CN218499643U - Seedling transplanting assistor - Google Patents

Seedling transplanting assistor Download PDF

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Publication number
CN218499643U
CN218499643U CN202222492825.2U CN202222492825U CN218499643U CN 218499643 U CN218499643 U CN 218499643U CN 202222492825 U CN202222492825 U CN 202222492825U CN 218499643 U CN218499643 U CN 218499643U
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CN
China
Prior art keywords
movable
seedling
sliding block
slide rail
driving
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CN202222492825.2U
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Chinese (zh)
Inventor
何东权
刘向黎
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Chongqing Chongde Metals Co ltd
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Chongqing Chongde Metals Co ltd
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Priority to CN202222492825.2U priority Critical patent/CN218499643U/en
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Abstract

The utility model relates to a seedling auxiliary assembly technical field, concretely relates to seedling transplanting assistor, including seedling righting equipment, still including removing adjusting device, remove adjusting device and include support frame, slide rail, removal drive assembly and electric telescopic handle, slide rail and support frame fixed connection to be located the upper end of support frame, remove drive assembly and install on the slide rail, electric telescopic handle passes through with the slide rail and removes drive assembly sliding connection, and is located the lower extreme of slide rail, obtains the effect that conveniently removes seedling righting equipment.

Description

Seedling transplanting assistor
Technical Field
The utility model relates to a transplant rice seedlings auxiliary assembly technical field especially relates to a transplant rice seedlings assistor.
Background
Compared with the traditional manual rice transplanting, the time-consuming and labor-intensive rice transplanting machine has the advantages that the rice transplanting efficiency is improved due to the use of the rice transplanting machine, and the manual labor is reduced. Even if a high-efficiency machine such as a rice transplanter is used, the seedlings may be inclined due to various factors. The slope can make the output and the quality of crop reduce, increases the degree of difficulty of results, and the seedling of slope is because illumination is insufficient in the growth of later stage, the insecure etc. of root system for its probability of infecting other diseases will promote greatly.
Currently, CN110558009B discloses an auxiliary device for rice transplanting, which comprises: the platform, be equipped with detection group and dial the group along platform length direction in proper order on the nearly ground side of platform, it includes a davit to dial the group, a carousel is established to the bottom cover of davit, be provided with at least one soil disturbance ware on the carousel, every soil disturbance ware includes two kinds of function poles, be respectively for loosening the soil pole and tight soil pole, the function pole is the hollow tube, the hollow tube inner chamber of the pole that loosens the soil communicates to first bin through the pump machine, the hollow tube inner chamber of tight soil pole communicates to the second bin through the pump machine, the function pole is extending structure, accomplish the disturbance to near soil of seedling root through the density elasticity degree of adjusting the soil around the seedling, reduce direct contact and the damage to seedling root system, right the seedling, help its normal growth.
However, the conventional auxiliary device for transplanting rice seedlings is used for righting the rice seedlings after being transplanted, people need to walk in the field to manually move the auxiliary device to the inclined rice seedlings, and the transplanted rice seedlings can incline in the moving process.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a transplant rice seedlings assistor has solved current auxiliary device of transplanting rice seedlings and has been used for the seedling to transplant the work of rightting after good, needs the people to walk about in the field with the seedling department of auxiliary device manual movement to slope, probably leads to the problem of the seedling slope of inserting at the removal in-process.
In order to realize the purpose, the utility model provides a seedling transplanting auxiliary device, which comprises a seedling righting device and a movable adjusting device;
the movable adjusting device comprises a support frame, a slide rail, a movable driving assembly and an electric telescopic rod, wherein the slide rail is fixedly connected with the support frame and is positioned at the upper end of the support frame, the movable driving assembly is arranged on the slide rail, and the electric telescopic rod is connected with the slide rail in a sliding manner through the movable driving assembly and is positioned at the lower end of the slide rail.
The movable driving assembly comprises a movable sliding block and a driving component, and the movable sliding block is connected with the sliding rail in a sliding mode through the driving component and is fixedly connected with the electric telescopic rod; the driving component is installed on the sliding rail, is connected with the movable sliding block and drives the movable sliding block to move.
The driving component comprises a driving screw and a driving motor, the driving screw is rotatably connected with the slide rail through a bearing, extends into the slide rail, penetrates through the movable sliding block and is in threaded connection with the movable sliding block; the rotation output end of the driving motor is fixedly connected with the driving screw rod, and the driving motor is located at one end, extending out of the sliding rail, of the driving screw rod.
The mobile driving assembly further comprises a limiting sliding block, and the limiting sliding block is fixedly connected with the mobile sliding block and is positioned on one side of the mobile sliding block; the sliding rail is provided with a limiting sliding groove, and the limiting sliding groove is arranged on one side, close to the limiting sliding block, of the sliding rail and is matched with the limiting sliding block.
The movable adjusting device further comprises telescopic supporting legs, and the telescopic supporting legs are fixedly connected with the supporting frame and located at the bottom of the supporting frame.
The mobile adjusting device further comprises a friction pad, and the friction pad is fixedly connected with the telescopic supporting legs and is positioned at the bottoms of the telescopic supporting legs.
The utility model discloses a transplant rice seedlings assistor, through remove the drive subassembly drive electric telescopic handle removes adjustably the horizontal direction position of equipment is right to the seedling, then passes through electric telescopic handle's flexible operation will the equipment is right to the seedling descends to being close to the seedling, treats the back is right to the seedling that the equipment was right to the seedling, through electric telescopic handle will the equipment is right to the seedling rises, through remove the drive subassembly with the equipment is right to the seedling remove to the upper end of the next seedling of inserting with the level to realize conveniently removing the equipment is right to the seedling.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic view of the overall structure of the seedling planting assist device according to the first embodiment of the present invention.
Fig. 2 is a schematic top connection view of the seedling planting aid according to the first embodiment of the present invention.
Fig. 3 is a schematic view of the overall structure of the seedling planting assist device according to the second embodiment of the present invention.
In the figure: 101-seedling righting equipment, 102-supporting frame, 103-sliding rail, 104-electric telescopic rod, 105-moving sliding block, 106-driving screw rod, 107-driving motor, 108-limiting sliding block, 109-limiting sliding groove, 210-telescopic supporting leg and 211-friction pad.
Detailed Description
The embodiments of the invention will be described in detail hereinafter, examples of which are illustrated in the accompanying drawings, and the embodiments described hereinafter with reference to the drawings are exemplary and intended to be illustrative of the invention and should not be construed as limiting the invention.
The first embodiment:
referring to fig. 1 and 2, fig. 1 is a schematic view of an overall structure of a first embodiment of the auxiliary device for rice seedling transplantation, and fig. 2 is a schematic view of a top connection of the first embodiment of the auxiliary device for rice seedling transplantation.
The utility model relates to a transplant rice seedlings assistor: the seedling straightening device comprises a seedling straightening device 101 and a moving adjusting device, wherein the moving adjusting device comprises a support frame 102, a slide rail 103, a moving driving assembly and an electric telescopic rod 104, the moving driving assembly comprises a moving sliding block 105 and a driving member, the driving member comprises a driving screw 106 and a driving motor 107, the moving driving assembly further comprises a limiting sliding block 108, and the slide rail 103 is provided with a limiting sliding groove 109. It is inconvenient to have solved current auxiliary device that transplants rice seedlings through aforementioned scheme and remove, leads to the problem of the seedling slope of transplanting rice seedlings, and it can be understood that aforementioned scheme can right the auxiliary device of work conveniently to the seedling and remove, and does not influence work under the condition of other seedlings.
In an embodiment, the seedling straightening device 101 comprises a detection group and a straightening group, the straightening group comprises a suspension arm, a rotary table is sleeved at the bottom of the suspension arm, at least one soil disturbance device is arranged on the rotary table, each soil disturbance device comprises two functional rods, namely a soil loosening rod and a soil tightening rod, the functional rods are hollow tubes, hollow tube cavities of the soil loosening rods are communicated to a first bin through a pump, hollow tube cavities of the soil tightening rods are communicated to a second bin through the pump, the functional rods are of a telescopic structure, seedlings incline towards which direction, the rotary table rotates under the control of a processor controller after images are collected, the straight line of the seedlings and the straight line of one soil disturbance device coincide when the seedlings are overlooked, the soil tightening functional rods in a contraction state are placed by the two soil disturbance devices on two sides of the straight line at the moment, the soil loosening functional rods in the contraction state are placed by the other soil disturbance device, the three functional rods placed in the soil, the seedling root region is entered, a cover plate is opened at the moment, the functional rods can start to convey materials, the soil tightening rod is placed in the root region, the soil tightening rod, the seedling root region, the seedling is input water, and the seedling is straightened at the seedling root region.
The sliding rail 103 is fixedly connected with the supporting frame 102 and located at the upper end of the supporting frame 102, the mobile driving component is mounted on the sliding rail 103, and the electric telescopic rod 104 is connected with the sliding rail 103 in a sliding manner through the mobile driving component and located at the lower end of the sliding rail 103. The support frame 102 is in a T shape, an installation groove is arranged at the upper end of a vertical rod of the support frame 102, the installation groove is matched with the slide rail 103, is fixedly connected with the slide rail 103, and provides installation conditions with the driving motor 107 of the mobile driving component, the slide rail 103 is fixedly connected with the support frame 102 through an end part, a chute opening of the slide rail 103 faces downwards, a through hole is arranged at one end, close to the support frame 102, of the slide rail 103, and is used for enabling the driving screw 106 of the mobile driving component to extend into the slide rail 103 and to be rotatably connected through a bearing, a groove matched with a bearing is arranged at one end, far away from the support frame 102, of the slide rail 103, the other end of the driving screw 106 is used for rotatably connecting the slide rail 103, the mobile driving component is arranged on the slide rail 103 and provides conditions for slidably connecting the electric telescopic rod 104 with the slide rail 103, and drives the electric telescopic rod 104 to move back and forth, the driving telescopic rod is composed of a driving cylinder and telescopic rod, the driving cylinder is fixedly connected with the moving slider 105 of the mobile driving cylinder and is positioned at the lower end of the slide rail 103, one end of the driving cylinder is fixedly connected with the seedling-supporting device, and the seedling-supporting device 101, and the seedling-supporting device is connected with the seedling-supporting device, and the seedling-supporting device; therefore, the electric telescopic rod 104 is driven by the mobile driving component to move to adjust the horizontal position of the seedling righting device 101, then the seedling righting device 101 is descended to be close to a seedling through the telescopic operation of the electric telescopic rod 104, after the inclined seedling is righted by the seedling righting device 101, the seedling righting device 101 is ascended through the electric telescopic rod 104, the seedling righting device 101 is moved to the upper end of the next seedling which is inserted in the same horizontal direction through the mobile driving component, and the seedling righting device 101 is conveniently moved through the mobile adjusting device.
Secondly, the movable sliding block 105 is connected with the sliding rail 103 in a sliding manner through the driving component and is fixedly connected with the electric telescopic rod 104; the driving member is mounted on the slide rail 103, connected to the movable slider 105, and drives the movable slider 105 to move. The part of the movable sliding block 105 extends into a sliding groove of the sliding rail 103 and is in sliding connection with the sliding rail 103 through the driving component, a threaded through hole is formed in one end, extending into the sliding rail 103, of the movable sliding block 105, threads on the inner side of the threaded through hole are matched with threads on the driving screw 106 of the driving component, so that the movable sliding block 105 is in threaded connection with the driving component, the lower end of the movable sliding block 105 is fixedly connected with the electric telescopic rod 104, a connection condition is provided for the electric telescopic rod 104 and the movable driving component, and the driving component is installed on the sliding rail 103 and drives the movable sliding block 105 to move on the sliding rail 103.
Meanwhile, the driving screw 106 is rotatably connected with the slide rail 103 through a bearing, extends into the slide rail 103, penetrates through the movable slider 105, and is in threaded connection with the movable slider 105; the rotation output end of the driving motor 107 is fixedly connected with the driving screw 106, and the driving motor 107 is located at one end of the driving screw 106 extending out of the slide rail 103. The driving screw 106 with the both ends of slide rail 103 are connected through the bearing respectively, realize driving screw 106 with the rotation of slide rail 103 is connected, driving screw 106 stretches out slide rail 103 is close to the one end of bracing piece with driving motor 107's rotation output end fixed connection, just driving screw 106 runs through the screw thread through-hole of removal slider 105, the screw thread in the driving screw 106 outside and the screw thread cooperation of screw thread through-hole inboard, driving motor 107's mounting plate pass through the bolt with the recess bottom of support frame 102 is connected for the drive driving screw 106 carries out just reversing, thereby passes through driving screw 106 drives removal slider 105 removes.
Then, the limiting slide block 108 is fixedly connected with the moving slide block 105 and is positioned on one side of the moving slide block 105; the limiting sliding groove 109 is arranged on one side of the sliding rail 103 close to the limiting sliding block 108 and is matched with the limiting sliding block 108. The two limiting slide blocks 108 are respectively and fixedly installed on the left side and the right side of the movable slide block 105, the limiting slide blocks 108 are matched with the two limiting slide grooves 109 on the slide rail 103, and partially extend into the limiting slide grooves 109, the limiting slide grooves 109 provide sliding conditions for the limiting slide blocks 108, and the rotation of the movable slide block 105 is limited through the matching of the limiting slide blocks 108 and the limiting slide rail 103, so that the movable slide block 105 can only move in the horizontal direction under the driving of the driving screw 106.
When this embodiment is used for seedling righting work, through the drive of the mobile drive assembly the electric telescopic handle 104 moves and can be adjusted the horizontal direction position of the seedling righting device 101, then through the telescopic operation of the electric telescopic handle 104 will the seedling righting device 101 descends to being close to the seedling, treats the seedling righting device 101 righting the back with the seedling of slope, through the electric telescopic handle 104 will the seedling righting device 101 rises, through the mobile drive assembly will the seedling righting device 101 moves to the upper end of the next seedling that has been inserted with the level, thereby realizes conveniently moving the seedling righting device 101.
Second embodiment:
referring to fig. 3, fig. 3 is a schematic view of an overall structure of a seedling planting assist device according to a second embodiment of the present invention. On the basis of the first embodiment, the movement adjusting device of the present embodiment further includes a telescopic supporting leg 210 and a friction pad 211.
The telescopic supporting feet 210 are fixedly connected with the supporting frame 102 and are located at the bottom of the supporting frame 102; the friction pad 211 is fixedly connected to the telescopic supporting leg 210 and is located at the bottom of the telescopic supporting leg 210. The telescopic supporting legs 210 are composed of telescopic rods and supporting blocks, the four telescopic supporting legs 210 are fixedly installed at the bottom of the supporting frame 102 close to four opposite corners respectively, the height of the supporting frame 102 is adjusted through the four telescopic supporting legs 210, the supporting frame 102 is conveniently placed on uneven ridges, the bottoms of the telescopic supporting legs 210 are fixedly installed with friction pads 211 respectively, friction grains are arranged at the bottoms of the friction pads 211, and the friction force between the telescopic supporting legs 210 and the ground in contact is increased through the friction pads 211, so that the support frame 102 is placed more stably.
While the above disclosure describes one or more preferred embodiments of the present invention, it is not intended to limit the scope of the claims to such embodiments, and one skilled in the art will understand that all or a portion of the processes performed in the above embodiments may be practiced without departing from the spirit and scope of the claims.

Claims (6)

1. A seedling transplanting assistor comprises a seedling righting device and is characterized in that,
the device also comprises a mobile adjusting device;
the movable adjusting device comprises a support frame, a slide rail, a movable driving assembly and an electric telescopic rod, wherein the slide rail is fixedly connected with the support frame and is positioned at the upper end of the support frame, the movable driving assembly is arranged on the slide rail, and the electric telescopic rod is connected with the slide rail in a sliding manner through the movable driving assembly and is positioned at the lower end of the slide rail.
2. The seedling transplanting aid as claimed in claim 1,
the movable driving assembly comprises a movable sliding block and a driving component, and the movable sliding block is connected with the sliding rail in a sliding mode through the driving component and is fixedly connected with the electric telescopic rod; the driving component is arranged on the sliding rail, is connected with the movable sliding block and drives the movable sliding block to move.
3. The rice transplanting aid as claimed in claim 2,
the driving component comprises a driving screw and a driving motor, the driving screw is rotationally connected with the sliding rail through a bearing, extends into the sliding rail, penetrates through the movable sliding block and is in threaded connection with the movable sliding block; the rotation output end of the driving motor is fixedly connected with the driving screw rod, and the driving motor is located at one end, extending out of the sliding rail, of the driving screw rod.
4. The seedling transplanting aid as claimed in claim 2,
the movable driving assembly further comprises a limiting sliding block, and the limiting sliding block is fixedly connected with the movable sliding block and is positioned on one side of the movable sliding block; the sliding rail is provided with a limiting sliding groove, and the limiting sliding groove is arranged on one side, close to the limiting sliding block, of the sliding rail and matched with the limiting sliding block.
5. The rice transplanting aid of claim 1,
the mobile adjusting device further comprises telescopic supporting legs, and the telescopic supporting legs are fixedly connected with the supporting frame and are located at the bottom of the supporting frame.
6. The rice transplanting aid as claimed in claim 5,
the mobile adjusting device further comprises a friction pad, and the friction pad is fixedly connected with the telescopic supporting legs and is positioned at the bottoms of the telescopic supporting legs.
CN202222492825.2U 2022-09-19 2022-09-19 Seedling transplanting assistor Active CN218499643U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222492825.2U CN218499643U (en) 2022-09-19 2022-09-19 Seedling transplanting assistor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222492825.2U CN218499643U (en) 2022-09-19 2022-09-19 Seedling transplanting assistor

Publications (1)

Publication Number Publication Date
CN218499643U true CN218499643U (en) 2023-02-21

Family

ID=85214720

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222492825.2U Active CN218499643U (en) 2022-09-19 2022-09-19 Seedling transplanting assistor

Country Status (1)

Country Link
CN (1) CN218499643U (en)

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