Chicken bone extract production device comprising enzymatic hydrolysis and solid-liquid separation functions
By adopting vertical stirring blades, side stirring blades, vibrating screen components, and backflushing nozzles in the chicken bone extract production device, the problem of difficult removal and cleaning of filter cartridges in small spaces has been solved, achieving efficient enzymatic hydrolysis and solid-liquid separation of chicken bone materials and improving the cleaning efficiency of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 马鞍山市食品药品安全检查中心
- Filing Date
- 2025-07-23
- Publication Date
- 2026-06-23
AI Technical Summary
In small spaces, the filter cartridges of traditional chicken bone extract production devices are difficult to remove and clean, making it difficult to pump out the liquid. Furthermore, a large amount of residue remains inside the filter cartridges after filtration, making cleaning time-consuming and labor-intensive.
The chicken bone extract production device incorporates enzymatic hydrolysis and solid-liquid separation functions. It utilizes vertical and side stirring blades for thorough stirring, heating components to raise the temperature, and a vibrating screen and backflushing nozzle design to achieve rapid cleaning. The sorting filter cartridges can be easily disassembled and cleaned through an internal toothed rotary bearing and a drive motor.
It achieves efficient enzymatic hydrolysis and solid-liquid separation of chicken bone materials, reduces the amount of solid particles stuck in the screen, improves equipment cleaning efficiency, and simplifies the removal and cleaning process of the filter cartridge.
Smart Images

Figure CN224394888U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of chicken bone material extraction technology, specifically to a chicken bone extract production device that includes enzymatic hydrolysis and solid-liquid separation functions. Background Technology
[0002] Chicken bones refer to the bone material remaining after removing the surface meat; traditionally, they were simply treated as waste. With technological advancements and research, chicken bones have been further processed using techniques such as enzymatic hydrolysis to obtain chicken bone extracts, representing an extension and expansion of existing products. Typically, the processed "chicken bone broth" is the desired product.
[0003] Chicken bones are rich in organic matter, and chicken bone products have advantages such as easy storage and convenient use. After the chicken bones are crushed, chicken bone paste is formed. When the chicken bone paste is cooked at high temperature, chicken bone residue and chicken bone broth are formed. Some small particles will float on the surface of the chicken bone broth to form scum, while some will sink to the bottom. The floating particles also include some skin-like material that was not completely crushed.
[0004] Traditional processes use static separation to stratify materials, with the solid and liquid phases then discharged through separate pipes. However, in practice, corrosive materials and floating small particles can clog the filter screen in the liquid pipeline, making it difficult to pump out the liquid. Existing filtration methods include cartridge filtration, but a large amount of residue remains inside the cartridge after filtration. Cleaning requires removing the cartridge and cleaning it with external water flushing or equipment, such as the automatic cartridge cleaning device described in patent CN202121446646.4. Industrial cartridges require large volumes for batch filtration, but in confined spaces like machine racks, cartridge removal is extremely difficult, time-consuming, and labor-intensive. Utility Model Content
[0005] This invention provides a chicken bone extract production device that includes enzymatic hydrolysis and solid-liquid separation functions to solve the technical problem that filter cartridges are difficult to remove and clean in small spaces.
[0006] Chicken bone extract production equipment including enzymatic hydrolysis and solid-liquid separation functions:
[0007] It includes a frame, with an enzymatic hydrolysis tank installed at the top and a separation rotating component and a vibrating screen component installed at the bottom.
[0008] The enzymatic hydrolysis tank is equipped with a stirring motor. The output end of the stirring motor faces downward and a stirring rod is coaxially installed inside the enzymatic hydrolysis tank. Stirring blades are provided on the stirring rod.
[0009] A feed pipe assembly is installed on the enzymatic hydrolysis tank; a heating assembly is installed inside the enzymatic hydrolysis tank to heat the contents of the tank.
[0010] The separating rotating component includes a sorting filter cylinder and a support box. The sorting filter cylinder is installed inside the support box. A filter screen is provided on the sorting filter cylinder. One end of the sorting filter cylinder is provided with a feed inlet, and the other end is closed. A rotating component is installed on the end of the sorting filter cylinder away from the feed inlet in the support box. The rotating component is adapted to drive the sorting filter cylinder to rotate.
[0011] The vibrating screen assembly includes a front pipe, a fixed housing, and a rear pipe. A vibrating screen is installed inside the fixed housing, and guide columns are installed above and below the vibrating screen. A vibrating element is installed on the fixed housing, which is adapted to drive the guide columns to move up and down and drive the vibrating screen to move. A backflush port is installed on the rear pipe, and the opening of the backflush port is set towards the vibrating screen.
[0012] In a further technical solution, an internal frame is provided at the top of the enzymatic hydrolysis tank, and a coupling is installed on the internal frame. The coupling is connected to the output end of the stirring motor and the stirring rod respectively.
[0013] Lateral rods are installed on both sides of the stirring rod, and lateral blades are installed on the ends of the lateral rods away from the stirring rod.
[0014] A discharge pipe and discharge valve are installed on the side of the enzymatic hydrolysis tank. The discharge pipe is a bent pipe. A support plate is detachably installed inside the frame. The end of the support plate is connected to the discharge pipe.
[0015] A transition pipe is installed at the bottom of the discharge pipe, and the transition pipe is connected to the inlet of the feed pipe.
[0016] In a further technical solution, a bearing is installed between the transition pipe and the discharge pipe; fixing ears are provided on both sides of the transition pipe, and a positioning hole is provided on the fixing ears;
[0017] Side ear shells are provided on both sides of the feed pipe inlet. The side ear shells are suitable for being snapped onto the outside of the fixed ear and have a second positioning hole. A positioning pin is installed between the first positioning hole and the second positioning hole.
[0018] In a further technical solution, a support column is installed on the top of the support box, an arc-shaped plate is mounted on the support column, and multiple sets of circumferential balls are arranged in the arc-shaped plate; a grooved ring is also provided on the feed pipe, and the grooved ring is adapted to the balls.
[0019] In a further technical solution, the sorting filter cylinder is a telescopic cylinder, which includes a small cylinder and a large cylinder. The small cylinder is adapted to slide inside the large cylinder. A connecting groove is provided inside the large cylinder, and a discharge port is provided in the connecting groove. A feed pipe is installed at the end of the small cylinder.
[0020] The end of the small cylinder installed inside the large cylinder is provided with a thickening ring, and the thickening ring is provided with a boss in the circumferential direction. The boss is adapted to move along the connecting groove.
[0021] In a further technical solution, the support box is also provided with a fixing plate, the fixing plate has an installation groove, an internal tooth slewing bearing is installed in the installation groove, the internal tooth slewing bearing is installed vertically; the outer ring of the internal tooth slewing bearing is fixedly connected to the fixing plate.
[0022] A connecting plate is installed on the inner ring of the internal gear slewing bearing on the side opposite to the sorting filter cylinder. A hinge seat is installed on the side of the connecting plate opposite to the sorting filter cylinder. A connecting lug is installed on the side of the large cylinder away from the support column. A connecting shaft is installed between the connecting lug and the hinge seat.
[0023] A drive motor is installed on the side of the fixed plate opposite to the internal gear slewing bearing. The body of the drive motor is detachably mounted on the fixed plate. The output end of the drive motor extends into the mounting slot and is fitted with a slewing gear. The slewing gear meshes with the inner ring of the internal gear slewing bearing.
[0024] In a further technical solution, the feed tube assembly includes a feed tube at the top and a liquid addition tube, an enzyme feed tube, and an auxiliary material tube located on the side.
[0025] In a further technical solution, the vibrating component includes a vibrating motor, the output end of which is equipped with an eccentric block; at least two sets of guide columns are installed on the top of the vibrating screen, and the guide columns extend to the outside of the fixed shell and are fixedly installed with a bearing plate; a lower groove is provided on the bearing plate, the inner diameter of which is greater than the thickness of the eccentric block; the eccentric block is adapted to abut against the bearing plate to drive the guide columns to move up and down inside the fixed shell;
[0026] A return spring is installed between the fixed shell and the support plate. The bottom of the return spring is fixedly connected to the top of the fixed shell, and the top of the spring is fixedly connected to the support plate.
[0027] The bottom of the fixed shell is provided with a discharge port, and an isolation valve is installed on the front pipe; the output end of the backflushing pipe is set towards the vibrating screen.
[0028] In a further technical solution, the vibrating component also includes a circulation pipe and a reflux pump. The circulation pipe is equipped with a reflux pump and an isolation valve. One end of the circulation pipe is connected to the fixed shell, and the other end is connected to the isolation valve and the reflux pump respectively. The reflux pump is connected to the front pipe. A solid discharge pipe is installed at the bottom of the fixed shell, and a discharge valve is installed on the solid discharge pipe.
[0029] Compared with existing known technologies, the technical solution provided by this utility model has the following significant advantages:
[0030] In this embodiment, vertical and side stirring blades are used to achieve thorough stirring within the enzymatic hydrolysis tank, and a heating component is used to raise the temperature, achieving the enzymatic hydrolysis effect on the chicken bone material. Water is added through the liquid addition pipe, the enzymatic hydrolysate is added through the enzyme feed pipe, and selected aromatizers, colorants, etc., are added through the auxiliary feed pipe. This utility model uses a vibrating screen installed at the bottom to allow the constricted and flow-increasing pipe in the front pipe to enter the fixed shell. After vibrating screening in the fixed shell, solid particles are intercepted and fall off through reciprocating vibration, and the vertical distribution reduces the likelihood of solid particles getting stuck in the screen. A backflushing port is provided at the top of the thick pipe, which allows for reverse water filling of the vibrating screen, achieving a rapid cleaning effect.
[0031] The internal gear slewing bearing is driven to rotate by a drive motor through meshing with a slewing gear. The inner ring of the internal gear slewing bearing rotates, while the outer ring is fixed to a fixed plate. The connecting plate, driven by the rotation of the inner ring of the internal gear slewing bearing, rotates the hinge seat and thus the large cylinder. When cleaning the sorting filter cartridge is required, the positioning pins between the feed inlet and the filter tube are removed, and the feed inlet and the small cylinder are driven to retract into the large cylinder. The boss squeezes out the residue remaining in the filter and discharges it from the discharge port. The retracted sorting filter cartridge can be placed at an angle in the support box within a small space and washed with a water gun, achieving quick disassembly and convenient cleaning. Attached Figure Description
[0032] Figure 1 This is a front view of the chicken bone extract production device of this utility model.
[0033] Figure 2 for Figure 1 Enlarged view of part A;
[0034] Figure 3 This is a cross-sectional view of the enzymatic hydrolysis vessel of this utility model;
[0035] Figure 4 This is a schematic diagram of the vibrating screen component of this utility model;
[0036] Figure 5 This is a partial cross-sectional schematic diagram of the chicken bone extract production apparatus of this utility model;
[0037] Figure 6 for Figure 5 Enlarged view of part B;
[0038] Figure 7 for Figure 5 Enlarged view of part C;
[0039] Figure 8 This is a side view of the arc-shaped plate of this utility model;
[0040] Figure 9 for Figure 5 Enlarged view of part D;
[0041] Figure 10 This is a cross-sectional view of the fixing shell of this utility model;
[0042] Figure 11 This is a schematic diagram of the structure of the feed pipe of this utility model;
[0043] Figure 12 This is a side view of the feed inlet of this utility model;
[0044] Figure 13 This is a schematic diagram of the transition tube of this utility model;
[0045] Figure 14 This is a cross-sectional view of the structure of the sorting filter cartridge of this utility model;
[0046] Figure 15 This is a side view of the large cylindrical body of this utility model.
[0047] In the picture:
[0048] 1. Rack;
[0049] 2. Enzymatic hydrolysis tank; 21. Stirring motor; 22. Stirring rod; 23. Stirring blade; 24. Feeding pipe assembly; 25. Heating component; 26. Internal frame; 28. Lateral rod; 29. Lateral blade;
[0050] 3. Separating rotating parts; 31. Sorting filter cartridge; 32. Support box; 33. Feed inlet; 34. Arc plate; 35. Ball bearings; 36. Small cylinder; 37. Large cylinder; 38. Connecting groove; 39. Discharge port; 310. Thickening ring; 311. Boss; 312. Fixing plate; 315. Hinge seat; 316. Connecting ear; 317. Connecting shaft;
[0051] 331. Side ear shell; 332. Groove ring;
[0052] 4. Vibrating screen components; 41. Front pipe; 42. Fixed shell; 43. Rear pipe; 44. Vibrating screen; 45. Guide column; 46. Vibrating motor; 47. Eccentric block; 48. Bearing plate; 49. Return spring; 410. Circulation pipe; 411. Return pump; 412. Isolation valve; 413. Discharge valve; 414. Backflush port;
[0053] 5. Rotating component; 51. Internal gear slewing bearing; 52. Connecting plate; 53. Drive motor; 54. Slewing gear;
[0054] 6. Discharge pipe; 7. Discharge valve; 8. Transition pipe; 9. Bearing; 81. Fixing lug; 10. Positioning pin. Detailed Implementation
[0055] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. 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.
[0056] Example 1
[0057] like Figure 1-9 The image shows one embodiment of this utility model, comprising a chicken bone extract production apparatus with enzymatic hydrolysis and solid-liquid separation functions:
[0058] It includes a frame 1, an enzymatic hydrolysis tank 2 is installed on the upper part of the frame 1, and a separation rotating component 3 and a vibrating screen component 4 are installed on the lower part;
[0059] A stirring motor 21 is installed on the enzymatic hydrolysis tank 2. The output end of the stirring motor 21 faces downward and a stirring rod 22 is coaxially installed inside the enzymatic hydrolysis tank 2. Stirring blades 23 are provided on the stirring rod 22.
[0060] like Figure 3 As shown, a feed pipe assembly 24 is provided on the enzymatic hydrolysis tank 2; a heating assembly 25 is installed inside the enzymatic hydrolysis tank 2 to heat the contents of the enzymatic hydrolysis tank 2; an internal frame 26 is provided at the top of the enzymatic hydrolysis tank 2, and a coupling is installed on the internal frame 26, which is connected to the output end of the stirring motor 21 and the stirring rod 22 respectively; lateral rods 28 are installed on both sides of the stirring rod 22, and lateral blades 29 are installed at the ends of the lateral rods 28 away from the stirring rod 22; a discharge pipe 6 and a discharge valve 7 are installed laterally inside the enzymatic hydrolysis tank 2, and the discharge pipe 6 is a bent pipe; a support plate is detachably installed inside the frame 1, and the end of the support plate is connected to the discharge pipe 6; a transition pipe 8 is installed at the bottom of the discharge pipe 6, and the transition pipe is connected to the feed inlet 33.
[0061] The separating rotating component 3 includes a sorting filter cylinder 31 and a support box 32. The sorting filter cylinder 31 is installed inside the support box 32. A filter screen is provided on the sorting filter cylinder 31. One end of the sorting filter cylinder 31 is provided with a feed inlet 33, and the other end is closed. A rotating component 5 is installed on the end of the sorting filter cylinder 31 away from the feed inlet 33. The rotating component 5 is adapted to drive the sorting filter cylinder 31 to rotate.
[0062] like Figure 4As shown, the vibrating screen component 4 includes a front pipe 41, a fixed shell 42, and a rear pipe 43. A vibrating screen 44 is installed inside the fixed shell 42, and guide columns 45 are installed at both the top and bottom of the vibrating screen 44. A vibrating element is installed on the fixed shell 42, which is adapted to drive the guide columns 45 to move up and down and drive the vibrating screen 44 to move. A backflushing port 414 is installed on the rear pipe 43, and the opening direction of the backflushing port 414 is set towards the vibrating screen 44.
[0063] In this embodiment, vertical and side stirring blades are used to achieve thorough stirring within the enzymatic hydrolysis tank, and a heating component is used to raise the temperature, achieving the enzymatic hydrolysis effect on the chicken bone material. Water is added through the liquid addition pipe, the enzymatic hydrolysate is added through the enzyme feed pipe, and selected aromatizers, colorants, etc., are added through the auxiliary feed pipe. This utility model uses a vibrating screen installed at the bottom to allow the constricted and flow-increasing pipe in the front pipe to enter the fixed shell. After vibrating screening in the fixed shell, solid particles are intercepted and fall off through reciprocating vibration, and the vertical distribution reduces the likelihood of solid particles getting stuck in the screen. A backflushing port is provided at the top of the thick pipe, which allows for reverse water filling of the vibrating screen, achieving a rapid cleaning effect.
[0064] Example 2
[0065] like Figure 9-15 As shown, this is another embodiment of the present invention, based on embodiment 1, as follows: Figure 6 As shown, a bearing 9 is installed between the transition pipe 8 and the discharge pipe 6; Figure 13 As shown, fixing ears 81 are provided on both sides of the transition tube 8, and a positioning hole is provided on the fixing ears 81.
[0066] like Figure 2 and 13 As shown, side ear shells 331 are provided on both sides of the feed pipe 33. The side ear shells 331 are adapted to be snapped onto the outside of the fixed ear 81 and have a second positioning hole. A positioning pin 10 is installed between the first positioning hole and the second positioning hole.
[0067] like Figure 7 and 8 As shown, a support column is installed on the top of the support box 32, and an arc plate 34 is installed on the support column. Multiple sets of circumferential balls 35 are arranged in the arc plate 34. A grooved ring 332 is also provided on the feed pipe 33, and the grooved ring 332 is adapted to the balls 35.
[0068] like Figure 14 and 15As shown, the sorting filter cylinder 31 is a telescopic cylinder, comprising a small cylinder 36 and a large cylinder 37. The small cylinder 36 is adapted to slide within the large cylinder 37. A connecting groove 38 is provided within the large cylinder 37, and a discharge port 39 is provided within the connecting groove 38. A feed inlet 33 is installed at the end of the small cylinder 36. A thickening ring 310 is provided at the end of the small cylinder 36 installed within the large cylinder 37, and a boss 311 is provided circumferentially on the thickening ring 310. The boss 311 is adapted to move along the connecting groove 38. The sorting filter cylinder is designed to be telescopic, achieving the effect of cleaning the inner wall through telescopic movement. By providing a boss and moving along the connecting groove, solid particles remaining in the connecting groove can be squeezed and discharged from the discharge port.
[0069] like Figure 9 As shown, a fixing plate 312 is also provided on the support box 32. The fixing plate 312 has an installation groove, and an internal gear slewing bearing 51 is installed in the installation groove. The internal gear slewing bearing 51 is installed vertically. The outer ring of the internal gear slewing bearing 51 is fixedly connected to the fixing plate 312. A connecting plate 52 is installed on the side of the inner ring of the internal gear slewing bearing 51 opposite to the sorting filter cylinder 31. A hinge seat 315 is installed on the side of the connecting plate 52 opposite to the sorting filter cylinder 31. A connecting ear 316 is installed on the side of the large cylinder 37 away from the support column. A connecting shaft 317 is installed between the connecting ear 316 and the hinge seat 315. A drive motor 53 is installed on the side of the fixing plate 312 opposite to the internal gear slewing bearing 51. The body of the drive motor 53 is detachably installed on the fixing plate 312. The output end of the drive motor 53 extends into the installation groove and a rotary gear 54 is installed. The rotary gear 54 meshes with the inner ring of the internal gear slewing bearing 51. The internal gear slewing bearing is driven to rotate by a drive motor through the meshing of slewing gears. The inner ring of the internal gear slewing bearing rotates, while the outer ring is fixed to the fixed plate. The connecting plate, driven by the rotation of the inner ring of the internal gear slewing bearing, rotates the hinge seat and drives the large cylinder to rotate. When cleaning the sorting filter cartridge is required, the positioning pins between the feed pipe and the filter tube are removed, and the feed pipe and the small cylinder are driven to retract into the large cylinder. The boss squeezes the residue left by the filter and discharges it from the discharge port. The retracted sorting filter cartridge can be placed at an angle in the support box within a small space and washed with a water gun, achieving quick disassembly and convenient cleaning.
[0070] Combination Figure 4 and 10 As shown, the vibrating component includes a vibrating motor 46, and an eccentric block 47 is installed at the output end of the vibrating motor 46; at least two sets of guide posts 45 are installed on the top of the vibrating screen 44, and the guide posts 45 extend to the outside of the fixed shell 42 and are fixedly installed with a bearing plate 48; a lower groove is provided on the bearing plate 48, and the inner diameter of the lower groove is greater than the thickness of the eccentric block 47; the eccentric block 47 is adapted to abut against the bearing plate 48 to drive the guide posts 45 to move up and down inside the fixed shell 42;
[0071] A return spring 49 is installed between the fixed shell 42 and the support plate 48. The bottom of the return spring 49 is fixedly connected to the top of the fixed shell 42, and the top is fixedly connected to the support plate 48. A discharge port is provided at the bottom of the fixed shell 42, and an isolation valve 412 is installed on the front pipe 41. The output end of the backflushing port 414 faces the vibrating screen 44. The vibrating component also includes a circulation pipe 410 and a return pump 411. The return pump 411 and the isolation valve 412 are installed on the circulation pipe 410. One end of the circulation pipe 410 is connected to the fixed shell 42, and the other end is connected to the isolation valve 412 and the return pump 411 respectively. The return pump 411 is connected to the front pipe 41. A solid discharge pipe is installed at the bottom of the fixed shell 42, and a discharge valve 413 is installed on the solid discharge pipe.
[0072] A method for producing chicken bone extract that includes enzymatic hydrolysis and solid-liquid separation functions includes the following steps:
[0073] Step 1: After the chicken bone raw material is inspected and crushed, it is prepared into bone paste and pumped into enzymatic hydrolysis tank 2;
[0074] Step 2, Enzymatic hydrolysis: Add water and enzyme preparation to enzymatic hydrolysis tank 2, turn on heating component 25, heating component 25 raises the temperature inside enzymatic hydrolysis tank 2 to 50-55℃ to carry out enzymatic hydrolysis reaction, reaction time 60±20min;
[0075] Step 3, High-temperature cooking: The extraction process requires the addition of spices and ingredients, and the temperature is maintained at 115±2℃ for 180±20 min;
[0076] Step 4, Static Separation: Allow the material to cool naturally to 90-95℃ and let it stand for more than 90 minutes. The bone residue and the upper liquid will separate into layers. Open the side discharge valve 7. A discharge pump is also installed on the discharge pipe 6. Turn on the discharge pump and extract the upper liquid from the side. Then, pump the upper liquid into the sorting filter cartridge 31.
[0077] Step 5, primary filtration: The drive motor 53 starts, causing the inner ring of the internal gear slewing bearing 51 to rotate, and causing the connecting plate 52 to rotate; the connecting plate 52 causes the hinge seat 315 and the sorting filter cartridge 31 to rotate, and the end of the sorting filter cartridge 31 away from the internal gear slewing bearing 51 rotates on the arc plate 34, and causes the transition tube 8 to rotate.
[0078] The upper liquid enters the sorting filter cartridge 31 for filtration, and the liquid flows into the support box 32; a drain pipe is provided at the bottom of the support box 32; the drain pipe is pumped to the vibrating screen component 4 by a liquid delivery pump.
[0079] Step 6, secondary filtration: The upper liquid after filtration in step 5 enters the front pipe 41. The front pipe 41 narrows towards the fixed shell 42, increasing the flow rate. The vibration motor 46 starts and drives the eccentric block 47 to reciprocate and compress the support plate 48 up and down. The two ends of the support plate 48 drive the vibrating screen 44 up and down through the guide posts 45. The upper liquid is kept flowing while the vibrating screen vibrates rapidly back and forth.
[0080] Isolation valve 412 is closed, discharge valve 413 is opened, and residual bone residue is discharged from the bottom through solid discharge pipe 6;
[0081] Isolation valve 412 is opened, discharge valve 413 is closed, circulation pipe 410 is opened, and the upper liquid is pumped back to the front pipe 41 by return pump 411.
[0082] Step 7: After the filtered upper liquid is discharged from the pipe 43, close the isolation valve 412; open the backflushing port 414 and use the high-pressure water to clean the vibrating screen 44, and discharge it from the discharge valve 413.
[0083] Step 8: Remove the positioning pin 10 to separate the feed inlet 33 from the transition pipe 8; drive the small cylinder 36 away from the arc plate 34 and move it toward the side of the internal tooth slewing bearing 51, so that the sorting filter cylinder 31 rotates downward and is cleaned with clean water.
[0084] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any modifications or equivalent changes made based on the technical essence of the present utility model shall still fall within the scope of protection claimed by the present utility model.
Claims
1. A production apparatus for chicken bone extract, comprising enzymatic hydrolysis and solid-liquid separation functions, characterized in that: It includes a frame (1), an enzymatic hydrolysis tank (2) is installed on the upper part of the frame (1), and a separation rotating part (3) and a vibrating screen part (4) are installed on the lower part respectively; Enzymatic hydrolysis vessel (2); The separating rotating component (3) includes a sorting filter cylinder (31) and a support box (32). The sorting filter cylinder (31) is installed inside the support box (32). A filter screen is provided on the sorting filter cylinder (31). A feed inlet (33) is provided at one end of the sorting filter cylinder (31), and the other end is closed. A rotating component (5) is installed at the end of the support box (32) away from the feed inlet (33). The rotating component (5) is adapted to drive the sorting filter cylinder (31) to rotate. The vibrating screen component (4) includes a front pipe (41), a fixed shell (42), and a rear pipe (43). A vibrating screen (44) is installed inside the fixed shell (42), and guide columns (45) are installed on both the top and bottom of the vibrating screen (44). A vibrating element is installed on the fixed shell (42), which is suitable for driving the guide columns (45) to move up and down and driving the vibrating screen (44) to move. A backflushing port (414) is installed on the rear pipe (43), and the opening direction of the backflushing port (414) is set towards the vibrating screen (44).
2. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 1, characterized by: A stirring motor (21) is installed on the enzymatic hydrolysis tank (2). The output end of the stirring motor (21) is downward and a stirring rod (22) is coaxially installed inside the enzymatic hydrolysis tank (2). A stirring blade (23) is provided on the stirring rod (22). A feed pipe assembly is provided on the enzymatic hydrolysis tank (2); a heating assembly (25) is installed inside the enzymatic hydrolysis tank (2) to heat the inside of the enzymatic hydrolysis tank (2).
3. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 2, characterized by: The enzymatic hydrolysis tank (2) is equipped with an internal frame (26) at the top, and a coupling is installed on the internal frame (26). The coupling is connected to the output end of the stirring motor (21) and the stirring rod (22) respectively. Side rods (28) are installed on both sides of the stirring rod (22), and side blades (29) are installed at the ends of the side rods (28) away from the stirring rod (22); A discharge pipe (6) and a discharge valve (7) are installed on the side of the enzymatic hydrolysis tank (2). The discharge pipe (6) is a bent pipe. A support plate is detachably installed inside the frame (1). The end of the support plate is connected to the discharge pipe (6). A transition pipe (8) is installed at the bottom of the discharge pipe (6), and the transition pipe (8) is connected to the feed pipe (33).
4. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 3, characterized by: A bearing (9) is installed between the transition pipe (8) and the discharge pipe (6); a fixing ear (81) is provided on both sides of the transition pipe (8), and a positioning hole is provided on the fixing ear (81); Side ear shells (331) are provided on both sides of the feed pipe (33). The side ear shells (331) are adapted to be snapped onto the outside of the fixed ear (81) and have a second positioning hole. A positioning pin (10) is installed between the first positioning hole and the second positioning hole.
5. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 1, wherein: The top of the support box (32) is equipped with a support column, and an arc plate (34) is installed on the support column. Multiple sets of circumferential balls (35) are arranged in the arc plate (34). A grooved ring (332) is also provided on the feed pipe (33), and the grooved ring (332) is adapted to the balls (35).
6. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 5, wherein: The sorting filter cylinder (31) is a telescopic cylinder. The sorting filter cylinder (31) includes a small cylinder (36) and a large cylinder (37). The small cylinder (36) is adapted to slide inside the large cylinder (37). A connecting groove (38) is provided inside the large cylinder (37), and a discharge port (39) is provided inside the connecting groove (38). A feed inlet (33) is installed at the end of the small cylinder (36). The end of the small cylinder (36) installed inside the large cylinder (37) is provided with a thickening ring (310), and the thickening ring (310) is provided with a boss (311) in the circumferential direction. The boss (311) is adapted to move along the connecting groove (38).
7. The chicken bone extract production apparatus according to claim 6, comprising enzymatic hydrolysis and solid-liquid separation functions, is characterized in that: The support box (32) is also provided with a fixing plate (312), and the fixing plate (312) has an installation groove. An internal gear slewing bearing (51) is installed in the installation groove. The internal gear slewing bearing (51) is installed vertically. The outer ring of the internal gear slewing bearing (51) is fixedly connected to the fixing plate (312). A connecting plate (52) is installed on the inner ring of the internal gear slewing bearing (51) on the side opposite to the sorting filter cylinder (31). A hinge seat (315) is installed on the side of the connecting plate (52) opposite to the sorting filter cylinder (31). A connecting ear (316) is installed on the side of the large cylinder (37) away from the support column. A connecting shaft (317) is installed between the connecting ear (316) and the hinge seat (315). A drive motor (53) is installed on the side of the fixed plate (312) opposite to the internal gear slewing bearing (51). The body of the drive motor (53) is detachably mounted on the fixed plate (312). The output end of the drive motor (53) extends into the mounting groove and is fitted with a slewing gear (54). The slewing gear (54) meshes with the inner ring of the internal gear slewing bearing (51).
8. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 1, wherein: The vibrating component includes a vibrating motor (46), and an eccentric block (47) is installed at the output end of the vibrating motor (46); at least two sets of guide posts (45) are installed on the top of the vibrating screen (44), and the guide posts (45) extend to the outside of the fixed shell (42) and are fixedly installed with a bearing plate (48); a lower groove is provided on the bearing plate (48), and the inner diameter of the lower groove is greater than the thickness of the eccentric block (47); the eccentric block (47) is adapted to abut against the bearing plate (48) to drive the guide posts (45) to move up and down inside the fixed shell (42); A return spring (49) is installed between the fixed shell (42) and the support plate (48). The bottom of the return spring (49) is fixedly connected to the top of the fixed shell (42), and the top is fixedly connected to the support plate (48). The bottom of the fixed shell (42) is provided with a discharge port, and an isolation valve (412) is installed on the front pipe (41); the output end of the backflushing port (414) is set towards the vibrating screen (44).
9. The chicken bone extract production apparatus comprising an enzymatic hydrolysis and solid-liquid separation function according to claim 8, characterized by: The vibrating component also includes a circulation pipe (410) and a return pump (411). The circulation pipe (410) is equipped with a return pump (411) and an isolation valve (412). One end of the circulation pipe (410) is connected to the fixed shell (42), and the other end is connected to the isolation valve (412) and the return pump (411) respectively. The return pump (411) is connected to the front pipe (41). A solid discharge pipe is installed at the bottom of the fixed shell (42), and a discharge valve (413) is installed on the solid discharge pipe.