CN218381858U - Water quality collector with floating structure - Google Patents

Water quality collector with floating structure Download PDF

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Publication number
CN218381858U
CN218381858U CN202222631068.2U CN202222631068U CN218381858U CN 218381858 U CN218381858 U CN 218381858U CN 202222631068 U CN202222631068 U CN 202222631068U CN 218381858 U CN218381858 U CN 218381858U
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cursory
rack
square
water
fixed
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CN202222631068.2U
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高丽霞
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Shanxi Chengda Hengye Environmental Protection Technology Engineering Co ltd
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Shanxi Chengda Hengye Environmental Protection Technology Engineering Co ltd
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Abstract

The utility model discloses a take water quality collector of floating structure relates to the water quality testing field, including square cursory, the outside of square cursory is provided with acquisition mechanism, acquisition mechanism includes dwang, rack and two sliders, the outer fixed surface of dwang is connected with the gear, the outer fixed surface of rack is connected with the collection pipe, the surface mounting of collection pipe has the water pump, the outside of square cursory is provided with stop gear. It can be through the setting of gathering mechanism, the one end through rotatory gear drive gathering pipe stretches into the aquatic, the gathering pipe draws water to the waters through the water pump, thereby control the quality of water of gathering the different degree of depth through the lift of control rack, the surface of rack is provided with the scale of measurement degree of depth, thereby make things convenient for the staff to learn the degree of depth of the quality of water of gathering through observing rack descending length, thereby gather the quality of water of the different degree of depth many times and calculate the average value of quality of water numerical value, make the water quality testing result more accurate.

Description

Water quality collector with floating structure
Technical Field
The utility model relates to a water quality testing field specifically is take water quality collector of floating structure.
Background
Water is a source of life, people can not boil in life and production activities, quality of water of drinking water is closely related to human health, along with development of social economy, scientific progress and improvement of living standard of people, requirements of people on water quality of drinking water are continuously improved, and water quality standards of drinking water are correspondingly continuously developed and perfected.
According to the patent of patent No. CN215339798U, disclose a quality of water collection and detection device for hydraulic engineering, body, connecting pipe and fixed block are put to the packing, the bottom of device body is fixed with the spacing groove, and the inner wall of spacing groove is provided with the montant to the brush is installed in the outside of montant, the end department of montant is connected with the pivot, and the left side of pivot is fixed with first connecting shaft to the motor is installed to the top of first connecting shaft, the outside of pivot is fixed with the holding ring, and the distolateral spout that is provided with of holding ring, the connecting pipe is installed in the outside of device body, and the below of connecting pipe is fixed with the interface to the sealing washer is installed in the outside of interface, the intermediate position of sealing washer is provided with the inlet tube.
However, in the implementation process of the above scheme, the function of multi-depth water quality collection is not provided, regular water quality detection needs to be performed on a pool, a lake and a river, water in a water area is fished out through a water quality collector so as to be detected, the water quality is generally fished out at a fixed depth by the existing water quality collector, and the average value of the water quality detection is influenced by singly collecting the water quality at the fixed depth due to different distribution of microorganisms and bacteria in the water areas at different depths, so that the water quality detection result is too extensive; therefore, the water quality collector with the floating structure is provided to solve the problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a water quality collector with a floating structure in order to make up the defects of the prior art.
In order to achieve the above object, the utility model provides a following technical scheme: take water quality collector of floating structure, including square cursory, the outside of square cursory is provided with collection mechanism, collection mechanism includes dwang, rack and two sliders, the external fixed surface of dwang is connected with the gear, the external fixed surface of rack is connected with the collection pipe, the outer surface mounting of collection pipe has the water pump, the outside of square cursory is provided with stop gear, stop gear includes the fixed plate, the external fixed surface of square cursory is connected with the bucket, the inside of bucket sets up clearance mechanism, clearance mechanism includes the motor.
Further, the dwang rotates to be connected at the surface of square cursory, the spout with rack looks adaptation is seted up to the surface of square cursory, the spout and the square cursory sliding connection that the rack passes through square cursory, gather the fixed intercommunication of pipe at the surface of storing the bucket, the surface fixedly connected with anchor body of square cursory, through the setting of anchor body, the anchor body passes through chain and square cursory fixed connection, when square cursory is located the surface of water, sinks the anchor body into submarine, and the anchor body makes square cursory stop steadily on the surface of water.
Furthermore, the surface of the rack is provided with a sliding groove matched with the sliding blocks, the sliding blocks are connected with the rack in a sliding mode through the sliding grooves of the rack, the outer surfaces of the sliding blocks are fixedly connected with two limiting blocks, the limiting blocks are fixedly connected to the outer surface of the square buoy, the rack is kept vertical through the arrangement of the two sliding blocks, and the rack moves in a vertical horizontal plane when driving the collecting pipe to move.
Further, fixed plate fixed connection is at the surface of square cursory, the external fixed surface of fixed plate is connected with the sleeve, telescopic inner wall sliding connection has the joint post, joint post and gear looks adaptation, and when the joint post was meshed with the gear, the joint post blockked the gear and rotated.
Further, the joint post runs through the surface of fixed plate and with fixed plate sliding connection, the joint post meshes with the gear mutually, the outer fixed surface of joint post is connected with expanding spring, expanding spring fixed connection is at telescopic inner wall, and through expanding spring's setting, the joint post will receive expanding spring's spring tension will last and gear keep meshing.
Further, the outer fixed surface of joint post is connected with the pull rod, telescopic surface offer with the spout of pull rod looks adaptation, the pull rod passes through telescopic spout and sleeve sliding connection, thereby the staff can drive the joint post through the pulling pull rod and keep away from the gear to make joint post and gear disengagement.
Further, the surface mounting who stores the bucket has the valve, motor fixed connection is at the surface of storing the bucket, the output fixedly connected with clearance pole of motor, clearance pole fixed connection is at the surface of dead lever, the dead lever rotates to be connected at the interior diapire of storing the bucket, and clearance pole surface is provided with the washing brush, and the inner wall and the interior diapire of storing the bucket are hugged closely to the clearance pole, and when the clearance pole was rotatory, the impurity on the bucket inner wall will be stored in the clearance.
Compared with the prior art, this take water quality collector of floating structure possesses following beneficial effect:
1. the utility model discloses a setting of acquisition mechanism, drive the rack downstream through rotatory gear, make the one end of gathering the pipe stretch into the aquatic, the gathering pipe draws water to the waters through the water pump, thereby control the quality of water of the different degree of depth of gathering through the lift control gathering pipe of control rack, the surface of rack is provided with the scale of the measurement degree of depth, thereby make things convenient for the staff to learn the degree of depth of the quality of water of gathering through observing rack decline length, thereby gather the quality of water of the different degree of depth many times and calculate the average value of quality of water numerical value, make the water quality testing result more accurate.
2. The utility model discloses a setting of clearance mechanism, owing to reserve water for a long time in the storage bucket, inner wall and interior diapire exist a large amount of microorganisms in leading to storing the bucket, bacterium and algae, it is rotatory to drive the clearance pole through the motor rotation, the clearance pole is rotatory will scrape the clearance of rubbing to the inner wall and the interior diapire of storage bucket, inject the clear water in will storing the bucket, make the impurity in the storage bucket flow through the valve, realize cleaning to the storage bucket, effectively avoid storing and have a large amount of microorganisms in the bucket, when bacterium and algae influence next collection quality of water, lead to the water quality testing result and actually not conform to.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic view of the three-dimensional structure of the collecting mechanism of the present invention;
fig. 3 is a schematic perspective view of the limiting mechanism of the present invention;
fig. 4 is a schematic view of the three-dimensional structure of the cleaning mechanism of the present invention.
In the figure: 1. a square buoy; 2. a collection mechanism; 21. rotating the rod; 22. a gear; 23. a rack; 24. a slider; 25. a limiting block; 26. a collection tube; 27. a water pump; 3. a limiting mechanism; 31. a fixing plate; 32. a sleeve; 33. a clamping column; 34. a tension spring; 35. a pull rod; 4. a storage barrel; 5. a valve; 6. a cleaning mechanism; 61. a motor; 62. cleaning the rod; 63. fixing the rod; 7. an anchor body.
Detailed Description
The principles and features of the present invention will be described with reference to the drawings, which are provided for illustration only and are not intended to limit the scope of the invention.
This embodiment provides the water quality collector who takes floating structure, and the device effectively avoids gathering the quality of water of same degree of depth and will influence this water quality testing's average numerical value, leads to the water quality testing result too one side.
Referring to fig. 1 and 2, take water quality collector of floating structure, including square cursory 1, the surface fixedly connected with anchor 7 of square cursory 1, place square cursory 1 on the surface of water earlier when gathering quality of water, the buoyancy of square cursory 1 is enough to float the device on the surface of water, through the setting of anchor 7, anchor 7 passes through chain and 1 fixed connection of square cursory, anchor 7 is the iron system, when square cursory 1 is located the surface of water, immerse anchor 7 into the bottom, anchor 7 makes square cursory 1 stop steadily on the surface of water.
The outside of square cursory 1 is provided with gathers mechanism 2, gathers mechanism 2 and includes dwang 21, rack 23 and two sliders 24, and dwang 21 rotates to be connected at square cursory 1's surface, and the surface of dwang 21 is provided with rotatory handle, thereby makes things convenient for rotatory dwang 21 of staff to make gear 22 rotate.
The outer fixed surface of dwang 21 is connected with gear 22, the spout with 23 looks adaptations of rack is seted up to the surface of square cursory 1, rack 23 is through the spout of square cursory 1 and square cursory 1 sliding connection, the surface of rack 23 is provided with the scale of measurement, when rack 23 moves down, the staff can be through the change of observing rack 23 measurement scale, thereby learn the degree of depth that rack 23 descends, make things convenient for the staff to remove the waters of gathering pipe 26 to appointed degree of depth.
The outer surface of rack 23 is seted up the spout with slider 24 looks adaptation, and two sliders 24 all pass through the spout and rack 23 sliding connection of rack 23, through the setting of two sliders 24, make rack 23 keep vertical, for vertical horizontal plane removal when making rack 23 drive and gather pipe 26 and remove.
Two stopper 25 of the equal fixedly connected with of surface of two sliders 24, four equal fixed connection of stopper 25 are at the surface of square cursory 1, and through the setting of stopper 25, four stopper 25 all laminate rack 23, and every rack 23 of group carries on spacingly to rack 23 mutually, avoids rack 23 to take place the skew of horizontal angle, leads to rack 23 and gear 22 to break away from the meshing.
The collecting pipe 26 is fixedly connected to the outer surface of the rack 23, the length of the collecting pipe 26 is long enough to meet the maximum depth of downward movement of the rack 23, the collecting pipe 26 is a flexible rubber pipe, and when the rack 23 moves, the collecting pipe 26 can move along with the rack 23.
The water pump 27 is installed on the outer surface of the collecting pipe 26, the water pump 27 is controlled by the controller, and when the collecting pipe 26 extends into a water area with a specified depth, the water pump 27 sucks water at the port position of the collecting pipe 26 and guides the water to the storage barrel 4.
Referring to fig. 3, the outside of square cursory 1 is provided with stop gear 3, and stop gear 3 includes fixed plate 31, and fixed plate 31 fixed connection is at the surface of square cursory 1, and the external fixed surface of fixed plate 31 is connected with sleeve 32, and through stop gear 3's setting, it is convenient spacing with rack 23 to no longer need the staff to carry out the support that lasts to dwang 21, reduce staff's the amount of labour.
The inner wall of the sleeve 32 is connected with a clamping column 33 in a sliding mode, the clamping column 33 penetrates through the outer surface of the fixing plate 31 and is connected with the fixing plate 31 in a sliding mode, the clamping column 33 is matched with the gear 22, and when the clamping column 33 is meshed with the gear 22, the clamping column 33 blocks the gear 22 to rotate.
Joint post 33 meshes with gear 22 mutually, and the fixed surface of joint post 33 is connected with expanding spring 34, and expanding spring 34 fixed connection is at the inner wall of sleeve 32, and through expanding spring 34's setting, joint post 33 will receive expanding spring 34's spring tension will last and gear 22 keeps meshing.
The outer fixed surface of joint post 33 is connected with pull rod 35, and the spout with pull rod 35 looks adaptation is seted up to the surface of sleeve 32, thereby the staff can drive joint post 33 through pulling pull rod 35 and keep away from gear 22 to make joint post 33 and gear 22 break-make.
The pull rod 35 passes through sleeve 32's spout and sleeve 32 sliding connection, and the external fixed surface of square cursory 1 is connected with storage bucket 4, and storage bucket 4's surface is provided with the water filling port, and the staff can inject the clear water into storage bucket 4 through storage bucket 4's water filling port to conveniently wash out the impurity in the storage bucket 4.
The collection pipe 26 is fixedly communicated with the outer surface of the storage barrel 4, the valve 5 is arranged on the outer surface of the storage barrel 4, and when the water quality to be collected is reserved in the storage barrel 4, the valve 5 is opened to enable the collected water quality to flow out of the storage barrel 4.
Referring to fig. 4, the inside of storage bucket 4 sets up clearance mechanism 6, and clearance mechanism 6 includes motor 61, and motor 61 fixed connection is at the surface of storage bucket 4, and clearance pole 62 surface is provided with the washing brush, and the inner wall and the interior diapire of storage bucket 4 are hugged closely to clearance pole 62, and when clearance pole 62 was rotatory, the impurity on the storage bucket 4 inner wall will be cleared up to the realization is to storage bucket 4's clearance.
Motor 61's output fixedly connected with clearance pole 62, clearance pole 62 fixed connection is at the surface of dead lever 63, and dead lever 63 rotates the interior diapire of connecting at storage bucket 4, through the setting of dead lever 63, carries on spacingly to clearance pole 62, increases the stability when clearance pole 62 is rotatory.
The working principle is as follows: during the use, it rotates gear 22 to rotate dwang 21, gear 22 rotates and drives rack 23 and moves down, rack 23 moves down will drive and gathers pipe 26 and stretch into the waters, because the surface of rack 23 is provided with the scale of measurement, through the scale of observing rack 23 when rack 23 descends, it is how much to reach and gathers pipe 26 depth of fall, when gathering pipe 26 descends to the degree of depth that needs to gather quality of water, open water pump 27, water pump 27 inhales water to storage bucket 4 in from the waters through gathering pipe 26, and store in storage bucket 4, will obtain the water that needs the measurement through opening valve 5, through the depth of fall of accurate control rack 23, control is gathered pipe 26 and is gathered the water of appointed depth, thereby gather the quality of water of the different degree of depth again many times and calculate the average value of quality of water numerical value, make quality of water measuring result more accurate.
The above description is only for the preferred embodiment of the present invention, and should not be construed as limiting the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (7)

1. Take water quality collector of floating structure, including square cursory (1), its characterized in that: the outside of square cursory (1) is provided with gathers mechanism (2), gather mechanism (2) including dwang (21), rack (23) and two slider (24), the external fixed surface of dwang (21) is connected with gear (22), the external fixed surface of rack (23) is connected with and gathers pipe (26), the surface mounting who gathers pipe (26) has water pump (27), the outside of square cursory (1) is provided with stop gear (3), stop gear (3) are including fixed plate (31), the external fixed surface of square cursory (1) is connected with storage bucket (4), the inside of storage bucket (4) sets up clearance mechanism (6), clearance mechanism (6) include motor (61).
2. The water collector with a floating structure as claimed in claim 1, wherein: dwang (21) are rotated and are connected the surface at square cursory (1), the spout with rack (23) looks adaptation is seted up to the surface of square cursory (1), rack (23) are through the spout and the square cursory (1) sliding connection of square cursory (1), gather the surface of pipe (26) fixed intercommunication at storage bucket (4), the external fixed surface of square cursory (1) is connected with anchor body (7).
3. The water collector with a floating structure according to claim 1, characterized in that: the surface of rack (23) offer with the spout of slider (24) looks adaptation, two slider (24) all through the spout and rack (23) sliding connection of rack (23), two the equal fixedly connected with two stopper (25) of surface of slider (24), four the equal fixed connection of stopper (25) is at the surface of square cursory (1).
4. The water collector with a floating structure as claimed in claim 1, wherein: fixed plate (31) fixed connection is at the surface of square cursory (1), the fixed surface of fixed plate (31) is connected with sleeve (32), the inner wall sliding connection of sleeve (32) has joint post (33).
5. A water collector with a floating structure according to claim 4, characterized in that: joint post (33) run through the surface of fixed plate (31) and with fixed plate (31) sliding connection, joint post (33) and gear (22) mesh mutually, the external fixed surface of joint post (33) is connected with expanding spring (34), expanding spring (34) fixed connection is at the inner wall of sleeve (32).
6. A water collector with a floating structure according to claim 4, characterized in that: the outer fixed surface of joint post (33) is connected with pull rod (35), the spout with pull rod (35) looks adaptation is seted up to the surface of sleeve (32), pull rod (35) are through the spout and sleeve (32) sliding connection of sleeve (32).
7. The water collector with a floating structure according to claim 1, characterized in that: the surface mounting who stores bucket (4) has valve (5), motor (61) fixed connection is at the surface of storing bucket (4), the output fixedly connected with clearance pole (62) of motor (61), clearance pole (62) fixed connection is at the surface of dead lever (63), dead lever (63) rotate to be connected at the interior diapire of storing bucket (4).
CN202222631068.2U 2022-10-08 2022-10-08 Water quality collector with floating structure Active CN218381858U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222631068.2U CN218381858U (en) 2022-10-08 2022-10-08 Water quality collector with floating structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222631068.2U CN218381858U (en) 2022-10-08 2022-10-08 Water quality collector with floating structure

Publications (1)

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CN218381858U true CN218381858U (en) 2023-01-24

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115824722A (en) * 2023-02-15 2023-03-21 深圳骏信环境科技有限公司 Water quality water body environment and impurity content detection system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115824722A (en) * 2023-02-15 2023-03-21 深圳骏信环境科技有限公司 Water quality water body environment and impurity content detection system
CN115824722B (en) * 2023-02-15 2023-05-09 深圳骏信环境科技有限公司 Water quality water body environment and impurity content detecting system

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