Garlic planting machine
By designing a multi-functional garlic planting machine, simultaneous operations of land leveling, fertilization, and drip irrigation tape laying are achieved, solving the problem of single-function operation in existing technologies and improving planting efficiency and practicality.
Patent Information
- Application Number
- CN202423117789.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing garlic planting machines have limited functionality and cannot simultaneously perform land leveling, fertilization, and drip irrigation tape installation, resulting in high labor intensity and low planting efficiency.
A garlic planting machine was designed, comprising a crossbeam, longitudinal beam, traction beam, fertilization component, soil breaking component, and laying component. The depth can be adjusted by the support adjustment component, the fertilization component moves to apply fertilizer, the soil breaking component levels the land, and the laying component lays drip irrigation tape simultaneously, thus achieving multiple functions.
It improves the efficiency and practicality of garlic planting, enabling simultaneous land leveling, fertilization, and drip irrigation tape installation, while reducing labor intensity.
Smart Images

Figure CN223681469U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of agricultural machinery, in particular to garlic planter. BACKGROUND
[0002] Garlic is a kind of pillar economic crop in China, especially in the rich garlic Jinxian, garlic is more intensive crop in the field, all the time, garlic planting has been continuing the situation of manual labor, not only the labor intensity is big, and planting efficiency is low.The garlic planter of prior art announcement no. CN207604176U proposes, including frame and connecting plate, the front end of frame is provided with connecting plate, the rear of frame is provided with hopper, its characterized in that, the rear of frame is provided with the sowing disc body extending into hopper through connecting piece, the sowing disc body is provided with the garlic seed clamping base that can rotate around, the garlic seed clamping base is provided with torsion spring, one end of garlic seed clamping base is provided with the lever, the other end is provided with with garlic seed clamping mould, the connecting piece is provided with the gear that is matched with lever. But the planting environment of garlic requires to select suitable soil and climate conditions, irrigation and drainage should be convenient, ensure that the soil humidity is appropriate, the planting machine of prior art is not convenient for fertilizing and laying drip irrigation pipe simultaneously, the function is single, and the practicality is poor. SUMMARY
[0003] To solve the above technical problems, the utility model provides a garlic planter capable of leveling and compacting soil, simultaneously fertilizing and laying drip irrigation tape, realizing multiple functions, improving work efficiency and practicality.
[0004] The garlic planter of the utility model, including crossbeam, two longitudinal beams, traction beam, traction frame, upper connecting seat, fertilizing assembly, support adjusting part, soil breaking assembly, soil beating assembly and laying assembly, the left end of two longitudinal beams is connected with the front and rear sides of crossbeam, the middle part of crossbeam is connected with traction beam, the left side of traction beam is provided with connecting seat at front and rear ends, the top of traction beam is connected with traction frame, the top of traction frame is installed with upper connecting seat, the top of crossbeam is connected with fertilizing assembly, the bottom of crossbeam is installed with support adjusting part, the longitudinal beam on the right side of crossbeam is installed with soil breaking assembly, the longitudinal beam on the right side of soil breaking assembly is installed with soil beating assembly, the longitudinal beam on the right side of soil beating assembly is installed with laying assembly, is connected with tractor through connecting seat and upper connecting seat, the bottom of crossbeam can be supported through support adjusting part, the distance between crossbeam and land can be adjusted, the depth can be adjusted according to the planting needs, fertilizing assembly can move and fertilize simultaneously, soil breaking assembly can level and compact soil, soil beating assembly can crush soil block, improve the flatness of ground, laying assembly can lay drip irrigation tape simultaneously, improve work efficiency, realize multiple functions and improve practicality.
[0005] Preferably, the support adjusting component comprises two first height adjusting rods, two support frames and two walking ground wheels, the two first height adjusting rods are connected to the cross beams at the front and rear ends of the traction beam, the bottom of the telescopic end of the first height adjusting rod is connected with the support frame, the walking ground wheel is rotatably installed at the lower part of the support frame, and the outer wall of the walking ground wheel is provided in a sawtooth shape; the cross beam bottom is supported by the first height adjusting rod, the support frame and the walking ground wheel, the extension length of the support frame is adjusted by the first height adjusting rod, the distance between the cross beam and the ground can be adjusted, so that the depth of the walking ground wheel is adjusted, and the sawtooth shape of the outer part of the walking ground wheel can increase the contact area with the soil.
[0006] Preferably, the fertilizer applying assembly comprises two mounting sleeve frames, two vertical rods, a fertilizer box, a plurality of fertilizer outlets, second height adjusting rods, a transverse support beam, a plurality of first ploughshares and a plurality of circular pipes, the mounting sleeve frames are connected to the front and rear ends of the cross beam, the vertical rods are installed at the front and rear ends of the bottom of the fertilizer box, the vertical rods are insertedly connected to the mounting sleeve frames, the fertilizer box is uniformly provided with a plurality of fertilizer outlets at the bottom, the second height adjusting rods are installed on the longitudinal beam on the right side of the cross beam, the transverse support beam is connected to the bottom telescopic end of the second height adjusting rod, the first ploughshares are arranged on the transverse support beam, and the circular pipes are connected to the first ploughshares; the fertilizer pipe (not shown in the figure) is connected to the fertilizer outlet, the output end of the fertilizer pipe is inserted into the circular pipe, and after the fertilizer is added into the fertilizer box, the first ploughshare digs a ditch during the advancing process, and the fertilizer is applied to the soil through the fertilizer pipe and the circular pipe.
[0007] Preferably, the soil breaking assembly comprises a second transverse support beam, a plurality of vertical plates, a plurality of second ploughshares, two soil gathering discs and a traction connecting rod, the second transverse support beam is fixedly connected to the bottom of the middle position of the longitudinal beam, the second transverse support beam is uniformly connected with a plurality of vertical plates, the vertical plates are detachably and slidably arranged, the second ploughshare is connected to the bottom of the vertical plate, the rear part is triangular, and the inside is provided with a connecting rod, which is alternately arranged with the first ploughshare, the soil gathering disc is installed at the front and rear ends of the second transverse support beam, and the traction connecting rod is connected between the rear side of the upper connecting seat and the second transverse support beam; the traction connecting rod can increase the structural strength and ensure the stability, the detachable and slidable vertical plate can adjust the height as required, the ditch opened by the first ploughshare is covered with soil during the advancing process, the fertilizer is buried, waste is avoided, and the two soil gathering discs can gather soil to form a field ridge.
[0008] Preferably, the soil beating assembly comprises two third height adjusting rods, two bearing seats, a hexagonal shaft, a plurality of soil beating wheels, a third cross beam and a plurality of soil retaining plates, the two third height adjusting rods are installed on the right side of the two longitudinal beams, the bottom telescopic end of the third height adjusting rod is provided with a bearing seat, the two bearing seats are rotatably connected with the hexagonal shaft, the hexagonal shaft is uniformly provided with a plurality of soil beating wheels, the outer edge of the soil beating wheel is provided with a soil beating angle, the right side wall of the third height adjusting rod is connected with the third cross beam at the lower part, and the third cross beam is provided with a plurality of soil retaining plates corresponding to the soil beating wheels through screws; during the traveling process, the hexagonal shaft rotates on the bearing seat, the hexagonal shaft drives the plurality of soil beating wheels to rotate, breaks the large soil blocks, ensures the flatness of the ground, and at the same time, the third cross beam drives the soil retaining plates to block the front of the soil beating wheel to avoid soil splashing.
[0009] Preferably, the soil beating assembly comprises two third height adjusting rods, two bearing seats, a hexagonal shaft, a plurality of soil beating wheels, a third cross beam and a plurality of soil retaining plates, the two third height adjusting rods are installed on the right side of the two longitudinal beams, the bottom telescopic end of the third height adjusting rod is provided with a bearing seat, the two bearing seats are rotatably connected with the hexagonal shaft, the hexagonal shaft is uniformly provided with a plurality of soil beating wheels, the outer edge of the soil beating wheel is provided with a soil beating angle, the right side wall of the third height adjusting rod is connected with the third cross beam at the lower part, and the third cross beam is provided with a plurality of soil retaining plates corresponding to the soil beating wheels through screws; during the traveling process, the hexagonal shaft rotates on the bearing seat, the hexagonal shaft drives the plurality of soil beating wheels to rotate, breaks the large soil blocks, ensures the flatness of the ground, and at the same time, the third cross beam drives the soil retaining plates to block the front of the soil beating wheel to avoid soil splashing.
[0010] Preferably, the soil beating assembly comprises two third height adjusting rods, two bearing seats, a hexagonal shaft, a plurality of soil beating wheels, a third cross beam and a plurality of soil retaining plates, the two third height adjusting rods are installed on the right side of the two longitudinal beams, the bottom telescopic end of the third height adjusting rod is provided with a bearing seat, the two bearing seats are rotatably connected with the hexagonal shaft, the hexagonal shaft is uniformly provided with a plurality of soil beating wheels, the outer edge of the soil beating wheel is provided with a soil beating angle, the right side wall of the third height adjusting rod is connected with the third cross beam at the lower part, and the third cross beam is provided with a plurality of soil retaining plates corresponding to the soil beating wheels through screws; during the traveling process, the hexagonal shaft rotates on the bearing seat, the hexagonal shaft drives the plurality of soil beating wheels to rotate, breaks the large soil blocks, ensures the flatness of the ground, and at the same time, the third cross beam drives the soil retaining plates to block the front of the soil beating wheel to avoid soil splashing.
[0011] The utility model discloses the beneficial effects compared with prior art are: through the connecting seat and the upper connecting seat with tractor connection, through the support adjusting part can support the bottom of crossbeam, adjust the distance between with land, can adjust the depth according to the planting need, and the fertilization assembly can move and fertilize simultaneously, through the soil breaking assembly can level, gather the soil to the land, and the soil breaking assembly can break the soil block, improve the flatness of ground, and the laying assembly can synchronous laying of drip irrigation tape, improve the work efficiency, can realize multiple functions, improve the practicality. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is the structure schematic diagram of the utility model;
[0013] Figure 2 It is the isometric structure schematic diagram of the utility model;
[0014] Figure 3 It is the local three-dimensional structure schematic diagram of the utility model;
[0015] Figure 4 It is the lower three-dimensional structure schematic diagram of the utility model;
[0016] Figure 5 It is the local section structure schematic diagram of the utility model;
[0017] Mark in drawing: 1, crossbeam;2, longitudinal beam;3, traction beam;4, connecting seat;5, traction frame;6, upper connecting seat;7, installation sleeve frame;8, vertical rod;9, fertilizer box;10, fertilizer outlet seat;11, first height adjusting rod;12, support frame;13, walking ground wheel;14, second height adjusting rod;15, transverse support beam;16, first plough share;17, round pipe;18, second transverse support beam;19, vertical board;20, second plough share;21, gather soil disc;22, traction connecting rod;23, third height adjusting rod;24, bearing seat;25, hexagonal shaft;26, soil breaking wheel;27, mounting frame;28, support seat;29, rotating shaft;30, transmission box;31, first chain;32, second chain;33, chain box;34, third transverse support beam;35, soil retaining plate;36, short beam;37, fourth transverse support beam;38, screw rod;39, rectangular rod;40, connecting plate;41, pressing frame;42, pressing wheel;43, guide frame;44, fifth transverse support beam;45, rectangular long support rod;46, cross pipe frame;47, drip irrigation disc limiting frame;49, guide wheel. DETAILED DESCRIPTION
[0018] For the purpose of facilitating the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. The present application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.
[0019] Example 1
[0020] As Figure 1 , Figure 2 , figures and Figure 5As shown, the two longitudinal beams 2 left end and the beam 1 front and back two sides are connected, the beam 1 middle part is connected with the traction beam 3, the traction beam 3 left side front and back two ends are provided with the connecting seat 4, the traction beam 3 top is connected with the traction frame 5, the traction frame 5 top is installed with the upper connecting seat 6, the beam 1 front and back two ends are connected with the mounting sleeve frame 7, the fertilizer box 9 bottom front and back two ends are installed with the vertical rod 8, the vertical rod 8 is inserted and connected with the mounting sleeve frame 7, the fertilizer box 9 bottom is evenly installed with multiple fertilizer outlets 10, two second height adjusting rods 14 are installed on the longitudinal beam 2 right side of the beam 1, the second height adjusting rod 14 bottom telescopic end is connected with the transverse support beam 15, multiple first ploughs 16 are arranged and installed on the transverse support beam 15, the first plough 16 is connected with the round pipe 17, the second transverse support beam 18 is fixedly connected with the bottom of the middle position of the longitudinal beam 2, multiple vertical plates 19 are evenly connected on the second transverse support beam 18, the vertical plate 19 is detachably and slidably arranged, the vertical plate 19 bottom is connected with the second plough 20, the rear is triangular, and the inside is provided with a connecting rod, which is alternately arranged with the first plough 16, the second transverse support beam 18 front and back two ends are installed with the soil gathering disc 21, the upper connecting seat 6 rear side and the second transverse support beam 18 are connected with the traction connecting rod 22, two third height adjusting rods 23 are installed on the right side of the two longitudinal beams 2, the third height adjusting rod 23 bottom telescopic end is installed with the bearing seat 24, the two bearing seats 24 are rotatably connected with the hexagonal shaft 25, multiple soil beating wheels 26 are evenly installed on the hexagonal shaft 25, the soil beating wheel 26 outer edge is provided with a soil beating angle, the third height adjusting rod 23 right side wall lower part is connected with the third transverse support beam 34, multiple soil retaining plates 35 are connected on the third transverse support beam 34 corresponding position with the soil beating wheel 26 through screws, two short beams 36 are connected on the right side outer wall of the bearing seat 24, the short beam 36 right end is connected with the fourth transverse support beam 37, the screw rod 38 is connected between the short beam 36 and the longitudinal beam 2 right end, the spring is sleeved on the screw rod 38, multiple rectangular rods 39 are evenly installed on the fourth transverse support beam 37, the rectangular rod 39 bottom is provided with a soil breaking cone, the rectangular rod 39 lower part is connected with the connecting plate 40, the connecting plate 40 right side is rotatably connected with the pressing frame 41, the pressing frame 41 right side is rotatably installed with the pressing wheel 42, the pressing frame 41 middle part is provided with the guide frame 43, the fifth transverse support beam 44 is installed on the longitudinal beam 2 top left side of the third height adjusting rod 23, the rectangular long support rod 45 is inserted and installed on the fifth transverse support beam 44 upper part, the rectangular long support rod 45 upper part is provided with an insertion cylinder, the transverse pipe frame 46 is installed in the insertion cylinder, multiple groups of drip irrigation disc limiting frames 47 are slidably installed on the transverse pipe frame 46, the insertion cylinder upper part is installed with the clamping frame 48, the rectangular rod 39 top is inserted with the guide wheel 49;
[0021] The fertilizer pipe is connected to the fertilizer outlet 10 by connecting the seat 4 and the upper connecting seat 6 with the tractor, the output end of the fertilizer pipe is inserted into the circular pipe 17, after the fertilizer is added to the fertilizer box 9, the first plowshare 16 opens the ditch during the running process, the fertilizer is applied to the soil through the fertilizer pipe and the circular pipe 17, the pulling connecting rod 22 can increase the structural strength and ensure the stability, the vertical plate 19 is detachably and slidably arranged, so that the height can be adjusted according to the needs, the ditch opened by the first plowshare 16 is covered during the running process, the fertilizer is buried, waste is avoided, meanwhile, the two soil gathering discs 21 can gather the soil to form the field ridge, during the running process, the hexagonal shaft 25 rotates on the bearing seat 24, the hexagonal shaft 25 drives the plurality of soil breaking wheels 26 to rotate, the large soil blocks are broken to ensure the flatness of the ground, meanwhile, the third cross beam 34 drives the soil blocking plate 35 to block the front of the soil breaking wheel 26, so that the soil is prevented from splashing, the drip irrigation disc is placed on the horizontal pipe frame 46, the drip irrigation disc is clamped and fixed by the drip irrigation disc limiting frame 47, the pressing plate arranged on the jacking frame 48 presses the drip irrigation disc, the drip irrigation pipe passes around the guide wheel 49 and the guide frame 43 and is located below the pressing wheel 42, during the running process, the soil breaking cone at the bottom of the rectangular rod 39 opens the ditch, the guide frame 43 guides the drip irrigation pipe, and the guide frame 43 covers the drip irrigation pipe.
[0022] As Figure 1 , Figure 3 and Figure 5 shown, on the basis of example 1, further comprising two first height adjusting rods 11 connected to the cross beam 1 at the front and rear ends of the traction beam 3, the telescopic end of the first height adjusting rod 11 is connected with a support frame 12, the support frame 12 is rotatably installed with a walking ground wheel 13 at the lower part, the outer wall of the walking ground wheel 13 is sawtooth-shaped, two mounting frames 27 are symmetrically installed in the middle of the two longitudinal beams 2, the mounting frame 27 is installed with a support seat 28 at the top, the two support seats 28 are rotatably installed with a rotating shaft 29, the bottom of the transmission box 30 is installed at the middle top end of the cross beam 1 and the traction beam 3, the left end of the transmission box 30 is provided with a connecting key shaft, the transmission box 30 is drivingly connected with the rotating shaft 29 through the chain wheel and the first chain 31 at the front output end, the rotating shaft 29 is drivingly connected with the middle part of the hexagonal shaft 25 through the second chain 32 and the chain wheel, the chain box 33 is connected to the bottom of the third cross beam 34, and the chain box 33 is sleeved outside the chain wheel and the second chain 32 in the middle part of the hexagonal shaft 25;
[0023] The first height adjusting rod 11, the support frame 12 and the walking ground wheel 13 support the bottom of the cross beam 1, the first height adjusting rod 11 adjusts the extension length of the support frame 12, the distance between the cross beam 1 and the ground can be adjusted, thereby the depth of the walking ground wheel 13 is adjusted, the sawtooth shape outside the walking ground wheel 13 can increase the contact area with the soil, the front end connecting key shaft of the transmission box 30 is connected with the tractor, the transmission box 30 drives the hexagonal shaft 25 to rotate through the chain wheel, the first chain 31, the rotating shaft 29 and the second chain 32, and provides power for the soil beating wheel 26, and the soil beating effect is ensured.
[0024] As shown in Figures 1 to 5 The first height adjusting rod 11, the support frame 12 and the walking ground wheel 13 support the bottom of the cross beam 1, the first height adjusting rod 11 adjusts the extension length of the support frame 12, the distance between the cross beam 1 and the ground can be adjusted, thereby the depth of the walking ground wheel 13 is adjusted, the sawtooth shape outside the walking ground wheel 13 can increase the contact area with the soil, the front end connecting key shaft of the transmission box 30 is connected with the tractor, the transmission box 30 drives the hexagonal shaft 25 to rotate through the chain wheel, the first chain 31, the rotating shaft 29 and the second chain 32, and provides power for the soil beating wheel 26, and the soil beating effect is ensured.
[0025] The first height adjusting rod 11, the support frame 12 and the walking ground wheel 13 support the bottom of the cross beam 1, the first height adjusting rod 11 adjusts the extension length of the support frame 12, the distance between the cross beam 1 and the ground can be adjusted, thereby the depth of the walking ground wheel 13 is adjusted, the sawtooth shape outside the walking ground wheel 13 can increase the contact area with the soil, the front end connecting key shaft of the transmission box 30 is connected with the tractor, the transmission box 30 drives the hexagonal shaft 25 to rotate through the chain wheel, the first chain 31, the rotating shaft 29 and the second chain 32, and provides power for the soil beating wheel 26, and the soil beating effect is ensured.
[0026] The above merely is the preferred implementation manner of the present application, and it should be noted that, for the ordinary skilled in the art, without departing from the technical principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications should also be considered as the protection scope of the present application.
Claims
1. A garlic planting machine, characterized in that, It includes a crossbeam (1), two longitudinal beams (2), a traction beam (3), a traction frame (5), an upper connecting seat (6), a fertilization component, a support adjustment component, a soil breaking component, a soil driving component, and a laying component. The left ends of the two longitudinal beams (2) are connected to the front and rear sides of the crossbeam (1). The middle of the crossbeam (1) is connected to the traction beam (3). The front and rear ends of the left side of the traction beam (3) are provided with connecting seats (4). The top of the traction beam (3) is connected to the traction frame (5). The top of the traction frame (5) is installed with an upper connecting seat (6). The top of the crossbeam (1) is connected to the fertilization component. The bottom of the crossbeam (1) is installed with a support adjustment component. The soil breaking component is installed on the longitudinal beam (2) to the right of the crossbeam (1). The soil driving component is installed on the longitudinal beam (2) to the right of the soil breaking component. The laying component is installed on the longitudinal beam (2) to the right of the soil driving component.
2. The garlic planting machine as described in claim 1, characterized in that, The support adjustment component includes two first height adjustment rods (11), two support frames (12) and two walking wheels (13). The two first height adjustment rods (11) are connected to the crossbeams (1) at the front and rear ends of the traction beam (3). The bottom of the telescopic end of the first height adjustment rod (11) is connected to the support frame (12). The walking wheels (13) are rotatably installed on the lower part of the support frame (12). The outer wall of the walking wheels (13) is set as serrated.
3. The garlic planting machine as described in claim 1, characterized in that, The fertilization assembly includes two mounting brackets (7), two vertical rods (8), a fertilizer box (9), multiple fertilizer outlets (10), a second height adjustment rod (14), a transverse support beam (15), multiple first plowshares (16), and multiple round tubes (17). The mounting brackets (7) are connected to the front and rear ends of the transverse beam (1). The vertical rods (8) are installed at the front and rear ends of the bottom of the fertilizer box (9). The vertical rods (8) are inserted and connected to the mounting brackets (7). Multiple fertilizer outlets (10) are evenly installed at the bottom of the fertilizer box (9). The two second height adjustment rods (14) are installed on the longitudinal beam (2) on the right side of the transverse beam (1). The telescopic ends of the second height adjustment rods (14) are connected to the transverse support beam (15). Multiple first plowshares (16) are arranged and installed on the transverse support beam (15). Round tubes (17) are connected to the first plowshares (16).
4. The garlic planting machine as described in claim 3, characterized in that, The soil-breaking component includes a second horizontal support beam (18), multiple vertical plates (19), multiple second plowshares (20), two soil-collecting discs (21), and a traction link (22). The second horizontal support beam (18) is fixedly connected to the bottom of the middle position of the longitudinal beam (2). Multiple vertical plates (19) are evenly connected on the second horizontal support beam (18). The vertical plates (19) are detachably slidably set. The bottom of the vertical plate (19) is connected to the second plowshare (20), which is triangular in shape at the rear and has a connecting rod inside. It is alternately set with the first plowshare (16). Soil-collecting discs (21) are installed at the front and rear ends of the second horizontal support beam (18). A traction link (22) is connected between the rear side of the upper connecting seat (6) and the second horizontal support beam (18).
5. The garlic planting machine as described in claim 1, characterized in that, The soil-driving assembly includes two third height adjustment rods (23), two bearing seats (24), a hexagonal shaft (25), multiple soil-driving wheels (26), a third crossbeam (34), and multiple soil-retaining plates (35). The two third height adjustment rods (23) are installed on the right side of the two longitudinal beams (2). The bearing seats (24) are installed at the bottom telescopic end of the third height adjustment rods (23). The hexagonal shaft (25) is rotatably connected between the two bearing seats (24). Multiple soil-driving wheels (26) are evenly installed on the hexagonal shaft (25). Soil-driving angles are provided on the outer edge of the soil-driving wheels (26). The lower part of the right side wall of the third height adjustment rods (23) is connected to the third crossbeam (34). Multiple soil-retaining plates (35) are connected to the third crossbeam (34) at the position corresponding to the soil-driving wheels (26) by screws.
6. The garlic planting machine as described in claim 5, characterized in that, It also includes two mounting brackets (27), two support seats (28), a rotating shaft (29), a transmission box (30), a first chain (31), a second chain (32), and a chain box (33). The two mounting brackets (27) are symmetrically installed in the middle of the two longitudinal beams (2). The support seats (28) are installed on the top of the mounting brackets (27), and the rotating shaft (29) is rotatably installed between the two support seats (28). The bottom of the transmission box (30) is installed on the crossbeam (1) and the traction beam. (3) At the top of the middle section, a connecting key shaft is provided at the left end of the transmission box (30). The front output end of the transmission box (30) is connected to the rotating shaft (29) via a sprocket and the first chain (31). The rotating shaft (29) is connected to the middle of the hexagonal shaft (25) via a second chain (32) and a sprocket. The chain box (33) is connected to the bottom of the third crossbeam (34). The chain box (33) is fitted on the outside of the sprocket and the second chain (32) in the middle of the hexagonal shaft (25).
7. The garlic planting machine as described in claim 5, characterized in that, The laying components include two short beams (36), a fourth horizontal support beam (37), two screws (38), multiple rectangular rods (39), multiple connecting plates (40), multiple clamping frames (41), multiple clamping wheels (42), a fifth horizontal support beam (44), a rectangular long support rod (45), a horizontal pipe frame (46), multiple sets of drip tray limit frames (47), a top clamping frame (48), and guide wheels (49). The two short beams (36) are connected to the outer wall of the right side of the bearing seat (24). The right end of the short beam (36) is connected to the fourth horizontal support beam (37). A screw (38) is connected between the short beam (36) and the right end of the longitudinal beam (2). A spring is fitted on the screw (38). Multiple rectangular rods (39) are evenly installed on the fourth horizontal support beam (37). The bottom is equipped with a soil-breaking cone, the lower part of the rectangular rod (39) is connected to a connecting plate (40), the right side of the connecting plate (40) is rotatably connected to a clamping frame (41), the right side of the clamping frame (41) is rotatably installed with a clamping wheel (42), the middle part of the clamping frame (41) is equipped with a guide frame (43), the top of the longitudinal beam (2) on the left side of the third height adjustment rod (23) is equipped with a fifth horizontal support beam (44), the upper part of the fifth horizontal support beam (44) is inserted with a rectangular long support rod (45), the upper part of the rectangular long support rod (45) is equipped with an inserting cylinder, the horizontal pipe frame (46) is installed in the inserting cylinder, multiple sets of drip irrigation tray limit frames (47) are slidably installed on the horizontal pipe frame (46), the upper part of the inserting cylinder is equipped with a top clamping frame (48), and the top of the rectangular rod (39) is inserted with a guide wheel (49).
Citation Information
Patent Citations
Garlic planting machine
CN207604176U