Intelligent dried orange peel tedding and storing device

The automated drying and environmental control of the intelligent dried tangerine peel drying and storage device solves the problems of labor-intensive manual drying and difficulty in controlling temperature and humidity, thus achieving stable storage quality of dried tangerine peel and saving manpower.

CN223909910UActive Publication Date: 2026-02-13水沁
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422815456.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2026-02-13
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The current storage process for dried tangerine peel requires manual turning and sun-drying, which is labor-intensive and makes it difficult to control temperature and humidity, resulting in unstable storage quality.

Method used

The design includes an intelligent dried tangerine peel drying and storage device, comprising a storage chamber, a drive mechanism, a temperature and humidity sensor, a heater, a ventilator, a light sensor, and a control module, to achieve automated drying and environmental control.

Benefits of technology

The process of drying tangerine peel has been automated, saving manpower and ensuring that the tangerine peel is stored in a suitable temperature and humidity environment, thus improving the stability of storage quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223909910U_ABST
    Figure CN223909910U_ABST
Patent Text Reader

Abstract

The utility model provides an intelligent dried orange peel tedding and storing device which comprises a storage bin, a bin cover, a first driving mechanism, a second driving mechanism, a dried orange peel containing hollowed-out frame, a temperature and humidity sensor, a heating device, a ventilator, a light sensor, an ultraviolet sensor, a control module and a power supply module. An opening of the containing cavity is covered with the bin cover, the first driving mechanism is installed between the storage bin and the bin cover, the first driving mechanism drives the bin cover to move so as to open or close the opening, the second driving mechanism is installed on the storage bin, and the dried orange peel containing hollowed-out frame is installed on the driving mechanism and located in the containing cavity; the temperature and humidity sensor, the heating device and the ventilator are all installed on the containing cavity, the first driving mechanism, the second driving mechanism, the heating device, the ventilator, the light sensor and the ultraviolet sensor are all electrically connected with the control module, and the heating device, the ventilator, the light sensor, the ultraviolet sensor and the control module are all electrically connected with the power supply module.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of dried orange peel intelligent storage technology, in particular to an intelligent dried orange peel turning and airing storage device. BACKGROUND

[0002] The dried orange peel produced from the big red orange planted in the special geographical environment of Guangdong Xinhui is sweet and delicious, has high medicinal value, is a traditional spice and seasoning, and is a famous special product of Guangdong Xinhui, and belongs to the first treasure of "three treasures of Guangdong" (dried orange peel, old ginger and reed) and has enjoyed high reputation.

[0003] The existing dried orange peel storage process is still in the traditional household stage, in order to prevent the dried orange peel from producing mildew and insect damage, it is necessary to take it to the sun for airing, and the dried orange peel needs to be turned and aired manually during the airing process, which consumes manpower. At the same time, attention needs to be paid to the temperature and humidity in the turning and airing environment. When the temperature is too high, the dried orange peel will appear to be burnt, and when the humidity is too high, the dried orange peel will appear to be damp. It is difficult for the human to control the temperature and humidity, so that the storage quality of the dried orange peel cannot be stably guaranteed. Therefore, how to save manpower during turning and airing and make the dried orange peel in a more suitable temperature and humidity during airing is a technical problem to be solved by the person skilled in the art. SUMMARY

[0004] The utility model aims at providing an intelligent dried orange peel turning and airing storage device to solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] The intelligent dried orange peel turning and airing storage device comprises a storage bin, a bin cover, a first driving mechanism, a second driving mechanism, a dried orange peel containing hollow frame, a temperature and humidity sensor, a temperature riser, a ventilator, a light sensor, an ultraviolet sensor, a control module and a power supply module, the storage bin is provided with a containing cavity with an opening facing upward, the bin cover covers the opening of the containing cavity, the first driving mechanism is installed between the storage bin and the bin cover, the first driving mechanism drives the bin cover to move to open or close the opening, the second driving mechanism is installed on the storage bin, the dried orange peel containing hollow frame is installed on the driving mechanism and located in the containing cavity, the second driving mechanism drives the dried orange peel containing hollow frame to rotate, the temperature and humidity sensor, the temperature riser and the ventilator are all installed on the containing cavity, the first driving mechanism, the second driving mechanism, the temperature riser, the ventilator, the light sensor and the ultraviolet sensor are all electrically connected with the control module, and the first driving mechanism, the second driving mechanism, the temperature riser, the ventilator, the light sensor, the ultraviolet sensor and the control module are all electrically connected with the power supply module.

[0007] Further, the first driving mechanism comprises two groups of rotary driving assemblies, the two groups of driving assemblies are symmetrically arranged and synchronously moved, the rotary driving assembly comprises a motor base, a first motor and a connecting lug plate, the motor base is installed on the storage bin, the first motor is installed on the motor base, the first motor is electrically connected with the control module and the power supply module, the output shaft of the first motor is fixedly connected with one end of the connecting lug plate, the other end of the connecting lug plate is fixedly connected on the bin cover, and the first motor drives the connecting lug plate to drive the bin cover to rotate around the axis of the output shaft.

[0008] Further, the second driving mechanism comprises a second motor and a connecting piece, the second motor is installed on the front side of the storage bin and located in the accommodating cavity, the second motor is electrically connected with the control module and the power supply module, the connecting piece is installed between the output end of the second motor and the perilla peel accommodating hollow frame, and the second motor drives the connecting piece to drive the perilla peel accommodating hollow frame to rotate.

[0009] Further, the perilla peel accommodating hollow frame comprises an upper plane net frame, a lower plane net frame and a net frame switch driving mechanism, the upper plane net frame is located directly above the lower plane net frame, the net frame switch driving mechanism is installed between the upper plane net frame and the lower plane net frame, the upper plane net frame and the lower plane net frame have an accommodating space therebetween in the up-down direction, the accommodating space is used for limiting the perilla peel, and the front edge of the lower plane net frame is fixedly connected with the second driving mechanism.

[0010] Further, the net frame switch driving mechanism is installed between the rear edges of the upper plane net frame and the lower plane net frame, the net frame switch driving mechanism comprises a lower clamp base, an upper clamp base and a flip driving assembly, a first U-shaped groove is formed above the front end of the lower clamp base, the rear edge of the lower plane net frame is fixedly connected with the first U-shaped groove, the rear end of the lower clamp base is rotationally connected with the rear side wall of the storage bin, a second U-shaped groove is formed below the front end of the upper clamp base, the rear edge of the upper plane net frame is fixedly connected with the second U-shaped groove, and the flip driving assembly is installed between the lower clamp base and the upper clamp base.

[0011] Further, the turning open driving assembly comprises a slider, a connecting rod and a linear driving module, the lower clamping base is provided with an accommodating groove with an upward notch, the rear end of the upper clamping base extends downward and is provided with a hinged part, the hinged part is inserted into the accommodating groove, the hinged part and the accommodating groove are hinged through a first hinge shaft, the rear end of the upper clamping base is provided with an avoiding groove, the front end of the connecting rod is located in the avoiding groove, the front end of the connecting rod and the avoiding groove are hinged through a second hinge shaft, the slider is slidably attached to the lower clamping base, the front end of the slider is provided with a groove, the rear end of the connecting rod is located in the groove, and the rear end of the connecting rod and the groove are hinged through a third hinge shaft.

[0012] Further, the linear driving module comprises a connecting plate, an electric cylinder and a tone fork-shaped transmission part, the connecting plate is installed between the electric cylinder and the lower clamping base, the electric cylinder is electrically connected with the control module and the power supply module, the output shaft of the electric cylinder is fixedly connected with the lower end of the transmission part, the recessed part of the transmission part faces upward, and the rear end of the slider is installed between the upper ends of the transmission part.

[0013] Further, the lower clamping base comprises a front rectangular body and a rear shaft body, the rear end of the rear shaft body is provided with external threads, and the lower clamping base further comprises a support assembly, the support assembly comprises coaxial inner hollow support plates, outer hollow support plates and nuts, the inner hollow support plates and the outer hollow support plates are installed on the rear inner side wall and the rear outer side wall of the storage bin respectively, the rear side wall of the storage bin is provided with a through hole corresponding to the hollow part of the inner hollow support plate, the rear shaft body is rotatably inserted into the inner hollow support plate, the outer hollow support plate and the through hole, the rear side of the front rectangular body is attached to the front side of the inner hollow support plate, and the nut is threadedly connected to the rear end of the rear shaft body and attached to the rear side of the outer hollow support plate.

[0014] Further, the lower clamping base further comprises a support assembly, the support assembly comprises coaxial inner hollow support plates, outer hollow support plates and nuts, the inner hollow support plates and the outer hollow support plates are installed on the rear inner side wall and the rear outer side wall of the storage bin respectively, the rear side wall of the storage bin is provided with a through hole corresponding to the hollow part of the inner hollow support plate, the rear shaft body is rotatably inserted into the inner hollow support plate, the outer hollow support plate and the through hole, the rear side of the front rectangular body is attached to the front side of the inner hollow support plate, and the nut is threadedly connected to the rear end of the rear shaft body and attached to the rear side of the outer hollow support plate.

[0015] Further, the lower clamping base further comprises a support assembly, the support assembly comprises coaxial inner hollow support plates, outer hollow support plates and nuts, the inner hollow support plates and the outer hollow support plates are installed on the rear inner side wall and the rear outer side wall of the storage bin respectively, the rear side wall of the storage bin is provided with a through hole corresponding to the hollow part of the inner hollow support plate, the rear shaft body is rotatably inserted into the inner hollow support plate, the outer hollow support plate and the through hole, the rear side of the front rectangular body is attached to the front side of the inner hollow support plate, and the nut is threadedly connected to the rear end of the rear shaft body and attached to the rear side of the outer hollow support plate.

[0016] The utility model discloses the beneficial effect of:

[0017] Before the formal use of the utility model, the first drive mechanism is driven by the control module to open the bin cover, the opening of the containing cavity is opened, then the dried orange peel that needs to be turned over is put into the dried orange peel containing hollow frame, the dried orange peel is contained and limited by the dried orange peel containing hollow frame, the first drive mechanism is driven by the control module to close the bin cover, according to the weather condition, the utility model is placed in the external environment.

[0018] When the control module detects sufficient sunlight through the light sensor, the control module controls the first drive mechanism to drive the bin cover to open, and the second drive mechanism is controlled by the control module to drive the dried orange peel containing hollow frame to rotate, so that the dried orange peel is automatically turned over, and both sides of the dried orange peel can absorb sufficient light.

[0019] When the control module detects insufficient sunlight through the light sensor, it indicates that the weather turns to overcast or the sun will set, or the control module detects that the ultraviolet rays of the sun are too strong through the ultraviolet sensor, and the control module will control the first drive mechanism to drive the bin cover to close, so that the dried orange peel is stored, to protect the dried orange peel from being damp at night or being damaged by too strong ultraviolet rays.

[0020] When the control module detects that the temperature in the containing cavity exceeds the set range value through the temperature and humidity sensor, for example, the temperature exceeds 45 DEG C, the control module controls the ventilator to work, so that the air flow speed in the containing cavity is accelerated, so as to reduce the temperature in the containing cavity; when the control module detects that the humidity in the containing cavity exceeds the set range value through the temperature and humidity sensor, for example, the humidity exceeds 60% of the set maximum humidity value, the control module controls the temperature riser to work, so that the temperature in the containing cavity is raised, so as to reduce the humidity in the containing cavity.

[0021] The above embodiment shows that the utility model can realize automatic management of the dried orange peel, can save manpower and ensure that the dried orange peel is in a suitable temperature and humidity environment, and finally ensures the stability of the dried orange peel quality. DRAWINGS

[0022] Figure 1 The utility model is a three-dimensional schematic Figure 1 .

[0023] Figure 2 The utility model is a three-dimensional schematic Figure 2 .

[0024] Figure 3 The utility model is an enlarged schematic view of A.

[0025] Figure 4 The utility model is a local left view schematic Figure 1 .

[0026] Figure 2 is a partial left view schematic of the present utility model Figure 6 .

[0027] Figure 7 is an exploded schematic view of the net rack switch driving mechanism of the present utility model.

[0028] Figure 8 is a circuit schematic diagram of the constant temperature lamp of the present utility model.

[0029] Figure 9 is a circuit schematic diagram of the light sensor of the present utility model.

[0030] Figure 10 is a circuit schematic diagram of the ultraviolet sensor of the present utility model.

[0031] Figure 11 is a circuit schematic diagram of the control module of the present utility model.

[0032] Figure 12 is a circuit schematic diagram of the visual recognition module of the present utility model.

[0033] Figure 1 is a circuit schematic diagram of the voice driving module of the present utility model. DETAILED DESCRIPTION

[0034] The present utility model is further described below in combination with the drawings:

[0035] Please refer to Figure 2 and Figure 2 , the intelligent dried tangerine or orange peel sunning and storing device, including storage bin 1, bin cover 2, first driving mechanism 3, second driving mechanism 4, dried tangerine or orange peel containing hollow frame 5, temperature and humidity sensor, temperature riser, ventilator 6, light sensor, ultraviolet sensor, control module and power supply module, the storage bin 1 is equipped with containing cavity with the opening facing upwards, the bin cover 2 is covered on the opening of containing cavity, the first driving mechanism 3 is installed between the storage bin 1 and bin cover 2, the first driving mechanism 3 drives bin cover 2 to move to open or close the opening, the second driving mechanism 4 is installed on the storage bin 1, the dried tangerine or orange peel containing hollow frame 5 is installed on the driving mechanism and is located in containing cavity, the second driving mechanism 4 drives the rotary motion of dried tangerine or orange peel containing hollow frame 5, temperature and humidity sensor, temperature riser and ventilator 6 are all installed on containing cavity, light sensor, ultraviolet sensor, control module and power supply module are all located on the side of storage bin 1, first driving mechanism 3, second driving mechanism 4, temperature riser, ventilator 6, light sensor, ultraviolet sensor and control module are all electrically connected with power supply module, first driving mechanism 3, second driving mechanism 4, temperature riser, ventilator 6, light sensor and ultraviolet sensor are all electrically connected with control module and are all controlled through control module.

[0036] The temperature and humidity sensor is used for detecting the temperature and humidity in the accommodating cavity, the ventilator 6 is used for accelerating the air flow speed in the accommodating cavity, in the embodiment, the temperature raising device is a constant temperature lamp or a heating pipe in a meandering track shape, the ventilator 6 is a heat dissipation fan, the light sensor is used for detecting the light intensity of sunlight, and the ultraviolet sensor is used for detecting the ultraviolet intensity of sunlight.

[0037] Please refer to Figure 3 and Figure 1 , the first driving mechanism 3 includes two groups of rotating driving assemblies 31, the two groups of driving assemblies are symmetrically arranged and synchronously moved, the rotating driving assembly 31 includes a motor seat 311, a first motor 312 and a connecting lug plate 313, the motor seat 311 is installed on the storage bin 1, the first motor 312 is installed on the motor seat 311, the first motor 312 is electrically connected with the control module and the power supply module, the output shaft of the first motor 312 is fixedly connected with one end of the connecting lug plate 313, the other end of the connecting lug plate 313 is fixedly connected on the bin cover 2, and the first motor 312 drives the connecting lug plate 313 to drive the bin cover 2 to rotate around the axis of the output shaft.

[0038] Please refer to Figure 4 and Figure 4 , the second driving mechanism 4 includes a second motor 41 and an L-shaped connecting piece 42, the second motor 41 is installed on the front side of the storage bin 1 and located in the accommodating cavity, the second motor 41 is electrically connected with the control module and the power supply module, the connecting piece 42 is installed between the output end of the second motor 41 and the perilla container hollow frame 5, and the second motor 41 drives the connecting piece 42 to drive the perilla container hollow frame 5 to rotate.

[0039] Please refer to Figure 4 to Figure 6 , the perilla container hollow frame 5 includes an upper plane net frame 51, a lower plane net frame 52 and a net frame switch driving mechanism 53, the upper plane net frame 51 is located directly above the lower plane net frame 52, the net frame switch driving mechanism 53 is installed between the upper plane net frame 51 and the lower plane net frame 52, the upper plane net frame 51 and the lower plane net frame 52 have an accommodating space therebetween in the up-down direction, the perilla is limited between the upper plane net frame 51 and the lower plane net frame 52 through the accommodating space, the front edge of the lower plane net frame 52 is fixedly connected with the second driving mechanism 4, and the second driving mechanism 4 drives the lower plane net frame 52 to drive the upper plane net frame 51 to rotate through the net frame switch driving mechanism 53.

[0040] Please refer to Figure 5The net rack switch driving mechanism 53 is installed between the rear edges of the upper plane net rack 51 and the lower plane net rack 52, and the net rack switch driving mechanism 53 comprises a lower clamp seat 531, an upper clamp seat 532 and a flip driving assembly 533. The first U-shaped groove 5311 is formed above the front end of the lower clamp seat 531, and the rear edge of the lower plane net rack 52 is fixedly connected with the first U-shaped groove 5311. The rear end of the lower clamp seat 531 is rotationally connected with the rear side wall of the storage bin 1. The second U-shaped groove 5321 is formed below the front end of the upper clamp seat 532, and the rear edge of the upper plane net rack 51 is fixedly connected with the second U-shaped groove 5321. The flip driving assembly 533 is installed between the lower clamp seat 531 and the upper clamp seat 532, and the flip driving assembly 533 drives the upper clamp seat 532 to drive the upper plane net rack 51 to make a flip movement.

[0041] Please refer to Figure 6 and Figure 6 , the flip driving assembly 533 comprises a sliding block 5331, a connecting rod 5332 and a linear driving module 5333. The accommodating groove 5312 is formed in the lower clamp seat 531 and faces upward. The rear end of the upper clamp seat 532 extends downward and has a hinged part 5322. The hinged part 5322 is inserted into the accommodating groove 5312 and is hinged with the accommodating groove 5312 through a first hinge shaft. The rear end of the upper clamp seat 532 is provided with an avoiding groove 5323. The front end of the connecting rod 5332 is located in the avoiding groove 5323 and is hinged with the avoiding groove 5323 through a second hinge shaft. The sliding block 5331 is slidably attached to the lower clamp seat 531. The front end of the sliding block 5331 is provided with a groove 5331-1. The rear end of the connecting rod 5332 is located in the groove 5331-1 and is hinged with the groove 5331-1 through a third hinge shaft. The linear driving module 5333 is installed between the rear end of the sliding block 5331 and the lower clamp seat 531.

[0042] Please refer to Figure 1 , the linear driving module 5333 comprises a connecting plate 5333-1, an electric cylinder 5333-2 and a tone fork-shaped transmission part 5333-3. The connecting plate 5333-1 is installed between the electric cylinder 5333-2 and the lower clamp seat 531. The electric cylinder 5333-2 is electrically connected with a control module and a power supply module. The output shaft of the electric cylinder 5333-2 is fixedly connected with the lower end of the transmission part 5333-3. The concave part of the transmission part 5333-3 faces upward. The rear end of the sliding block 5331 is installed between the upper end of the transmission part 5333-3.

[0043] Please refer to Figure 5 , Figure 6 and ​The lower clamp base 531 comprises a front rectangular body and a rear shaft body, the rear end of the rear shaft body is provided with external threads, and the lower clamp base 531 further comprises a support assembly 534, the support assembly 534 comprises coaxial inner hollow support plates 5341, outer hollow support plates 5342 and nuts 5343, the inner hollow support plates 5341 and the outer hollow support plates 5342 are respectively arranged on the inner rear side wall and the outer rear side wall of the storage bin 1, the rear side wall of the storage bin 1 is provided with a through hole corresponding to the hollow part of the inner hollow support plate 5341, and the rear shaft body is rotatably inserted into the inner hollow support plate 5341, the outer hollow support plate 5342 and the through hole. The rear side of the front rectangular body is attached to the front side of the inner hollow support plate 5341, and the nut 5343 is threadedly connected to the rear end of the rear shaft body and attached to the rear side of the outer hollow support plate 5342.

[0044] The working principle of the net rack switch driving mechanism 53 is as follows:

[0045] When it is necessary to place or take out the dried orange peel from the dried orange peel containing hollow rack 5, under the premise that the cover 2 is opened and the dried orange peel containing hollow rack 5 is reset, that is, the upper plane net rack 51 and the lower plane net rack 52 are both horizontal and the upper plane net rack 51 is directly above the lower plane net rack 52, the control module controls the electric cylinder 5333-2 to drive the sliding block 5331 to move backward through the driving rod of the electric cylinder 5333-2, the third hinge shaft driving link 5332 and the second hinge shaft, so that the upper clamp base 532 rotates around the axis of the first hinge shaft, and the upper plane net rack 51 rotates counterclockwise around the axis of the first hinge shaft as viewed from left to right, so that the upper clamp base 532 drives the upper plane net rack 51 to perform a flip-up movement, thereby opening the space between the upper plane net rack 51 and the lower plane net rack 52, and facilitating the taking or placing of the dried orange peel in the dried orange peel containing hollow rack 5.

[0046] The visual recognition module is further included, and the visual recognition module is used for monitoring whether there is an external object close to the storage bin 1. The visual recognition module can identify whether a person or an animal approaches through an algorithm. The visual recognition module is located beside the storage bin 1, the visual recognition module is electrically connected with a flash lamp, and the visual recognition module is electrically connected with the control module and the power supply module.

[0047] The voice driving module is further included, and the voice driving module is located beside the storage bin 1. The voice driving module is electrically connected with the control module and the power supply module.

[0048] The electric control box is further included, and the electric control box is arranged on the outer side wall of the storage bin 1. The light sensor, the ultraviolet sensor, the visual recognition module and the voice driving module are all arranged on the electric control box, and the control module and the power supply module are both arranged in the electric control box. Overline holes for facilitating the passage of electric wires are arranged on the relative positions of the storage bin 1 and the electric control box.

[0049] The remote interactive interface control end is wirelessly connected with the control module.

[0050] The working principle of the utility model is as follows:

[0051] Before the utility model is formally used, the first driving mechanism 3 is controlled by the control module to drive the bin cover 2 to open, the opening of the containing cavity is opened, and then the dried orange peel to be turned over is manually placed into the dried orange peel containing hollow frame 5, the dried orange peel is contained and limited by the dried orange peel containing hollow frame 5, the bin cover 2 is controlled by the control module to drive the first driving mechanism 3 to close, and the utility model is placed in the external environment according to the weather condition.

[0052] When the control module detects sufficient sunlight through the light sensor, the control module controls the first driving mechanism 3 to drive the bin cover 2 to open, the second driving mechanism 4 is controlled by the control module to drive the dried orange peel containing hollow frame 5 to rotate 180 degrees, and the dried orange peel is automatically turned over, so that the front and back of the dried orange peel can absorb sufficient light.

[0053] When the control module detects insufficient sunlight through the light sensor, it is indicated that the weather turns cloudy or the sun is about to set, or the control module detects that the ultraviolet rays of the sun are too strong through the ultraviolet sensor, and the control module controls the first driving mechanism 3 to drive the bin cover 2 to close, so that the dried orange peel is stored, to protect the dried orange peel from being damp at night or being damaged by too strong ultraviolet rays.

[0054] When the control module detects that the temperature in the containing cavity exceeds the set range value through the temperature and humidity sensor, for example, the temperature exceeds 45 DEG C, the control module controls the ventilator 6 to work, so that the air flow speed in the containing cavity is accelerated, to reduce the temperature in the containing cavity, and the ambient temperature around the dried orange peel is controlled; when the control module detects that the humidity in the containing cavity exceeds the set range value through the temperature and humidity sensor, for example, the humidity exceeds 60% of the set maximum humidity value, the control module controls the temperature riser to work, to raise the temperature in the containing cavity, to reduce the humidity in the containing cavity, and the ambient humidity around the dried orange peel is controlled.

[0055] When the control module detects that someone or an animal approaches through the visual recognition module, for example, birds or small animals such as squirrels are located on the storage bin 1, the control module controls the flash of the visual recognition module to flash and controls the voice driving module to emit a driving sound, to avoid the interference of people or animals on the turning over of the dried orange peel, and to ensure the smoothness of the turning over process of the dried orange peel.

[0056] The user can observe the temperature, humidity, light intensity, and ultraviolet intensity values returned by the control module through the wireless network in real time through the remote interactive interface control terminal, and can also observe the shooting picture of the visual identification module and the pre-warning of the approach of foreign objects.

[0057] The above is not intended to limit the technical scope of the present application in any way, and any modifications, equivalent changes, and modifications made to the above embodiments in accordance with the technical essence of the present application are still within the scope of the technical solution of the present application.

Claims

1. A smart dried tangerine or orange peel turning and storing device, characterized in that: The application relates to a storage device for dried orange peel, which comprises a storage bin, a bin cover, a first driving mechanism, a second driving mechanism, a dried orange peel containing hollow frame, a temperature and humidity sensor, a temperature riser, a ventilator, a light sensor, a ultraviolet sensor, a control module and a power supply module, wherein the storage bin is internally provided with a containing cavity with an opening facing upwards, the bin cover covers the opening of the containing cavity, the first driving mechanism is installed between the storage bin and the bin cover, the first driving mechanism drives the bin cover to move to open or close the opening, the second driving mechanism is installed on the storage bin, the dried orange peel containing hollow frame is installed on the driving mechanism and located in the containing cavity, the second driving mechanism drives the dried orange peel containing hollow frame to rotate, the temperature and humidity sensor, the temperature riser and the ventilator are all installed on the containing cavity, the first driving mechanism, the second driving mechanism, the temperature riser, the ventilator, the light sensor and the ultraviolet sensor are all electrically connected with the control module, and the first driving mechanism, the second driving mechanism, the temperature riser, the ventilator, the light sensor, the ultraviolet sensor and the control module are all electrically connected with the power supply module.

2. The intelligent dried orange peel turning and storing device according to claim 1, characterized in that: The first driving mechanism comprises two groups of rotary driving assemblies, the two groups of driving assemblies are symmetrically arranged and synchronously move, the rotary driving assembly comprises a motor base, a first motor and a connecting lug plate, the motor base is installed on the storage bin, the first motor is installed on the motor base, the first motor is electrically connected with the control module and the power supply module, the output shaft of the first motor is fixedly connected with one end of the connecting lug plate, the other end of the connecting lug plate is fixedly connected with the bin cover, and the first motor drives the connecting lug plate to drive the bin cover to rotate around the axis of the output shaft.

3. The intelligent dried orange peel turning and storing device according to claim 1, characterized in that: The second driving mechanism comprises a second motor and a connecting piece, the second motor is installed on the front side of the storage bin and located in the containing cavity, the second motor is electrically connected with the control module and the power supply module, the connecting piece is installed between the output end of the second motor and the dried orange peel containing hollow frame, and the second motor drives the connecting piece to drive the dried orange peel containing hollow frame to rotate.

4. The intelligent dried orange peel turning and storing device according to claim 1, characterized in that: The dried orange peel containing hollow frame comprises an upper plane net frame, a lower plane net frame and a net frame switch driving mechanism, the upper plane net frame is located directly above the lower plane net frame, the net frame switch driving mechanism is installed between the upper plane net frame and the lower plane net frame, the upper plane net frame and the lower plane net frame have a containing space in the up-down direction, the containing space is used for limiting the dried orange peel, and the front edge of the lower plane net frame is fixedly connected with the second driving mechanism.

5. The intelligent dried orange peel turning and storing device according to claim 4, characterized in that: The net rack switch driving mechanism is installed between the rear edges of the upper and lower plane net racks, and comprises a lower clamp seat, an upper clamp seat and a flip opening driving assembly.

6. The intelligent dried orange peel turning and storing device according to claim 5, characterized in that: The flip opening driving assembly comprises a sliding block, a connecting rod and a linear driving module.

7. The intelligent dried orange peel turning and storing device according to claim 6, characterized in that: The linear driving module comprises a connecting plate, an electric cylinder and a tone fork-shaped transmission member.

8. The intelligent dried orange peel turning and storing device according to claim 1, characterized in that: The visual identification module and the voice driving module are both located beside the storage bin, and the visual identification module is electrically connected with a flash.

9. The intelligent dried orange peel turning and storing device according to claim 8, characterized in that: The electric control box is installed on the outer side wall of the storage bin, and the light sensor, the ultraviolet sensor, the visual identification module and the voice driving module are all installed on the electric control box. The control module and the power supply module are both installed in the electric control box.