Automatic dispersing device for fly ash

The automated fly ash dispersion device solves the problems of mixing ratio control and settling, achieving uniform mixing of fly ash and water and accurate microscopic analysis, avoiding the unevenness and pollution caused by manual operation.

CN120789990AActive Publication Date: 2025-10-17中交一公局绿建(厦门)科技有限公司
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Patent Information

Application Number
CN202511247384.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-10-17
Estimated Expiration
2045-09-03

AI Technical Summary

Technical Problem

The ratio of fly ash to dispersant is difficult to control when mixing, and the mixture is prone to settling. Manual operation can easily lead to uneven mixing and contamination of the liquid, and it is also prone to accumulation during the transfer process, which affects microscopic analysis.

Method used

An automatic fly ash dispersion device was designed. Through components such as a weighing plate, a mixer, a bearing mechanism, an ultrasonic generator, and a microscope, the device realizes the automatic mixing and dispersion of fly ash and water. Combined with the forward and reverse rotation and opening and closing mechanism of the mixer, the uniformity of mixing is ensured, and the vibration of the sliding rod and rubber sleeve prevents accumulation.

Benefits of technology

This method achieves uniform mixing and dispersion of fly ash and water, avoiding the unevenness and contamination caused by manual operation, and ensuring the accuracy of microscopic analysis.

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Abstract

The invention relates to the technical field of detection devices, and discloses an automatic fly ash dispersing device which comprises a display screen, an analysis mechanism, a feeding hopper, a sealing door and a water storage tank. When a transfer plate rotates anticlockwise, a mixed solution moves from the right side to the left side of an opening and closing plate; the rotating plate extrudes the surface of the opening and closing plate under the compression elastic force of the elastic strip, so that the opening and closing plate is elastically inclined through the rotating rod and then is driven to the inclined opening of the opening and closing plate by the rotation of the rotating plate to fall off, the coal ash and the falling mixed liquid are stirred by rotating the stirring mechanism forwards and backwards, and the opening and closing mechanism is scraped by the bottom; the mixed liquid moves towards the right side of the surface of the opening and closing plate 232 under the scraping action of the rotating plate 212 on the surface of the opening and closing plate 232, fly ash on the surface of the opening and closing plate 232 is scraped up, the sinking fly ash participates in stirring and mixing above, and it is avoided that part of fly ash is non-uniformly stirred to affect subsequent dispersion.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of detection devices, in particular to an automatic dispersion device for fly ash. BACKGROUND

[0002] Fly ash is a solid waste produced in the high-temperature combustion process of coal powder in coal-fired power plants, and is usually used as a building material or an environmental protection engineering adsorbent. Fly ash particles are in the form of small spherical glass bodies, and surface tension causes them to easily form agglomerates in their natural state. In engineering materials such as concrete, fly ash needs to be uniformly dispersed to play its role. In the detection of fly ash dispersibility, first, the mass ratio of fly ash to dispersant (water) is 1:50, the fly ash and dispersant (water) mixture is placed in an ultrasonic disperser for dispersion for 2 minutes, then the prepared glass slide sample is placed under a microscope, a field of view with relatively uniformly dispersed fly ash and sufficient particles is selected, multiple fly ash microstructure images are taken, image processing is performed using fly ash rapid identification software, depth of field fusion and fly ash microsphere identification are performed, and finally the software analyzes and calculates the particle morphology characteristic parameters such as the diameter, number and area of the circular glass microbeads in the image, and outputs the fly ash microbead roundness and area ratio results. If the irregularity of the microbead roundness is less than (or equal to) 0.72 and the ratio in the 0.94-1 interval is less than (or equal to) 6.78%, it is determined to be false fly ash, so that true and false fly ash can be quickly distinguished through image analysis.

[0003] However, when the fly ash and dispersant (water) mixture is ultrasonically dispersed, it needs to be mixed in a certain proportion to form a mixture, and the mixing ratio needs to be mixed manually. The mixing ratio is prone to differences, which affects the dispersibility of the fly ash and dispersant (water) mixture after mixing, and part of the fly ash is prone to sinking to the bottom during mixing and stirring, causing the problem of excessive dryness of part of the mixture. After the mixture is prepared, it needs to be manually transferred to a certain area under the microscope, which is prone to manual intervention and contamination of the mixture, affecting the image dispersion degree captured by the microscope. The guide rail transfer is prone to cause the mixture to move to one side under the influence of inertia, causing the accumulation of the mixture and affecting the analysis of true and false fly ash. SUMMARY

[0004] The present application provides an automatic dispersion device for fly ash, which overcomes the deficiencies described in the background art.

[0005] The technical solution adopted by the present application to solve its technical problems is: An automatic dispersion device for fly ash, comprising a display screen, an analysis mechanism, an inlet hopper, a sealing door and a water storage tank, the display screen is arranged on the side of the analysis mechanism, fly ash is put into the inlet hopper at the upper end of the analysis mechanism, the mixing ratio of fly ash and water in the analysis mechanism is controlled by the display screen, and the sealing door is opened and closed on the side of the analysis mechanism. The analysis mechanism is provided with a weighing plate, a stirrer, a bearing mechanism, an ultrasonic generator, a slide rail, a shell, a processor and a microscope, the right end of the weighing plate is provided with a motor and is fixed at the lower end of the feeding hopper through the motor, the weighing plate rotates and tilts through the motor output end, the stirrer is below the weighing plate, and the stirrer is electrically connected with the processor to control the stirrer to rotate and stir the fly ash and water, when the stirrer reversely rotates, the mixture of fly ash and water falls from the stirrer to the bearing mechanism, the slide rail is horizontally arranged in the shell, and the side of the slide rail is provided with a hydraulic device, the bearing mechanism is horizontally pushed to slide on the slide rail through the hydraulic device output end, the output end of the ultrasonic generator corresponds to the middle of the bearing mechanism, and the microscope and the processor are electrically connected with a display screen, and the lower end of the microscope scans the bearing mechanism below and performs analysis.

[0006] A preferred technical scheme: the stirrer is provided with a stirring mechanism, a motor and an opening and closing mechanism, the motor is arranged in the middle of the opening and closing mechanism, the motor output end is connected with the stirring mechanism, the motor is electrically connected with the processor, and the motor output end is controlled to rotate the stirring mechanism, the lowermost end of the stirring mechanism rotates on the surface of the opening and closing mechanism, when the stirring mechanism rotates in a direction, the stirring mechanism presses the opening and closing mechanism, and the opening and closing mechanism is opened and closed.

[0007] A preferred technical scheme: the weighing plate is provided with a round rod, a rotating plate, an elastic strip and a fixed rod, the fixed rod is annularly arranged outside the round rod and is vertically connected with the motor output end through the round rod, the elastic strip is attached to the side of the fixed rod and the rotating plate, the rotating plate rotates on the side of the fixed rod, and when the rotating plate is in a horizontal state, the elasticity of the elastic strip makes the rotating plate abut against the surface of the opening and closing mechanism.

[0008] A preferred technical scheme: the opening and closing mechanism is provided with a rubber strip, an opening and closing plate, a rotating rod and a plane plate, the rotating rod is internally provided with a spring, the rotating rod is arranged in the opening and closing plate, and the two ends of the rotating rod are fixed in the plane plate, the opening and closing plate is elastically turned downward through the spring in the rotating rod, the rubber strip is attached between the opening and closing plate and the plane plate, and when the rotating plate reversely rotates on the surface of the plane plate, the top end of the rotating plate abuts against the opening and closing plate.

[0009] A preferred technical scheme: the bearing mechanism is provided with a surrounding plate, a sliding rod, a fixed plate, a glass slide and a vertical plate, the fixed plate is provided with the glass slide corresponding to the lower end of the microscope in the middle, the upper end of the fixed plate is provided with the surrounding plate, the vertical plate is located at the lower end of the fixed plate, the vertical plate is provided with the symmetrically distributed sliding rods on the side, and the sliding rods move in the middle of the slide rail through the pushing of the hydraulic device.

[0010] A better technical solution: the sliding rod is provided with a rubber sleeve, an arc-shaped plate and a connecting rod. The rubber sleeve is fitted on the outside of the connecting rod. Arc-shaped plates are symmetrically arranged on the upper and lower sides of the rubber sleeve. Semicircular bars are provided on the inner side of the slide rail, and the semicircular bars are equidistantly arranged. When the hydraulic device pushes the rubber sleeve to move, the arc-shaped plate moves in a vibrating manner on the semicircular bar under the elastic compression of the rubber sleeve, and the connecting rod drives the fixed plate on the upper end of the vertical plate to vibrate.

[0011] Compared with the existing technology, this technical solution has the following advantages: When the transfer plate in the present invention rotates counterclockwise, the mixed liquid moves from the right side to the left side of the opening and closing plate. When it moves to the left side of the opening and closing plate surface, the transfer plate squeezes the surface of the opening and closing plate under the compression force of the elastic strip, so that the opening and closing plate is tilted by the transfer rod, and then driven by the rotation of the transfer plate to the inclined opening of the opening and closing plate and falls. The fly ash and the falling mixed liquid are stirred by the forward and reverse rotation of the stirring mechanism, and the opening and closing mechanism is scraped by the bottom. In the present invention, the mixed liquid moves to the right side of the opening and closing plate 232 surface under the scraping action of the transfer plate 212 on the opening and closing plate 232 surface, so that the fly ash on the surface of the opening and closing plate 232 is scraped up, so that the sunken fly ash participates in the stirring and mixing above, and avoids uneven stirring of part of the fly ash affecting subsequent dispersion.

[0012] In the present invention, after the ultrasonic generator impacts and disperses the mixed liquid on the surface of the glass slide, the processor controls the hydraulic machine so that its output end pushes the sliding rod, causing the sliding rod to move in the slide rail. At this time, the left side of the rubber sleeve moves to the right, and during the movement, the arc plate squeezes the semicircular bar under the elasticity of the rubber sleeve. Since the connecting rod is in a translational state and the semicircular bars are arranged at intervals, the arc plate will act on the semicircular bar at intervals, causing the arc plate to vibrate under the intermittent squeezing of the semicircular bar when it moves, and drive the vertical plate connected to the connecting rod to vibrate slightly up and down, ensuring that the glass slide is in a slight vibration state when the vertical plate moves, and preventing the vertical plate from causing the mixed liquid on the surface of the glass slide to accumulate to one side under the action of inertia. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The present invention will be further described below with reference to the accompanying drawings and examples.

[0014] Figure 1 This is an overall diagram of the present invention.

[0015] Figure 2 A side view of the analysis mechanism.

[0016] Figure 3 A side view of the agitator.

[0017] Figure 4 It is a plan view of the stirring mechanism.

[0018] Figure 5Schematic view of the plane and partial side of the opening and closing mechanism.

[0019] Figure 6 Schematic view of the partial perspective of the bearing mechanism.

[0020] Figure 7 Schematic view of the side of the sliding rod.

[0021] In the figure: display screen-1, analysis mechanism-2, feed hopper-3, sealing door-4, water storage tank-5, weighing plate-21, stirrer-22, bearing mechanism-23, ultrasonic generator-24, sliding rail-25, shell-26, processor-27, microscope-28, stirring mechanism-221, motor-222, opening and closing mechanism-223, round rod-211, rotating plate-212, elastic strip-213, fixed rod-214, rubber strip-231, opening and closing plate-232, rotating rod-233, flat plate-234, fence-31, sliding rod-32, fixed plate-33, glass slide-34, vertical plate-35, semicircular strip-101, rubber sleeve-321, arc plate-322, connecting rod-323. DETAILED DESCRIPTION

[0022] As Figures 1 to 7 shown in the present application, an automatic fly ash dispersing device is proposed, which comprises a display screen 1, an analysis mechanism 2, a feed hopper 3, a sealing door 4, and a water storage tank 5. The display screen 1 is arranged on the side of the analysis mechanism 2. Fly ash is put into the feed hopper 3 at the upper end of the analysis mechanism 2. The mixing ratio of fly ash and water in the analysis mechanism 2 is controlled by the display screen 1. The sealing door 4 is opened and closed on the side of the analysis mechanism 2. The analysis mechanism 2 is provided with a weighing plate 21, a stirrer 22, a bearing mechanism 23, an ultrasonic generator 24, a sliding rail 25, a shell 26, a processor 27, and a microscope 28. The right end of the weighing plate 21 is provided with a motor, which is fixed to the lower end of the feed hopper 3 by the motor. The weighing plate 21 rotates and tilts by the motor output end. The stirrer 22 is below the weighing plate 21. The stirrer 22 is electrically connected to the processor 27. The rotation of the stirrer 22 is controlled by the processor 27 to stir fly ash and water. When the stirrer 22 rotates in the opposite direction, the mixture of fly ash and water falls from the stirrer 22 to the bearing mechanism 23. The sliding rail 25 is horizontally arranged in the shell 26. The sliding rail 25 is provided with a hydraulic device on the side. The bearing mechanism 23 is pushed to slide horizontally on the sliding rail 25 by the hydraulic device output end. The output end of the ultrasonic generator 24 corresponds to the middle of the bearing mechanism 23. The microscope 28 and the processor 27 are electrically connected to the display screen 1. The lower end of the microscope 28 scans the bearing mechanism 23 below and analyzes it.

[0023] And the weighing plate 21 has a weighing effect, and the fly ash entering from the feeding hopper 3 is weighed, and the weighed weight data is transmitted to the processor 27, so that the processor 27 controls the valve arranged in the water storage tank 5 to open the valve to control the outflow of water in the water storage tank 5 to the surface of the stirrer 22, and the outflow of water in the water storage tank 5 and the weight of the fly ash is 50:1, and then the motor at the right end of the weighing plate 21 is controlled by the processor 27 to open and close, so that the motor output end rotates to drive the weighing plate 21 to rotate, and then the fly ash falls from the weighing plate 21 to the surface of the stirrer 22, and the fly ash is mixed with water by the rotation of the stirrer 22 to form a mixed liquid.

[0024] And the weighing plate 21 is closed below the feeding hopper 3 in the horizontal state, the processor 27 and the microscope 28 are respectively fixed in the housing 26, and the stirrer 22 is fixed in the housing 26 in the horizontal state.

[0025] Among them, the stirrer 22 is provided with a stirring mechanism 221, a motor 222 and an opening and closing mechanism 223, the motor 222 is arranged in the middle of the opening and closing mechanism 223, and the motor 222 output end is connected with the stirring mechanism 221, the motor 222 is electrically connected with the processor 27, and the motor 222 output end controls the rotation of the stirring mechanism 221, the lowermost end of the stirring mechanism 221 rotates on the surface of the opening and closing mechanism 223, and when the stirring mechanism 221 rotates, the stirring mechanism 221 presses the opening and closing mechanism 223 and makes the opening and closing mechanism 223 open and close.

[0026] Among them, the weighing plate 21 is provided with a round rod 211, a rotating plate 212, an elastic strip 213 and a fixed rod 214, the fixed rod 214 is annularly arranged outside the round rod 211 and is vertically connected with the motor 222 output end through the round rod 211, the elastic strip 213 is attached to the side of the fixed rod 214 and the rotating plate 212, the rotating plate 212 rotates on the side of the fixed rod 214, and when the rotating plate 212 is in the horizontal state, the elasticity of the elastic strip 213 makes the rotating plate 212 abut against the surface of the opening and closing mechanism 223.

[0027] And the elastic strip 213 is made of rubber material, has the compression elastic characteristic, the stirring mechanism 221 is provided with twelve fixed rods 214, and is divided into two layers and is horizontally distributed, the fixed rod 214 of the bottom layer is rubbed on the surface of the opening and closing mechanism 223, and the elastic strip 213 on the side of the fixed rod 214 is stationary and makes the rotating plate 212 be in an inclined state, and the rotating plate 212 of the bottom layer is in a horizontal state and is resisted on the surface of the opening and closing mechanism 223, at this time, the elastic strip 213 is in a compression state, so that the rotating plate 212 is tightly attached to the surface of the opening and closing mechanism 223 and is pressed and moved, and when the fixed rod 214 rotates clockwise, the fixed rod 214 produces a scraping effect on the bottom of the opening and closing mechanism 223, so that the fly ash and water on the bottom are scraped and stirred, when the mixture is formed, the processor 27 controls the motor 222 output end to rotate the round rod 211 counterclockwise, at this time, the rotating plate 212 rotates counterclockwise, at this time, the opening and closing mechanism 223 produces a gap and makes the mixture fall off.

[0028] Wherein, the opening and closing mechanism 223 is provided with a rubber strip 231, an opening and closing plate 232, a rotating rod 233 and a plane plate 234, the rotating rod 233 is internally provided with a spring, the rotating rod 233 is arranged in the opening and closing plate 232, and the two ends of the rotating rod 233 are fixed in the plane plate 234, the opening and closing plate 232 is elastically rotated downward through the spring in the rotating rod 233, the rubber strip 231 is attached between the opening and closing plate 232 and the plane plate 234, and the rotating plate 212 reversely rotates on the surface of the plane plate 234 and makes the top end of the rotating plate 212 press the opening and closing plate 232.

[0029] In the application, the opening and closing plate 232 is provided with six, and the opening and closing plate 232 is annularly distributed on the surface of the plane plate 234 with the round rod 211 as the center, when the rotating plate 212 rotates clockwise on the surface of the plane plate 234, the outer end of the rotating plate 212 moves from the left surface of the opening and closing plate 232 to the right side, at this time, the rotating plate 212 slightly generates a rotating elastic force downward, but under the clockwise movement of the rotating plate 212, the rotating plate 212 generates a scraping effect on the surface of the opening and closing plate 232 and is resisted by the spring in the rotating rod 233, so that the rotating plate 212 generates a scraping effect on the surface of the opening and closing plate 232, wherein, since the maximum inclination angle of the opening and closing plate 232 is 10°, the angle between the surface of the opening and closing plate 232 and the top of the rotating plate 212 is a larger obtuse angle, the opening and closing plate 232 will not generate a larger mutual perpendicular effect with the top of the rotating plate 212, but only generate a friction scraping effect, in the application, the mixture moves to the right on the surface of the opening and closing plate 232 under the scraping effect of the rotating plate 212 on the surface of the opening and closing plate 232, so that the fly ash on the surface of the opening and closing plate 232 is scraped, so that the sinking fly ash participates in the stirring and mixing above, and avoids that part of the fly ash is not uniformly stirred and affects the subsequent dispersion.

[0030] In the application, when the rotating plate 212 rotates counterclockwise, the mixed solution moves from the right side to the left side of the opening and closing plate 232, and when the mixed solution moves to the left side of the surface of the opening and closing plate 232, the rotating plate 212 is pressed against the surface of the opening and closing plate 232 under the compression elastic force of the elastic strip 213, so that the opening and closing plate 232 is tilted by the rotating plate 212, and then the mixed solution is driven to the inclined opening of the opening and closing plate 232, and the mixed solution is stirred by the forward and reverse rotating stirring mechanism 221, and the bottom of the opening and closing mechanism 223 is scraped to avoid the deposition of part of the fly ash in the bottom.

[0031] And the rubber strip 231 compresses and fills the gap on the right side of the opening and closing plate 232, and the rubber strip 231 is in the state of being pressed against the inner side of the flat plate 234 on the left side of the opening and closing plate 232, and when the opening and closing plate 232 is tilted, the rubber strip 231 on the left side of the opening and closing plate 232 will be separated from the inner side of the flat plate 234, so that a gap for the mixed solution to fall is formed on the left side of the opening and closing plate 232.

[0032] Among them, the bearing mechanism 23 is provided with a surrounding plate 31, a sliding rod 32, a fixed plate 33, a glass slide 34 and a vertical plate 35, the fixed plate 33 is provided with a glass slide 34 corresponding to the lower part of the microscope 28, the upper end of the fixed plate 33 is provided with a surrounding plate 31, the lower end of the fixed plate 33 is provided with a vertical plate 35, the side of the vertical plate 35 is provided with symmetrically distributed sliding rods 32, and the sliding rods 32 move in the middle of the sliding rail 25 by the pushing of the hydraulic device.

[0033] And the glass slides 34 are in a spaced arrangement, and the mixed solution on the surface of the glass slides 34 corresponds to the output end of the ultrasonic generator 24 below, the ultrasonic frequency emitted by the ultrasonic generator 24 is between 20-40 kHz, and the wavelength of the frequency is short, only acting on the surface of the glass slides 34, and the ultrasonic generator 24 has a timing module, which can ensure accurate 2 minutes of action on the glass slides 34, so that the mixed solution on the surface of the glass slides 34 is dispersed.

[0034] Among them, the sliding rod 32 is provided with a rubber sleeve 321, an arc plate 322 and a connecting rod 323, the rubber sleeve 321 is attached to the outer side of the connecting rod 323, the arc plates 322 are symmetrically arranged on the upper and lower sides of the rubber sleeve 321, the inner side of the sliding rail 25 is provided with semicircular strips 101, the semicircular strips 101 are equidistantly arranged and distributed, and when the hydraulic device pushes the rubber sleeve 321 to move, the arc plates 322 move on the semicircular strips 101 in a vibrating manner under the elastic compression of the rubber sleeve 321, and the connecting rod 323 drives the fixed plate 33 at the upper end of the vertical plate 35 to vibrate.

[0035] In the application, the ultrasonic generator 24 impacts and disperses the mixed liquid on the surface of the slide 34, and then the processor 27 controls the hydraulic device to push the output end of the sliding rod 32, so that the sliding rod 32 moves in the sliding rail 25. At this time, the left side of the rubber sleeve 321 moves to the right, and then the arc-shaped plate 322 extrudes the semicircular strip 101 under the elasticity of the rubber sleeve 321 during the movement. Since the connecting rod 323 is in a translational state, and the semicircular strip 101 is arranged in intervals, the arc-shaped plate 322 will be extruded by the semicircular strip 101 in intervals, so that the arc-shaped plate 322 vibrates when moving, and drives the vertical plate 35 connected by the connecting rod 323 to vibrate slightly up and down, so that the slide 34 is in a slight vibration state when the vertical plate 35 moves, avoiding the accumulation of the mixed liquid on the surface of the slide 34 to one side under the action of inertia due to the movement of the vertical plate 35.

[0036] In the application, the slide 34 moves in the sliding rail 25 through the sliding rod 32 outside the vertical plate 35 under the microscope 28, and the microscope 28 analyzes the image of the mixed liquid on the surface of the slide 34. The microscope 28 is built-in with a standard microbead reference film, and automatically calibrates optical distortion when starting. The microscope 28 is internally provided with a special image processing chip, which uses an integrated circularity calculation core to output the data of the number / diameter / area ratio of the microbeads of the mixed liquid in real time, and analyzes the true and false nature of the mixed liquid according to the standard parameters such as the microbead ratio of true gray > 70%.

[0037] The above is only a preferred embodiment of the application, and therefore cannot limit the scope of the application. Any equivalent changes and modifications made according to the scope and content of the application should still be within the scope of the application.

Claims

1. An automatic fly ash dispersing device, characterized in that: It includes a display screen, an analysis mechanism, a hopper, a sealed door, and a water storage tank. The display screen is arranged on the side of the analysis mechanism. Fly ash is placed in the hopper at the upper end of the analysis mechanism. The mixing ratio of fly ash and water in the hopper and water storage tank inside the analysis mechanism is controlled by the display screen. The sealed door is opened and closed on the side of the analysis mechanism. The analysis mechanism is provided with a weighing plate, an agitator, a supporting mechanism, an ultrasonic generator, a slide rail, a shell, a processor and a microscope. A motor is provided at the right end of the weighing plate and is fixed to the lower end of the hopper through the motor. The weighing plate is rotated and tilted by the output end of the motor. The agitator is below the weighing plate, and the electrical signal of the agitator is connected to the processor. The processor controls the agitator to rotate and stir fly ash and water. When the agitator rotates in the opposite direction, the mixture of fly ash and water falls from the agitator to the supporting mechanism. The slide rail is horizontally arranged in the shell, and a hydraulic pressure is provided on the side of the slide rail. The supporting mechanism is pushed to slide horizontally on the slide rail through the output end of the hydraulic pressure. The output end of the ultrasonic generator corresponds to the middle of the supporting mechanism. The electrical signals of the microscope and the processor are connected to the display screen, and the lower end of the microscope scans the supporting mechanism below and performs analysis.

2. The automatic fly ash dispersing device according to claim 1, characterized in that: The agitator is provided with a stirring mechanism, a motor and an opening and closing mechanism. The motor is arranged in the middle of the opening and closing mechanism, and the output end of the motor is connected to the stirring mechanism. The electrical signal of the motor is connected to the processor, and controls the output end of the motor to rotate the stirring mechanism. The lower end of the stirring mechanism rotates on the surface of the opening and closing mechanism. When the stirring mechanism rotates in the direction, the stirring mechanism presses the opening and closing mechanism and causes the opening and closing mechanism to open and close.

3. The automatic fly ash dispersing device according to claim 2, characterized in that: The weighing plate is provided with a round rod, a rotating plate, an elastic strip and a fixed rod. The fixed rod ring is arranged on the outside of the round rod and is vertically connected to the output end of the motor through the round rod. The two sides of the elastic strip are fitted on the sides of the fixed rod and the rotating plate. The rotating plate is movable and rotated on the side of the fixed rod. When the rotating plate is in a horizontal state, the elasticity of the elastic strip causes the rotating plate to press against the surface of the opening and closing mechanism.

4. The automatic fly ash dispersing device according to claim 3, characterized in that: The opening and closing mechanism is provided with a rubber strip, an opening and closing plate, a rotating rod and a flat panel. A spring is provided inside the rotating rod. The rotating rod is arranged inside the opening and closing plate, and both ends of the rotating rod are fixed inside the flat panel. The opening and closing plate elastically rotates downward by the spring inside the rotating rod. The rubber strip is fitted between the opening and closing plate and the flat panel. When the rotating plate rotates in the opposite direction on the surface of the flat panel, the top end of the rotating plate presses against the opening and closing plate.

5. The automatic fly ash dispersing device according to claim 4, characterized in that: The carrying mechanism is provided with a surrounding plate, a sliding rod, a fixed plate, a glass slide and a vertical plate. A glass slide corresponding to the bottom of the microscope is arranged in the middle of the fixed plate, a surrounding plate is arranged at the upper end of the fixed plate, and the vertical plate is located at the lower end of the fixed plate. The side of the vertical plate is provided with symmetrically distributed sliding rods, and the sliding rods are moved in the middle of the slide rail by the push of the hydraulic press.

6. The automatic fly ash dispersing device according to claim 5, characterized in that: The sliding rod is provided with a rubber sleeve, an arc-shaped plate and a connecting rod. The rubber sleeve is fitted on the outside of the connecting rod. Arc-shaped plates are symmetrically arranged on the upper and lower sides of the rubber sleeve. Semicircular bars are provided on the inner side of the slide rail, and the semicircular bars are equidistantly arranged. When the hydraulic device pushes the rubber sleeve to move, the arc-shaped plate moves in a vibrating manner on the semicircular bar under the elastic compression of the rubber sleeve, and the connecting rod drives the fixed plate on the upper end of the vertical plate to vibrate.

Citation Information

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