CN218481262U - Novel telescopic surface water collector - Google Patents

Novel telescopic surface water collector Download PDF

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Publication number
CN218481262U
CN218481262U CN202222504259.2U CN202222504259U CN218481262U CN 218481262 U CN218481262 U CN 218481262U CN 202222504259 U CN202222504259 U CN 202222504259U CN 218481262 U CN218481262 U CN 218481262U
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Prior art keywords
sampling bucket
wall
fixedly connected
sampling
water
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CN202222504259.2U
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Chinese (zh)
Inventor
刘佳
任旭东
刘东鑫
吴妍丽
赵静
边静
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Shandong Chunjiu Testing Technology Co ltd
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Shandong Chunjiu Testing Technology Co ltd
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Abstract

The utility model discloses a novel telescopic surface water collector, including the sampling bucket, the inner wall symmetry fixedly connected with hinge of sampling bucket, the inner wall of sampling bucket articulates through two hinges that set up has two closing plates, the inner wall symmetry fixedly connected with articulated elements A of sampling bucket, two the equal fixedly connected with articulated elements B in bottom of closing plate, the automatic flexible post of fixedly connected with between the outer wall of corresponding articulated elements B and articulated elements A. After the sampling bucket reaches the appointed degree of depth, start automatic flexible post, make automatic flexible post shrink, can drive the closing plate and rotate when automatic flexible post shrinks, make the sampling bucket be in open state, the water can enter into the inside of sampling bucket through the opening, later start automatic flexible post and extend, make the closing plate restore to the throne and plug up the opening, later take out the sampling bucket to reach the effect that can carry out the sampling to the water of appointed degree of depth.

Description

Novel telescopic surface water collector
Technical Field
The utility model belongs to the technical field of surface water sample, concretely relates to novel telescopic surface water collector.
Background
Water is a life source, the quality of water directly influences the health of human bodies, the components of the water are tested, however, with the continuous development of economy in China, the water demand for production and life is rapidly increased, the discharge amount of sewage is increased day by day, the situation of groundwater poverty and pollution in China is more severe, and long-term scientific monitoring and chemical analysis of groundwater are an essential important basis for achieving the goal. At present, the importance of sampling and surveying the underground water is greatly improved in China, great efforts are made on the aspects of underground water eutrophication, heavy metal detection and the like which are directly related to the health of the national life, and a telescopic surface water collector is required to be used when the surface water is sampled.
The telescopic surface water collector that has now, when carrying out the sampling work, after submerging the sampling bucket, the water will get into the sampling bucket, consequently can only gather the water on water surface when the sampling, can't sample the water of the different degree of depth, and the sampling work has certain limitation.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims at providing a novel telescopic surface water collector possesses the advantage that can carry out the sampling to the water of the different degree of depth.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a novel telescopic surface water collector, includes the sampling bucket, the inner wall symmetry fixedly connected with hinge of sampling bucket, the inner wall of sampling bucket articulates through two hinges that set up has two closing plates, the inner wall symmetry fixedly connected with articulated elements A of sampling bucket, two the equal fixedly connected with articulated elements B in bottom of closing plate, the automatic flexible post of fixedly connected with between the outer wall of corresponding articulated elements B and articulated elements A.
Through the technical scheme, reach the effect that can be to the sampling of different degree of depth water, after the sampling bucket reaches the appointed degree of depth, start automatic flexible post, make automatic flexible post shrink, can drive the closing plate and rotate when automatic flexible post shrinks, make the sampling bucket be in open state, the water can enter into the inside of sampling bucket through the opening, later start automatic flexible post and extend, make the closing plate restore to the throne and plug up the opening, later take out the sampling bucket, thereby reach the effect that can carry out the sampling to the water of appointed degree of depth.
Preferably, the bottom outer wall threaded connection of sampling bucket has the counter weight base, the inner wall fixed mounting of counter weight base has the motor, the output fixedly connected with pivot of motor, a plurality of blades of outer wall fixedly connected with of pivot.
Through the technical scheme, play the effect of reducing resistance, counter weight base through setting up increases the weight of sampling bucket, counter weight base's bottom is coniform, can be less the resistance of water, make the sampling bucket can better get into the aquatic, when the sampling bucket extends to the aquatic, the motor can drive the blade through the pivot and rotate, thereby sampling bucket reaches the appointed degree of depth with higher speed, solve because the buoyancy of water leads to the problem that the sampling bucket is difficult to sink, when withdrawing the sampling bucket, the motor can drive the blade through the pivot and invert, reduce the gravity that bears when flexible holding rod contracts, accelerate the efficiency that the sampling bucket was retrieved.
Preferably, the outer wall fixedly connected with support of sample bucket, the inner wall threaded connection of support has flexible holding rod, the one end fixedly connected with anticreep baffle of flexible holding rod.
Through above-mentioned technical scheme, play automatic flexible function, when putting the surface of water with the sampling bucket, start flexible holding rod and make flexible holding rod extension, flexible holding rod can promote the inside extension of sampling bucket to water to make the device have automatic flexible function, the setting of anticreep baffle is in order to prevent when carrying out sampling work, and flexible holding rod drops from the hand.
Preferably, the outer wall fixed mounting of flexible holding rod has control panel, control button is installed to control panel's inner wall.
Through above-mentioned technical scheme, play controlling means's effect, play controlling means through the control panel who sets up and carry out the effect of work, be provided with a plurality of control button on control panel, every control button all has corresponding function, through pressing corresponding control button, can assign corresponding instruction to the device, makes the device carry out work.
Preferably, the inner wall of the sampling barrel is fixedly connected with a water pouring pipe, and the inner wall of the water pouring pipe is in threaded connection with a sealing cover.
Through above-mentioned technical scheme, play the effect of pouring the sample, after the sampling is accomplished, will seal the lid and take off, then pour the water of gathering in the sampling bucket through the water pipe.
Preferably, the outer wall of the counterweight base is uniformly and fixedly connected with a plurality of shifting blocks.
Through above-mentioned technical scheme, play the effect of convenient dismantlement, sampling bucket and counter weight base are threaded connection, can dismantle counter weight base from the sampling bucket through rotating counter weight base, and the setting of stirring the piece is for conveniently rotating counter weight base to be convenient for dismantle.
Compared with the prior art, the beneficial effects of the utility model are that:
1. after the sampling bucket reaches the appointed degree of depth, start automatic flexible post, make automatic flexible post shrink, can drive the closing plate and rotate when automatic flexible post shrinks, make the sampling bucket be in open state, the water can enter into the inside of sampling bucket through the opening, later start automatic flexible post and extend, make the closing plate restore to the throne and plug up the opening, later take out the sampling bucket to reach the effect that can carry out the sampling to the water of appointed degree of depth.
2. Through the weight of the counter weight base increase sampling bucket that sets up, counter weight base's bottom is coniform, the resistance of less water, make the sampling bucket can better get into the aquatic, when the sampling bucket extends to the aquatic, the motor can drive the blade through the pivot and rotate, thereby sampling bucket reaches the appointed degree of depth with higher speed, solve because the buoyancy of water leads to the problem that the sampling bucket is difficult to sink, when withdrawing the sampling bucket, the motor can drive the blade through the pivot and invert, reduce the gravity that bears when flexible holding rod contracts, accelerate the efficiency that the sampling bucket was retrieved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the sampling barrel of the present invention;
FIG. 3 is a sectional view of the sampling barrel structure of the present invention;
fig. 4 is a schematic view of the counterweight base structure of the present invention.
In the figure: 1. a sampling barrel; 2. a sealing plate; 3. a hinge member A; 4. a hinge member B; 5. automatically telescoping the column; 6. a counterweight base; 7. a rotating shaft; 8. a blade; 9. a support; 10. a telescopic holding rod; 11. an anti-drop baffle plate; 12. a control panel; 13. pouring a water pipe; 14. a sealing cover; 15. and (4) a shifting block.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: the utility model provides a novel telescopic surface water collector, includes sampling bucket 1, sampling bucket 1's inner wall symmetry fixedly connected with hinge, and sampling bucket 1's inner wall articulates through two hinges that set up has two closing plates 2, sampling bucket 1's inner wall symmetry fixedly connected with articulated elements A3, the equal fixedly connected with articulated elements B4 in bottom of two closing plates 2, the automatic flexible post 5 of fixedly connected with between corresponding articulated elements B4 and articulated elements A3's the outer wall.
In this embodiment, after sampling bucket 1 reaches the appointed degree of depth, start automatic flexible post 5, make automatic flexible post 5 shrink, can drive closing plate 2 and rotate when automatic flexible post 5 shrinks, make sampling bucket 1 be in open state, the water can enter into the inside of sampling bucket 1 through the opening, later start automatic flexible post 5 and extend, make closing plate 2 reset and plug up the opening, later take out sampling bucket 1, thereby reach the effect that can carry out the sampling to the water of appointed degree of depth.
Specifically, the bottom outer wall threaded connection of sampling bucket 1 has counter weight base 6, and the inner wall fixed mounting of counter weight base 6 has a motor, the output fixedly connected with pivot 7 of motor, a plurality of blades 8 of the outer wall fixedly connected with of pivot 7.
In this embodiment, 6 weight that increases sampling bucket 1 through the counter weight base that sets up, the bottom of counter weight base 6 is coniform, resistance that can less water, make sampling bucket 1 can better get into the aquatic, when sampling bucket 1 extends to the aquatic, the motor can drive blade 8 through pivot 7 and rotate, thereby sampling bucket 1 reaches the appointed degree of depth with higher speed, solve because the buoyancy of water leads to sampling bucket 1 to be difficult to the problem that sinks, when withdrawing sampling bucket 1, the motor can drive blade 8 through pivot 7 and invert, reduce the gravity that bears when flexible holding rod 10 contracts, accelerate the efficiency that sampling bucket 1 retrieved.
Specifically, the outer wall fixedly connected with support 9 of sampling bucket 1, the inner wall threaded connection of support 9 has flexible holding rod 10, and the one end fixedly connected with anticreep baffle 11 of flexible holding rod 10.
In this embodiment, when putting sampling bucket 1 to the surface of water on, start flexible holding rod 10 and make flexible holding rod 10 extension, flexible holding rod 10 can promote sampling bucket 1 and extend to the inside of water to make the device have automatic flexible function, the setting of anticreep baffle 11 is in order to prevent when carrying out the sampling work, and flexible holding rod 10 drops from the hand.
Specifically, the outer wall of the telescopic holding rod 10 is fixedly provided with a control panel 12, and the inner wall of the control panel 12 is provided with a control button.
In this embodiment, the control panel 12 through setting up plays the effect that controlling means carries out work, is provided with a plurality of control button on control panel 12, and every control button all has corresponding function, through pressing corresponding control button, can assign corresponding instruction to the device, makes the device carry out work.
Specifically, the inner wall of the sampling barrel 1 is fixedly connected with a water pouring pipe 13, and the inner wall of the water pouring pipe 13 is in threaded connection with a sealing cover 14.
In this embodiment, after the sampling is completed, the sealing cover 14 is removed, and then the collected water is poured out from the sampling barrel 1 through the water pouring pipe 13.
Specifically, the outer wall of the counterweight base 6 is uniformly and fixedly connected with a plurality of shifting blocks 15.
In this embodiment, sampling bucket 1 and counter weight base 6 are threaded connection, can dismantle counter weight base 6 from sampling bucket 1 through rotating counter weight base 6, and the setting of stirring piece 15 is for conveniently rotating counter weight base 6 to be convenient for dismantle.
The utility model discloses a theory of operation and use flow: when using, install on the surface of water, then start flexible holding rod 10, make flexible holding rod 10 extend, promote sampling bucket 1 and remove to the aquatic, the weight of sampling bucket 1 is increased through the counter weight base 6 that sets up, the bottom of counter weight base 6 is coniform, the resistance that can less water, make sampling bucket 1 can better get into the aquatic, when sampling bucket 1 extends to the aquatic, the motor can drive blade 8 through pivot 7 and rotate, thereby sampling bucket 1 reaches appointed degree of depth with higher speed, solve because the buoyancy of water leads to sampling bucket 1 to be difficult to the problem of sinking, after sampling bucket 1 reaches appointed degree of depth, start automatic flexible post 5, make automatic flexible post 5 contract, can drive closing plate 2 and rotate when automatic flexible post 5 contracts, make sampling bucket 1 be in open state, can enter into the inside of sampling bucket 1 through the opening, later start automatic flexible post 5 and extend, make closing plate 2 reset and plug up the opening, later take out sampling bucket 1, thereby reach the water that can withdraw to appointed degree of depth and carry out the sampling effect, when the sampling bucket 1 is retracting, the water body can drive the efficiency through the pivot 7 and carry out the reversal of the rotation, the efficiency of the motor can be accelerated, the sampling bucket 10.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a novel telescopic surface water collector, includes sampling bucket (1), its characterized in that: the inner wall symmetry fixedly connected with hinge of sampling bucket (1), the inner wall of sampling bucket (1) articulates through two hinges that set up has two closing plates (2), the inner wall symmetry fixedly connected with articulated elements A (3) of sampling bucket (1), two the equal fixedly connected with articulated elements B (4) in bottom of closing plate (2), automatic flexible post (5) of fixedly connected with between the outer wall of corresponding articulated elements B (4) and articulated elements A (3).
2. The novel telescopic surface water collector of claim 1, characterized in that: the bottom outer wall threaded connection of sampling bucket (1) has counter weight base (6), the inner wall fixed mounting of counter weight base (6) has the motor, the output fixedly connected with pivot (7) of motor, a plurality of blades of outer wall fixedly connected with (8) of pivot (7).
3. The novel telescopic surface water collector of claim 1, characterized in that: the outer wall fixedly connected with support (9) of sampling bucket (1), the inner wall threaded connection of support (9) has flexible holding rod (10), the one end fixedly connected with anticreep baffle (11) of flexible holding rod (10).
4. The novel telescopic surface water collector of claim 3, characterized in that: the outer wall fixed mounting of flexible holding rod (10) has control panel (12), control button is installed to the inner wall of control panel (12).
5. The novel telescopic surface water collector of claim 1, characterized in that: the inner wall fixedly connected with of sampling bucket (1) falls water pipe (13), the inner wall threaded connection of falling water pipe (13) has sealed lid (14).
6. The novel telescopic surface water collector of claim 2, characterized in that: the outer wall of the counterweight base (6) is uniformly and fixedly connected with a plurality of shifting blocks (15).
CN202222504259.2U 2022-09-22 2022-09-22 Novel telescopic surface water collector Active CN218481262U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222504259.2U CN218481262U (en) 2022-09-22 2022-09-22 Novel telescopic surface water collector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222504259.2U CN218481262U (en) 2022-09-22 2022-09-22 Novel telescopic surface water collector

Publications (1)

Publication Number Publication Date
CN218481262U true CN218481262U (en) 2023-02-14

Family

ID=85167537

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222504259.2U Active CN218481262U (en) 2022-09-22 2022-09-22 Novel telescopic surface water collector

Country Status (1)

Country Link
CN (1) CN218481262U (en)

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