Sterilization device for processing dried clausena lansium fruits

By designing a yellow-skinned dried fruit sterilization device with a conveying slide rail and an ultraviolet sterilization lamp, the problem of manual repeated operation and uneven sterilization is solved, and efficient and uniform dry fruit sterilization effect is achieved.

CN223008407UActive Publication Date: 2025-06-24YUNFU SHENGYI AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422277260.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-06-24
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

When disinfecting the dried yellow-skinned fruit, the dried fruit needs to be manually sent to the sterilizer, which is quite labor-intensive. The existing sterilization device can only sterilize one side of the dried fruit, at most two sides, and it requires repeated processing to achieve qualified results, and the process is cumbersome.

Method used

A sterilization device including a fixed seat, a load-bearing beam, a conveying slide rail, a feeding structure and a sterilization structure are designed. The conveying slide drives the dried fruit feeder to move, and the dried fruit is placed into the disinfection network through the guide plate. The infrared detection module monitors the sufficient conditions of the dried fruit, and the ultraviolet sterilization lamp evenly disinfects the dried fruit from multiple directions.

Benefits of technology

The frequency of manual operation is reduced, and the ultraviolet disinfection on all sides of the dried fruit is achieved, the process is simplified, and the disinfection efficiency and safety are improved.

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Abstract

The utility model discloses a sterilization device for processing dried clausena lansium, and relates to the technical field of processing of dried clausena lansium, the sterilization device comprises a fixed seat and a bearing beam, the bearing beam is installed on the upper wall surface of the fixed seat, the lower wall surface of the bearing beam is provided with a conveying slide rail, the outer wall surface of the conveying slide rail is sleeved with a feeding structure, and the outer wall surface of the conveying slide rail is provided with a discharging structure. A sterilization support frame is mounted on the upper wall surface of the fixed seat, a sterilization structure is mounted on the upper wall surface of the sterilization support frame, and an auxiliary structure is mounted on the inner wall surface of the sterilization structure; the dried clausena lansium sterilizing device has the advantages that during the moving period of the dried clausena lansium sterilizing net, the dried clausena lansium is driven to shake, so that all surfaces of the dried clausena lansium can be irradiated with ultraviolet rays for sterilization under the action of the plurality of upper wall ultraviolet sterilizing lamps and the plurality of lower wall ultraviolet sterilizing lamps; and the problems that multiple and repeated machining is needed to achieve the qualified effect, and the working procedures are very tedious are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of Huangpi fruit dry processing, in particular to a sterilization device for Huangpi fruit dry processing. Background Art

[0002] Huangpi fruit dry is made by picking fresh Huangpi fruits, salting to drive away insects and cleaning, and then drying or through other processing methods. This kind of dried fruit not only retains the nutrients of Huangpi fruits, such as vitamin C, amino acids, minerals and polysaccharides, but also contains rich chemical components with biological activities such as flavonoids, coumarins, alkaloids, etc. Huangpi fruit dry has various effects, including promoting digestion and resolving phlegm, regulating qi, being applicable to symptoms such as indigestion, fullness and pain in the chest diaphragm, phlegm retention and cough, and having the effects of relieving heat and resolving hernia pain. After drying, it needs to be sterilized.

[0003] When disinfecting Huangpi fruit dry, it is necessary to manually send the Huangpi fruit dry into the sterilizer repeatedly, resulting in serious waste of manpower. The existing sterilization devices can only sterilize one side of the Huangpi fruit dry, at most two sides, and need to be processed multiple times and repeatedly to achieve qualified results, and the process is very cumbersome. Content of the Utility Model

[0004] The technical problem to be solved by the utility model is that when disinfecting Huangpi fruit dry, it is necessary to manually send the Huangpi fruit dry into the sterilizer repeatedly, resulting in serious waste of manpower. The existing sterilization devices can only sterilize one side of the Huangpi fruit dry, at most two sides, and need to be processed multiple times and repeatedly to achieve qualified results, and the process is very cumbersome.

[0005] To solve the above technical problem, the technical solution of the utility model is a sterilization device for Huangpi fruit dry processing, including a fixed seat and a load-bearing beam. The load-bearing beam is installed on the upper wall surface of the fixed seat. A transmission slide rail is installed on the lower wall surface of the load-bearing beam. A feeding structure is sleeved on the outer wall surface of the transmission slide rail. A sterilization support frame is installed on the upper wall surface of the fixed seat. A sterilization structure is installed on the upper wall surface of the sterilization support frame. An auxiliary structure is installed on the inner wall surface of the sterilization structure.

[0006] As a further solution of the utility model: The feeding structure includes: a fruit dry feeder, a fruit dry guide plate, two feeding pipes, a fruit dry feeding box and an infrared detection module; The fruit dry feeder is sleeved on the outer wall surface of the transmission slide rail and moves along with the transmission slide rail. The fruit dry guide plate is installed on the lower wall surface of the fruit dry feeder. The two feeding pipes are respectively installed on the upper wall surface of the fruit dry feeder. The fruit dry feeding box is installed on the upper wall surface of the two feeding pipes and moves along with the two feeding pipes. The infrared detection module is installed below the interior of the fruit dry feeding box.

[0007] As a further solution of the utility model: The sterilization structure includes: four load-bearing rods, a load-bearing frame, four auxiliary chutes, several hydraulic cylinders, two sealing covers, four guiding sliders, several upper-wall ultraviolet sterilization lamps and several lower-wall ultraviolet sterilization lamps; the four load-bearing rods are respectively installed on the upper wall surface of the fixed seat, the load-bearing frame is respectively installed on the upper wall surfaces of the four load-bearing rods and is connected to the sterilization support frame, the four auxiliary chutes are respectively opened on the inner wall surfaces of the two load-bearing frames, several hydraulic cylinders are respectively installed on the two side surfaces of the sterilization support frame, the two sealing covers are respectively installed on the outer end surfaces of the several hydraulic cylinders, one ends of the four guiding sliders are respectively installed in the four auxiliary chutes and the other ends are connected to the two ends of the two sealing covers, several upper-wall ultraviolet sterilization lamps are respectively installed on the lower wall surfaces of the two sealing covers, and several lower-wall ultraviolet sterilization lamps are respectively installed on the upper wall surface inside the load-bearing frame.

[0008] As a further solution of the utility model: The auxiliary structure includes: several circulating telescopic rods, a dried fruit sterilization rack, a dried fruit disinfection net, several auxiliary guiding rods and several auxiliary telescopic sleeves; several circulating telescopic rods are respectively installed on the side wall surfaces inside the load-bearing frame, the dried fruit sterilization rack is installed on the outer end surfaces of the several circulating telescopic rods, the dried fruit disinfection net is installed on the lower wall surface of the dried fruit sterilization rack, several auxiliary guiding rods are respectively installed on the side wall surfaces of the dried fruit sterilization rack, and several auxiliary telescopic sleeves are respectively sleeved on the outer wall surfaces of the several auxiliary guiding rods and are connected to the inside of the load-bearing frame.

[0009] As a further solution of the utility model: Safety chamfers are provided around the fixed seat.

[0010] As a further solution of the utility model: Auxiliary rollers can be provided on the lower wall surface of the dried fruit feeding box.

[0011] As a further solution of the utility model: Auxiliary springs are sleeved on the outer wall surfaces of the several auxiliary guiding rods.

[0012] The utility model adopts the above technical solutions and has the following advantages compared with the prior art:

[0013] The operator starts the conveying slide rail, and the conveying slide rail drives the dried fruit feeder to move at both ends of the load-bearing beam. During this period, the dried fruit feeder puts the wampee dried fruits into the dried fruit disinfection net through the dried fruit guiding plate. After the conveying slide rail drives the dried fruit feeder to move back and forth once and stops, the dried fruit feeder stops feeding. When there is enough wampee dried fruit in the dried fruit feeding box, the light signal of the infrared detection module is blocked. When the light signal of the infrared detection module is turned on, an alarm sounds to remind the operator to replenish the wampee dried fruit in the dried fruit feeding box, solving the problem that it is necessary to manually send the wampee dried fruit into the sterilizer repeatedly during the disinfection of the wampee dried fruit, resulting in a relatively serious waste of manpower.

[0014] During the movement of the dried fruit disinfection net, the wampee dried fruits are shaken, so that under the action of several upper-wall ultraviolet sterilization lamps and several lower-wall ultraviolet sterilization lamps, the wampee dried fruits can be irradiated with ultraviolet rays on all sides for disinfection, solving the problem that the existing sterilization device can only sterilize one side of the wampee dried fruits, at most two sides, and needs to be processed multiple times and repeatedly to achieve qualified results, and the process is very cumbersome. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the overall structure of a sterilization device for processing wampee dried fruits in an embodiment of the present invention;

[0016] Figure 2 It is a schematic diagram of the feeding structure of a sterilization device for processing wampee dried fruits in an embodiment of the present invention;

[0017] Figure 3 It is a schematic diagram of the sterilization structure of a sterilization device for processing wampee dried fruits in an embodiment of the present invention;

[0018] Figure 4 It is a schematic diagram of the auxiliary structure of a sterilization device for processing wampee dried fruits in an embodiment of the present invention.

[0019] In the figure: 1, fixed seat; 2, load-bearing beam; 3, conveying slide rail; 4, sterilization support frame; 5, dried fruit feeder; 6, dried fruit guide plate; 7, feeding pipe; 8, dried fruit feeding box; 9, infrared detection module; 10, load-bearing rod; 11, load-bearing frame; 12, auxiliary chute; 13, hydraulic cylinder; 14, sealing cover; 15, guiding slider; 16, upper-wall ultraviolet sterilization lamp; 17, lower-wall ultraviolet sterilization lamp; 18, circulating telescopic rod; 19, dried fruit sterilization rack; 20, dried fruit disinfection net; 21, auxiliary guiding rod; 22, auxiliary telescopic sleeve; 23, auxiliary spring. Specific Embodiments

[0020] The following further describes the specific embodiments of the present invention with reference to the drawings. It should be noted here that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation to the present invention. In addition, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0021] Example 1, please refer to Figures 1-4 , a sterilization device for processing wampee dried fruits, including a fixed seat 1 and a load-bearing beam 2. The load-bearing beam 2 is installed on the upper wall surface of the fixed seat 1. A conveying slide rail 3 is installed on the lower wall surface of the load-bearing beam 2. A feeding structure is sleeved on the outer wall surface of the conveying slide rail 3. A sterilization support frame 4 is installed on the upper wall surface of the fixed seat 1. A sterilization structure is installed on the upper wall surface of the sterilization support frame 4. An auxiliary structure is installed on the inner wall surface of the sterilization structure.

[0022] Please refer to Figure 2 , the feeding structure includes: a dried fruit feeder 5, a dried fruit guide plate 6, two feeding pipes 7, a dried fruit feeding box 8, and an infrared detection module 9; the dried fruit feeder 5 is sleeved on the outer wall surface of the conveying slide rail 3 and moves along with the conveying slide rail 3, the dried fruit guide plate 6 is installed on the lower wall surface of the dried fruit feeder 5, the two feeding pipes 7 are respectively installed on the upper wall surface of the dried fruit feeder 5, the dried fruit feeding box 8 is installed on the upper wall surface of the two feeding pipes 7 and moves along with the two feeding pipes 7, and the infrared detection module 9 is installed below the inside of the dried fruit feeding box 8.

[0023] Please refer to Figure 3 , the sterilization structure includes: four load-bearing rods 10, a load-bearing frame 11, four auxiliary chutes 12, several hydraulic cylinders 13, two sealing covers 14, four guide sliders 15, several upper-wall ultraviolet sterilization lamps 16, and several lower-wall ultraviolet sterilization lamps 17; the four load-bearing rods 10 are respectively installed on the upper wall surface of the fixed seat 1, the load-bearing frame 11 is respectively installed on the upper wall surfaces of the four load-bearing rods 10 and is connected to the sterilization support frame 4, the four auxiliary chutes 12 are respectively opened on the inner wall surfaces of the two load-bearing frames 11, several hydraulic cylinders 13 are respectively installed on the two side surfaces of the sterilization support frame 4, the two sealing covers 14 are respectively installed on the outer end faces of the several hydraulic cylinders 13, one ends of the four guide sliders 15 are respectively installed in the four auxiliary chutes 12, and the other ends are connected to the two ends of the two sealing covers 14, and several upper-wall ultraviolet sterilization lamps 16 are respectively installed on the lower wall surfaces of the two sealing covers 14, and several lower-wall ultraviolet sterilization lamps 17 are respectively installed on the upper wall surface inside the load-bearing frame 11.

[0024] Please refer to Figure 2 , safety chamfers are provided around the fixed seat 1. In this embodiment, this chamfer can prevent fatal injuries when the operator accidentally falls and increase safety.

[0025] Please refer to Figure 2 , auxiliary rollers can be provided on the lower wall surface of the dried fruit feeding box 8. In this embodiment, the friction between the lower wall surface of the dried fruit feeding box 8 and the upper wall surface of the load-bearing beam 2 is reduced.

[0026] In this embodiment, the operator starts the conveying slide rail 3, and the conveying slide rail 3 drives the dried fruit feeder 5 to move at both ends of the load-bearing beam 2. During this period, the dried fruit feeder 5 puts yellow peel dried fruits into the dried fruit disinfection net 20 through the dried fruit guide plate 6. After the conveying slide rail 3 drives the dried fruit feeder 5 to move back and forth once and stops, the dried fruit feeder 5 stops feeding. When there is enough yellow peel dried fruit in the dried fruit feeding box 8, the light signal of the infrared detection module 9 is blocked. When the light signal of the infrared detection module 9 is turned on, an alarm sounds to remind the operator to replenish yellow peel dried fruit into the dried fruit feeding box 8.

[0027] Specifically, the operator fills the dried fruit feeding box 8 with wampee dried fruits, then opens the two sealing covers 14 and starts several hydraulic cylinders 13. The several hydraulic cylinders 13 drive the four guiding sliders 15 to move outward along the four auxiliary sliding grooves 12 through the two sealing covers 14 respectively until the gap between the two sealing covers 14 is large enough for the dried fruit feeder 5 to enter. When the two sealing covers 14 stop moving, the operator starts the conveying slide rail 3. The conveying slide rail 3 drives the dried fruit feeder 5 to move at both ends of the bearing beam 2. During this period, the dried fruit feeder 5 puts the wampee dried fruits into the dried fruit disinfection net 20 through the dried fruit guiding plate 6. After the conveying slide rail 3 drives the dried fruit feeder 5 to move back and forth once and stops, the dried fruit feeder 5 stops feeding. Then the several hydraulic cylinders 13 drive the two sealing covers 14 to reset, and the auxiliary structure starts to make the wampee dried fruits shake evenly in the dried fruit disinfection net 20. At the same time, several upper wall ultraviolet sterilization lamps 16 and several lower wall ultraviolet sterilization lamps 17 are started to disinfect the wampee dried fruits in the dried fruit disinfection net 20. After reaching the set time, the operator opens the two sealing covers 14 to take out the disinfected wampee dried fruits and circulates the above operations. When the wampee dried fruits in the dried fruit feeding box 8 are sufficient, the light signal of the infrared detection module 9 is blocked. When the light signal of the infrared detection module 9 is turned on, an alarm sounds to remind the operator to supplement the wampee dried fruits into the dried fruit feeding box 8.

[0028] Example 2, please refer to Figure 4 , the auxiliary structure includes: several circulating telescopic rods 18, a dried fruit sterilization rack 19, a dried fruit disinfection net 20, several auxiliary guiding rods 21 and several auxiliary telescopic sleeves 22; the several circulating telescopic rods 18 are respectively installed on the side wall surfaces inside the bearing frame 11, the dried fruit sterilization rack 19 is installed on the outer end surfaces of the several circulating telescopic rods 18, the dried fruit disinfection net 20 is installed on the lower wall surface of the dried fruit sterilization rack 19, the several auxiliary guiding rods 21 are respectively installed on the side wall surfaces of the dried fruit sterilization rack 19, and the several auxiliary telescopic sleeves 22 are respectively sleeved on the outer wall surfaces of the several auxiliary guiding rods 21 and are connected to the inside of the bearing frame 11.

[0029] Please refer to Figure 4 , auxiliary springs 23 are sleeved on the outer wall surfaces of the several auxiliary guiding rods 21. In this embodiment, the auxiliary springs 23 can improve the running stability of the several circulating telescopic rods 18, reduce the stress load during the running of the several circulating telescopic rods 18, and improve the service life of the several circulating telescopic rods 18.

[0030] In this embodiment, during the movement of the dried fruit disinfection net 20, the wampee dried fruits are driven to shake, so that the wampee dried fruits can be irradiated with ultraviolet rays on all sides for disinfection under the action of the several upper wall ultraviolet sterilization lamps 16 and the several lower wall ultraviolet sterilization lamps 17.

[0031] Specifically, when the auxiliary structure is started, several circular telescopic rods 18 drive the dried fruit disinfection net 20 to move repeatedly through the dried fruit sterilization rack 19. The dried fruit sterilization rack 19 drives several auxiliary guide rods 21 to move along several auxiliary telescopic sleeves 22. During this period, the auxiliary spring 23 expands and contracts repeatedly, reducing the vibration generated by the movement of several auxiliary guide rods 21 along several auxiliary telescopic sleeves 22, improving the stability and reducing the stress load during the operation of several circular telescopic rods 18, and increasing the service life of several circular telescopic rods 18. During the movement of the dried fruit disinfection net 20, the wampee dried fruits are driven to shake, so that the wampee dried fruits can be irradiated with ultraviolet rays on all sides for disinfection under the action of several upper wall ultraviolet sterilization lamps 16 and several lower wall ultraviolet sterilization lamps 17.

[0032] The above describes the embodiments of the present invention in detail in conjunction with the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, without departing from the principle and spirit of the present invention, various changes, modifications, substitutions, and variations made to these embodiments still fall within the protection scope of the present invention.

Claims

1. A sterilizing device for processing dried kumquats, comprising a fixing seat (1) and a load-bearing beam (2), characterized in that: The load-bearing beam (2) is mounted on the upper wall surface of the fixed seat (1); a conveying slide rail (3) is mounted on the lower wall surface of the load-bearing beam (2); a feeding structure is mounted on the outer wall surface of the conveying slide rail (3); a sterilization support frame (4) is mounted on the upper wall surface of the fixed seat (1); a sterilization structure is mounted on the upper wall surface of the sterilization support frame (4); and an auxiliary structure is mounted on the inner wall surface of the sterilization structure.

2. A sterilizing device for processing dried kumquats according to claim 1, characterized in that: The feeding structure comprises: a dried fruit feeder (5), a dried fruit guide plate (6), two feeding pipes (7), a dried fruit feeding box (8) and an infrared detection module (9); The dried fruit feeder (5) is mounted on the outer wall of the conveying slide rail (3) and moves along with the conveying slide rail (3); the dried fruit guide plate (6) is mounted on the lower wall of the dried fruit feeder (5); the two conveying pipes (7) are respectively mounted on the upper wall of the dried fruit feeder (5); the dried fruit loading box (8) is mounted on the upper wall of the two conveying pipes (7) and moves along with the two conveying pipes (7); and the infrared detection module (9) is mounted at the lower part of the dried fruit loading box (8).

3. A sterilizing device for processing dried kumquats according to claim 1, characterized in that: The sterilization structure comprises: four load-bearing rods (10), a load-bearing frame (11), four auxiliary slide grooves (12), a plurality of hydraulic cylinders (13), two sealing covers (14), four guide slide blocks (15), a plurality of upper wall ultraviolet sterilization lamps (16), and a plurality of lower wall ultraviolet sterilization lamps (17); The four load-bearing rods (10) are respectively mounted on the upper wall surface of the fixing seat (1); the load-bearing frames (11) are respectively mounted on the upper wall surfaces of the four load-bearing rods (10) and are connected to the sterilization support frame (4); the four auxiliary slide grooves (12) are respectively opened on the inner wall surfaces of the two load-bearing frames (11); the plurality of hydraulic cylinders (13) are respectively mounted on the two side surfaces of the sterilization support frame (4); the two sealing covers (14) are respectively mounted on the outer end surfaces of the plurality of hydraulic cylinders (13); one end of the four guide sliders (15) is respectively mounted in the four auxiliary slide grooves (12) and the other end is connected to the two ends of the two sealing covers (14); the plurality of upper wall ultraviolet sterilization lamps (16) are respectively mounted on the lower wall surfaces of the two sealing covers (14); and the plurality of lower wall ultraviolet sterilization lamps (17) are respectively mounted on the upper wall surface inside the load-bearing frame (11).

4. A sterilizing device for processing dried kumquats according to claim 3, characterized in that: The auxiliary structure comprises: a plurality of cyclic telescopic rods (18), a dried fruit sterilization rack (19), a dried fruit sterilization net (20), a plurality of auxiliary guide rods (21) and a plurality of auxiliary telescopic sleeves (22); The plurality of cyclic telescopic rods (18) are respectively mounted on the side wall surfaces inside the load-bearing frame (11); the dried fruit sterilizing frame (19) is mounted on the outer end surfaces of the plurality of cyclic telescopic rods (18); the dried fruit sterilizing net (20) is mounted on the lower wall surface of the dried fruit sterilizing frame (19); the plurality of auxiliary guide rods (21) are respectively mounted on the side wall surfaces of the dried fruit sterilizing frame (19); and the plurality of auxiliary telescopic sleeves (22) are respectively sleeved on the outer wall surfaces of the plurality of auxiliary guide rods (21) and connected to the inside of the load-bearing frame (11).

5. A sterilizing device for processing dried kumquats according to claim 1, characterized in that: The fixing seat (1) is provided with safety chamfers on all four sides.

6. A sterilizing device for processing dried kumquats according to claim 2, characterized in that: Auxiliary rollers may be provided on the lower wall surface of the dried fruit loading box (8).

7. A sterilizing device for processing dried kumquats according to claim 4, characterized in that: The outer wall surfaces of the plurality of auxiliary guide rods (21) are each sleeved with an auxiliary spring (23).