CN220776503U - Triangular field planting traction pointing device - Google Patents
Triangular field planting traction pointing device Download PDFInfo
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- CN220776503U CN220776503U CN202322631236.2U CN202322631236U CN220776503U CN 220776503 U CN220776503 U CN 220776503U CN 202322631236 U CN202322631236 U CN 202322631236U CN 220776503 U CN220776503 U CN 220776503U
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- coiling
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- 239000002689 soil Substances 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
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- 238000005516 engineering process Methods 0.000 description 1
- 230000003203 everyday effect Effects 0.000 description 1
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Abstract
The utility model relates to a triangular field planting traction pointing device, and belongs to the technical field of crop planting. The triangular field planting traction fixed point device comprises a coiling wire telescoping device (1), a traction telescoping device (2) and a traction wire (3); the wire coiling telescopic device (1) and the traction telescopic device (2) are symmetrically provided with positioning inserting rods (4), and the traction wire (3) is connected between the wire coiling telescopic device (1) and the traction telescopic device (2). According to the utility model, the wire coiling telescopic device and the traction telescopic device are adopted to drag the traction wire, multiple rows of fixed points can be carried out by one-time stretching, the working efficiency of the traction fixed points is improved, the manpower and time are saved, the wire coiling driving mechanism enables the wire coiling to synchronously rotate, pay-off and take-up, the work is more convenient, and the wire coiling telescopic rod and the traction telescopic rod adopt telescopic rod-shaped structures, so that the wire coiling telescopic rod and the traction telescopic rod can be more conveniently taken in.
Description
Technical Field
The utility model belongs to the technical field of crop planting, and particularly relates to a triangular field planting traction fixed point device.
Background
The existing method for planting the crop by triangular field planting adopts a rope to draw wires and fix points, only one line can be fixed at a time, and two persons can fix one mu of land at most every day, so that a great deal of manpower and time are wasted.
Therefore, it is necessary to provide a triangle field planting traction pointing device, which improves the working efficiency of traction pointing and saves manpower and time.
Disclosure of utility model
In order to overcome the problems in the background technology, the utility model provides the triangular fixed-planting traction fixed-point device, which improves the working efficiency of traction fixed-point and saves manpower and time.
In order to achieve the above purpose, the utility model is realized by the following technical scheme:
The utility model provides a triangular field planting traction fixed point device which comprises a coiling wire telescoping device 1, a traction telescoping device 2 and a traction wire 3; the wire coiling telescopic device 1 and the traction telescopic device 2 are symmetrically provided with positioning inserting rods 4, and the traction wire 3 is connected between the wire coiling telescopic device 1 and the traction telescopic device 2.
The wire coiling telescopic device 1 comprises a wire coiling telescopic rod 11, a wire coil 12 and a wire coil driving mechanism 13, wherein the wire coiling telescopic rod 11 is of a telescopic rod-shaped structure, the wire coil 12 is uniformly arranged on the wire coiling telescopic rod 11 in a rotating mode, one end of a traction wire 3 is fixed in a winding groove of the wire coil 12, the other end of the traction wire 3 is connected with the traction telescopic device 2, and the wire coil 12 is provided with the wire coil driving mechanism 13 used for driving the wire coil to rotate and take up and pay off.
The traction telescopic device 2 comprises a traction telescopic rod 21, the traction telescopic rod 21 is of a telescopic rod-shaped structure, a traction wire fixing buckle 22 corresponding to the wire coil 12 is arranged on the traction telescopic rod 21, and the traction wire 3 is fixed on the traction telescopic rod 21 through the fixing buckle 22.
Preferably, the bottom end of the positioning inserted link 4 is in a conical structure.
Preferably, the wire coil driving mechanism 13 includes a driving gear 131, a rotating shaft 132, a rotating disc 133, a rotating handle 134 and a positioning disc 135, one side of the wire coil 12 is of a gear structure, the driving gear 131 is mounted on the rotating shaft 132 and meshed with the gear structure, the rotating shaft 132 is of a telescopic rod structure matched with the wire coil telescopic rod 11, the rotating disc 133 is mounted at one end of the rotating shaft 132, the rotating handle 134 is arranged at the outer side of the rotating disc 133, a chute is arranged at one end of the wire coil telescopic rod 11 corresponding to the rotating disc 133, the positioning disc 135 is sleeved on the wire coil telescopic rod 11 and is in sliding connection with the chute in a matched manner, a positioning hole 136 is annularly arranged on the positioning disc 135, and a positioning pin 137 matched with the positioning hole 136 is arranged at the inner side of the rotating disc 133.
Preferably, both ends of the wire coiling telescopic rod 11 and the traction telescopic rod 21 are provided with end handles 5 with anti-skid patterns.
The utility model has the beneficial effects that:
according to the utility model, the wire coiling telescopic device and the traction telescopic device are adopted to drag the traction wire, multiple rows of fixed points can be carried out by one-time stretching, the working efficiency of the traction fixed points is improved, the manpower and time are saved, the wire coiling driving mechanism enables the wire coiling to synchronously rotate, pay-off and take-up, the work is more convenient, and the wire coiling telescopic rod and the traction telescopic rod adopt telescopic rod-shaped structures, so that the wire coiling telescopic rod and the traction telescopic rod can be more conveniently taken in.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of the wire coiling mechanism of the present utility model;
FIG. 3 is a schematic view of the traction telescoping device of the present utility model;
FIG. 4 is a schematic view of the structure of the puck of the present utility model;
Fig. 5 is an enlarged view of a portion a in fig. 2.
In the figure, a 1-wire coiling expansion device, a 2-traction expansion device, a 3-traction wire, a 4-positioning inserting rod, a 5-end handle, an 11-wire coiling expansion rod, a 12-wire coiling, a 13-wire coiling driving mechanism, a 131-driving gear, a 132-rotating shaft, a 133-rotating disc, a 134-rotating handle, a 135-positioning disc, a 136-positioning hole, a 137-positioning pin, a 21-traction expansion rod and a 22-traction wire fixing buckle.
Detailed Description
In order to make the objects, technical solutions and advantageous effects of the present utility model more apparent, preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings, so as to facilitate understanding of the skilled person.
As shown in fig. 1-5, the triangular planting traction pointing device comprises a coiling wire telescoping device 1, a traction telescoping device 2 and a traction wire 3; the wire coiling telescopic device 1 and the traction telescopic device 2 are symmetrically provided with positioning inserting rods 4, a traction wire 3 is connected between the wire coiling telescopic device 1 and the traction telescopic device 2, the wire coiling telescopic device 1 and the traction telescopic device 2 are inserted into soil for positioning through the positioning inserting rods 4, the traction wire 3 is wound on the wire coiling telescopic device 1, one end of the traction wire is fixed on the traction telescopic device 2, and the traction wire 3 is driven to stretch for fixing points by pulling the traction telescopic device 2.
The wire coiling telescopic device 1 comprises a wire coiling telescopic rod 11, a wire coil 12 and a wire coil driving mechanism 13, wherein the wire coiling telescopic rod 11 is of a telescopic rod-shaped structure, the wire coil 12 is uniformly arranged on the wire coiling telescopic rod 11 in a rotating mode, one end of a traction wire 3 is fixed in a winding groove of the wire coil 12, the other end of the traction wire is connected with the traction telescopic device 2, the wire coil 12 is provided with the wire coil driving mechanism 13 for driving the wire coil to rotate and wind up and pay off, the wire coil 12 is rotated through the wire coil driving mechanism 13, and the wire coil 12 drives the traction wire 3 to wind up or pay off, or the traction telescopic device 2 can be pulled to pay off.
The traction telescopic device 2 comprises a traction telescopic rod 21, the traction telescopic rod 21 is of a telescopic rod-shaped structure, traction wire fixing buckles 22 corresponding to the wire coil 12 are arranged on the traction telescopic rod 21, the traction wire 3 is fixed on the traction telescopic rod 21 through the fixing buckles 22, the wire coiling telescopic rod 11 and the traction telescopic rod 21 adopt telescopic rod-shaped structures, storage can be more conveniently achieved, multiple groups of traction wires 3 are arranged between the wire coiling telescopic device 1 and the traction telescopic device 2, nest spacing positioning can be carried out on multiple rows through the multiple groups of traction wires 3 at one time, and the efficiency of triangular field planting traction fixed points is greatly improved.
The bottom end of the positioning inserted rod 4 is of a conical structure, and the positioning inserted rod 4 can be more convenient and labor-saving when inserted into soil.
The wire coil driving mechanism 13 comprises a driving gear 131, a rotating shaft 132, a rotating disc 133, a rotating handle 134 and a positioning disc 135, one side of the wire coil 12 is of a gear structure, the driving gear 131 is arranged on the rotating shaft 132 and meshed with the gear structure, the rotating shaft 132 is of a telescopic rod structure matched with the wire coil telescopic rod 11, the rotating disc 133 is arranged at one end of the rotating shaft 132, the rotating handle 134 is arranged on the outer side of the rotating disc 133, a chute is arranged at one end of the wire coil telescopic rod 11 corresponding to the rotating disc 133, the positioning disc 135 is sleeved on the wire coil telescopic rod 11 and is in matched sliding connection with the chute, a positioning hole 136 is annularly arranged on the positioning disc 135, and a positioning pin 137 matched with the positioning hole 136 is arranged on the inner side of the rotating disc 133.
When the wire winding telescopic rod 11 stretches out and draws back, the rotating shaft 132 can stretch out and draw back in cooperation with the movement of the wire winding telescopic rod, the rotating disc 133 is rotated through the rotating handle 134 to drive the rotating shaft 132 to rotate, the rotating shaft 132 drives the driving gear 131 to rotate, the driving gear 131 is meshed with a gear structure on one side of the wire winding 12, the wire winding 12 is driven to rotate for winding up or paying off, after the length of the traction wire 3 is confirmed, the positioning disc 135 can be slid, the positioning pin 137 is inserted into the positioning hole 136, the rotation of the rotating disc 133 is limited, namely the rotation of the wire winding 12 is limited, and the length of the traction wire 3 is fixed.
The end handles 5 with anti-slip patterns are arranged at the two ends of the wire coiling telescopic rod 11 and the traction telescopic rod 21, and the wire coiling telescopic rod 11 and the traction telescopic rod 21 are adjusted to stretch or move, so that the end handles 5 can be conveniently held for operation, and the hand holding sliding can be prevented.
According to the utility model, the wire coiling telescopic device 1 and the traction telescopic device 2 are adopted to carry out traction on the traction wire 3, multiple rows of fixed points can be carried out by one-time stretching, the working efficiency of the traction fixed points is improved, the manpower and time are saved, the wire coiling and paying-off and wire coiling are synchronously carried out by the wire coiling and driving mechanism 13, the work is more convenient, and the wire coiling telescopic rod 11 and the traction telescopic rod 21 adopt telescopic rod-shaped structures, so that the wire coiling and wire coiling device can be more conveniently stored.
Finally, it is noted that the above-mentioned preferred embodiments illustrate rather than limit the utility model, and that, although the utility model has been described in detail with reference to the above-mentioned preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the utility model as defined by the appended claims.
Claims (4)
1. A triangle field planting pulls fixed point device which characterized in that: the triangular field planting traction fixed point device comprises a coiling wire telescoping device (1), a traction telescoping device (2) and a traction wire (3); positioning inserting rods (4) are symmetrically arranged on the wire coiling telescopic device (1) and the traction telescopic device (2), and the traction wire (3) is connected between the wire coiling telescopic device (1) and the traction telescopic device (2);
The wire coiling telescopic device (1) comprises a wire coiling telescopic rod (11), a wire coil (12) and a wire coil driving mechanism (13), the wire coiling telescopic rod (11) is of a telescopic rod-shaped structure, the wire coil (12) is uniformly and rotatably arranged on the wire coiling telescopic rod (11), one end of a traction wire (3) is fixed in a wire coiling groove of the wire coiling disc (12), the other end of the traction wire is connected with the traction telescopic device (2), and the wire coil (12) is provided with the wire coil driving mechanism (13) for driving the wire coil to rotate, wind and pay;
The traction telescopic device (2) comprises a traction telescopic rod (21), the traction telescopic rod (21) is of a telescopic rod-shaped structure, traction wire fixing buckles (22) corresponding to the wire coil (12) are arranged on the traction telescopic rod (21), and the traction wires (3) are fixed on the traction telescopic rod (21) through the fixing buckles (22).
2. A triangular fixation traction pointing device according to claim 1, wherein: the bottom end of the positioning inserted rod (4) is of a conical structure.
3. A triangular fixation traction pointing device according to claim 1 or 2, characterized in that: wire coil actuating mechanism (13) include drive gear (131), pivot (132), carousel (133), rotation handle (134), positioning disk (135), one side of wire coil (12) is gear structure, drive gear (131) install on pivot (132) and with gear structure meshing, pivot (132) be with the telescopic link structure of a dish line telescopic link (11) matched with, carousel (133) are installed to one end of pivot (132), the outside of carousel (133) is provided with rotation handle (134), the one end that dish line telescopic link (11) corresponds carousel (133) is provided with the spout, positioning disk (135) cover is established on dish line telescopic link (11) and is cooperated sliding connection with the spout, annular on positioning disk (135) is arranged locating hole (136), the inboard of carousel (133) is provided with locating pin (137) with locating hole (136) matching.
4. A triangular fixation traction pointing device according to claim 1 or 2, characterized in that: the two ends of the coiling telescopic rod (11) and the traction telescopic rod (21) are respectively provided with an end handle (5) with anti-skid patterns.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322631236.2U CN220776503U (en) | 2023-09-27 | 2023-09-27 | Triangular field planting traction pointing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322631236.2U CN220776503U (en) | 2023-09-27 | 2023-09-27 | Triangular field planting traction pointing device |
Publications (1)
Publication Number | Publication Date |
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CN220776503U true CN220776503U (en) | 2024-04-16 |
Family
ID=90657989
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202322631236.2U Active CN220776503U (en) | 2023-09-27 | 2023-09-27 | Triangular field planting traction pointing device |
Country Status (1)
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CN (1) | CN220776503U (en) |
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2023
- 2023-09-27 CN CN202322631236.2U patent/CN220776503U/en active Active
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