Belt type conveying device capable of preventing seeds from falling

By using a rotating and lifting partition design in the seed belt conveyor, combined with elastic components and motor drive, the problems of seed slippage and quantitative discharge are solved, thereby improving the stability of seed conveying and processing efficiency.

CN224046196UActive Publication Date: 2026-03-27SICHUAN ZHONGWANG SEED IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional seed belt conveyor systems are inadequate in preventing seed drop, discharging in measured quantities, and protecting seeds, which affects seed conveying efficiency and quality, making it difficult to meet the high-efficiency, precision, and stability requirements of modern agricultural production and seed processing.

Method used

The system employs anti-drop components, including a first partition plate and side partition plates arranged along the conveying direction. Through rotation and lifting design, a seed-containing space is formed. Combined with elastic elements and motor drive, it achieves seed anti-slip and quantitative discharge.

Benefits of technology

It effectively prevents seeds from slipping, ensures stable seed delivery, improves the convenience of subsequent processing, enhances seed quality and processing efficiency, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a belt type conveying device capable of preventing seeds from falling off. The belt type conveying device comprises a conveying body. The conveying body includes a conveyor belt. An anti-falling assembly is arranged on the conveying belt. The anti-falling assembly comprises a plurality of first partition plates arranged in the conveying direction of the conveying belt and second partition plates arranged on the side face of the conveying belt. A seed accommodating space is formed between the adjacent first spacing plates, and the adjacent first spacing plates are arranged in a manner of rotating towards the seed accommodating space around connecting shafts of the first spacing plates and the conveying belt. The anti-falling assembly can carry out anti-falling protection on seeds falling into the conveying belt, and the seeds are prevented from falling off from the conveying belt. Due to the rotatable design of the first spacing plate, on one hand, the to-be-transported seeds can be covered through rotation so as to perform anti-falling treatment, and on the other hand, quantitative seeds can be conveniently taken out from the transmission belt after the first spacing plate rotates.
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Description

TECHNICAL FIELD

[0001] The utility model relates to seed transportation technical field especially relates to a prevent falling seed belt conveyor. BACKGROUND

[0002] In the field of agricultural production and seed processing, the transportation of seeds is a key link. The traditional seed transportation method mostly adopts ordinary belt conveyor, however, these devices have many problems and deficiencies in actual use process, which seriously affects the efficiency and quality of seed transportation, and the smooth progress of subsequent related processes.

[0003] Firstly, seeds are easy to slide off the conveyor belt during transportation. Ordinary belt conveyor relies only on the friction of the conveyor belt to drive the movement of seeds, when encountering situations such as inclined conveyor belt, smooth seed surface or external disturbance, seeds are easy to slide off the two sides of the conveyor belt. This not only causes the waste of seeds and increases the production cost, but also may lead to the confusion of the transportation site, which requires additional manpower and time to clean the fallen seeds, reducing the overall work efficiency.

[0004] Secondly, the existing conveying device is difficult to realize the quantitative discharge of seeds. Due to the lack of effective seed containing and separating structure, seeds are accumulated in a disorderly manner on the conveyor belt, which cannot be accurately batch transported according to the predetermined quantity. This makes it impossible to accurately control the processing amount of seeds in the subsequent drying, packaging and other processes, which may lead to uneven drying, inconsistent packaging specifications and other problems, thereby affecting the quality and consistency of seeds and reducing the market competitiveness of seeds.

[0005] Furthermore, the conveying device in the prior art has poor fixing and protection effect on seeds. In the transportation process, seeds are easy to be affected by factors such as vibration and collision, which may cause relative displacement and shaking of seeds, which not only may cause damage to seeds, reduce the germination rate and vitality of seeds, but also makes the seeds unable to maintain a stable posture when entering the subsequent processing equipment, affecting the operation efficiency and processing quality of the processing equipment.

[0006] In summary, the traditional seed belt conveyor has many deficiencies in preventing seed falling, quantitative discharge, seed protection and structural flexibility, which is difficult to meet the requirements of modern agricultural production and seed processing for efficient, accurate and stable seed transportation. Therefore, a new type of anti-falling seed belt conveyor is needed to effectively solve the above problems, so as to improve the reliability and quality of seed transportation, ensure the smooth progress of subsequent processes, reduce production cost, and improve the overall efficiency and benefit of seed processing.

[0007] In addition, on the one hand, due to the difference in understanding of the skilled in the art; on the other hand, because the applicant studied a large number of literatures and patents when making the utility model, but limited by the size and did not list all the details and contents in detail, but this is not the utility model does not have these features of the prior art, on the contrary, the utility model has all the characteristics of the prior art, and the applicant reserves the right to add related prior art in the background art. Content of the utility model

[0008] In view of the deficiencies of the prior art, the utility model provides a seed belt type conveying device which prevents seed falling, comprising a conveying body. The conveying body comprises a conveying belt. A falling-preventing assembly is arranged on the conveying belt. The falling-preventing assembly comprises a plurality of first spacing plates arranged along the conveying direction of the conveying belt and a second spacing plate arranged on the side of the conveying belt. Seed containing spaces are formed between adjacent first spacing plates, and adjacent first spacing plates are arranged in a manner of rotating towards the seed containing spaces around the connecting shaft of the first spacing plate and the conveying belt.

[0009] According to a preferred embodiment, grooves for accommodating the connecting shaft of the first spacing plate are arranged on the conveying belt. The grooves and the adjacent first spacing plates form the seed containing spaces.

[0010] According to a preferred embodiment, an accommodating plate is arranged in the groove. The side of the accommodating plate close to the first spacing plate is provided with a first elastic member. The accommodating plate is connected to the vertical upper end of the first spacing plate through the first elastic member.

[0011] According to a preferred embodiment, the first spacing plate is connected to the connecting shaft through a torsion spring.

[0012] According to a preferred embodiment, the vertical lower end of the accommodating plate is provided with a second elastic member. A plurality of second elastic members are arranged between the accommodating plate and the groove to support the accommodating plate.

[0013] According to a preferred embodiment, the conveying body further comprises rotating shafts for driving the rotation of the conveying belt. At least two rotating shafts are arranged at the two ends of the conveying belt respectively. The rotating shafts are connected to motors. The output shafts of the motors and the rotating shafts form a transmission connection.

[0014] According to a preferred embodiment, at least two second spacing plates are arranged on the side of the conveying belt. The vertical lower side of the second spacing plate is provided with a lifting assembly. The lifting assembly comprises a lifting rod and a rotating wheel. The lifting rod and the rotating wheel are meshed in the form of a worm.

[0015] According to a preferred embodiment, the conveying body further comprises a mounting seat for fixing the conveying belt and the lifting assembly. The rotating shafts are arranged through the mounting seat.

[0016] According to a preferred embodiment, the lifting assembly further comprises a first fixing member and a second fixing member. One end of the lifting rod is in sliding connection with the first fixing member. The other end of the lifting rod is in sliding connection with the second fixing member. The first fixing member and the second fixing member are fixedly arranged on the mounting base.

[0017] According to a preferred embodiment, the rotating center of the rotating wheel is fixedly connected with a handle. The handle penetrates through the mounting base and is arranged in rotation with the mounting base. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a simplified structure schematic diagram of a seed belt type conveying device of a preferred embodiment provided by the present application;

[0019] Figure 2 is a simplified structure schematic diagram of a lifting assembly of a preferred embodiment provided by the present application;

[0020] Figure 3 is a simplified structure schematic diagram of a conveying belt related assembly of a preferred embodiment provided by the present application;

[0021] Figure 4 is a simplified structure schematic diagram of a seed containing space formed by a first spacing plate of a preferred embodiment provided by the present application;

[0022] Figure 5 is a simplified structure exploded view of a seed containing space formed by a first spacing plate of a preferred embodiment provided by the present application;

[0023] Figure 6 is a simplified structure schematic diagram of a seed belt type conveying device of a preferred embodiment provided by the present application after being partially cut open.

[0024] LIST OF REFERENCE NUMERALS

[0025] 100: conveying main body; 101: conveying belt; 102: groove; 103: containing plate; 104: first elastic member; 105: second elastic member; 106: rotating shaft; 107: mounting base; 201: first spacing plate; 202: second spacing plate; 203: connecting shaft; 300: lifting assembly; 301: lifting rod; 302: rotating wheel; 303: first fixing member; 304: second fixing member; 305: handle. DETAILED DESCRIPTION

[0026] The present application will be described in detail below with reference to the accompanying drawings.

[0027] Example 1

[0028] The present application provides a seed belt type conveying device, like Figure 1As shown, including conveying body 100. Conveying body 100 includes conveying belt 101. Conveying belt 101 is provided with anti-falling assembly. Anti-falling assembly includes a plurality of first spacing plates 201 arranged along the conveying direction of conveying belt 101 and second spacing plates 202 arranged on the side of conveying belt 101. Seed containing space is formed between adjacent first spacing plates 201, and adjacent first spacing plates 201 are arranged in a manner that rotates towards the seed containing space around the connecting shaft 203 of the first spacing plate 201 and the conveying belt 101. The anti-falling assembly provided by the utility model can prevent the seeds falling into the conveying belt 101 from sliding off the conveying belt. The rotatable design of the first spacing plate 201 can cover the seeds to be transported for anti-falling treatment on one hand, and on the other hand, it is also convenient to take out a certain amount of seeds from the conveying belt 101 after rotation. That is to say, the first spacing plate 201 can be used as a tool for quantitative discharge of seed transportation, avoiding the uneven amount of transported seeds to reduce the drying effect in the subsequent process. Therefore, through the setting of the first spacing plate 201, the utility model not only prevents the seeds from falling off the conveying belt 101, but also improves the portability of subsequent seed process treatment, and improves the quality of seeds.

[0029] According to a preferred embodiment, a groove 102 for accommodating the connecting shaft 203 of the first spacing plate 201 is arranged on the conveying belt 101. The groove 102 and the adjacent first spacing plate 201 constitute a seed containing space. The groove 102 is located on the conveying belt 101. Therefore, the length and width of the rotating shaft of the conveying belt 101 are preferably matched with the groove 102 in the utility model, so as to facilitate the conveying process of the groove 102.

[0030] According to a preferred embodiment, a containing plate 103 is arranged in the groove 102. The side of the containing plate 103 close to the first spacing plate 201 is provided with a first elastic member 104. The containing plate 103 is connected with the vertical upper end of the first spacing plate 201 through the first elastic member 104. The first elastic member 104 can be an elastic rope or other connecting component. Therefore, the first spacing plate 201 can rotate around the shaft under the driving of the containing plate 103. As shown in the figure, Figure 3 and Figure 4As shown, the first spacing plate 201 is in a vertical state when the containing plate 103 is not loaded with seeds. When the containing plate 103 is loaded with seeds, the containing plate 103 is pressed down so that the first elastic member 104 pulls the first spacing plate 201 to rotate around the connecting shaft 203, thereby compacting and fixing the seeds on the containing plate 103 to prevent them from falling off. Thus, the pressing down of the containing plate 103 after the seeds are stacked on the device is realized through the first elastic member 104 and the first spacing plate 201, thereby driving the first spacing plate 201 to compact and block the seeds vertically upward to prevent them from sliding off, and the second spacing plate 202 is lifted to block the horizontal sliding of the seeds. The device can prevent the seeds from falling off from multiple directions after the seeds are stacked on the conveying belt 101, thereby ensuring the stable discharge of the seeds.

[0031] According to a preferred embodiment, the first spacing plate 201 is connected with the connecting shaft 203 through a torsional spring. The torsional spring can provide a force for the first spacing plate 201 to return to the vertical state, so that when the seeds on the containing plate 103 are removed, the first spacing plate 201 is rotated to the vertical state under the elastic force of the torsional spring.

[0032] According to a preferred embodiment, as shown in Figure 5 The vertical lower end of the containing plate 103 is provided with a second elastic member 105. A plurality of second elastic members 105 are arranged between the containing plate 103 and the groove 102 to support the containing plate 103. The second elastic member 105 is used to assist in supporting the containing plate 103. On the one hand, the second elastic member 105 can ensure that the movement of the containing plate 103 is vertical movement up and down, and on the other hand, it can assist in supporting the containing plate 103 before and after the seeds are loaded, thereby avoiding excessive shaking.

[0033] According to a preferred embodiment, the conveying body 100 further comprises a rotating shaft 106 for driving the conveying belt 101 to rotate. At least two rotating shafts 106 are arranged at the two ends of the conveying belt 101 respectively. The rotating shaft 106 is connected with a motor. The output shaft of the motor is in transmission connection with the rotating shaft 106. As shown in Figure 3 and Figure 6 The rotating shaft 106 of the conveying belt 101 is preferably a regular hexagonal column. Thus, the rotating shaft 106 will not pull the groove 102 during rotation. Further, the vertical lower side of the groove 102 is a flexible belt to connect a plurality of grooves 102 (not shown in the figure). During the rotation of the rotating shaft 106, the groove 102 can follow the rotation on a certain side of the rotating shaft 106, thereby realizing the transmission of the segmented grooves 102.

[0034] According to a preferred embodiment, at least two second spacing plates 202 are arranged on the side of the conveying belt 101. As shown in Figure 2As shown, the vertical lower portion of the second spacing plate 202 is provided with a lifting assembly 300. The lifting assembly 300 comprises a lifting rod 301 and a rotating wheel 302. The lifting rod 301 and the rotating wheel 302 are meshed in the form of a worm. The lifting rod 301 is fixedly connected with the second spacing plate 202. In the process of rotating the rotating wheel 302, the lifting rod 301 can be driven to move linearly in the vertical direction under the rotation of the rotating wheel 302, so as to realize the lifting of the second spacing plate 202. Since at least two second spacing plates 202 are arranged on the two sides of the conveying belt 101 respectively, the device of the utility model can lift the two second spacing plates 202 on the side under the condition of belt conveying of the seeds, so as to prevent the seeds from sliding off the conveying belt 101. Further, after the seed conveying is completed, the second spacing plate 202 can be lowered into the conveying main body 100, so as to facilitate the operator to take out the seeds from the conveying belt 101.

[0035] According to a preferred embodiment, the conveying main body 100 further comprises a mounting seat 107 for fixing the conveying belt 101 and the lifting assembly 300. The rotating shaft 106 is arranged through the mounting seat 107. One end of the rotating shaft 106 arranged through the mounting seat 107 can be connected to the output shaft of the motor, so that the motor can drive the rotating shaft 106 to rotate, thereby driving the movement of the conveying belt 101. The rotating shaft 106 is rotatably connected with the mounting seat 107. The rotatable connection mode can be bearing connection or other connection modes capable of free rotation, which is not limited.

[0036] According to a preferred embodiment, the lifting assembly 300 further comprises a first fixing member 303 and a second fixing member 304. One end of the lifting rod 301 is slidably connected with the first fixing member 303. The other end of the lifting rod 301 is slidably connected with the second fixing member 304. The first fixing member 303 and the second fixing member 304 are fixedly arranged on the mounting seat 107. The first fixing member 303 and the second fixing member 304 are used for limiting the horizontal movement of the lifting rod 301. The lifting rod 301 moves vertically through the first fixing member 303 and the second fixing member 304 under the limitation of the first fixing member 303 and the second fixing member 304, thereby realizing the lifting of the second spacing plate 202.

[0037] According to a preferred embodiment, the rotating center of the rotating wheel 302 is fixedly connected with a handle 305. The handle 305 is arranged through and rotatably arranged with the mounting seat 107. The operator can drive the rotating wheel 302 to rotate clockwise or counterclockwise by rotating the handle 305, so that the lifting rod 301 and the second spacing plate 202 are lifted. Thus, the utility model can realize the anti-falling of the seeds through the lifting of the second spacing plate 202.

[0038] It should be noted that the above specific embodiments are exemplary, and those skilled in the art can come up with various solutions under the inspiration of the disclosure of the present application, and these solutions also belong to the disclosed range of the present application and fall within the protection scope of the present application. Those skilled in the art should understand that the present application specification and its drawings are illustrative and do not constitute a limitation on the claims. The protection scope of the present application is defined by the claims and their equivalents. The present application specification contains multiple utility model concepts, such as "preferably" or "according to a preferred embodiment", which all indicate that the corresponding paragraph discloses an independent concept, and the applicant reserves the right to file a divisional application according to each utility model concept. Throughout the text, the features introduced by "preferably" are only optional ways and should not be understood as necessarily provided, so the applicant reserves the right to abandon or delete the relevant preferred features at any time.

Claims

1. A seed tape conveyor for preventing seed drop, characterized by, The application relates to a seed conveying device, which comprises a conveying body (100) provided with a conveying belt (101) and a falling-prevention assembly, wherein the falling-prevention assembly comprises a plurality of first interval plates (201) arranged along the conveying direction of the conveying belt (101) and a second interval plate (202) arranged on the side of the conveying belt (101), wherein, a seed accommodating space is formed between adjacent first interval plates (201), and the adjacent first interval plates (201) are arranged in a rotating mode around the connecting shaft (203) of the first interval plate (201) and the conveying belt (101) towards the seed accommodating space.

2. The anti-drop seed belt conveyor of claim 1, wherein, The conveying belt (101) is provided with a groove (102) for accommodating the connecting shaft (203) of the first interval plate (201), wherein, the groove (102) and the adjacent first interval plate (201) form the seed accommodating space.

3. The anti-drop seed belt conveyor of claim 2, wherein, The groove (102) is provided with an accommodating plate (103), the side of the accommodating plate (103) close to the first interval plate (201) is provided with a first elastic member (104), and the accommodating plate (103) is connected with the vertical upper end of the first interval plate (201) through the first elastic member (104).

4. The anti-drop seed belt conveyor of claim 3, wherein, The first interval plate (201) is connected with the connecting shaft (203) through a torsion spring.

5. The anti-drop seed belt conveyor of claim 4, wherein, The vertical lower end of the accommodating plate (103) is provided with a second elastic member (105), wherein, a plurality of second elastic members (105) are arranged between the accommodating plate (103) and the groove (102) to support the accommodating plate (103).

6. The anti-drop seed belt conveyor of claim 5, wherein, The conveying body (100) further comprises a rotating shaft (106) for driving the rotation of the conveying belt (101), at least two rotating shafts (106) are arranged at the two ends of the conveying belt (101) respectively, the rotating shaft (106) is connected with a motor, and the output shaft of the motor is in transmission connection with the rotating shaft (106).

7. The anti-drop seed belt conveyor of claim 6, wherein, At least two second interval plates (202) are arranged on the side of the conveying belt (101), wherein, the vertical lower side of the second interval plate (202) is provided with a lifting assembly (300), and the lifting assembly (300) comprises a lifting rod (301) and a rotating wheel (302), and the lifting rod (301) and the rotating wheel (302) are in meshing engagement in the form of a worm.

8. The anti-drop seed belt conveyor of claim 7, wherein, The conveying body (100) further comprises a mounting seat (107) for fixing the conveying belt (101) and the lifting assembly (300), wherein, the rotating shaft (106) is arranged through the mounting seat (107).

9. The anti-drop seed belt conveyor of claim 8, wherein, The lifting assembly (300) further comprises a first fixing member (303) and a second fixing member (304), wherein, one end of the lifting rod (301) is in sliding connection with the first fixing member (303), the other end of the lifting rod (301) is in sliding connection with the second fixing member (304), and the first fixing member (303) and the second fixing member (304) are fixedly arranged on the mounting seat (107).

10. The anti-drop seed belt conveyor of claim 9, wherein, The rotating wheel (302) is fixedly connected with a handle (305) at the center of rotation, the handle (305) penetrates the mounting seat (107) and is rotationally arranged with the mounting seat (107).