Landscaping grass seed sowing equipment

The landscaping grass seed sowing equipment with simplified structure and ergonomic design solves the problems of soil compaction and low grass seed utilization efficiency, achieves uniform sowing of grass seeds and healthy growth of seedlings, and improves operating comfort and sowing efficiency.

CN120677891APending Publication Date: 2025-09-23JIANGSU GUHENG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202511120572.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

Existing grass seed spreading devices for landscaping have complex structures, and the tracks compact the soil, resulting in reduced soil porosity, oxygen deficiency in plant roots, rotting of grass seeds or root rot of seedlings, and low grass seed utilization efficiency.

Method used

It adopts six sets of spreading barrels, two sets of running wheels, two sets of servo electric cylinders and a bracket structure. It uses gravity to automatically fill grass seeds, and the servo electric cylinder drives the sowing. Combined with the seed leveling frame and holes, it achieves uniform sowing, avoids soil compaction and water accumulation, and conforms to the ergonomic design.

Benefits of technology

It reduces production costs and maintenance difficulty, improves grass seed utilization efficiency and sowing uniformity, ensures grass seed germination and seedling growth environment, reduces grass seed waste, and improves operating comfort and sowing efficiency.

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Abstract

The invention discloses landscaping grass seed sowing equipment, and relates to the field of landscaping, the landscaping grass seed sowing equipment comprises a stress handle, the end part of the stress handle is fixedly provided with a top frame, the bottom of the top frame is fixedly provided with a support frame, one end, far away from the top frame, of the support frame is fixedly provided with an upper fixing seat, and the bottom of the upper fixing seat is provided with a lower fixing seat; scattering barrels are fixedly inserted into the lower fixing base and the upper fixing base, reinforcing rods are fixedly welded to the bottom of the supporting frame, and walking wheels are movably installed at the bottoms of the reinforcing rods. The landscaping grass seed sowing equipment is composed of six sets of sowing barrels, two sets of walking wheels, two sets of servo electric cylinders and a support, the number of parts is small, the layout is reasonable, production and manufacturing are convenient, the production cost is reduced, the maintenance of the equipment in the using process is simpler, and when the two sets of walking wheels roll on the ground, the walking wheels can be driven by the walking wheels to move. And the contact area with soil is small and does not exceed the bearing threshold value of garden soil.
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Description

Technical Field

[0001] The invention relates to the field of gardening and greening, in particular to a gardening and greening grass seed sowing device. Background Art

[0002] Gardening is the creation of a beautiful natural environment and recreational space within a certain geographical area by using engineering technology and artistic means, through transforming the terrain (or further building mountains, stacking stones, and managing water), planting flowers, trees, constructing buildings, and arranging garden paths. It includes both the transformation and utilization of natural landscapes and the design and creation of artificial landscapes, and has multiple functions such as ecology, landscape, and leisure.

[0003] Regarding patents for landscaping grass seed sowing devices, a search revealed a Chinese patent with publication number CN114097369A, which discloses a landscaping grass seed sowing device and method. The device comprises a vehicle body, a soil shoveling mechanism, a soil crushing mechanism, a feeding mechanism, and a sowing mechanism disposed on the vehicle body. The soil shoveling mechanism is used to convey the collected soil to the soil crushing mechanism. The soil crushing mechanism is used to crush the collected soil, and a portion of the crushed soil is conveyed to the sowing mechanism, while the remaining portion is used for covering the soil after sowing. The feeding mechanism is used to convey water and grass seeds to the sowing mechanism respectively. The sowing mechanism is used to intermittently mix the crushed soil, water, and grass seeds and then sow the seeds.

[0004] Although the above-mentioned device can adopt the mode of mixed feeding of soil, water and grass seeds to effectively prevent dust from flying, and realizes the process of direct soil removal, crushing and covering by means of the soil shoveling structure, soil crushing mechanism, auger and soil covering plate, thereby improving work efficiency, in actual use, the soil shoveling mechanism, soil crushing mechanism, feeding mechanism and sowing mechanism on the vehicle body, and the entire device, have a complex structure. In actual use, the crawler at the bottom of the device will press on the garden soil, which is expensive and has a complex structure. At the same time, the pressure of the crawler on the soil will still significantly exceed the bearing threshold of the garden soil (especially moist or loose soil), resulting in a significant reduction in soil porosity. Plant roots, including the roots of newly sown grass seed seedlings, cannot obtain sufficient oxygen, and rainwater or irrigation water is difficult to penetrate, which easily forms surface water, causing grass seeds to rot or seedling roots to rot. Summary of the Invention

[0005] The object of the present invention is to provide a landscaping grass seed sowing device to solve the problems mentioned in the above background technology.

[0006] To achieve the above-mentioned purpose, a landscaping grass seed sowing equipment is provided, including a force-bearing handle, a top frame is fixedly installed on the end of the force-bearing handle, a support frame is fixedly installed on the bottom of the top frame, an upper fixed seat is fixedly installed on the end of the support frame away from the top frame, a lower fixed seat is installed on the bottom of the upper fixed seat, and a sowing barrel is fixed on the lower fixed seat and the upper fixed seat, a reinforcement rod is welded and fixed to the bottom of the support frame, a running wheel is movably installed on the bottom of the reinforcement rod, and the running wheel is fixedly connected to the end of the wheel axle, a servo electric cylinder is fixedly provided on the surface of the top frame, the output end of the servo electric cylinder is fixedly connected to the drive plate, and the drive rod is screwed on the bottom of the drive plate.

[0007] Furthermore, the force-bearing handles are an "S"-shaped structure made of metal material, and handles are fixedly provided on the ends of the two groups of force-bearing handles. Multiple groups of anti-slip strips are evenly distributed at equal intervals on the circumferential outer walls of the handles, and the two groups of force-bearing handles are fixedly connected to both sides of the surface of the top frame.

[0008] Furthermore, the force-bearing handle is fixed to the sowing barrel through a top frame, a support frame, an upper fixed seat, and the upper fixed seat and the lower fixed seat are arranged in parallel. Six groups of interlaced holes are evenly arranged on the upper fixed seat and the lower fixed seat. At the same time, the sowing barrels are fixedly arranged inside the six groups of interlaced holes, and the distance between two adjacent groups of sowing barrels is consistent.

[0009] Furthermore, three groups of reinforcement frames are evenly arranged between the wheel axle and the top frame. The bottom of the reinforcement frame is movably connected to the wheel axle through a bearing. At the same time, a U-shaped seat is fixedly provided at one end of the reinforcement frame away from the wheel axle. The U-shaped seat is clamped on the outer side of the top frame and fixed by screwing.

[0010] Furthermore, two groups of servo electric cylinders are installed on the top frame, and the drive plate at the bottom of the top frame is driven to rise and fall by two groups of synchronously running servo electric cylinders. At the same time, six groups of drive rods are equidistantly installed at the bottom of the drive plate, and the six groups of drive rods drive the six groups of sowing barrels to sow seeds respectively.

[0011] Furthermore, the sowing cylinder includes a sealing cover, a cylinder body, a force-bearing column, a sowing column, a seed containing channel, a plunger plate, a fixing plate, a seed leveling frame and holes. The sealing cover is screwed on the top of the cylinder body, and the inside of the cylinder body is interspersed with a force-bearing column. A driving rod is fixed on the top of the force-bearing column. The bottom of the cylinder body is conical. The force-bearing column inside the cylinder body is fixedly connected to the sowing column and the plunger plate through the sowing column, and the sowing column is conical.

[0012] Furthermore, a sowing column is fixedly provided at the bottom of the force-bearing column, and a seed-containing channel is opened on the circumferential outer wall of the sowing column. At the same time, a plunger piece is fixedly provided at the end of the sowing column away from the force-bearing column. The plunger piece is circular, and the diameter of the plunger piece is larger than the diameter of the hole at the bottom of the cylinder.

[0013] Furthermore, the seed accommodating channel includes a lower seed groove A, a lower seed groove B and a lower seed groove C. The lower seed groove A, the lower seed groove B and the lower seed groove C are all opened on the outer ring surface of the sowing column, and the interior of the cylinder is filled with a large amount of grass seeds.

[0014] Furthermore, the spreading column moves downwardly under the drive of the driving rod, the seed-containing channel passes through the interior of the cylinder, and the grass seeds inside the seed-containing channel are sprinkled on the garden ground.

[0015] Furthermore, a seed leveling frame is installed below the bottom of the cylinder. The cross-section of the seed leveling frame is semicircular. A fixing plate is fixed on the side wall of the seed leveling frame. The top of the fixing plate is fixed on the circumferential outer wall of the cylinder. Multiple groups of holes are evenly opened on the bottom of the seed leveling frame.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. This solution consists of six sets of spreading drums, two sets of running wheels, two sets of servo electric cylinders and brackets. The number of components is small and the layout is reasonable. It is not only easy to manufacture and reduce production costs, but also makes the maintenance of the device during use simpler. When the two sets of running wheels roll on the ground, the contact area with the soil is small and will not exceed the bearing threshold of the garden soil. This design is crucial. It can prevent the soil from being over-compacted, so that the roots of the newly sown grass seed seedlings can obtain sufficient oxygen for normal respiration. At the same time, this structure can also effectively prevent the formation of surface water, thereby avoiding the occurrence of grass seed rot and seedling root rot due to water accumulation, providing good environmental conditions for the germination of grass seeds and the growth of seedlings.

[0018] 2. This solution uses an "S"-shaped force-bearing handle, which is tilted downward. Holding the handles with both hands, the device is pushed on the garden ground using the running wheel as a fulcrum. Grass seeds are continuously dropped from the ends of the spreading barrels in six rows in a dotted manner and planted on the ground. The six groups of spreading barrels are arranged in a linear pattern and sow seeds on the ground. The handle and the handle are designed to be ergonomic. When holding the handles with both hands and pushing the device using the running wheel as a fulcrum, the force applied is effectively reduced, making it less tiring for the user even after long periods of operation and improving operating comfort.

[0019] 3. This solution utilizes gravity to automatically fill the seed reservoir with grass. When the spreading column moves downward and out of the cylinder, the obstruction below the seed reservoir disappears, and the pre-filled grass seeds are automatically and reliably released under the action of gravity. The entire process does not require any additional complex seed removal or opening and closing mechanisms. The released grass seeds are forced to disperse evenly to avoid accumulation, and the released grass seeds fall directly into the seed leveling frame. The holes in the seed leveling frame and its bottom play a key role in secondary distribution. Grass seeds must pass through the holes to fall to the ground, which effectively breaks up the concentrated falling grass seed flow and forces it to disperse through multiple holes 138, thereby achieving uniform spreading.

[0020] 4. This solution naturally forms a seal on the seed-containing channel through the inner wall of the cylinder, effectively preventing grass seeds from leaking during non-spreading periods; this design eliminates the need for complex valve structures and reduces the failure rate; automatic filling and release is a key design to prevent grass seeds from piling up on the ground; efficient use of grass seeds, combining quantitative control with uniform sowing, reduces grass seed waste caused by accumulation, wind or water flow, and improves grass seed utilization efficiency; the movement is continuous and efficient, and the driving rod drives the force column and the sowing column to move downward in a continuous manner. The filling and release of the seed-containing channel are closely related to the movement state of the sowing column, making the sowing action efficient and highly automated; the use of precisely controllable drive and ingenious structural coordination, especially the sealing and releasing effect of the cylinder on the seed-containing channel on the sowing column, realizes the quantitative and automatic release of grass seeds. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a front view schematic diagram of the structure of the present invention;

[0022] Figure 2 A side view of the structure of the present invention;

[0023] Figure 3 A bottom view of the structure of the present invention;

[0024] Figure 4 A top view of the structure of the present invention;

[0025] Figure 5 This is a schematic diagram of the internal structure of the spreading barrel of the present invention;

[0026] Figure 6 A bottom view of the spreading barrel of the present invention;

[0027] Figure 7 It is a cross-sectional view of the structural spreading barrel of the present invention.

[0028] Reference numerals

[0029] 1. Force handle; 2. Handle; 3. Servo electric cylinder; 4. Drive plate; 41. Drive rod; 5. Top frame; 6. Support frame; 7. Upper fixed seat; 8. Reinforcement rod; 9. Traveling wheel; 10. Axle; 11. Reinforcement frame; 12. Lower fixed seat; 13. Spreading cylinder; 130. Sealing cover; 131. Cylinder body; 132. Force column; 133. Spreading column; 134. Seed channel; 1341. Lower seed groove A; 1342. Lower seed groove B; 1343. Lower seed groove C; 135. Plunger plate; 136. Fixed plate; 137. Seed leveling frame; 138. Hole. DETAILED DESCRIPTION

[0030] Specific implementation method 1: Please refer to Figure 1-Figure 7 The present invention provides a technical solution: a landscaping grass seed sowing equipment, comprising a force-bearing handle 1, a top frame 5 is fixedly installed at the end of the force-bearing handle 1, a support frame 6 is fixedly installed at the bottom of the top frame 5, an upper fixed seat 7 is fixedly installed at the end of the support frame 6 away from the top frame 5, a lower fixed seat 12 is installed at the bottom of the upper fixed seat 7, a sowing barrel 13 is fixed through the lower fixed seat 12 and the upper fixed seat 7, a reinforcement rod 8 is welded and fixed to the bottom of the support frame 6, a running wheel 9 is movably installed at the bottom of the reinforcement rod 8, and the running wheel 9 is fixedly connected to the end of the wheel axle 10, a servo electric cylinder 3 is fixedly provided on the surface of the top frame 5, the output end of the servo electric cylinder 3 is fixedly connected to the driving plate 4, and the bottom of the driving plate 4 is screwed with a driving rod 41.

[0031] Specific embodiment 2: This embodiment is a further limitation of specific embodiment 1. The force-bearing handle 1 is an "S"-shaped structure made of metal material, and the ends of the two groups of force-bearing handles 1 are fixedly provided with handles 2. A plurality of groups of anti-slip strips distributed at equal intervals are evenly provided on the circumferential outer wall of the handle 2. The two groups of force-bearing handles 1 are respectively fixedly connected to the two sides of the surface of the top frame 5.

[0032] The force-bearing handle 1 is fixed to the sowing barrel 13 through the top frame 5, the support frame 6, the upper fixing seat 7, and the lower fixing seat 12. The upper fixing seat 7 and the lower fixing seat 12 are arranged in parallel. Six groups of through holes are evenly arranged on the upper fixing seat 7 and the lower fixing seat 12. At the same time, the sowing barrel 13 is fixed inside the six groups of through holes, and the distance between two adjacent groups of sowing barrels 13 is consistent.

[0033] Three groups of reinforcement frames 11 are evenly arranged between the wheel axle 10 and the top frame 5. The bottom of the reinforcement frame 11 is movably connected to the wheel axle 10 through a bearing. At the same time, a U-shaped seat is fixedly provided at one end of the reinforcement frame 11 away from the wheel axle 10. The U-shaped seat is clamped on the outer side of the top frame 5 and fixed by screwing.

[0034] Two groups of servo electric cylinders 3 are installed on the top frame 5. The drive plate 4 is driven to rise and fall at the bottom of the top frame 5 by two groups of synchronously running servo electric cylinders 3. At the same time, six groups of drive rods 41 are equidistantly installed at the bottom of the drive plate 4. The six groups of drive rods 41 drive the six groups of sowing barrels 13 to sow seeds respectively.

[0035] like Figure 1-4As shown: the entire device consists of six groups of sowing barrels 13, two groups of running wheels 9, two groups of servo electric cylinders 3 and a bracket. The number of components is small and the layout is reasonable, which not only facilitates manufacturing and reduces production costs, but also makes the maintenance of the device during use simpler. When a fault occurs, the problem component can be quickly located and repaired or replaced. The operation is convenient and efficient. When in use, you only need to put a large amount of grass seeds into the six groups of sowing barrels 13, hold the handles 2 with both hands, and use the force handles 1 and the two groups of running wheels 9 to easily move the device on the garden ground. When sowing, press the switch fixed on the handle 2, and the drive plate 4 will drive the drive rod 41 to move downward, so that the grass seeds inside the sowing barrel 13 can be spread smoothly. The road 134 falls and is sown on the ground. The entire operation process is simple and easy to understand, and does not require complicated training. It allows users to get started quickly, greatly improving the sowing efficiency. Moreover, it is friendly to the growth of grass seeds. When the two sets of running wheels 9 roll on the ground, the contact area with the soil is small and will not exceed the bearing threshold of the garden soil. This design is very important. It can prevent the soil from being over-compacted, so that the roots of the newly sown grass seeds can obtain enough oxygen for normal respiration. At the same time, this structure can also effectively prevent the formation of surface water, thereby avoiding the occurrence of grass seeds rotting due to water accumulation and seedlings rotting due to water accumulation, providing good environmental conditions for the germination of grass seeds and the growth of seedlings; the wheel axle 10. The top frame 5 is reinforced by three groups of reinforcement frames 11. The wheel axle 10, the top frame 5 and the reinforcement frame 11 form a triangular support frame of the device. The triangular structure itself has extremely strong stability and can effectively disperse the various forces generated by the device during movement and operation, reduce the deformation and damage risks of components, and thus extend the service life of the device. At the same time, the stable frame can also ensure the position stability of the six groups of sowing barrels 13 and other components during operation, ensuring the uniformity and accuracy of sowing; the force handle 1 is in an "S" shape, and the handle 2 is tilted downward. Hold the handle 2 with both hands, and use the walking wheel 9 as a fulcrum to push the device on the garden ground. The grass seeds are in six rows and have been planted in a dotted manner. The seeds continuously fall from the end of the sowing barrel 13 and are planted on the ground. The six groups of sowing barrels 13 are linear and sow on the ground. The design of the force-bearing handle 1 and the handle 2 is ergonomic. When both hands hold the handle 2 and the device is pushed with the walking wheel 9 as the fulcrum, the force intensity can be effectively reduced, so that the user will not feel tired after a long time of operation, and the comfort of operation is improved. Moreover, the grass seeds continuously fall from the end of the sowing barrel 13 in a dot-seeding manner. The six groups of sowing barrels 13 are arranged in a linear shape, so that the grass seeds are distributed in six rows after sowing. Not only is the sowing uniform and orderly, it can ensure that the growth space of the grass seeds is reasonable, but it is also beneficial to the later maintenance and management, and improves the overall beauty and neatness of the garden.

[0036] Specific embodiment three: This embodiment is a further limitation of specific embodiment one. The sowing cylinder 13 includes a sealing cover 130, a cylinder 131, a force column 132, a sowing column 133, a seed containing channel 134, a plunger 135, a fixing plate 136, a seed leveling frame 137 and a hole 138. The sealing cover 130 is screwed on the top of the cylinder 131. At the same time, the force column 132 is inserted into the interior of the cylinder 131. The driving rod 41 is fixedly provided on the top of the force column 132. The bottom of the cylinder 131 is conical. The force column 132 inside the cylinder 131 is fixedly connected to the sowing column 133 and the plunger 135. The sowing column 133 is conical.

[0037] A sowing column 133 is fixedly provided at the bottom of the force-bearing column 132, and a seed-containing channel 134 is opened on the circumferential outer wall of the sowing column 133. At the same time, a plunger piece 135 is fixedly provided at the end of the sowing column 133 away from the force-bearing column 132. The plunger piece 135 is circular, and the diameter of the plunger piece 135 is larger than the diameter of the opening at the bottom of the cylinder 131.

[0038] The seed accommodating channel 134 includes a lower seed groove A1341, a lower seed groove B1342 and a lower seed groove C1343. The lower seed groove A1341, the lower seed groove B1342 and the lower seed groove C1343 are all opened on the outer ring surface of the sowing column 133, and the interior of the cylinder 131 is filled with a large amount of grass seeds.

[0039] The spreading column 133 moves downward under the drive of the driving rod 41 , and the seed-containing passage 134 passes through the interior of the cylinder 131 , and the grass seeds in the seed-containing passage 134 are sprinkled on the garden ground.

[0040] A seed leveling frame 137 is installed below the bottom of the cylinder 131. The cross-section of the seed leveling frame 137 is semicircular. A fixing plate 136 is fixed on the side wall of the seed leveling frame 137. The top of the fixing plate 136 is fixed on the circumferential outer wall of the cylinder 131. A plurality of groups of holes 138 are evenly arranged at the bottom of the seed leveling frame 137.

[0041] like Figure 1 and Figure 5-7As shown: the working method of the sowing cylinder 13 is as follows: the seed channel 134 is set on the bottom surface of the sowing column 133, and the driving rod 41 is driven by the servo electric cylinder 3 and the driving plate 4. When it moves downward, the force column 132 moves downward, and the force column 132 drives the sowing column 133 to move downward. At this time, since the cylinder 131 is full of grass seeds, the grass seeds are filled in the seed channel 134. When the sowing column 133 is separated from the cylinder 131, the grass seeds in the seed channel 134 lose their obstruction and enter the seed leveling frame 137. Under the filtering effect of the holes 138, they are evenly spread on the ground to prevent the grass seeds from accumulating on the ground. The seed receiving channel 134 is provided on the bottom surface of the sowing column 133. When the driving rod 41 moves downward under the drive of the servo electric cylinder 3 and the driving plate 4, the force column 132 moves downward accordingly and drives the sowing column 133 to move downward. Since the cylinder 131 is full of grass seeds, the grass seeds will fill the seed receiving channel 134. When the sowing column 133 is separated from the cylinder 131, the grass seeds in the seed receiving channel 134 lose their obstruction and enter the seed leveling frame 137. Under the filtering effect of the holes 138, the grass seeds are evenly spread on the ground, which effectively avoids the problem of grass seed accumulation, further ensures the uniformity of sowing, and creates more balanced conditions for the growth of grass seeds.

[0042] The servo electric cylinder 3 accurately controls the downward stroke and speed of the driving plate 4 and the driving rod 41, thereby accurately controlling the downward movement distance and frequency of the force column 132 and the sowing column 133; this makes the amount of grass seeds filled in the seed channel 134 relatively fixed and controllable each time the pressure is pressed down, thereby achieving accurate quantitative sowing; the structure is simple and reliable, with good sealing performance, the seed channel 134 is directly arranged on the bottom surface of the sowing column 133, and when the sowing column 133 is located inside the cylinder 131, the inner wall of the cylinder 131 naturally forms a seal against the seed channel 134 The seal effectively prevents grass seeds from leaking when not sowing. This design eliminates the need for a complex valve structure and reduces the failure rate. Automatic filling and releasing: the device automatically fills the grass seeds with gravity. When the sowing column 133 moves down and out of the cylinder 131, the obstruction below the seed channel 134 disappears, and the grass seeds pre-filled therein are automatically and reliably released under the action of gravity. The entire process does not require additional complex seed removal or opening and closing mechanisms. Forced uniform dispersion avoids accumulation, and the released grass seeds fall directly into the seed leveling frame 137. The seed leveling frame 137 and its bottom are The holes 138 play a key role in secondary distribution; the grass seeds must pass through the holes 138 to fall to the ground, which effectively breaks up the concentrated falling grass seed flow and forces it to disperse through multiple holes, thereby achieving uniform spreading; this is a key design to prevent grass seeds from piling up on the ground; efficient use of grass seeds, combining quantitative control with uniform sowing, reduces the waste of grass seeds caused by accumulation, wind or water flow, and improves the utilization efficiency of grass seeds; the action is coherent and efficient, and the driving rod 41 drives the force column 132 and the sowing column 133 to move downward in a coherent manner, which is convenient for The seed passage 134 is closely linked to the motion state of the spreading column 133 when it is filled in the cylinder 131 and when it is released from the cylinder 131, making the spreading action efficient and highly automated. Utilizing a precisely controllable drive and ingenious structural coordination, particularly the sealing and releasing effect of the cylinder 131 on the seed passage 134 on the spreading column 133, quantitative and automatic release of grass seeds is achieved. Furthermore, the forced dispersion effect of the seed leveling frame 137 and the holes 138 ultimately ensures that the grass seeds are evenly spread on the ground, effectively preventing accumulation and improving sowing quality and efficiency.

[0043] Working principle: When in use, first put a large amount of grass seeds into the six groups of sowing barrels 13. At this time, hold the handle 2 with both hands, and use the force handle 1 to move the device through two groups of running wheels 9 to the garden seed ground. The whole device consists of six groups of sowing barrels 13, two groups of running wheels 9, two groups of servo electric cylinders 3 and a bracket. It has a simple structure. When sowing is needed, press the switch fixed on the handle 2, and the driving plate 4 drives the driving rod 41 to move downward, so that the grass seeds inside the sowing barrel 13 can fall from the seed-containing channel 134 and be sown on the garden planting ground. When sowing, the two groups of running wheels 9 roll on the ground, and the contact area with the soil is small, which will not exceed the bearing threshold of the garden soil. The roots of the seedlings of the newly sown grass seeds will get enough oxygen to avoid the formation of surface water, which will cause the grass seeds to rot or the roots of the seedlings to rot.

Claims

1. A landscaping grass seed sowing device, comprising a force-bearing handle (1), characterized in that: The end of the force-bearing handle (1) is fixedly mounted with a top frame (5), the bottom of the top frame (5) is fixedly mounted with a support frame (6), an end of the support frame (6) away from the top frame (5) is fixedly mounted with an upper fixed seat (7), a lower fixed seat (12) is mounted at the bottom of the upper fixed seat (7), a sowing barrel (13) is fixedly inserted on the lower fixed seat (12) and the upper fixed seat (7), a reinforcement rod (8) is welded and fixed to the bottom of the support frame (6), a running wheel (9) is movably mounted at the bottom of the reinforcement rod (8), and the running wheel (9) is fixedly connected to the end of the wheel shaft (10), a servo electric cylinder (3) is fixedly mounted on the surface of the top frame (5), an output end of the servo electric cylinder (3) is fixedly connected with a drive plate (4), and a drive rod (41) is screwed and mounted on the bottom of the drive plate (4).

2. The landscaping grass seed sowing device according to claim 1, characterized in that: The force-bearing handles (1) are of an "S"-shaped structure made of metal material, and the ends of the two groups of force-bearing handles (1) are fixedly provided with handles (2), and a plurality of groups of anti-slip strips distributed at equal intervals are evenly provided on the circumferential outer walls of the handles (2). The two groups of force-bearing handles (1) are respectively fixedly connected to both sides of the surface of the top frame (5).

3. The landscaping grass seed sowing device according to claim 2, characterized in that: The force-bearing handle (1) is fixed to the sowing barrel (13) through the top frame (5), the support frame (6), the upper fixing seat (7), and the lower fixing seat (12). The upper fixing seat (7) and the lower fixing seat (12) are arranged in parallel. Six groups of interpenetrating holes are evenly arranged on the upper fixing seat (7) and the lower fixing seat (12). At the same time, the sowing barrel (13) is fixedly arranged inside the six groups of interpenetrating holes, and the distance between two adjacent groups of sowing barrels (13) is consistent.

4. The landscaping grass seed sowing device according to claim 1, characterized in that: Three groups of reinforcing frames (11) are evenly arranged between the wheel axle (10) and the top frame (5). The bottom of the reinforcing frame (11) is movably connected to the wheel axle (10) through a bearing. At the same time, a U-shaped seat is fixedly arranged at one end of the reinforcing frame (11) away from the wheel axle (10). The U-shaped seat is clamped on the outer side of the top frame (5) and fixed by screw connection.

5. The landscaping grass seed sowing equipment according to claim 1, characterized in that: Two groups of servo electric cylinders (3) are installed on the top frame (5), and the driving plate (4) is driven to rise and fall at the bottom of the top frame (5) by the two groups of synchronously operated servo electric cylinders (3). At the same time, six groups of driving rods (41) are equidistantly installed at the bottom of the driving plate (4), and the six groups of driving rods (41) respectively drive the six groups of sowing barrels (13) to sow seeds.

6. The landscaping grass seed sowing device according to claim 5, characterized in that: The sowing cylinder (13) comprises a sealing cover (130), a cylinder (131), a force-bearing column (132), a sowing column (133), a seed-containing channel (134), a plunger (135), a fixing plate (136), a seed-leveling frame (137) and a hole (138). The sealing cover (130) is screwed onto the top of the cylinder (131). The force-bearing column (132) is inserted into the interior of the cylinder (131). A driving rod (41) is fixedly arranged on the top of the force-bearing column (132). The bottom of the cylinder (131) is conical. The force-bearing column (132) inside the cylinder (131) is fixedly connected to the sowing column (133) and the plunger (135) through the sowing column (133). The sowing column (133) is conical.

7. The landscaping grass seed sowing device according to claim 6, characterized in that: A sowing column (133) is fixedly provided at the bottom of the force-bearing column (132), and a seed-containing channel (134) is provided on the circumferential outer wall of the sowing column (133). At the same time, a plunger piece (135) is fixedly provided at one end of the sowing column (133) away from the force-bearing column (132). The plunger piece (135) is circular, and the diameter of the plunger piece (135) is larger than the diameter of the opening at the bottom of the cylinder (131).

8. The landscaping grass seed sowing device according to claim 7, characterized in that: The seed accommodating channel (134) comprises a lower seed groove A (1341), a lower seed groove B (1342) and a lower seed groove C (1343), wherein the lower seed groove A (1341), the lower seed groove B (1342) and the lower seed groove C (1343) are all provided on the outer annular surface of the sowing column (133), and a large amount of grass seeds are filled in the interior of the cylinder (131).

9. The landscaping grass seed sowing device according to claim 8, characterized in that: The sowing column (133) moves downward under the drive of the driving rod (41), and the seed-containing channel (134) passes through the interior of the cylinder (131), and the grass seeds in the seed-containing channel (134) are sprinkled on the garden ground.

10. The landscaping grass seed sowing device according to claim 9, characterized in that: A seed leveling frame (137) is installed below the bottom of the cylinder (131). The cross section of the seed leveling frame (137) is semicircular. A fixing piece (136) is fixedly provided on the side wall of the seed leveling frame (137). The top of the fixing piece (136) is fixedly provided on the circumferential outer wall of the cylinder (131). A plurality of groups of holes (138) are evenly provided on the bottom of the seed leveling frame (137).

Citation Information

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