CN112534995A - Ridging device of usefulness is planted to strawberry - Google Patents

Ridging device of usefulness is planted to strawberry Download PDF

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Publication number
CN112534995A
CN112534995A CN202011536205.3A CN202011536205A CN112534995A CN 112534995 A CN112534995 A CN 112534995A CN 202011536205 A CN202011536205 A CN 202011536205A CN 112534995 A CN112534995 A CN 112534995A
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China
Prior art keywords
wall
groove
sliding
linkage
arc
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CN202011536205.3A
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Chinese (zh)
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CN112534995B (en
Inventor
刘文福
孙礼
张源
王士华
刘艳
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Fuyang Hongfu Agricultural Technology Co ltd
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Fuyang Hongfu Agricultural Technology Co ltd
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Priority to CN202011536205.3A priority Critical patent/CN112534995B/en
Publication of CN112534995A publication Critical patent/CN112534995A/en
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Publication of CN112534995B publication Critical patent/CN112534995B/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C5/00Making or covering furrows or holes for sowing, planting or manuring
    • A01C5/06Machines for making or covering drills or furrows for sowing or planting
    • A01C5/062Devices for making drills or furrows
    • A01C5/064Devices for making drills or furrows with rotating tools

Abstract

The ridging device for strawberry planting provided by the invention comprises a rack, a ditching unit and a rolling unit, wherein an installation groove is formed in the upper end of the rack, and the ditching unit and the rolling unit are sequentially arranged along the inner wall of the installation groove from left to right; the invention can solve the problems that after most of the conventional ridging machines plough the nursery lands, the furrowing ridge surfaces are extruded and shaped, so that secondary processing is needed, the workload is increased, the extrusion shaping is easy to cause soil accumulation, and the extrusion shaping cannot effectively extrude the ridge surfaces, so that the ridge surfaces are easy to collapse; and the existing ridger can not effectively adjust the spacing between gullies and can not adjust the inclination angle of ridge surfaces, thereby being incapable of effectively meeting planting requirements and the like.

Description

Ridging device of usefulness is planted to strawberry
Technical Field
The invention relates to the technical field of strawberry planting, in particular to a ridging device for strawberry planting.
Background
The strawberry is one of the favorite fruits of people, has rich nutritive value, and is known as fruit queen; the strawberries are the photophobic plants, but have strong shade resistance; the strawberries are not waterlogging-resistant and require good permeability of soil so as to be convenient for drainage in rainy seasons in the field, so that ridges need to be formed on a nursery land before the strawberries are planted so as to ensure the growth environment of the strawberries, and the ridges are also called ridges and are suitable for seedlings which grow slowly and have strict requirements on the environment; dividing the ridge into a high ridge and a low ridge; the high ridges are used for making ridges after the land is ploughed and harrowed in the nursery, and the high ridges are used for raising the seedling, so that the ground temperature can be improved, the seedlings can uniformly receive light, and the growth of the seedlings is facilitated.
However, the following problems exist when the strawberry is planted to ridge the nursery land at present: most of the conventional ridging machines are used for performing extrusion molding treatment on the furrow-opened ridge surface after turning the nursery land, so that secondary processing is required, the workload is increased, the extrusion molding easily causes soil accumulation, and the extrusion molding cannot effectively extrude the ridge surface, so that the ridge surface is easily collapsed; moreover, the existing ridger cannot effectively adjust the spacing between gullies and adjust the inclination angle of the ridge surface, so that the planting requirement cannot be effectively met.
Disclosure of Invention
The technical problem to be solved
The ridging device for strawberry planting provided by the invention can solve the problems pointed out in the background technology.
Two technical schemes
In order to achieve the above purpose, the invention adopts the following technical scheme that the ridging device for strawberry planting comprises a rack, a ditching unit and a rolling unit, wherein an installation groove is formed in the upper end of the rack, and the ditching unit and the rolling unit are sequentially arranged along the inner wall of the installation groove from left to right, wherein:
the inside groove that slides of having seted up along mounting groove upper end middle part of frame, and seted up circular spout on the frame front end center department outer wall.
The ditching unit includes driving motor, transmission shaft, cutter arbor, carousel, executive lever, a post, No. two posts, slider and adjusting part, wherein: the driving motor is arranged on the outer wall of the left side of the front end of the frame through a motor base, the tail end of an output shaft of the driving motor is connected with a transmission shaft through a spline, the tail end of the transmission shaft is arranged on the inner wall of the rear end of the mounting groove through a bearing, cutter bars are uniformly arranged along the circumferential direction from front to back along the outer wall of the transmission shaft, the rotary table is arranged in the circular sliding groove in a sliding way, a linkage pin is arranged along the outer edge of the outer side wall of the rotary table in a sliding way, an execution rod is arranged on the inner side wall of the rear end of the mounting groove, the other end of the execution rod is arranged on the inner wall of the rear end of the mounting groove in a sliding way, a first column is arranged in the middle of the outer wall of the execution rod in a sliding way, a second column is symmetrically arranged along the front and back of the, and the inner wall of the left end of the linkage groove is provided with abdicating grooves matched with the connecting holes in an up-and-down symmetrical manner, and the adjusting component is arranged in the linkage groove.
The roll-in unit includes universal driving shaft, telescopic link, roller briquetting, connecting rod, arc slider and auxiliary assembly, wherein: the linkage shafts are symmetrically arranged on the inner wall of the right side of the mounting groove in a front-back sliding manner, the rear ends of the linkage shafts are connected with the transmission shaft through belt transmission, telescopic rods are uniformly arranged along the inner side wall of the linkage shafts from front to back, a roller pressing block is connected between the telescopic rods, an arc-shaped chute is arranged along the outer edge of the roller pressing block, a linkage hole is formed in the outer wall of the arc-shaped chute in an outward extending manner, and the inside of the roller block is symmetrically provided with connecting grooves in the front and back direction, and the outer side of the inner wall of the connecting groove is provided with a positioning groove, and the outer wall of the connecting groove is uniformly provided with sliding holes along the circumferential direction, the outer wall of the middle part of the sliding hole is symmetrically provided with limiting sliding grooves along the front and back, the outer side wall of the rolling block is symmetrically provided with auxiliary grooves which are communicated with the sliding holes along the front and back and the circumferential direction, the arc-shaped sliding block is arranged in the arc-shaped sliding groove in a sliding way, and the outer side wall of the arc-shaped sliding block is connected with a connecting rod which is arranged in the linkage hole in a sliding manner, and the auxiliary assembly is arranged in the positioning groove.
As a preferred technical scheme of the invention, the adjusting assembly comprises a supporting seat, a connecting plate, a pushing cylinder, an executing cylinder, a first pushing block, a second pushing block, a sliding plate and an extension spring, wherein: the supporting seat is installed respectively in a post and No. two post outer wall connection hole department, be provided with the connecting plate between the supporting seat, the connecting plate right-hand member is connected with the connecting rod, inside push cylinder and the execution cylinder of being provided with respectively of supporting seat, push cylinder and execution cylinder telescopic link end are connected with a ejector pad and No. two ejector pads respectively, the symmetry slides around the slide and sets up at the linkage inslot, and the slide inside wall slides with a ejector pad and No. two ejector pads respectively and contradicts, be provided with extension spring along the longitudinal symmetry between the slide inside wall.
As a preferred technical solution of the present invention, the auxiliary assembly includes an auxiliary cylinder, a conical block, an actuating feeler lever, a baffle, a return spring, and an arc plate, wherein: the auxiliary cylinder sets up in the constant head tank, there is the toper piece that slides and set up in the spread groove along auxiliary cylinder telescopic link end-to-end connection, there is the slip setting at the downthehole execution feeler lever along the even sliding connection of toper piece outer wall circumference, it is provided with the helper roll to carry out the terminal slip of feeler lever, install the baffle that slides and set up in spacing spout along carrying out feeler lever outer wall symmetry, reset spring one end sets up on the baffle inside wall, the other end is connected on spacing spout inner wall, arc one end passes through the torsional spring and articulates on the auxiliary groove inner wall, the other end slides and sets up in the auxiliary.
As a preferable technical scheme of the invention, the outer wall of the actuating rod is symmetrically provided with transmission threads with opposite rotation directions in the front and back directions, and the second column is in threaded connection with the transmission threads.
As a preferred technical scheme of the invention, the rolling block is of a cylindrical structure, and two ends of the rolling block are of a circular truncated cone structure which is convenient for rolling and repairing the ridge surface.
As a preferable technical scheme of the invention, the first push block and the second push block are of a conical structure which is convenient for pushing the sliding plate to move towards the outer wall.
As a preferred technical scheme of the invention, the arc-shaped plate is an arc-shaped triangular structural plate which is convenient to match with a roller pressing block to repair ridge surfaces.
Three beneficial effects
1. The ridging machine greatly improves the ridging of a nursery land during strawberry planting, and can solve the problem that the secondary processing is needed because most of the conventional ridging machines turn over the nursery land and then extrude and shape the ridge surface after ditching, so that the workload is increased, the extrusion and shaping easily cause soil accumulation, and the extrusion and shaping cannot effectively extrude the ridge surface, so that the ridge surface is easily collapsed; and the existing ridger can not effectively adjust the spacing between gullies and can not adjust the inclination angle of ridge surfaces, thereby being incapable of effectively meeting planting requirements and the like.
2. The ditching unit is arranged, so that the garden land can be subjected to rotary smashing treatment to plough the garden land, the ploughed land can be directly subjected to ditching treatment, and then ridge forming treatment can be performed on gullies, so that secondary processing is avoided, and unnecessary workload is reduced.
3. The invention is provided with the rolling unit, and can perform rolling and shaping treatment on ditches after ditching, thereby avoiding soil accumulation caused by extrusion.
4. The invention is provided with the adjusting assembly, can be matched with the ditching unit to adjust the spacing between ditches according to the planting requirement, and can effectively control the inclination angle of the ridge surface so as to fully meet the planting condition.
5. The auxiliary assembly is arranged, and can be matched with the adjusting assembly to perform sufficient rolling treatment on the ridge surface, so that the ridge surface collapse caused by the looseness of the ridge surface is avoided.
Drawings
The invention is further illustrated with reference to the following figures and examples.
Fig. 1 is a front sectional view of the present invention.
Fig. 2 is a top cross-sectional view of the present invention.
Fig. 3 is a partial enlarged view at X of fig. 2 of the present invention.
Fig. 4 is a partial perspective view of the first and second columns and the rolling block of the present invention.
Fig. 5 is a partial structural view of the roll compact and the auxiliary assembly of the present invention.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
As shown in fig. 1-5, a ridging device for strawberry planting includes frame 1, ditching unit 2 and roll-in unit 3, mounting groove 11 has been seted up to frame 1 upper end inside, has set gradually ditching unit 2 and roll-in unit 3 from left to right along mounting groove 11 inner wall, wherein:
the inside of frame 1 has seted up groove 12 that slides along mounting groove 11 upper end middle part, and has seted up circular spout 13 on the outer wall of frame 1 front end center department.
The ditching unit 2 comprises a driving motor 21, a transmission shaft 22, a cutter bar 23, a rotary table 24, an actuating rod 25, a first column 26, a second column 27, a slide block 28 and an adjusting assembly 29, wherein: the driving motor 21 is installed on the outer wall of the left side of the front end of the rack 1 through a motor base, the tail end of an output shaft of the driving motor 21 is connected with a transmission shaft 22 through a spline, the tail end of the transmission shaft 22 is arranged on the inner wall of the rear end of the installation groove 11 through a bearing, cutter bars 23 are uniformly arranged along the outer wall of the transmission shaft 22 from front to rear in the circumferential direction, the turntable 24 is arranged in the circular sliding groove 13 in a sliding mode, a linkage pin 241 is arranged along the outer edge of the outer side wall of the turntable 24 in a sliding mode, an executing rod 25 is arranged on the inner side wall of; the other end of the actuating rod 25 is slidably arranged on the inner wall of the rear end of the mounting groove 11, a first column 26 is slidably arranged in the middle of the outer wall of the actuating rod 25, second columns 27 are slidably arranged in a front-back symmetrical manner along the outer wall of the actuating rod 25 by taking the first column 26 as a base point, and the second columns 27 are in threaded connection with the transmission thread 251; and the slider 28 that slides and set up in sliding groove 12 through unsmooth cooperation is all installed to No. one post 26 and No. two post 27 upper ends, has seted up linkage groove 261 along No. one post 26 and No. two post 27 insides, has seted up connecting hole 262 along linkage groove 261 right-hand member inner wall longitudinal symmetry, and linkage groove 261 left end inner wall longitudinal symmetry sets up with connecting hole 262 matched with groove 263 of stepping down, and adjusting part 29 sets up in linkage groove 261.
During specific work, the driving motor 21 is opened, the driving motor 21 drives the cutter bar 23 to rotate through the transmission shaft 22, the cutter bar 23 is enabled to rotate and smash the garden land, the garden land is ploughed, ridging is convenient to carry out, the executing rod 25 rotates at the moment, the executing rod 25 drives the second column 27 to synchronously move towards each other through the transmission thread 251 and the matching slide block 28, the distance between the first column 26 and the second column 27 is adjusted according to different requirements, the garden land is cultivated through the first column 26 and the second column 27, the distance between ridge faces is adjusted, and the inclination angle of the ridge faces is adjusted through the adjusting component 29.
The adjusting assembly 29 comprises a supporting seat 291, a connecting plate 292, a pushing cylinder 293, an actuating cylinder 294, a first pushing block 295, a second pushing block 296, a sliding plate 297 and an extension spring 298, wherein: the supporting seats 291 are respectively installed at the outer wall connecting holes 262 of the first column 26 and the second column 27, a connecting plate 292 is arranged between the supporting seats 291, the right end of the connecting plate 292 is connected with a connecting rod 34, a pushing cylinder 293 and an executing cylinder 294 are respectively arranged inside the supporting seats 291, the tail ends of telescopic rods 32 of the pushing cylinder 293 and the executing cylinder 294 are respectively connected with a first push block 295 and a second push block 296, and the first push block 295 and the second push block 296 are conical structures which are convenient for pushing the sliding plate 297 to move towards the outer wall; the sliding plate 297 is arranged in the linkage groove 261 in a sliding manner, and the inner side wall of the sliding plate 297 is respectively in sliding contact with the first push block 295 and the second push block 296, and the extension springs 298 are symmetrically arranged between the inner side walls of the sliding plate 297 from top to bottom.
During specific work, the pushing cylinder 293 and the executing cylinder 294 are opened, the pushing cylinder 293 and the executing cylinder 294 push the first push block 295 and the second push block 296 to move to the left side according to the inclination angle of the ridge surface, so that the first push block 295 and the second push block 296 push the sliding plate 297 to change the inclination angle of the ridge surface through the sliding plate 297; after the work is finished, the pushing cylinder 293 and the executing cylinder 294 respectively drive the first pushing block 295 and the second pushing block 296 to retract and reset, and at the moment, the sliding plate 297 retracts and resets inwards through the extension spring 298.
The rolling unit 3 comprises a linkage shaft 31, a telescopic rod 32, a rolling block 33, a connecting rod 34, an arc-shaped sliding block 35 and an auxiliary component 36, wherein: the linkage shaft 31 is arranged on the inner wall of the right side of the mounting groove 11 in a sliding manner in a front-back symmetrical manner, the rear end of the linkage shaft 31 is connected with the transmission shaft 22 through belt transmission, telescopic rods 32 are uniformly arranged along the inner side wall of the linkage shaft 31 from front to back, a roller pressing block 33 is connected between the telescopic rods 32, the roller pressing block 33 is of a cylindrical structure, and two ends of the roller pressing block 33 are of a circular table structure which facilitates rolling and repairing of ridge surfaces; an arc-shaped sliding groove 331 is formed along the outer edge of the roller pressing block 33, a linkage hole 332 is formed in the outer wall of the arc-shaped sliding groove 331 in an outward extending mode, connecting grooves 333 are symmetrically formed in the rolling block 33 in a front-back mode, positioning grooves 334 are formed in the outer side of the inner wall of the connecting grooves 333, sliding holes 335 are evenly formed in the outer wall of the connecting grooves 333 in the circumferential direction, limiting sliding grooves 336 are symmetrically formed in the outer wall of the middle of the sliding holes 335 in a front-back mode, auxiliary grooves 337 communicated with the sliding holes 335 are symmetrically formed in the outer wall of the rolling block 33 in a front-back mode and evenly in the circumferential direction, an arc-shaped sliding block 35 is arranged in the arc-shaped sliding groove; the auxiliary assembly 36 includes an auxiliary cylinder 361, a tapered block 362, an actuating ram 363, a stop 364, a return spring 365, and an arcuate plate 366, wherein: the auxiliary cylinder 361 is arranged in the positioning groove 334, the telescopic rod 32 end connected with the tapered block 362 slidably arranged in the connecting groove 333 along the auxiliary cylinder 361, the executing contact rod 363 slidably arranged in the sliding hole 335 along the circumferential direction of the outer wall of the tapered block 362 is slidably arranged, the auxiliary roller 3631 is slidably arranged at the end of the executing contact rod 363, the baffle 364 slidably arranged in the limiting sliding groove 336 is symmetrically arranged along the outer wall of the executing contact rod 363, one end of the reset spring 365 is arranged on the inner side wall of the baffle 364, the other end of the reset spring is connected to the inner wall of the limiting sliding groove 336, one end of the arc-shaped plate 366 is hinged to the inner wall of the auxiliary groove 337 through the torsion spring 3661, the other end of the arc-shaped plate 366 is slidably arranged in the auxiliary groove 337, and the.
During specific work, the linkage shaft 31 drives the roller pressing block 33 to rotate through the telescopic rod 32 under the action of the transmission shaft 22, so that the telescopic rod 32 is matched with the roller pressing block 33 to perform rolling and shaping processing on the ridge surface, when the distance between the first column 26 and the second column 27 is adjusted, the roller pressing block 33 is matched with the telescopic rod 32 through the connecting rod 34 and the arc-shaped sliding block 35 to perform distance adjustment, the auxiliary cylinder 361 is opened during the distance adjustment, the auxiliary cylinder 361 pushes the execution contact rod 363 to move outwards through the conical block 362, the execution contact rod 363 pushes the arc-shaped plate 366 to swing outwards in the circumferential direction through the auxiliary roller 3631, and therefore the inclination angle of the ridge surface can be adjusted through the matching adjusting assembly 29; after the work is finished, the auxiliary cylinder 361 drives the tapered block 362 to retract and reset, at the moment, the execution feeler lever 363 retracts and resets through the baffle 364 in cooperation with the reset spring 365, and the arc-shaped plate 366 retracts and resets under the action of the torsion spring 3661.
When in work:
the first step is as follows: the device is installed on a cultivator and the device is started.
The second step is that: the driving motor 21 is turned on, the driving motor 21 drives the cutter bar 23 to rotate through the transmission shaft 22, so that the cutter bar 23 carries out rotary crushing treatment on the nursery land, so as to turn over the nursery land to facilitate ridging, at the moment, an operator rotates the actuating rod 25, the actuating rod 25 drives the second column 27 to synchronously move towards each other through the transmission thread 251 and the slide block 28, so as to adjust the distance between the first column 26 and the second column 27 according to different requirements, so as to make a reclamation of the nursery lands through the first and second columns 26 and 27 to adjust the intervals of the ridge surfaces, during which the push cylinder 293 and the actuating cylinder 294 are opened, the push cylinder 293 and the actuating cylinder 294 push the first push block 295 and the second push block 296 to move to the left side according to the inclination angles of the ridge surfaces, so that the first push block 295 and the second push block 296 can change the inclination angle of the ridge surface by the sliding plate 297 by pushing the sliding plate 297.
The third step: the linkage shaft 31 drives the roller pressing block 33 to rotate through the telescopic rod 32 under the action of the transmission shaft 22, so that the telescopic rod 32 is matched with the roller pressing block 33 to roll and shape the ridge surface, when the distance between the first column 26 and the second column 27 is adjusted, the roller pressing block 33 is matched with the telescopic rod 32 through the connecting rod 34 and the arc-shaped sliding block 35 to adjust the distance, the auxiliary cylinder 361 is opened during the adjustment, the auxiliary cylinder 361 pushes the execution contact rod 363 to move outwards through the conical block 362, the execution contact rod 363 pushes the arc-shaped plate 366 to swing outwards in the circumferential direction through the auxiliary roller 3631, and the inclination angle of the ridge surface can be adjusted through the matching adjusting assembly 29; after the work is finished, the auxiliary cylinder 361 drives the tapered block 362 to retract and reset, at the moment, the execution feeler lever 363 retracts and resets through the baffle 364 in cooperation with the reset spring 365, and the arc-shaped plate 366 retracts and resets under the action of the torsion spring 3661.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides a ridging device of usefulness is planted to strawberry, includes frame (1), ditching unit (2) and roll-in unit (3), its characterized in that: frame (1) upper end is inside to be seted up mounting groove (11), has set gradually ditching unit (2) and roll-in unit (3) from left to right along mounting groove (11) inner wall, wherein:
a sliding groove (12) is formed in the middle of the upper end of the mounting groove (11) in the rack (1), and a circular sliding groove (13) is formed in the outer wall of the center of the front end of the rack (1);
the ditching unit (2) include driving motor (21), transmission shaft (22), cutter arbor (23), carousel (24), actuating lever (25), No. one post (26), No. two post (27), slider (28) and adjusting part (29), wherein: driving motor (21) are installed on frame (1) front end left side outer wall through the motor cabinet, driving motor (21) output shaft end has transmission shaft (22) through splined connection, and transmission shaft (22) end sets up on mounting groove (11) rear end inner wall through the bearing, circumference evenly is provided with cutter arbor (23) from the front to the back along transmission shaft (22) outer wall, carousel (24) slide to set up in circular spout (13), and it is provided with linkage pin (241) to slide along carousel (24) lateral wall periphery, carousel (24) inside wall is provided with executive rod (25), and the setting of sliding of executive rod (25) other end is on mounting groove (11) rear end inner wall, the sliding of executive rod (25) outer wall middle part is provided with No. one post (26), slide to be provided with No. two post (27) for base point front and back symmetry along executive rod (25) outer wall with No. one post (26), and No. one post (26) and No. two post (27) upper ends are all installed and are sliding to set A sliding block (28) in the groove (12) is internally provided with a linkage groove (261) along the first column (26) and the second column (27), connecting holes (262) are symmetrically formed in the upper and lower parts of the inner wall of the right end of the linkage groove (261), abdicating grooves (263) matched with the connecting holes (262) are symmetrically formed in the upper and lower parts of the inner wall of the left end of the linkage groove (261), and an adjusting component (29) is arranged in the linkage groove (261);
roll-in unit (3) include universal driving shaft (31), telescopic link (32), roll-in piece (33), connecting rod (34), arc slider (35) and auxiliary assembly (36), wherein: the linkage shaft (31) is symmetrically arranged on the inner wall of the right side of the mounting groove (11) in a front-back sliding mode, the rear end of the linkage shaft (31) is connected with the transmission shaft (22) through belt transmission, telescopic rods (32) are uniformly arranged along the inner side wall of the linkage shaft (31) from front to back, a roller pressing block (33) is connected between the telescopic rods (32), an arc sliding groove (331) is formed in the outer edge of the roller pressing block (33), a linkage hole (332) is formed in the outer wall of the arc sliding groove (331) in an outward extending mode, connecting grooves (333) are symmetrically formed in the front-back mode inside the roller pressing block (33), a positioning groove (334) is formed in the outer side of the inner wall of the connecting groove (333), sliding holes (335) are uniformly formed in the circumferential direction of the outer wall of the connecting groove (333), limiting sliding grooves (336) are symmetrically formed in the front-back mode of, arc slider (35) slide to set up in arc spout (331), and be connected with along arc slider (35) lateral wall and slide the connecting rod (34) that set up in linkage hole (332), and auxiliary assembly (36) set up in constant head tank (334).
2. The ridging device for strawberry planting according to claim 1, wherein: the adjusting assembly (29) comprises a supporting seat (291), a connecting plate (292), a pushing cylinder (293), an executing cylinder (294), a first pushing block (295), a second pushing block (296), a sliding plate (297) and a tension spring (298), wherein: support seat (291) are installed respectively in a post (26) and No. two post (27) outer wall connecting hole (262) department, be provided with connecting plate (292) between support seat (291), connecting plate (292) right-hand member is connected with connecting rod (34), inside promotion cylinder (293) and the execution cylinder (294) of being provided with respectively of support seat (291), promotion cylinder (293) and execution cylinder (294) telescopic link (32) end is connected with a ejector pad (295) and No. two ejector pad (296) respectively, the symmetrical setting that slides around slide plate (297) is in linkage groove (261), and slide plate (297) inside wall slides with a ejector pad (295) and No. two ejector pad (296) respectively and contradicts, be provided with extension spring (298) along the longitudinal symmetry between slide plate (297) inside wall.
3. The ridging device for strawberry planting according to claim 1, wherein: the auxiliary assembly (36) comprises an auxiliary cylinder (361), a conical block (362), an execution feeler lever (363), a baffle plate (364), a return spring (365) and an arc plate (366), wherein: the utility model discloses a spacing spout (336), including auxiliary cylinder (361), telescopic link (32), execution feeler lever (363), supplementary cylinder (361) and supplementary cylinder (361), the end-to-end connection has the toper piece (362) that slide setting is in spread groove (333), the even sliding connection in toper piece (362) outer wall circumference has the execution feeler lever (363) that slide setting is in slide sliding hole (335), it is provided with supplementary roller (3631) to execute feeler lever (363) end slip, baffle (364) that slide setting is in spacing spout (336) are installed along executing feeler lever (363) outer wall symmetry, reset spring (365) one end sets up on baffle (364) inside wall, the other end is connected on spacing spout (336) inner wall, torsional spring (3661) are passed through to arc (366) one end and are articulated on supplementary groove (337) inner wall, the other end slides and.
4. The ridging device for strawberry planting according to claim 1, wherein: the outer wall of the actuating rod (25) is symmetrically provided with transmission threads (251) with opposite rotating directions in a front-back mode, and the second column (27) is connected with the transmission threads (251) through threads.
5. The ridging device for strawberry planting according to claim 1, wherein: the rolling block (33) is of a cylindrical structure, and two ends of the rolling block (33) are of a circular truncated cone structure facilitating rolling repair of ridge surfaces.
6. The ridging device for strawberry planting according to claim 2, wherein: the first push block (295) and the second push block (296) are of a conical structure which is convenient for pushing the sliding plate (297) to move towards the outer wall.
7. The ridging device of claim 3, wherein: the arc-shaped plate (366) is an arc-shaped triangular structure plate which is convenient to match with the roller pressing block (33) to repair ridge surfaces.
CN202011536205.3A 2020-12-23 2020-12-23 Ridging device of usefulness is planted to strawberry Active CN112534995B (en)

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CN110663315A (en) * 2019-11-08 2020-01-10 田玉龙 Soybean seeder
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CN206807997U (en) * 2017-05-26 2017-12-29 洛阳市鑫乐机械设备有限公司 A kind of ditching, ridging suppression device of antiwind no-tillage fertilizing groundnut planter
CN208159160U (en) * 2018-04-17 2018-11-30 阜阳市颍泉区久香种植专业合作社 A kind of strawberry cultivating ridger of digging
CN109121493A (en) * 2018-10-24 2019-01-04 湖南农业大学 A kind of plough rotation Combined ditching ridger
CN110574531A (en) * 2019-08-30 2019-12-17 内蒙古民族大学 Variable-ridge-distance double-hydraulic-pressure height-adjusting piston type biomass pot seedling growing planter
CN110663315A (en) * 2019-11-08 2020-01-10 田玉龙 Soybean seeder
CN210900264U (en) * 2019-11-19 2020-07-03 开原市勃农机械有限公司 Rotary tillage and ridging seeding device

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