Batch cooling device for daylily processing
By combining the design of conveyor belt, sprayer, agitator and sliding plate, the problems of long cooling time and unevenness of daylily cooling device are solved, and a fast and uniform cooling effect is achieved, which improves the taste and shelf life of daylily.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-03-27
AI Technical Summary
Existing daylily cooling devices suffer from problems such as long cooling time, uneven cooling, and difficulty in precisely controlling the cooling rate, which affect the taste and shelf life of daylilies.
A batch cooling device including a conveyor belt, a sprayer, a stirrer, and a sliding plate was designed. The sprayer sprays cold water, the stirrer breaks up the daylilies, and the sliding plate presses down on the daylilies to ensure uniform immersion. Combined with the initial cooling by the fan and the removal of moisture by vibration, rapid and uniform cooling is achieved.
This improves cooling efficiency and uniformity, ensuring that all parts of the daylily are fully cooled, thus enhancing the taste and shelf life of the daylily.
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Figure CN224050792U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food processing field especially, relates to a batch cooling device for day lily processing. BACKGROUND
[0002] The batch cooling device for day lily processing is a device used for rapidly and uniformly cooling day lilies after heat treatment (such as fixation, cooking or drying). This device is mainly applied in the field of food processing, especially in the preliminary processing of agricultural products.
[0003] In the current processing technology of instant day lilies, natural cooling or cold water soaking is usually used for cooling treatment after the cooking step is completed. However, these two traditional cooling methods have certain limitations. Specifically, the natural cooling process usually takes a long time and it is difficult to ensure uniform cooling of all parts of the day lilies, which may result in insufficient cooling in the areas with higher internal temperature of the day lilies, thereby affecting the taste and shelf life of the final day lilies. Similarly, although cold water soaking can accelerate the cooling process of the day lilies to some extent, it is difficult to accurately control the cooling rate and end temperature of the day lilies, which may cause excessive cooling in some areas and thus damage the texture and flavor of the day lilies.
[0004] In view of the above problems, a batch cooling device for day lily processing is needed. SUMMARY
[0005] In order to overcome the shortcomings that the natural cooling process usually takes a long time and it is difficult to ensure uniform cooling of all parts of the day lilies, which may result in insufficient cooling in the areas with higher internal temperature of the day lilies, and that cold water soaking can accelerate the cooling process of the day lilies to some extent but it is difficult to accurately control the cooling rate and end temperature of the day lilies, the utility model provides a batch cooling device for day lily processing.
[0006] The utility model discloses a technical scheme: a batch cooling device for day lily processing, including shell, drain, motor, first conveyer belt, second conveyer belt, connecting pipe, connector, sprayer, rotating rod, first flat belt, first fixed link, rotating sleeve, second flat belt, belt pulley, agitator and soaking assembly, and the shell front right side is connected with the drain, and the shell rear right side is installed with the motor, and the shell inside right side is provided with the first conveyer belt, and the motor output shaft front end penetrates the shell and is fixedly connected with the first conveyer belt, and the shell inside left side is provided with the second conveyer belt, and the shell upper rear side is connected with the connecting pipe, and the connecting pipe right end is connected with the connector, and the connecting pipe front side is installed with a plurality of sprayers, and the shell front right side is rotatably connected with the rotating rod, and the shell front side is connected with the first fixed link, and the first fixed link is rotatably connected with the rotating sleeve, and the rotating rod is connected with the rotating sleeve with the first flat belt, and the inside of the shell is connected with the agitator with left and right symmetry, and the two agitators are all provided with the belt pulley, and the two belt pulleys are connected with two second flat belts between the rotating sleeve, and the shell is provided with the soaking assembly.
[0007] In addition, it is particularly preferred that the soaking assembly comprises a second fixed link, a guide rod, a sliding plate, an elastic member and a connecting rod, the two agitators are both connected with the second fixed link, the front and rear of the shell outside are both connected with the guide rod, the front and rear of the two guide rods are both slidably connected with the sliding plate, the two sliding plates are both connected with the elastic member between the corresponding guide rods, the front and rear of the two sliding plates are both connected with the connecting rod, and the plurality of second fixed links are in contact with the plurality of connecting rods.
[0008] In addition, it is particularly preferred that the soaking assembly comprises a second fixed link, a guide rod, a sliding plate, an elastic member and a connecting rod, the two agitators are both connected with the second fixed link, the front and rear of the shell outside are both connected with the guide rod, the front and rear of the two guide rods are both slidably connected with the sliding plate, the two sliding plates are both connected with the elastic member between the corresponding guide rods, the front and rear of the two sliding plates are both connected with the connecting rod, and the plurality of second fixed links are in contact with the plurality of connecting rods.
[0009] In addition, it is particularly preferred that the soaking assembly comprises a second fixed link, a guide rod, a sliding plate, an elastic member and a connecting rod, the two agitators are both connected with the second fixed link, the front and rear of the shell outside are both connected with the guide rod, the front and rear of the two guide rods are both slidably connected with the sliding plate, the two sliding plates are both connected with the elastic member between the corresponding guide rods, the front and rear of the two sliding plates are both connected with the connecting rod, and the plurality of second fixed links are in contact with the plurality of connecting rods.
[0010] In addition, it is particularly preferred that the soaking assembly comprises a second fixed link, a guide rod, a sliding plate, an elastic member and a connecting rod, the two agitators are both connected with the second fixed link, the front and rear of the shell outside are both connected with the guide rod, the front and rear of the two guide rods are both slidably connected with the sliding plate, the two sliding plates are both connected with the elastic member between the corresponding guide rods, the front and rear of the two sliding plates are both connected with the connecting rod, and the plurality of second fixed links are in contact with the plurality of connecting rods.
[0011] In addition, it is particularly preferred that the soaking assembly comprises a second fixed link, a guide rod, a sliding plate, an elastic member and a connecting rod, the two agitators are both connected with the second fixed link, the front and rear of the shell outside are both connected with the guide rod, the front and rear of the two guide rods are both slidably connected with the sliding plate, the two sliding plates are both connected with the elastic member between the corresponding guide rods, the front and rear of the two sliding plates are both connected with the connecting rod, and the plurality of second fixed links are in contact with the plurality of connecting rods.
[0012] The utility model discloses a technical scheme: a batch cooling device for day lily processing, including shell, drain, motor, first conveyer belt, second conveyer belt, connecting pipe, connector, sprayer, rotating rod, first flat belt, first fixed link, rotating sleeve, second flat belt, belt pulley, agitator and soaking assembly, and the shell front right side is connected with the drain, and the shell rear right side is installed with the motor, and the shell inside right side is provided with the first conveyer belt, and the motor output shaft front end penetrates the shell and is fixedly connected with the first conveyer belt, and the shell inside left side is provided with the second conveyer belt, and the shell upper rear side is connected with the connecting pipe, and the connecting pipe right end is connected with the connector, and the connecting pipe front side is installed with a plurality of sprayers, and the shell front right side is rotatably connected with the rotating rod, and the shell front side is connected with the first fixed link, and the first fixed link is rotatably connected with the rotating sleeve, and the rotating rod is connected with the rotating sleeve with the first flat belt, and the inside of the shell is connected with the agitator with left and right symmetry, and the two agitators are all provided with the belt pulley, and the two belt pulleys are connected with two second flat belts between the rotating sleeve, and the shell is provided with the soaking assembly. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0014] Figure 2 This is a three-dimensional structural diagram of the first conveyor belt, the second conveyor belt, and the connecting pipe of this utility model.
[0015] Figure 3 This is a three-dimensional structural diagram of the first flat belt, the first fixing rod, and the pulley of this utility model.
[0016] Figure 4 This is a cross-sectional view of the protective shell of this utility model.
[0017] Figure 5 This is a three-dimensional structural diagram of the guide rod, sliding plate, and elastic element of this utility model.
[0018] The above-mentioned figures include the following reference numerals: 1. outer casing, 101. drain outlet, 102. protective pad, 2. motor, 21. protective shell, 3. first conveyor belt, 4. second conveyor belt, 5. connecting pipe, 501. connector, 6. sprayer, 7. rotating rod, 8. first flat belt, 9. first fixed rod, 10. rotating sleeve, 11. second flat belt, 111. pulley, 12. agitator, 13. second fixed rod, 14. guide rod, 15. sliding plate, 16. elastic element, 17. connecting rod, 18. fixed frame, 19. fan, 20. vibration generator. Detailed Implementation
[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.
[0020] Example: A batch cooling device for daylily processing, such as... Figures 1-5As shown, including the shell 1, drain 101, protective pad 102, motor 2, protective shell 21, the first conveying belt 3, the second conveying belt 4, connecting pipe 5, connecting head 501, sprayer 6, rotating rod 7, the first flat belt 8, the first fixed rod 9, rotating sleeve 10, the second flat belt 11, pulley 111, agitator 12, fixed frame 18, fan 19, vibration generator 20 and soaking assembly, the shell 1 front right side is connected with drain 101, the shell 1 bottom is connected with protective pad 102, protective pad 102 plays the role of shock absorption and antiskid, the shell 1 rear right side is installed with motor 2, the shell 1 rear right side is equipped with protective shell 21, protective shell 21 is located at the outside of motor 2, protective shell 21 can protect motor 2, the shell 1 inside right side is provided with the first conveying belt 3, the first conveying belt 3 is used to transport day lily from right to left, the motor 2 output shaft front end penetrates the shell 1 and is fixedly connected with the first conveying belt 3, the shell 1 inside left side is provided with the second conveying belt 4, the second conveying belt 4 is used to further transport the cooled day lily to next process, the shell 1 upper rear side is connected with connecting pipe 5, the connecting pipe 5 right end is connected with connecting head 501, the connecting pipe 5 front side is installed with a plurality of sprayers 6, sprayer 6 is used to evenly sprinkle cold water on the first conveying belt 3, and day lily is cooled and handled, the shell 1 front right side is rotatably connected with rotating rod 7, the shell 1 front side is connected with the first fixed rod 9, the first fixed rod 9 is rotatably connected with rotating sleeve 10, the rotating rod 7 is connected with the rotating sleeve 10 between the first flat belt 8, the inside of the shell 1 is connected with agitator 12 between left and right symmetry, agitator 12 can scatter day lily and handle, avoid day lily accumulation, two agitators 12 are provided with pulley 111, two pulleys 111 are connected with two second flat belts 11 between rotating sleeve 10, the front and rear symmetry of the shell 1 outside is connected with fixed frame 18, fixed frame 18 is used to fix the position of fan 19, a plurality of fans 19 are evenly installed in the inside of two fixed frames 18, fan 19 is used to preliminarily blow cooling for day lily, reduces the temperature of day lily, the second conveying belt 4 lower side is installed with vibration generator 20, vibration generator 20 is used to generate vibration, and the residual moisture on the surface of the cooled day lily is vibrated and falls, the shell 1 is provided with soaking assembly, and the soaking assembly comprises a second fixed rod 13, a guide rod 14, a sliding plate 15, an elastic member 16 and a connecting rod 17, two agitators 12 are connected with the second fixed rod 13, the front and rear symmetry of the shell 1 outside is connected with guide rod 14, guide rod 14 provides accurate guidance for the movement of sliding plate 15, sliding plate 15 is slidably connected between the front and rear two guide rods 14, sliding plate 15 can press day lily down to cold water, increase the contact area of day lily and cold water, improve the cooling efficiency, the elastic member 16 is connected between two sliding plates 15 and the corresponding guide rod 14, the front and rear symmetry of two sliding plates 15 is connected with connecting rod 17, a plurality of second fixed rods 13 are in contact with a plurality of connecting rods 17.
[0021] In the process of processing day lily, when the device is needed to cool the day lily in batches, the staff first connects the external pipe of the water storage device to the connecting head 501 of the connecting pipe 5, so that the cold water in the water storage device flows into the connecting pipe 5 through the external pipe and is further conveyed to the plurality of sprayers 6, then the staff starts the motor 2, the plurality of sprayers 6, the second conveying belt 4 and the plurality of fans 19, so that the motor 2, the plurality of sprayers 6, the second conveying belt 4 and the plurality of fans 19 start to work, the output shaft of the motor 2 drives the first conveying belt 3 to rotate, at the same time, the cold water is evenly sprinkled on the first conveying belt 3 through the plurality of sprayers 6, then the day lily to be cooled is conveyed to the fan 19 area on the right side of the first conveying belt 3, the cold air blown by the plurality of fans 19 preliminarily cools the day lily, the day lily after preliminary cooling continues to be conveyed to the left, and falls on the first conveying belt 3 until it contacts the cold water sprinkled by the plurality of sprayers 6, the first conveying belt 3 drives the rotating rod 7 to rotate in the rotating process, the rotating rod 7 drives the rotating sleeve 10 to rotate through the first flat belt 8, and then drives the two pulleys 111 and the two stirrers 12 to rotate synchronously through the two second flat belts 11, when the day lily is conveyed to the right side of the stirrer 12, the right side of the stirrer 12 preliminarily disperses the day lily to make the day lily more evenly distributed, the dispersed day lily continues to be conveyed to the left, when the dispersed day lily is conveyed to the lower side of the sliding plate 15 on the right side, the two second fixed rods 13 on the right side rotate with the right side of the stirrer 12, the two second fixed rods 13 on the right side contact the two connecting rods 17 on the right side in the rotating process and press the two connecting rods 17 on the right side, so as to drive the two connecting rods 17 on the right side to drive the sliding plate 15 on the right side to move downward along the two guide rods 14 on the right side, the two elastic members 16 on the right side are compressed, when the sliding plate 15 on the right side contacts the day lily and presses the day lily downward, the day lily is completely immersed in the cold water, the contact area between the day lily and the cold water is increased, and the cooling effect is improved, then, when the two second fixed rods 13 on the right side rotate to be out of contact with the two connecting rods 17 on the right side, the sliding plate 15 on the right side drives the two connecting rods 17 on the right side to move upward along the two guide rods 14 on the right side to the initial position under the reset action of the two elastic members 16 on the right side, the day lily after preliminary dispersion and immersion continues to be conveyed to the left, when the day lily is conveyed to contact the left side of the stirrer 12, the left side of the stirrer 12 further disperses the day lily, the dispersed day lily continues to be conveyed to the left, when the dispersed day lily is conveyed to the lower side of the sliding plate 15 on the left side, the stirrer 12 on the left side drives the two second fixed rods 13 on the left side to rotate, the two second fixed rods 13 on the left side rotate to contact the two connecting rods 17 on the left side and press the two connecting rods 17 on the left side, so as to drive the two connecting rods 17 on the left side to drive the sliding plate 15 on the left side to move downward along the two guide rods 14 on the left side, the two elastic members 16 on the left side are compressed,When the left sliding plate 15 moves to contact the lilies and presses the lilies again, it ensures that the lilies are completely immersed in the cold water, realizing thorough cooling. The cooled lilies continue to be conveyed to the left, and after contacting the second conveying belt 4, the lilies are conveyed to the left by the second conveying belt 4 to the next process. In this process, the vibration generator 20 is started and generates vibration to remove the residual water on the surface of the lilies, providing convenience for the subsequent process. The above process is continuously repeated until all the lilies complete the cooling operation, and then the motor 2, the plurality of sprayers 6, the second conveying belt 4, the plurality of fans 19 and the vibration generator 20 are turned off, ending the cooling process.
[0022] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and not to limit the scope of protection of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the present application.
Claims
1. A batch cooling device for processing daylilies, characterized in that: The utility model relates to a kind of tea leaf processing machine, including shell (1), drain (101), motor (2), first conveyor belt (3), second conveyor belt (4), connecting pipe (5), connector (501), sprayer (6), rotating rod (7), first flat belt (8), first fixed rod (9), rotating sleeve (10), second flat belt (11), pulley (111), agitator (12) and soaking component, drain (101) is connected on the right side of shell (1) front, motor (2) is installed on the right side of shell (1) rear, first conveyor belt (3) is arranged in the right side of shell (1) inside, and the output shaft front end of motor (2) is fixedly connected with first conveyor belt (3) with the penetration of shell (1), second conveyor belt (4) is arranged in the left side of shell (1) inside, connecting pipe (5) is fixedly connected on the upper rear side of shell (1), connecting pipe (5) right end is connected with connector (501), a plurality of sprayer (6) is installed on the front side of connecting pipe (5), rotating rod (7) is rotatably connected on the right side of shell (1) front, first fixed rod (9) is fixedly connected on the front side of shell (1), rotating sleeve (10) is rotatably connected on first fixed rod (9), first flat belt (8) is arranged between rotating rod (7) and rotating sleeve (10), agitator (12) is connected inside the left and right symmetry of shell (1), and pulley (111) is arranged on two agitators (12), and two second flat belts (11) are arranged between two pulleys (111) and rotating sleeve (10), and soaking component is arranged on shell (1).
2. A batch cooling device for processing of day lily according to claim 1, characterized in that: Soaking component includes second fixed rod (13), guide rod (14), sliding plate (15), elastic member (16) and connecting rod (17), and second fixed rod (13) is fixedly connected on two agitators (12), guide rod (14) is fixedly connected on the front and rear symmetry of the outside of shell (1), sliding plate (15) is slidably connected between the front and rear guide rods (14), elastic member (16) is arranged between two sliding plates (15) and corresponding guide rod (14), and connecting rod (17) is fixedly connected on the front and rear symmetry of two sliding plates (15), and a plurality of second fixed rods (13) are in contact with a plurality of connecting rods (17).
3. A batch cooling device for processing of orchids according to claim 2, characterized in that: It further includes protective pad (102), and protective pad (102) is connected to the bottom of shell (1).
4. A batch cooling device for processing of orchids according to claim 3, characterized in that: It further includes protective shell (21), and protective shell (21) is connected to the right rear side of shell (1), and protective shell (21) is located on the outside of motor (2).
5. A batch cooling device for processing of orchids according to claim 4, characterized in that: It further includes fixed frame (18) and fan (19), and fixed frame (18) is fixedly connected on the front and rear symmetry of the outside of shell (1), and a plurality of fans (19) are evenly spaced and mounted in two fixed frames (18).
6. A batch cooling device for processing of orchids according to claim 5, characterized in that: It further includes vibration generator (20), and vibration generator (20) is installed on the lower side of second conveyor belt (4).