Seed germination accelerating experimental device

By introducing a transplanting device and an anti-accidental contact device into the seed germination experimental apparatus, the problem of data statistics difficulties caused by the compactness of the seeds after germination was solved, the statistical efficiency was improved, and accidental contact was prevented, ensuring the smooth progress of the experiment.

CN223928849UActive Publication Date: 2026-02-24山东省种子管理总站
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Patent Information

Application Number
CN202423193436.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2026-02-24
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In existing seed germination experimental equipment, the seeds are compact and densely packed together after germination, which makes data statistics difficult and affects the efficiency of germination data recording.

Method used

Design a seed germination experimental device, including a seed division device and an anti-accidental touch device. The seed division device realizes seed division planting through a support base and a T-shaped block. The anti-accidental touch device prevents accidental touch of the control button through a slide rail and a spring pin.

Benefits of technology

This achieves proper spacing between seeds, improving the convenience and efficiency of data statistics, while preventing accidental touches of control buttons and ensuring the accuracy and stability of experimental data.

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Abstract

The utility model provides a seed germination experiment device, which relates to the technical field of germination experiment equipment and comprises a machine body, one side of the machine body is provided with a placing frame, one side of the machine body is provided with a control button, and one side of the machine body is provided with a sealing door. One side of the placement frame is provided with a separation planting device which is used for planting a plurality of seeds in a partitioned and quantitative manner, so that subsequent growing seeds can keep a certain distance, and personnel can quickly count data, and one side, close to the control buttons, of the machine body is provided with a separation planting device which can wrap the plurality of control buttons; according to the seed germination accelerating device, the separation planting device is arranged, so that a plurality of seeds have proper intervals after germination, and the problem that germination accelerating data is difficult to count by personnel due to the fact that the seeds are relatively compact and dense after germination is solved; and the convenience and the efficiency of counting data by personnel are improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of seed germination experimental equipment, and in particular to a seed germination experimental device. Background Technology

[0002] A seed germination box is a device used to promote seed germination and growth. It can provide an ideal growth environment for seeds by regulating environmental conditions such as temperature, humidity and light. It is widely used in research institutions, colleges and universities and production units in the fields of biology, genetic engineering, medicine, environmental protection, agriculture, forestry and animal husbandry.

[0003] Existing seed germination experimental equipment typically involves placing seed-filled cultivation pots onto a rack inside the machine. Then, control buttons on the side of the machine are used to control the internal LED lights, humidifier, and temperature controller, allowing for control of light intensity, humidity, and temperature. This provides a suitable growth environment for the seeds, promoting germination and growth, and enabling observation of the seed growth process.

[0004] During the seed germination experiment, it is necessary to collect data such as the germination rate and germination potential of the seeds. Therefore, it is necessary to observe and count the germination status of the seeds every day. However, when a certain number of seeds are placed in a cultivation pot for concentrated germination, the seeds may become relatively compact and dense after germination, making it difficult for personnel to collect germination data and affecting the efficiency of recording germination data. Utility Model Content

[0005] The technical problem this invention aims to solve is that when a certain number of seeds are placed in a cultivation pot for concentrated germination, the seeds may become quite compact and dense after germination, making it difficult for personnel to collect germination data.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a seed germination experimental device, including a body, a placement rack on one side of the body, a control button on one side of the body, a sealing door on one side of the body, a planting device on one side of the placement rack for dividing and planting multiple seeds in sections, so that the seeds that grow later can maintain a certain distance, which helps personnel to quickly collect data, and an anti-accidental touch device that can cover multiple control buttons and block external objects or debris on the side of the body near the control button.

[0007] The effects achieved by the above components are as follows: First, the seed-planting device is placed on the rack inside the machine. Then, the sealed door is closed, and multiple control buttons on one side of the machine are used to control the LED lights, humidifier, and temperature controller inside the machine. This allows the light intensity, humidity, and temperature inside the machine to be controlled, providing a suitable growth environment for the seeds, thereby promoting seed germination and growth, and enabling observation experiments on the seed growth process.

[0008] Preferably, the planting device includes a support base, one side of which has multiple rectangular slots, and a T-shaped block is fixedly connected to one side of the support base. A positioning frame is fixedly connected to one side of the placement frame, and the surface size and shape of the T-shaped block are adapted to the inner wall size and shape of the positioning frame.

[0009] The effect achieved by the above-mentioned components is as follows: by setting up a planting device, soil is first filled into multiple rectangular grooves, and then multiple seeds are planted in the soil inside the multiple rectangular grooves respectively, so as to achieve the planting of multiple seeds in separate areas and create planting spacing between multiple seeds. At this time, the support base is manually moved, so that the support base drives the T-shaped block to move. When the T-shaped block moves to the position of being fully inserted into the card slot frame, the support base and the placement frame are assembled. This reduces the problem of the seeds being relatively compact and dense after germination, which makes it difficult for personnel to count germination data, and improves the convenience and efficiency of personnel to count data.

[0010] Preferably, the inner walls of the plurality of rectangular grooves are provided with circular holes, the inner walls of the plurality of circular holes are slidably connected with circular rods, and one end of the plurality of circular rods is fixedly connected with a push plate, the surface size and shape of the push plate being adapted to the size and shape of the inner walls of the rectangular grooves.

[0011] The effect achieved by the above components is as follows: by setting the push plate, when the seeds inside any rectangular groove undergo quality changes or become moldy, the corresponding round rod is manually moved, so that the corresponding round rod drives the corresponding push plate to move up and down along the inside of the corresponding rectangular groove, so that the push plate pushes the soil and seeds inside the rectangular groove out of the rectangular groove at the same time, achieving the effect of quickly cleaning the seeds and soil.

[0012] Preferably, an auxiliary plate is fixedly connected to the end of each of the plurality of circular rods away from the push plate, and the surface of the auxiliary plate is larger than the inner wall of the circular hole.

[0013] The effect achieved by the above components is that by setting up an auxiliary plate, the contact area of ​​the round rod can be increased, allowing personnel to easily move the round rod by manually moving the auxiliary plate.

[0014] Preferably, a shovel is fixedly connected to one side of each of the plurality of push plates, the surface of each of the plurality of shovels is respectively in contact with the inner wall of a plurality of rectangular grooves, and the cross-section of the shovel is triangular.

[0015] The effect achieved by the above-mentioned components is that by setting up shovels, the shovels can scoop up the soil adhering to the inner wall of the rectangular groove, further improving the pushing effect of the pusher plate on the soil and the cleaning efficiency of the inside of the rectangular groove.

[0016] Preferably, a handle is fixedly connected to one side of the support base, and the inner side of the handle is provided with multiple anti-slip protrusions.

[0017] The effect achieved by the above components is that by setting a handle, the handle can provide a point of leverage for personnel, allowing personnel to easily move the support base by manually moving the handle.

[0018] Preferably, the anti-accidental touch device includes a slide rail, which is fixedly connected to the side of the machine body near the control button. A groove block is fixedly connected to the side of the machine body away from the slide rail. A spring pin is slidably connected to the inner wall of the slide rail. The other end of the spring in the spring pin is fixedly connected to the slide rail. A protective plate is slidably connected to the inner wall of the slide rail. The surface of the protective plate is slidably connected to the inner wall of the groove block. A through hole is opened on one side of the protective plate. The size and shape of the surface of the spring pin are adapted to the size and shape of the inner wall of the through hole.

[0019] The effect achieved by the above components is as follows: By setting up an anti-accidental touch device, the spring pin is first manually moved out of the slide rail. At this time, the protective plate is manually moved so that it moves left and right along the slide rail. When the protective plate moves to the position inside the insertion groove block, the inner wall of the through hole corresponds to the position of the spring pin. At this time, under the reaction force of the spring in the spring pin, the spring pin moves towards the protective plate. When the spring pin moves to the position inside the slide rail and the through hole, the spring pin fixes the position of the protective plate. The protective plate, together with the slide rail and the groove block, covers the surface of the control button and intercepts external objects, thus preventing accidental touch of the control button. This reduces the possibility that personnel may accidentally touch the control button during operation, causing changes in various values ​​of the machine and affecting the normal growth of the seeds inside.

[0020] Preferably, a limiting block is fixedly connected to one side of the protective plate, and the surface of the limiting block is larger than the inner wall of the slide rail.

[0021] The effect achieved by the above components is that by setting a limit block, the limit block can intercept the protective plate during the movement, reducing the possibility of the protective plate detaching from the slide rail during the movement.

[0022] The beneficial effects of this utility model are:

[0023] By setting up a seed-seedling device, multiple seeds are spaced appropriately apart after germination, reducing the problem of seeds being too compact and dense after germination, which makes it difficult for personnel to count germination data, and improving the convenience and efficiency of personnel data collection. Attached Figure Description

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0026] Figure 2 This utility model Figure 1 A schematic diagram of a partial three-dimensional structure;

[0027] Figure 3 This is a three-dimensional structural diagram of the rectangular groove of this utility model;

[0028] Figure 4 This is a three-dimensional structural diagram of the push plate of this utility model;

[0029] Figure 5 This is a three-dimensional structural diagram of the protective plate of this utility model.

[0030] Legend: 1. Machine body; 2. Placement rack; 3. Control button; 4. Sealed door; 5. Planting device; 51. Support base; 52. Rectangular groove; 53. T-block; 54. Positioning frame; 55. Handle; 56. Circular hole; 57. Round rod; 58. Push plate; 59. Shovel bar; 510. Auxiliary plate; 6. Anti-accidental touch device; 61. Slide rail; 62. Spring pin; 63. Protective plate; 64. Through hole; 65. Groove block; 66. Limiting block. Detailed Implementation

[0031] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0032] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0033] Figure 1-5The seed germination experimental device shown includes a main body 1, a placement rack 2 on one side of the main body 1, control buttons 3 on one side of the main body 1, and a sealed door 4 on one side of the main body 1. A seed division device 5 is installed on one side of the placement rack 2 to divide and plant multiple seeds in sections, ensuring that the growing seeds maintain a certain spacing and facilitating rapid data collection. An anti-accidental contact device 6 is installed on the side of the main body 1 near the control buttons 3, which encloses the control buttons 3 and blocks external objects or debris. First, the seed division device 5 containing the seeds is placed on the placement rack 2 inside the main body 1. Then, the sealed door 4 is closed, and the multiple control buttons 3 on one side of the main body 1 are used to control components inside the main body 1, such as LED lights, a humidifier, and a temperature controller. This allows for control of the light intensity, humidity, and temperature inside the main body 1, providing a suitable growth environment for the seeds, thereby promoting germination and growth, and enabling observation of the seed growth process.

[0034] Figure 2 , Figure 3 and Figure 4 The planting device 5 shown includes a support base 51, with multiple rectangular grooves 52 on one side of the support base 51. A T-shaped block 53 is fixedly connected to one side of the support base 51, and a positioning frame 54 is fixedly connected to one side of the placement frame 2. The surface size and shape of the T-shaped block 53 are adapted to the size and shape of the inner wall of the positioning frame 54. By setting up the planting device 5, soil is first filled into the multiple rectangular grooves 52, and then multiple seeds are planted in the soil inside the multiple rectangular grooves 52 respectively, achieving zoned planting of multiple seeds and creating planting spacing between multiple seeds. At this time, the support base 51 is manually moved, causing the support base 51 to drive the T-shaped block 53 to move. When the T-shaped block 53 moves to the position where it is fully inserted into the positioning frame 54, the support base 51 and the placement frame 2 are assembled. This reduces the problem of the seeds being relatively compact and dense after germination, which makes it difficult for personnel to count germination data, and improves the convenience and efficiency of personnel data collection.

[0035] Figure 2 , Figure 3 and Figure 4The inner walls of the multiple rectangular grooves 52 shown are provided with circular holes 56. A circular rod 57 is slidably connected to the inner walls of each circular hole 56. A push plate 58 is fixedly connected to one end of each circular rod 57. The size and shape of the push plate 58 are adapted to the size and shape of the inner walls of the rectangular grooves 52. By setting the push plate 58, when the seeds inside any rectangular groove 52 undergo quality changes or mold growth, the corresponding circular rod 57 can be manually moved, causing the corresponding circular rod 57 to drive the corresponding push plate 58 to move up and down along the inside of the corresponding rectangular groove 52. This allows the push plate 58 to simultaneously push the soil and seeds out of the rectangular groove 52, achieving a rapid cleaning effect for the seeds and soil. An auxiliary plate 510 is fixedly connected to the end of each circular rod 57 away from the push plate 58. The surface of the auxiliary plate 510 is larger than the inner wall of the circular hole 56. By setting the auxiliary plate 510, the contact area of ​​the circular rod 57 can be increased, allowing personnel to easily move the circular rod 57 by manually moving the auxiliary plate 510.

[0036] Figure 2 , Figure 3 and Figure 4 Each of the multiple push plates 58 shown has a shovel 59 fixedly connected to one side. The surfaces of the multiple shovels 59 are respectively attached to the inner walls of the multiple rectangular grooves 52. The cross-section of the shovel 59 is triangular. By setting the shovels 59, the shovels 59 can scoop up the soil adhering to the inner wall of the rectangular grooves 52, further improving the pushing effect of the push plates 58 on the soil and the cleaning efficiency of the inside of the rectangular grooves 52. A handle 55 is fixedly connected to one side of the support base 51. The inner side of the handle 55 is provided with multiple anti-slip protrusions. By setting the handle 55, the handle 55 can provide a point of leverage for personnel, so that personnel can easily move the support base 51 by manually moving the handle 55.

[0037] Figure 5The anti-accidental touch device 6 shown includes a slide rail 61, which is fixedly connected to the side of the body 1 near the control button 3. A recessed block 65 is fixedly connected to the side of the body 1 away from the slide rail 61. A spring pin 62 is slidably connected to the inner wall of the slide rail 61, and the other end of the spring in the spring pin 62 is fixedly connected to the slide rail 61. A protective plate 63 is slidably connected to the inner wall of the slide rail 61, and the surface of the protective plate 63 is slidably inserted into the inner wall of the recessed block 65. A through hole 64 is provided on one side of the protective plate 63. The size and shape of the surface of the spring pin 62 are adapted to the size and shape of the inner wall of the through hole 64. By setting the anti-accidental touch device 6, the spring pin 62 is first manually moved out of the slide rail 61. At this time, the protective plate 63 is manually moved so that the protective plate 63 moves along the slide rail 61. The protective plate 63 moves left and right internally. When it moves to the position inside the insertion groove block 65, the inner wall of the through hole 64 corresponds to the position of the spring pin 62. At this time, under the reaction force of the spring in the spring pin 62, the spring pin 62 moves closer to the protective plate 63. When the spring pin 62 moves to the position inside the insertion slide rail 61 and the through hole 64, the spring pin 62 fixes the position of the protective plate 63. The protective plate 63, together with the slide rail 61 and the groove block 65, covers the surface of the control button 3 and intercepts external objects, thus preventing accidental touch of the control button 3. This reduces the possibility that personnel may accidentally touch the control button 3 during operation, causing changes in various values ​​of the machine body 1 and affecting the normal growth of the seeds inside.

[0038] Figure 5 A limiting block 66 is fixedly connected to one side of the protective plate 63 shown. The surface of the limiting block 66 is larger than the inner wall of the slide rail 61. By setting the limiting block 66, the limiting block 66 can intercept the protective plate 63 during the movement, reducing the possibility of the protective plate 63 detaching from the slide rail 61 during the movement.

[0039] Working principle: First, soil is filled into multiple rectangular grooves 52. Then, multiple seeds are planted in the soil within the rectangular grooves 52, achieving zoned planting and creating spacing between the seeds. At this point, the support base 51 is manually moved, causing the T-block 53 to move. When the T-block 53 is fully inserted into the slot frame 54, the support base 51 is assembled with the placement rack 2. Then, the sealing door 4 is closed, and multiple control buttons 3 on one side of the machine body 1 are used to control the LED lights, humidifier, and temperature controller inside the machine body 1, ensuring proper ventilation. The light intensity, humidity, and temperature of the soil can be controlled to provide a suitable growth environment for the seeds, thereby promoting seed germination and growth. This allows for observation and experimentation of the seed growth process. Simultaneously, when a seed in any rectangular trough 52 undergoes quality changes or becomes moldy, the corresponding auxiliary plate 510 can be manually moved. This causes the auxiliary plate 510 to move the round rod 57, which in turn causes the corresponding round rod 57 to move the corresponding push plate 58 up and down along the inside of the corresponding rectangular trough 52. The push plate 58, in conjunction with the shovel 59, simultaneously pushes the soil and seeds out of the rectangular trough 52, achieving a rapid cleaning effect for the seeds and soil.

[0040] First, manually move the spring pin 62 out of the slide rail 61. Then, manually move the protective plate 63 so that it moves left and right along the slide rail 61. When the protective plate 63 moves to the position inside the insertion groove block 65, the inner wall of the through hole 64 corresponds to the position of the spring pin 62. At this time, under the reaction force of the spring in the spring pin 62, the spring pin 62 moves towards the protective plate 63. When the spring pin 62 moves to the position inside the slide rail 61 and the through hole 64, the spring pin 62 fixes the position of the protective plate 63. The protective plate 63, together with the slide rail 61 and the groove block 65, covers the surface of the control button 3 and intercepts external objects, thus preventing accidental touch of the control button 3.

[0041] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A seed germination experimental device, comprising a body (1), characterized in that: A placement rack (2) is provided on one side of the machine body (1), a control button (3) is provided on one side of the machine body (1), a sealing door (4) is provided on one side of the machine body (1), a planting device (5) is provided on one side of the placement rack (2) to divide and plant multiple seeds in sections, so that the seeds that grow later can maintain a certain distance, which helps personnel to quickly count data, and a device (6) is provided on the side of the machine body (1) near the control button (3) to cover multiple control buttons (3) and at the same time to intercept external objects or debris.

2. The seed germination experimental device according to claim 1, characterized in that: The planting device (5) includes a support base (51), on one side of which are provided a plurality of rectangular slots (52). A T-shaped block (53) is fixedly connected to one side of the support base (51), and a slotting frame (54) is fixedly connected to one side of the placement rack (2). The surface size and shape of the T-shaped block (53) are adapted to the size and shape of the inner wall of the slotting frame (54).

3. The seed germination experimental device according to claim 2, characterized in that: The inner walls of the multiple rectangular grooves (52) are provided with circular holes (56), and the inner walls of the multiple circular holes (56) are slidably connected with round rods (57). One end of the multiple round rods (57) is fixedly connected with a push plate (58). The surface size and shape of the push plate (58) are adapted to the size and shape of the inner wall of the rectangular grooves (52).

4. The seed germination experimental device according to claim 3, characterized in that: Each of the multiple circular rods (57) has an auxiliary plate (510) fixedly connected to one end away from the push plate (58), and the surface of the auxiliary plate (510) is larger than the inner wall of the circular hole (56).

5. The seed germination experimental device according to claim 3, characterized in that: Each of the multiple push plates (58) has a shovel (59) fixedly connected to one side. The surfaces of the multiple shovels (59) are respectively attached to the inner walls of the multiple rectangular grooves (52). The cross-section of the shovel (59) is triangular.

6. The seed germination experimental device according to claim 2, characterized in that: A handle (55) is fixedly connected to one side of the support base (51), and the inner side of the handle (55) is provided with multiple anti-slip protrusions.

7. The seed germination experimental apparatus according to claim 1, characterized in that: The anti-accidental touch device (6) includes a slide rail (61), which is fixedly connected to the side of the body (1) near the control button (3). A groove block (65) is fixedly connected to the side of the body (1) away from the slide rail (61). A spring pin (62) is slidably connected to the inner wall of the slide rail (61). The other end of the spring in the spring pin (62) is fixedly connected to the slide rail (61). A protective plate (63) is slidably connected to the inner wall of the slide rail (61). The surface of the protective plate (63) is slidably connected to the inner wall of the groove block (65). A through hole (64) is opened on one side of the protective plate (63). The size and shape of the surface of the spring pin (62) are adapted to the size and shape of the inner wall of the through hole (64).

8. The seed germination experimental apparatus according to claim 7, characterized in that: A limiting block (66) is fixedly connected to one side of the protective plate (63), and the surface of the limiting block (66) is larger than the inner wall of the slide rail (61).