CN212851760U - Parallel directional cultivation device for high-yield cultivation of corn - Google Patents

Parallel directional cultivation device for high-yield cultivation of corn Download PDF

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Publication number
CN212851760U
CN212851760U CN202021817928.6U CN202021817928U CN212851760U CN 212851760 U CN212851760 U CN 212851760U CN 202021817928 U CN202021817928 U CN 202021817928U CN 212851760 U CN212851760 U CN 212851760U
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cultivation
fixedly connected
corn
slider
sliding
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CN202021817928.6U
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钟德卫
陈乾昭
林辉云
李君洪
康祝科
黄正会
田晓曦
曾艳
王斌
黎静
王会平
王瑞
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Suijiang Agriculture Technology Promotion Center
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Suijiang Agriculture Technology Promotion Center
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Abstract

The utility model discloses a parallel directional cultivation device for maize high yield cultivation, including two bottom plates, a plurality of universal locking wheels of the equal fixedly connected with of lower extreme of two bottom plates, the upper end of two bottom plates all is equipped with the spout, equal sliding connection has the polylith assorted slider with it in two spouts, it sets up to equally divide other one-to-one between the polylith slider in two spouts, the same diaphragm of fixedly connected with between the slider of two correspondence settings, all be equipped with locking mechanism in two bottom plates, two locking mechanism equally divide the inner wall setting that does not slide and run through the homonymy spout and insert to establish and connect on the polylith slider lateral wall of homonymy, all be equipped with two stop gear on two bottom plates, stop gear runs through the threaded rod that the bottom plate set up including. The utility model discloses can not only carry out parallel directional cultivation to the maize effectively, can also be convenient for this device transport and fix.

Description

Parallel directional cultivation device for high-yield cultivation of corn
Technical Field
The utility model relates to an agricultural production technical field especially relates to a parallel directional cultivation device for maize cultivation of high yield.
Background
Corn is a common crop in life, when the corn is cultivated, in order to achieve a high yield effect, the spacing for cultivating the corn generally needs to be controlled, the proper spacing can effectively enable the corn to grow sturdily, in order to control the spacing for cultivating the corn, the spacing for cultivating the corn generally needs to be roughly measured and divided by using a corn high yield cultivation device, however, the general corn high yield cultivation device cannot effectively conduct directional cultivation on the corn, and the transportation and fixing of the general corn high yield cultivation device are difficult.
Most of corn high-yield cultivation devices used in the current market can not effectively carry out parallel and directional cultivation on corn, and are inconvenient for workers to transport and fix the corn.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving among the prior art maize high yield cultivation device and mostly can not carry out parallel orientation's cultivation to the maize effectively, and the staff of being not convenient for transports and fixed phenomenon to it, and the parallel orientation cultivation device who is used for maize high yield cultivation that proposes, it can not only carry out parallel orientation's cultivation to the maize effectively, can also be convenient for this device transport and fix.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a directional cultivation device of parallel for maize high yield cultivation, includes two bottom plates, two a plurality of universal locking wheels of the equal fixedly connected with of lower extreme of bottom plate, two the upper end of bottom plate all is equipped with the spout, two equal sliding connection has the polylith assorted slider with it in the spout, two divide equally between the polylith slider in the spout other one-to-one setting, two correspond the setting fixedly connected with is with a diaphragm, two between the slider all be equipped with locking mechanism in the bottom plate, two locking mechanism equally divide the inner wall setting that does not slide and run through the homonymy spout and insert to establish and connect on the polylith slider lateral wall of homonymy, two all be equipped with two stop gear on the bottom plate.
Preferably, stop gear includes that the screw thread runs through the threaded rod that the bottom plate set up, the lower extreme fixedly connected with stopper of threaded rod, the spacing inserted bar of lower extreme fixedly connected with of stopper, stop gear's setting is convenient for the utility model discloses fix.
Preferably, two the upper end of bottom plate and polylith the upper end of diaphragm all is equipped with the scale interval, and the setting of scale interval is convenient for the staff more directly perceivedly to adjust the parallel interval between the diaphragm.
Preferably, locking mechanism is including setting up the cavity in the bottom plate, sliding connection has assorted slide with it in the cavity, many bolts of fixedly connected with on the one end lateral wall of slide, many the slide is kept away from to the bolt one end all slides and runs through the spout inner wall setting of homonymy, is located wherein the one end of many bolts in the spout is equallyd divide and is do not inserted and establish on the lateral wall of homonymy polylith slider, rotate on the one end inner wall of cavity and be connected with the bolt, the one end lateral wall setting that runs through the cavity is rotated to the one end of bolt, is located the bolt screw thread in the cavity runs through the slide setting, and locking mechanism's setting is convenient for the staff and installs dismantlement to this device, and then the staff of being convenient for.
Preferably, the one end fixedly connected with first driving-disc of the bolt that is located outside the cavity, the setting of first driving-disc is convenient for the staff to drive the bolt.
Preferably, the upper end fixedly connected with second driving-disc of threaded rod, the setting of second driving-disc is convenient for the staff to drive the threaded rod.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a set up bottom plate, universal locking wheel, spout, slider, diaphragm, threaded rod, stopper and spacing inserted bar etc. can carry out parallel directional cultivation to the maize effectively, wherein the setting of scale interval, the staff of being convenient for adjusts the parallel interval between the diaphragm more directly perceivedly, and then the staff of being convenient for adjusts the parallel interval of maize cultivation to suitable value according to actual need.
2. The utility model discloses a set up bottom plate, universal locking wheel, spout, slider, diaphragm, threaded rod, stopper and spacing inserted bar etc. and this device of being convenient for transports and fixes, and wherein locking mechanism's setting, the staff of being convenient for installs this device and dismantles, and this device after the dismantlement, the staff of being convenient for transports and stores it, and stop gear's setting is convenient for in addition the utility model discloses fix.
Drawings
FIG. 1 is a general top view of a parallel directional cultivation device for high-yield cultivation of corn according to the present invention;
FIG. 2 is a partial top view of a parallel directional cultivation device for high-yield cultivation of corn according to the present invention;
fig. 3 is a side view of the parallel directional cultivation device for high-yield cultivation of corn according to the present invention.
In the figure: 1 bottom plate, 2 universal locking wheel, 3 spouts, 4 sliders, 5 diaphragm, 6 threaded rods, 7 stoppers, 8 spacing inserted bars, 9 scale interval, 10 cavities, 11 slides, 12 bolts, 13 bolts, 14 first driving-disc, 15 second driving-disc.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, a parallel directional cultivation device for maize high yield cultivation, including two bottom plates 1, a plurality of universal locking wheels 2 of the equal fixedly connected with of lower extreme of two bottom plates 1, the upper end of two bottom plates 1 all is equipped with spout 3, equal sliding connection has polylith assorted slider 4 with it in two spout 3, it sets up to divide equally respectively one-to-one between the polylith slider 4 in two spout 3, the same diaphragm 5 of fixedly connected with between the slider 4 of two correspondence settings, all be equipped with locking mechanism in two bottom plates 1, two locking mechanism divide equally and do not slide the inner wall setting that runs through homonymy spout 3 and insert to establish and connect on the polylith slider 4 lateral wall of homonymy, all be equipped with two stop gear on two bottom plates 1.
The limiting mechanism comprises a threaded rod 6 which is arranged by penetrating through the bottom plate 1 through threads, the lower end of the threaded rod 6 is fixedly connected with a limiting block 7, the lower end of the limiting block 7 is fixedly connected with a limiting inserted rod 8, the limiting mechanism is arranged to facilitate the fixing of the utility model, the upper ends of the two bottom plates 1 and the upper ends of the plurality of transverse plates 5 are both provided with scale values 9, the scale values 9 are arranged to facilitate the adjustment of the parallel distance between the transverse plates 5 by workers more intuitively, the locking mechanism comprises a cavity 10 arranged in the bottom plate 1, a sliding plate 11 matched with the cavity 10 is connected in a sliding way, the side wall of one end of the sliding plate 11 is fixedly connected with a plurality of inserted pins 12, one ends of the inserted pins 12 far away from the sliding plate 11 are arranged by penetrating through the inner wall of the sliding groove 3 at the same side, one ends of the, rotate on the one end inner wall of cavity 10 and be connected with bolt 13, the one end lateral wall setting that runs through cavity 10 is rotated to the one end of bolt 13, bolt 13 screw thread that is located cavity 10 runs through slide 11 and sets up, locking mechanism's setting, the staff of being convenient for installs and dismantles this device, and then the staff of being convenient for transports and stores this device, be located the first driving-disc 14 of one end fixedly connected with of the outer bolt 13 of cavity 10, the setting of first driving-disc 14, the staff of being convenient for drives bolt 13, the upper end fixedly connected with second driving-disc 15 of threaded rod 6, the setting of second driving-disc 15, the staff of being convenient for drives threaded rod 6.
It should be noted that, the side walls of one end of each of the plurality of sliding blocks 4 are provided with insertion holes (not shown) matched with the pins 12, and the pins 12 are inserted into the insertion holes.
The working principle is as follows: a worker can move the device to a corn cultivation land through the universal locking wheels 2, as shown in figure 1, the worker can divide the corn cultivation land through the transverse plates 5 which are arranged in parallel, the distance between every two adjacent transverse plates 5 can be the line distance during corn cultivation or the column distance during corn cultivation, the worker can adjust the distance between every two adjacent transverse plates 5 according to actual needs, and further achieve the adjusting effect of the line distance and the column distance during corn cultivation, as shown in figure 2, the worker can manually rotate one first driving disc 14 to further enable the corresponding bolt 13 to rotate, the bolt 13 rotates to enable the corresponding sliding plate 11 to horizontally move under the limiting effect of the cavity 10, the sliding plate 11 horizontally moves while enabling the corresponding bolts 12 to horizontally move synchronously, and one first driving disc 14 is rotated until the corresponding bolts 12 are separated from the corresponding jacks, similarly, the other first driving disk 14 is rotated until the plurality of pins 12 on the other side are separated from the corresponding insertion holes, then the locking state of the plurality of transverse plates 5 is released, the worker can adjust the distance between two adjacent transverse plates 5 through the scale value 9 until the distance between two adjacent transverse plates 5 is adjusted to a proper value, after the adjustment is completed, the insertion holes on the corresponding sliding blocks 4 are aligned with the pins 12 at the nearest positions, after the positions of the plurality of sliding blocks 4 are all adjusted, the worker can manually rotate the two first driving disks 14 in sequence until the corresponding pins 12 are inserted into the corresponding insertion holes, so that the adjusted transverse plates 5 are locked, then the worker can use the distance between the adjacent transverse plates 5 to divide the corn field, it should be noted that the process of dividing the line distance and the column distance of the corn field by using the transverse plates 5 is the prior art, and is not repeated herein, when needs are fixed in a certain department of soil with this device, remove this device to suitable department, then in proper order a plurality of second driving-discs 15 of manual rotation, second driving-disc 15 rotates and makes threaded rod 6 rotate and upwards or move down, thereby make spacing inserted bar 8 rotate and upwards or move down, it can fix this device to rotate a plurality of second driving-discs 15 until many spacing inserted bar 8 all insert locate in the soil, after this device finishes using, the same reason, the rotatable two first driving-discs 14 of staff all remove until the locking state of polylith slider 4, all move up the slider 4 of polylith diaphragm 5 below until shifting out corresponding spout 3 after that, thereby accomplish the dismantlement work to this device, this device after the dismantlement is convenient for the staff to transport it.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A parallel directional cultivation device for high-yield cultivation of corn, which comprises two bottom plates (1), its characterized in that, two the equal a plurality of universal locking wheel of fixedly connected with (2), two of lower extreme of bottom plate (1) the upper end of bottom plate (1) all is equipped with spout (3), two equal sliding connection has polylith assorted slider (4) with it in spout (3), two divide equally between polylith slider (4) in spout (3) other one-to-one setting, two correspond the setting fixedly connected with is with one diaphragm (5), two between slider (4) all be equipped with locking mechanism in bottom plate (1), two locking mechanism equally divide the inner wall setting that does not slide through homonymy spout (3) and insert and establish on polylith slider (4) lateral wall of connecting in the homonymy, two all be equipped with two stop gear on bottom plate (1).
2. The parallel directional cultivation device for high-yield cultivation of corn according to claim 1, characterized in that the limiting mechanism comprises a threaded rod (6) which is threaded through the bottom plate (1), the lower end of the threaded rod (6) is fixedly connected with a limiting block (7), and the lower end of the limiting block (7) is fixedly connected with a limiting inserted rod (8).
3. The parallel directional cultivation device for high yield cultivation of corn as claimed in claim 1, wherein the upper ends of two bottom plates (1) and the upper ends of the transverse plates (5) are provided with scale values (9).
4. The parallel directional cultivation device for high-yield cultivation of corn according to claim 1, characterized in that the locking mechanism comprises a chamber (10) arranged in the bottom plate (1), the sliding plate (11) matched with the cavity (10) is connected in the sliding way, the side wall of one end of the sliding plate (11) is fixedly connected with a plurality of bolts (12), one ends of the bolts (12) far away from the sliding plate (11) are arranged by sliding through the inner wall of the sliding groove (3) on the same side, one ends of the bolts (12) in the sliding groove (3) are respectively inserted and connected on the side walls of the plurality of sliding blocks (4) on the same side, the improved vacuum pump is characterized in that a bolt (13) is rotatably connected to the inner wall of one end of the chamber (10), one end of the bolt (13) is rotatably arranged on the side wall of one end of the chamber (10), and the bolt (13) in the chamber (10) is arranged in a manner that a sliding plate (11) is arranged in a threaded manner.
5. A parallel orientation cultivation device for high yield cultivation of corn as claimed in claim 4, characterized in that a first driving disc (14) is fixedly connected to one end of the bolt (13) located outside the chamber (10).
6. The parallel directional cultivation device for high-yield cultivation of corn as claimed in claim 2, characterized in that the upper end of the threaded rod (6) is fixedly connected with a second driving disc (15).
CN202021817928.6U 2020-08-27 2020-08-27 Parallel directional cultivation device for high-yield cultivation of corn Active CN212851760U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021817928.6U CN212851760U (en) 2020-08-27 2020-08-27 Parallel directional cultivation device for high-yield cultivation of corn

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021817928.6U CN212851760U (en) 2020-08-27 2020-08-27 Parallel directional cultivation device for high-yield cultivation of corn

Publications (1)

Publication Number Publication Date
CN212851760U true CN212851760U (en) 2021-04-02

Family

ID=75190513

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021817928.6U Active CN212851760U (en) 2020-08-27 2020-08-27 Parallel directional cultivation device for high-yield cultivation of corn

Country Status (1)

Country Link
CN (1) CN212851760U (en)

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