Composite freeze-dried fruit slice manufacturing device

By designing a composite freeze-dried fruit sheet production device, the automatic laying and shaking of fruit sheets is achieved by using motors and pneumatic push rods. Combined with the forced separation of the shovel assembly and the automatic screening function of the loading box, the problem of low efficiency in the loading, laying and unloading of fruit sheets in the prior art is solved, and efficient and uniform freeze-drying effect is achieved and the cleaning steps are reduced.

CN120188907AInactive Publication Date: 2025-06-24SHANDONG YUANDA YONGSHENG FOOD TECH CO LTD
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Patent Information

Application Number
CN202510678406.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-06-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing freeze-dried fruit slice production device, the loading, laying and unloading of fruit slices mostly relies on manual operations, which are inefficient and easy to introduce pollution. Static loading leads to the accumulation of fruit slices, uneven circulation of cold air, and prolongs the freeze-drying cycle. After freeze-drying, the fruit slices are prone to stick to broken ice or slag, and additional cleaning steps are required.

Method used

A composite freeze-dried fruit sheet making device is designed, including a freezer cabinet and a fruit sheet loading control mechanism. The first motor drives the loading box to rotate left and right incline, and the pneumatic push rod controls the loading box to shake forward and backward, automatically lays fruit slices and reserves sublimation space to improve the circulation efficiency of cold air. The shovel assembly forces the adhered fruit slices through the shovel blade to avoid manual intervention and ensure uniformity of lyophilization. A through hole, through-trough and slag collection shell are installed at the bottom of the loading box to automatically screen and remove crushed ice and slag, reducing subsequent cleaning processes.

Benefits of technology

It significantly improves the freeze-drying efficiency of fruit slices, shortens the freeze-drying time, reduces manual intervention, ensures the uniformity of freeze-drying, and removes crushed ice and slags through automatic screening, reducing subsequent cleaning steps, and improving overall production efficiency.

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Abstract

The invention discloses a composite freeze-dried fruit slice manufacturing device, and relates to the technical field of freeze-dried fruit slice manufacturing, and the technical scheme is that the composite freeze-dried fruit slice manufacturing device comprises a freezing cabinet body, and a fruit slice loading control mechanism is arranged in the freezing cabinet body; the fruit slice loading control mechanism comprises a plurality of loading boxes, the loading boxes are arranged in the freezing cabinet body, a plurality of through holes are formed in the top and the bottom of each loading box, a plurality of through grooves are formed in one side of each loading box, a plurality of fixing blocks are fixedly arranged among the loading boxes, and residue collecting shells are fixedly arranged at the bottoms of the loading boxes; the fruit slice freeze-drying device has the beneficial effects that the cold air circulation efficiency is improved, the freeze-drying time is shortened, adhered fruit slices are forcibly separated in combination with a material shoveling assembly (a shovel blade), manual intervention is avoided, the freeze-drying uniformity is ensured, through holes, through grooves and residue collecting shells are arranged at the bottoms of the loading boxes, and the freeze-drying efficiency is improved. In the freeze-drying process, crushed ice and crushed slag are automatically screened out through front-back shaking and are intensively discharged through a discharging opening, and the follow-up cleaning procedure is reduced.
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Description

Technical Field

[0001] The invention relates to the technical field of freeze-dried fruit slice production, and in particular to a composite freeze-dried fruit slice production device. Background Art

[0002] Freeze-drying (freeze-drying) technology is a food processing method that removes moisture through low-temperature freezing and vacuum sublimation, which can retain the nutrients, color and flavor of fruits to the greatest extent.

[0003] The existing Chinese patent (publication number: CN217345690U) discloses a frozen dried fruit making device. The utility model provides a frozen dried fruit making device that can be cut quickly, is easy to operate, and has no safety hazards. The utility model provides such a frozen dried fruit making device, including: a shell, etc.; a circular groove is opened on the top of the shell, and a dividing net is placed on the circular groove; a protective cover is placed on the top of the shell; a connecting seat, a square groove is opened at the lower part of the shell, and two connecting seats are arranged on the left side of the square groove at the lower part of the shell; a cover plate, a cover plate is rotatably arranged between the two connecting seats, and the cover plate cooperates with the square groove at the lower part of the shell. The operator first removes the protective cover on the outer shell, places the fruit on the dividing net, takes the cover plate and presses the fruit on the dividing net. The operator controls the rotary motor to work, and the rotary motor rotates to drive the blade to rotate clockwise to complete the rapid cutting of the fruit. Finally, the block fruit will fall into the collection frame. In the above patents, the loading, flattening and unloading of fruit slices mostly rely on manual operation, which is inefficient and easy to introduce pollution. Static loading causes the fruit slices to accumulate, the cold air circulation is uneven, and the freeze-drying cycle is extended. After freeze-drying, the fruit slices are prone to adhere to crushed ice or debris, requiring additional cleaning steps. Summary of the invention

[0004] To this end, the present invention provides a composite freeze-dried fruit slice production device to solve the problems that the loading, leveling and unloading of fruit slices mostly rely on manual operations, which are inefficient and easy to introduce contamination, static loading leads to fruit slice accumulation, uneven cold air circulation, prolonged freeze-drying cycle, and fruit slices are prone to adhere to crushed ice or debris after freeze-drying, requiring additional cleaning steps.

[0005] In order to achieve the above-mentioned object, the present invention provides the following technical solutions: a composite freeze-dried fruit slice production device, comprising a freezing cabinet, wherein a fruit slice loading control mechanism is provided inside the freezing cabinet; The fruit slice loading control mechanism includes a plurality of loading boxes, and the plurality of loading boxes are arranged inside the freezing cabinet body. A plurality of through holes are formed in the top and bottom of the loading boxes, and a plurality of through grooves are formed in one side of the loading boxes. A plurality of fixing blocks are fixedly arranged between the plurality of loading boxes. A slag collecting housing is fixedly arranged at the bottom of each of the plurality of loading boxes. Fixing frames are fixedly arranged on both sides of two of the loading boxes. A plurality of second telescopic rods are fixedly arranged on one side of one of the fixing frames, and a first circular plate is fixedly arranged on one side of each of the plurality of second telescopic rods. A first motor is fixedly arranged on one side of the freezing cabinet body, and the output end of the first motor is fixedly connected to the first circular plate. A plurality of fixing rods are fixedly arranged on one side of the other fixing frame, and a second circular plate is fixedly arranged at one end of each of the plurality of fixing rods. A cushion plate is fixedly arranged on one side of the freezing cabinet body, and a pneumatic push rod is fixedly arranged on one side of the cushion plate. The output end of the pneumatic push rod is connected to the second circular plate through a bearing. A closing component is arranged on one side of the loading box, and a material shoveling component is arranged on one side of the fixing frame.

[0006] Preferably, the closing component includes a box door, and the box door is arranged on one side of the loading box. An electric push rod is fixedly arranged on one side of the slag collecting housing at the bottom, and the output end of the electric push rod is fixedly connected to a bottom plate. Connecting frames are fixedly arranged on both sides of the bottom plate, and the connecting frames are fixedly connected to the box door.

[0007] Preferably, a plurality of first telescopic rods are fixedly arranged between the bottom plate and the slag collecting housing.

[0008] Preferably, the material shoveling component includes a connecting shell, and the connecting shell is fixedly connected to the fixing frame. A second motor is fixedly arranged on one side of the connecting shell, and the output end of the second motor is fixedly connected to a lead screw. The lead screw is connected to the inner wall of the connecting shell through a bearing. A sliding plate is sleeved on the outside of the lead screw through a thread, and a square plate is fixedly arranged on one side of the sliding plate. A plurality of shovels are fixedly arranged on one side of the square plate.

[0009] Preferably, sliding grooves are formed on both sides of the loading box, and the shovels penetrate through the sliding grooves and are slidably connected to the sliding grooves.

[0010] Preferably, a feeding component is arranged on the top of the freezing cabinet body. The feeding component includes two hydraulic push rods, and the two hydraulic push rods are fixedly arranged on the top of the freezing cabinet body. Fixing plates are fixedly arranged at the output ends of the two hydraulic push rods. A plurality of blanking housings are arranged on the top of the freezing cabinet body. The blanking housings penetrate through the top of the freezing cabinet body and are slidably connected to the top of the freezing cabinet body. A connecting plate is fixedly arranged between the plurality of blanking housings. The two fixing plates are fixedly connected to the blanking housings. A blocking plate is arranged on one side of the blanking housing, and the blanking housing is slidably connected to the blocking plate.

[0011] Preferably, a blanking assembly is provided at the bottom of the freezing cabinet body. The blanking assembly includes two blanking ports which are fixedly arranged at the bottom of the freezing cabinet body. A gate plate is arranged on one side of each blanking port. The gate plate extends into the interior of the blanking port, and the blanking port is slidably connected to the gate plate.

[0012] Preferably, a plurality of supporting legs are fixedly arranged at the bottom of the freezing cabinet body.

[0013] Preferably, a cabinet door is arranged on one side of the freezing cabinet body.

[0014] Preferably, an observation window is arranged on the other side of the freezing cabinet body.

[0015] The embodiments of the present invention have the following advantages: The loading box is driven by a first motor to rotate and tilt left and right, and is controlled by a pneumatic push rod to shake back and forth, so that the fruit slices are automatically flattened and a sublimation space is reserved, significantly improving the cold air circulation efficiency and shortening the freeze-drying time. Combining with the shoveling component (shovel knife) to forcibly separate the adhered fruit slices, avoiding manual intervention and ensuring the uniformity of freeze-drying. Through holes, through grooves and slag collection shells are arranged at the bottom of the loading box. During the freeze-drying process, broken ice and slag are automatically screened out through back-and-forth shaking and discharged centrally through the blanking port, reducing the subsequent cleaning process; By closing the freezing cabinet body through the blanking plate of the feeding component and the gate plate of the discharging component, cold air leakage is avoided, energy consumption is reduced, and it can be adapted to the production of composite fruit slices. Through synchronous feeding of multiple blanking shells, mixed freeze-drying of different fruits is realized. Description of the Drawings

[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only exemplary. For those of ordinary skill in the art, without creative efforts, other implementation drawings can be obtained according to the provided drawings.

[0017] The structures, ratios, sizes, etc. shown in this specification are only used to cooperate with the content disclosed in the specification for those who are familiar with this technology to understand and read, and are not used to limit the limiting conditions under which the present invention can be implemented. Therefore, they do not have technical essence. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effects that the present invention can produce and the purposes that can be achieved, should still fall within the scope that the technical content disclosed by the present invention can cover.

[0018] Figure 1 It is the main view of the overall structure provided by the present invention; Figure 2 It is the side view of the overall structure provided by the present invention; Figure 3Side view cross-sectional view of the overall structure provided by the present invention; Figure 4 Front view cross-sectional view of the overall structure provided by the present invention; Figure 5 Stereogram of the fruit slice loading control mechanism provided by the present invention Figure 1 ; Figure 6 Stereogram of the fruit slice loading control mechanism provided by the present invention Figure 2 ; Figure 7 Top view cross-sectional view of the loading box provided by the present invention; Figure 8 Stereogram of the material shoveling assembly provided by the present invention.

[0019] In the figure: 1, freezing cabinet body; 2, observation window; 3, blanking port; 4, shutter; 5, support leg; 6, first motor; 7, hydraulic push rod; 8, fixing plate; 9, blocking plate; 10, blanking housing; 11, connecting plate; 12, cabinet door; 13, loading box; 14, slag collection housing; 15, box door; 16, shovel; 17, bottom plate; 18, electric push rod; 19, first telescopic rod; 20, connecting frame; 21, first circular plate; 22, second telescopic rod; 23, fixing frame; 24, backing plate; 25, pneumatic push rod; 26, second circular plate; 27, fixing rod; 28, connecting shell; 29, lead screw; 30, second motor; 31, fixing block; 32, square plate; 33, sliding plate; 34, chute; 35, through hole; 36, through slot. Specific embodiments

[0020] The following specific embodiments illustrate the implementation manners of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Refer to the attached Figure 1 - attached Figure 8 , a composite freeze-dried fruit slice making device provided by the present invention, includes a freezing cabinet body 1, and a fruit slice loading control mechanism is arranged inside the freezing cabinet body 1; The fruit slice loading control mechanism includes a plurality of loading boxes 13. The plurality of loading boxes 13 are arranged inside the freezing cabinet body 1. A plurality of through holes 35 are formed in the top and bottom of the loading box 13, and a plurality of through grooves 36 are formed in one side of the loading box 13. A plurality of fixing blocks 31 are fixedly arranged between the plurality of loading boxes 13. A slag collecting housing 14 is fixedly arranged at the bottom of each of the plurality of loading boxes 13. Fixing frames 23 are fixedly arranged on both sides of two of the loading boxes 13. A plurality of second telescopic rods 22 are fixedly arranged on one side of one of the fixing frames 23. A first circular plate 21 is fixedly arranged on one side of each of the plurality of second telescopic rods 22. A first motor 6 is fixedly arranged on one side of the freezing cabinet body 1. The output end of the first motor 6 is fixedly connected to the first circular plate 21. A plurality of fixing rods 27 are fixedly arranged on one side of the other fixing frame 23. A second circular plate 26 is fixedly arranged at one end of each of the plurality of fixing rods 27. A backing plate 24 is fixedly arranged on one side of the freezing cabinet body 1. A pneumatic push rod 25 is fixedly arranged on one side of the backing plate 24. The output end of the pneumatic push rod 25 is connected to the second circular plate 26 through a bearing. A closing assembly is arranged on one side of the loading box 13, and a material shoveling assembly is arranged on one side of the fixing frame 23; In this embodiment, when the first motor 6 is started, the first motor 6 controls the rotation of the first circular plate 21. The first circular plate 21 drives the second telescopic rods 22 to rotate. The second telescopic rods 22 drive the fixing frame 23 to rotate. The fixing frame 23 drives the loading box 13 to rotate. By controlling the left - right shaking of the loading box 13, the fruit slices are spread inside the loading box 13 with redundant space. The fruit slices are quickly frozen by the freezing cabinet body 1. For example, Figure 3 Control the loading box 13 to rotate counterclockwise by a certain angle and tilt upward, and then start the pneumatic push rod 25. By extending and retracting the output end of the pneumatic push rod 25, the front - rear movement of the second circular plate 26 is controlled. The second circular plate 26 drives the fixing rods 27 and the fixing frame 23 to move back and forth, thereby driving the loading box 13 to move back and forth, so that the broken ice and slag on the fruit slices inside the loading box 13 are discharged through the through holes 35 and the through grooves 36, and the broken ice and slag can fall on the slag collecting housing 14; Among them, in order to achieve the purpose of opening and closing the box door 15, the following technical solution is adopted by this device: The closing assembly includes a box door 15. The box door 15 is arranged on one side of the loading box 13. An electric push rod 18 is fixedly arranged on one side of the slag collecting housing 14 at the bottom. The output end of the electric push rod 18 is fixedly connected to a bottom plate 17. Connecting frames 20 are fixedly arranged on both sides of the bottom plate 17. The connecting frames 20 are fixedly connected to the box door 15. A plurality of first telescopic rods 19 are fixedly arranged between the bottom plate 17 and the slag collecting housing 14. When the electric push rod 18 is started, the electric push rod 18 controls the movement of the bottom plate 17. The bottom plate 17 drives the connecting frames 20 to move. The connecting frames 20 drive the box door 15 to move, so that the opening on one side of the loading box 13 is opened or blocked; Among them, in order to achieve the purpose of shoveling materials, the present device adopts the following technical solution: The shoveling component includes a connecting shell 28, the connecting shell 28 is fixedly connected to the fixed frame 23, a second motor 30 is fixedly arranged on one side of the connecting shell 28, the output end of the second motor 30 is fixedly connected to a lead screw 29, the lead screw 29 is connected to the inner wall of the connecting shell 28 through a bearing, a sliding plate 33 is sleeved on the outside of the lead screw 29 through a thread, a square plate 32 is fixedly arranged on one side of the sliding plate 33, a plurality of shovels 16 are fixedly arranged on one side of the square plate 32, chutes 34 are opened on both sides of the loading box 13, the shovels 16 penetrate through the chutes 34 and are slidably connected to the chutes 34. Start the second motor 30, the second motor 30 controls the rotation of the lead screw 29, the lead screw 29 drives the sliding plate 33 to move, the sliding plate 33 drives the square plate 32 to move, the square plate 32 drives the shovels 16 to move, and the shovels 16 shovel up the fruit slices adhered to the inner bottom of the loading box 13; Among them, in order to achieve the purpose of feeding, the present device adopts the following technical solution: A feeding component is arranged on the top of the freezing cabinet body 1. The feeding component includes two hydraulic push rods 7. The two hydraulic push rods 7 are fixedly arranged on the top of the freezing cabinet body 1. Fixed plates 8 are fixedly arranged at the output ends of the two hydraulic push rods 7. A plurality of blanking shells 10 are arranged on the top of the freezing cabinet body 1. The blanking shells 10 penetrate through the top of the freezing cabinet body 1 and are slidably connected to the top of the freezing cabinet body 1. A connecting plate 11 is fixedly arranged between the plurality of blanking shells 10. The two fixed plates 8 are fixedly connected to the blanking shells 10. A blocking plate 9 is arranged on one side of the blanking shell 10. The blanking shell 10 is slidably connected to the blocking plate 9. Start the electric push rod 18, the electric push rod 18 controls the movement of the bottom plate 17, the bottom plate 17 drives the connecting frame 20 to move, the connecting frame 20 drives the box door 15 to move, so that the opening on one side of the loading box 13 is opened. Start the hydraulic push rod 7, the hydraulic push rod 7 controls the fixed plate 8 to move downwards, the fixed plate 8 drives the blanking shell 10 to move downwards, the blanking shell 10 moves downwards and approaches the opening of the loading box 13, and the cut fruit slices are poured through the blanking shell 10, and the fruit slices are filled into the loading box 13; Among them, in order to achieve the purpose of blanking, the present device adopts the following technical solution: A blanking component is arranged at the bottom of the freezing cabinet body 1. The blanking component includes two blanking ports 3. The two blanking ports 3 are fixedly arranged at the bottom of the freezing cabinet body 1. A gate plate 4 is arranged on one side of the blanking port 3. The gate plate 4 extends into the blanking port 3. The blanking port 3 is slidably connected to the gate plate 4. After the gate plate 4 is opened, the crushed ice and slag can fall on the slag collecting shell 14 and finally be discharged through the blanking port 3 together. The freeze-dried fruit slices are discharged from the loading box 13 and finally discharged through the blanking port 3 on the other side. There is no need to open the door of the freezer, reducing the overflow of cold air and improving the efficiency of quickly freeze-drying fruit slices; Among them, in order to achieve the purpose of support, the present device is implemented by the following technical solution: A plurality of support legs 5 are fixedly provided at the bottom of the freezer cabinet 1, and the support legs 5 serve to support the freezer cabinet 1; Among them, in order to achieve the purpose of convenient maintenance, the present device is implemented by the following technical solution: A cabinet door 12 is provided on one side of the freezer cabinet 1. When the cabinet door 12 is opened, it is convenient to perform maintenance inside the freezer cabinet 1; Among them, in order to achieve the purpose of convenient observation, the present device is implemented by the following technical solution: An observation window 2 is provided on the other side of the freezer cabinet 1. Through the observation window 2, it is convenient to observe the internal situation of the freezer cabinet 1.

[0022] The usage process of the present invention is as follows: When using the present invention, start the first motor 6. The first motor 6 controls the rotation of the first circular plate 21. The first circular plate 21 drives the rotation of the second telescopic rod 22. The second telescopic rod 22 drives the rotation of the fixed frame 23. The fixed frame 23 drives the rotation of the loading box 13 to make the opening of the loading box 13 face upward. Then start the electric push rod 18. The electric push rod 18 controls the movement of the bottom plate 17. The bottom plate 17 drives the movement of the connecting frame 20. The connecting frame 20 drives the movement of the box door 15 to open the opening on one side of the loading box 13. Start the hydraulic push rod 7. The hydraulic push rod 7 controls the downward movement of the fixing plate 8. The fixing plate 8 drives the downward movement of the blanking housing 10. The blanking housing 10 moves downward and approaches the opening of the loading box 13, and the cut fruit slices are poured through the blanking housing 10. Multiple blanking housings 10 can pour different types of fruits. The fruit slices are filled into the interior of the loading box 13. Multiple loading boxes 13 can respectively hold different fruit slices to avoid the mixing and flavor cross-talking of the fruit slices. Finally, different fruit slices can be mixed and discharged for packaging. After the fruit volume reaches half of the loading box 13, control the blanking housing 10 to move upward and stop conveying the fruit slices, and push the blocking plate 9 to block the top of the blanking housing 10. Then start the electric push rod 18. The electric push rod 18 controls the movement of the bottom plate 17 and the connecting frame 20. The connecting frame 20 drives the movement of the box door 15. The box door 15 blocks the opening of the loading box 13. Then start the first motor 6. The first motor 6 controls the rotation of the first circular plate 21. The first circular plate 21 drives the rotation of the second telescopic rod 22. The second telescopic rod 22 drives the rotation of the fixed frame 23. The fixed frame 23 drives the rotation of the loading box 13. By controlling the left and right shaking of the loading box 13, the fruit slices are spread inside the loading box 13 and there is a redundant space. The fruit slices are quickly frozen by the freezer cabinet 1. After the freezing is completed, start the second motor 30. The second motor 30 controls the rotation of the lead screw 29. The lead screw 29 drives the movement of the sliding plate 33. The sliding plate 33 drives the movement of the square plate 32. The square plate 32 drives the movement of the shovel 16. The shovel 16 shovels up the fruit slices adhered to the inner bottom of the loading box 13, such as Figure 3Control the loading box 13 to rotate counterclockwise by a certain angle and tilt upward, then start the pneumatic push rod 25. The output end of the pneumatic push rod 25 extends and retracts to control the front and back movement of the second circular plate 26. The second circular plate 26 drives the fixing rod 27 and the fixing frame 23 to move back and forth, thereby driving the loading box 13 to move back and forth, so that the crushed ice and slag on the fruit slices inside the loading box 13 are discharged through the through holes 35 and the through grooves 36. The crushed ice and slag can fall on the slag collection housing 14 and finally be discharged together through the discharge port 3. Then, as Figure 3 Control the loading box 13 to rotate clockwise by a certain angle and tilt downward. Start the electric push rod 18. The electric push rod 18 controls the movement of the bottom plate 17. The bottom plate 17 drives the connecting frame 20 to move. The connecting frame 20 drives the box door 15 to move, so that the opening on one side of the loading box 13 is opened. By controlling the front and back movement of the loading box 13, the freeze-dried fruit slices are discharged from the loading box 13 and finally discharged through the discharge port 3 on the other side. There is no need to open the door of the freezer, reducing the overflow of cold air and improving the efficiency of quickly freeze-drying fruit slices. There is no need for manual loading and unloading of fruit slices.

[0023] As described above, it is only a preferred embodiment of the present invention. Any person skilled in the art may modify the present invention by using the technical solutions described above or modify it into an equivalent technical solution. Therefore, any simple modification or equivalent replacement made according to the technical solutions of the present invention falls within the scope of protection required by the present invention.

Claims

1. A compound freeze-dried fruit slice manufacturing device, comprising a freezing cabinet body (1), characterized in that: Inside the freezer cabinet (1), there is a fruit slice loading control mechanism; The fruit slice loading control mechanism includes a plurality of loading boxes (13). The plurality of loading boxes (13) are arranged inside the freezer cabinet (1). A plurality of through holes (35) are formed in the top and bottom of the loading box (13). A plurality of through grooves (36) are formed in one side of the loading box (13). A plurality of fixing blocks (31) are fixedly arranged between the plurality of loading boxes (13). A slag collecting housing (14) is fixedly arranged at the bottom of each of the plurality of loading boxes (13). Fixing frames (23) are fixedly arranged on both sides of two of the loading boxes (13). A plurality of second telescopic rods (22) are fixedly arranged on one side of one of the fixing frames (23). A first circular plate (21) is fixedly arranged on one side of each of the plurality of second telescopic rods (22). A first motor (6) is fixedly arranged on one side of the freezer cabinet (1). The output end of the first motor (6) is fixedly connected to the first circular plate (21). A plurality of fixing rods (27) are fixedly arranged on one side of the other fixing frame (23). A second circular plate (26) is fixedly arranged at one end of each of the plurality of fixing rods (27). A cushion plate (24) is fixedly arranged on one side of the freezer cabinet (1). A pneumatic push rod (25) is fixedly arranged on one side of the cushion plate (24). The output end of the pneumatic push rod (25) is connected to the second circular plate (26) through a bearing. A closing component is arranged on one side of the loading box (13), and a material shoveling component is arranged on one side of the fixing frame (23).

2. The manufacturing device for a composite freeze-dried fruit slice according to claim 1, characterized in that: The closing component includes a box door (15). The box door (15) is arranged on one side of the loading box (13). An electric push rod (18) is fixedly arranged on one side of the slag collecting housing (14) at the bottom. The output end of the electric push rod (18) is fixedly connected to a bottom plate (17). Connecting frames (20) are fixedly arranged on both sides of the bottom plate (17). The connecting frames (20) are fixedly connected to the box door (15).

3. The manufacturing device for a composite freeze-dried fruit slice according to claim 2, wherein: A plurality of first telescopic rods (19) are fixedly arranged between the bottom plate (17) and the slag collecting housing (14).

4. A compound freeze-dried fruit slice manufacturing device according to claim 1, characterized in that: The material shoveling component includes a connecting shell (28). The connecting shell (28) is fixedly connected to the fixing frame (23). A second motor (30) is fixedly arranged on one side of the connecting shell (28). The output end of the second motor (30) is fixedly connected to a lead screw (29). The lead screw (29) is connected to the inner wall of the connecting shell (28) through a bearing. A sliding plate (33) is sleeved on the outside of the lead screw (29) through a thread. A square plate (32) is fixedly arranged on one side of the sliding plate (33). A plurality of shovels (16) are fixedly arranged on one side of the square plate (32).

5. A compound freeze-dried fruit slice manufacturing device according to claim 4, characterized in that: Chute grooves (34) are formed on both sides of the loading box (13). The shovels (16) penetrate through the chute grooves (34) and are slidably connected to the chute grooves (34).

6. The manufacturing device for a composite freeze-dried fruit slice according to claim 1, characterized in that: A feeding component is provided at the top of the freezing cabinet body (1). The feeding component includes two hydraulic push rods (7). The two hydraulic push rods (7) are fixedly arranged at the top of the freezing cabinet body (1). Fixed plates (8) are fixedly arranged at the output ends of the two hydraulic push rods (7). A plurality of blanking shells (10) are arranged at the top of the freezing cabinet body (1). The blanking shells (10) penetrate through the top of the freezing cabinet body (1) and are slidably connected to the top of the freezing cabinet body (1). A connecting plate (11) is fixedly arranged between the plurality of blanking shells (10). The two fixed plates (8) are fixedly connected to the blanking shells (10). A blocking plate (9) is arranged on one side of the blanking shell (10). The blanking shell (10) is slidably connected to the blocking plate (9).

7. A compound freeze-dried fruit slice manufacturing device according to claim 1, wherein: A blanking component is provided at the bottom of the freezing cabinet body (1). The blanking component includes two blanking ports (3). The two blanking ports (3) are fixedly arranged at the bottom of the freezing cabinet body (1). A gate plate (4) is arranged on one side of the blanking port (3). The gate plate (4) extends into the blanking port (3). The blanking port (3) is slidably connected to the gate plate (4).

8. A composite freeze-dried fruit slice manufacturing device according to claim 1, characterized in that: A plurality of support legs (5) are fixedly arranged at the bottom of the freezing cabinet body (1).

9. The manufacturing device for a composite freeze-dried fruit slice according to claim 1, wherein: A cabinet door (12) is arranged on one side of the freezing cabinet body (1).

10. A compound freeze-dried fruit slice manufacturing device according to claim 1, characterized in that: An observation window (2) is arranged on the other side of the freezing cabinet body (1).

Citation Information

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