CN110754188A - Novel hole-groove type crop pot seedling transplanter - Google Patents

Novel hole-groove type crop pot seedling transplanter Download PDF

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Publication number
CN110754188A
CN110754188A CN201911263470.6A CN201911263470A CN110754188A CN 110754188 A CN110754188 A CN 110754188A CN 201911263470 A CN201911263470 A CN 201911263470A CN 110754188 A CN110754188 A CN 110754188A
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China
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seedling
pot seedling
hole
transplanter
clamping
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CN110754188B (en
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谢杰锋
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Ge An
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C11/00Transplanting machines
    • A01C11/02Transplanting machines for seedlings
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C11/00Transplanting machines
    • A01C11/006Other parts or details or planting machines
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C11/00Transplanting machines
    • A01C11/02Transplanting machines for seedlings
    • A01C11/025Transplanting machines using seedling trays; Devices for removing the seedlings from the trays
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C5/00Making or covering furrows or holes for sowing, planting or manuring
    • A01C5/04Machines for making or covering holes for sowing or planting

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  • Life Sciences & Earth Sciences (AREA)
  • Soil Sciences (AREA)
  • Environmental Sciences (AREA)
  • Transplanting Machines (AREA)

Abstract

The invention discloses a hole-groove type novel crop pot seedling transplanter which structurally comprises a transplanter body, a soil covering device, a pot seedling derivation core disc, a pot seedling derivation hopper and a hole opening device, wherein the transplanter body is sequentially provided with the soil covering device, the pot seedling derivation core disc, the pot seedling derivation hopper and the hole opening device from left to right, and compared with the prior art, the hole-groove type novel crop pot seedling transplanter has the beneficial effects that: based on its spring coil of spring expansion and contraction can the equidistance with the spring coil, indirectly adjust the horizontal interval of opening cave awl and opening cave awl, can satisfy the horizontal not demand of interval size of alms bowl seedling and alms bowl seedling, also can be adapted to the branch field of different width, can reduce the transplanting cost, it is demountable installation with the mounting disc to open the cave awl, based on magnetism principle and spring characteristic, can open the quantity of cave awl according to the demand installation, adjust alms bowl seedling and alms bowl seedling's vertical interval, can adapt to the demand to different row spacing, increase and decrease the accessible simultaneously and open the cave awl, satisfy the different horizontal interval demands to alms bowl seedling and alms bowl seedling in same width divides the field, and wide application range.

Description

Novel hole-groove type crop pot seedling transplanter
Technical Field
The invention relates to the technical field of transplanting machines, in particular to a novel hole-groove type transplanting machine for crop pot seedlings.
Background
China belongs to the big agricultural country, in agricultural production, pot seedling has the characteristics of no root damage, high survival rate and high yield compared with a conventional seedling raising mode, and is widely applied to crops such as cotton, rape, tobacco and the like.
The pot seedlings of different crops need different growing spaces, so the transplanting intervals between the pot seedlings and the pot seedlings are different, the hole opening cone is fixed due to the fact that the existing transplanter is not perfect in technology, the transverse interval and the longitudinal interval of the hole opening cone are fixed, hole grooves with different intervals need transplanters with different specifications, transplanters with different specifications are needed or different hole opening devices are needed to be replaced, and transplanting cost is greatly increased.
Disclosure of Invention
The invention mainly aims to overcome the defects of the prior art and provide a novel hole-groove type crop pot seedling transplanter.
The invention is realized by adopting the following technical scheme: a novel hole-groove type crop pot seedling transplanter structurally comprises a transplanter body, a soil covering device, a pot seedling guiding core disc, a pot seedling guiding hopper and a hole opening device, wherein the transplanter body is sequentially provided with the soil covering device, the pot seedling guiding core disc, the pot seedling guiding hopper and the hole opening device from left to right, and the pot seedling guiding core disc is communicated with the pot seedling guiding hopper;
the opening device comprises a mounting disc, an opening cone, a high-strength spring group, a central shaft, a connecting ring, a connecting plate, a connecting rod and a hydraulic cylinder, eight groups of high-strength spring groups and more than eight groups are uniformly distributed on the outer wall of the central shaft, the high-strength spring groups are arranged in an equidistant circular array, the mounting disc penetrates through the central shaft, the mounting disc is arranged in an equidistant mode and has five or more than five groups, each mounting disc is connected to the high-strength spring group, one end of each high-strength spring group is connected to the connecting ring, the connecting ring has two ends and adopts clearance fit with the central shaft, one end, far away from the high-strength spring group, of the connecting ring is connected with the connecting plate through the connecting rod, the connecting plate is in a circular structure, and one surface, far away from the connecting rod.
As a further optimization of the technical scheme, the high-strength spring group comprises a fixed mounting block, a high-strength spring and a mounting slider, one end of a spring ring of the high-strength spring is connected with the fixed mounting block, the other end of the spring ring of the high-strength spring is provided with the mounting slider, the mounting slider is connected with the central shaft in a sliding manner, the fixed mounting block is fixedly connected with the mounting disc, and the tail end of the high-strength spring is connected with the connecting ring.
As a further optimization of the technical scheme, the guide strips are uniformly distributed on the outer wall of the central shaft, any two guide strips are parallel to each other, the guide strips are arranged in a cross structure, and the guide strips are in sliding fit with the cross guide grooves for installing the sliding blocks.
As a further optimization of the technical scheme, the outer wall of the mounting disc is equally divided into equal parts and is fixedly provided with a chuck, and the chuck is clamped with the hole opening cone.
As the further optimization of this technical scheme, the chuck is including disk body, screens group, location strip, movable opening, segment, electromagnet piece, insulating ring, the inner center of disk body is fixed with the insulating ring, be equipped with the electromagnet piece of being connected with the disk body in the insulating ring, all be fixed with the segment as an organic whole structure with it on the interior quartering position of disk body, adjacent two be equipped with screens group, movable opening between the segment, screens group one end and movable opening cooperation, the other end is connected with the insulating ring, the movable opening sets up on the disk body, the disk body is connected with the mounting disc, disk body and opening awl cooperation, be fixed with the location strip on the outer wall quartering position of disk body.
As a further optimization of the technical scheme, the clamping group comprises clamping beads, iron sheets and springs, wherein the iron sheets are embedded in one surfaces, facing the insulating ring, of the clamping beads, one ends of the springs are connected with the clamping beads, the other ends of the springs are connected with the insulating ring, and the clamping beads are arranged between the two adjacent positioning strips.
As a further optimization of the technical scheme, the hole opening cone comprises positioning grooves, clamping holes and a cone, the positioning grooves are formed in four positions of the cone, the clamping holes are formed between every two adjacent positioning grooves, the cone is arranged in each clamping hole and can be clamped with the clamping beads, and the positioning grooves can be in clearance fit with the positioning strips.
Advantageous effects
Compared with the prior art, the invention provides a novel hole-groove type crop pot seedling transplanter which has the following beneficial effects:
(I) according to the invention, through the combined arrangement of the mounting disc, the hole opening cone, the high-strength spring group, the central shaft, the connecting ring, the connecting plate, the connecting rod, the hydraulic cylinder and other components, the high-strength spring group can be stretched through the hydraulic cylinder, and the connecting effect of the connecting ring, the connecting plate and the connecting rod acts on the high-strength spring group, so that the high-strength spring group can be stretched;
(II) the invention can realize detachable installation through the chuck by the opening cone and the installation disc, can generate magnetic attraction to an iron sheet based on the magnetic principle by electrifying the electromagnet block, thereby generating pressure to the spring to enable the clamping beads to retract into the disc body to be separated from the clamping position holes, is convenient for the opening cone to be quickly inserted on the chuck by combining the positioning groove and the positioning strip, simultaneously enables the clamping position holes to correspond to the clamping beads, thereby facilitating the clamping beads to accurately pass through the clamping position holes for clamping, greatly improving the installation efficiency, enables the electromagnet block to lose magnetism by powering off the electromagnet block, thereby not generating magnetic force to the iron sheet, enabling the spring to reset to generate thrust to the clamping beads, enabling the clamping beads to pass through the clamping position holes for clamping the earthen bowl, thereby installing the number of the opening cones according to the requirement, and adjusting the longitudinal distance between the seedling and the seedling in the same column, the tray can meet the requirements on different row distances, has wide application range, and can increase or reduce the hole opening cones on the mounting tray to meet the requirements on different transverse distances between the pot seedlings and the pot seedlings in the same width field division.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural diagram of the novel hole-groove type crop pot seedling transplanter.
Fig. 2 is a front view of the hole opening device of the present invention.
Fig. 3 is a schematic side view of the hole opening device of the present invention.
FIG. 4 is a schematic diagram of the side view structure of the connection plate, the connecting rod and the hydraulic cylinder.
Fig. 5 is a schematic structural diagram of the high-strength spring assembly according to the present invention.
Fig. 6 is a schematic structural view of the central shaft of the present invention.
Fig. 7 is a schematic structural view of the mounting plate of the present invention.
Fig. 8 is a schematic structural view of a chuck according to the present invention.
Fig. 9 is a schematic structural diagram of the open-hole cone of the present invention.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
a transplanter body-100, a soil covering device-200, a pot seedling leading core disc-300, a pot seedling leading bucket-400, a hole opening device-500, a mounting disc-D1, a hole opening cone-D2, a high-strength spring group-D3, a central shaft-D4, a connecting ring-D5, a connecting plate-D6, a connecting rod-D7, a hydraulic cylinder-D8, a fixed mounting block-D31, a high-strength spring-D32 and a mounting slide block-D33, the device comprises a guide strip-D41, a chuck-D11, a disc body-D11, a clamping group-D12, a positioning strip-D13, a movable opening-D14, a fan-shaped block-D15, an electromagnet block-D16, an insulating ring-D17, a clamping bead-D121, an iron sheet-D122, a spring-D123, a positioning groove-D21, a clamping hole-D22 and a cone-D23.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example 1
Referring to fig. 1-6, the present invention provides a technical solution of a novel hole-groove type crop pot seedling transplanter: the structure of the transplanter structurally comprises a transplanter body 100, a soil covering device 200, a pot seedling leading-out core disc 300, a pot seedling leading-out bucket 400 and a hole opening device 500, wherein the transplanter body 100 is sequentially provided with the soil covering device 200, the pot seedling leading-out core disc 300, the pot seedling leading-out bucket 400 and the hole opening device 500 from left to right, the pot seedling leading-out core disc 300 is communicated with the pot seedling leading-out bucket 400, and the soil covering device 200 is arranged in a way that soil around holes can be pushed into the holes after the pot seedlings are transplanted to cover the surfaces of the pot seedlings;
the hole opening device 500 comprises a mounting disc D1, a hole opening cone D2, a high-strength spring group D3, a central shaft D4, a connecting ring D5, a connecting plate D6, a connecting rod D7 and a hydraulic cylinder D8, eight or more high-strength spring groups D3 are uniformly distributed on the outer wall of the central shaft D4, the high-strength spring groups D3 are distributed in an equidistant circular array, a mounting plate D1 penetrates through the central shaft D4, five or more mounting plates D1 are arranged in an equidistant mode, each mounting plate D1 is connected with a high-strength spring group D3, one end of the high-strength spring assembly D3 is connected to a coupling ring D5, two coupling rings D5 are provided and are in clearance fit with the central shaft D4, one end of the connecting ring D5 far away from the high-strength spring group D3 is connected with the connecting plate D6 through a connecting rod D7, the connecting plate D6 is arranged in a circular structure, and hydraulic cylinders D8 are vertically connected to the centers of the surfaces, far away from the connecting rod D7, of the connecting plates D6;
the link D7 and the link D5 are coupled together such that the high-strength spring assembly D3 can be extended and contracted without being restricted by the central shaft D4 when the hydraulic cylinder D8 applies force to the link plate D6.
The high-strength spring group D3 comprises a fixed mounting block D31, a high-strength spring D32 and a mounting slider D33, wherein one end of a spring ring of the high-strength spring D32 is connected with the fixed mounting block D31, the other end of the spring ring is provided with the mounting slider D33, the mounting slider D33 is in sliding connection with a central shaft D4, the fixed mounting block D31 is fixedly connected with a mounting disc D1, and the tail end of the high-strength spring D32 is connected with a connecting ring D5;
when the high-strength spring D32 is arranged, the spring ring and the spring ring can stretch at equal intervals when the high-strength spring D32 stretches, so that the distance between the mounting disc D1 and the mounting disc D1 is changed, the high-strength spring D32 is suitable for field division with different widths, is also suitable for the requirements of different transverse distances between pot seedlings and pot seedlings, and is wide in application range.
Guide strips D41 are uniformly distributed on the outer wall of the central shaft D4, any two guide strips D41 are parallel to each other, the guide strips D41 are arranged in a cross-shaped structure, and the guide strips D41 are in sliding fit with cross-shaped guide grooves of the installation sliding block D33;
the combination of the guide bar D41 and the mounting slider D33 plays a role in connecting the high-strength spring group D3 with the central shaft D4, and simultaneously, the high-strength spring D32 can be extended and retracted.
Example 2
Referring to fig. 1-9, the present invention provides a technical solution of a novel hole-groove type crop pot seedling transplanter: the structure of the transplanter structurally comprises a transplanter body 100, a soil covering device 200, a pot seedling leading-out core disc 300, a pot seedling leading-out bucket 400 and a hole opening device 500, wherein the transplanter body 100 is sequentially provided with the soil covering device 200, the pot seedling leading-out core disc 300, the pot seedling leading-out bucket 400 and the hole opening device 500 from left to right, the pot seedling leading-out core disc 300 is communicated with the pot seedling leading-out bucket 400, and the soil covering device 200 is arranged in a way that soil around holes can be pushed into the holes after the pot seedlings are transplanted to cover the surfaces of the pot seedlings;
referring to fig. 2-4, the hole opening device 500 includes a mounting plate D1, a hole opening cone D2, a high-strength spring assembly D3, a central shaft D4, a connecting ring D5, a connecting plate D6, a connecting rod D7, and a hydraulic cylinder D8, eight or more high-strength spring groups D3 are uniformly distributed on the outer wall of the central shaft D4, the high-strength spring groups D3 are distributed in an equidistant circular array, a mounting plate D1 penetrates through the central shaft D4, five or more mounting plates D1 are arranged in an equidistant mode, each mounting plate D1 is connected with a high-strength spring group D3, one end of the high-strength spring assembly D3 is connected to a coupling ring D5, two coupling rings D5 are provided and are in clearance fit with the central shaft D4, one end of the connecting ring D5 far away from the high-strength spring group D3 is connected with the connecting plate D6 through a connecting rod D7, the connecting plate D6 is arranged in a circular structure, and hydraulic cylinders D8 are vertically connected to the centers of the surfaces, far away from the connecting rod D7, of the connecting plates D6;
the link D7 and the link D5 are coupled together such that the high-strength spring assembly D3 can be extended and contracted without being restricted by the central shaft D4 when the hydraulic cylinder D8 applies force to the link plate D6.
Referring to fig. 7, a chuck D11 is fixed to an outer wall of the mounting plate D1 at an equal position, and the chuck D11 is engaged with the hole opening cone D2.
Referring to fig. 8, the chuck D11 includes a disk body D11, a clamping group D12, a positioning bar D13, a movable opening D14, a sector block D15, an electromagnet block D16, and an insulating ring D17, an insulating ring D17 is fixed to the inner center of the disk body D11, an electromagnet block D16 connected to the disk body D11 is arranged in the insulating ring D17, the sector blocks D15 integrated with the disk body D11 are fixed to four equal positions of the disk body D11, a clamping group D12 and a movable opening D14 are arranged between two adjacent sector blocks D15, one end of the clamping group D12 is matched with the movable opening D14, the other end of the clamping group D17 is connected to the insulating ring D17, the movable opening D14 is arranged on the disk body D11, the disk body D11 is connected to a mounting disk body D11, the cavity D11 is matched with the open cone D2, and the positioning bar D13 is fixed to the outer wall equal positions of the disk body D11;
chuck D11 sets up with the combination of opening cave awl D2 for opening cave awl D2 and mounting disc D1 are removable assecmbly, can open the quantity installation of cave awl D2 as required to this adjusts the interval of alms bowl seedling and alms bowl seedling in the same row, can be adapted to the demand to different row spacing, and application scope is wide.
Referring to fig. 8, the clamping group D12 includes a clamping bead D121, an iron sheet D122, and a spring D123, the iron sheet D122 is embedded in a surface of the clamping bead D121 facing the insulating ring D17, one end of the spring D123 is connected to the clamping bead D121, the other end is connected to the insulating ring D17, and the clamping bead D121 is disposed between two adjacent positioning bars D13;
the iron sheet D122 and the electromagnet block D16 are combined in such a way that the electromagnet block D16 can generate magnetism after being electrified, so that based on the magnetic principle, magnetic attraction can be generated on the iron sheet D122, and pressure can be generated on the spring D123, so that the clamping ball D121 can be retracted into the disc body D11 and separated from the clamping hole D22;
the spring D123 is provided with an elastic force, and when the electromagnet block D16 is powered off, the magnetic force is not generated on the iron sheet D122, so that the spring D123 can be reset to generate a pushing force on the ball D121, and the ball D121 can pass through the position-locking hole D22 to be locked.
Referring to fig. 9, the hole opening cone D2 includes a positioning slot D21, a locking hole D22 and a cone D23, positioning slots D21 are formed on four sides of the cone D23, a locking hole D22 is formed between two adjacent positioning slots D21, the locking hole D22 is disposed in the cone D23 and can be locked with a locking bead D121, and the positioning slot D21 can be in clearance fit with a positioning strip D13;
constant head tank D21 sets up with the combination of location strip D13, and the installation of the awl D2 of being convenient for open the cave is installed and is installed with chuck D11, makes screens hole D22 corresponding with card pearl D121 simultaneously to be convenient for card pearl D121 accurately passes screens hole D22 and carries out the screens, improved the installation effectiveness greatly.
The working principle of the invention is as follows: the high-strength spring D3 is acted by the connecting action of the connecting ring D5, the connecting plate D6 and the connecting rod D7 through the telescopic action of the hydraulic cylinder D8, so that the high-strength spring D3 can be stretched, and the spring ring can stretch at equal intervals based on the stretching of the high-strength spring D32, so that the distance between the mounting disc D1 and the mounting disc D1 is changed, the transverse distance between the hole opening cone D2 and the hole opening cone D2 is adjusted, the requirements of different transverse distances between pot seedlings and the pot seedlings can be met, the field dividing device can be suitable for field division with different widths, and the application range is wide;
the chuck D11 and the hole opening cone D2 are combined, so that the hole opening cone D2 and the mounting disk D1 are detachably assembled, the number of the hole opening cones D2 can be mounted according to the requirement, the longitudinal distance between the pot seedlings and the pot seedlings in the same column can be adjusted, the device can adapt to the requirements of different column distances, the application range is wide, meanwhile, the hole opening cones D2 on the mounting disk D1 can be increased or decreased to meet the requirements of different transverse distances between the pot seedlings and the pot seedlings in the same width field division, the electromagnet block D16 is electrified, so that magnetic attraction can be generated on the iron sheet D122 based on the magnetic principle, the spring D123 is pressurized, the clamping ball D121 can be retracted into the disk body D11 to be separated from the clamping hole D2, the positioning groove D21 and the positioning strip D13 are combined, the hole opening cone D2 can be rapidly inserted on the clamping disk D11, meanwhile, the clamping hole D22 can correspond to the clamping ball D121, and the clamping hole D3535 can conveniently and accurately pass through the clamping hole D22, the installation effectiveness has been improved greatly, through cutting off the power supply to electromagnet piece D16 for electromagnet piece D16 cuts off the power supply and loses magnetism, thereby does not produce magnetic force to iron sheet D122, so spring D123 can reset and produce thrust to card pearl D121, makes card pearl D121 pass screens hole D22 and carry out the screens.
In summary, the technical progress obtained by the invention compared with the prior art is as follows:
(1) according to the invention, through the combined arrangement of the mounting disc, the hole opening cone, the high-strength spring group, the central shaft, the connecting ring, the connecting plate, the connecting rod, the hydraulic cylinder and other components, the high-strength spring group can be stretched through the hydraulic cylinder, and the connecting effect of the connecting ring, the connecting plate and the connecting rod acts on the high-strength spring group, so that the high-strength spring group can be stretched;
(II) the detachable installation is realized through the hole opening cone and the installation disc through the chuck, the chuck is arranged through the combination of the components such as the clamping group, the positioning strip, the movable opening, the fan-shaped block, the electromagnet block, the insulating ring and the like, the hole opening cone is arranged through the combination of the components such as the positioning groove, the clamping hole, the cone and the like, the number of the hole opening cones can be installed according to the requirement, so that the longitudinal distance between the pot seedlings and the pot seedlings in the same row can be adjusted, the requirements on different row distances can be met, the application range is wide, and the hole opening cone on the installation disc can be increased or reduced to meet the requirements on different transverse distances between the pot seedlings and the pot seedlings in the same width field division.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (7)

1. The utility model provides a novel transplanter of cave slot type crops alms bowl seedling, its structure includes transplanter organism (100), covering device (200), alms bowl seedling derive core dish (300), alms bowl seedling derive fill (400), open cave device (500), transplanter organism (100) is equipped with covering device (200), alms bowl seedling from the left side in proper order from the right side and derives core dish (300), open cave device (500) to the alms bowl seedling that fights (400) and communicate each other, its characterized in that:
the opening device (500) comprises a mounting disc (D1), an opening cone (D2), a high-strength spring group (D3), a central shaft (D4), a connecting ring (D5), a connecting plate (D6), a connecting rod (D7) and a hydraulic cylinder (D8), wherein the high-strength spring group (D3) is uniformly distributed outside the central shaft (D4), the mounting disc (D1) connected with the high-strength spring group (D3) penetrates through the central shaft (D4), the tail ends of the high-strength spring group (D3) are connected to the connecting ring (D5), the connecting ring (D5) is provided with two connecting rings and matched with the central shaft (D4), the connecting ring (D5) is connected with the connecting plate (D6) through the connecting rod (D7), and the hydraulic cylinder (D8) is connected to the connecting plate (D6).
2. The novel hole-groove type pot seedling transplanter for crops as claimed in claim 1, wherein: high strength spring group (D3) is including fixed mounting piece (D31), high strength spring (D32), installation slider (D33), high strength spring (D32) spring coil equipartition has fixed mounting piece (D31), installation slider (D33), installation slider (D33) and center pin (D4) sliding connection, fixed mounting piece (D31) and mounting disc (D1) rigid coupling, high strength spring (D32) are connected in go-between (D5).
3. The novel hole-groove type crop pot seedling transplanter according to claim 1 or 2, wherein: guide strips (D41) arranged in a cross structure are uniformly distributed outside the central shaft (D4), and installation sliding blocks (D33) are matched with the guide strips (D41).
4. The novel hole-groove type pot seedling transplanter for crops as claimed in claim 1, wherein: and a chuck (D11) clamped with the hole opening cone (D2) is fixed outside the mounting disc (D1).
5. The novel hole-groove type pot seedling transplanter for crops as claimed in claim 4, wherein: chuck (D11) including disk body (D11), screens group (D12), location strip (D13), activity mouth (D14), sector (D15), electromagnet block (D16), insulating ring (D17), disk body (D11) internal fixation has insulating ring (D17) with electromagnet block (D16), disk body (D11) still is equipped with crisscross sector (D15), screens group (D12) of laying, screens group (D12) one end and activity mouth (D14) cooperation, and the other end is connected with insulating ring (D17), activity mouth (D14) are established on disk body (D11), disk body (D11) are connected with mounting disc (D11), disk body (D11) and open cave awl (D2) cooperation, the outer inherent location strip (D13) of disk body (D11).
6. The novel hole-groove type pot seedling transplanter for crops as claimed in claim 5, wherein: the clamping group (D12) comprises a clamping bead (D121), an iron sheet (D122) and a spring (D123), the iron sheet (D122) is embedded in the clamping bead (D121), one end of the spring (D123) is connected with the clamping bead (D121), and the other end of the spring (D123) is connected with the insulating ring (D17).
7. The novel hole-groove type crop pot seedling transplanter according to claim 1 or 4, wherein: the opening cone (D2) comprises a positioning groove (D21), a clamping hole (D22) and a cone (D23), wherein the cone (D23) is provided with positioning grooves (D21) and clamping holes (D22) which are distributed in a staggered mode, the clamping holes (D22) can be clamped with clamping beads (D121), and the positioning grooves (D21) can be in clearance fit with positioning strips (D13).
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111480419A (en) * 2020-05-14 2020-08-04 农业农村部南京农业机械化研究所 Seed dropping device and method adaptable to different plug trays

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CN87213550U (en) * 1987-09-16 1988-07-20 张云鹏 Plant-space adjustable seeder not injuring seeds
CN2207049Y (en) * 1994-11-05 1995-09-13 谷宝洋 Comprehensive dibber cooperated with hand spiral plough
CN2419797Y (en) * 2000-04-29 2001-02-21 杜红旗 Pneumatic suction type multifunction seeder
KR100632430B1 (en) * 2005-07-08 2006-10-09 김재동 Garlic seedtime
CN201011762Y (en) * 2007-02-08 2008-01-30 冯康健 Semi-automatic drum-type transplanting machine
CN201278637Y (en) * 2008-10-08 2009-07-29 重庆北卡农业科技有限公司 Semi-automatic transplanter
CN202197531U (en) * 2011-06-11 2012-04-25 应华 Detached multi-functional sowing device with adjustable plant space and row space
CN203735032U (en) * 2014-01-09 2014-07-30 荣成市佳鑫农业机械有限公司 Peanut seeder capable of adjusting line spacing and seedling spacing
CN106034490A (en) * 2016-07-15 2016-10-26 陈金威 Red notoginseng seed sower
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* Cited by examiner, † Cited by third party
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CN111480419A (en) * 2020-05-14 2020-08-04 农业农村部南京农业机械化研究所 Seed dropping device and method adaptable to different plug trays
CN111480419B (en) * 2020-05-14 2021-03-30 农业农村部南京农业机械化研究所 Seed dropping device and method adaptable to different plug trays

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