Water quality detection probe
Technical Field
The utility model relates to the technical field of water quality detection, in particular to a water quality detection probe.
Background
The water quality detection is a process for monitoring and measuring the types of pollutants in a water body, the concentration and the change trend of various pollutants and evaluating the water quality condition. The method is a process of comprehensively analyzing the water body, and judges whether the water body is polluted or not and evaluates the water quality condition by monitoring the concentration and the change trend of various pollutants.
In China patent 202022743493.1, the utility model provides a water quality detection probe, and belongs to the technical field of water quality detection. The technical proposal is as follows: the utility model provides a water quality testing probe, its characterized in that includes hollow casing, the one end outside of casing is provided with external screw thread one, the other end of casing is provided with detection component through threaded connection, detection component from the top down has set gradually light source, slide and detector down, be provided with the light filter between detector and the slide down, have the interval between slide and the slide down, detection component's below is provided with the end cap through threaded connection.
The beneficial effects of the utility model are as follows: the structure is small and exquisite, conveniently carries.
The existing water quality detection probes can be different in water quality of different depths in a river when the water quality detection is carried out on the river and the like in the open air, and the existing water quality detection probes are used for directly conveying the detection probes into the water body when the water quality detection is carried out on the river at different depths, the specific depth of each probe is difficult to grasp and measure, the detection result can be inaccurate, and after the detection is finished, the detection probes are directly exposed to the outside, dust is easy to fall or the detection probes are collided in the carrying and storage processes, and the damage problem can be caused.
Therefore, a water quality detection probe is proposed to solve the above problems.
Disclosure of utility model
In order to make up for the defects of the prior art, the problems that when the existing water quality detection probe detects water quality of a field river and the like, the water quality of different depths in the river possibly has differences, when the existing water quality detection probe detects water quality of different depths in the river, the detection probe is usually directly sent into a water body by a wire, the specific depth of the probe is difficult to grasp and measure, the detection result is possibly inaccurate, and after the detection is finished, the detection probe is directly exposed to the outside, dust is easily dropped or knocked in the carrying and storage processes, and damage is possibly caused are solved.
The technical scheme adopted for solving the technical problems is as follows: the utility model discloses a water quality detection probe, which comprises a first telescopic column, wherein a telescopic component is arranged in the first telescopic column, a depth measurement component is arranged on the side of the first telescopic column, a water quality detection probe is arranged at the bottom end of the telescopic component, a storage component is arranged on the side of the water quality detection probe, the telescopic component comprises a rotating handle, a first gear, a second gear, a lifting threaded rod, a second telescopic column and a limiting slide block, the end part of the rotating handle is fixedly connected with the first gear, the bottom of the first gear is meshed with the second gear, the bottom of the second gear is fixedly connected with the lifting threaded rod, the bottom of the lifting threaded rod is in threaded connection with the second telescopic column, and the side of the second telescopic column is integrally connected with the limiting slide block.
Preferably, the rotation handle forms a transmission structure through the first gear, the second gear and the lifting threaded rod, the first gear and the second gear are arranged vertically, the second telescopic column forms a lifting structure through the lifting threaded rod and the first telescopic column, and the second telescopic column forms a sliding structure through the limiting sliding block and the first telescopic column.
Preferably, the degree of depth measurement subassembly includes degree of depth measurement piece, degree of depth measurement rope, rolling drum, spacing block disc, spacing fixture block, pivot, U type fixed block, handheld handle, the top fixedly connected with degree of depth measurement rope of degree of depth measurement piece, and the avris of degree of depth measurement rope closely laminates there is the rolling drum, the opposite side integration of rolling drum is connected with spacing block disc, and the inside block of spacing block disc is connected with spacing fixture block, the tip rotation of spacing fixture block is connected with the pivot, and the bottom fixedly connected with U type fixed block of pivot to the bottom fixedly connected with handheld handle of U type fixed block.
Preferably, the top of degree of depth measurement rope sets up as an organic wholely with the rolling drum, and rolling drum and handheld handle constitute rotating structure to handheld handle and first telescopic column set up as an organic wholely, spacing fixture block constitutes rotating structure through pivot and U type fixed block, and spacing fixture block constitutes the block structure with spacing block disc.
Preferably, the storage assembly comprises a hinge, a sealing cover plate, a first fixing block, a fixing bolt and a second fixing block, wherein the sealing cover plate is fixedly connected to the bottom of the hinge, the first fixing block is fixedly connected to the side of the sealing cover plate, the fixing bolt is connected to the inner thread of the first fixing block, and the second fixing block is connected to the top thread of the fixing bolt.
Preferably, the sealing cover plate and the first telescopic column form a rotating structure through a hinge, the first fixing block and the second fixing block form a detachable structure through a fixing bolt, and the second fixing block and the first telescopic column are integrally arranged.
The utility model has the advantages that:
1. The water quality detection probe is provided with the telescopic assembly, the second telescopic column can be driven to slide up and down in the first telescopic column by screwing the rotary handle, so that the water quality detection probe is conveniently sent into a water body for detection, and the extending depth is convenient to control;
2. The utility model is provided with the depth measuring assembly, the depth measuring rope is used for conveniently measuring and controlling the depth of the water quality detecting probe extending into the water body, the winding cylinder is rotated for conveniently paying out and winding the depth measuring rope, and the limiting clamping block is arranged for conveniently limiting the position of the winding cylinder by clamping into the limiting clamping disc;
3. The water quality detection probe is provided with the storage component, and the sealing cover plate is arranged at the bottom end of the first telescopic column and can rotate to be closed, so that the water quality detection probe can be conveniently stored in a sealing manner after being retracted into the first telescopic column, and collision in the carrying or storage process is prevented.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained from these drawings without inventive faculty for a person skilled in the art.
FIG. 1 is a schematic perspective view of the utility model in an overall open state;
FIG. 2 is a schematic perspective view of the present utility model in an overall closed state;
FIG. 3 is a schematic perspective view of a telescoping assembly portion of the present utility model;
FIG. 4 is a schematic view of a portion of a telescopic assembly of the present utility model in longitudinal section;
FIG. 5 is a schematic perspective view of a portion of a depth measurement assembly according to the present utility model;
fig. 6 is a schematic perspective view of a housing assembly according to the present utility model.
In the figure: 1. a first telescoping column; 2. a telescoping assembly; 3. a depth measurement assembly; 4. a receiving assembly; 5. a water quality detection probe; 201. rotating the handle; 202. a first gear; 203. a second gear; 204. lifting the threaded rod; 205. a second telescoping column; 206. a limit sliding block; 301. a depth measurement block; 302. a depth measuring rope; 303. a winding cylinder; 304. a limit clamping disc; 305. a limit clamping block; 306. a rotating shaft; 307. u-shaped fixed blocks; 308. a hand grip; 401. a hinge; 402. sealing the cover plate; 403. a first fixed block; 404. a fixing bolt; 405. and a second fixed block.
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.
Example 1
Please refer to fig. 1, a water quality testing probe, including first flexible post 1, the internally mounted of first flexible post 1 has flexible subassembly 2, and the avris of first flexible post 1 is provided with degree of depth measurement subassembly 3, and water quality testing probe 5 is installed to the bottom of flexible subassembly 2, and the avris of water quality testing probe 5 is provided with accomodates subassembly 4.
Referring to fig. 3 and fig. 4, a water quality testing probe, a telescopic assembly 2 is used for controlling lifting of a water quality testing probe 5, a rotating handle 201 forms a transmission structure with a lifting threaded rod 204 through a first gear 202, a second gear 203, the first gear 202 and the second gear 203 are arranged vertically, a second telescopic column 205 forms a lifting structure with a first telescopic column 1 through the lifting threaded rod 204, the second telescopic column 205 forms a sliding structure with the first telescopic column 1 through a limit sliding block 206, and the rotating handle 201 is screwed to drive the second telescopic column 205 to slide up and down in the first telescopic column 1, so that the water quality testing probe 5 is conveniently conveyed into a water body for detection, and the extending depth is convenient to control.
Referring to fig. 1 and 5, a water quality detecting probe, a depth measuring assembly 3 is used for measuring and controlling the depth of a water quality detecting probe 5, the top end of a depth measuring rope 302 and a winding cylinder 303 are integrally arranged, the winding cylinder 303 and a handheld handle 308 form a rotating structure, the handheld handle 308 and a first telescopic column 1 are integrally arranged, a limiting clamping block 305 forms a rotating structure with a U-shaped fixing block 307 through a rotating shaft 306, the limiting clamping block 305 and a limiting clamping disc 304 form a clamping structure, the depth measuring rope 302 is used for conveniently measuring and controlling the depth of the water quality detecting probe 5 extending into a water body, the winding cylinder 303 is rotated to conveniently pay out and wind the depth measuring rope 302, meanwhile, a limiting clamping block 305 is arranged to conveniently limit the position of the winding cylinder 303, and the depth measuring block 301 is used for fixing the bottom end of the depth measuring rope 302.
Referring to fig. 2 and 6, a water quality detecting probe, a housing assembly 4 is used for protecting a water quality detecting probe 5, a sealing cover plate 402 and a first telescopic column 1 form a rotating structure through a hinge 401, a first fixing block 403 and a second fixing block 405 form a detachable structure through a fixing bolt 404, the second fixing block 405 and the first telescopic column 1 are integrally arranged, the sealing cover plate 402 is arranged at the bottom end of the first telescopic column 1 and can rotate and close, so that after the water quality detecting probe 5 is retracted into the first telescopic column 1, the water quality detecting probe 5 is sealed and stored, and collision is prevented in the carrying or housing process.
Working principle: firstly, rotate the rolling drum 303, pay out the degree of depth measurement rope 302, reach the appointed degree of depth to be measured to the scale sign on degree of depth measurement rope 302 top, then rotate spacing fixture block 305, with spacing fixture block 305 card in spacing block disc 304 inside suitable bayonet socket, carry out spacing fixed to rolling drum 303, then rotate rotation handle 201, rotation of rotation handle 201 brings first gear 202 together to rotate, simultaneously first gear 202 again will rotate and give second gear 203, take second gear 203 to rotate together, can take lifting threaded rod 204 to rotate together when second gear 203 rotates, because lifting threaded rod 204 and second telescopic column 205 are threaded connection, and second telescopic column 205 can't rotate owing to receive spacing effect of spacing slider 206, therefore under lifting threaded rod 204's rotation, second telescopic column 205 can move down, until the degree of depth measurement rope 302 is straightened, just reached at this moment, water quality testing probe 5 of second telescopic column 205 bottom can carry out detection to the water body of depths, after the detection, again reverse direction rotation handle 201 rotates, draw back lifting rod 204 through second telescopic column 205 and second telescopic column 205 up and draw back at the fixed column 305, the fixed screw 404 of rotation of the inside of second telescopic column 205, can be rotated by the fixed screw cap plate 404, the fixed screw 404 is rotated to the inside of second telescopic column 205, simultaneously, the fixed screw cap plate is rotated by the fixed at the moment, the inside of the fixed screw cap plate is rotated by the second telescopic column 205, the fixed screw is rotated, and the second telescopic column 205 is rotated, the fixed up and the fixed.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.