CN114636801A - Novel steel slag waste typical sample data information analysis equipment and analysis method thereof - Google Patents

Novel steel slag waste typical sample data information analysis equipment and analysis method thereof Download PDF

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Publication number
CN114636801A
CN114636801A CN202210204803.3A CN202210204803A CN114636801A CN 114636801 A CN114636801 A CN 114636801A CN 202210204803 A CN202210204803 A CN 202210204803A CN 114636801 A CN114636801 A CN 114636801A
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CN
China
Prior art keywords
data information
information analysis
steel slag
hole
slag waste
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CN202210204803.3A
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Chinese (zh)
Inventor
吴韬
李红喆
陈艺珮
杨刚
张铭洁
毛昕漪
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Ningbo Nottingham New Materials Institute Co ltd
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Ningbo Nottingham New Materials Institute Co ltd
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Priority to CN202210204803.3A priority Critical patent/CN114636801A/en
Publication of CN114636801A publication Critical patent/CN114636801A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/20Metals
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0217Mechanical details of casings
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2039Modifications to facilitate cooling, ventilating, or heating characterised by the heat transfer by conduction from the heat generating element to a dissipating body

Abstract

The invention discloses novel steel slag waste typical sample data information analysis equipment and an analysis method thereof, and the novel steel slag waste typical sample data information analysis equipment comprises an analyzer main body, a threading hole, a wire outlet hole, a silica gel heat conducting plate, a metal heat radiating plate, a box body, a heat radiating grid sheet and a heat radiating groove, wherein a touch display screen is arranged at the center of the top of the analyzer main body; the split type heat dissipation device has the advantages that the heat dissipation performance of the device is enhanced, the redundant heat can be quickly conducted to the outside, the risk of overheating and burning of internal electrical components is reduced, the use is safer, the split type mounting structure is adopted, the parts are convenient to disassemble, assemble and replace, the labor intensity of personnel is low, the time and the labor are saved, and the maintenance cost of the device is reduced.

Description

Novel steel slag waste typical sample data information analysis equipment and analysis method thereof
Technical Field
The invention relates to the technical field of analysis of steel slag waste, in particular to novel steel slag waste typical sample data information analysis equipment and an analysis method thereof.
Background
Steel slag is a by-product in the steel-making process, and is composed of various oxides formed by oxidizing impurities in pig iron, such as silicon, manganese, phosphorus, sulfur, and the like in the smelting process, and salts generated by reacting the oxides with a solvent.
The mineral compositions of steel slag are different, and the influence factors are the chemical components and alkalinity of the steel slag. The steel slag as a secondary resource has two main ways of comprehensive utilization, one way is that the steel slag is used as a smelting solvent to be recycled in the plant, thereby not only replacing limestone, but also recovering a large amount of metallic iron and other useful elements from the steel slag; the other is used as a raw material for manufacturing road building materials, building materials or agricultural fertilizers.
The steel slag is not completely unusable solid waste, but also contains a large amount of usable components such as slag steel, calcium oxide, iron, magnesium oxide and the like, and the rest of the unusable components are the steel slag waste.
At present, the available components in the steel slag are recycled mainly by the hot splashing method, the air quenching method, the roller method, the granulating wheel method, the hot smoldering method and other processes in the industry, and the unavailable steel slag waste is properly processed by comparing with the data information of typical samples.
However, the existing steel slag waste typical sample data information analysis equipment has certain disadvantages, and the specific problems are as follows:
(1) most of the existing devices have the problem of insufficient heat dissipation performance, redundant heat generated in the operation process cannot be quickly conducted to the outside, electrical components inside the data information analysis device are easily burnt out due to overheating, and the safety risk is high;
(2) the existing structure is simple, most of data information analysis equipment is exposed in an external environment, the protection performance is poor, the data information analysis equipment is seriously damaged by external force, and the service life of the data information analysis equipment is short;
(3) the existing data information analysis equipment is not easy to disassemble after being installed, parts are difficult to replace, labor intensity of personnel is high, time and labor are wasted, and maintenance cost of the data information analysis equipment is increased;
(4) the existing data adopts a centralized storage form, the storage capacity is limited by the scale of a server, the large-scale storage application requirements of the data cannot be met, the reliability, the usability and the safety of data information are poor, the access efficiency is low, and the management is inconvenient.
Disclosure of Invention
The invention aims to provide novel steel slag waste typical sample data information analysis equipment and an analysis method thereof, and aims to solve the problems of insufficient heat dissipation performance, poor protection performance and difficulty in disassembly after installation in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a novel slag discarded object typical sample data information analysis equipment, includes analysis appearance main part, through wires hole, wire hole, silica gel heat-conducting plate, metal heating panel, box, heat dissipation bars piece and radiating groove, the center at analysis appearance main part top is provided with touch display screen, and one side at analysis appearance main part top is provided with a plurality of status indicator lamp, and the opposite side at analysis appearance main part top is provided with power button, and the two angles at analysis appearance main part top all are provided with pronunciation loudspeaker.
Preferably, one side of the bottom of the analyzer body is respectively connected with one end of the data line, one end of the power line and one end of the audio line, and the other ends of the data line, the power line and the audio line are connected with the data information analysis system through the threading hole and the wire outlet hole.
Preferably, the one side at silica gel heat-conducting plate and metal heat dissipation board top is seted up respectively to the through wires hole, and the bottom at the box back is seted up to the wire hole, the bottom of the top contact analysis appearance main part of silica gel heat-conducting plate, the top of the bottom contact metal heat dissipation board of silica gel heat-conducting plate.
Preferably, the analysis appearance main part, silica gel heat-conducting plate and metal cooling plate all inlay the inside of dress at the box, and the four corners of metal cooling plate bottom inner edge all is provided with a plurality of heat dissipation bars piece, and a plurality of radiating groove has all been seted up to the both sides of heat dissipation bars piece.
Preferably, the four corners of the outer edge of the top of the metal heat dissipation plate are provided with fastening grooves, the elastic buckles are embedded in the fastening grooves and arranged at one ends of the limiting columns, one ends of the limiting columns are embedded in the limiting grooves, and the limiting grooves are respectively arranged at the four corners of the outer edge of the bottom of the metal heat dissipation plate.
Preferably, the other end of the limiting column is connected with four corners of the bottom of the inner wall of the box body, a first U-shaped support and a second U-shaped support are respectively arranged at the bottom ends of two sides of the inner wall of the box body, and an air supply motor and an air exhaust motor are respectively arranged on the first U-shaped support and the second U-shaped support.
Preferably, the output ends of the air supply motor and the air exhaust motor are respectively provided with an air supply fan blade and an air exhaust fan blade, the side parts of the air supply fan blade and the air exhaust fan blade are respectively provided with a heat dissipation hole, and the heat dissipation holes are respectively arranged at the bottom ends of two sides of the outer wall of the box body.
Preferably, the connecting grooves are formed in four sides of the top of the box body, the connecting plates are embedded in the connecting grooves, the locking screw holes are formed in the side centers of the connecting plates and the connecting grooves, the locking screws are embedded in the locking screw holes, the connecting plates are arranged on four sides of the bottom of the locking frame respectively, the positioning holes are formed in four corners of the bottom of the locking frame respectively, the positioning columns are embedded in the positioning holes, and the positioning columns are arranged in four corners of the top of the box body respectively.
Preferably, be provided with fixed frame on the box outer wall, spacing hole has all been seted up in the four corners of fixed frame bottom, and the inside in spacing hole is inlayed and is equipped with the spacer pin, and the spacer pin sets up the both sides at arc cornerite top respectively, and connecting screw has all been seted up in the center at arc cornerite top and the four corners of fixed frame bottom, and the arc cornerite sets up the four corners at mount pad top inner edge respectively, and the mounting hole has all been seted up in the four corners of mount pad top outer fringe, and the mounting groove has been seted up at the center at mount pad top, and the bottom that is equipped with the box is inlayed to the inside of mounting groove.
A novel steel slag waste typical sample data information analysis method comprises the following steps: step one, equipment installation; step two, equipment operates; step three, data acquisition; step four, information analysis; step five, alarming for abnormity; step six, recording and storing;
in the first step, the mounting seat is fixed at a preset position through the mounting hole, the box body is embedded into the mounting groove, the four corners of the box body are wrapped by the arc wrap angles, the limiting pin is embedded into the limiting hole, the connecting screw is embedded into the connecting screw hole, the fixing frame is mounted on the arc wrap angle of the mounting seat, the box body is mounted on the mounting seat, the elastic buckle is embedded into the buckle groove, the limiting column is embedded into the limiting groove, the metal heat dissipation plate is mounted in the box body, the data line, the power line and the audio line are led out through the threading hole and the wire outlet hole, the analyzer body is connected with the data information analysis system, the analyzer body and the silica gel heat conduction plate are embedded into the box body, the connecting plate is embedded into the connecting groove, the locking screw is embedded into the locking screw hole, and the locking frame is mounted on the box body;
in the second step, the analyzer body is started through a power button, a user account is logged in through a touch display screen, a secret key is input, iris, fingerprint and face information are verified, the corresponding user account is logged in after the identity is verified, meanwhile, a fan blade is rotated through an air supply motor, so that outside air enters the box body, the outside air fully contacts the heat dissipation grid sheet through the heat dissipation groove, redundant heat generated by the analyzer body is absorbed through the silica gel heat conduction plate and the metal heat dissipation plate, the fan blade is rotationally exhausted through the air exhaust motor and is exhausted to the outside environment, and heat dissipation is completed;
in the third step, all data of the typical sample of the steel slag waste obtained from the collector are received onto the analyzer main body through the data line, and then data processing is carried out to screen out redundant, useless and incomplete data and leave complete and useful data;
in the fourth step, a steel slag waste data analysis model is constructed through big data and a deep learning algorithm, branches with bad judgment results in an analysis model decision tree are cut off by using a cost complexity pruning method, trunks with good judgment results in the analysis model decision tree are reserved, a steel slag waste data information analysis model is optimized, and information analysis is carried out on the data obtained in the second step;
in the fifth step, a data information analysis result of the typical sample of the steel slag waste is displayed through a touch display screen, and if the analysis result reaches a warning index, an alarm is given to an analyst through a state indicator lamp and a voice horn;
and in the sixth step, an analysis record with an analysis sample, an analyst, analysis time and an analysis result is generated, a new block segment is generated by using a block chain technology, and then is spliced to a corresponding position of an old block chain to form a new block chain, and the new block chain is shared to each analysis device of the data information analysis system to perform distributed storage on the analysis record.
Compared with the prior art, the invention has the beneficial effects that: the novel steel slag waste typical sample data information analysis equipment and the analysis method thereof have the advantages of good heat dissipation performance, strong protection and easy disassembly after installation;
(1) the heat dissipation performance of the data information analysis equipment is enhanced, the redundant heat generated in the operation process can be quickly conducted to the outside, the risk of overheating and burning of internal electrical components is reduced, and the data information analysis equipment is safer to use;
(2) the structure design is optimized, the data information analysis equipment is wrapped in the protection structure, the protection performance is good, the external force damage is reduced, and the service life of the data information analysis equipment is prolonged;
(3) by adopting a split type mounting structure, the parts are convenient to disassemble, assemble and replace, the labor intensity of personnel is low, time and labor are saved, and the maintenance cost of the data information analysis equipment is reduced;
(4) by using a block chain distributed storage form, the storage capacity is not limited by the scale of the server, the requirement of large-scale storage and application of data is met, the reliability, the availability and the safety of data information are high, the access efficiency is high, and the management is convenient.
Drawings
FIG. 1 is a top perspective view of the overall structure of the present invention;
FIG. 2 is a bottom perspective view of the overall structure of the present invention;
FIG. 3 is a top exploded view of the overall structure of the present invention;
FIG. 4 is a bottom exploded view of the overall construction of the present invention;
FIGS. 5 and 6 are perspective views of the case of the present invention;
FIG. 7 is a flow chart of a method of the present invention;
in the figure: 1. an analyzer body; 2. a touch display screen; 3. a status indicator light; 4. a power button; 5. a voice loudspeaker; 6. a data line; 7. a power line; 8. an audio line; 9. threading holes; 10. a wire outlet hole; 11. a silica gel heat-conducting plate; 12. a metal heat dissipation plate; 13. a box body; 14. a heat dissipation grid sheet; 15. a heat sink; 16. buckling grooves; 17. elastic buckle; 18. a limiting column; 19. a limiting groove; 20. a first U-shaped bracket; 21. a second U-shaped bracket; 22. an air supply motor; 23. an air exhaust motor; 24. a fan blade; 25. an exhaust fan blade; 26. heat dissipation holes; 27. connecting grooves; 28. a connecting plate; 29. locking the frame; 30. locking the screw hole; 31. locking the screw; 32. positioning holes; 33. a positioning column; 34. a fixing frame; 35. a limiting hole; 36. a spacing pin; 37. arc wrap angles; 38. a connecting screw hole; 39. a connecting screw; 40. a mounting seat; 41. mounting holes; 42. and (7) installing a groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-6, an embodiment of the present invention is shown: a novel steel slag waste typical sample data information analysis device comprises an analyzer body 1, a threading hole 9, a wire outlet hole 10, a silica gel heat-conducting plate 11, a metal heat-radiating plate 12, a box body 13, a heat-radiating grid 14 and a heat-radiating groove 15, wherein a touch display screen 2 is arranged at the center of the top of the analyzer body 1, a plurality of status indicator lamps 3 are arranged on one side of the top of the analyzer body 1, a power button 4 is arranged on the other side of the top of the analyzer body 1, voice horns 5 are arranged at two corners of the top of the analyzer body 1, one side of the bottom of the analyzer body 1 is respectively connected with a data line 6, a power line 7 and one end of an audio line 8, the other ends of the data line 6, the power line 7 and the audio line 8 are connected with a data information analysis system through the threading hole 9 and the wire outlet hole 10, the threading hole 9 is respectively arranged on one side of the tops of the silica gel heat-conducting plate 11 and the metal heat-radiating plate 12, the wire outlet 10 is arranged at the bottom of the back of the box body 13, the top of the silica gel heat conducting plate 11 contacts the bottom of the analyzer body 1, the bottom of the silica gel heat conducting plate 11 contacts the top of the metal heat radiating plate 12, the analyzer body 1, the silica gel heat conducting plate 11 and the metal heat radiating plate 12 are all embedded in the box body 13, a plurality of heat radiating grids 14 are arranged at four corners of the inner edge of the bottom of the metal heat radiating plate 12, a plurality of heat radiating grooves 15 are arranged at two sides of each heat radiating grid 14, fastening grooves 16 are arranged at four corners of the outer edge of the top of the metal heat radiating plate 12, elastic fasteners 17 are embedded in the fastening grooves 16, the elastic fasteners 17 are arranged at one end of the limiting column 18, one end of the limiting column 18 is embedded in the limiting groove 19, the limiting grooves 19 are respectively arranged at four corners of the outer edge of the bottom of the metal heat radiating plate 12, the other end of the limiting column 18 is connected with four corners of the bottom of the inner wall of the box body 13, the bottom ends of the two sides of the inner wall of the box body 13 are respectively provided with a first U-shaped bracket 20 and a second U-shaped bracket 21, the first U-shaped support 20 and the second U-shaped support 21 are respectively provided with an air supply motor 22 and an air exhaust motor 23, the output ends of the air supply motor 22 and the air exhaust motor 23 are respectively provided with an air supply fan blade 24 and an air exhaust fan blade 25, the side parts of the air supply fan blade 24 and the air exhaust fan blade 25 are respectively provided with a heat dissipation hole 26, and the heat dissipation holes 26 are respectively arranged at the bottom ends of the two sides of the outer wall of the box body 13, so that the heat dissipation performance of the data information analysis equipment is enhanced, redundant heat generated in the operation process can be quickly conducted to the outside, the risk of overheating and burning of internal electrical components is reduced, and the use is safer; the four sides of the top of the box body 13 are provided with connecting grooves 27, the connecting plates 28 are embedded in the connecting grooves 27, the side centers of the connecting plates 28 and the connecting grooves 27 are provided with locking screw holes 30, the locking screws 31 are embedded in the locking screw holes 30, the connecting plates 28 are respectively arranged on the four sides of the bottom of the locking frame 29, the four corners of the bottom of the locking frame 29 are provided with positioning holes 32, positioning columns 33 are embedded in the positioning holes 32, the positioning columns 33 are respectively arranged at the four corners of the top of the box body 13, the structural design is optimized, the data information analysis equipment is wrapped in the protection structure, the protection performance is good, external force damage is reduced, and the service life of the data information analysis equipment is prolonged; be provided with fixed frame 34 on the outer wall of box 13, spacing hole 35 has all been seted up in the four corners of fixed frame 34 bottom, the inside of spacing hole 35 is inlayed and is equipped with spacer pin 36, spacer pin 36 sets up the both sides at arc cornerite 37 top respectively, connecting screw 39 has all been seted up at the center at arc cornerite 37 top and the four corners of fixed frame 34 bottom, arc cornerite 37 sets up the four corners at mount pad 40 top inner edge respectively, mounting hole 41 has all been seted up in the four corners of mount pad 40 top outer fringe, mounting groove 42 has been seted up at the center at mount pad 40 top, the inside of mounting groove 42 is inlayed and is equipped with the bottom of box 13, adopt split type mounting structure, spare part dismouting is changed conveniently, personnel low in labor strength, time and labor are saved, data information analysis equipment's cost of maintenance has been reduced.
Referring to fig. 7, an embodiment of the present invention: a novel steel slag waste typical sample data information analysis method comprises the following steps: step one, equipment installation; step two, equipment operates; step three, data acquisition; step four, information analysis; step five, alarming abnormally; step six, recording and storing;
in the first step, the mounting seat 40 is fixed at a predetermined position through the mounting hole 41, the case body 13 is inserted into the mounting groove 42, the arc-shaped wrap angle 37 wraps four corners of the case body 13, the limit pin 36 is inserted into the limit hole 35, the connection screw 39 is inserted into the connection screw hole 38, the fixing frame 34 is mounted on the arc-shaped wrap angle 37 of the mounting seat 40, the case body 13 is mounted on the mounting seat 40, the elastic buckle 17 is inserted into the buckle groove 16, the limit post 18 is inserted into the limit groove 19, the metal heat dissipation plate 12 is mounted in the case body 13, the data wire 6, the power wire 7 and the audio wire 8 are led out through the threading hole 9 and the outlet hole 10, the analyzer body 1 is connected to the data information analysis system, the analyzer body 1 and the silica gel heat conduction plate 11 are embedded in the case body 13, and the connection plate 28 is inserted into the connection groove 27, The locking screw 31 is embedded into the locking screw hole 30, and the locking frame 29 is installed on the box body 13;
in the second step, the analyzer body 1 is started through the power button 4, the user account is logged in through the touch display screen 2, the secret key is input, the iris, fingerprint and face information is verified, the corresponding user account is logged in after the identity is verified, meanwhile, the air supply motor 22 rotates the air supply fan blade 24 to enable the outside air to enter the box body 13, the outside air fully contacts the heat dissipation grid sheet 14 through the heat dissipation groove 15, the excessive heat generated by the analyzer body 1 is absorbed through the silica gel heat conduction plate 11 and the metal heat dissipation plate 12, the air exhaust motor 23 rotates the air exhaust fan blade 25 to be exhausted to the outside environment, and heat dissipation is completed;
in the third step, all data of the typical sample of the steel slag waste obtained from the collector are received on the analyzer body 1 through the data line 6, and then data processing is carried out to screen out redundant, useless and incomplete data and leave complete and useful data;
in the fourth step, a steel slag waste data analysis model is constructed through big data and a deep learning algorithm, branches with bad judgment results in an analysis model decision tree are cut off by using a cost complexity pruning method, trunks with good judgment results in the analysis model decision tree are reserved, a steel slag waste data information analysis model is optimized, and information analysis is carried out on the data obtained in the second step;
in the fifth step, a data information analysis result of the typical sample of the steel slag waste is displayed through the touch display screen 2, and if the analysis result reaches a warning index, an alarm is given to an analyst through the state indicator lamp 3 and the voice loudspeaker 5;
and in the sixth step, an analysis record with an analysis sample, an analyst, analysis time and an analysis result is generated, a new block segment is generated by using a block chain technology, and then is spliced to the corresponding position of the old block chain to form a new block chain, and the new block chain is shared to each analysis device of the data information analysis system to perform distributed storage on the analysis record.
The working principle is as follows: when the invention is used, firstly, the mounting seat 40 is fixed at a preset position through the mounting hole 41, the box body 13 is embedded into the mounting groove 42, then the four corners of the box body 13 are wrapped by the arc wrap angles 37, the limiting pin 36 is embedded into the limiting hole 35, the connecting screw 39 is embedded into the connecting screw hole 38, the fixing frame 34 is mounted on the arc wrap angles 37 of the mounting seat 40, further the box body 13 is mounted on the mounting seat 40, the split mounting structure is adopted, the disassembly and the replacement of parts are convenient, the labor intensity of personnel is low, the time and the labor are saved, the maintenance cost of the data information analysis equipment is reduced, then the elastic buckle 17 is embedded into the buckle groove 16, the limiting column 18 is embedded into the limiting groove 19, the metal heat radiation plate 12 is mounted in the box body 13, further the data line 6, the power line 7 and the audio line 8 are led out through the threading hole 9 and the wire outlet hole 10, further the analyzer main body 1 is connected with the data information analysis system, then embedding the analyzer body 1 and the silica gel heat conducting plate 11 into the box body 13, embedding the connecting plate 28 into the connecting groove 27 and embedding the locking screw 31 into the locking screw hole 30, installing the locking frame 29 on the box body 13, optimizing the structural design, wrapping the data information analysis equipment in a protective structure, having good protection performance, reducing external force damage and prolonging the service life of the data information analysis equipment, then opening the analyzer body 1 through the power button 4, logging in a user account number through the touch display screen 2, inputting a key, verifying iris, fingerprint and face information, logging in a corresponding user account number after verifying the identity, receiving various data of the typical sample of the steel slag waste obtained from the collector onto the analyzer body 1 through the data line 6, processing the data, screening out redundant, useless and incomplete data, and leaving complete and complete data, Useful data is constructed through a big data and deep learning algorithm, a steel slag waste data analysis model is cut off by a cost complexity pruning method, branches with bad judgment results in an analysis model decision tree are retained, trunks with good judgment results in the analysis model decision tree are reserved, a steel slag waste data information analysis model is optimized, information analysis is carried out on the data, data information analysis results of typical samples of the steel slag waste are displayed through a touch display screen 2, if the analysis results reach warning indexes, an alarm is given to an analyst through a state indicator lamp 3 and a voice loudspeaker 5, analysis records with the analysis samples, the analyst, analysis time and the analysis results are generated, a new block section is generated through a block chain technology, the new block section is spliced to a corresponding position of an old block chain to form a new block chain, and the new block chain is shared in each analysis device, the analysis records are stored in a distributed mode, the traditional centralized storage mode is replaced, the storage capacity is not limited by the scale of a server, the requirement of large-scale storage and application of data is met, the reliability, the usability and the safety of data information are high, the access efficiency is high, the management is convenient, finally, the air supply motor 22 rotates the air supply fan blade 24 to enable the outside air to enter the box body 13, and further fully contacts the heat dissipation grid 14 through the heat dissipation groove 15, and further absorbs the excessive heat generated by the analyzer body 1 through the silica gel heat conduction plate 11 and the metal heat dissipation plate 12, and rotate exhaust fan leaf 25 through air exhaust motor 23, discharge to the external environment in, accomplish the heat dissipation, strengthened data information analysis equipment's heat dispersion, can be fast with the unnecessary heat conduction that produces in the operation process to the external world, reduced the overheated risk of burning out of inside electrical components, it is safer to use.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. The utility model provides a novel typical sample data information analysis equipment of slag discarded object, includes analysis appearance main part (1), through wires hole (9), wire hole (10), silica gel heat-conducting plate (11), metal heating panel (12), box (13), heat dissipation grid piece (14) and radiating groove (15), its characterized in that: the center at the top of the analyzer body (1) is provided with a touch display screen (2), one side at the top of the analyzer body (1) is provided with a plurality of status indicator lamps (3), the other side at the top of the analyzer body (1) is provided with a power button (4), and two corners at the top of the analyzer body (1) are provided with voice horns (5).
2. The novel steel slag waste typical sample data information analysis device as claimed in claim 1, wherein: one side of the bottom of the analyzer body (1) is connected with one end of a data line (6), one end of a power line (7) and one end of an audio line (8) respectively, and the other ends of the data line (6), the power line (7) and the audio line (8) are connected with a data information analysis system through a threading hole (9) and a wire outlet hole (10).
3. The novel steel slag waste typical sample data information analysis device as claimed in claim 2, wherein: one side at silica gel heat-conducting plate (11) and metal cooling plate (12) top is seted up respectively in through wires hole (9), and the bottom at box (13) back is seted up in wire hole (10), the bottom of the top contact analysis appearance main part (1) of silica gel heat-conducting plate (11), the top of the bottom contact metal cooling plate (12) of silica gel heat-conducting plate (11).
4. The novel steel slag waste typical sample data information analysis device as claimed in claim 3, wherein: the analyzer comprises an analyzer body (1), a silica gel heat-conducting plate (11) and a metal heat-radiating plate (12) which are all embedded in a box body (13), a plurality of heat-radiating grid pieces (14) are arranged at four corners of the inner edge of the bottom of the metal heat-radiating plate (12), and a plurality of heat-radiating grooves (15) are formed in two sides of each heat-radiating grid piece (14).
5. The novel steel slag waste typical sample data information analysis device as claimed in claim 4, wherein: the metal heat dissipation plate is characterized in that four corners of the outer edge of the top of the metal heat dissipation plate (12) are provided with buckling grooves (16), elastic buckles (17) are embedded in the buckling grooves (16), the elastic buckles (17) are arranged at one ends of limiting columns (18), one ends of the limiting columns (18) are embedded in limiting grooves (19), and the limiting grooves (19) are respectively arranged at the four corners of the outer edge of the bottom of the metal heat dissipation plate (12).
6. The novel steel slag waste typical sample data information analysis device as claimed in claim 5, wherein: the other end of the limiting column (18) is connected with four corners of the bottom of the inner wall of the box body (13), the bottom ends of two sides of the inner wall of the box body (13) are respectively provided with a first U-shaped support (20) and a second U-shaped support (21), and the first U-shaped support (20) and the second U-shaped support (21) are respectively provided with an air supply motor (22) and an air exhaust motor (23).
7. The novel steel slag waste typical sample data information analysis device as claimed in claim 6, wherein: air supply fan leaf (24) and exhaust fan leaf (25) are installed respectively to the output of air supply motor (22) and air exhaust motor (23), and air supply fan leaf (24) and exhaust fan leaf (25)'s side all is provided with louvre (26), and louvre (26) are seted up respectively in the bottom of box (13) outer wall both sides.
8. The novel steel slag waste typical sample data information analysis device as claimed in claim 7, wherein: connecting groove (27) have all been seted up to four sides at box (13) top, connecting plate (28) are inlayed to the inside of connecting groove (27), locking screw (30) have all been seted up at the side center of connecting plate (28) and connecting groove (27), the inside of locking screw (30) is inlayed and is equipped with locking screw (31), connecting plate (28) set up four sides in locking frame (29) bottom respectively, locating hole (32) have all been seted up to the four corners of locking frame (29) bottom, the inside of locating hole (32) is inlayed and is equipped with reference column (33), reference column (33) set up the four corners at box (13) top respectively.
9. The novel steel slag waste typical sample data information analysis device as claimed in claim 8, wherein: be provided with fixed frame (34) on box (13) outer wall, spacing hole (35) have all been seted up in the four corners of fixed frame (34) bottom, the inside of spacing hole (35) is inlayed and is equipped with spacer pin (36), spacer pin (36) set up the both sides at arc cornerite (37) top respectively, connecting screw (39) have all been seted up in the center at arc cornerite (37) top and the four corners of fixed frame (34) bottom, arc cornerite (37) set up the four corners at mount pad (40) top inner edge respectively, mounting hole (41) have all been seted up in the four corners of mount pad (40) top outer fringe, mounting groove (42) have been seted up at the center at mount pad (40) top, the inside of mounting groove (42) is inlayed and is equipped with the bottom of box (13).
10. A novel steel slag waste typical sample data information analysis method comprises the following steps: step one, equipment installation; step two, equipment operates; step three, data acquisition; step four, information analysis; step five, alarming for abnormity; step six, recording and storing; the method is characterized in that:
in the first step, a mounting seat (40) is fixed at a preset position through a mounting hole (41), a box body (13) is embedded into a mounting groove (42), then an arc wrap angle (37) wraps four corners of the box body (13), a limiting pin (36) is embedded into a limiting hole (35), a connecting screw (39) is embedded into a connecting screw hole (38), a fixing frame (34) is mounted on the arc wrap angle (37) of the mounting seat (40), then the box body (13) is mounted on the mounting seat (40), then an elastic buckle (17) is embedded into a buckle groove (16), a limiting column (18) is embedded into a limiting groove (19), a metal heat radiation plate (12) is mounted in the box body (13), and then a data line (6), a power line (7) and an audio line (8) are led out through a threading hole (9) and a wire outlet hole (10), so that an analyzer main body (1) is connected with a data information analysis system, further embedding the analyzer body (1) and the silica gel heat-conducting plate (11) into the box body (13), and installing the locking frame (29) on the box body (13) by embedding the connecting plate (28) into the connecting groove (27) and embedding the locking screw (31) into the locking screw hole (30);
in the second step, the analyzer body (1) is started through the power button (4), the user account is logged in through the touch display screen (2), the secret key is input, iris, fingerprint and face information are verified, the corresponding user account is logged in after the identity is verified, meanwhile, the air supply motor (22) rotates the air supply fan blade (24), so that outside air enters the box body (13), the air supply fan blade fully contacts the heat dissipation grid sheet (14) through the heat dissipation groove (15), redundant heat generated by the analyzer body (1) is absorbed through the silica gel heat conduction plate (11) and the metal heat dissipation plate (12), the redundant heat is discharged to the external environment through the exhaust fan blade (25) which is rotated by the exhaust motor (23), and heat dissipation is completed;
in the third step, all data of the typical sample of the steel slag waste obtained from the collector are received on the analyzer body (1) through the data line (6), and then data processing is carried out to screen out redundant, useless and incomplete data and leave complete and useful data;
in the fourth step, a steel slag waste data analysis model is constructed through big data and a deep learning algorithm, branches with bad judgment results in an analysis model decision tree are cut off by using a cost complexity pruning method, trunks with good judgment results in the analysis model decision tree are reserved, a steel slag waste data information analysis model is optimized, and information analysis is carried out on the data obtained in the second step;
in the fifth step, a data information analysis result of the typical sample of the steel slag waste is displayed through the touch display screen (2), and if the analysis result reaches a warning index, an alarm is given to an analyst through the state indicator lamp (3) and the voice loudspeaker (5);
and in the sixth step, an analysis record with an analysis sample, an analyst, analysis time and an analysis result is generated, a new block segment is generated by using a block chain technology, and then is spliced to the corresponding position of the old block chain to form a new block chain, and the new block chain is shared to each analysis device of the data information analysis system to perform distributed storage on the analysis record.
CN202210204803.3A 2022-03-02 2022-03-02 Novel steel slag waste typical sample data information analysis equipment and analysis method thereof Pending CN114636801A (en)

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