Digital water quality acquisition device
Technical Field
The utility model belongs to the technical field of water quality acquisition, and particularly relates to a digital water quality acquisition device.
Background
The water quality monitoring 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 monitoring range is very wide, including uncontaminated and contaminated natural waters (rivers, lakes, seas and groundwater) and various industrial drains, etc. The main monitoring items can be divided into two major categories, one is comprehensive index reflecting water quality condition, such as temperature, chromaticity, turbidity, pH value, conductivity, suspended matters, dissolved oxygen, chemical oxygen demand, biochemical oxygen demand and the like, and the other is toxic substances such as phenol, cyanogen, arsenic, lead, chromium, cadmium, mercury, organic pesticides and the like. In order to objectively evaluate the water quality of rivers and oceans, it is sometimes necessary to measure the flow rate and the flow quantity in addition to the above-mentioned monitoring items.
The existing digital water quality acquisition device has the defects that most of the digital water quality acquisition device cannot control the acquired depth, so that the water quality detection result is not accurate enough, the use value of the device is reduced, and the digital water quality acquisition device is provided.
Disclosure of utility model
The utility model aims to provide a digital water quality acquisition device, which aims to solve the problem that most of the background art cannot control the acquisition depth.
In order to achieve the purpose, the digital water quality acquisition device comprises a base and a fixed column, wherein the top of the base is provided with the fixed column, the fixed column is fixedly connected with the base, one side of the fixed column is embedded with a first sliding groove, a cross rod is arranged in the first sliding groove and is in sliding connection with the first sliding groove, the bottom of the cross rod is embedded with a second sliding groove, a sliding block is arranged in the second sliding groove and is in sliding connection with the second sliding groove, the bottom of the sliding block is provided with a fixed rod, the surface of the fixed rod is embedded with a water level probe, the water level probe is fixedly connected with the fixed rod, the bottom of the fixed rod is provided with a fixed frame, the inner side of the fixed frame is provided with a placing groove, and the inside of the placing groove is provided with a sampling cup.
Preferably, an electric telescopic rod is arranged at the top of the inner side of the fixing frame, a sealing plug is arranged at the output end of the electric telescopic rod, and the sealing plug is detachably connected with the electric telescopic rod.
Preferably, a first threaded rod is arranged in the first sliding groove, the first threaded rod is connected with the cross rod through threads, and a first motor is arranged at one end of the first threaded rod.
Preferably, a second threaded rod is arranged in the second sliding groove, the second threaded rod is connected with the sliding block through threads, and a second motor is arranged at one end of the second threaded rod.
Preferably, a push rod is arranged on one side of the top of the base, and the push rod is fixedly connected with the base.
Preferably, the bottom of base is equipped with the universal wheel, the universal wheel is equipped with four, is located four corners of base bottom respectively.
Compared with the prior art, the utility model has the beneficial effects that:
1. Through the first spout, horizontal pole, second spout, slider, dead lever, water level probe, mount, standing groove and the sampling cup that are equipped with, realized the degree of depth control function of the device, can take a sample the water of different degree of depth to the accuracy of testing result has been improved.
2. Through the electric telescopic rod and the sealing plug that are equipped with, realized the sealing to the sampling cup, when the sampling cup removes to suitable position under water, start electric telescopic rod, take out the sealing plug from the inside of sampling cup, begin the sample, after the sample is accomplished, start electric telescopic rod again and seal the sampling cup, alright accomplish the sample.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the bottom view of the present utility model;
Fig. 3 is a schematic plan view of the present utility model.
In the figure, 1, a base; 2, a first chute, 3, a cross rod, 4, a second chute, 5, a sliding block, 6, a fixed rod, 7, a water level probe, 8, a fixed frame, 9, a placing groove, 10, a sampling cup, 11, an electric telescopic rod, 12, a sealing plug, 13, a first threaded rod, 14, a first motor, 15, a second threaded rod, 16, a second motor, 17, a fixed column, 18, a push rod, 19 and a universal wheel.
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 utility model provides a technical scheme that the digital water quality acquisition device comprises a base 1 and a fixed column 17, wherein the top of the base 1 is provided with the fixed column 17, the fixed column 17 is fixedly connected with the base 1, one side of the fixed column 17 is embedded with a first chute 2, a cross rod 3 is arranged in the first chute 2, the cross rod 3 is in sliding connection with the first chute 2, the bottom of the cross rod 3 is embedded with a second chute 4, the inside of the second chute 4 is provided with a sliding block 5, the sliding block 5 is in sliding connection with the second chute 4, the bottom of the sliding block 5 is provided with a fixed rod 6, the surface of the fixed rod 6 is embedded with a water level probe 7, the water level probe 7 is fixedly connected with the fixed rod 6, the bottom of the fixed rod 6 is provided with a fixed frame 8, the inner side of the fixed frame 8 is provided with a placing groove 9, and the inside of the placing groove 9 is provided with a sampling cup 10.
In this embodiment, when using this digital water quality acquisition device, make horizontal pole 3 slide in the inside of first spout 2 to drive dead lever 6 and insert in the aquatic, make slider 5 slide in the inside of second spout 4, can adjust the position of dead lever 6, when dead lever 6 carries sampling cup 10 to get into the submarine, water level probe 7 can detect the degree of depth of entering, thereby realize the function of degree of depth control, improved the accuracy of testing result, through mount 8 and standing groove 9 that are equipped with, realized the fixed to sampling cup 10, make it more convenient when taking a sample.
Specifically, the inboard top of mount 8 is equipped with electric telescopic handle 11, electric telescopic handle 11's output is equipped with sealing plug 12, sealing plug 12 and electric telescopic handle 11 can dismantle the connection, the inside of first spout 2 is equipped with first threaded rod 13, first threaded rod 13 and horizontal pole 3 pass through threaded connection, the one end of first threaded rod 13 is equipped with first motor 14, the inside of second spout 4 is equipped with second threaded rod 15, second threaded rod 15 and slider 5 pass through threaded connection, the one end of second threaded rod 15 is equipped with second motor 16, top one side of base 1 is equipped with push rod 18, push rod 18 and base 1 fixed connection, the bottom of base 1 is equipped with universal wheel 19, universal wheel 19 is equipped with four, be located four corners of base 1 bottom respectively.
In this embodiment, through the electric telescopic rod 11 and the sealing plug 12 that are equipped with, the sealing to sampling cup 10 has been realized, when sampling cup 10 removes suitable position under water, start electric telescopic rod 11, take out sealing plug 12 from sampling cup 10's inside, begin the sample, after the sample is accomplished, start electric telescopic rod 11 again and seal sampling cup 10, alright accomplish the sample, go up and down through first threaded rod 13 and the first motor 14 that are equipped with, start first motor 14, drive first threaded rod 13 and rotate, thereby drive the inside slip of horizontal rod 3 at first spout 2, realize the height-adjusting function, through second threaded rod 15 and second motor 16 that are equipped with, the lateral shifting function of sampling cup 10 has been realized, it is more convenient to use, through push rod 18 and universal wheel 19 that are equipped with, the removal for the device has improved convenience.
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.