this utility model. Figure 4 This is a partially sectional side view of a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to the present invention; Figure 5 This is a partial schematic diagram (B) of a feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to the present invention.
[0014] In the diagram: 1. Conveying tank; 2. Mounting bracket; 3. First drive motor; 4. Tank lid; 5. Conveying pipe; 6. Fixing block; 7. Fixing plate; 8. Second drive motor; 9. First gear; 10. Fixing ring; 11. Second gear; 12. Annular slider; 13. Spiral blade; 14. Rotating shaft; 15. Unblocking rod; 16. Sliding plate; 17. Spring; 18. Limiting rod. Detailed Implementation
[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0016] Reference Figures 1-5 A feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry includes a conveying tank 1 and a barrel cover 4. The barrel cover 4 is installed at the end of the conveying tank 1. The mounting bracket 2 is symmetrically fixed on both sides of the conveying tank 1 by bolt assembly. The first drive motor 3 is fixed on the end of the barrel cover 4 by bolt assembly. A shock-absorbing pad is provided between the first drive motor 3 and the barrel cover 4. This configuration provides driving force to the spiral blade 13.
[0017] The output end of the first drive motor 3 is provided with a conveying assembly, which includes a rotating shaft 14 and a spiral blade 13. The rotating shaft 14 is coaxially fixed at the output end of the first drive motor 3 through a clamping sleeve, and the spiral blade 13 is coaxially fixed at the outer wall of the rotating shaft 14 through a clamping sleeve. This arrangement improves the working efficiency of conveying chicken carcass enzymatic hydrolysate through the spiral blade 13, cuts the impurities generated during the conveying of chicken carcass enzymatic hydrolysate, and reduces the blockage of the conveying tank 1.
[0018] The conveying pipe 5 is fixed to the end of the bucket cover 4 by bolt assembly, the fixing plate 7 is fixed to the side wall of the mounting frame 2 by bolt assembly, the second drive motor 8 is fixed to the end of the fixing plate 7 by bolt assembly, and a shock-absorbing pad is provided between the second drive motor 8 and the fixing plate 7. This configuration provides driving force for the unblocking rod 15.
[0019] The output end of the second drive motor 8 is provided with a transmission assembly, which includes a first gear 9 and a fixed ring 10. The first gear 9 is coaxially fixed at the output end of the second drive motor 8 by a key. The fixed ring 10 is coaxially fixed at the bottom of the conveying tank 1 by a bolt assembly, and an annular groove is provided at the bottom of the fixed ring 10 to provide support for the unblocking rod 15.
[0020] The conveying tank 1 is equipped with a dredging rod 15, which has an arc-shaped plate structure and is connected to a transmission assembly. The transmission assembly also includes an annular slider 12 and a second gear 11. The annular slider 12 is coaxially slidably disposed in an annular groove. The second gear 11 is coaxially fixed to the bottom of the annular slider 12 by a bolt assembly. The second gear 11 slides in the annular groove through the annular slider 12, and the inner sidewall of the second gear 11 is fixedly connected to the end of the dredging rod 15 by a bolt assembly. The second gear 11 and the first gear 9 mesh with each other, thus providing power transmission for the dredging rod 15.
[0021] It should be noted that the first gear 9 drives the second gear 11 to rotate, and the second gear 11 rotates in the annular groove through the annular slider 12. The second gear 11 drives the unblocking rod 15 to rotate along the inner wall of the conveying tank 1. This setting improves the working efficiency of conveying chicken carcass enzymatic hydrolysate and greatly reduces the situation of chicken carcass enzymatic hydrolysate clogging the conveying tank 1.
[0022] The fixing block 6 is symmetrically fixed to the side wall of the conveying tank 1 by bolt assembly. The fixing block 6 is provided with a limiting rod 18 for limiting the position of the tank cover 4. The fixing block 6 is provided with a reset assembly for driving the limiting rod 18 to reset. The reset assembly includes a sliding plate 16 and a spring 17. The fixing block 6 is provided with a groove. The sliding plate 16 is slidably disposed in the groove by a sliding slider assembly. The sliding plate 16 is provided with a movable hole. The movable hole of the sliding plate 16 is coaxially fixedly connected to the outer wall of the limiting rod 18 by a clamping sleeve. One end of the spring 17 is fixedly disposed in the inner side wall of the groove by a hook. The other end of the spring 17 is fixedly connected to the end of the sliding plate 16 by a hook. This configuration provides driving force for the limiting rod 18.
[0023] It should be noted that the bucket lid 4 is provided with a limiting hole that matches the limiting rod 18, and the end of the limiting rod 18 extends into the limiting hole. By the compression of the sliding plate 16 by the spring 17, the sliding plate 16 drives the limiting rod 18 to be in the limiting hole, thereby improving the limiting effect of the limiting rod 18 on the bucket lid 4.
[0024] The aforementioned bolt assembly and slide block assembly are both existing technologies. The bolt assembly includes a bolt and a threaded hole for threading two components together. The slide block assembly includes a slider and a slide groove, with the slider sliding within the slide groove.
[0025] The functional principle of this utility model can be explained through the following operation methods: Chicken carcass enzymatic hydrolysate is transported to conveying tank 1 through conveying pipe 5. The first drive motor 3 is driven to rotate, which in turn drives the rotating shaft 14 to rotate. The rotating shaft 14 drives the spiral blades 13 to rotate, thus conveying and chopping the chicken carcass enzymatic hydrolysate. The second drive motor 8 is driven to rotate, which in turn drives the first gear 9 to rotate. The first gear 9 and the second gear 11 mesh with each other, and the first gear 9 drives the second gear 11 to rotate. The second gear 11 drives the unblocking rod 15 to sweep along the inner wall of the conveying tank 1, thereby reducing the possibility of the chicken carcass enzymatic hydrolysate clogging in the conveying tank 1. When the inner wall of the conveying tank 1 needs to be cleaned, the sliding plate 16 is moved by moving the limiting rod 18, so that the sliding plate 16 presses against the end of the spring 17. The limiting rod 18 releases its limiting effect on the lid 4. After the operator finishes cleaning, the lid 4 is placed at the end of the conveying tank 1. The limiting rod 18 is moved, and the limiting rod 18 drives the sliding plate 16 to press against the spring 17. By releasing the limiting rod 18, the spring 17 drives the sliding plate 16 to move, and the sliding plate 16 drives the limiting rod 18 to extend into the limiting hole. The limiting rod 18 then limits the lid 4.
[0026] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry, comprising a conveying tank and a lid, the lid being installed at the end of the conveying tank, characterized in that, The conveying tank has symmetrical mounting brackets on both sides. A first drive motor is provided at the end of the tank lid. A conveying assembly is provided at the output end of the first drive motor. A conveying pipe is provided at the end of the tank lid. A fixing plate is provided on the side wall of the mounting bracket. A second drive motor is provided at the end of the fixing plate. A transmission assembly is provided at the output end of the second drive motor. A drain rod is provided inside the conveying tank and is connected to the transmission assembly. Fixing blocks are symmetrically provided on the side wall of the conveying tank. A limiting rod for limiting the position of the tank lid is provided on the fixing block. A reset assembly for driving the limiting rod to reset is provided inside the fixing block.
2. The feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to claim 1, characterized in that, The conveying assembly includes a rotating shaft and a helical blade. The rotating shaft is coaxially fixed at the output end of the first drive motor, and the helical blade is coaxially fixed at the outer wall of the rotating shaft.
3. The feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to claim 2, characterized in that, The transmission assembly includes a first gear and a fixed ring. The first gear is coaxially fixed at the output end of the second drive motor, and the fixed ring is coaxially fixed at the bottom of the conveying tank. An annular groove is provided at the bottom of the fixed ring.
4. The feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to claim 3, characterized in that, The transmission assembly also includes an annular slider and a second gear. The annular slider is slidably disposed coaxially in the annular groove, and the second gear is fixedly disposed coaxially at the bottom of the annular slider. The inner sidewall of the second gear is fixedly connected to the end of the unblocking rod, and the second gear and the first gear mesh with each other.
5. The feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to claim 4, characterized in that, The reset assembly includes a sliding plate and a spring. A groove is provided on the fixed block. The sliding plate is slidably disposed in the groove through a sliding block assembly. The sliding plate is fixedly connected to the limiting rod. One end of the spring is disposed on the inner side wall of the groove, and the other end of the spring is connected to the end of the sliding plate.
6. The feeding pump structure for feeding chicken carcass enzymatic hydrolysis slurry according to claim 5, characterized in that, The bucket lid has a limiting hole that matches the limiting rod, and the limiting rod extends into the limiting hole. The unblocking rod has an arc-shaped plate structure.