A production device and production process for fresh stewed donkey-hide gelatin soup

By introducing a splash-proof mechanism into the production device of freshly stewed donkey-hide gelatin soup, and using a sliding plate to close the filling container on the conveyor belt, the problem of splashing donkey-hide gelatin soup during the transmission process is solved, and the hygiene and stability of the product are improved.

CN119038478BActive Publication Date: 2025-05-16SHANDONG DONGE DONGFANG EJIAO CO LTD
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Patent Information

Application Number
CN202411362346.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-05-16
Estimated Expiration
2044-09-27

AI Technical Summary

Technical Problem

Before the filling container is transferred to the sealing device, donkey-hide gelatin soup is prone to splashing out, resulting in hygiene risks and unstable quality.

Method used

A production device including a rack, a conveyor belt, a filling device, a sealing device and a splash-proof mechanism is designed. The splash-proof mechanism consists of a sliding plate and a driving assembly, which closes the filling container when the conveyor belt is running through the sliding plate to prevent liquid from splashing out.

Benefits of technology

It effectively prevents donkey-hide gelatin soup from splashing during the transmission process, ensures that the liquid in the filling container does not spill, and improves the hygiene and stability of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of food processing and transportation, and in particular relates to a production device for fresh stewed donkey-hide gelatin soup, comprising a frame, a conveyor belt, a filling device, a sealing device and an anti-splashing mechanism. The conveyor belt is assembled on the frame, and a plurality of placement grooves for horizontally placing filling containers are provided on the conveyor belt. The filling device comprises a filling head, and the sealing device comprises a down-pressing head. Both the filling head and the down-pressing head are located above the conveyor belt. The conveyor belt is used to transport the filling container from below the filling head to below the down-pressing head. The anti-splashing mechanism comprises a sliding plate and a driving component 1 and a driving component 2. There are multiple sliding plates, which are located between the filling head and the down-pressing head and are used to seal the filled container when the conveyor belt is running. The driving component 1 is used to drive the sliding plate below the filling head away from the opening of the filling container, and the driving component 2 is used to drive the sliding plate away from the opening of the filling container to seal the filling container below the filling head. The present invention can solve the technical problem that the donkey-hide gelatin soup inside the filling container splashes out before the filled container is conveyed to the sealing device.
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Description

Technical Field

[0001] The invention belongs to the technical field of food processing and transportation, and in particular relates to a production device and a production process for fresh stewed donkey-hide gelatin soup. Background Art

[0002] Donkey hide gelatin has a good tonic effect, which helps to supplement the nutrients in the blood and improve the symptoms of anemia. Tremella is rich in various nutrients such as amino acids, minerals and polysaccharides, which can enhance the body's immunity. Donkey hide gelatin and Tremella are stewed together into donkey hide gelatin soup. After eating, it can moisten the lungs and relieve coughs, protect the respiratory system in the dry season, and help adjust the body's function and enhance physical fitness. However, the stewing of donkey hide gelatin soup is relatively troublesome. First, donkey hide gelatin needs to be dissolved at low temperature to prevent the denaturation or decomposition of collagen and its derivatives and other components to ensure the efficacy of donkey hide gelatin. Secondly, Tremella needs to be stewed for a long time so that Tremella polysaccharides, proteins, vitamins and minerals are precipitated from Tremella for easy absorption and utilization by the human body. The stewed Tremella needs to be cooled before mixing with donkey hide gelatin. It takes time to prepare donkey hide gelatin soup at home, and the quality of donkey hide gelatin soup cannot be guaranteed. Therefore, it is necessary to design a production device for fresh stewed donkey hide gelatin soup to mass produce donkey hide gelatin soup for easy consumption.

[0003] The Chinese patent application document with publication number CN205418164U discloses a semi-automatic filling device for instant porridge, including a liquid material cylinder, a filling frame, a conveyor belt, a quantitative cup and a filling bowl. The front end of the filling frame is connected to a limited guide groove, and a conveyor belt is slidably provided on the limited guide groove. A plurality of filling bowl molds are provided on the conveyor belt, and filling bowls are placed in the filling bowl molds. A plurality of liquid material cylinders are installed on the upper end of the filling frame, and a weighing hopper is installed at the bottom of the liquid material cylinder, and the weighing hopper is connected to a material guide pipe. A plurality of quantitative cups are connected to the bottom side of the material guide pipe, and a filling head is installed at the bottom of the quantitative cup. The above patent can realize the filling of donkey-hide gelatin soup, but the bowl is not closed with a cover after the filling is completed. During the conveying process of the conveyor belt, the soup is easy to splash onto the edge of the bowl or the conveyor belt, affecting the subsequent sealing process, and will breed bacteria, causing health hazards. Summary of the invention

[0004] The invention provides a production device and a production process for freshly stewed donkey-hide gelatin soup, so as to solve the technical problem that the donkey-hide gelatin soup in the filling container splashes out before the filled filling container is conveyed to a sealing device.

[0005] To solve the above problems, the present invention adopts the following technical solutions:

[0006] A production device for fresh stewed donkey-hide gelatin soup comprises a frame, a conveyor belt, a filling device, a sealing device and an anti-splash mechanism. The conveyor belt is assembled on the frame. The conveyor belt is provided with a plurality of placement slots for horizontally placing filling containers. The filling device comprises a filling head. The sealing device comprises a pressing head. Both the filling head and the pressing head are located above the conveyor belt. The conveyor belt is used to transport the filling container from under the filling head to under the pressing head. The anti-splash mechanism comprises a sliding plate and a driving component 1 and a driving component 2. There are a plurality of sliding plates, which are located between the filling head and the pressing head and are used to seal the filled container when the conveyor belt is running. The driving component 1 is used to drive the sliding plate under the filling head away from the opening of the filling container. The driving component 2 is used to drive the sliding plate away from the opening of the filling container to seal the filling container under the filling head.

[0007] The beneficial effect is that when the conveyor belt is running, the sliding plate always closes the filling container that has been filled to prevent liquid from splashing out of the filling container. When the filling container that has been filled moves to the bottom of the pressure head and the empty filling container moves to the bottom of the filling head, the conveyor belt stops running, and the driving component one drives the sliding plate under the pressure head to move up, and the sliding plate no longer closes the filling container containing donkey-hide gelatin soup, which facilitates the operation of the pressure head. After the filling head completes filling, the driving component two drives the sliding plates of other unclosed filling containers to move to the bottom of the filling head and close the filling container that has been filled to prevent donkey-hide gelatin soup from splashing out of the filling container during movement. After that, the conveyor belt starts running again, and the sealed filling container is moved away from under the pressure head, and the filled filling container closed by the sliding plate is moved away from under the filling head. This cycle is repeated to complete the filling and sealing of the filling container, and the liquid in the filling container will not spill.

[0008] Furthermore, the sliding plate is divided into two parallel layers, the lower sliding plate closes the filled container, the driving component 1 includes a driving device 1 for vertical driving and a driving device 2 for horizontal driving, the driving component 2 includes a driving device 3 for vertical driving, the fixed ends of the driving device 1 and the driving device 2 are fixedly assembled on the frame, the output end of the driving device 1 is fixedly connected to the driving device 2 and the cross bar 2, the output end of the driving device 3 is fixedly connected to the cross bar 4, each sliding plate has a through hole 1 extending in the same direction as the horizontal movement direction of the conveyor belt, the driving device 2 is used to drive the upper sliding plate to slide horizontally, so that the sliding plate with the shortest distance to the filling head is mounted on the cross bar 4, and the conveyor belt runs so that the sliding plate with the shortest distance to the lower pressure head is mounted on the cross bar 2, and the driving device 2 is also used to push the sliding plate mounted on the cross bar 2 to separate from the cross bar 2 in the direction away from the lower pressure head.

[0009] The beneficial effects are: the driving device 2 sets the sliding plate which is the shortest distance to the filling head on the cross bar 4, the driving device 3 drives the cross bar 4 to move downward, and the sliding plate closes the opening of the filling container below the filling head; the operation of the conveyor belt makes the sliding plate which is the shortest distance to the lower pressure head set on the cross bar 2, and the sliding plate gradually moves to the bottom of the lower pressure head, the driving device 1 drives the cross bar 2 to move upward, and at the same time the driving device 2 drives the sliding plate to move along the cross bar 2 in the direction away from the lower pressure head, and the sliding plate is away from the opening of the filling container; the driving device 1, the driving device 2 and the driving device 3 cooperate with each other, and the sliding plate will not affect the filling and sealing.

[0010] Furthermore, two adjacent sliding plates on each layer are detachably connected by a connecting mechanism, and the connecting assembly includes a rotating rod and a convex rod. The rotating rod is rotatably assembled in the sliding plate, and the axis of the rotating rod is parallel to the horizontal transmission direction of the conveyor belt. The convex rod is fixed to one end of the rotating rod protruding from the sliding plate, and the side of the sliding plate away from the convex rod has a second card groove adapted to the convex rod. When the convex rod is rotated to a predetermined angle, it disengages from the second card groove on the adjacent sliding plate. The connecting assembly also includes a moving rod second, which is guided and slidably assembled in the sliding plate along a direction perpendicular to the horizontal transmission direction of the conveyor belt, and one end of the moving rod second is located in the through hole one. When the cross rod two or the cross rod four is located in the through hole one, the moving rod two moves toward the rotating rod to drive the convex rod to rotate to a predetermined angle.

[0011] The beneficial effect is that vibration will be generated when the conveyor belt is running, and this vibration will affect the sliding plate. Crossbar 2 and crossbar 4 are only equipped with one sliding plate at a time, and the other sliding plates are fixedly connected by a connecting mechanism. They can jointly bear and disperse the vibration energy through mutual connection and support. The sliding plate is not easy to displace and has strong stability in use.

[0012] Furthermore, the sliding plate includes a horizontal plate 1 and a horizontal plate 2 placed up and down, a horizontal plate 3 is provided on the bottom surface of the horizontal plate 1, the horizontal plate 3 is used to close the opening of the filling container, the horizontal plate 2 is provided with a through hole 3 for the horizontal plate 3 to move up and down, and a tension spring that can be extended and retracted in the vertical direction is provided between the horizontal plate 1 and the horizontal plate 2, and the two ends of the tension spring are respectively fixedly connected to the horizontal plate 1 and the horizontal plate 2.

[0013] The beneficial effect is that when the sliding plate moves downward to close the opening of the filling container, the horizontal plate one moves upward, the tension spring stretches, and the tension spring generates vertical downward elastic potential energy on the horizontal plate three, so that the horizontal plate three is tightly fitted with the top surface of the filling container, preventing liquid from flowing out from the contact surface between the filling container and the horizontal plate three.

[0014] Furthermore, a convex plate is provided on the bottom surface of the three horizontal plates, the outer peripheral surface of the convex plate is a spherical arc surface convex downward, and the top surface of the convex plate is the same size and shape as the top surface inside the filling container.

[0015] The beneficial effect is that when the cross plate three fits the filling container, the convex plate is located in the filling container, and the liquid attached to the convex plate moves along the outer peripheral surface of the convex plate, preventing the liquid from dripping outside the filling container, thereby ensuring the cleanliness of the chain plate and the filling container.

[0016] Furthermore, a positioning rod is provided on the bottom surface of the second cross plate, and the conveyor belt includes a plurality of chain plates, each of which is provided with a positioning hole adapted to the positioning rod; the driving component two also includes a driving device four, the fixed end of which is fixedly assembled on the output end of the driving device three, and the output end of the driving device three is used to drive the sliding plate located at the lower layer to move from the filling head to the direction of the downward pressure head, and the moving rod two is fixedly connected with a hook, and the output end of the driving device four is provided with a slot three adapted to the hook, and when the cross bar four is inserted into the through hole one, the hook is located in the slot three and the sliding plate closest to the filling head moves synchronously with the output end of the driving device three, and when the cross bar four is disengaged from the through hole one, the hook moves out of the slot three.

[0017] The beneficial effects are: the positioning rod is engaged in the positioning hole, so that the lower sliding plate and the chain plate move synchronously in the horizontal direction; the driving device four is extended to drive all the sliding plates of the lower layer to move synchronously from the filling head to the direction of the lower pressure head, and at the same time drive the chain plate to run. The driving device four is a power device for driving the conveyor belt to run, and there is no need to set up a motor; the hook moves synchronously with the moving rod two, and when the cross bar four is installed in the through hole one, the hook is engaged in the slot three, and the sliding plate corresponding to the through hole one is fixedly connected to the output end of the driving device four, and the driving device four can drive the sliding plate to move in the direction of the filling head; the driving device four extends the length of a chain plate, so that when the cross plate four disengages from the through hole one, the hook disengages from the slot three, and the driving device four starts to drive the next sliding plate, thereby realizing continuous operation of the device.

[0018] Furthermore, a cleaning structure is provided between the upper and lower sliding plates, and the cleaning structure includes a driving device five and a liquid absorbent piece. The driving device five is fixedly mounted on the mounting frame, and a fixed frame is fixedly provided at the output end of the driving device five, and a cavity is provided inside the fixed frame. The liquid absorbent piece is horizontally arranged on the fixed frame, and the driving device is used to drive the liquid absorbent piece to contact or move away from the convex plate directly below the lower pressure head. The side of the liquid absorbent piece close to the top surface of the convex plate is an inclined surface, and the height of the inclined surface gradually decreases along the direction of movement of the liquid absorbent piece toward the convex plate. A through hole three connected to the cavity is provided on the fixed frame below the liquid absorbent piece.

[0019] The beneficial effects are: the setting of the inclined surface makes the contact position between the liquid absorbent and the convex plate located in the middle of the liquid absorbent, preventing the liquid from falling from the edge of the liquid absorbent, ensuring the wiping effect; the liquid absorbed by the liquid absorbent enters the cavity along the through hole three, preventing the absorbed liquid from flowing out, ensuring the cleanliness of the device.

[0020] Furthermore, the mounting frame is provided with a through hole five, and the output ends of the driving device one and the driving device three are fixedly provided with flanges, and the flanges are located in the through hole five.

[0021] The beneficial effect is: when the chain plate under the sliding plate needs to be repaired or replaced, start the drive device 1 and the drive device 3, move the mounting frame vertically upward, and the mounting frame drives all the sliding plates to move upward synchronously, so that a gap is generated between the lower sliding plate and the chain plate, which is convenient for the staff to handle the chain plate.

[0022] A method for producing fresh-stewed donkey-hide gelatin soup comprises the following steps:

[0023] ① Mix and stir donkey-hide gelatin, rice wine, brown sugar, oligofructose syrup and water until the donkey-hide gelatin is completely melted to form melted donkey-hide gelatin liquid. At the same time, add water to the soaked white fungus and boil it, filter it to form white fungus liquid, add the white fungus liquid to the melted donkey-hide gelatin liquid, mix well to obtain donkey-hide gelatin soup;

[0024] ② Place the filling container into the placement tank, the conveyor belt transports the filling container from the filling device to the sealing device, the filling device fills the donkey-hide gelatin soup into the filling container, the sealing device seals the filled filling container, and takes the sealed filling container out of the placement tank;

[0025] ③ Carry out filling quantity inspection on the sealed filling containers;

[0026] ④ Sterilization treatment: place the qualified filling container in an environment of 122℃ for 43 minutes;

[0027] ⑤Package the sterilized filling containers in qualified form and put them into storage.

[0028] The beneficial effects are: the donkey-hide gelatin soup is sterilized after being filled and sealed, so the freshness of the donkey-hide gelatin soup is guaranteed, the quality of the donkey-hide gelatin soup is stable, and the donkey-hide gelatin soup is easy to carry. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a structural schematic diagram of the present invention;

[0030] Figure 2 It is a schematic diagram of the disassembled structure of the mounting frame, the fixed plate and the sliding plate;

[0031] Figure 3 It is a schematic diagram of the installation structure of the moving rod 1 and the compression spring 1;

[0032] Figure 4 Schematic diagram of the split structure of the sliding plate;

[0033] Figure 5 is a schematic diagram of the structure of the convex plate;

[0034] Figure 6 It is a schematic diagram of the installation structure of the second moving rod;

[0035] Figure 7 This is a schematic diagram of the installation structure of the drive component 1;

[0036] Figure 8 This is a schematic diagram of the installation structure of the drive component 2;

[0037] Fig. 9 It is a structural schematic diagram of the hook and the slot three;

[0038] Fig.10 It is a schematic diagram of the installation structure of the cleaning mechanism;

[0039] Fig.11 It is a schematic diagram of the split structure of the liquid absorbing member and the fixing frame;

[0040] Fig.12 The structural schematic diagram of the device is when there is a filling container to be filled under the filling head and a filling container to be sealed under the pressure head;

[0041] Fig.13 It is a structural diagram of a through hole with the shortest distance to the filling head mounted on the crossbar four-hour device;

[0042] Fig.14 A schematic diagram of the structure of the device when the sliding plate closes the filling container located directly below the filling head;

[0043] Fig.15 It is a structural schematic diagram of the device when the four-drive chain plate of the driving device moves;

[0044] Fig.16 A schematic diagram of the structure of the device when the cleaning mechanism cleans the protrusion;

[0045] Fig.17 This is the production process flow chart of donkey-hide gelatin soup.

[0046] Description of reference numerals:

[0047] 1. Frame; 2. Conveyor belt; 3. Filling device; 4. Sealing device; 5. Chain plate; 6. Filling container; 7. Placement slot; 8. Positioning hole; 9. Fixed plate; 10. Mounting frame; 11. Sliding plate; 12. Vertical rod; 13. Slide slot; 14. Mounting slot; 15. Moving rod 1; 16. Compression spring 1; 17. Through hole 1; 18. Horizontal plate 1; 19. Horizontal plate 2; 20. Tension spring; 21. Positioning rod; 22. Horizontal plate 3; 23. Convex plate; 24. Through hole 2; 25. Through hole 3; 26. Accommodating hole 1; 27. Support rod; 28. Slot 1; 29. ​​Through hole 1; 30. Slot 2; 31. Accommodating hole 2; 32. Mounting plate; 33. Through hole 2; 34. Moving rod 2; 35 , compression spring two; 36, rotating rod; 37, convex rod; 38, guide rod; 39, push rod; 40, baffle; 41, drive plate; 42, torsion spring; 43, drive device one; 44, drive device two; 45, drive device three; 46, drive device four; 47, mounting seat one; 48, cross bar one; 49, connecting rod one; 50, cross bar two; 51, mounting seat two; 52, cross bar three; 53, connecting rod two; 54, cross bar four; 55, mounting seat three; 56, hook; 57, slot three; 58, drive device five; 59, liquid suction piece; 60, fixing frame; 61, inclined plane; 62, through hole three; 63, through hole four; 64, filling head; 65, pressure head; 66, flange; 67, through hole five. DETAILED DESCRIPTION

[0048] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Those skilled in the art should know that the embodiments described below are part of the embodiments of the present disclosure, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.

[0049] like Figure 1 As shown, a production device for fresh stewed donkey-hide gelatin soup includes a conveying device, an anti-splashing mechanism, a filling device 3, and a sealing device 4.

[0050] The conveying device includes a frame 1 and a conveyor belt 2 assembled on the frame 1. The conveyor belt 2 is a chain plate conveyor belt with multiple chain plates 5. The chain plates 5 have placement grooves 7 for placing filling containers 6. The four corners of the chain plates 5 are provided with positioning holes 8 extending in a direction perpendicular to the chain plates 5.

[0051] like Figure 2As shown, the splash-proof mechanism includes a fixed plate 9, a mounting frame 10, a sliding plate 11, a driving assembly 1 and a driving assembly 2. There are two fixed plates 9, which are fixedly mounted on both sides of the frame 1, and vertical rods 12 are vertically fixed on both sides of the top surface of the fixed plate 9; there are two mounting frames 10, each of which has two horizontally extending slide grooves 13 inside, and the two slide grooves 13 are arranged up and down and parallel to each other, refer to Figure 1 , the opening of the slide groove 13 faces the chain plate 5, as shown Figure 3 As shown, a mounting groove 14 connected to the sliding groove 13 is provided on the side wall of the sliding groove 13 facing away from the outlet, a moving rod 15 and a compression spring 16 are horizontally inserted in the mounting groove 14, one end of the moving rod 15 is provided with a guide surface 1, and the other end is fixedly connected to the compression spring 16, and the other end of the compression spring 16 is fixedly installed on the inner wall of the mounting groove 14, the extension and contraction direction of the compression spring 16 and the movement direction of the moving rod 15 are both perpendicular to the horizontal movement direction of the chain plate 5, and both sides of the mounting frame 10 have a through hole 17 extending up and down, and the vertical rod 12 is located in the through hole 17.

[0052] The number of sliding plates 11 is multiple, such as Figure 4 and Figure 5 As shown, it includes a horizontal plate 18 and a horizontal plate 2 19 arranged up and down, and a tension spring 20 that stretches up and down is provided between the horizontal plate 18 and the horizontal plate 2 19. The two ends of the tension spring 20 are respectively fixed on the horizontal plate 18 and the horizontal plate 2 19. The positioning rods 21 are vertically fixedly installed at the four corners of the bottom surface of the horizontal plate 18. The tension spring 20 is sleeved on the positioning rod 21. The horizontal plate 3 22 is fixedly installed in the middle of the bottom surface of the horizontal plate 18. The bottom of the horizontal plate 3 22 is provided with a convex plate 23. The outer peripheral surface of the convex plate 23 is a spherical arc surface that convexes downward. The top surface of the convex plate 23 is the same size and shape as the top surface of the filling container 6; the horizontal plate 2 19 is provided with a second through-hole 24 and a third through-hole 25, and the positioning rod 21 is located in the second through-hole 24. The transverse plate 3 22 is located in the penetration hole 3 25; the transverse plate 2 19 has a horizontally extending receiving hole 1 26, the extending direction of the receiving hole 1 26 is parallel to the horizontal movement direction of the chain plate 5, and one side of the transverse plate 2 19 has a card slot 2 30 that penetrates from top to bottom and communicates with the outside in the horizontal direction; the two ends of the transverse plate 2 19 are fixedly installed with support rods 27, the two ends of the support rod 27 are located in the slide groove 13, and the support rod 27 is provided with a horizontally extending through hole 1 29, and the support rod 27 is provided with a receiving hole 21 that connects the through hole 1 29 and the receiving hole 1 26 at one end of the transverse plate 2 19 that contacts with the support rod 27, and the extending direction of the through hole 1 29 is parallel to the receiving hole 1 26, and the extending direction of the receiving hole 2 31 is perpendicular to the receiving hole 1 26; refer to Figure 3 The end of the support rod 27 away from the horizontal plate 19 is provided with a slot 28 adapted to one end of the moving rod 15 having a guide surface.

[0053] The two sliding plates 11 are detachably connected via a connecting mechanism, which includes a second moving rod 34, a second compression spring 35, a rotating rod 36 and a protruding rod 37. Figure 4 and Figure 6 As shown, the second moving rod 34 is installed in the second accommodating hole 31, and one end of the second moving rod 34 close to the first through hole 29 has a second guide surface, and the end surface of the other end of the second moving rod 34 away from the first through hole 29 is fixedly installed with a guide rod 38 and a push rod 39, the guide rod 38 is located above the push rod 39, and the guide rod 38 and the push rod 39 have the same extension direction as the second accommodating hole 31, and the second compression spring 35 is sleeved on the guide rod 38, and the second accommodating hole 31 is fixedly provided with a mounting plate 32, and the mounting plate 32 is provided with a second through hole 33 extending in the same direction as the second accommodating hole 31, and the guide rod 38 is located above the push rod 39. A baffle 40 is fixed on the end face of the other end passing through the second through hole 33, and a compression spring 35 is located between the second through hole 33 and the moving rod 34; the rotating rod 36 is rotatably transferred into the accommodating hole 26 through a bearing, and the protruding rod 37 is fixedly assembled on one end of the rotating rod 36 extending out of the accommodating hole 26, and a driving plate 41 is fixedly assembled on the rotating rod 36, and a torsion spring 42 is mounted on the rotating rod 36, and both ends of the torsion spring 42 are respectively fixed on the accommodating hole 26 and the rotating rod 36, and the torsion spring 42 has elastic potential energy that causes the driving plate 41 to press against the end face of the push rod 39 close to the accommodating hole 26.

[0054] Each fixed plate 9 is equipped with a driving assembly 1 and a driving assembly 2, the two driving assemblies 1 are arranged opposite to each other, the two driving assemblies 2 are arranged opposite to each other, the driving assembly 1 is close to the pressing head 65, and the driving assembly 2 is close to the filling head 64. The driving assembly 1 includes a driving device 1 43 and a driving device 2 44, and the driving assembly 2 includes a driving device 3 45 and a driving device 4 46. The driving device 1 43, the driving device 2 44, the driving device 3 45 and the driving device 4 46 are all electric push rods or hydraulic rods. Figure 7 and Figure 8 As shown, each fixed plate 9 is fixedly equipped with two mounting seats 1 47, and the fixed ends of the driving device 1 43 and the driving device 3 45 are respectively vertically mounted on the mounting seat 1 47, and the output end of the driving device 1 43 is fixedly installed with a cross bar 1 48, and the cross bar 1 48 is connected to the cross bar 2 50 through a connecting rod 1 49. The cross bar 2 50 is arranged horizontally and parallel to the horizontal transmission direction of the conveyor belt 2. The cross bar 1 48 is also fixedly equipped with a mounting seat 2 51, and the mounting seat 2 51 is fixedly mounted on the connecting rod 1 49. The fixed end of the driving device 2 44 is assembled on On the mounting seat two 51, the driving direction of the driving device two 44 is parallel to the cross bar two 50; the output end of the driving device three 45 is fixedly installed on the cross bar three 52, and the cross bar three 52 is connected to the cross bar four 54 through the connecting rod two 53. The cross bar three 52 is horizontally arranged and parallel to the horizontal transmission direction of the conveyor belt 2. The mounting seat three 55 is also fixedly assembled on the cross bar three 52, and the mounting seat three 55 is fixedly mounted on the connecting rod two 53. The fixed end of the driving device four 46 is assembled on the mounting seat three 55, and the driving direction of the driving device four 46 is parallel to the cross bar four 54.

[0055] The output end of the driving device 46 is detachably connected to the support rod 27, such as Figure 4 As shown, a hook 56 is fixedly connected to the bottom surface of the moving rod 2 34 near the through hole 1 29, as shown in FIG. Fig. 9 As shown, the output end of the driving device 46 is provided with a latching groove 3 57 adapted to the latching hook 56 .

[0056] The present invention is also provided with a cleaning mechanism, such as Fig.10 and Fig.11 As shown, the cleaning mechanism is located between the upper and lower sliding plates 11, and includes a driving device 58 and a liquid absorbing member 59. The driving device 58 is an electric push rod or a hydraulic rod. The driving device 58 is horizontally fixedly assembled between the two mounting frames 10, and the telescopic direction is consistent with the horizontal transmission direction of the conveyor belt 2. The output end of the driving device 58 is fixedly connected to the fixed frame 60. The liquid absorbing member 59 is a water-absorbing sponge. The liquid absorbing member 59 has an inclined surface 61 on one side of the top surface close to the lower pressure head 65. The height of the inclined surface 61 gradually decreases from the middle of the liquid absorbing member 59 to the lower pressure head 65. The liquid absorbing member 59 is horizontally fixedly mounted on the fixed frame 60. The fixed frame 60 has a cavity. The fixed frame 60 below the liquid absorbing member 59 has a plurality of through holes 3 62, and the fixed frame 60 has through holes 4 63 on both sides. The through holes 3 62 and the through holes 4 63 are both connected to the cavity.

[0057] The use steps of the present invention are:

[0058] ① Initial state, such as Fig.12 As shown, below the filling head 64 is the filling container 6 to be filled, below the lower pressure head 65 is the filling container 6 to be sealed, and there are two sliding plates 11 directly above each chain plate 5 between the filling head 64 and the lower pressure head 65, and the support rods 27 are all located in the slide groove 13, and the top surface, bottom surface and end surface of the support rod 27 facing away from the sliding plate 11 are all in contact with the inner wall of the slide groove 13; the positioning rod 21 on the lower sliding plate 11 is inserted into the positioning hole 8, the convex plate 23 is located in the filling container 6, the moving rod 15 with the guide surface 1 has one end located in the card groove 1 28, and the moving rod 2 34 with the guide surface 2 has one end located in the through hole 1 29, the baffle 40 is in contact with the side wall of the mounting plate 32, and the driving plate 41 is in contact with the end surface of the push rod 39; every two horizontally adjacent sliding plates 11 are fixedly connected, and the convex rod 37 is located in the card groove 2 30, and at this time the convex rod 37 cannot be horizontally moved out of the card groove 2 30.

[0059] ② If Fig.13As shown, the filling head 64 fills the donkey-hide gelatin soup into the filling container 6, and the lower pressure head 65 seals the filling container 6 filled with the donkey-hide gelatin soup. At the same time, the driving device 244 near the lower pressure head 65 is extended, and all the sliding plates 11 located above are synchronously moved along the slide groove 13 toward the direction close to the filling head 64, and the through hole 129 with the shortest distance from the filling head 64 is mounted on the cross bar 454; when the driving device 244 pushes the sliding plate 11 to slide, since the side of the moving rod 15 close to the lower pressure head 65 has a guide surface 1, under the top pressure of the groove 128, the compression spring 16 is compressed, and the moving rod 15 moves out of the groove 128; since the side of the moving rod 234 facing the cross bar 250 has a guide surface 2, the moving rod 23 4 moves to the driving plate 41, the push rod 39 presses the driving plate 41, and then drives the rotating rod 36 to rotate, the rotating rod 36 drives the protruding rod 37 to rotate 90 degrees, the protruding rod 37 can move horizontally or vertically downward to leave the card slot 2 30, and the fixed connection relationship between the upper sliding plate 11 closest to the filling head 64 and the adjacent upper sliding plate 11 is released; in the process of extending the driving device 2 44, the output end of the driving device 4 46 is always in vertical contact with the side of the support rod 27 installed on the cross bar 4 54. When the cross bar 4 54 is installed in the through hole 1 29, the hook 56 moves synchronously with the moving rod 2 34 and is engaged in the card slot 3 57. At this time, the support rod 27 and the output end of the driving device 2 44 move synchronously.

[0060] ③ Such as Fig.14 As shown, the drive device 2 44 near the lower pressure head 65 continues to be extended until the extended length is equal to the width of a chain plate 5, and the drive device 3 45 and the drive device 4 46 near the filling head 64 are shortened until the cross plate 3 22 is in contact with the filling container 6 just below the filling head 64, the cross plate 18 moves up, the tension spring 20 is extended, the convex plate 23 is engaged in the filling container 6 that has just been filled, and the convex rod 37 enters the corresponding slot 2 30; the user can select the operating speed of the drive device 3 45 and the drive device 4 46 according to actual conditions, and the filling head 64 selects a filling head 64 that can move up and down to prevent the sliding plate 11 from colliding with the filling head 64 during the movement.

[0061] ④ Such as Fig.15As shown, the driving device four 46 is extended near the filling head 64, and the driving device four 46 drives all the sliding plates 11 located below to move toward the direction close to the lower pressure head 65. Since the positioning rod 21 is engaged in the positioning hole 8, the chain plate 5 moves synchronously, and the sealed filling container 6 is moved away from under the lower pressure head 65. The filled filling container 6 is moved away from under the filling head 64. The support rod 27 located at the lower layer with the shortest distance from the lower pressure head 65 is installed on the cross bar two 50. The support rod 27 located at the lower layer with the shortest distance from the filling head 64 is gradually separated from the cross bar four 54 under the drive of the driving device four 46. When the moving rod two 34 returns to its original position driven by the elastic potential energy of the torsion spring 42 and the compression spring two 35, the hook 56 is no longer restricted by the slot three 57, and the output end of the driving device four 46 is separated from the cross bar four 54.

[0062] ⑤ If Fig.16 As shown, the drive device 1 43 is extended, and the sliding plate 11 moves vertically upward for a distance. Since the outer peripheral surface of the convex plate 23 is a spherical arc surface, the liquid attached to the convex plate 23 drips downward along the outer peripheral surface of the convex plate 23 into the filling container 6, and will not flow onto the chain plate 5. The drive device 5 58 is extended, and the drive device 5 58 drives the liquid absorbing member 59 to move to the bottom of the convex plate 23 and contact the convex plate 23. The drive device 5 58 is shortened, and the liquid absorbing member 59 returns to its original position. The liquid absorbing member 59 can absorb the liquid attached to the convex plate 23. The setting of the inclined surface 61 can make the convex plate 23 contact with the liquid absorbing member 59 in the middle, thereby ensuring the absorption effect of the liquid absorbing member 59; finally, the drive device 1 43 and the drive device 2 44 are extended, and the sliding plate 11 located below the lower pressure head 65 is moved upward, returning to the state of step ①. The user can select the running speed of the drive device 1 43 and the drive device 2 44 according to the actual situation to prevent the sliding plate 11 from colliding with the lower pressure head 65. When the liquid absorbent 59 absorbs a large amount of liquid, the liquid passes through the through hole 3 62 into the cavity. A hose can be installed in the through hole 4 63, and the liquid in the cavity is discharged from the hose to prevent the liquid in the liquid absorbent 59 from dripping onto the sliding plate 11.

[0063] In order to prevent the sliding plate 11 from colliding with the filling head 64 or the pressing head 65, the mounting frame 10 has through holes 67 on both sides for the support rod 27 to move up and down and horizontally. The through holes 67 are connected to the slide slot 13. The flanges 66 are fixedly assembled on the cross bars 48 and the cross bars 52, and the flanges 66 are located in the through holes 67. When the chain plate 5 between the filling head 64 and the pressing head 65 needs to be repaired, the driving device 1 43 and the driving device 3 45 are synchronously extended, and the flanges 66 press against the top wall of the through holes 67, and the mounting frame 10 is lifted vertically upward, and the distance between the sliding plate 11 and the chain plate 5 is increased, so that the chain plate 5 can be easily repaired.

[0064] A production method of fresh stewed donkey-hide gelatin soup, such as Fig.17 Said, comprising the following steps:

[0065] ① Mix and stir donkey-hide gelatin, rice wine, brown sugar, oligofructose syrup and water until the donkey-hide gelatin is completely melted to form melted donkey-hide gelatin liquid. At the same time, add water to the soaked white fungus and boil it, filter it to form white fungus liquid, add the white fungus liquid to the melted donkey-hide gelatin liquid, mix well to obtain donkey-hide gelatin soup;

[0066] ② Place the filling container 6 into the placement tank 7, the conveyor belt 2 transports the filling container 6 from the filling device 3 to the sealing device 4, the filling device 3 fills the donkey-hide gelatin soup into the filling container 6, the sealing device 4 seals the filled filling container 6, and takes the sealed filling container 6 out of the placement tank 7;

[0067] ③ Carry out filling quantity inspection on the sealed filling container 6;

[0068] ④ Sterilization treatment: place the qualified filling container 6 in an environment of 122°C for 43 minutes;

[0069] ⑤ After the sterilized filling container 6 is packaged to a qualified level, it is put into storage.

Claims

1. A production device for fresh stewed donkey-hide gelatin soup, characterized in that: The invention comprises a frame (1), a conveyor belt (2), a filling device (3), a sealing device (4) and an anti-splash mechanism. The conveyor belt (2) is mounted on the frame (1). The conveyor belt (2) is provided with a plurality of placement grooves (7) for horizontally placing filling containers (6). The filling device (3) comprises a filling head (64). The sealing device (4) comprises a pressing head (65). Both the filling head (64) and the pressing head (65) are located above the conveyor belt (2). The conveyor belt (2) is used to transport the filling container (6) from below the filling head (64) to below the pressing head (65). The anti-splash mechanism comprises a sliding plate (11) and a first drive component and a second drive component. The sliding plate (11) is provided in plurality and is located between the filling head (64) and the pressing head (65). During operation, the filling container (6) that has been filled is closed. The driving component 1 is used to drive the sliding plate (11) below the filling head (64) away from the opening of the filling container (6). The driving component 2 is used to drive the sliding plate (11) away from the opening of the filling container (6) to close the filling container (6) below the filling head (64). The sliding plate (11) is divided into two layers, upper and lower, parallel to each other. The lower sliding plate (11) closes the filling container (6) that has been filled. The driving component 1 includes a vertically driven driving device 1 (43) and a horizontally driven driving device 2 (44). The driving component 2 includes a vertically driven driving device 3 (45). The fixed ends of the driving device 1 (43) and the driving device 2 (44) are fixedly assembled on the frame (1). The driving device 1 (43) ) is fixedly connected to the output end of the drive device 2 (44) and the cross bar 2 (50), and the output end of the drive device 3 (45) is fixedly connected to the cross bar 4 (54). Each sliding plate (11) has a through hole 1 (29) extending in the same direction as the horizontal movement direction of the conveyor belt (2). The drive device 2 (44) is used to drive the upper sliding plate (11) to slide horizontally, so that the sliding plate (11) with the shortest distance from the filling head (64) is sleeved on the cross bar 4 (54). The conveyor belt (2) runs so that the sliding plate (11) with the shortest distance from the lower pressure head (65) is sleeved on the cross bar 2 (50). The drive device 2 (44) is also used to push the sliding plate (11) sleeved on the cross bar 2 (50) away from the cross bar 2 (50) in a direction away from the lower pressure head (65). Two adjacent sliding plates (11) are detachably connected via a connecting mechanism. The connecting assembly comprises a rotating rod (36) and a protruding rod (37). The rotating rod (36) is rotatably assembled in the sliding plate (11). The axis of the rotating rod (36) is parallel to the horizontal transmission direction of the conveyor belt (2). The protruding rod (37) is fixed to one end of the rotating rod (36) protruding from the sliding plate (11). The side of the sliding plate (11) away from the protruding rod (37) has a second card groove (30) adapted to the protruding rod (37). When the protruding rod (37) rotates to a predetermined angle, it disengages from the second card groove (30) on the adjacent sliding plate (11). The connecting assembly also comprises a second moving rod (34). The second moving rod (34) is slidably assembled in the sliding plate (11) along a guide direction perpendicular to the horizontal transmission direction of the conveyor belt (2).When one end of the second moving rod (34) is located in the first through hole (29) and the second cross bar (50) or the fourth cross bar (54) is located in the first through hole (29), the second moving rod (34) moves toward the rotating rod (36) to drive the protruding rod (37) to rotate to a predetermined angle.

2. The production device for fresh-stewed donkey-hide gelatin soup according to claim 1, characterized in that: The sliding plate (11) comprises a horizontal plate one (18) and a horizontal plate two (19) placed vertically. A horizontal plate three (22) is provided on the bottom surface of the horizontal plate one (18). The horizontal plate three (22) is used to close the opening of the filling container (6). The horizontal plate two (19) is provided with a through hole three (25) for the horizontal plate three (22) to move up and down. A tension spring (20) that can be extended and retracted in the vertical direction is provided between the horizontal plate one (18) and the horizontal plate two (19). The two ends of the tension spring (20) are respectively fixedly connected to the horizontal plate one (18) and the horizontal plate two (19).

3. The production device for fresh-stewed donkey-hide gelatin soup according to claim 2, characterized in that: A convex plate (23) is provided on the bottom surface of the third horizontal plate (22), the outer peripheral surface of the convex plate (23) is a spherical arc surface convex downwardly, and the top surface of the convex plate (23) is the same size and shape as the inner top surface of the filling container (6).

4. The production device for fresh-stewed donkey-hide gelatin soup according to claim 3, characterized in that: A positioning rod (21) is provided on the bottom surface of the second transverse plate (19); the conveyor belt (2) includes a plurality of chain plates (5), each of which is provided with a positioning hole (8) adapted to the positioning rod (21); the driving assembly (2) also includes a driving device (46), the fixed end of the driving device (46) is fixedly assembled on the output end of the driving device (45), and the output end of the driving device (45) is used to drive the sliding plate (11) located at the lower layer to move from the filling head (64) to the downward pressure head (65). A hook (56) is fixedly connected to the movable rod (34), and a slot (57) adapted to the hook (56) is provided on the output end of the driving device (46). When the cross bar (54) is inserted into the through hole (29), the hook (56) is located in the slot (57) and the sliding plate (11) closest to the filling head (64) moves synchronously with the output end of the driving device (45). When the cross bar (54) is separated from the through hole (29), the hook (56) moves out of the slot (57).

5. The production device for fresh-stewed donkey-hide gelatin soup according to claim 4, characterized in that: A cleaning structure is provided between the upper and lower sliding plates (11), and the cleaning structure comprises a driving device five (58) and a liquid absorbing member (59). The driving device five (58) is fixedly mounted on the mounting frame (10), and a fixing frame (60) is fixedly provided at the output end of the driving device five (58), wherein the fixing frame (60) has a cavity inside, and the liquid absorbing member (59) is horizontally arranged on the fixing frame (60), and the driving device is used to drive the liquid absorbing member (59) to contact or move away from the convex plate (23) located directly below the lower pressure head (65), and a side of the top surface of the liquid absorbing member (59) close to the convex plate (23) is an inclined surface (61), and the height of the inclined surface (61) gradually decreases along the direction in which the liquid absorbing member (59) moves toward the convex plate (23), and a through hole three (62) communicating with the cavity is provided on the fixing frame (60) located below the liquid absorbing member (59).

6. The production device for fresh-stewed donkey-hide gelatin soup according to claim 5, characterized in that: The mounting frame (10) is provided with a fifth through hole (67), and output ends of the drive device (43) and the drive device (45) are fixedly provided with flanges (66), which are located in the fifth through hole (67).

Citation Information

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