Sugarcane seed stem storage chamber
By integrating a constant temperature and humidity structure, ultraviolet insecticide structure and an automated transportation system in the storage room of sugar cane seed stems, environmental control and pest problems in the storage of sugar cane seed stems are solved, and efficient and safe storage effects are achieved.
Patent Information
- Application Number
- CN202510473439.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-05-30
AI Technical Summary
During the storage of sugarcane seed stems, the temperature and humidity are difficult to control, and they are easily attacked by pests, affecting the storage effect.
A sugarcane seed stem storage room including constant temperature and humidity structure, ultraviolet insecticide structure, control structure and transportation structure was designed. By automatically adjusting the temperature and humidity of the storage room and timed ultraviolet disinfection and insecticide, combined with automated transportation and storage rack components, the efficient storage of sugarcane seed stems is achieved.
Effectively control the storage environment, avoid pest attacks, ensure the quality and safety of sugarcane seed stems during storage, and improve storage efficiency and manpower utilization.
Smart Images

Figure CN120052170A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sugarcane seed stem storage, and particularly to a sugarcane seed stem storage room. Background Art
[0002] Sugarcane is one of the important economic crops in the southern regions of China. The sugar content of the sugarcane stalks is as high as 55%-70%. The sucrose produced by processing it occupies an important position in our production and life. In addition, the processed bagasse is also a good raw material for brewing and papermaking. Sugarcane is asexual reproduction, so farmers need to determine the quantity of seeds to be reserved according to the sugarcane planting area in the coming year. The sugarcane seed stems to be reserved need to be stored. Common storage methods include ground storage method, trench storage method, cellar storage, etc. However, these storage methods have the following problems: the storage temperature and humidity cannot be controlled, and at the same time, the invasion of pests cannot be avoided, which affects the storage effect. Summary of the Invention
[0003] The main object of the present invention is to provide a sugarcane seed stem storage room, aiming to solve the problems that the storage temperature and humidity cannot be controlled and the invasion of pests.
[0004] To achieve the above object, the sugarcane seed stem storage room proposed by the present invention includes a storage room main body, a constant temperature and humidity structure, an ultraviolet insecticidal structure, a control structure and a transportation structure. The storage room main body is partitioned to form a storage room and a corridor. The storage room is provided with a plurality of spaced-apart shelf assemblies for placing sugarcane seed stems. A passage is formed between two adjacent shelf assemblies; the transportation structure includes a transportation cart and a transportation track. The transportation track is arranged in the passage. The transportation cart is electrically connected to the control structure. The transportation cart transports the pretreated sugarcane seed stems along the transportation track to correspond to the shelf assembly and transfers them to the shelf assembly; the constant temperature and humidity structure is communicatively connected to the control structure. The control structure is arranged in the corridor. The constant temperature and humidity structure is used to adjust the temperature and humidity of the storage room; the ultraviolet insecticidal structure is arranged on the wall of the storage room and is communicatively connected to the control structure to perform ultraviolet insecticidal on the storage room regularly.
[0005] Preferably, the shelf assembly includes a support assembly and a plurality of storage frames. Each storage frame is provided with two first electric telescopic rods. The two first electric telescopic rods are oppositely arranged on the short side surfaces of the storage frame. The driving ends of the first electric telescopic rods are drivingly connected to the corresponding upper storage frame for driving the corresponding upper storage frame to move along the height direction of the support assembly.
[0006] Preferably, the bracket assembly includes two horizontal mounting plates and two groups of vertical mounting members. The vertical mounting members are vertically arranged between the two horizontal mounting plates. One of the horizontal mounting plates is mounted on the ground, and the two groups of vertical mounting members are arranged oppositely.
[0007] Preferably, each group of the vertical mounting members is provided with two vertical mounting rods. A chute is formed on the surface of the vertical mounting rod. A limiting portion is convexly provided on the side surface of the storage frame, and the limiting portion is clamped in the chute.
[0008] Preferably, a gap is provided between the storage frame and the ground near the ground. The storage frame is provided with ventilation holes.
[0009] Preferably, two limiting portions are provided on each side surface of the storage frame, and the first electric telescopic rod is mounted between the two limiting portions.
[0010] Preferably, the constant temperature and humidity structure includes a collection module and an adjustment module. The collection module is used to collect the temperature and humidity changes in the storage room. The control structure is electrically connected to the adjustment module and controls the adjustment module to adjust the temperature and humidity in the storage room according to the temperature and humidity changes.
[0011] Preferably, the transport trolley is provided with a discharge channel. The discharge channel is communicated with the inside of the transport trolley and is arranged towards the storage rack assembly. An included angle is formed between the discharge channel and the transport trolley.
[0012] Preferably, the transport trolley is provided with a vibration assembly, and the vibration assembly is used to shake the transport trolley.
[0013] Preferably, an opening is formed in the wall of the storage room, and the transport trolley enters and exits the storage room through the opening.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0015] By providing a constant temperature and humidity structure and a control structure in the storage room main body, automatically monitoring the temperature and humidity changes in the storage room, and timely adjusting the storage environment in the storage room to maintain within a certain storage condition range; by using the ultraviolet insecticidal structure to perform ultraviolet sterilization and insect killing on the storage room regularly, avoiding the sugarcane seed stems from being affected by pests, and creating a suitable and stable storage environment for the sugarcane seed stems. Through the mutual cooperation between the transport trolley and the control structure, the transport trolley runs along a predetermined route to transport the seed stems to the periphery of the storage frame and perform automatic feeding. The automatic lifting of the height of the storage rack assembly can save manpower and improve work efficiency. Description of the Drawings
[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0017] Figure 1 It is a schematic diagram of the internal structure of the sugarcane seedling storage room of the present invention;
[0018] Figure 2 It is a schematic diagram of the structure of another angle of the sugarcane seedling storage room of the present invention;
[0019] Figure 3 It is a schematic diagram of the structure of yet another angle of the sugarcane seedling storage room of the present invention;
[0020] Figure 4 It is a schematic diagram of the structure of the storage rack assembly in the sugarcane seedling storage room of the present invention;
[0021] Figure 5 It is a schematic diagram of the structure of the transport trolley in the sugarcane seedling storage room of the present invention;
[0022] Figure 6 It is a sectional view of the transport trolley in the sugarcane seedling storage room of the present invention.
[0023] In the drawings, 1 - storage room main body, 11 - storage room, 12 - corridor, 2 - constant temperature and humidity structure, 21 - acquisition module, 22 - adjustment module, 3 - ultraviolet insecticidal structure, 4 - control structure, 5 - transport structure, 51 - transport trolley, 511 - discharge channel, 512 - discharge port, 513 - baffle, 514 - relief groove, 516 - electric cylinder, 517 - mounting bracket, 518 - vehicle main body, 519 - support frame, 520 - walking wheel, 52 - transport track, 53 - photoelectric counter, 54 - spring, 55 - vibration motor, 6 - storage rack assembly, 61 - horizontal mounting plate, 62 - longitudinal mounting rod, 621 - chute, 622 - second electric telescopic rod, 63 - storage box, 631 - limiting part, 632 - ventilation hole, 64 - first electric telescopic rod, 7 - in-place sensor, 8 - opening, 9 - airtight door, 10 - large door. Detailed implementation manners
[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present invention.
[0025] It should be understood that when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integers, steps, operations, elements and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components and / or their groups.
[0026] It should also be understood that the terminology used in the specification of the present invention is for the purpose of describing particular embodiments only and is not intended to limit the present invention. As used in the specification of the present invention and the appended claims, unless the context clearly dictates otherwise, the singular forms "a", "an" and "the" are intended to include the plural forms.
[0027] It should be further understood that the term "and / or" as used in the specification of the present invention and the appended claims refers to any combination and all possible combinations of one or more of the associated listed items and includes these combinations.
[0028] To solve the above problems, as Figures 1 to 6As shown in the figure, the present invention provides a storage room for sugarcane seed stems, which includes a storage room main body 1, a constant temperature and humidity structure 2, an ultraviolet insecticidal structure 3, a control structure 4, and a transportation structure 5. The storage room main body 1 is partitioned to form a storage room 11 and a corridor 12. The storage room 11 is provided with a plurality of spaced-apart storage rack assemblies 6 for placing sugarcane seed stems. A passage is formed between two adjacent storage rack assemblies 6. The transportation structure 5 includes a transportation trolley 51 and a transportation track 52. The transportation track 52 is laid in the passage. The transportation trolley 51 is preferably an AGV trolley. The transportation trolley 51 is electrically connected to the control structure 4. The transportation trolley 51 transports the pretreated sugarcane seed stems along the transportation track 52 to correspond to the storage rack assembly 6 and transfers them to the storage rack assembly 6. The constant temperature and humidity structure 2 is communicatively connected to the control structure 4. The control structure 4 is arranged in the corridor 12. The constant temperature and humidity structure 2 is used to adjust the temperature and humidity of the storage room 11. The ultraviolet insecticidal structure 3 is arranged on the wall of the storage room 11 and is communicatively connected to the control structure 4 to perform ultraviolet insecticidal treatment on the storage room 11 regularly. The staff can input the layout diagram of the transportation track 52 in the storage room 11 into the control structure 4. The operation of the transportation trolley 51 also involves modules such as lidar, radar sensors, cameras, and wireless communication modules. The control structure 4 controls the trolley to run according to the layout diagram of the transportation track 52 and at the same time avoids the operation conflict of enabling multiple transportation trolleys 51. The ultraviolet insecticidal structure 3 includes ultraviolet lamps and insecticidal lamps, which disinfect and sterilize and kill insects in the storage room 11 regularly to prevent the sugarcane seed stems from being affected by pests. The opening time and illumination duration of the ultraviolet lamps and insecticidal lamps are controlled by the control structure 4 and do not need to be manually turned on. In a specific implementation, the storage room main body 1 can be provided with a plurality of storage rooms 11 arranged side by side, and each storage room 11 can independently or share a set of control structure 4.
[0029] In an alternative embodiment, as Figure 4 shown, the storage rack assembly 6 includes a bracket assembly and a plurality of storage frames 63. Each storage frame 63 is provided with two first electric telescopic rods 64. The two first electric telescopic rods 64 are oppositely arranged on the short side side surface of the storage frame 63. The driving end of the first electric telescopic rod 64 is drivingly connected to the corresponding upper storage frame 63 for driving the corresponding upper storage frame 63 to move along the height direction of the bracket assembly. After the transportation trolley 51 moves along the track to one side of the storage frame, the storage frame board is in an unfolded state. After the staff fills the uppermost storage frame 63, the first electric telescopic rod 64 then lifts the storage frame 63 filled with sugarcane seed stems to a specified height, fills and lifts the lower storage frames 63 in turn, automatically completes the unloading of the sugarcane seed stems and lifts the storage frames 63 filled with sugarcane seed stems, with a high degree of automation, avoiding manual lifting and improving work efficiency.
[0030] In an alternative embodiment, as Figure 4 shown, the bracket assembly includes two horizontally installed plates 61 and two groups of longitudinally installed members. The longitudinally installed members are vertically arranged between the two horizontally installed plates 61. One of the horizontally installed plates 61 is installed on the ground, and the two groups of longitudinally installed members are arranged oppositely. The horizontally installed plates 61, the longitudinally installed members and the ground are connected by screwing. To further enhance the connection stability of the longitudinally installed members, reinforcing ribs are provided between the longitudinally installed members and the horizontally installed plates 61. Each group of longitudinally installed members is provided with two longitudinally installed rods 62. A chute 621 is formed on the surface of the longitudinally installed rod 62. A limiting portion 631 is convexly provided on the side surface of the storage frame 63. The limiting portion 631 is clamped in the chute 621 and can slide up and down along the chute 621. In this embodiment, two limiting portions 631 are provided on each side surface of the storage frame 63. The first electric telescopic rod 64 is installed between the two limiting portions 631. Further, the longitudinally installed member is provided with a second electric telescopic rod 622, and through grooves are formed in some of the limiting portions 631 corresponding to the second electric telescopic rod 622. When all the storage frames are filled with sugarcane seed stems and lifted to the corresponding height, the second electric telescopic rod 622 is electrically connected to the control structure 4. The longitudinally installed member corresponding to the uppermost storage frame 63 is provided with a position sensor 7. The position sensor 7 is used to sense whether the uppermost storage frame 63 reaches the position and transmit the position information to the control structure 4. The control structure 4 controls the operation of the second electric telescopic rod 622. The movable end of the second electric telescopic rod 622 is inserted into the through groove, and further cooperates with the first electric telescopic rod 64 to maintain the storage frame 63 at the set height.
[0031] In an alternative embodiment, as Figure 4 shown, there is a gap between the storage frame 63 and the ground near the ground. The storage frame 63 is provided with ventilation holes 632. This enables the sugarcane seed stems to be in a ventilated state, avoiding the accumulation of moisture on the surface in contact with the storage frame 63, effectively preventing the growth of bacteria and fungi, and reducing the risk of rot. Further, a gauze layer can be laid on the surface of the storage frame 63. The gauze layer has good air permeability and can also prevent the sugarcane seed stems from being damaged due to friction or collision with the storage frame 63 when being transferred from the transport trolley 51 to the storage frame 63.
[0032] In an alternative embodiment, as Figures 1 to 3As shown, the constant temperature and humidity structure 2 includes a collection module 21 and an adjustment module 22. The collection module 21 is used to collect the temperature and humidity changes in the storage room 11. The control structure 4 is electrically connected to the adjustment module 22 and controls the adjustment module 22 to adjust the temperature and humidity of the storage room 11 according to the temperature and humidity changes. Among them, the collection module 21 is a temperature sensor and a humidity sensor. Some temperature sensors and humidity sensors are arranged on the wall of the storage room 11, and the other part is arranged at the air outlet of the adjustment module 22 to obtain the temperature and humidity conditions at different positions. The adjustment module 22 includes an industrial air conditioner and a humidifier. The industrial air conditioner itself has a dehumidification function, and jointly adjusts the temperature and humidity of the storage room 11 so that the temperature and humidity of the storage room 11 are suitable for the preservation of sugarcane seed stems. Generally, the storage temperature is between 10°C and 13°C.
[0033] In an alternative embodiment, as Figure 6 shown, the transport trolley 51 is provided with a discharge channel 511. The discharge channel 511 is communicated with the inside of the transport trolley 51 and faces the storage rack assembly 6. The discharge channel 511 is arranged at an angle with the transport trolley 51. During the pre-treatment process, the staff cuts the sugarcane into multiple sections of seed stems, soaks the seed stems in a coating agent and dries them, stacks the sugarcane seed stems neatly in the transport trolley 51. The transport trolley 51 is provided with a discharge port 512. The sugarcane seed stems in the transport trolley 51 fall onto the discharge channel 511 through the discharge port 512 and roll into the storage box 63 for storage by using the characteristics of the seed stems themselves. Further, a baffle 513 is arranged at a position near the discharge end of the bottom wall of the discharge channel 511. A relief groove 514 is formed in the bottom wall of the discharge channel 511. The baffle 513 is rotatably connected to the relief groove 514. The surface of the baffle 513 facing away from the inside of the discharge channel 511 is connected to an electric cylinder 516. An installation bracket 517 is arranged on the periphery of the discharge channel 511 corresponding to the electric cylinder 516. After a sufficient amount of sugarcane seed stems have been put in this area, the electric cylinder 516 drives the baffle 513 to rotate towards the inside of the discharge channel 511. The baffle 513 is arranged at an angle with the bottom wall of the discharge channel 511. The baffle 513 blocks the continuous rolling of the sugarcane seed stems. After the transport trolley 51 moves to another storage area of the storage box 63, the baffle 513 is lowered. At this time, the baffle 513 is flush with the bottom wall of the discharge channel 511, and the sugarcane seed stems continue to be put into the storage box 63 through the discharge channel 511. The electric cylinder 516 and the control structure 4 can be connected by wireless communication. An optical counter 53 is arranged at the discharge end of the discharge channel 511. The control structure 4 sets the number of sugarcane seed stems to be put in, and the optical counter 53 is used to record the number of sugarcane seed stems put in each area. The control structure 4 controls the operation of the baffle 513 according to the data recorded by the optical counter 53.
[0034] In an alternative embodiment, as Figure 6As shown, the transport trolley 51 is provided with a vibration assembly for shaking the transport trolley 51. The transport trolley 51 includes a vehicle body 518, a support frame 519, and a traveling wheel 520. The vehicle body 518 is installed at one end of the support frame 519 for loading sugarcane seed stems, and the traveling wheel 520 is installed at the other end of the support frame 519. The vibration assembly includes a spring 54 and a vibration motor 55. The spring 54 is disposed between the vehicle body 518 and the support frame 519 to play a buffering role. The vibration motor 55 is disposed at the bottom of the vehicle body 518 for shaking the vehicle body 518 so that the sugarcane seed stems can be quickly dropped into the storage box 63 through the discharge channel 511. The vibration motor 55 is wirelessly communicatively connected to the control structure 4.
[0035] Further, the storage room 11 can also be provided with monitoring equipment and lighting equipment. The monitoring equipment is communicatively connected to the control structure 4 for observing the situation inside the storage room 11. The monitoring equipment is arranged at the top corner of the storage room 11 to obtain the real-time situation of the storage room 11 and feedback the situation to the main control machine for display and storage, so that the staff can know the internal situation of the storage room 11 without entering the storage room 11 and maintaining the storage environment of the storage room 11; the lighting equipment is arranged in the storage room 11 and the corridor 12.
[0036] As Figure 1 shown, in an alternative embodiment, an opening 8 is formed in the wall of the storage room 11, and the transport trolley 51 enters and exits the storage room 11 through the opening 8. A sealed door 9 is provided at the opening 8, and the staff can manually open the sealed door 9 outside the storage room 11 to facilitate the passage of the transport trolley 51. When all the storage boxes 63 are filled with sugarcane seed stems, the staff manually closes the sealed door 9 to provide a better storage environment for the sugarcane seed stems in the storage room 11. The storage room 11 is also provided with a main door 10 for people to enter the storage room 11.
[0037] Further, the control structure 4 includes a main controller and a PLC controller. The PLC controller is electrically connected to the main controller. The acquisition module 21 is communicatively connected to the main controller, and the adjustment module 22 is communicatively connected to the PLC controller. Specifically, the main controller has a display screen for displaying the storage data in the storage room and cooperating with the alarm device to emit an alarm sound when the temperature and humidity in the storage room cannot be regulated, reminding the staff to pay attention to the situation in the storage room to eliminate the fault. Further, the communication connection can be a serial server connection and a wireless connection. The acquisition module 21 transmits the acquired temperature and humidity information data to the main controller through the serial server and the local area network. After the main controller analyzes and processes the acquired data, it is transmitted to the PLC controller through the local area network. The PLC controller controls the operation of the adjustment module 22 to control and adjust the temperature and humidity in the storage room 11. The PLC controller is also wirelessly communicatively connected to devices such as the transport trolley 51, the second electric telescopic rod 622, the first electric telescopic rod 64, the photoelectric counter 53, and the electric cylinder 516.
[0038] During use, the pre-treated sugarcane seed stems are neatly arranged in the transport trolley 51. The transport trolley 51 transports the sugarcane seed stems along the transport track 52 to one side of the storage rack assembly 6. At this time, the storage frames 63 are in a stacked state. The transport trolley 51 discharges the sugarcane seed stems into the uppermost storage frame 63 through the discharge channel 511. When this layer of storage frame 63 is full, the control structure 4 controls the corresponding first electric telescopic rod 64 to lift this layer of storage frame 63, exposing the relatively lower storage frame 63. The transport trolley 51 can continue to discharge sugarcane seed stems into the relatively lower storage frame 63, and all the storage frames 63 will be filled in this order. During the storage process, the acquisition module 21 constantly monitors the changes in temperature and humidity in the storage room 11 and transmits the changed data to the main controller. The staff can obtain relevant information at the main controller. After the main controller analyzes the data, it transmits the analysis result to the PLC controller. The PLC controller controls the operation of the adjustment module 22 to control and adjust the temperature and humidity in the storage room 11. The main controller controls the ultraviolet insecticidal structure 3 to perform ultraviolet disinfection and insecticidal treatment regularly, providing a good storage environment for the sugarcane seed stems.
[0039] In summary, by setting the constant temperature and humidity structure 2 and the control structure 4 in the storage room main body 1, the changes in temperature and humidity in the storage room 11 are automatically monitored, and the storage environment in the storage room 11 is adjusted in time to maintain within a certain range of storage conditions. By the ultraviolet insecticidal structure 3 regularly performing ultraviolet sterilization and disinfection and insect extermination in the storage room 11, the sugarcane seed stems are prevented from being affected by pests, creating a suitable and stable storage environment for the sugarcane seed stems. Through the mutual cooperation between the transport trolley 51 and the control structure 4, the transport trolley 51 runs along the established route to transport the seed stems to the periphery of the storage frame 63 and perform automatic discharging. The automatic lifting of the height of the storage rack assembly 6 can save manpower and improve work efficiency.
[0040] The above are only the preferred embodiments of the present invention, and do not thereby limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or any direct / indirect application in other related technical fields, is included in the patent protection scope of the present invention.
Claims
1. A sugarcane stem storage room, characterized in that: The utility model comprises a storage room body, a constant temperature and humidity structure, an ultraviolet insecticidal structure, a control structure and a transport structure. The storage room body is divided into a storage room and a corridor. The storage room is provided with a plurality of shelf assemblies distributed at intervals for placing sugarcane seed stems, and a passage is formed between two adjacent shelf assemblies; the transport structure comprises a transport trolley and a transport track, the transport track is arranged in the passage, the transport trolley is electrically connected with the control structure, the transport trolley transports the pre-treated sugarcane seed stems along the transport track to the corresponding shelf assemblies, and transfers them to the shelf assemblies; the constant temperature and humidity structure is communicatively connected with the control structure, the control structure is arranged in the corridor, and the constant temperature and humidity structure is used to adjust the temperature and humidity of the storage room; the ultraviolet insecticidal structure is arranged on the wall of the storage room, and is communicatively connected with the control structure, and the storage room is subjected to ultraviolet insecticidal treatment at regular intervals.
2. The sugarcane stem storage room according to claim 1, characterized in that: The storage rack assembly includes a support assembly and a plurality of storage frames, each of which is provided with two first electric telescopic rods, which are relatively arranged on the short side surfaces of the storage frame, and the driving end of the first electric telescopic rod is drivingly connected to the storage frame corresponding to the upper layer, so as to drive the storage frame corresponding to the upper layer to move along the height direction of the support assembly.
3. The sugarcane stem storage room according to claim 2, characterized in that: The bracket assembly includes two transverse mounting plates and two groups of longitudinal mounting members, wherein the longitudinal mounting members are vertically arranged between the two transverse mounting plates, wherein one of the transverse mounting plates is installed on the ground, and the two groups of longitudinal mounting members are arranged opposite to each other.
4. The sugarcane stem storage room according to claim 3, characterized in that: Each group of the longitudinal mounting parts is provided with two longitudinal mounting rods, and the surfaces of the longitudinal mounting rods are provided with sliding grooves. The side surfaces of the storage frame are convexly provided with limiting portions, and the limiting portions are clamped in the sliding grooves.
5. The sugarcane stem storage room according to claim 4, characterized in that: A space is arranged between the storage frame installed close to the ground and the ground, and a ventilation hole is provided in the storage frame.
6. The sugarcane stem storage room according to claim 4, characterized in that: Two limiting parts are arranged on each side of the storage frame, and the first electric telescopic rod is installed between the two limiting parts.
7. The sugarcane stem storage room according to claim 1, characterized in that: The constant temperature and humidity structure includes a collection module and an adjustment module. The collection module is used to collect temperature and humidity changes in the storage room. The control structure is electrically connected to the adjustment module and controls the adjustment module to adjust the temperature and humidity of the storage room according to temperature and humidity changes.
8. The sugarcane stem storage room according to claim 1, characterized in that: The transport trolley is provided with a discharging channel, the discharging channel is communicated with the interior of the transport trolley and is arranged toward the storage rack assembly, and the discharging channel is arranged at an angle to the transport trolley.
9. The sugarcane stem storage room according to claim 8, characterized in that: The transport trolley is provided with a vibration component, and the vibration component is used to shake the transport trolley.
10. The sugarcane stem storage room according to claim 1, characterized in that: An opening is provided on the wall of the storage room, and the transport vehicle enters and exits the storage room through the opening.
Citation Information
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