Germination accelerating and seedling raising container and container type plant factory
By introducing a cultivation trough lifting device and a cultivation trough transfer vehicle into the containerized plant planting system, the cultivation trough can be automatically lifted and transferred, which solves the problem of manpower waste in the containerized plant planting system and improves work efficiency and safety.
Patent Information
- Application Number
- CN202422841678.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The container-type plant planting system requires a lot of manpower during use, resulting in a waste of manpower.
By using germination and seedling raising containers and container-type plant factories, and setting up cultivation trough lifting devices and cultivation trough transfer vehicles in the containers, the cultivation troughs can be automatically lifted and transferred, reducing manual operations.
It greatly saves manpower, improves work efficiency and safety, and reduces the inconvenience of carrying the cultivation trough between equipment.
Smart Images

Figure CN223335039U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of plant planting technology, and in particular to a germination and seedling raising container and a container-type plant factory. Background Art
[0002] The containerized plant growing system is a popular containerized plant growing system that is created by reusing containers and then renovating, redesigning, renovating, and maintaining them. Currently, the containerized plant growing system still requires a lot of manpower during use, resulting in a waste of manpower. Utility Model Content
[0003] The purpose of this application is to provide a germination and seedling raising container and a container-type plant factory in response to at least one technical problem involved in the background technology.
[0004] In order to achieve the above objectives, this application adopts the following technical solutions:
[0005] One aspect of the present application provides a germination and seedling raising container, comprising a first box body and a cultivation trough transfer vehicle, as well as a first cultivation rack, a cultivation trough and a first cultivation trough lifting device all located in the first box body, a first inlet and outlet formed on the first box body, the cultivation trough transfer vehicle being used to be arranged in a position close to the first inlet and outlet in the first box body, the first cultivation trough lifting device being arranged close to the first cultivation rack, and the cultivation trough being used to be arranged on the first cultivation rack.
[0006] Optionally, the first cultivation trough lifting device includes a first lifting unit, the first lifting unit includes a first base, a first cultivation trough lifting platform, a first guide rod and a first drive assembly, the first guide rod is vertically arranged, the bottom end of the first guide rod is fixed to the first base, the first cultivation trough lifting platform is installed on the first guide rod, the first cultivation trough lifting platform and the first guide rod are slidably matched in the vertical direction, and the first drive assembly is transmission-connected to the cultivation trough lifting platform.
[0007] The beneficial effect of this technical solution is that: in this way, the first driving component can drive the cultivation trough lifting platform to move in the vertical direction, so as to achieve the purpose of replacing manual lifting of the cultivation trough.
[0008] Optionally, the first drive assembly includes a first rotating drive member, a first driving gear, a first driven gear and a first transmission chain, the first rotating drive member is installed on the first base, the first driving gear is installed on the output shaft of the first rotating drive member, the first driven gear is installed on the top end of the first guide rod, the first driving gear and the first driven gear are connected by a first transmission chain, and the first cultivation trough lifting platform is fixedly connected to the first transmission chain.
[0009] The beneficial effect of this technical solution is that: in this way, the output shaft on the first rotating drive member rotates, which drives the first driving gear, the first transmission chain and the first driven gear to operate in sequence, and the first cultivation trough lifting platform fixed to the first transmission chain moves linearly along the first guide rod under the drive of the first transmission chain, thereby achieving the purpose of lifting the cultivation trough on the first cultivation trough lifting platform.
[0010] Optionally, the germination and seedling raising container provided in the present application includes two of the first cultivation trough lifting devices. The length direction of the first cultivation rack in the first box body is the same as the length direction of the first box body, and the two first cultivation trough lifting devices are arranged one-to-one at both ends of the first cultivation rack in the length direction of the first cultivation rack.
[0011] The beneficial effect of this technical solution is that, compared with only placing multiple cultivation troughs from one end of the first cultivation rack onto the first cultivation rack, and the staff constantly moving the first cultivation rack to the other end of the first cultivation rack during the placement process, it is more convenient for the staff to place the cultivation troughs on the first cultivation rack from both ends of the first cultivation rack through the first cultivation trough lifting device, thereby reducing the manpower required to adjust the position of the cultivation trough after placing the cultivation trough on the first cultivation rack.
[0012] Optionally, the first cultivation trough lifting device includes two first lifting units, and the width direction of the first cultivation rack in the first box body is the same as the width direction of the first box body. The two first lifting units are arranged one-to-one near the two ends of the first cultivation rack in the width direction of the first cultivation rack.
[0013] The beneficial effect of this technical solution is that it creates a larger distance between the two first cultivation trough lifting platforms in the same first cultivation trough lifting device, making it relatively more stable to place the cultivation trough on the two first cultivation trough lifting platforms. During the lifting process, the cultivation trough is not easy to overturn, thereby improving safety and reliability.
[0014] Optionally, the germination and seedling container provided in the present application also includes a cleaning machine, a packaging machine, a seeder, a first irrigation device, a first air-conditioning device and a first environmental control device, all of which are located in the first box body. The cleaning machine, the packaging machine and the seeder are all arranged close to the first inlet and outlet, and the first irrigation device, the first air-conditioning device and the first environmental control device are all located at an end of the first box body away from the first inlet and outlet.
[0015] The beneficial effect of this technical solution is that the cleaning machine, the packaging machine and the seeder are frequently used in the germination and seeding process, so placing them near the first inlet and outlet makes it easier for staff to directly cooperate with the cultivation trough transfer cart to use them, thereby saving manpower and improving work efficiency. The first irrigation equipment, the first air-conditioning equipment and the first environmental control equipment can operate continuously and automatically, and occasionally require worker maintenance, so the location can be relatively far away from the first inlet and outlet.
[0016] Another aspect of the present application provides a container-type plant factory, including the germination and seedling raising container provided in the present application.
[0017] Optionally, the container-type plant factory provided in the present application further includes a finished vegetable container, which includes a second box body, and a second cultivation rack, a cultivation trough and a second cultivation trough lifting device all located in the second box body, a second inlet and outlet are formed on the second box body, the second cultivation trough lifting device is arranged close to the second cultivation rack, and the cultivation trough is used to be arranged on the second cultivation rack.
[0018] The beneficial effect of this technical solution is that: when in use, the staff can push the cultivation trough transfer vehicle to enter and exit the second box through the second entrance and exit to transfer the cultivation trough between the first box and the second box. The staff can move the cultivation trough from outside the second box to inside the second box or move the cultivation trough in the second box to outside the second box by pushing the cultivation trough transport vehicle, thereby reducing the inconvenience of carrying the cultivation trough in and out of the second box and saving manpower. In the second box, the cultivation trough transport vehicle can also replace manpower to transport the cultivation trough between different equipment, further saving manpower. At the same time, when the worker moves the cultivation trough from the cultivation After the trough transfer vehicle moves to the second cultivation trough lifting device, the worker can control the second cultivation trough lifting device to rise. After lifting the cultivation trough to a preset height, the worker moves the cultivation trough from the second cultivation trough lifting device to the second cultivation rack. Alternatively, the worker first moves the cultivation trough on the second cultivation rack to the second cultivation trough lifting device, and then controls the second cultivation trough lifting device to lower the cultivation trough to a position close to the cultivation trough transfer vehicle, and finally moves the cultivation trough from the second cultivation trough lifting device to the cultivation trough transfer vehicle. In this process, the rising or lowering of the cultivation trough is completed by the second cultivation trough lifting device instead of the workers, which greatly saves manpower.
[0019] Optionally, the second cultivation trough lifting device includes a second lifting unit, the second lifting unit includes a second base, a second cultivation trough lifting platform, a second guide rod and a second drive assembly, the second guide rod is vertically arranged, the bottom end of the second guide rod is fixed to the second base, the second cultivation trough lifting platform is installed on the second guide rod, the second cultivation trough lifting platform and the second guide rod are slidably matched in the vertical direction, and the second drive assembly is transmission-connected to the cultivation trough lifting platform.
[0020] The beneficial effect of this technical solution is that: in this way, the second driving component can drive the cultivation trough lifting platform to move in the vertical direction, so as to achieve the purpose of replacing manual lifting of the cultivation trough.
[0021] Optionally, the second drive assembly includes a second rotating drive member, a second driving gear, a second driven gear and a second transmission chain, the second rotating drive member is installed on the second base, the second driving gear is installed on the output shaft of the second rotating drive member, the second driven gear is installed on the top end of the second guide rod, the second driving gear and the second driven gear are connected by a second transmission chain, and the second cultivation trough lifting platform is fixedly connected to the transmission chain.
[0022] The beneficial effect of this technical solution is that: in this way, the output shaft on the second rotating drive member rotates, which drives the second driving gear, the second transmission chain and the second driven gear to operate in sequence, and the second cultivation trough lifting platform fixed to the second transmission chain moves linearly along the second guide rod under the drive of the second transmission chain, thereby achieving the purpose of lifting the cultivation trough on the second cultivation trough lifting platform.
[0023] The technical solution provided by this application can achieve at least one of the following beneficial effects:
[0024] The germination and seedling raising container and container-type plant factory provided by the present application can, when in use, allow the staff to move the cultivation trough by pushing the cultivation trough transport vehicle, move the cultivation trough from outside the first box body to inside the first box body, or move the cultivation trough in the first box body to outside the first box body, thereby reducing the inconvenience of carrying the cultivation trough in and out of the first box body and saving manpower. In the first box body, the cultivation trough transport vehicle can also replace manpower to transport the cultivation trough between different equipment, further saving manpower; at the same time, when the worker moves the cultivation trough from the cultivation trough transport vehicle to the first cultivation trough lifting device , the worker can control the first cultivation trough lifting device to rise, and after lifting the cultivation trough to a preset height, the worker moves the cultivation trough from the first cultivation trough lifting device to the first cultivation rack, or, the worker first moves the cultivation trough on the first cultivation rack to the first cultivation trough lifting device, and then controls the first cultivation trough lifting device to lower the cultivation trough to a position close to the cultivation trough transfer vehicle, and finally moves the cultivation trough from the first cultivation trough lifting device to the cultivation trough transfer vehicle. In this process, the rising or lowering of the cultivation trough is completed by the first cultivation trough lifting device instead of the worker, which greatly saves manpower.
[0025] The additional technical features and advantages of this application will be more clearly explained in the following description, or can be understood through the specific practice of this application. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] To more clearly illustrate the technical solutions of the specific embodiments of this application, the following briefly introduces the drawings required for describing the specific embodiments. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be derived from these drawings without inventive effort.
[0027] Figure 1 A schematic diagram of a top view of an embodiment of a containerized plant factory provided in an embodiment of the present application, wherein arrows indicate the movement lines of staff;
[0028] Figure 2 A schematic diagram of the main structure of an embodiment of a containerized plant factory provided in an embodiment of the present application;
[0029] Figure 3 A partial structural diagram of an implementation scheme of a container-type plant factory provided in an embodiment of the present application.
[0030] Reference numerals:
[0031] 01. Cultivation trough transfer vehicle; 02. Cleaning machine;
[0032] 03. Packaging machine; 04. First box;
[0033] 05. Cultivation trough; 06. First cultivation rack;
[0034] 07. First environmental control equipment; 08. First air conditioning equipment;
[0035] 09. Second irrigation equipment; 10. Second cultivation trough lifting device;
[0036] 11. First irrigation equipment; 12. First cultivation trough lifting device;
[0037] 13. Second air-conditioning equipment; 14. Second environmental control equipment;
[0038] 15. Seeder; 16. Second box;
[0039] 18. Second cultivation rack; 19. First driven gear;
[0040] 20. First transmission chain; 21. First guide rod;
[0041] 22. First cultivation trough lifting platform; 23. First base;
[0042] 24. First rotating driving member; 25. First driving gear;
[0043] 26. The first lifting unit. DETAILED DESCRIPTION
[0044] The following will clearly and completely describe the technical solution of this application in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of this application.
[0045] In the description of this application, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," and the like, indicating positions or location relationships, are based on the positions or location relationships shown in the accompanying drawings and are intended only to facilitate the description of this application and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "second," "secondary," and "thirdary" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0046] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0047] like Figures 1 to 3 As shown, the present application provides a germination and seedling raising container, comprising a first box body 04 and a cultivation trough transfer vehicle 01, as well as a first cultivation rack 06, a cultivation trough 05 and a first cultivation trough lifting device 12 all located in the first box body 04, a first inlet and outlet are formed on the first box body 04, the cultivation trough transfer vehicle 01 is used to be arranged in a position close to the first inlet and outlet in the first box body 04, the first cultivation trough lifting device 12 is arranged close to the first cultivation rack 06, and the cultivation trough 05 is used to be arranged on the first cultivation rack 06.
[0048] The germination and seedling raising container provided by the present application can, when in use, allow the worker to move the cultivation trough 05 by pushing the cultivation trough 05 transport vehicle, and move the cultivation trough 05 from outside the first box body 04 to inside the first box body 04, or move the cultivation trough in the first box body 04 to outside the first box body 04, thereby reducing the inconvenience of carrying the cultivation trough in and out of the first box body 04 and saving manpower. In the first box body 04, the cultivation trough 05 transport vehicle can also replace manpower to transport the cultivation trough between different equipment, further saving manpower. At the same time, after the worker moves the cultivation trough from the cultivation trough transport vehicle 01 to the first cultivation trough lifting device 12, the worker can control the first After the cultivation trough lifting device 12 is raised and the cultivation trough 05 is lifted to a preset height, the worker moves the cultivation trough 05 from the first cultivation trough lifting device 12 to the first cultivation rack 06. Alternatively, the worker first moves the cultivation trough 05 on the first cultivation rack 06 to the first cultivation trough lifting device 12, and then controls the first cultivation trough lifting device 12 to lower the cultivation trough 05 to a position close to the cultivation trough transfer vehicle 01, and finally moves the cultivation trough 05 from the first cultivation trough lifting device 12 to the cultivation trough transfer vehicle 01. In this process, the rising or falling of the cultivation trough 05 is completed by the first cultivation trough lifting device 12 instead of the worker, which greatly saves manpower.
[0049] Optionally, the first cultivation trough lifting device 12 includes a first lifting unit 26, which includes a first base 23, a first cultivation trough lifting platform 22, a first guide rod 21, and a first drive assembly. The first guide rod 21 is vertically arranged, the bottom end of the first guide rod 21 is fixed to the first base 23, the first cultivation trough lifting platform 22 is installed on the first guide rod 21, the first cultivation trough lifting platform 22 and the first guide rod 21 slide in a vertical direction, and the first drive assembly is connected to the cultivation trough lifting platform. In this way, the first drive assembly can drive the cultivation trough lifting platform to move in the vertical direction, so as to achieve the purpose of replacing manual lifting of the cultivation trough 05.
[0050] Optionally, the first drive assembly includes a first rotating drive member 24, a first driving gear 25, a first driven gear 19, and a first transmission chain 20. The first rotating drive member 24 is mounted on the first base 23, the first driving gear 25 is mounted on the output shaft of the first rotating drive member 24, the first driven gear 19 is mounted on the top of the first guide rod 21, the first driving gear 25 and the first driven gear 19 are connected by the first transmission chain 20, and the first cultivation trough lifting platform 22 is fixedly connected to the first transmission chain 20. In this way, when the output shaft on the first rotating drive member 24 rotates, the first driving gear 25, the first transmission chain 20, and the first driven gear 19 rotate in sequence, and the first cultivation trough lifting platform 22 fixed to the first transmission chain 20 moves linearly along the first guide rod 21 under the drive of the first transmission chain 20, thereby achieving the purpose of raising and lowering the cultivation trough 05 on the first cultivation trough lifting platform 22.
[0051] Optionally, the germination and seedling raising container provided in the embodiment of the present application includes two first cultivation trough lifting devices 12. The length direction of the first cultivation rack 06 in the first box body 04 is the same as the length direction of the first box body 04. The two first cultivation trough lifting devices 12 are arranged in a one-to-one correspondence at both ends of the first cultivation rack 06 in the length direction of the first cultivation rack 06. In this way, compared with only placing multiple cultivation troughs 05 on the first cultivation rack 06 from one end of the first cultivation rack 06, and the staff continuously moving the first cultivation rack 06 to the other end of the first cultivation rack 06 during the placement process, it is more convenient for the staff to place the cultivation troughs 05 on the first cultivation rack 06 from both ends of the first cultivation rack 06 through the first cultivation trough lifting devices 12, thereby reducing the manpower required to adjust the position of the cultivation troughs 05 after placing the cultivation troughs 05 on the first cultivation rack 06.
[0052] Optionally, the first cultivation trough lifting device 12 includes two first lifting units 26. Within the first housing 04, the width of the first cultivation rack 06 is aligned with the width of the first housing 04. The two first lifting units 26 are disposed one-to-one, near both ends of the first cultivation rack 06. This allows for a greater distance between the two first cultivation trough lifting platforms 22 within the same first cultivation trough lifting device 12. Placing the cultivation trough 05 on the two first cultivation trough lifting platforms 22 is relatively more stable, preventing the cultivation trough 05 from tipping over during the lifting process, thereby improving safety and reliability.
[0053] Optionally, the germination and seedling raising container provided in the embodiment of the present application further includes a cleaning machine 02, a packaging machine 03, a seed drill 15, a first irrigation device 11, a first air-conditioning device 08, and a first environmental control device 07, all of which are located within the first housing 04. The cleaning machine 02, the packaging machine 03, and the seed drill 15 are all located near the first inlet and outlet, and the first irrigation device 11, the first air-conditioning device 08, and the first environmental control device 07 are all located at an end of the first housing 04 away from the first inlet and outlet. The cleaning machine 02, the packaging machine 03, and the seed drill 15 are all frequently used in the germination and seedling raising process, so placing them near the first inlet and outlet makes it easier for staff to directly cooperate with the cultivation trough 05 transfer cart, thereby saving manpower and improving work efficiency. The first irrigation device 11, the first air-conditioning device 08, and the first environmental control device 07 can operate continuously and automatically, and occasionally require maintenance by workers, so they can be located relatively far away from the first inlet and outlet.
[0054] Another aspect of the present application provides a container-type plant factory, including the germination and seedling raising container provided in the embodiments of the present application.
[0055] The germination and seedling raising container provided by the present application can, when in use, allow the worker to move the cultivation trough 05 by pushing the cultivation trough 05 transport vehicle, and move the cultivation trough 05 from outside the first box body 04 to inside the first box body 04, or move the cultivation trough in the first box body 04 to outside the first box body 04, thereby reducing the inconvenience of carrying the cultivation trough in and out of the first box body 04 and saving manpower. In the first box body 04, the cultivation trough 05 transport vehicle can also replace manpower to transport the cultivation trough between different equipment, further saving manpower. At the same time, after the worker moves the cultivation trough from the cultivation trough transport vehicle 01 to the first cultivation trough lifting device 12, the worker can control the first After the cultivation trough lifting device 12 is raised and the cultivation trough 05 is lifted to a preset height, the worker moves the cultivation trough 05 from the first cultivation trough lifting device 12 to the first cultivation rack 06. Alternatively, the worker first moves the cultivation trough 05 on the first cultivation rack 06 to the first cultivation trough lifting device 12, and then controls the first cultivation trough lifting device 12 to lower the cultivation trough 05 to a position close to the cultivation trough transfer vehicle 01, and finally moves the cultivation trough 05 from the first cultivation trough lifting device 12 to the cultivation trough transfer vehicle 01. In this process, the rising or falling of the cultivation trough 05 is completed by the first cultivation trough lifting device 12 instead of the worker, which greatly saves manpower.
[0056] Optionally, the container-type plant factory provided in the embodiment of the present application further includes a finished vegetable container, which includes a second box body 16, and a second cultivation rack 18, a cultivation trough 05 and a second cultivation trough lifting device 10 all located in the second box body 16, a second inlet and outlet are formed on the second box body 16, the second cultivation trough lifting device 10 is arranged close to the second cultivation rack 18, and the cultivation trough 05 is used to be arranged on the second cultivation rack 18. When in use, the staff can push the cultivation trough transfer vehicle 01 through the second entrance and exit of the second box body 16 to transfer the cultivation trough 05 between the first box body 04 and the second box body 16. The staff can move the cultivation trough 05 from outside the second box body 16 to inside the second box body 16 by pushing the cultivation trough 05 operation vehicle, or move the cultivation trough 05 in the second box body 16 to outside the second box body 16, thereby reducing the inconvenience of carrying the cultivation trough in and out of the second box body 16 and saving manpower. In the second box body 16, the cultivation trough 05 operation vehicle can also replace manpower to transfer the cultivation trough between different equipment, further saving manpower. At the same time, when the worker moves the cultivation trough from the cultivation trough transfer vehicle 01 to the first After the second cultivation trough lifting device 10 is placed on the second cultivation trough lifting device 10, the worker can control the second cultivation trough lifting device 10 to rise, and after lifting the cultivation trough 05 to a preset height, the worker moves the cultivation trough 05 from the second cultivation trough lifting device 10 to the second cultivation rack 18. Alternatively, the worker first moves the cultivation trough 05 on the second cultivation rack 18 to the second cultivation trough lifting device 10, and then controls the second cultivation trough lifting device 10 to lower the cultivation trough 05 to a position close to the cultivation trough transfer vehicle 01, and finally moves the cultivation trough 05 from the second cultivation trough lifting device 10 to the cultivation trough transfer vehicle 01. In this process, the rising or falling of the cultivation trough 05 is completed by the second cultivation trough lifting device 10 instead of the worker, which greatly saves manpower.
[0057] Optionally, the second cultivation trough lifting device 10 includes a second lifting unit, which includes a second base, a second cultivation trough lifting platform, a second guide rod, and a second drive assembly. The second guide rod is vertically arranged, the bottom end of the second guide rod is fixed to the second base, the second cultivation trough lifting platform is mounted on the second guide rod, the second cultivation trough lifting platform and the second guide rod are slidably engaged in the vertical direction, and the second drive assembly is transmission-connected to the cultivation trough lifting platform. In this way, the second drive assembly can drive the cultivation trough lifting platform to move in the vertical direction, thereby achieving the purpose of replacing manual lifting of the cultivation trough.
[0058] Optionally, the second drive assembly includes a second rotating drive member, a second driving gear, a second driven gear, and a second transmission chain, wherein the second rotating drive member is mounted on the second base, the second driving gear is mounted on the output shaft of the second rotating drive member, the second driven gear is mounted on the top of the second guide rod, the second driving gear and the second driven gear are connected by a second transmission chain, and the second cultivation trough lifting platform is fixedly connected to the transmission chain. In this way, when the output shaft on the second rotating drive member rotates, the second driving gear, the second transmission chain, and the second driven gear are driven to operate in sequence, and the second cultivation trough lifting platform fixed to the second transmission chain moves linearly along the second guide rod under the drive of the second transmission chain, thereby achieving the purpose of raising and lowering the cultivation trough 05 on the second cultivation trough lifting platform.
[0059] Optionally, the vegetable container provided in the embodiment of the present application includes two second cultivation trough lifting devices 10. The length direction of the second cultivation rack 18 in the second box body 16 is the same as the length direction of the second box body 16. The two second cultivation trough lifting devices 10 are arranged one-to-one at the two ends of the second cultivation rack 18 in the length direction of the second cultivation rack 18. In this way, compared with only placing multiple cultivation troughs 05 on the second cultivation rack 18 from one end of the second cultivation rack 18, and the staff constantly moving the second cultivation rack 18 to the other end of the second cultivation rack 18 during the placement process, it is more convenient for the staff to place the cultivation troughs 05 on the second cultivation rack 18 from both ends of the second cultivation rack 18 through the second cultivation trough lifting devices 10, thereby reducing the manpower required to adjust the position of the cultivation troughs 05 after placing the cultivation troughs 05 on the second cultivation rack 18.
[0060] Optionally, the second cultivation trough lifting device 10 includes two second lifting units. The width direction of the second cultivation rack 18 in the second box 16 is the same as the width direction of the second box 16. The two second lifting units are arranged one-to-one near the ends of the second cultivation rack 18 in the width direction of the second cultivation rack 18. This allows a larger distance between the two second cultivation trough lifting platforms in the same second cultivation trough lifting device 10, making it relatively more stable to place the cultivation trough 05 on the two second cultivation trough lifting platforms. During the lifting process, the cultivation trough 05 is less likely to overturn, thereby improving safety and reliability.
[0061] Optionally, the vegetable container provided in this embodiment of the present application further includes a second irrigation device 09, a second air conditioning device 13, and a second environmental control device 14, all located within the second housing 16. The second irrigation device 09, the second air conditioning device 13, and the second environmental control device 14 are all located at an end of the second housing 16 away from the second entrance. The second irrigation device 09, the second air conditioning device 13, and the second environmental control device 14 can operate continuously and automatically, requiring occasional maintenance by a worker, and therefore can be located relatively far from the second entrance.
[0062] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.
Claims
1. Germination and seedling raising container, characterized in that: It includes a first box body and a cultivation trough transfer vehicle, as well as a first cultivation rack, a cultivation trough and a first cultivation trough lifting device all located in the first box body. A first inlet and outlet are formed on the first box body. The cultivation trough transfer vehicle is used to be set in a position close to the first inlet and outlet in the first box body. The first cultivation trough lifting device is set close to the first cultivation rack, and the cultivation trough is used to be set on the first cultivation rack.
2. The germination and seedling raising container according to claim 1, characterized in that: The first cultivation trough lifting device includes a first lifting unit, which includes a first base, a first cultivation trough lifting platform, a first guide rod and a first drive assembly. The first guide rod is vertically arranged, and the bottom end of the first guide rod is fixed to the first base. The first cultivation trough lifting platform is installed on the first guide rod. The first cultivation trough lifting platform and the first guide rod are slidably matched in the vertical direction, and the first drive assembly is transmission-connected to the cultivation trough lifting platform.
3. The germination and seedling raising container according to claim 2, characterized in that: The first driving assembly includes a first rotating driving member, a first driving gear, a first driven gear and a first transmission chain. The first rotating driving member is installed on the first base, the first driving gear is installed on the output shaft of the first rotating driving member, the first driven gear is installed on the top end of the first guide rod, the first driving gear and the first driven gear are connected by a first transmission chain, and the first cultivation trough lifting platform is fixedly connected to the first transmission chain.
4. The germination and seedling raising container according to claim 3, characterized in that: It includes two first cultivation trough lifting devices. The length direction of the first cultivation rack in the first box is the same as the length direction of the first box. The two first cultivation trough lifting devices are arranged at both ends of the first cultivation rack in a one-to-one correspondence along the length direction of the first cultivation rack.
5. The germination and seedling raising container according to claim 4, characterized in that: The first cultivation trough lifting device includes two first lifting units. The width direction of the first cultivation rack in the first box is the same as the width direction of the first box. The two first lifting units are arranged one-to-one near the two ends of the first cultivation rack in the width direction of the first cultivation rack.
6. The germination and seedling raising container according to any one of claims 1 to 5, characterized in that: It also includes a cleaning machine, a packaging machine, a seeding machine, a first irrigation device, a first air-conditioning device and a first environmental control device, all of which are located in the first box body. The cleaning machine, the packaging machine and the seeding machine are all arranged close to the first inlet and outlet, and the first irrigation device, the first air-conditioning device and the first environmental control device are all located at an end of the first box body away from the first inlet and outlet. 7.Containerized plant factory, characterized by: The invention comprises the germination and seedling raising container according to any one of claims 1 to 6.
8. The containerized plant factory according to claim 7, characterized in that: It also includes a finished vegetable container, which includes a second box body, and a second cultivation rack, a cultivation trough, and a second cultivation trough lifting device all located in the second box body, a second inlet and outlet are formed on the second box body, the second cultivation trough lifting device is arranged close to the second cultivation rack, and the cultivation trough is used to be arranged on the second cultivation rack.
9. The containerized plant factory according to claim 8, characterized in that: The second cultivation trough lifting device includes a second lifting unit, which includes a second base, a second cultivation trough lifting platform, a second guide rod and a second drive assembly. The second guide rod is vertically arranged, and the bottom end of the second guide rod is fixed to the second base. The second cultivation trough lifting platform is installed on the second guide rod. The second cultivation trough lifting platform and the second guide rod are slidably matched in the vertical direction, and the second drive assembly is transmission-connected to the cultivation trough lifting platform.
10. The containerized plant factory according to claim 9, characterized in that: The second driving assembly includes a second rotating driving member, a second driving gear, a second driven gear and a second transmission chain. The second rotating driving member is installed on the second base, the second driving gear is installed on the output shaft of the second rotating driving member, the second driven gear is installed on the top end of the second guide rod, the second driving gear and the second driven gear are connected by a second transmission chain, and the second cultivation trough lifting platform is fixedly connected to the transmission chain.