CN113218863A - Soil detection box and using method thereof - Google Patents

Soil detection box and using method thereof Download PDF

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Publication number
CN113218863A
CN113218863A CN202110348210.XA CN202110348210A CN113218863A CN 113218863 A CN113218863 A CN 113218863A CN 202110348210 A CN202110348210 A CN 202110348210A CN 113218863 A CN113218863 A CN 113218863A
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detection
shell
sample
standard
soil
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杨帅
何孝磊
罗书亮
柏红艳
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Anhui Huameng Testing Technology Co ltd
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Anhui Huameng Testing Technology Co ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/25Colour; Spectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
    • G01N21/31Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • G01N2021/0106General arrangement of respective parts
    • G01N2021/0112Apparatus in one mechanical, optical or electronic block

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
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  • General Health & Medical Sciences (AREA)
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  • Sampling And Sample Adjustment (AREA)

Abstract

The invention discloses a soil detection box and a using method thereof, belonging to the technical field of soil detection, and comprising a box body, a box cover and a soil processor, wherein the box cover is connected with the box body, the box cover comprises a first shell, a fixed template, a first storage chamber, a first lock catch, a tightening wheel, a first limit belt and a first clamping block, the fixed template is fixedly connected in the first shell, the fixed template is provided with a plurality of first storage chambers, the side surface of the first shell is provided with the first lock catch, the box body comprises a second shell, a touch screen, a handle, a second lock catch, a corner support, a detection device and an object placing device, the second shell is provided with the touch screen and the detection device, the touch screen is provided with a waterproof membrane, the second shell is internally provided with a power supply, the bottom surface of the second shell is provided with a first fixed disk, the first fixed disk is provided with a first mounting hole, the height of detection case can be adjusted to the cooperation detection support, makes things convenient for the measurement personnel to operate.

Description

Soil detection box and using method thereof
Technical Field
The invention belongs to the technical field of soil detection; in particular to a soil detection box and a using method thereof.
Background
With the development and progress of society, because the environmental health has decisive significance to human existence, therefore, people pay more and more attention to the treatment and the monitoring of environmental pollution, in environmental protection detection, have the significance to the detection of soil, can effectively explore the water content in the soil and the proportion of heavy metal and harmful substance in the soil through soil detection to the condition that soil is polluted is directly perceived to show. In the present technology, environmental protection to soil is mostly sampled in advance, is carried out in the laboratory afterwards, because to come and go the laboratory process loaded down with trivial details, and produce the change easily in the sample is transported, influences and detects the precision.
The patent that publication is CN111505244A discloses a soil detection case for environmental protection, including the main tank body, control box, battery, soil moisture detection probe, motor and pump, the top of the main tank body articulates there is the case lid, and has evenly sewed up the placing bag on the top inner wall of case lid, it has the isolation apron to articulate on the front side inner wall of case lid, welded fastening has the cover piece on the rear side inner wall of case lid, and the inside of cover piece inserts and is equipped with the restriction piece, the restriction piece is inserted and is established the inside one end fixed mounting of cover piece and have the reed.
According to the invention, the probe outer protective shell is wrapped on the outer side of the soil moisture detection probe to protect the probe outer protective shell, and the spiral blade is arranged on the outer side of the probe outer protective shell, so that the probe outer protective shell can be rotated to the ground through the rotation of the spiral blade when rotating, the soil moisture detection probe can be easily inserted into the ground, and the soil moisture detection misalignment of the device on the soil moisture detection caused by the fact that the soil moisture detection probe cannot be inserted into the ground is effectively prevented.
Disclosure of Invention
The invention aims to provide a soil detection box and a using method thereof, which are used for solving the problems.
The purpose of the invention can be realized by the following technical scheme:
a soil detection box comprises a box body, a box cover and a soil processor, wherein the box cover is connected with the box body, the box cover comprises a first shell, a fixed template, a first storage chamber, a first lock catch, a tightening wheel, a first limiting belt and a first clamping block, the fixed template is fixedly connected in the first shell, a plurality of first storage chambers are arranged on the fixed template, the first lock catch is arranged on the side surface of the first shell, the box body comprises a second shell, a touch screen, a handle, a second lock catch, an angle support, a detection device and an object placing device, the touch screen and the detection device are arranged on the second shell, a waterproof film is arranged on the touch screen, a power supply is arranged in the second shell, the detection device comprises a first flip cover and a detection disc, a plurality of detection grooves are arranged on the detection disc, the first flip cover is movably connected on the surface of the second shell, and the first flip cover corresponds to the detection disc, the side surface of the second casing is provided with a handle and a second lock catch, and the second lock catch is matched with the first lock catch.
Further, fixed die plate one side is equipped with a plurality of and tightens up the wheel, first spacing area one end is around on tightening up the wheel, the fixed die plate opposite side is equipped with the first chucking piece of a plurality of, first chucking piece cooperatees with the first spacing area other end.
Furthermore, a plurality of corner supports are arranged on the bottom surface of the second shell.
Furthermore, a first fixed disk is arranged on the bottom surface of the second shell, and a first mounting hole is formed in the first fixed disk.
Further, be equipped with in the second shell and put the thing device, it includes bottom plate, standard plate, roof and telescoping device to put the thing device, bottom plate fixed connection is in second shell bottom, the telescoping device cooperatees with bottom plate, standard plate and roof, be equipped with the second on the standard plate and store up the room.
The soil processor is respectively connected with a login module, a data analysis module, a storage module and a driving module, the login module is used for a client to login an account, the data analysis module is used for analyzing the data of a sample placed in a detection groove, the specific analysis method comprises the steps of placing the processed sample, blank liquid and standard liquid into the detection groove, closing a first flip cover, clicking on a touch screen to start collection, obtaining the absorbance of the sample and a high-definition image of the sample, carrying out image preprocessing on the high-definition image, and marking the image after the image preprocessing as a sample gray image; acquiring a standard gray image, acquiring a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, a detection environment, the sample weight and the absorbance of the sample, marking the integrated values as input data, acquiring a prediction model, inputting the input data into the prediction model, acquiring an output result, marking the output result as a prediction label, wherein the prediction label is a state label corresponding to the input data, and the state label comprises that the soil detection data exceeds the standard and the soil detection data does not exceed the standard; the driving module is used for controlling the operation of the object placing device.
Furthermore, a client logs in an account through a login module and controls the operation of the object placing device through a driving module; and putting the processed sample, the blank liquid and the standard liquid into a detection groove, closing the first turnover cover, and carrying out detection analysis on the sample.
The invention has the beneficial effects that: a fixed template is fixedly connected in the first shell, a plurality of first storage chambers are arranged on the fixed template, and the first storage chambers are arranged into different shapes according to use requirements and customer requirements and are used for storing detection tools which may be used, so that the storage box is avoided, and the detection burden is increased; the side surface of the first shell is provided with a first lock catch, one side of the fixed template is provided with a plurality of tightening wheels, one end of the first limit belt is wound on the tightening wheels, the other side of the fixed template is provided with a plurality of first clamping blocks, the first clamping blocks are matched with the other end of the first limit belt, the other end of the first limit belt is pulled out to pull the first limit belt out to be hung on the first clamping blocks, the first limit belt is prevented from retracting, meanwhile, detection tools in the first storage chamber can be further prevented from falling down to cause damage of the detection tools, and unnecessary troubles for detection work are avoided;
the detection device comprises a first flip cover and a detection disc, a plurality of detection grooves are formed in the detection disc and used for containing detection liquid, the first flip cover is movably connected to the surface of the second shell and corresponds to the detection disc and used for covering the detection disc, the influence of sundries and light on detection is avoided, and the detection accuracy is guaranteed; the bottom surface of the second shell is provided with a plurality of angle supports which are used for adjusting the flatness of the second shell, so that the second shell is leveled, the detection accuracy is improved, and the detection box is unstable due to uneven field ground surface, and the detection is influenced; the bottom surface of the second shell is provided with the first fixing disc, the first fixing disc is provided with the first mounting hole, the height of the detection box can be adjusted by matching with the detection support, the operation of detection personnel is facilitated, and the detection support can use supports such as a total station triangular support and a leveling instrument triangular support; the storage space of the detection box can be further increased by arranging the object placing device, and the space utilization rate of the detection box is increased;
analyzing the sample data put into the detection groove through a data analysis module, putting the processed sample, the blank liquid and the standard liquid into the detection groove, closing the first flip cover, clicking on the touch screen to start collection, obtaining the absorbance of the sample and a high-definition image of the sample, carrying out image preprocessing on the high-definition image, and marking the image after the image preprocessing as a sample gray image; the method comprises the steps of obtaining a standard gray image, obtaining a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, a detection environment, the sample weight and the absorbance of the sample, marking the integrated values as input data, obtaining a prediction model, inputting the input data into the prediction model, obtaining an output result, marking the output result as a prediction label, wherein the prediction label is a state label corresponding to the input data, the state label comprises that soil detection data exceeds the standard and the soil detection data does not exceed the standard, comprehensively considering various factors, judging whether the detection data exceeds the standard or not, and increasing the detection accuracy.
Drawings
In order to facilitate understanding for those skilled in the art, the present invention will be further described with reference to the accompanying drawings.
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the storage device according to the present invention;
FIG. 3 is a schematic diagram of a standard plate structure according to the present invention;
FIG. 4 is a schematic view of the bottom surface of the second housing of the present invention;
FIG. 5 is a schematic block diagram of a detection system of the present invention.
In the figure: 1. a box body; 101. a second housing; 102. a touch screen; 103. a handle; 104. a second lock catch; 105. a corner support; 106. a first fixed disk; 107. a first mounting hole; 2. a box cover; 201. a first housing; 202. fixing the template; 203. a first reservoir chamber; 204. a first lock catch; 205. a tightening wheel; 206. a first limit belt; 207. a first clamping block; 3. a detection device; 301. a first flip cover; 302. detecting a disc; 303. a detection tank; 4. a placement device; 401. a base plate; 402. a standard plate; 403. a top plate; 404. a second reservoir chamber; 5. a telescoping device; 501. a first telescopic rod; 502. a second telescopic rod; 503. and a third telescopic rod.
Detailed Description
As shown in fig. 1-5, in the first embodiment: a soil detection box comprises a box body 1, a box cover 2 and a soil processor, wherein the box cover 2 is connected with the box body 1, the box cover 2 comprises a first shell 201, a fixed template 202, a first storage chamber 203, a first lock catch 204, tightening wheels 205, a first limit belt 206 and a first clamping block 207, the fixed template 202 is fixedly connected in the first shell 201, the fixed template 202 is provided with a plurality of first storage chambers 203, the first storage chambers 203 can be set into different shapes according to use requirements and customer requirements and are used for storing detection tools which may be used, such as test tubes, beakers, droppers and other detection tools, the side surface of the first shell 201 is provided with the first lock catch 204, one side of the fixed template 202 is provided with a plurality of tightening wheels 205, one end of the first limit belt 206 is wound on the tightening wheels 205, the principle of the measuring tape is the same as that of the measuring tape, the other end of the first limit belt 206 can be pulled out, and the tightening wheels 205 rotate, increasing the pulling force on the first limit belt 206, when the other end of the first limit belt 206 is loosened, the first limit belt 206 is rewound and recovered on the tightening wheel 205, the other side of the fixed template 202 is provided with a plurality of first clamping blocks 207, the first clamping blocks 207 are matched with the other end of the first limit belt 206, the other end of the first limit belt 206 is pulled to pull out the first limit belt 206 and hang on the first clamping blocks 207, the first limit belt 206 is prevented from retracting, meanwhile, the detection tools in the first storage chamber 203 can be further prevented from falling, the detection tools are damaged, and unnecessary troubles brought to detection work are avoided;
the box body 1 comprises a second shell 101, a touch screen 102, a handle 103, a second lock catch 104, an angle support 105, a detection device 3 and an object placing device 4, the touch screen 102 and the detection device 3 are arranged on the second shell 101, a waterproof film is arranged on the touch screen 102, a power supply is arranged in the second shell 101, the detection device 3 comprises a first flip cover 301 and a detection plate 302, a plurality of detection grooves 303 are formed in the detection plate 302, the detection grooves 303 are used for containing detection liquid, the first flip cover 301 is movably connected to the surface of the second shell 101, the first flip cover 301 corresponds to the detection plate 302 and is used for covering the detection plate 302, the influence of sundries entering and light rays on detection is avoided, the handle 103 and the second lock catch 104 are arranged on the side surface of the second shell 101, and the second lock catch 104 is matched with the first lock catch 204.
The article placing device 4 is arranged in the second casing 101, the article placing device 4 comprises a bottom plate 401, standard plates 402, a top plate 403 and a telescopic device 5, the bottom plate 401 is fixedly connected to the bottom of the second casing 101, the telescopic device 5 comprises a first telescopic rod 501, a second telescopic rod 502 and a third telescopic rod 503, the telescopic device 5 is matched with the bottom plate 401, the standard plates 402 and the top plate 403, the specific matching mode is that a first telescopic rod 501 is connected between the bottom plate 401 and the standard plates 402, a second telescopic rod 502 is connected between the two standard plates 402, further, the number of the standard plates 402 and the second telescopic rods 502 can be increased according to requirements, the number of articles to be stored is increased, the third telescopic rod 503 is connected between the standard plates 402 and the top plate 403, the first telescopic rod 501, the second telescopic rod 502 and the third telescopic rod are connected with each other, the first telescopic rod 501 extends to drive the standard plates 402 to ascend, and after the first telescopic rod 501 extends, the second telescopic rod 502 extends to drive the other standard plate 402 to rise, after the second telescopic rod 502 extends, the third telescopic rod 503 extends to drive the top plate 403 to rise, the standard plate 402 is provided with a second storage chamber 404, and the second storage chamber 404 can be set into different shapes according to use requirements and customer requirements and used for storing detection tools which may be used;
the soil processor is respectively connected with the login module, the data analysis module, the storage module and the driving module, the login module is used for a client to login an account, the specific login method is that the touch screen 102 is opened, the login module enters the account to log in, the data analysis module is used for analyzing sample data placed in the detection groove 303, the specific analysis method is that a processed sample, blank liquid and standard liquid are placed in the detection groove 303, the processed sample is a solution obtained through reaction processing, the first flip cover 301 is closed, the touch screen 102 is clicked to start collecting, the absorbance of the sample and a high-definition image of the sample are obtained, the high-definition image is subjected to image preprocessing, and the image after the image preprocessing is marked as a sample gray image; the image preprocessing comprises image segmentation, image denoising, image enhancement and gray level transformation; acquiring a standard gray image, wherein the standard gray image is a standard color gray image used for color comparison with a sample to obtain a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, a detection environment, the sample weight and the absorbance of the sample and marking as input data, wherein the detection environment is the temperature, the wind speed and the humidity of a place where the sample is detected, acquiring a prediction model, inputting the input data into the prediction model to acquire an output result and marking as a prediction label, the prediction label is a state label corresponding to the input data, and the state label comprises that the soil detection data exceeds the standard and the soil detection data does not exceed the standard;
further, the specific acquisition method of the prediction model comprises the following steps:
step S11: acquiring historical soil detection data through a storage module, wherein the historical soil detection data comprises a sample gray value, a standard gray value, a detection environment, a sample weight and an absorbance of a sample;
step S12: setting a state label for the soil historical detection data;
step S13: constructing an artificial intelligence model; the artificial intelligence model comprises an error reverse propagation neural network, an RBF neural network and a deep convolution neural network, historical data of the rail vehicle and corresponding state labels are divided into a training set, a test set and a check set according to a set proportion, and the set proportion comprises 2: 1: 1. 3: 2: 1 and 3: 1: 1;
step S14: training, testing and checking the artificial intelligence model through a training set, a testing set and a checking set, and marking the trained artificial intelligence model as a prediction model;
the driving module is used for controlling the operation of the object placing device 4, when the up key is clicked through the touch screen 102, the soil processor generates an up signal and sends the up signal to the driving module, the driving module controls the extension device 5 to extend, the first telescopic rod 501 extends to drive the standard plate 402 to rise, after the first telescopic rod 501 extends, the second telescopic rod 502 extends to drive the other standard plate 402 to rise, after the second telescopic rod 502 extends, the third telescopic rod 503 extends to drive the top plate 403 to rise, when the down key is clicked through the touch screen 102, the soil processor generates a down signal and sends the down signal to the driving module, the driving module controls the extension device 5 to contract, the first telescopic rod 501 contracts to drive the standard plate 402 to fall, after the first telescopic rod 501 contracts, the second telescopic rod 502 contracts to drive the other standard plate 402 to fall, after the second telescopic rod 502 is completely retracted, the third telescopic rod 503 is retracted to drive the top plate 403 to be lowered.
Example two: the difference between the present embodiment and the first embodiment is that the box body 1 includes a second housing 101, a touch screen 102, a handle 103, a second latch 104, a corner support 105, a detection device 3, and an article placing device 4, the second housing 101 is provided with the touch screen 102 and the detection device 3, the touch screen 102 is provided with a waterproof film, the second housing 101 is provided with a power supply, the detection device 3 includes a first flip 301 and a detection plate 302, the detection plate 302 is provided with a plurality of detection grooves 303, the detection grooves 303 are used for holding detection liquid, the first flip 301 is movably connected to the surface of the second housing 101, the first flip 301 corresponds to the detection plate 302 and is used for covering the detection plate 302 to avoid the influence of the entry of impurities and the light on the detection, the side of the second housing 101 is provided with the handle 103 and the second latch 104, the second latch 104 is matched with the first latch 204, the bottom of the second housing 101 is provided with a plurality of corner supports 105, the corner supports 105 are used for adjusting the flatness of the second housing 101, the bottom surface 101 of the second shell is provided with a plurality of corner supports 105, so that the second shell 101 is leveled, the detection accuracy is improved, and the detection box is unstable due to uneven ground in the field, and the detection is influenced.
Example three: the difference between the present embodiment and the second embodiment is that the box body 1 includes a second housing 101, a touch screen 102, a handle 103, a second latch 104, a corner support 105, a detection device 3, and an article placing device 4, the second housing 101 is provided with the touch screen 102 and the detection device 3, the touch screen 102 is provided with a waterproof film, the second housing 101 is provided with a power supply, the detection device 3 includes a first flip 301 and a detection plate 302, the detection plate 302 is provided with a plurality of detection grooves 303, the detection grooves 303 are used for holding detection liquid, the first flip 301 is movably connected to the surface of the second housing 101, the first flip 301 corresponds to the detection plate 302 and is used for covering the detection plate 302 to avoid the influence of the entry of impurities and the light on the detection, the side of the second housing 101 is provided with the handle 103 and the second latch 104, the second latch 104 is matched with the first latch 204, the bottom of the second housing 101 is provided with a plurality of corner supports 105, the corner supports 105 are used for adjusting the flatness of the second housing 101, further, second shell 101 bottom surface is equipped with first fixed disk 106, is equipped with first mounting hole 107 on the first fixed disk 106, and the cooperation detects the height that the support can adjust the detection case, makes things convenient for the measurement personnel to operate, detects the support and can use supports such as total powerstation triangular supports, surveyor's level triangular supports.
A use method of a soil detection box comprises the following steps:
the method comprises the following steps: a client logs in an account through a login module and controls the operation of the object placing device 4 through a driving module; when the touch screen 102 clicks the ascending key, the soil processor generates an ascending signal and sends the ascending signal to the driving module, the driving module controls the expansion device 5 to extend, the first expansion link 501 extends to drive the standard plate 402 to rise, when the first expansion link 501 extends completely, the second expansion link 502 extends to drive the other standard plate 402 to rise, when the second expansion link 502 extends completely, the third expansion link 503 extends to drive the top plate 403 to rise, when the descending key is clicked through the touch screen 102, the soil processor generates a descending signal and sends the descending signal to the driving module, the driving module controls the expansion device 5 to contract, the first expansion link 501 contracts to drive the standard plate 402 to fall, when the first expansion link 501 contracts completely, the second expansion link 502 contracts to drive the other standard plate 402 to fall, when the second expansion link 502 contracts completely, third telescopic link 503 begins the shrink, drives roof 403 and reduces, when needs, can cooperate the height that detects support adjustment detection case, makes things convenient for the measurement personnel to operate, and the detection support can use supports such as total powerstation A-frame, surveyor's level A-frame.
Step two: putting the processed sample, the blank liquid and the standard liquid into a detection groove 303, closing the first turnover cover 301, and detecting and analyzing the sample; clicking on the touch screen 102 to start collection, obtaining the absorbance of the sample and a high-definition image of the sample, performing image preprocessing on the high-definition image, and marking the image after the image preprocessing as a sample gray image; acquiring a standard gray image to obtain a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, the detection environment, the sample weight and the absorbance of the sample and marking as input data, and acquiring soil historical detection data through a storage module, wherein the soil historical detection data comprises the sample gray value, the standard gray value, the detection environment, the sample weight and the absorbance of the sample; setting a state label for the soil historical detection data; constructing an artificial intelligence model; the artificial intelligence model comprises an error reverse propagation neural network, an RBF neural network and a deep convolution neural network, historical data of the rail vehicle and corresponding state labels are divided into a training set, a test set and a check set according to a set proportion, and the set proportion comprises 2: 1: 1. 3: 2: 1 and 3: 1: 1; training, testing and checking the artificial intelligence model through a training set, a testing set and a checking set, and marking the trained artificial intelligence model as a prediction model; and inputting the input data into a prediction model to obtain an output result and marking the output result as a prediction label, wherein the prediction label is a state label corresponding to the input data, and the state label comprises that the soil detection data exceeds the standard and the soil detection data does not exceed the standard.
When the detection device is used, a customer logs in an account number through a login module, the data analysis module analyzes sample data placed in a detection groove 303, processed samples, blank liquid and standard liquid are placed in the detection groove 303, the first turnover cover 301 is closed, the touch screen 102 is clicked to start collecting, the absorbance of the samples and high-definition images of the samples are obtained, the high-definition images are subjected to image preprocessing, and the images after the image preprocessing are marked as sample gray images; acquiring a standard gray image to obtain a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, the detection environment, the sample weight and the absorbance of the sample and marking as input data, and acquiring soil historical detection data through a storage module, wherein the soil historical detection data comprises the sample gray value, the standard gray value, the detection environment, the sample weight and the absorbance of the sample; setting a state label for the soil historical detection data; constructing an artificial intelligence model; the artificial intelligence model comprises an error reverse propagation neural network, an RBF neural network and a deep convolution neural network, historical data of the rail vehicle and corresponding state labels are divided into a training set, a test set and a check set according to a set proportion, and the set proportion comprises 2: 1: 1. 3: 2: 1 and 3: 1: 1; training, testing and checking the artificial intelligence model through a training set, a testing set and a checking set, and marking the trained artificial intelligence model as a prediction model; inputting input data into a prediction model to obtain an output result and marking the output result as a prediction label, wherein the prediction label is a state label corresponding to the input data, and the state label comprises that soil detection data exceeds the standard and the soil detection data does not exceed the standard;
the driving module is used for controlling the operation of the object placing device 4, when the up key is clicked through the touch screen 102, the soil processor generates an up signal and sends the up signal to the driving module, the driving module controls the extension device 5 to extend, the first telescopic rod 501 extends to drive the standard plate 402 to rise, after the first telescopic rod 501 extends, the second telescopic rod 502 extends to drive the other standard plate 402 to rise, after the second telescopic rod 502 extends, the third telescopic rod 503 extends to drive the top plate 403 to rise, when the down key is clicked through the touch screen 102, the soil processor generates a down signal and sends the down signal to the driving module, the driving module controls the extension device 5 to contract, the first telescopic rod 501 contracts to drive the standard plate 402 to fall, after the first telescopic rod 501 contracts, the second telescopic rod 502 contracts to drive the other standard plate 402 to fall, after the second telescopic link 502 finishes the shrink, third telescopic link 503 begins the shrink, drives roof 403 and reduces, when needs, can cooperate the height that detects support adjustment detection case, makes things convenient for the measurement personnel to operate, detects the support and can use supports such as total powerstation triangular supports, surveyor's level triangular supports.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like, indicate orientations and positional relationships based on those shown in the drawings, and are used only for convenience of description and simplicity of description, and do not indicate or imply that the equipment or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be considered as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
The foregoing is merely exemplary and illustrative of the present invention and various modifications, additions and substitutions may be made by those skilled in the art to the specific embodiments described without departing from the scope of the invention as defined in the following claims.

Claims (7)

1. The soil detection box is characterized by comprising a box body (1), a box cover (2) and a soil processor, wherein the box cover (2) is connected with the box body (1), the box cover (2) comprises a first shell (201), a fixed template (202), a first storage chamber (203), a first lock catch (204), a tightening wheel (205), a first limit belt (206) and a first clamping block (207), the fixed template (202) is fixedly connected in the first shell (201), the fixed template (202) is provided with a plurality of first storage chambers (203), the side surface of the first shell (201) is provided with the first lock catch (204), the box body (1) comprises a second shell (101), a touch screen (102), a handle (103), a second lock catch (104), an angle support (105), a detection device (3) and an object placing device (4), the touch screen (102) and the detection device (3) are arranged on the second shell (101), be equipped with the water proof membrane on touch-control screen (102), be equipped with the power in second shell (101), detection device (3) include first flip (301) and detect dish (302), it is equipped with a plurality of detection grooves (303) on dish (302) to detect, first flip (301) swing joint is on second shell (101) surface, and first flip (301) with detect dish (302) corresponding, second shell (101) side is equipped with handle (103) and second hasp (104), second hasp (104) cooperate with first hasp (204).
2. A soil detection box according to claim 1, wherein one side of the fixed form (202) is provided with a plurality of tightening wheels (205), one end of the first limiting belt (206) is wound on the tightening wheels (205), the other side of the fixed form (202) is provided with a plurality of first clamping blocks (207), and the first clamping blocks (207) are matched with the other end of the first limiting belt (206).
3. A soil detection kit according to claim 1, wherein the second housing (101) is provided with a plurality of corner supports (105) on the underside thereof.
4. A soil detection kit according to claim 1, wherein the second housing (101) is provided at a bottom surface thereof with a first fixing plate (106), and the first fixing plate (106) is provided with a first mounting hole (107).
5. A soil detection box according to claim 1, characterized in that a storage device (4) is arranged in the second housing (101), the storage device (4) comprises a bottom plate (401), a standard plate (402), a top plate (403) and a telescopic device (5), the bottom plate (401) is fixedly connected to the bottom of the second housing (101), the telescopic device (5) is matched with the bottom plate (401), the standard plate (402) and the top plate (403), and a second storage chamber (404) is arranged on the standard plate (402).
6. The soil detection box according to claim 1, wherein the soil processor is respectively connected with a login module, a data analysis module, a storage module and a driving module, the login module is used for a customer to log in an account, the data analysis module is used for analyzing sample data put in a detection groove (303), the specific analysis method comprises the steps of putting a processed sample, blank liquid and standard liquid in the detection groove (303), closing a first flip cover (301), clicking on a touch screen (102) to start collection, obtaining the absorbance of the sample and a high-definition image of the sample, carrying out image preprocessing on the high-definition image, and marking the image after the image preprocessing as a sample gray image; acquiring a standard gray image, acquiring a sample gray value and a standard gray value, integrating the sample gray value, the standard gray value, a detection environment, the sample weight and the absorbance of the sample, marking the integrated values as input data, acquiring a prediction model, inputting the input data into the prediction model, acquiring an output result, marking the output result as a prediction label, wherein the prediction label is a state label corresponding to the input data, and the state label comprises that the soil detection data exceeds the standard and the soil detection data does not exceed the standard; the driving module is used for controlling the operation of the object placing device (4).
7. The use method of the soil detection box is characterized in that a customer logs in an account through a login module and controls the operation of a storage device (4) through a driving module; and putting the processed sample, the blank liquid and the standard liquid into a detection groove (303), closing the first turnover cover (301), and performing detection analysis on the sample.
CN202110348210.XA 2021-03-31 2021-03-31 Soil detection box and using method thereof Pending CN113218863A (en)

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CN208171985U (en) * 2018-05-02 2018-11-30 王丽娜 A kind of portable environment engineering contaminated soil detection device
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CN210391945U (en) * 2019-06-11 2020-04-24 西安医学院 Aseptic type food that can independently place sample save set for testing
CN111505244A (en) * 2020-05-01 2020-08-07 杜大庆 Soil detection case for environmental protection
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Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103063663A (en) * 2012-12-24 2013-04-24 大连大学 Testing method for total phosphorus content in soil based on image analysis
CN206096117U (en) * 2016-07-07 2017-04-12 宋宇加 Portable environmental engineering pollutes soil detection device
CN107240089A (en) * 2017-04-17 2017-10-10 戴斌 A kind of concentration detection method of analyte
CN207932229U (en) * 2017-12-27 2018-10-02 中国热带农业科学院湛江实验站 A kind of food safety detection case
CN208171985U (en) * 2018-05-02 2018-11-30 王丽娜 A kind of portable environment engineering contaminated soil detection device
CN208276877U (en) * 2018-06-13 2018-12-25 广东电网有限责任公司 Tool box and electric power overhaul device
CN209506403U (en) * 2018-10-08 2019-10-18 武汉市第四医院(武汉市普爱医院、武汉市骨科医院) A kind of physical examination test tube storage box
CN210391945U (en) * 2019-06-11 2020-04-24 西安医学院 Aseptic type food that can independently place sample save set for testing
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Application publication date: 20210806