Agricultural rice ridging device
The design of the embankment building components with hinged and movable connections solves the problems of slope adjustment and vibration source replacement in small embankment building devices, achieving better embankment building effect and applicability, and is particularly suitable for terraced fields and small experimental fields.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-03
AI Technical Summary
Existing small-scale embankment construction devices are difficult to adjust the slope in terraced fields or small experimental fields, and the connection method of the vibration source is inconvenient to change, resulting in poor embankment construction effect.
The embankment construction components are hinged, combined with movable connecting rods and vibration devices, allowing for angle adjustment between the upper plate and the side plate. Vibration is transmitted through a small concrete vibrator, increasing the stroke of the side plate patting the embankment slope. It is equipped with a soil receiving section and permeable holes to improve the embankment construction effect.
It enables rapid adjustment based on the slope of the field ridge, improving the ridge construction effect. It is suitable for terraced fields or small experimental fields, and has better applicability and effect without changing the power of the vibration device.
Smart Images

Figure CN223957982U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of embankment construction equipment, and in particular to an agricultural rice embankment construction device. Background Technology
[0002] Solid and well-designed field ridges are an important guarantee for high and stable yields in rice cultivation, and can effectively save water resources. Especially for terraced fields or experimental fields, it is even more necessary for the field ridges to be smooth, flat, solid and reliable.
[0003] In terraced fields or small experimental fields, due to their small size and irregular shape, it is inconvenient to use large-volume embankment construction devices when building and repairing embankments. Small embankment construction devices generally use welded embankment construction components to build embankments, and the slope of the embankment construction is inconvenient to adjust. In addition, if this type of embankment construction device wants to achieve a better embankment construction effect, it can only be done by increasing the vibration power, but the connection method between the embankment construction components and the vibration source makes it inconvenient to replace the vibration source. Utility Model Content
[0004] The purpose of this utility model is to provide an agricultural rice embankment construction device to solve one or more technical problems existing in the prior art, and at least provide a beneficial option or create conditions.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: First, this utility model provides an agricultural rice paddy embankment construction device, comprising:
[0006] frame;
[0007] The embankment building component is located on the left side of the frame. The embankment building component includes an upper plate and a side plate that are hinged together. The upper plate is connected to the frame via a connecting arm. A vibration device is connected to the upper plate. The upper plate has a first connecting part, and the side plate has a second connecting part. The first connecting part and the second connecting part are connected by a connecting rod to adjust the angle between the upper plate and the side plate.
[0008] Because the side plate fits snugly against the slope of the initially repaired paddy field ridge, this design allows the vibration generated by the vibration device to be transmitted to the side plate, causing it to vibrate as well. The upper plate of the ridge-building component is hinged to the side plate, allowing for quick adjustment of the ridge-building device according to the slope of the paddy field ridge, ensuring a closer fit and improving the ridge-building effect. Furthermore, the side plate also features a second connecting part, with the connecting rod connected to this second connecting part. This allows the side plate to rotate relative to the other side plate, resulting in greater relative mobility compared to traditional welded ridge-building components. The same power vibration device increases the stroke of the side plate striking the ridge slope. Combined with the weight of the side plate itself, this agricultural rice ridge-building device provides a better ridge-building effect without changing the power of the vibration device, making it more suitable for terraced fields or small experimental fields. This utility model is used for secondary construction and repair of embankments in paddy fields, terraced fields, and other fields with relatively high water content.
[0009] As an extension of the above solution, a first connecting seat for connecting the vibration device is provided in the center of the upper plate. The vibration device is a small concrete vibrator. The connecting seat allows the small concrete vibrator to be easily installed and removed from the upper plate. Placing the first connecting seat in the center of the upper plate enables the vibration of the small concrete vibrator to be transmitted more evenly to the side plate.
[0010] As an extension of the above solution, the front edge of the upper plate is provided with a first soil-receiving part extending upward. By providing the first soil-receiving part, the soil can enter the area below the upper plate through the first soil-receiving part and then be compacted by the upper plate. This can avoid the soil being loosely compacted and can also make the field ridge smooth and flat.
[0011] As an extension of the above solution, a second soil-receiving portion extending upward is provided on the front edge of the side plate. By providing the second soil-receiving portion, the soil can enter under the side plate through the second soil-receiving portion and then be compacted by the side plate. This can avoid the soil being loosely compacted and can also make the field ridge smooth and flat.
[0012] As an extension of the above solution, the side plate is provided with raised scraper strips. The raised scraper strips are located on the side of the side plate facing the upper plate and are perpendicular to the connecting axis between the side plate and the upper plate. By providing raised scraper strips on the inner side of the side plate, the adhesion between the side plate and the moist soil on the ridge can be reduced, improving the ridge-building effect of the side plate. On the other hand, due to the presence of raised scraper strips, after the side plate has patted the ridge slope, the raised scraper strips further shape the ridge slope, making the ridge slope smoother and providing better protection after it dries.
[0013] As an extension of the above solution, the raised scraper is disposed on the rear edge of the side plate. This arrangement makes the side plate easier to process and allows for better shaping.
[0014] As an extension of the above solution, the side plate is also provided with permeable holes, and a plurality of permeable holes are rectangularly distributed in the center of the side plate. By setting a plurality of permeable holes in a rectangular distribution, some of the water in the moist soil of the embankment can be discharged through the permeable holes more quickly under the action of the side plate, so that the embankment dries and solidifies faster; in addition, the permeable holes can also reduce the adhesion between the side plate and the field embankment, thereby improving the embankment construction effect.
[0015] As an extension of the above solution, the first connecting part includes a sliding groove and a locking screw. This allows for quick adjustment of the angle between the upper plate and the side plate to accommodate different embankment slopes.
[0016] As an extension of the above scheme, the number of side panels is one. This arrangement is more suitable for terraced fields or experimental fields that require embankment construction on one side.
[0017] As an extension of the above solution, a first height adjustment part is provided at the connection between the connecting arm and the frame. The first height adjustment part includes a sliding tube and a locking sleeve, and the locking sleeve is connected to the connecting arm. This arrangement allows for quick adjustment of the height of the embankment building component relative to the ground, is suitable for different embankment building heights, and also allows for quick disassembly of the embankment building component.
[0018] As an extension of the above solution, a push handle connected to the opposite rear side of the frame is also included, the push handle having a silicone grip. The push handle allows the user to better adjust the orientation of the frame to accommodate irregular paddy field ridges. Since the vibrations from the vibration device are transmitted to the frame, the silicone grip improves comfort.
[0019] Compared with the prior art, the beneficial effects achieved by this utility model are as follows:
[0020] The agricultural rice paddy embankment building device provided by this utility model can quickly adjust the embankment building device according to the slope of the paddy field embankment, so that the embankment building device fits the paddy field embankment better and improves the embankment building effect; with the power of the vibration device remaining unchanged, it has a better embankment building effect and is more applicable to terraced fields or small experimental fields. Attached Figure Description
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments;
[0022] Figure 1This is a schematic diagram of the overall structure of the agricultural rice embankment building device provided by this utility model;
[0023] Figure 2 This is a partial schematic diagram of the embankment building component provided by this utility model;
[0024] Figure 3 This is a front view schematic diagram of the agricultural rice embankment building device provided by this utility model;
[0025] Figure 4 This is a partial schematic diagram of the agricultural rice embankment construction device provided in the embodiment;
[0026] Figure 5 This is a schematic diagram of the first connector provided in the embodiment.
[0027] In the attached diagram: 100, frame; 101, first height adjustment unit; 1011, slide tube; 1012, locking sleeve; 200, connecting arm; 300, vibration device; 400, embankment building component; 401, upper plate; 402, side plate; 403, first connecting part; 404, second connecting part; 4041, slide groove; 4042, locking screw; 405, first soil receiving part; 406, second soil receiving part; 407, connecting rod; 408, raised scraper; 409, through... Water hole, 410, first connecting seat, 4101, upper connecting seat, 4102, lower connecting seat, 500, moving wheel, 600, push handle, 601, silicone handle, 700, soil turning mechanism, 701, cutter head, 702, soil turning blade, 703, soil retaining cover, 7031, mudguard, 7032, mud discharge plate, 800, transmission box, 801, transmission shaft, 802, drive device, 803, reduction gearbox, 804, moving wheel axle, 805, reduction wheel set. Detailed Implementation
[0028] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.
[0029] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0030] In the description of this utility model, if there are words such as "several", they mean one or more, "multiple" means two or more, "greater than", "less than", "exceeding" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself.
[0031] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0032] Reference Figures 1 to 5 The following are several embodiments of the agricultural rice embankment building device of this utility model.
[0033] In some embodiments, an agricultural rice paddy embankment construction device includes:
[0034] 100 racks;
[0035] Push handle 600, which is connected to the opposite rear side of the frame 100;
[0036] Connecting arm 200, one end of which is connected to the frame 100;
[0037] A embankment construction component 400 is located on the left side of the frame 100. A vibration device 300 is connected to the embankment construction component 400. The embankment construction component 400 is connected to the frame 100 via a connecting arm 200. The vibration device 300 is a small concrete vibrator. The main body of the small concrete vibrator is placed on the frame 100. The embankment construction component 400 includes an upper plate 401 and a side plate 402 that are hinged together. The upper plate 401 has a first connecting part 403, and the side plate 402 has a second connecting part 404. The first connecting part 403 and the second connecting part 404 are connected by a connecting rod 407 to adjust the angle between the upper plate 401 and the side plate 402. The second connecting part 404 is hinged to the connecting rod 407. A first connecting seat 410 for connecting the vibration device 300 is provided in the center of the upper plate 401. Because the second connecting part 404 is hinged to the connecting rod 407, after the first connecting part 403 and the connecting rod 407 are fixed, there is still a certain degree of play between the upper plate 401 and the side plate 402. The same power of the vibration device can make the side plate 402 strike the embankment slope with a larger stroke than the welded embankment building component. Combined with the weight of the side plate 402 itself, the agricultural rice embankment building device provided by this utility model has a better embankment building effect when the power of the vibration device remains unchanged.
[0038] In some embodiments, in order to enable the vibration device 300 to be quickly disassembled, the upper plate 401 is provided with a first connecting seat 410 for connecting the vibration device 300 in the center. The first connecting seat 410 includes a lower base 4102 connected to the upper plate 401 and an upper base 4101 connected to the lower base. A groove for adapting the vibration device 300 is provided between the upper and lower bases.
[0039] In some embodiments, in order to improve the vibration compaction efficiency of small concrete vibrators and to meet the needs of single-sided embankment construction in terraced fields, the number of side plates 402 can be set to one.
[0040] In some embodiments, it may be necessary to use a double-sided embankment construction method to improve the embankment construction effect. In this case, the number of the side plates 402 can be set to two, and the two side plates 402 are symmetrically arranged. Their connection method is the same as that in the above embodiment, and will not be repeated here.
[0041] In some embodiments, the first connecting portion 404 includes a sliding groove 4041 and a locking screw 4042. A threaded hole is provided on one side of the sliding groove 4041, and the locking screw engages with the threaded hole to restrict the movement of the connecting rod 407. The width of the sliding groove 4041 matches the width of the connecting rod 407. One end of the connecting rod 407 is slidably connected to the sliding groove 4041, and the connecting rod 407 is hinged to a fourth connecting portion 406 on the side plate 402. By setting the connection between the connecting rod 407 and the upper plate 401 as a sliding connection, the angle between the upper plate 401 and the side plate 402 can be adjusted more quickly.
[0042] To enhance user comfort, a silicone handle 601 can also be provided on the push handle 600.
[0043] In some embodiments, in order to make the constructed field ridges more solid and smooth, the upper plate 401 is provided with an upwardly extending first soil-receiving part 405 on the front edge, so that the upper plate 401 can accommodate more soil, prevent soil from being loosely compressed, and improve the ridge construction effect.
[0044] In order to achieve the same technical effect as the side plate 402, a second soil receiving part 403 extending upward can also be provided on the front edge of the side plate 402.
[0045] In some embodiments, to reduce the adhesion between the side plate and the moist soil on the embankment, improve the embankment construction effect of the side plate, make the embankment slope smoother, and provide better protection after drying, the side plate 402 is provided with a raised scraper 408. The raised scraper 408 is located on the side of the side plate 402 facing the upper plate 401, and the raised scraper 408 is perpendicular to the connecting axis between the side plate 402 and the upper plate 401. Preferably, the raised scraper 408 is provided at the rear edge of the side plate 402.
[0046] Furthermore, in order to make the slope solidify faster, the side plate 402 is also provided with water permeable holes 409, and a number of water permeable holes 409 are distributed in a rectangular shape in the center of the side plate 402.
[0047] In some embodiments, to enable quick adjustment of the height of the embankment-building component 400 relative to the ground and to allow for quick disassembly of the component 400, a first height adjustment part 101 is provided at the connection between the connecting arm 200 and the frame 100. The first height adjustment part 101 includes a sliding tube 1011 and a locking sleeve 1012, with the locking sleeve 1012 connected to the connecting arm 200. With this configuration, the embankment-building component 400 can also rotate around the sliding tube 1011 to adjust the embankment-building angle. The embankment-building component 400 and the connecting arm 200 are telescopically connected, allowing for quick assembly and disassembly of the component 400 from the frame 100, saving storage space. During use, it can also be used to adjust the distance between the frame 100 and the paddy field embankment, making it more suitable for irregular paddy fields.
[0048] In some embodiments, an agricultural rice paddy embankment construction device further includes:
[0049] A transmission box 800 is located on the front side of the frame 100. The transmission box 800 is provided with a transmission shaft 801 and a reduction gearbox 803. The transmission shaft 801 is connected to a drive device 802.
[0050] A soil turning mechanism 700 is located on the left side of the frame 100. The soil turning mechanism 700 includes a cutter head 701 and a soil turning blade 702 connected to the cutter head 701. The cutter head 701 is detachably connected to the drive shaft 801.
[0051] The retaining cover 703 is connected to the transmission box 800. The retaining cover 703 includes a mudguard 7031 and a mud draining plate 7032 connected to the lower end of the mudguard 7031. The mud draining plate 7032 extends obliquely to the front of the embankment component 400.
[0052] 500 casters;
[0053] The connecting arm 200 is located between the push handle 600 and the transmission box 800. The reduction box 803 includes a movable wheel axle 804 and a reduction wheel set 805. The reduction wheel set 805 is connected to the transmission shaft 801 and the movable wheel axle 804 respectively. The movable wheel 500 is connected to the movable wheel axle 804.
[0054] The drive device 802 can be a small diesel engine. The drive device 802 drives the drive shaft 801 through belt drive, which in turn drives the cutter head 701 to rotate, so that the soil turning blade 702 can work.
[0055] During operation, the agricultural rice paddy embankment building device provided by this utility model is placed in the paddy field. The moving wheel 500 and the soil-turning mechanism 700 are in contact with the ground. The soil-turning mechanism 700 rotates under the drive of the drive device 802, causing the soil-turning blade 702 to turn up mud and water along the forward direction and throw it backward. The thrown mud and water hit the mud-blocking plate 7031 and then fall onto the mud-draining plate 7032. Since the mud-draining plate 7032 extends obliquely in front of the embankment building component 400, the stirred-up mud and water slides to the front of the embankment building component 400 and is compacted onto the embankment by the embankment building component 400 under the action of the vibration device 300.
[0056] When the soil-turning mechanism 700 rotates, it enables the frame 100 to move forward on its own. The user can use the push handle 600 to assist in controlling the frame's forward movement. The moving wheel 500 is connected to the moving wheel axle 804. Under the action of the reduction wheel set, the moving wheel 500 has a suitable speed, so that the frame 100 will not deflect due to the unilateral operation of the soil-turning mechanism 700. This means that the embankment building device does not require other traction equipment. Compared with existing agricultural rice embankment building machinery, it has a smaller overall size and is more suitable for small and irregular agricultural rice planting fields such as terraced fields or small experimental fields.
[0057] Since the connection between the embankment building component 400 and the connecting arm 200 is a single cantilever structure, a first limiting rod 1013 and a second limiting rod 1014 can be set on the frame 100 to limit the angle of rotation of the embankment building component 400 around the sliding tube 1011, so as to prevent the embankment building component 400 from rotating around the sliding tube 1011 when the locking sleeve 1012 is loose, which could cause injury to personnel.
[0058] The preferred embodiments of the present invention have been described in detail above, but the present invention is not limited to the described embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention, and these equivalent modifications or substitutions are all included within the scope defined by the claims of this application.
Claims
1. An agricultural rice paddy embankment building device, comprising a frame (100), characterized in that: It also includes a embankment building component (400) disposed on the left side of the frame (100). The embankment building component (400) includes an upper plate (401) and a side plate (402) connected by hinges. The upper plate (401) is connected to the frame (100) through a connecting arm (200). A vibration device (300) is connected to the upper plate (401). The upper plate (401) is provided with a first connecting part (403). The side plate (402) is provided with a second connecting part (404). The first connecting part (403) and the second connecting part (404) are connected by a connecting rod (407) to adjust the angle between the upper plate (401) and the side plate (402).
2. The agricultural rice paddy embankment construction device according to claim 1, characterized in that: The upper plate (401) is provided with a first connecting seat (410) for connecting the vibration device (300) at its center.
3. The agricultural rice paddy embankment construction device according to claim 2, characterized in that: The upper plate (401) has an upwardly extending first soil receiving part (405) on its front edge.
4. The agricultural rice paddy embankment construction device according to claim 3, characterized in that: The front edge of the side plate (402) is provided with an upwardly extending second soil receiving part (406).
5. The agricultural rice paddy embankment construction device according to claim 2, characterized in that: The side plate (402) is provided with a raised scraper (408), which is located on the side of the side plate (402) facing the upper plate (401) and is perpendicular to the connecting axis between the side plate (402) and the upper plate (401).
6. The agricultural rice paddy embankment construction device according to claim 5, characterized in that: The raised scraper (408) is disposed on the rear edge of the side plate (402).
7. The agricultural rice paddy embankment construction device according to claim 2, characterized in that: The first connecting part (403) includes a groove (4041) and a locking screw (4042).
8. The agricultural rice paddy embankment construction device according to claim 1, characterized in that: The number of the side plates (402) is one.
9. The agricultural rice paddy embankment construction device according to claim 1, characterized in that: A first height adjustment part (101) is provided at the connection between the connecting arm (200) and the frame (100). The first height adjustment part (101) includes a slide tube (1011) and a locking sleeve (1012), and the locking sleeve (1012) is connected to the connecting arm (200).
10. The agricultural rice paddy embankment construction device according to claim 1, characterized in that: It also includes a push handle (600) connected to the rear side of the frame (100), the push handle (600) having a silicone handle (601).