Airing production equipment room

By introducing a photovoltaic/wind power energy storage heating system and an automatic material stripping and conveying system into the Gobi Desert drying room, the problem of the Gobi Desert drying room being limited by natural conditions has been solved, the fruit and vegetable drying cycle has been shortened and the production efficiency has been improved, meeting modern food processing standards.

CN121829048APending Publication Date: 2026-04-10GUOREN (ZHONGSHAN) FOOD PRODUCTION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUOREN (ZHONGSHAN) FOOD PRODUCTION CO LTD
Filing Date
2026-02-04
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In the current fruit and vegetable drying process, the drying rooms in the Gobi Desert are limited by natural conditions, resulting in long drying cycles and low production efficiency. Furthermore, the separation of primary and secondary processing leads to high logistics costs and difficulty in controlling product quality, which fails to meet the standardization requirements of modern food processing.

Method used

Design a drying production equipment room equipped with ventilation holes, heating devices, photovoltaic/wind power generation components and energy storage modules. It utilizes natural wind and solar power generation and storage to provide heating and drying, and combines an automatic peeling mechanism and material conveying system to achieve all-weather drying and subsequent processing.

Benefits of technology

Shorten fruit and vegetable drying time, improve production efficiency, reduce logistics costs, ensure product quality consistency, and meet the needs of modern food processing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses an air-drying production equipment room, which comprises an air-drying room, at least two opposite walls of the air-drying room are provided with ventilation holes; the air heating device communicates with the inner space of the airing room, the air heating device is electrically connected with an energy storage module, and the energy storage module is electrically connected with a photovoltaic power generation assembly or a wind power generation assembly; and the production workshop is arranged below the airing room, a material conveying mechanism is arranged between the production workshop and the airing room, and a screening mechanism and a packaging device are arranged in the production workshop. In the daytime, high-temperature natural wind enters the airing room through the ventilation holes and then is exhausted, the photovoltaic power generation assembly or the wind power generation assembly is used for generating electric energy and storing the electric energy in the energy storage module, and the energy storage module drives the warm air device to work at night, so that fruits and vegetables can be continuously dried all day long, and the time needed for drying the fruits and vegetables is shortened; and after the fruits and the vegetables are aired, the dried fruits and the vegetables can be transferred to a production workshop below the airing room by utilizing the material conveying mechanism for subsequent processing, so that the production efficiency is further improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fruit and vegetable drying processing, and particularly relates to a drying production equipment room. BACKGROUND

[0002] In the Gobi desert widely distributed in Xinjiang region, in order to adapt to the traditional demand of fruit and vegetable drying processing, a large number of simple or semi-fixed drying rooms are generally built, which are mainly used for natural drying of raisins and other dried fruits. The drying room relies on the special climate conditions of the Gobi desert, i.e. long sunshine time, strong solar radiation and high daytime temperature, and uses the natural convection of high-temperature air through the building structure to dehydrate the suspended or spread fresh fruits.

[0003] However, due to the remote location of the Gobi desert and weak infrastructure, most of the drying sites have no power supply, and stable mechanical ventilation, temperature control or auxiliary heating equipment cannot be introduced, so the drying process is completely subject to natural conditions. Especially when the temperature drops sharply at night and the relative humidity of the air changes, the drying effect almost stops, resulting in a significant extension of the drying period and low production efficiency.

[0004] In addition, the existing production mode generally presents the characteristics of "geographical separation of preliminary drying and deep processing": after the preliminary dehydration of raisins and other products in the Gobi desert drying room, they need to be transported over a long distance to the production workshop located in the city or industrial area for subsequent deep processing links such as stem removal, cleaning, grading, sterilization, packaging, etc. This decentralized operation process not only increases the logistics cost and the risk of fruit loss, but also further lengthens the overall production cycle due to the time lag and multiple handling between preliminary processing and deep processing, affecting the product release speed and supply chain response capability. At the same time, the quality control completely depends on natural drying, and it is difficult to meet the requirements of modern food processing standardization and large-scale production in terms of product hygiene consistency and uniformity of moisture content. SUMMARY

[0005] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, one of the objects of the present application is to provide a drying production equipment room capable of shortening the time required for drying fruits and vegetables and completing the post-processing procedure after drying fruits and vegetables, thereby improving production efficiency.

[0006] According to the drying production equipment room, the natural wind with high temperature enters the drying room through the ventilation holes in the daytime and is discharged, the photovoltaic power generation assembly or the wind power generation assembly generates electric energy and stores the electric energy in the energy storage module, the energy storage module drives the warm air device to work at night, so that the fruits and vegetables in the drying room are dried, the fruits and vegetables can be dried all day long, and the drying time of the fruits and vegetables is shortened, and after the fruits and vegetables are dried, the material conveying mechanism can be used to transfer the dried fruits and vegetables to the production workshop below the drying room to be processed in a subsequent process, and the production efficiency is further improved.

[0007] According to the drying production equipment room, the natural wind with high temperature enters the drying room through the ventilation holes in the daytime and is discharged, the photovoltaic power generation assembly or the wind power generation assembly generates electric energy and stores the electric energy in the energy storage module, the energy storage module drives the warm air device to work at night, so that the fruits and vegetables in the drying room are dried, the fruits and vegetables can be dried all day long, and the drying time of the fruits and vegetables is shortened, and after the fruits and vegetables are dried, the material conveying mechanism can be used to transfer the dried fruits and vegetables to the production workshop below the drying room to be processed in a subsequent process, and the production efficiency is further improved.

[0008] In some embodiments of the present application, the photovoltaic power generation assembly is arranged on the top wall of the drying room, and the warm air device comprises a fan connected with the photovoltaic power generation assembly, a heating element, and a gas pipeline for conveying hot air towards the internal space of the drying room.

[0009] In some embodiments of the present application, the internal space of the drying room is arranged with a plurality of drying rods, the drying rods are provided with a hanging structure, and the drying rods are movably provided with an automatic stripping mechanism for stripping the dried fruits and vegetables from the hanging structure.

[0010] In some embodiments of the present application, the drying rod comprises a plurality of pipe fittings movably sleeved from the inside to the outside in sequence, the hanging structure comprises a plurality of hanging rods circularly distributed at intervals around the central axis of the pipe fitting, the hanging rods are outwardly cantilevered away from the outer peripheral wall of the pipe fitting, the lowermost pipe fitting is connected with a driving mechanism for driving the pipe fitting to move upward, and the driving mechanism can drive the pipe fitting to move upward so that the hanging rods on the adjacent pipe fittings approach each other to strip the dried fruits and vegetables.

[0011] In some embodiments of the present application, the internal space of the drying room has a drying space in the shape of a cuboid, a plurality of the drying rods are arranged at intervals along the length direction of the drying space to form a drying rod group, a plurality of the drying rod groups are arranged at intervals along the width direction of the length direction of the drying space, and each of the drying rod groups is respectively provided with a driving mechanism for separately controlling the extension and retraction of each of the drying rod groups. ​

[0012] In some embodiments of the present application, the driving mechanism comprises a hanging rope and a rotating roller for driving the winding or unwinding of the hanging rope, one end of the hanging rope is connected to the lower end of the lowermost tube, the other end of the hanging rope is connected to the rotating roller, the rotating roller is connected to a motor for driving the rotation of the rotating roller, and the upward movement of the tube can drive the upward movement of another tube above the tube through the hanging rod.

[0013] In some embodiments of the present application, the automatic stripping mechanism comprises a mounting bracket fixed to the inner top wall of the drying room, a blocking disc is arranged below the mounting bracket, the blocking disc is provided with a clearance hole and a strip-shaped hole extending outward along the outer peripheral edge of the clearance hole, when the rotating roller drives the winding movement of the hanging rope, the tube can pass through the clearance hole upward, and all the hanging rods on the tube can pass through the strip-shaped hole to prevent the dried fruits and vegetables from passing through the strip-shaped hole.

[0014] In some embodiments of the present application, the screening mechanism comprises a first hopper connected to the material conveying mechanism, the first hopper is provided with a first screen and a second screen spaced downward, the mesh diameter of the first screen is larger than the mesh diameter of the second screen, and the radial dimension of the dried fruits and vegetables is between the mesh diameter of the first screen and the mesh diameter of the second screen.

[0015] In some embodiments of the present application, a dust removal device is further arranged between the screening mechanism and the packaging device, the dust removal device comprises a rack, a hollow roller is rotatably arranged on the rack, the outer peripheral wall of the roller is filled with exhaust apertures, the two ends of the roller are respectively provided with an inlet and an outlet, a second hopper is arranged on the rack and communicates the output end of the screening mechanism with the inlet, the outlet is connected to the input end of the packaging device, and the shaft end of the roller is provided with a high-pressure gas pump connected to the interior of the roller.

[0016] In some embodiments of the present application, the outer side of the drying room and the production workshop is provided with an elevator, the side wall of the drying room is provided with an entrance opposite to the elevator, and the side wall of the production workshop is provided with a door opening communicating with the internal space thereof.

[0017] Additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0018] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings in which: Figure 1Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 2 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 1 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 3 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 4 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 3 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 5 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 6 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 5 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 7 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 8 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 9 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 8 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 10 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 9 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 11 Structure diagram of an embodiment of the drying production equipment room of the present application; Figure 10 Structure diagram of an embodiment of the drying production equipment room of the present application.

[0019] Reference signs: Drying room 100; ventilation hole 110; elevator 120; dustproof curtain 130; movable floor 140; movable plate 141; first sliding part 142; second sliding part 143; third sliding part 144; fourth sliding part 145; first sliding rail 150; second sliding rail 160; lifting mechanism 170; first linear driver 171; second linear driver 172; hinge 180; material dropping channel 190; warm air device 200; photovoltaic power generation assembly 300; production workshop 400; material conveying mechanism 500; first conveying belt 510; second conveying belt 520; screening mechanism 600; packaging device 700; drying rod 800; pipe 810; hanging rod 820; driving mechanism 830; hanging rope 831; rotating roller 832; motor 833; automatic stripping mechanism 840; mounting rack 841; blocking disc 842; clearance through hole 843; strip-shaped through hole 844; dust removal device 900; rack 910; roller 920; feeding port 930; discharging port 940; second hopper 950; high-pressure air pump 960. DETAILED DESCRIPTION

[0020] The embodiments of the present application will be described in detail below with reference to the drawings, in which the same or similar components have the same or similar designations throughout the drawings and a repeated description is omitted. The embodiments described below are examples in which the present application is applied to the laundry drying apparatus, and the present application is not limited to the examples.

[0021] In the description of the present application, it is understood that the positional description, such as the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the positional or spatial relationship based on the orientation shown in the drawings, and are used only for the purpose of facilitating the description of the present application and simplifying the description, and thus cannot be understood as indicating or implying that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and thus cannot be understood as limiting the present application.

[0022] In the description of the present application, the singular includes one or more, and the plural includes two or more, greater than, less than, exceeding, etc. are understood to exclude the number, and above, below, within, etc. are understood to include the number. If the first, second, etc. are described, it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated or the order of technical features indicated.

[0023] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0024] Referring to Figure 1 and Figure 2 , the drying production equipment house of the present application comprises: a drying house 100, at least two opposite walls of the drying house 100 are provided with ventilation holes 110; a warm air device 200 is connected with the internal space of the drying house 100, the warm air device 200 is electrically connected with an energy storage module, the energy storage module is electrically connected with a photovoltaic power generation assembly 300 or a wind power generation assembly; a production workshop 400 is arranged below the drying house 100, a material conveying mechanism 500 is arranged between the production workshop 400 and the drying house 100, a screening mechanism 600 which is connected with the material conveying mechanism 500 and a packaging device 700 which is connected with the screening mechanism 600 are arranged in the production workshop 400.

[0025] The high-temperature natural wind enters the drying room 100 through the ventilation hole 110 and is discharged during the day, and the photovoltaic power generation assembly 300 or the wind power generation assembly generates electric energy and stores it in the energy storage module. The energy storage module drives the warm air device 200 to work at night, thereby drying the fruits and vegetables in the drying room 100, continuously drying the fruits and vegetables throughout the day, thereby shortening the time required for drying the fruits and vegetables. After the fruits and vegetables are dried, the material conveying mechanism 500 can transfer the dried fruits and vegetables to the production workshop 400 below the drying room 100 for subsequent process processing, thereby further improving the production efficiency.

[0026] It should be noted that the daytime temperature on the Gobi Desert is high, and the solar radiation is strong, so the natural convection of high-temperature air can be used to dehydrate the fruits and vegetables during the day. The photovoltaic power generation assembly 300 can generate electricity using strong solar radiation, and then input the electric energy into the energy storage module. The temperature on the Gobi Desert drops sharply at night, and the drying effect almost stops. At this time, the energy storage module drives the warm air device 200 to work to continuously input hot air into the drying room 100. After the fruits and vegetables are dehydrated to the target, the material conveying mechanism 500 can transfer the dried fruits and vegetables to the production workshop 400 below the drying room 100. The dried fruits and vegetables are separated from the branches and dust after passing through the screening mechanism 600, and then the packaging device 700 is used to complete the packaging, thereby forming the final product to directly flow into the market. In addition, the wind power resources on the Gobi Desert are also relatively abundant. When the wind power generation assembly replaces the photovoltaic power generation assembly 300, the wind power generation assembly can generate electricity throughout the day, not just during the day.

[0027] Referring to Figure 1 In some embodiments of the present application, the photovoltaic power generation assembly 300 is arranged on the top wall of the drying room 100, and the warm air device 200 includes a fan connected to the photovoltaic power generation assembly 300, a heating element, and a gas pipeline for conveying hot air to the interior space of the drying room 100. It should be noted that the photovoltaic power generation assembly 300 connects the fan and the heating element through the energy storage module. The heating element heats the air in the gas pipeline, and then blows it to the drying room 100 under the drive of the fan. In this embodiment, the upper end of the outer wall around the drying room 100 is arranged with a dustproof curtain 130. The dustproof curtain 130 is covered with micropores. After the hot air is input into the drying room 100, it can be discharged outward from the micropores. However, the diameter of the micropores can block sand and dust, so as to cope with the situation of sandstorm on the Gobi Desert, and also help to reduce heat loss when drying fruits and vegetables at night, thereby further shortening the time required for drying fruits and vegetables.

[0028] Referring to Figure 2 and Figure 3In some embodiments of the present application, the interior of the drying room 100 is arranged with a plurality of drying rods 800, which are provided with a hanging structure, and an automatic stripping mechanism 840 is movably arranged on the drying rods 800 to drive the fruit and vegetable dry to fall off. It can be understood that the plurality of drying rods 800 are arranged at intervals and hung in the drying room 100, which fully utilizes the interior space of the drying room 100. The fruit and vegetables to be dried are hung by the hanging structure. When the set drying conditions (such as drying time, water content of the extracted sample, etc.) are reached, the automatic stripping mechanism 840 will cause the fruit and vegetable dry to fall off, and then the material conveying mechanism 500 can transfer the fruit and vegetable dry to the production workshop 400 below the drying room 100 for further processing, thereby further improving the production efficiency.

[0029] Referring to Figure 3 and Figure 4 In some embodiments of the present application, the drying rod 800 includes a plurality of pipe fittings 810 movably sleeved from the inside to the outside in sequence, the hanging structure includes a plurality of hanging rods 820 arranged at intervals and distributed circumferentially around the central axis of the pipe fitting 810, the hanging rod 820 is arranged to extend outwardly away from the outer peripheral wall of the pipe fitting 810, the lowermost pipe fitting 810 is connected with a driving mechanism 830 for driving it to move upward, and the driving mechanism 830 can drive the pipe fitting 810 to move upward so that the hanging rods 820 on the adjacent pipe fittings 810 are close to each other to cause the fruit and vegetable dry to fall off.

[0030] When drying fruits and vegetables, the pipe fittings 810 of the drying rod 800 are relatively extended, the drying rod 800 is elongated to a longer size, the fruits and vegetables to be dried are hung on the hanging rods 820 of each pipe fitting 810, and the vertical space is fully utilized for drying fruits and vegetables. When it is necessary to separate the fruit and vegetable dry, the driving mechanism 830 drives the pipe fittings 810 arranged from bottom to top to move upward in sequence, the pipe fittings 810 are nested with each other to shorten the size of the drying rod 800, and the hanging rods 820 on each pipe fitting 810 collide with the adjacent pipe fittings 810 above in sequence to make the hanging rods 820 on each pipe fitting 810 close to each other, thereby automatically stripping the fruit and vegetable dry while shortening the size of the drying rod 800, improving the production efficiency, and reducing the labor intensity. When not drying fruits and vegetables, the length of the drying rod 800 is shortened to be slightly larger than the length of a single pipe fitting 810, thereby reducing the space occupation and facilitating passage. Moreover, according to different types of dried food, the height distance between the hanging rods 820 of the adjacent two pipe fittings 810 is different, and the length of each pipe fitting 810 can be replaced and adjusted to adapt to the different requirements, thereby meeting the various needs in the production process of the fruit and vegetable dry with a simple structure, which is very ingenious.

[0031] It should be noted that in some embodiments, some types of dried fruits and vegetables are not suitable for hanging for drying, and in this case, the outer bottom wall of the tray is supported between the hanging rods 820 at the same height on the support rod group composed of at least three non-straight drying rods 800, and the dried fruits and vegetables are placed on the tray. The bottom of the tray can also be provided with a microporous structure for drainage. It can be imagined that, taking a support rod group containing four drying rods 800 distributed at the four corners of a rectangle as an example, the hanging rods 820 on the same height position of the pipe 810 of the four drying rods 800 support the outer bottom surface of the tray upward, and after the fruits and vegetables are dried, two adjacent drying rods 800 can be driven to be slightly shortened in size by the driving mechanism 830, thereby causing the tray to tilt and directly unload the dried fruits and vegetables, thereby further expanding the use of the drying and stripping mechanism.

[0032] Referring to Figure 5 and Figure 6 In some embodiments of the present application, the inside of the drying room 100 has a drying space in the shape of a rectangular cuboid, a plurality of drying rods 800 are arranged along the length direction of the drying space to form a drying rod group, a plurality of drying rod groups are arranged along the width direction of the length direction of the drying space, and each drying rod group is respectively provided with a driving mechanism 830 to individually control the extension and retraction of each drying rod group. It should be noted that when the drying room 100 is filled with a plurality of drying rods 800 distributed in multiple rows and columns, although it is beneficial to make full use of the internal space of the drying room 100, there is not enough space gap for workers to enter the drying room 100 and pass between adjacent drying rods 800, so that the workers cannot manually hang the fruits and vegetables to be dried on the hanging rods 820. In the above scheme, each drying rod group can be individually controlled by a driving mechanism 830, and after the workers hang the fruits and vegetables to be dried on one drying rod group (i.e., one row of drying rods 800), they move a certain distance backward, then extend another drying rod group, and repeat the process to hang the fruits and vegetables to be dried on all drying rods 800.

[0033] Referring to Figure 3 and Figure 4In some embodiments of the present application, the driving mechanism 830 comprises a hanging rope 831 and a rotating roller 832 for winding or unwinding the hanging rope 831, one end of the hanging rope 831 is connected to the lower end of the lowermost tube 810, the other end of the hanging rope 831 is connected to the rotating roller 832, the rotating roller 832 is connected to a motor 833 for driving the rotating roller 832 to rotate, when the tube 810 moves upward, the hanging rod 820 can drive the tube 810 above it to move upward. It can be understood that when it is necessary to collect dried fruits and vegetables, the motor 833 drives the rotating roller 832 to rotate, so as to wind the hanging rope 831, one end of the hanging rope 831 pulls the lowermost tube 810 to move upward, when the hanging rod 820 of the tube 810 abuts against the lower end of the tube 810 above it, the tube 810 is driven to move upward, and the tubes 810 arranged from bottom to top can sequentially repeat the above actions to realize mutual nesting and shorten the size of the drying rod 800; when it is necessary to reload the fruits and vegetables to be dried, the motor 833 reverses to release the hanging rope 831, and the mutually nested tubes 810 can extend downward under the action of gravity, so as to lengthen the size of the drying rod 800. The structure of the above driving mechanism 830 is very simple, small in size, low in cost and convenient to use.

[0034] Referring to Figure 3 and Figure 4In some embodiments of the present application, the automatic stripping mechanism 840 comprises a mounting rack 841 fixed to the inner top wall of the drying room 100, and a blocking disc 842 is arranged below the mounting rack 841, the blocking disc 842 is provided with a clearance through hole 843 and a strip-shaped through hole 844 extending outward along the outer peripheral edge of the clearance through hole 843, and when the rotating roller 832 drives the hanging rope 831 to move upward, the pipe 810 can pass through the clearance through hole 843, and all the hanging rods 820 on the pipe 810 can pass through the strip-shaped through hole 844 to prevent the dried fruits and vegetables from passing through the strip-shaped through hole 844. It should be noted that although most dried fruits and vegetables (such as raisins) can be completely stripped by a slight collision, there may still be a problem of insufficient stripping for some products, which can be solved by the above automatic stripping mechanism 840. Specifically, the motor 833 drives the rotating roller 832 to rotate, and the hanging rope 831 moves upward by pulling the lowermost pipe 810, and when the hanging rod 820 of the pipe 810 abuts against the lower end of the other pipe 810 above it, the pipe 810 moves upward, and the hanging rods 820 on the pipe 810 are sequentially close to each other until the pipes 810 are nested with each other, and when the hanging rod 820 of the uppermost pipe 810 passes through the strip-shaped through hole 844, the width of the strip-shaped through hole 844 is smaller than the minimum diameter of the dried fruits and vegetables, so that the dried fruits and vegetables remaining on the branches are completely stripped, and part of the brittle branches are directly broken or broken, and the dried fruits and vegetables can be separated by the subsequent screening mechanism 600.

[0035] In some embodiments of the present application, the screening mechanism 600 comprises a first hopper connected to the material conveying mechanism 500, and a first screen and a second screen are arranged in the first hopper from bottom to top, the mesh diameter of the first screen is larger than that of the second screen, and the radial size of the dried fruits and vegetables is between the mesh diameter of the first screen and the mesh diameter of the second screen. Taking dried food as an example, the first screen can isolate branches or other larger objects, and the raisins fall on the second screen, and the dust and other small particles can pass through the second screen, and the branches, raisins and dust are discharged through different vibration tracks.

[0036] It can be imagined that after the dried fruits and vegetables are stripped by the automatic stripping mechanism 840, they will fall on the ground of the drying room 100, and the dried fruits and vegetables on the ground need to be collected and transferred to the material conveying mechanism 500, which not only easily damages the dried fruits and vegetables, but also has high labor intensity and low efficiency. Therefore, referring to Figures 8 to 11In some embodiments of the present application, the ground of the airing room 100 is provided with movable floor 140, the material conveying mechanism 500 is arranged below the movable floor 140, the inner cavity of the airing room 100 is a cuboid, the movable floor 140 comprises a plurality of movable plates 141 arranged sequentially along the width direction of the airing room 100, the two opposite inner side walls of the airing room 100 are provided with vertically arranged first sliding rails 150, the airing room 100 is provided with horizontally arranged second sliding rails 160 below the movable plates 141, the outer side edges of the two movable plates 141 located at the two sides of the movable floor 140 are rotationally provided with first sliding members 142 matched with the first sliding rails 150, the inner side edges of the movable plates 141 where the first sliding members 142 are located are rotationally provided with second sliding members 143 matched with the second sliding rails 160, one side edges of the remaining movable plates 141 are rotationally provided with third sliding members 144 matched with the second sliding rails 160, the other side edges of the movable plates 141 are provided with fourth sliding members 145 capable of moving upwardly away from the second sliding rails 160, and the lifting mechanism 170 can drive one side of the movable plates 141 to move upwardly to form the material falling channel 190.

[0037] When the dried fruits and vegetables are finished, the user can directly peel off the dried fruits and vegetables by patting, vibrating, shaking and the like, and all the dried fruits and vegetables are concentrated on the upper surface of the movable floor 140, at this time, the lifting mechanism 170 drives the movable floor 140 to move to form the material falling channel 190, and the dried fruits and vegetables can fall downwardly through the material falling channel 190 and drop into the material conveying mechanism 500, which is helpful to improve the collection efficiency and transportation efficiency of the dried fruits and vegetables, and the user does not need to clean the dropped dried fruits and vegetables again, thereby reducing the labor intensity and improving the production efficiency.

[0038] Referring to Figure 10 and Figure 11As a preferred embodiment of the present application, the number of movable plates 141 is an even number greater than or equal to four, and the movable plates 141 located in the middle of the movable floor 140 are combined in pairs to form several folding plate groups, one side of the two movable plates 141 of each folding plate group is rotatably connected through a hinge 180, the fourth sliding member 145 is arranged on the axis of the hinge 180, and the lifting mechanism 170 includes a first linear driver 171 for driving the first sliding member 142 to lift upward and a second linear driver 172 for driving the fourth sliding member 145 to lift upward. It can be imagined that when the first linear driver 171 drives the first sliding member 142 to lift upward, the first sliding member 142 slides upward along the first sliding rail 150, and the second sliding member 143 slides along the second sliding rail 160 to approach the inner side wall of the drying house 100, at this time, each movable plate 141 is in an inclined state, and at least part of the adjacent movable plates 141 form a falling material channel 190 which is wide at the top and narrow at the bottom, and the dried fruits and vegetables can slide along the upper surface of the movable plate 141 to pass through the falling material channel 190 under the action of gravity, ensuring that the dried fruits and vegetables will not be left on the movable floor 140, and the structure is very simple and ingenious.

[0039] Wherein, referring to Figures 9 to 11 The material conveying mechanism 500 includes a first conveying belt 510 located below the falling material channel 190 and a second conveying belt 520 located below the same end of all the first conveying belts 510, the first conveying belt 510 is used to receive the dried fruits and vegetables and transport them towards the second conveying belt 520, and the second conveying belt 520 inputs the dried fruits and vegetables into the first hopper. The above material conveying mechanism 500 has a smaller volume, and compared with the way of using a larger size receiving hopper, the height size of the material conveying mechanism 500 is more compact.

[0040] Referring to Figure 7 In some embodiments of the present application, a dust removal device 900 is further arranged between the screening mechanism 600 and the packaging device 700, the dust removal device 900 includes a rack 910, a hollow roller 920 is rotatably arranged on the rack 910, the outer peripheral wall of the roller 920 is covered with exhaust apertures, the two ends of the roller 920 are respectively provided with an inlet 930 and an outlet 940, the rack 910 is provided with a second hopper 950 which communicates the output end of the screening mechanism 600 with the inlet 930, the outlet 940 is connected to the input end of the packaging device 700, and the shaft end of the roller 920 is provided with a high-pressure gas pump 960 which communicates with the inside of the roller 920. It should be noted that the surface of the screened dried fruits and vegetables may still be attached with a large amount of dust, at this time, the dried fruits and vegetables enter the inside of the roller 920 in sequence through the second hopper 950 and the inlet 930, and in the process of rotation of the roller 920, the high-pressure gas pump 960 inputs high-pressure gas into the inside of the roller 920, so as to blow the dust out of the exhaust apertures.

[0041] Referring to Figure 1 In some embodiments of the present application, the outer side of the drying room 100 and the production workshop 400 is provided with an elevator 120, the sidewall of the drying room 100 is provided with an entrance opposite to the elevator 120, and the sidewall of the production workshop 400 is provided with a door opening communicating with the inner space of the production workshop 400. It should be noted that the staff will transport the fruits and vegetables to be dried into the drying room 100 through the elevator 120, and after the fruits and vegetables are hung, the staff will return to the ground by the elevator 120. When the dried fruits and vegetables are packaged, the staff can use a forklift or other transport tools to move the packaged dried fruits and vegetables from the door opening of the production workshop 400.

[0042] The technical features of the above embodiments can be combined in any manner. In order to make the description concise, not all possible combinations of the technical features in the above embodiments are described, but as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present application.

[0043] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A drying production equipment room, characterized in that, include: A drying room (100) having ventilation holes (110) on at least two opposite walls. A heating device (200) is connected to the interior space of the drying room (100). The heating device (200) is electrically connected to an energy storage module. The energy storage module is electrically connected to a photovoltaic power generation module (300) or a wind power generation module. A production workshop (400) is located below the drying room (100). A material conveying mechanism (500) is provided between the production workshop (400) and the drying room (100). A screening mechanism (600) connected to the material conveying mechanism (500) and a packaging device (700) connected to the screening mechanism (600) are provided in the production workshop (400).

2. The drying production equipment room according to claim 1, characterized in that: The photovoltaic power generation module (300) is installed on the top wall of the drying room (100), and the heating device (200) includes a fan, a heating element and a gas pipe for delivering hot air toward the interior space of the drying room (100) connected to the photovoltaic power generation module (300).

3. The drying production equipment room according to claim 1, characterized in that: The drying room (100) has multiple drying rods (800) arranged at intervals inside. Each drying rod (800) is equipped with a hanging structure, and an automatic peeling mechanism (840) is movably installed on the drying rod (800) to drive the dried fruits and vegetables of the hanging structure to fall off.

4. A drying production equipment room according to claim 3, characterized in that: The drying rack (800) includes multiple sections of tubular components (810) that are movably fitted from the inside out. The hanging structure includes multiple hanging rods (820) that are circumferentially distributed around the central axis of the tubular components (810). The hanging rods (820) extend outward away from the outer peripheral wall of the tubular components (810). The lowermost tubular component (810) is connected to a driving mechanism (830) that drives it to move upward. The driving mechanism (830) can drive the tubular component (810) to move upward so that the hanging rods (820) on adjacent tubular components (810) move closer to each other, causing the dried fruits and vegetables to fall off.

5. A drying production equipment room according to claim 4, characterized in that: The drying room (100) has a rectangular drying space inside. Multiple drying rods (800) are arranged at intervals along the length of the drying space to form a drying rod group. Multiple drying rod groups are arranged at intervals along the width of the length of the drying space. Each drying rod group is equipped with a drive mechanism (830) to individually control the extension and retraction of each drying rod group.

6. A drying production equipment room according to claim 4, characterized in that: The drive mechanism (830) includes a hanging rope (831) and a rotating roller (832) for winding or unwinding the hanging rope (831). One end of the hanging rope (831) is connected to the lower end of the lowest tube (810), and the other end of the hanging rope (831) is connected to the rotating roller (832). The rotating roller (832) is connected to a motor (833) for driving its rotation. When the tube (810) moves upward, it can drive another section of the tube (810) located above it to move upward through the hanging rod (820).

7. A drying production equipment room according to claim 6, characterized in that: The automatic peeling mechanism (840) includes a mounting frame (841) fixed to the inner top wall of the drying room (100). A baffle plate (842) is provided below the mounting frame (841). The baffle plate (842) is provided with a clearance through hole (843) and a strip-shaped through hole (844) extending outward along the outer periphery of the clearance through hole (843). When the rotating roller (832) drives the hanging rope (831) to rewind, all the pipes (810) can pass upward through the clearance through hole (843). All the hanging rods (820) on the pipes (810) can pass through the strip-shaped through hole (844) to prevent the dried fruits and vegetables from passing through the strip-shaped through hole (844).

8. A drying production equipment room according to claim 1, characterized in that: The screening mechanism (600) includes a first hopper that is connected to the material conveying mechanism (500). A first screen and a second screen are arranged at intervals from bottom to top in the first hopper. The mesh diameter of the first screen is larger than that of the second screen. The radial dimension of the dried fruits and vegetables is between the mesh diameter of the first screen and the mesh diameter of the second screen.

9. A drying production equipment room according to claim 1, characterized in that: A dust removal device (900) is also provided between the screening mechanism (600) and the packaging device (700). The dust removal device (900) includes a frame (910). A hollow roller (920) is rotatably mounted on the frame (910). The outer peripheral wall of the roller (920) is covered with exhaust pores. The two ends of the roller (920) are respectively provided with a feed inlet (930) and a discharge outlet (940). A second hopper (950) is provided on the frame (910) to connect the output end of the screening mechanism (600) and the feed inlet (930). The discharge outlet (940) is connected to the input end of the packaging device (700). A high-pressure air pump (960) is provided at the shaft end of the roller (920) and is connected to the interior of the roller (920).

10. A drying production equipment room according to claim 1, characterized in that: The drying room (100) and the production workshop (400) are equipped with elevators (120) on their outer sides. The drying room (100) has an entrance opposite to the elevator (120) on its side wall, and the production workshop (400) has a doorway on its side wall that connects to its internal space.