Intelligent seedling breeding device with disease detection function

DE202025104770U1Active Publication Date: 2025-10-09LANGE DONG HEZE CITY
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Patent Information

Application Number
DE202025104770
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2025-10-09
Estimated Expiration
2035-08-31

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Abstract

An intelligent seedling breeding device with disease detection function, characterized in that it comprises: a receiving container seat (1) equipped with a spray system; a drive frame (2) rotatably connected between the receiving container seat (1); a drive motor (3) equipped with a regular on / off control module, which is fixedly connected to one side of the receiving container seat (1) and connected and fixed to the drive frame (2); a breeding box (4) equipped with a counterweight column, rotatably connected between the drive frame (2); a rotation sleeve (5) equipped with a counterweight ring, rotatably connected outside the drive frame (2); a near-infrared imaging and 3D image reconstruction module (6) fixedly connected to one end of the rotation shell (5); an air-permeable, tempered glass cover (7), on the side wall of which an image display module is arranged, which is arranged as a symmetrical structure outside the receiving container seat (1) in an articulated manner.
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Description

[0001] The present application relates to the technical field of seedling breeding, more specifically, to an intelligent seedling breeding device with disease detection function.

[0002] Agriculture is an industry in which products are obtained through artificial breeding based on the laws of growth and development of animals and plants. Currently, the seedling breeding equipment used in agricultural production cannot intelligently monitor and regulate the growth rate, breeding status, and water deficiency of the seedlings during the seedling breeding process, which directly leads to a sub-ideal seedling breeding effect.

[0003] In conventional technology, monitoring, image reconstruction, and analysis of plant growth status can be achieved by combining near-infrared imaging and 3D image reconstruction, which allows plant data to be directly collected without removing the plants and without harmful effects on the plants.

[0004] Although the above technical solution can achieve a corresponding advantageous effect due to its structure, there are still shortcomings: When the visual attachment box is operated by a conveyor belt for transmission and inspection, the visual attachment box must be moved manually, so that automatic monitoring of the visual attachment box is not possible.

[0005] For this reason, the present solution proposes an intelligent seedling breeding device with disease detection function.

[0006] In order to solve the above-mentioned problem existing in the prior art, the present application provides an intelligent seedling breeding device with disease detection function.

[0007] The intelligent seedling breeding device with disease detection function provided by the present application uses the following technical solution: intelligent seedling breeding device with disease detection function, comprising: a receiving container seat equipped with a spray system; a drive frame rotatably connected between the receiving container seat; a drive motor equipped with a regular on / off control module, which is fixedly connected to one side of the receiving container seat and connected and fixed to the drive frame; a breeding box equipped with a counterweight column, rotatably connected between the drive frame; a rotation sleeve equipped with a counterweight ring, rotatably connected outside the drive frame; a near-infrared imaging and 3D image reconstruction module rigidly attached to one end of the rotation shell; an air-permeable, tempered glass cover, on the side wall of which an image display module is arranged, which is arranged as a symmetrical structure outside the receptacle seat in an articulated manner.

[0008] Using the above technical solution, the drive motor equipped with a regular on and off control module is used to drive the drive frame to rotate regularly, so as to realize intermittent switching of the breeding box, and to monitor the growth state through the near-infrared imaging and 3D image reconstruction module, improving the growth environment of the seedlings inside the breeding box.

[0009] As an alternative solution to the technical solution of the present application documents, a filter box is installed or arranged within the receiving container seat, in which a sponge mat and an activated carbon layer are laid in a central region of the sponge mat.

[0010] By applying the above-mentioned technical solution, the rainwater dripping into the filter box can be filtered by means of a sponge mat with an activated carbon layer placed in the central area to ensure the reuse of the water source.

[0011] As an alternative solution to the technical solution of the present application documents, the drive frame is rigidly connected at one end to a cam which is connected at one side to a push rod by means of sliding friction, the push rod, which is provided externally with a spring part, is elastically slidingly connected to one side of the receptacle seat by a sliding sleeve, and the sliding sleeve is threadedly connected at one side to an adjusting wheel, and the push rod is rigidly connected at another side to a gear holder which can be in toothing and transmission with a drive gear rigidly connected to one end of the air-permeable, tempered glass cover.

[0012] When applying the above-mentioned technical solution, when the drive frame is intermittently rotated to limit the position, the cam fixed to one end of the drive frame slides and presses the push rod, the push rod elastically displaced downwards by the position limit drives the gear holder for gearing and transmission with the drive gear fixed to one end of the air-permeable, tempered glass cover, so that the opening and closing behavior of the air-permeable, tempered glass cover is enabled, the care of the seedlings inside the breeding box is ensured by the receiving container seat equipped with a spray system.

[0013] As an alternative solution to the technical solution of the present application documents, a dust protection jacket is firmly connected outside the rotating cover, which is externally threadedly connected to a hardened glass ball cover.

[0014] By applying the above-mentioned technical solution, the near-infrared imaging and 3D image reconstruction module can be protected by the dust cover to avoid the influence of water on the image collection by the near-infrared imaging and 3D image reconstruction module.

[0015] As an alternative solution to the technical solution of the present application documents, the air-permeable, tempered glass cover is firmly provided with a rubber sleeve on the sides.

[0016] By applying the above-mentioned technical solution, the stable closure of the air-permeable, tempered glass cover by means of the rubber sleeve can be ensured.

[0017] In summary, the present application comprises at least one of the following advantageous technical effects: 1. In the present application, the drive motor equipped with a periodic on-off control module is used to regularly drive the drive frame to rotate, so as to enable intermittent switching of the breeding box, and to perform growth state monitoring through the near-infrared imaging and 3D image reconstruction module, thus improving the growth environment of seedlings inside the breeding box. 2. In the present application, when the drive frame is intermittently rotated to limit the position, the cam fixedly connected to one end of the drive frame slidably presses the push rod, the push rod elastically displaced downward by the position limit drives the gear holder to mesh and transmit with the drive gear fixedly connected to one end of the air-permeable tempered glass cover, so that the opening and closing behavior of the air-permeable tempered glass cover is enabled, and the care of the seedlings inside the breeding box is ensured by the receiving container seat equipped with a spraying system. Explanation of the illustrations Fig. shows a left diagram of the overall structure of an intelligent seedling breeding apparatus with disease detection function disclosed by a good embodiment of the present application; Fig. shows a right diagram of the overall structure of an intelligent seedling breeding apparatus with disease detection function disclosed by a good embodiment of the present application; Fig. shows a diagram of the partial structure of an intelligent seedling breeding apparatus with disease detection function disclosed by a good embodiment of the present application; Fig. shows an internal diagram of the structure of a receiving holder seat of an intelligent seedling breeding apparatus with disease detection function disclosed by a good embodiment of the present application;

[0018] Indication of reference numerals in the figures: (1). Receptacle seat; (2). Drive frame; (3). Drive motor; (4). Culture box; (5). Rotation cover; (6). Near-infrared imaging and 3D image reconstruction module; (7). Air-permeable tempered glass cover; (11). Filter box; (12). Sponge mat; (21). Cam; (22). Push rod; (23). Slide cover; (24). Gear holder; (51). Dust cover; (52). Tempered glass ball cover. Embodiments

[0019] The present application is explained in more detail below in conjunction with the figures of the description.

[0020] Combined with Fig. , an intelligent seedling breeding apparatus with disease detection function specified by the embodiment of the present application, comprising: a receiving container seat (1) equipped with a spraying device; a drive frame (2) rotatably connected between the receiving container seat (1); a drive motor (3) equipped with a regular on / off control module, which is fixedly connected to one side of the receiving container seat (1) and connected and fixed to the drive frame (2); a breeding box (4) equipped with a counterweight column, rotatably connected between the drive frame (2); a rotation sleeve (5) equipped with a counterweight ring, rotatably connected outside the drive frame (2); a near-infrared imaging and 3D image reconstruction module (6) fixedly connected to one end of the rotation shell (5); an air-permeable, tempered glass cover (7), on the side wall of which an image display module is arranged, which is arranged as a symmetrical structure outside the receiving container seat (1) in an articulated manner.

[0021] In the intelligent seedling breeding device with disease detection function, the drive motor (3) equipped with a periodic on / off control module is used to regularly drive the drive frame (2) to rotate to enable intermittent switching of the breeding box (4), and to perform growth state monitoring through the near-infrared imaging and 3D image reconstruction module (6), improving the growth environment of the seedlings within the breeding box (4).

[0022] Combined with Fig. and Fig. In the intelligent seedling breeding device with disease detection function specified by the embodiment of the present application, a filter box (11) is installed or arranged within the receiving container seat (1), in which a sponge mat (12) and an activated carbon layer are laid in a central region of the sponge mat (12).

[0023] In the intelligent seedling breeding device with disease detection function specified by the embodiment of the present application, the rainwater dripping in the filter box (11) can be filtered by means of a sponge mat (12) laid with an activated carbon layer in the central region to ensure the reuse of the water source.

[0024] Combined with Fig. and Fig. In the intelligent seedling breeding apparatus with disease detection function specified by the embodiment of the present application, the drive frame (2) is fixedly connected at one end to a cam (21) which is connected at one side to a push rod (22) by sliding friction, the push rod (22) externally provided with a spring part is elastically slidably connected to one side of the receiving container seat (1) through a sliding sleeve (23), and the sliding sleeve (23) is threadably connected at one side to an adjusting wheel, and the push rod (22) is fixedly connected at another side to a gear holder (24) which can be in toothing and transmission with the drive gear fixedly connected to one end of the air-permeable, tempered glass cover (7).

[0025] In the intelligent seedling breeding device with disease detection function, when the drive frame (2) is intermittently rotated to limit the position, the cam (21) fixedly connected to one end of the drive frame (2) slidably presses the push rod (22), the push rod (22) elastically displaced downward by the position limitation drives the gear holder (24) to mesh and transmit with the drive gear fixedly connected to one end of the air-permeable tempered glass cover (7), so that the opening and closing behavior of the air-permeable tempered glass cover (7) is enabled, the cultivation of the seedlings inside the breeding box (4) is ensured by the receiving container seat (1) equipped with a spraying system.

[0026] Combined with Fig. and Fig.In the intelligent seedling breeding apparatus with disease detection function specified by the embodiment of the present application, a dust protection cover (51) is fixedly connected outside the rotation cover (5), which is externally threadedly connected to a hardened glass ball cover (52).

[0027] In the intelligent seedling breeding device with disease detection function, the near-infrared imaging and 3D image reconstruction module (6) can be protected by the dust cover (51) to avoid the influence of water on the image collection by the near-infrared imaging and 3D image reconstruction module (6).

[0028] Operating principle: The drive motor (3) regularly intermittently drives the drive frame (2) to rotate under the action of a predetermined program, while the rotating drive frame (2) drives the breeding box (4) to convert, and monitoring is carried out by the near-infrared imaging and 3D image reconstruction module (6) in the receiving container seat (1); when the drive frame (2) rotates, the cam (21) fixedly connected to one end thereof slides the push rod (22), the push rod (22), which is elastically displaced downwards by the position limitation, drives the gear holder (24) for toothing and transmission with the drive gear fixedly connected to one end of the air-permeable, tempered glass cover (7), so that the opening and closing behavior of the air-permeable, tempered glass cover (7) is enabled; After the near-infrared imaging and 3D image reconstruction module (6) has monitored poor growth of the seedlings at this time, it is sent to its electrically connected control system so that the spraying system in the receiving container seat (1) is started to irrigate or spray the seedlings.

Claims

[1] Intelligent seedling breeding device with disease detection function, characterized by that it includes: a receiving container seat (1) equipped with a spray system; a drive frame (2) rotatably connected between the receiving container seat (1); a drive motor (3) equipped with a regular on / off control module, which is fixedly connected to one side of the receiving container seat (1) and connected and fixed to the drive frame (2); a breeding box (4) equipped with a counterweight column, rotatably connected between the drive frame (2); a rotation sleeve (5) equipped with a counterweight ring, rotatably connected outside the drive frame (2); a near-infrared imaging and 3D image reconstruction module (6) fixedly connected to one end of the rotation shell (5); an air-permeable, tempered glass cover (7), on the side wall of which an image display module is arranged, which is arranged as a symmetrical structure outside the receiving container seat (1) in an articulated manner. [2] Intelligent seedling breeding device with disease detection function according to claim 1, characterized by that a filter box (11) is installed or arranged within the receiving container seat (1), in which a sponge mat (12) and an activated carbon layer are laid in a central region of the sponge mat (12). [3] Intelligent seedling breeding device with disease detection function according to claim 1, characterized bythat the drive frame (2) is firmly connected at one end to a cam (21) which is connected at one side to a pressure rod (22) by means of sliding friction, the pressure rod (22), which is provided externally with a spring part, is elastically slidingly connected to one side of the receiving container seat (1) by a sliding sleeve (23), and the sliding sleeve (23) is threadedly connected at one side to an adjusting wheel, and the pressure rod (22) is firmly connected at another side to a gear holder (24) which can be in toothing and transmission with a drive gear which is firmly connected to one end of the air-permeable, tempered glass cover (7). [4] Intelligent seedling breeding device with disease detection function according to claim 1, characterized by that outside the rotation sleeve (5) a dust protection jacket (51) is firmly connected, which is externally threadedly connected to a hardened glass ball cover (52). [5] An intelligent seedling breeding device with disease detection function according to claim 1, characterized by that the air-permeable, tempered glass cover (7) is firmly provided with a rubber cover on the sides.