CN216362539U - Seedling transplanting device - Google Patents

Seedling transplanting device Download PDF

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Publication number
CN216362539U
CN216362539U CN202123347553.9U CN202123347553U CN216362539U CN 216362539 U CN216362539 U CN 216362539U CN 202123347553 U CN202123347553 U CN 202123347553U CN 216362539 U CN216362539 U CN 216362539U
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supporting seat
seat
block
movable
stop block
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CN202123347553.9U
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Chinese (zh)
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吴水木
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Tonglu Yixin Agricultural Development Co ltd
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Tonglu Yixin Agricultural Development Co ltd
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Abstract

The application discloses transplanting seedling device belongs to the technical field of transplanting seedling equipment, and its technical scheme main points include: the movable seat is provided with a roller and a push-pull handle; the excavating device is arranged on the movable seat, and a supporting seat is arranged between the excavating device and the movable seat; the fixing mechanism is arranged on the moving seat and arranged on two sides of the excavating device; and the locking mechanism is arranged on the supporting seat and used for locking the fixing mechanism. The application provides a transplanting device fixes transplanting device before playing the seedling, improves the stability of excavating gear during operation, increases the protection to the seedling.

Description

Seedling transplanting device
Technical Field
The application belongs to the technical field of transplanting seedling equipment, especially relates to a transplanting seedling device.
Background
The method has the advantages that the seedlings are uniformly planted and managed, so that the planting time can be greatly saved, and the survival rate of the seedlings can be increased, so that the method is widely applied to forestry and agriculture, but when the seedlings grow to a certain degree, the seedlings need to be transplanted, the seedlings need to be dug out from the originally growing soil, and the action becomes seedling lifting; the labor intensity of seedling lifting is very high, but because the root system of the seedling is developed, if the root system of the seedling is damaged during seedling lifting, the transplanted seedling is difficult to survive, so the seedling is still lifted manually.
The current chinese patent with publication number CN111543279B discloses a soil block seedling excavates transplanting device for cyclocarya paliurus seedling, including moving movable support, moving movable support's lower fixed surface is connected with the gyro wheel seat, the inner wall of gyro wheel seat is rotated through the round pin axle and is connected with the gyro wheel, moving movable support's last fixed surface is connected with the connecting plate, the left side fixedly connected with of connecting plate excavates transplanting device, it includes the internal thread sleeve to excavate transplanting device, the right side of internal thread sleeve and the left side fixed connection of connecting plate, the internal thread sleeve's inner wall spiro union has an external screw thread chamber section of thick bamboo, the top fixedly connected with motor of internal thread sleeve inner wall.
Although the transplanting device has the advantages of automatic digging and transplanting, the external thread cavity cylinder is interacted with the ground when rotating, the internal thread sleeve and the trolley are not fixed, the whole transplanting device is easy to shift, and the risk of damaging seedlings exists.
SUMMERY OF THE UTILITY MODEL
The purpose of this application embodiment is to the technical problem that above-mentioned exists, provides a transplanting device, and is fixed with transplanting device before lifting seedlings, improves the stability of excavating gear during operation, increases the protection to the seedling.
The embodiment of the application provides a transplanting seedling device, includes: the movable seat is provided with a roller and a push-pull handle; the excavating device is arranged on the movable seat, and a supporting seat is arranged between the excavating device and the movable seat; the fixing mechanism is arranged on the moving seat and arranged on two sides of the excavating device; and the locking mechanism is arranged on the supporting seat and used for locking the fixing mechanism.
Excavating gear passes through the supporting seat and installs on removing the seat, remove the seat and install the gyro wheel, the transplanting device's of being convenient for removal transportation, remove the seat and arrange excavating gear in the seedling directly over, the seedling of playing of seedling is realized through excavating gear, it is fixed with excavating gear and removal seat through fixed establishment earlier before excavating gear plays the seedling, improve the stability of excavating gear during operation, lock excavating gear through locking mechanism, further improve fixing device's fixed action, it is provided with U type groove to remove the seat, the excavating gear of being convenient for plays after the seedling from taking out and the transplanting device separation.
Further, the fixing mechanism includes: the moving frame comprises a moving column, a mounting seat and a moving ring; the arc-shaped fixing plate is movably connected to the mounting seat and is provided with a tip end; the movable column penetrates through the supporting seat, the movable column is movably connected with the supporting seat, and the movable seat is provided with a guide hole matched with the arc-shaped fixing plate.
Remove frame and supporting seat swing joint, the removal post runs through the supporting seat, through making the shift ring reciprocate to the shift ring effect, push down to the shift ring, make the ARC fixed plate insert in earth, it is more laborsaving to insert to ground through most advanced messenger ARC fixed plate, ARC fixed plate runs through the guiding hole, stability when improving ARC fixed plate and inserting through the guiding hole, make ARC fixed plate continuously insert to locking mechanism locking to ground, the removal post, the mount pad, through welded connection structure as an organic whole between the shift ring, improve the stability of structure, form hinge structure between mount pad and the ARC fixed plate, the rotation demand when ARC fixed plate inserts the ground of being convenient for, the crooked direction of arc can also can be crooked outwards inwards when ARC fixed plate installs.
Further, the locking mechanism includes: the lower limiting block is arranged on the movable column; the lower stop block is arranged on the supporting seat and is movably connected with the supporting seat; the lower spring is arranged between the lower stop block and the supporting seat; the lower limiting block is provided with a lower limiting groove, the lower limiting groove is matched with the lower stopping block, and one end of the lower stopping block extends out of the supporting seat.
The movable frame moves downwards, the lower limiting block arranged on the movable column moves along with the movable frame, the lower limiting block abuts against the lower stopping block, the lower stopping block is matched with the lower limiting groove to prevent the lower limiting block from moving back upwards, locking between the movable column and the supporting seat is achieved, the lower stopping block is unlocked by pulling one end of the lower stopping block, which is arranged outside the supporting seat, the lower stopping block is reset through the lower spring, and the next locking effect is facilitated.
Further, the locking mechanism further comprises: the upper limiting block is arranged on the movable column; the upper stop block is arranged on the supporting seat and is movably connected with the supporting seat; the upper spring is arranged between the upper stop block and the supporting seat; the upper limiting block is provided with an upper limiting groove, the upper limiting groove is matched with the upper stopping block, and one end of the upper stopping block extends out of the supporting seat.
The movable frame moves upwards, the upper limiting block mounted on the movable column moves along with the movable frame, the upper limiting block abuts against the upper limiting block, the upper limiting block is matched with the upper limiting groove, the upper limiting block is prevented from moving downwards, locking between the movable column and the supporting seat is achieved, the upper limiting block is arranged at one end outside the supporting seat through pulling, the upper limiting block is enabled to be unlocked from the upper limiting block, the upper limiting block is enabled to reset through the upper spring, the locking effect of the next time is facilitated, after the movable frame moves upwards and is locked, the movable seat is convenient to move, the movable frame is prevented from being in contact friction with the ground under the action of gravity, and stable movement of the movable seat is guaranteed.
Furthermore, the movable frame is provided with a return spring, the return spring is sleeved on the movable column, one end of the return spring is abutted against the supporting seat, and the other end of the return spring is abutted against the movable ring.
Through the effect of the reset spring on the movable frame, when the lower stop block is separated from the lower stop block, the movable frame slightly moves upwards under the effect of the reset spring, the lower stop block is not locked when the lower stop block is reset, and the movable frame moves upwards through the reset spring, so that the contact friction between an arc-shaped fixed plate on the movable frame and the ground when the transplanting device is not used is prevented.
Further, the excavating device includes: the sleeve is connected with the supporting seat in an installing manner; the cavity barrel is connected with the sleeve through threads; the motor is arranged in the sleeve and drives the cavity barrel to rotate.
The sleeve is fixedly installed on the moving seat through the supporting seat, the cavity barrel is connected with the sleeve through threads, the cavity barrel is driven to rotate through the motor, the cavity barrel moves in the axial direction of the sleeve through the action between the threads during rotation, the output shaft of the motor is matched with the cavity barrel through the rectangular rod and the rectangular groove, the stable movement of the cavity barrel is guaranteed, and the cavity barrel is excavated underground.
The beneficial effects of the embodiment of the application are that:
1. insert ground with arc fixed plate through removing the frame downstream, improve and remove the stability between seat, excavating gear and the ground, prevent that excavating gear from taking place the skew to cause the damage to the seedling at during operation and ground between interact, improve the safety in utilization.
2. The movable frame is locked through the locking mechanism, the lower limiting block is matched with the lower stopping block, the fixing effect of the fixing mechanism is improved, the stability of the transplanting device during seedling raising is further improved, the upper limiting block is matched with the upper stopping block, the movable frame is fixed when the arc-shaped fixing plate is separated from the ground, and contact friction between the arc-shaped fixing plate and the ground is avoided.
3. Through reset spring to removing the effect of putting up, when making stop block and lower stop block separation down, under reset spring's effect, make to remove the frame and upwards remove slightly, stop block locking down when reseing down, it is more convenient when being convenient for mention the removal frame.
Drawings
Fig. 1 is a schematic structural diagram of a transplanting device according to an embodiment of the present application;
FIG. 2 is a schematic structural diagram of a fixing mechanism according to an embodiment of the present application;
FIG. 3 is a schematic structural diagram of a locking mechanism according to an embodiment of the present application;
reference numeral 100 in the figure, a movable seat; 101. a guide hole; 110. a roller; 120. a push-pull handle; 200. an excavating device; 210. a sleeve; 220. a chamber cylinder; 230. a motor; 240. a supporting seat; 300. a fixing mechanism; 310. a movable frame; 311. a moving ring; 312. moving the column; 313. a mounting seat; 320. an arc-shaped fixing plate; 321. a tip; 330. a return spring; 400. a locking mechanism; 410. a lower limiting block; 411. a lower limiting groove; 420. a lower stop block; 430. a lower spring; 440. an upper limit block; 441. an upper limiting groove; 450. an upper stop block; 460. and (4) spring loading.
Detailed Description
The technical solutions in the embodiments of the present application will be described clearly below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some, but not all, embodiments of the present application. All other embodiments that can be derived by one of ordinary skill in the art from the embodiments given herein are intended to be within the scope of the present disclosure.
The terms first, second and the like in the description and in the claims of the present application are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It will be appreciated that the data so used may be interchanged under appropriate circumstances such that embodiments of the application may be practiced in sequences other than those illustrated or described herein, and that the terms "first," "second," and the like are generally used herein in a generic sense and do not limit the number of terms, e.g., the first term can be one or more than one. In addition, "and/or" in the specification and claims means at least one of connected objects, a character "/" generally means that a preceding and succeeding related objects are in an "or" relationship.
The portable server provided by the embodiment of the present application is described in detail below with reference to the accompanying drawings by specific embodiments and application scenarios thereof.
Example 1:
as shown in fig. 1 and fig. 3, an embodiment of the present application provides a seedling transplanting device, including: a movable base 100, the movable base 100 being provided with a roller 110, the movable base 100 being provided with a push-pull handle 120; the excavating device 200 is mounted on the movable base 100, and a support base 240 is arranged between the excavating device 200 and the movable base 100; the fixing mechanism 300, the fixing mechanism 300 is arranged on the moving seat 100, and the fixing mechanism 300 is arranged on both sides of the excavating device 200; and the locking mechanism 400, wherein the locking mechanism 400 is arranged on the supporting seat 240, and the locking mechanism 400 is used for locking the fixing mechanism 300.
Further, the excavating device 200 includes: the sleeve 210 is connected with the supporting seat 240 in an installing manner; the cavity barrel 220 is connected with the sleeve 210 through threads; a motor 230, wherein the motor 230 is disposed in the sleeve 210, and the motor 230 drives the cavity barrel 220 to rotate.
Digging device 200 is installed on removing seat 100 through supporting seat 240, remove seat 100 and install gyro wheel 110, the removal transportation of the transplanting device of being convenient for, remove seat 100 and arrange digging device 200 in directly over the seedling, the seedling of playing of seedling is realized through digging device 200, it is fixed with digging device 200 and removal seat 100 through fixed establishment 300 earlier before digging device 200 plays the seedling, improve the stability of digging device 200 during operation, lock digging device 200 through locking mechanism 400, further improve fixing device's fixed action, it is provided with U type groove to remove seat 100, be convenient for from taking out and the transplanting device separation after digging device 200 plays the seedling.
The sleeve 210 is fixedly mounted on the movable base 100 through the support base 240, the cavity barrel 220 is connected with the sleeve 210 through threads, the cavity barrel 220 is driven to rotate through the motor 230, the cavity barrel 220 moves along the axial direction of the sleeve 210 through the action of the threads while rotating, and the output shaft of the motor 230 is matched with the cavity barrel 220 through a rectangular rod and a rectangular groove, so that the stable movement of the cavity barrel 220 is ensured, and the cavity barrel 220 is excavated towards the ground.
Example 2:
as shown in fig. 2, the present embodiment provides a seedling transplanting device, and in addition to the above technical features, further, the fixing mechanism 300 includes: the moving frame 310 comprises a moving column 312, a mounting seat 313 and a moving ring 311; the arc-shaped fixing plate 320 is movably connected to the mounting seat 313, and the arc-shaped fixing plate 320 is provided with a tip 321; the movable column 312 penetrates through the support seat 240, the movable column 312 is movably connected with the support seat 240, and the movable seat 100 is provided with a guide hole 101 matched with the arc-shaped fixing plate 320.
Further, the moving frame 310 is provided with a return spring 330, the return spring 330 is sleeved on the moving column 312, one end of the return spring 330 abuts against the supporting seat 240, and the other end of the return spring 330 abuts against the moving ring 311.
Remove frame 310 and supporting seat 240 swing joint, remove post 312 and run through supporting seat 240, make removal ring 311 reciprocate through acting on removal ring 311, push down removal ring 311, make arc fixed plate 320 insert in earth, it is more laborsaving to make arc fixed plate 320 insert to ground through pointed end 321, arc fixed plate 320 runs through guiding hole 101, improve the stability when arc fixed plate 320 inserts through guiding hole 101, make arc fixed plate 320 continuously insert to locking mechanism 400 locking to the subsurface, remove post 312, mount pad 313, connect into a body structure through the welding between the removal ring 311, improve the stability of structure, form hinge structure between mount pad 313 and the arc fixed plate 320, be convenient for the rotation demand when arc fixed plate 320 inserts the ground, the arc crooked direction can also can be crooked outwards inwards when arc fixed plate 320 installs.
When the lower stop block 420 is separated from the lower stop block 410 by the action of the return spring 330 on the movable frame 310, the movable frame 310 is slightly moved upwards by the action of the return spring 330, the lower stop block 410 is not locked when the lower stop block 420 is reset, and the movable frame 310 is moved upwards by the return spring 330, so that the arc-shaped fixing plate 320 on the movable frame 310 is prevented from contacting and rubbing the ground when the transplanting device is not used.
Example 3:
as shown in fig. 3, the present embodiment provides a seedling transplanting device, and in addition to the above technical features, further, the locking mechanism 400 includes: a lower limiting block 410, wherein the lower limiting block 410 is mounted on the moving column 312; the lower stop block 420 is arranged on the supporting seat 240, and the lower stop block 420 is movably connected with the supporting seat 240; a lower spring 430, the lower spring 430 being disposed between the lower stopper 420 and the support seat 240; the lower limiting block 410 is provided with a lower limiting groove 411, the lower limiting groove 411 is matched with the lower stopping block 420, and one end of the lower stopping block 420 extends out of the supporting seat 240.
Further, the locking mechanism 400 further includes: an upper limiting block 440, wherein the upper limiting block 440 is mounted on the moving column 312; the upper stop block 450 is arranged on the support seat 240, and the upper stop block 450 is movably connected with the support seat 240; the upper spring 460 is arranged between the upper stop block 450 and the support seat 240; the upper limiting block 440 is provided with an upper limiting groove 441, the upper limiting groove 441 is matched with the upper stopping block 450, and one end of the upper stopping block 450 extends out of the supporting seat 240.
The moving frame 310 moves downwards, the lower limit block 410 mounted on the moving column 312 moves along with the moving frame, the lower limit block 410 abuts against the lower stop block 420, the lower stop block 420 is matched with the lower limit groove 411 to prevent the lower limit block 410 from moving back upwards, locking between the moving column 312 and the supporting seat 240 is realized, the lower stop block 420 is unlocked by pulling one end of the lower stop block 420, which is arranged outside the supporting seat 240, and the lower stop block 420 is reset by the lower spring 430, so that the next locking action is facilitated.
The movable frame 310 moves upwards, the upper limit block 440 mounted on the movable column 312 moves along with the movable frame, the upper limit block 440 abuts against the upper limit block 450, the upper limit block 450 is matched with the upper limit groove 441 to prevent the upper limit block 440 from moving downwards, locking between the movable column 312 and the supporting seat 240 is realized, the upper limit block 450 is unlocked by pulling one end of the upper limit block 450 arranged outside the supporting seat 240, the upper limit block 450 is reset by the upper spring 460 to facilitate next locking, after the movable frame 310 moves upwards and is locked, the movable seat 100 is convenient to move, the movable frame 310 is prevented from contacting and rubbing with the ground under the action of gravity, and stable movement of the movable seat 100 is ensured.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element. Further, it should be noted that the scope of the methods and apparatus of the embodiments of the present application is not limited to performing the functions in the order illustrated or discussed, but may include performing the functions in a substantially simultaneous manner or in a reverse order based on the functions involved, e.g., the methods described may be performed in an order different than that described, and various steps may be added, omitted, or combined. In addition, features described with reference to certain examples may be combined in other examples.
While the present embodiments have been described with reference to the accompanying drawings, it is to be understood that the invention is not limited to the precise embodiments described above, which are meant to be illustrative and not restrictive, and that various changes may be made therein by those skilled in the art without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (6)

1. A seedling transplanting device, comprising:
the device comprises a movable seat (100), wherein the movable seat (100) is provided with a roller (110), and the movable seat (100) is provided with a push-pull handle (120);
the excavating device (200) is arranged on the movable seat (100), and a supporting seat (240) is arranged between the excavating device (200) and the movable seat (100);
the fixing mechanism (300) is arranged on the movable seat (100), and the fixing mechanism (300) is arranged on two sides of the excavating device (200);
the locking mechanism (400), the locking mechanism (400) is arranged on the supporting seat (240), and the locking mechanism (400) is used for locking the fixing mechanism (300).
2. A seedling transplanting device as recited in claim 1, wherein the fixing mechanism (300) comprises:
the moving frame (310) comprises a moving column (312), a mounting seat (313) and a moving ring (311);
the arc-shaped fixing plate (320) is movably connected to the mounting base (313), and a tip (321) is arranged on the arc-shaped fixing plate (320);
the movable column (312) penetrates through the supporting seat (240), the movable column (312) is movably connected with the supporting seat (240), and the movable seat (100) is provided with a guide hole (101) matched with the arc-shaped fixing plate (320).
3. A seedling transplanting device as claimed in claim 2, wherein the locking mechanism (400) comprises:
a lower limit block (410), the lower limit block (410) being mounted on the moving column (312);
the lower stop block (420), the said lower stop block (420) is placed on supporting seat (240), the said lower stop block (420) and supporting seat (240) are connected movably;
the lower spring (430), the lower spring (430) is placed between the lower stop block (420) and the supporting seat (240);
the lower limiting block (410) is provided with a lower limiting groove (411), the lower limiting groove (411) is matched with the lower stopping block (420), and one end of the lower stopping block (420) extends out of the supporting seat (240).
4. A seedling transplanting device as claimed in claim 2, wherein the locking mechanism (400) further comprises:
an upper limiting block (440), the upper limiting block (440) being mounted on the moving column (312);
the upper stop block (450), the upper stop block (450) is arranged on the supporting seat (240), and the upper stop block (450) is movably connected with the supporting seat (240);
the upper spring (460), the upper spring (460) is arranged between the upper stop block (450) and the supporting seat (240);
the upper limiting block (440) is provided with an upper limiting groove (441), the upper limiting groove (441) is matched with the upper stopping block (450), and one end of the upper stopping block (450) extends out of the supporting seat (240).
5. A seedling transplanting device as claimed in claim 3, wherein the moving frame (310) is provided with a return spring (330), the return spring (330) is sleeved on the moving column (312), one end of the return spring (330) abuts against the supporting seat (240), and the other end of the return spring (330) abuts against the moving ring (311).
6. A seedling transplanting device as claimed in claim 1, wherein the digging device (200) comprises:
the sleeve (210), the said sleeve (210) is mounted and connected with supporting seat (240);
the cavity barrel (220) is in threaded connection with the sleeve (210);
the motor (230), the motor (230) is arranged in the sleeve (210), and the motor (230) drives the cavity barrel (220) to rotate.
CN202123347553.9U 2021-12-28 2021-12-28 Seedling transplanting device Active CN216362539U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123347553.9U CN216362539U (en) 2021-12-28 2021-12-28 Seedling transplanting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123347553.9U CN216362539U (en) 2021-12-28 2021-12-28 Seedling transplanting device

Publications (1)

Publication Number Publication Date
CN216362539U true CN216362539U (en) 2022-04-26

Family

ID=81237549

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123347553.9U Active CN216362539U (en) 2021-12-28 2021-12-28 Seedling transplanting device

Country Status (1)

Country Link
CN (1) CN216362539U (en)

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