CN219714863U - Sampling device of water environment protection unmanned aerial vehicle - Google Patents

Sampling device of water environment protection unmanned aerial vehicle Download PDF

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Publication number
CN219714863U
CN219714863U CN202321285106.1U CN202321285106U CN219714863U CN 219714863 U CN219714863 U CN 219714863U CN 202321285106 U CN202321285106 U CN 202321285106U CN 219714863 U CN219714863 U CN 219714863U
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China
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aerial vehicle
unmanned aerial
swash plate
fixedly connected
environment protection
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CN202321285106.1U
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Chinese (zh)
Inventor
谭元慧
陈玖明
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Sichuan Woluojia Technology Co ltd
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Sichuan Woluojia Technology Co ltd
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Abstract

The utility model relates to the technical field of water environment protection, in particular to a sampling device of an unmanned aerial vehicle for water environment protection, which comprises unmanned aerial vehicle water taking equipment, wherein a limiting base is fixedly connected to the middle of the bottom end of the unmanned aerial vehicle water taking equipment, a winding rope body penetrates through the middle of the bottom end of the limiting base, long inclined plates are respectively and adjacently arranged at two sides of the winding rope body, and through a steering clamping block, a second baffle, a first baffle, a short inclined plate, the long inclined plate, the limiting base, a limiting screw and the winding rope body, when the winding rope body encounters wind blown from the side end, an L-shaped structure formed by connecting the short inclined plate and the long inclined plate is formed, and a winding rope brought from the upper half end to the side end can be limited to the inside of a wire slot space formed by a group of the second baffle and a group of the first baffle, so that the winding rope in swinging is protected and prevented from being wound on a landing leg of the unmanned aerial vehicle easily.

Description

Sampling device of water environment protection unmanned aerial vehicle
Technical Field
The utility model relates to the technical field of water environment protection, in particular to a sampling device of a water environment protection unmanned plane.
Background
Because good water quality is beneficial to the survival of animals and plants around the water environment, in order to timely find that the water environment is polluted by sewage discharged by the surrounding environment, regular sampling and sampling inspection can be carried out on water in the water environment field, most of the existing water sample sampling devices can be matched with unmanned aerial vehicles for use, and sampling personnel do not need to take a ship to reach a sampling phenomenon;
the current unmanned aerial vehicle's of actual mainly used water environment protection sampling device utilizes the roll up the rope to transfer and receive, when drawing the sampling bottle to sample the operation to river, because the river very easily produces wind for the land, the line of coiling of position river top can be because of the wind that runs into from the side, the rope takes place the horizontal hunting, and the problem of winding together with unmanned aerial vehicle folding landing leg contact easily, then the line of coiling can lead to continuing to transfer and receive the resistance that produces when operating because of coiling on the landing leg, blocked.
Disclosure of Invention
The utility model aims to provide a sampling device of an unmanned aerial vehicle for water environment protection, which aims to solve the problem that when a sampling bottle is pulled by the sampling device of the existing unmanned aerial vehicle for water environment protection to sample river water, a winding rope is easily contacted with unfolded supporting legs of the unmanned aerial vehicle and wound together due to the influence of wind blown from side ends.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides a sampling device of water environmental protection unmanned aerial vehicle, includes unmanned aerial vehicle water intaking equipment, unmanned aerial vehicle water intaking equipment's bottom middle part fixedly connected with prescribes a limit to the base, and prescribes a limit to the bottom middle part of base and run through there is the rolling cotton rope body, the both sides position of rolling cotton rope body is adjacent respectively to be equipped with long swash plate, and the top of long swash plate is equipped with through integrated into one piece and turns to the fixture block, the oblique below position fixedly connected with short swash plate of long swash plate, and the one end of short swash plate is equipped with the second baffle through integrated into one piece, one side fixedly connected with first baffle of long swash plate, and the inclined plane of long swash plate is equipped with the wind hole through integrated into one piece.
Preferably, the top both sides position of unmanned aerial vehicle water intaking equipment all rotates and installs movable hasp, and the middle part of movable hasp peg graft there is the restriction pillar, the rear fixedly connected with unmanned aerial vehicle of restriction pillar reserves the support, the appearance of unmanned aerial vehicle reservation support is "T" type structure setting.
Preferably, the winding roller and the winding rope body arranged in the unmanned aerial vehicle water taking equipment are connected in a winding way, the bottom end of the winding rope body is fixedly connected with a limiting chuck, the bottom of the limiting chuck is fixedly provided with a sampling bottle body, and the shape of the limiting chuck is in a herringbone structure.
Preferably, the two sides of the bottom end of the limiting base are fixedly connected with positioning blocks, the middle part of one side of each positioning block is fixedly connected with a limiting screw, and the bottom end surface of the limiting base is provided with a sliding groove which is in sliding connection with a group of steering clamping blocks.
Preferably, the middle part of the steering fixture block is provided with a hole groove for limiting the insertion of the screw, the steering fixture block and the long inclined plate are connected to form an inclined angle of 157 degrees, the long inclined plate and the inclined surface are provided with 5 rows and 4 columns of air holes, and the long inclined plate and the short inclined plate are connected to form an L-shaped structure.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, through the steering clamping block, the second partition plate, the first partition plate, the short inclined plate, the long inclined plate, the limiting base, the limiting screw and the winding rope body, when wind blown from the side ends is encountered in the process of releasing or winding the winding rope body, and the phenomenon of swinging and carrying the side ends of the winding rope is caused, the short inclined plate and the long inclined plate are connected to form an L-shaped structure, so that the winding rope carried by the upper half end towards the side ends can be limited in a wire slot space formed by a group of second partition plates and a group of first partition plates, the winding rope in swinging is protected and limited, and the winding rope can be prevented from being easily wound on the support leg of the unmanned aerial vehicle due to the wind blown from the side ends in the process of releasing or winding the sampling bottle.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of the bottom end surface structure of the water intake device of the unmanned aerial vehicle;
FIG. 3 is a schematic view of the structure of the wind hole of the present utility model.
In the figure: the device comprises a 1-unmanned aerial vehicle water taking device, a 2-limiting base, a 3-winding rope body, a 4-long inclined plate, a 5-steering clamping block, a 6-positioning block, a 7-limiting screw, an 8-first partition plate, a 9-short inclined plate, a 10-second partition plate, an 11-air hole, a 12-unmanned aerial vehicle reserved support, a 13-limiting support column, a 14-movable lock catch, a 15-limiting chuck and a 16-sampling bottle body.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present utility model provides a technical solution:
the utility model provides a sampling device of water environmental protection unmanned aerial vehicle, including unmanned aerial vehicle water intaking equipment 1, unmanned aerial vehicle water intaking equipment 1's bottom middle part fixedly connected with is limited base 2, and it runs through in the middle part of the bottom of base 2 to be limited has a rolling cotton rope body 3, the both sides position of rolling cotton rope body 3 is adjacent respectively to be equipped with long swash plate 4, and the top of long swash plate 4 is equipped with through integrated into one piece and turns to fixture block 5, the inclined lower position fixedly connected with short swash plate 9 of long swash plate 4, and the one end of short swash plate 9 is equipped with second baffle 10 through integrated into one piece, one side fixedly connected with first baffle 8 of long swash plate 4, and the inclined plane of long swash plate 4 is equipped with wind hole 11 through integrated into one piece.
As shown in fig. 1, the positions of two sides of the top end of the water taking device 1 of the unmanned aerial vehicle are rotatably provided with movable catches 14, the middle part of each movable catch 14 is inserted with a limiting support 13, the rear part of each limiting support 13 is fixedly connected with an unmanned aerial vehicle reserved support 12, the appearance of each unmanned aerial vehicle reserved support 12 is in a T-shaped structure, before the sampling device of the unmanned aerial vehicle for water environment protection is used, a sampler can manually and stably lock the front group and the rear group of movable catches 14 onto the two groups of limiting supports 13, and after the front group and the rear group of movable catches are limited by the assembly and the installation of bolts, the sampling device of the unmanned aerial vehicle for water environment protection can be fixedly connected with the unmanned aerial vehicle reserved support 12 at the bottom of the unmanned aerial vehicle, so that later use is convenient; the winding roller and the winding rope body 3 that are arranged in unmanned aerial vehicle water intaking equipment 1 are connected in a winding way, and the bottom fixedly connected with of winding rope body 3 prescribes a limit to chuck 15, and the bottom fixed mounting who prescribes a limit to chuck 15 has sampling bottle body 16, and the appearance that prescribes a limit to chuck 15 is "people" style of calligraphy structure setting, with prescribing a limit to the sampling bottle body 16 that chuck 15 is connected together, can assist this water environment protection unmanned aerial vehicle's sampling device to take a sample river.
As shown in fig. 1, 2 and 3, two sides of the bottom end of the limiting base 2 are fixedly connected with a positioning block 6, one side middle part of the positioning block 6 is fixedly connected with a limiting screw 7, the bottom end surface of the limiting base 2 is provided with a sliding groove which is in sliding connection with a group of steering clamping blocks 5, when a group of wire blocking structures are installed, the upper half end of the group of steering clamping blocks 5 can be pushed into the group of sliding grooves in a fitting manner, meanwhile, the group of limiting screws 7 can be connected with a single steering clamping block 5 in a plugging manner, and then a sampler can install fixing bolts on the limiting screws 7 to fix the limiting screws 7 and the steering clamping blocks 5; the middle part of the steering clamping block 5 is provided with a hole slot for limiting the plugging of the screw rod 7, the connection between the steering clamping block 5 and the long inclined plate 4 forms an inclined angle of 157 degrees, the long inclined plate 4 and the inclined plane are provided with 5 rows of 4 columns of air holes 11, the connection between the long inclined plate 4 and the short inclined plate 9 forms an L-shaped structure, one end of the short inclined plate 9 and one side of the long inclined plate 4 are respectively provided with a second baffle 10 and a first baffle 8 with one side provided with a slope surface structure, after the fixed installation operation of the sampling device of the water environment protection unmanned aerial vehicle is completed by combining the sampling personnel, the left and right baffle structures can be respectively fixedly connected with the limiting base 2 and the limiting screw rod 7 through the steering clamping block 5, when the unmanned aerial vehicle water taking device 1 controlled by remote sensing driving is lowered or is in the overlength of the upper winding rope body 3, wind blown from the side ends is encountered, and the phenomenon that the side ends swing and take up occurs to the winding rope, under the fixed connection cooperation of the steering clamping block 5, the L-shaped structure formed by connecting the short inclined plate 9 with the long inclined plate 4 can limit the winding rope of which the upper half end is taken up towards the side ends to the inside of a wire slot space formed by a group of second partition plates 10 and a group of first partition plates 8, and the wind blown from the side ends is weakened through a plurality of wind holes 11, so that the influence of wind power or uncontrolled inclination on the winding rope connected with a sampling bottle is reduced.
The working flow is as follows: the sampling device combined with the unmanned aerial vehicle for water environment protection is fixedly installed to the bottom position of the unmanned aerial vehicle in advance before water sampling operation is carried out, when sampling personnel pass through remote sensing tools and drive the unmanned aerial vehicle to stably fly on a river surface, and after the unmanned aerial vehicle flies to a site needing to be sampled, unmanned aerial vehicle water taking equipment 1 driven by remote sensing can rotate anticlockwise through a winding roller to lower a winding rope body 3, then when the sampling bottle body 16 connected with the winding rope body 3 through a limiting chuck 15 falls on the river surface, river water can quickly flow into the inside of the sampling bottle body 16 through an inlet of the sampling bottle, after a proper amount of water sample is taken, the unmanned aerial vehicle water taking equipment 1 can upwards receive the whole water sampling structure through clockwise rotation of the wire roller, finally, after the unmanned aerial vehicle is carrying the water sampling structure to fall on the ground, the sampling personnel can bring the water sample collected by the water sampling structure to water quality detection equipment for water quality monitoring, whether the water quality in the water environment is polluted or not is analyzed through limiting the water quality parameters, and the corresponding purification protection measures are formulated and made.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides a sampling device of water environment protection unmanned aerial vehicle, includes unmanned aerial vehicle water intaking equipment (1), its characterized in that: the unmanned aerial vehicle water intaking equipment (1)'s bottom middle part fixedly connected with is limited base (2), and is limited the bottom middle part of base (2) and run through there is rolling cotton rope body (3), the both sides position of rolling cotton rope body (3) is adjacent respectively to be equipped with long swash plate (4), and the top of long swash plate (4) is equipped with through integrated into one piece and turns to fixture block (5), the oblique below position fixedly connected with short swash plate (9) of long swash plate (4), and the one end of short swash plate (9) is equipped with second baffle (10) through integrated into one piece, one side fixedly connected with first baffle (8) of long swash plate (4), and the inclined plane of long swash plate (4) is equipped with wind hole (11) through integrated into one piece.
2. The sampling device of an unmanned water environment protection system according to claim 1, wherein: the unmanned aerial vehicle water intaking equipment (1) all rotates on top both sides position and installs movable hasp (14), and the middle part of movable hasp (14) is pegged graft and is had limited pillar (13), the rear fixedly connected with unmanned aerial vehicle of limiting pillar (13) reserves support (12), the appearance of unmanned aerial vehicle reservation support (12) is "T" type structure setting.
3. The sampling device of an unmanned water environment protection system according to claim 1, wherein: the unmanned aerial vehicle water intaking equipment (1) is inside to be equipped with coil roller and winding rope body (3) and winds to be connected, and the bottom fixedly connected with of winding rope body (3) prescribes a limit to chuck (15), the bottom fixed mounting who prescribes a limit to chuck (15) has sampling bottle body (16), prescribes a limit to the appearance of chuck (15) and be "people" style of calligraphy structure setting.
4. The sampling device of an unmanned water environment protection system according to claim 1, wherein: the two sides of the bottom end of the limiting base (2) are fixedly connected with positioning blocks (6), one side middle part of each positioning block (6) is fixedly connected with a limiting screw (7), and the bottom end surface of the limiting base (2) is provided with a group of sliding grooves which are in sliding connection with the steering clamping blocks (5).
5. The sampling device of the water environment protection unmanned aerial vehicle according to claim 4, wherein: the middle part of turning to fixture block (5) holds the hole groove that inject screw rod (7) grafting, and turns to the contained angle that constitutes a slope 157 between fixture block (5) and long swash plate (4), long swash plate (4) and inclined plane are equipped with 5 lines 4 and listed as wind hole (11), the connection between long swash plate (4) and short swash plate (9) constitutes an "L" structure, be equipped with second baffle (10) that a side end has slope face structure, first baffle (8) on one side of one end of short swash plate (9) and long swash plate (4) respectively.
CN202321285106.1U 2023-05-25 2023-05-25 Sampling device of water environment protection unmanned aerial vehicle Active CN219714863U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321285106.1U CN219714863U (en) 2023-05-25 2023-05-25 Sampling device of water environment protection unmanned aerial vehicle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321285106.1U CN219714863U (en) 2023-05-25 2023-05-25 Sampling device of water environment protection unmanned aerial vehicle

Publications (1)

Publication Number Publication Date
CN219714863U true CN219714863U (en) 2023-09-19

Family

ID=87979827

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321285106.1U Active CN219714863U (en) 2023-05-25 2023-05-25 Sampling device of water environment protection unmanned aerial vehicle

Country Status (1)

Country Link
CN (1) CN219714863U (en)

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