Sweet potato sheet jelly making machine for processing sweet potato sheet jelly

By designing a flipped protective barrel and a dual-axis motor transmission combination in the sweet potato peeling equipment, the problem of inconvenient disassembly and uneven mixing of the equipment is solved, uniform mixing and low residue of the powder slurry are achieved, and the quality of the powder slurry is improved.

CN223053854UActive Publication Date: 2025-07-04YINJIANG YIREN FOOD CO LTD
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Patent Information

Application Number
CN202421785457.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-07-04
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing sweet potato flour peeling equipment is not convenient to disassemble and clean during use, and the rice mud barrel design causes the rice mud to be unable to be fully mixed, which cannot ensure the uniform concentration of the slurry, which affects the quality of the powder processing.

Method used

A leather making machine for sweet potato paste processing including slurry storage barrel, protective barrel, telescopic cylinder, rotary shaft and mixing rack is designed. The protective barrel flip is controlled to facilitate the disassembly of the mixing rack by controlling the telescopic cylinder. The mixing rack is provided with a stirring effect of different torques and speeds, and combined with a spiral mixing rack to achieve full mixing and discharge of the slurry.

Benefits of technology

It realizes convenient disassembly and cleaning of the mixing rack, ensures uniform mixing of the powder slurry, reduces slurry residues, improves the quality consistency of the finished powder product, and prevents slurry from contamination and splashing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sweet potato sheet jelly production, and particularly discloses a sheet jelly making machine for sweet potato sheet jelly processing, which comprises a sheet jelly making machine main body and a slurry storage barrel arranged at the front end of the sheet jelly making machine main body, the upper side of the slurry storage barrel is hinged with a protection barrel through a pin shaft, and one side of the slurry storage barrel close to the pin shaft is rotatably provided with a telescopic cylinder; the opening and closing control between the protection barrel and the slurry storage barrel is realized through the telescopic cylinder, namely when the stirring frame needs to be maintained and deeply cleaned, the protection barrel can be directly controlled to turn over through the telescopic cylinder, so that the protection barrel is gradually moved away from the upper part of the slurry storage barrel, and at the moment, the upper side of the rotating shaft loses the pressing of the protection barrel; the rotating shaft and the stirring frame can be conveniently taken out from the interior of the slurry storage barrel, the effect of conveniently disassembling the stirring frame is achieved, and meanwhile, due to the arrangement of the two transmission sets, personnel can select the stirring frame according to specific use requirements.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of sweet potato vermicelli production, in particular to a vermicelli making machine for sweet potato vermicelli processing. Background Technique

[0002] Sweet potatoes are high-yield crops and can be processed into various foods, such as making sweet potato vermicelli from sweet potatoes; when the current sweet potato vermicelli making equipment is in use, the sweet potato slurry is supplied through a slurry feeding device. The Chinese patent with the application number: 202122644551.X discloses that the vermicelli slurry feeding device includes a rice slurry bucket, the lower part of the rice slurry bucket is a conical hopper, the slurry outlet at the bottom of the conical hopper is connected to an output connecting pipe, and the output connecting pipe is respectively connected to a return slurry pipe and a rice slurry outlet pipe through a three-way joint. The return slurry outlet of the return slurry pipe is communicated with the rice slurry bucket; the rice slurry in the conical hopper is pumped into the output connecting pipe by a slurry pump.

[0003] Although the above technology has a certain effect of supplying sweet potato slurry to the sweet potato vermicelli making machine during use, in the actual use process, it is not only not convenient to disassemble and clean, but also because there is no stirring component inside, and the rice slurry bucket is large at the top and small at the bottom, so that the rice slurry at the upper end of the rice slurry bucket cannot be fully mixed, resulting in the inability to fully ensure the full mixing of the rice slurry in the entire rice slurry bucket when the above technology is used. That is, when using the vermicelli making machine that supplies slurry by the above technology for vermicelli processing, it is impossible to ensure that the concentration of the supplied slurry is uniform; therefore, in order to solve the above technical problems, we propose a vermicelli making machine for sweet potato vermicelli processing. Content of the Utility Model

[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and to propose a vermicelli making machine for sweet potato vermicelli processing.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A vermicelli making machine for sweet potato vermicelli processing includes a slurry storage bucket. The lower side of the slurry storage bucket is connected to a vermicelli making machine main body through a slurry outlet pipe with a valve. The upper side of the slurry storage bucket is hinged with a protection bucket through a pin shaft. One side of the slurry storage bucket close to the pin shaft is rotatably provided with a telescopic cylinder, and the output end of the telescopic cylinder is rotatably connected to the protection bucket. Accommodating grooves are provided at the joints of the slurry storage bucket and the protection bucket, and a bearing is jointly clamped through the accommodating grooves. A rotating shaft is jointly installed in the two bearings. A stirring frame is provided on the rod body of the rotating shaft located inside the slurry storage bucket, and driven wheels are provided on the rod bodies of the rotating shaft located outside the slurry storage bucket. A double-shaft motor is installed on the outer wall of the slurry storage bucket, and a driving wheel is provided at the output end of the double-shaft motor. The driving wheel is connected to the driven wheel through a belt.

[0007] Preferably, linkage shafts are installed at the output ends of the biaxial motors. The other ends of the linkage shafts are connected to the driving wheels. A through hole is fixed on the outer side of the driving wheel, and a mating pin is provided at the end of the linkage shaft corresponding to the through hole.

[0008] Preferably, the diameters of the two driving wheels and the two driven wheels are not equal, and the driving wheel with a large diameter, the driven wheel with a small diameter, the driving wheel with a small diameter and the driven wheel with a large diameter form two sets of transmission groups.

[0009] Preferably, there are two stirring frames. The outer ring surfaces of the stirring frames are attached to the inner walls of the slurry storage barrel and the protection barrel, and the stirring frames are spiral.

[0010] Preferably, a feeding port is provided on the upper side of the barrel body of the protection barrel, and a sealing cover is provided in the feeding port.

[0011] Preferably, the cover body of the sealing cover is a transparent cover body, and an elastic restraint belt is provided on the outer side of the sealing cover.

[0012] Preferably, a chuck is provided on the outer side of the bearing, and the slurry storage barrel and the protection barrel are provided with mating card slots corresponding to the chuck.

[0013] A skin making machine for sweet potato starch noodle processing proposed by the present utility model has the beneficial effects as follows:

[0014] 1: In the present utility model, since the opening and closing of the protection barrel and the slurry storage barrel are controlled by the telescopic cylinder, that is, when maintenance and in-depth cleaning of the stirring frame are required, the protection barrel can be directly controlled to flip by the telescopic cylinder, so that the protection barrel gradually moves away from above the slurry storage barrel. At this time, the upper side of the rotating shaft loses the suppression of the protection barrel, and the rotating shaft and the stirring frame can be conveniently taken out from the inside of the slurry storage barrel, that is, the effect of facilitating the disassembly of the stirring frame is achieved. At the same time, through the setting of the two sets of transmission groups, the biaxial motor can provide two driving forces for the stirring frame, namely low speed and large torque, and high speed and small torque, so that the personnel can select according to specific usage requirements. Moreover, since the outer ring surface of the stirring frame is attached to the inner walls of the slurry storage barrel and the protection barrel, the stirring frame can fully mix the slurry inside the entire slurry storage barrel, that is, effectively ensuring that the concentration of the slurry flowing into the main body of the skin making machine from the slurry storage barrel is uniform, thus ensuring the quality consistency of the final starch noodle product.

[0015] 2: In the present utility model, since the stirring frame is spiral, it is possible to control the rotation direction of the stirring frame, so that when the stirring frame rotates, it can push the slurry inside the slurry storage barrel towards the slurry outlet pipe in the middle, thus facilitating the full discharge of the slurry inside the slurry storage barrel, that is, reducing the residue amount of sweet potato slurry inside the slurry storage barrel; the setting of the sealing cover facilitates the sealing of the feeding port of the protection barrel, so as to prevent the entry of external dust and the like into the protection barrel during non-feeding time, resulting in the contamination of sweet potato slurry; the setting of the restraint belt facilitates the prevention of the accidental opening of the sealing cover, resulting in the splashing of sweet potato slurry to the outside when the stirring frame rotates. Description of the Drawings

[0016] Figure 1 It is a perspective view schematic diagram of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model;

[0017] Figure 2 It is another perspective view schematic diagram of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model;

[0018] Figure 3 It is a schematic diagram of the opening of the protection barrel of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model;

[0019] Figure 4 It is a schematic diagram of the cooperation between the stirring frame and the slurry storage barrel of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model;

[0020] Figure 5 It is a schematic diagram of the cooperation between the transmission group and the stirring frame of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model;

[0021] Figure 6 It is a schematic diagram of the cooperation between the linkage shaft and the driving wheel of a skin-making machine for sweet potato vermicelli processing proposed by the present utility model.

[0022] In the figure: 1, main body of the skin-making machine; 2, slurry storage barrel; 3, protection barrel; 4, telescopic cylinder; 5, rotating shaft; 6, stirring frame; 7, driven wheel; 8, double-shaft motor; 9, driving wheel; 10, belt; 11, linkage shaft; 12, sealing cover; 13, restraint belt; 14, chuck. Specific Embodiments

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.

[0024] Embodiment 1

[0025] Refer to Figure 1-6, A skin-making machine for processing sweet potato starch noodles, including a slurry storage barrel 2. The lower side of the slurry storage barrel 2 is connected to the main body 1 of the skin-making machine through a slurry outlet pipe with a valve. The main body 1 of the skin-making machine is a prior art, which includes components for steaming and cooling the starch noodles, that is, the slurry inside the slurry storage barrel 2 is successively fed into the steaming component for steaming and then enters the cooling component for cooling after steaming, thus completing the production of sweet potato starch noodles. A protective barrel 3 is hinged to the upper side of the slurry storage barrel 2 through a pin shaft. A telescopic cylinder 4 is rotatably provided on one side of the slurry storage barrel 2 close to the pin shaft. The output end of the telescopic cylinder 4 is rotatably connected to the protective barrel 3. Accommodating grooves are provided at the joints of the slurry storage barrel 2 and the protective barrel 3, and bearings are jointly clamped through the accommodating grooves. A rotating shaft 5 is jointly installed in the two bearings. A stirring frame 6 is provided on the rod body of the rotating shaft 5 located inside the slurry storage barrel 2. Driven wheels 7 are provided on the rod bodies of the rotating shaft 5 located outside the slurry storage barrel 2. A double-shaft motor 8 is installed on the outer wall of the slurry storage barrel 2. A driving wheel 9 is provided at the output end of the double-shaft motor 8. The driving wheel 9 is connected to the driven wheel 7 through a belt 10.

[0026] Embodiment 2

[0027] Refer to Figure 1-6 , in the case that other parts are the same as those in Embodiment 1, the difference between this embodiment and Embodiment 1 lies in:

[0028] Linkage shafts 11 are installed at the output ends of the double-shaft motor 8. The other ends of the linkage shafts 11 are connected to the driving wheels 9. A through-hole is fixed on the outside of the driving wheel 9. Corresponding to the through-hole, pins are provided at the ends of the linkage shafts 11. The setting of the through-hole and the pins enables personnel to control which driving wheel 9 the double-shaft motor 8 drives by changing the position of the pins. For example, when the pin is inserted into the driving wheel 9 with a smaller diameter, at this time, the double-shaft motor 8 can only drive the driven wheel 7 through the driving wheel 9 with a smaller diameter. The other driving wheel 9 with a larger diameter is rotatably connected to the double-shaft motor 8, that is, the double-shaft motor 8 and the driving wheel 9 with a larger diameter are in an idling state; the diameters of the two driving wheels 9 and the two driven wheels 7 are not equal, and the driving wheel 9 with a larger diameter and the driven wheel 7 with a smaller diameter, as well as the driving wheel 9 with a smaller diameter and the driven wheel 7 with a larger diameter, form two transmission groups. Through the setting of the two transmission groups, when the device is making sweet potato starch noodles, according to specific usage requirements, such as when it is necessary to stir the slurry inside the slurry storage barrel 2 to prevent it from settling, the transmission group of the driving wheel 9 with a smaller diameter driving the driven wheel 7 with a larger diameter can be adopted. That is, at this time, it is a speed-reducing transmission, which amplifies the torque of the double-shaft motor 8 and reduces the rotation speed of the stirring frame 6, so that the double-shaft motor 8 can conveniently drive the stirring frame 6 to rotate. On the contrary, when it is necessary to clean the inside of the slurry storage barrel 2, the double-shaft motor 8 adopts the method of the driving wheel 9 with a larger diameter driving the driven wheel 7 with a smaller diameter. This transmission group reduces the torque output by the double-shaft motor 8 but amplifies the rotation speed provided by the double-shaft motor 8, thereby increasing the rotation speed of the stirring frame 6, so as to facilitate the flushing and separation of the residual slurry adhered to the inner wall of the slurry storage barrel 2 and the stirring frame 6 itself.

[0029] There are two stirring frames 6. The outer ring surface of the stirring frame 6 is in contact with the inner walls of the slurry storage barrel 2 and the protection barrel 3. The stirring frame 6 is spiral. Since the stirring frame 6 is spiral, it is possible to control the rotation direction of the stirring frame 6, so that when the stirring frame 6 rotates, it can push the slurry inside the slurry storage barrel 2 towards the slurry outlet pipe in the middle, thus facilitating the full discharge of the slurry inside the slurry storage barrel 2, that is, reducing the residual amount of sweet potato slurry inside the slurry storage barrel 2; A feeding port is provided on the upper side of the barrel body of the protection barrel 3, and a sealing cover 12 is provided inside the feeding port. The setting of the sealing cover 12 facilitates the sealing of the feeding port of the protection barrel 3 to prevent external dust and the like from entering the inside of the protection barrel 3 during non-feeding times, resulting in the pollution of sweet potato slurry; The cover body of the sealing cover 12 is a transparent cover body, and an elastic restraint belt 13 is provided on the outside of the sealing cover 12. The setting of the restraint belt 13 facilitates the prevention of the accidental opening of the sealing cover 12, resulting in the phenomenon that the sweet potato slurry splashes to the outside when the stirring frame 6 rotates; A chuck 14 is provided on the outside of the bearing. The slurry storage barrel 2 and the protection barrel 3 are provided with matching card slots corresponding to the chuck 14. The setting of the chuck 14 makes the combination between the rotating shaft 5 and the slurry storage barrel 2 and the protection barrel 3 more firm, and sealing rings are provided at each joint to further improve the sealing performance.

[0030] Principle of use and advantages: During the use of this utility model, sweet potato starch slurry is stored in the slurry storage barrel 2. Subsequently, the slurry enters the head end of the skin-making machine main body 1 through the slurry outlet pipe, that is, the slurry enters the skin-scalding component of the skin-making machine main body 1. Here, the slurry is spread on the conveyor belt and then scalded, that is, it is high-temperature steamed by the skin-making machine main body 1, so that the spread slurry gradually solidifies. At this time, the spread solidified slurry is a semi-finished product of sweet potato starch skin. Subsequently, with the movement of the conveyor belt, the semi-finished starch skin is transferred to the tail end of the skin-making machine main body 1, that is, the cooling component. At this time, the semi-finished starch skin is cooled, and finally it is cooled and formed, thus completing the skin-making process of sweet potato starch skin; and during the above process, when it is necessary to drive the stirring frame 6 to stir the slurry inside the slurry storage barrel 2 to prevent it from precipitating, a transmission group with a small-diameter driving wheel 9 driving a large-diameter driven wheel 7 can be adopted. Thus, the double-shaft motor 8 can relatively easily drive the stirring frame 6 to rotate. And when it is necessary to flush the inside of the slurry storage barrel 2, the double-shaft motor 8 drives the small-diameter driven wheel 7 through the large-diameter driving wheel 9, thereby increasing the rotation speed of the stirring frame 6. Furthermore, the slurry remaining on the stirring frame 6 can be thrown out, that is, it is convenient for the stirring frame 6 to drive clean water to flush the inside of the slurry storage barrel 2 and the protective barrel 3; at the same time, since the opening and closing of the protective barrel 3 and the slurry storage barrel 2 are controlled by the telescopic cylinder 4, that is, when it is necessary to maintain and deeply clean the stirring frame 6, the telescopic cylinder 4 can directly control the protective barrel 3 to turn over, so that the protective barrel 3 gradually moves away from above the slurry storage barrel 2. At this time, the upper side of the rotating shaft 5 loses the pressing of the protective barrel 3, and the rotating shaft 5 together with the stirring frame 6 can be conveniently taken out from the inside of the slurry storage barrel 2, that is, the effect of facilitating the disassembly of the stirring frame 6 is achieved.

[0031] It should be further noted that the arrangement of the through holes and the pins enables personnel to control the rotation of the large-diameter or small-diameter driving wheel 9 driven by the double-shaft motor 8 by changing the position of the pins. Through the arrangement of the two transmission groups, the torque of the double-shaft motor 8 is amplified and the rotation speed of the stirring frame 6 is reduced, that is, the double-shaft motor 8 can easily drive the stirring frame 6 to rotate. Or the double-shaft motor 8 adopts the method of driving the small-diameter driven wheel 7 with the large-diameter driving wheel 9. This transmission group reduces the torque output by the double-shaft motor 8 but amplifies the rotation speed provided by the double-shaft motor 8, so as to increase the rotation speed of the stirring frame 6, facilitating the flushing and separation of the residual slurry adhering to the inner wall of the slurry storage barrel 2 and the stirring frame 6 itself; Since the stirring frame 6 is spiral, it is possible to control the rotation direction of the stirring frame 6, so that the stirring frame 6 can push the slurry inside the slurry storage barrel 2 towards the central slurry outlet pipe when rotating, thus facilitating the full discharge of the slurry inside the slurry storage barrel 2, that is, reducing the residual amount of sweet potato slurry inside the slurry storage barrel 2; The setting of the sealing cover 12 facilitates the sealing of the feeding port of the protection barrel 3, preventing dust and the like from entering the protection barrel 3 during non-feeding times and causing pollution to the sweet potato slurry; The setting of the restraint belt 13 facilitates the prevention of the accidental opening of the sealing cover 12, which may cause the sweet potato slurry to splash outside when the stirring frame 6 rotates.

[0032] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A skin-making machine for processing sweet potato starch noodles, comprising a slurry storage barrel (2), the lower side of the slurry storage barrel (2) is connected to a skin-making machine main body (1) through a slurry outlet pipe with a valve, and it is characterized in that, On the upper side of the slurry storage barrel (2), a protective barrel (3) is hinged through a pin shaft. A telescopic cylinder (4) is rotatably arranged on one side of the slurry storage barrel (2) close to the pin shaft. The output end of the telescopic cylinder (4) is rotatably connected to the slurry storage barrel (2). Accommodating grooves are provided at the joints of the slurry storage barrel (2) and the protective barrel (3), and bearings are jointly clamped through the accommodating grooves. A rotating shaft (5) is jointly installed in the two bearings. A stirring frame (6) is arranged on the rod body of the rotating shaft (5) located inside the slurry storage barrel (2). Driven wheels (7) are arranged on the rod bodies of the rotating shaft (5) located outside the slurry storage barrel (2). A double-shaft motor (8) is installed on the outer wall of the slurry storage barrel (2). The output end of the double-shaft motor (8) is provided with a driving wheel (9). The driving wheel (9) is connected to the driven wheel (7) through a belt (10).

2. The skin-making machine for processing sweet potato starch noodles according to claim 1, characterized in that, Linkage shafts (11) are installed at the output ends of the double-shaft motor (8). The other ends of the linkage shafts (11) are connected to the driving wheels (9). A through-hole is fixed on the outside of the driving wheel (9). The ends of the linkage shafts (11) are provided with matching pins corresponding to the through-holes.

3. The skin-making machine for processing sweet potato starch noodles according to claim 1, characterized in that, The diameters of the two driving wheels (9) and the two driven wheels (7) are not equal, and the large-diameter driving wheel (9) and the small-diameter driven wheel (7), as well as the small-diameter driving wheel (9) and the large-diameter driven wheel (7) form two sets of transmission groups.

4. The skin-making machine for sweet potato vermicelli processing according to claim 1, characterized in that, There are two stirring frames (6). The outer ring surfaces of the stirring frames (6) are in contact with the inner walls of the slurry storage barrel (2) and the protective barrel (3). The stirring frames (6) are spiral-shaped.

5. A skin-making machine for processing sweet potato starch noodles according to claim 1, characterized in that, A feeding port is provided on the upper side of the barrel body of the protective barrel (3), and a sealing cover (12) is arranged in the feeding port.

6. The skin-making machine for processing sweet potato starch noodles according to claim 5, characterized in that, The cover body of the sealing cover (12) is a transparent cover body, and an elastic restraint belt (13) is arranged on the outside of the sealing cover (12).

7. A skin-making machine for processing sweet potato starch noodles according to claim 1, characterized in that, A chuck (14) is arranged on the outside of the bearing. The slurry storage barrel (2) and the protective barrel (3) are provided with matching card slots corresponding to the chuck (14).

Citation Information

Patent Citations

  • Sheet jelly pulping device

    CN216202554U