Rapid treatment device for fly ash solidification
By designing a rapid fly ash solidification treatment device, which utilizes the combination of an electric telescopic rod and a synchronous shield, the device enables rapid shaping and external pushing of fly ash, solving the complex processing problems caused by the coordination of multiple devices in existing technologies and improving processing efficiency.
Patent Information
- Application Number
- CN202422369725.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Existing fly ash treatment devices require the coordinated use of multiple sets of equipment, resulting in a complicated treatment process.
A rapid fly ash solidification treatment device was designed, including an external discharge section, a displacement section, and a mixing section. By cooperating with an electric telescopic rod and a synchronous shield, the fly ash is shaped and pushed outward. A moving mixing drum is used for stirring and position adjustment, simplifying the treatment process.
It enables rapid shaping and extrapolation of fly ash, simplifies the processing procedure, and improves processing efficiency.
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Figure CN223440680U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the fly ash solidification treatment technical field, more specifically, especially relates to a fly ash solidification rapid processing device. BACKGROUND
[0002] Fly ash is the tiny ash particle discharged in the fuel combustion process, also called fly ash or soot, fly ash is formed after coal powder enters the hearth and is cooled after heat absorption of the heat surface under the condition of suspended combustion, once fly ash is discharged to the environment, it will cause serious pollution and damage to water, air and soil, and also has great harm to organisms, and fly ash solidification is to show chemical inertness or to contain all pollution components involved in the hazardous waste, so as to facilitate disposal, utilization or transportation, and in order to facilitate fly ash solidification treatment, a rapid processing device is needed.
[0003] Based on the prior art, it is found that the existing fly ash processing device is usually mixed with fly ash and asphalt or cement material during use, and is subjected to compression and shaping treatment after mixing is completed to facilitate transportation after shaping is completed, but a plurality of devices need to be used in cooperation during the processing process, resulting in a relatively complex processing process. UTILITY MODEL CONTENT
[0004] In order to solve the above technical problems, the disclosed embodiment relates to a fly ash solidification rapid processing device to solve the problem that the existing fly ash processing device is usually mixed with fly ash and asphalt or cement material during use, and is subjected to compression and shaping treatment after mixing is completed to facilitate transportation after shaping is completed, but a plurality of devices need to be used in cooperation during the processing process, resulting in a relatively complex processing process.
[0005] In the first aspect of the present disclosure, a fly ash solidification rapid processing device is provided by the following specific technical means:
[0006] A fly ash solidification rapid processing device comprises: an outer discharge part; the outer discharge part comprises a lower fixed frame and a pressing cylinder; the pressing cylinder is set as a cylindrical structure, a rectangular cylinder is provided on the outer wall of the pressing cylinder, the interior of the pressing cylinder is set as a cavity structure, an electric telescopic rod B is provided at the bottom of the pressing cylinder, an electric telescopic rod A is provided on the outer wall of the pressing cylinder, a rectangular protrusion is provided on the outer wall of the pressing cylinder, and the rectangular protrusion of the pressing cylinder is fixed to the interior of the lower fixed frame by screws; a displacement part is provided on the top of the outer discharge part, and the displacement part comprises an upper fixing plate, a displacement rod, a synchronous shielding plate and Leakage trough; the upper fixed plate is fixedly connected to the top of the pressing cylinder, and the leakage trough and the pressing cylinder are kept aligned; the upper fixed plate is arranged into a square plate structure, the top of the upper fixed plate is provided with a rectangular groove, the outer wall of the upper fixed plate is provided with a rectangular sliding groove, the outer wall of the upper fixed plate is provided with a rectangular protrusion, and the rectangular protrusion of the upper fixed plate is provided with an axial hole; the top of the displacement part is provided with a mixing part, and the mixing part includes a movable mixing cylinder; the movable mixing cylinder is slidably connected to the inside of the upper fixed plate, the movable mixing cylinder is connected to the displacement rod by a thread, and the movable mixing cylinder is connected to the synchronous shield by a screw.
[0007] At least in some embodiments, the external discharge portion further includes an external transport component; the lower fixed frame is configured as a U-shaped structure, a rectangular protrusion is provided on the inner wall of the lower fixed frame, and an axial hole is provided on the outer wall of the lower fixed frame; the external transport component is provided with a rotating shaft, the external transport component is provided with a conveyor belt, and the rotating shaft of the external transport component is rotatably connected to the axial hole of the lower fixed frame.
[0008] At least in some embodiments, the outer row portion further includes an outer push plate; the outer push plate is configured as an arc-shaped structure, the outer push plate is slidably connected to the inside of the pressing cylinder, and the outer push plate is connected to the electric telescopic rod A on the outer wall of the pressing cylinder.
[0009] At least in some embodiments, the outer row part also includes an upper top plate; the upper top plate is set as a disc-shaped structure, the upper top plate is slidably connected to the inside of the pressing cylinder, and the outer push plate is connected to the electric telescopic rod B on the outer wall of the pressing cylinder.
[0010] At least in some embodiments, the displacement rod is configured as a threaded rod structure, and two groups of bottom surfaces of the displacement rod are respectively provided with cylindrical protrusions. There are two groups of displacement rods in total, and the two groups of displacement rods are respectively rotatably connected to the rectangular protrusions of the upper fixed plate.
[0011] At least in some embodiments, the synchronous shield is configured as a U-shaped structure, and the synchronous shield is slidably connected in the upper fixed plate; the leakage trough is configured as a circular through hole, and the leakage trough is opened at the bottom of the upper fixed plate.
[0012] At least in some embodiments, the mixing part further comprises a stirring frame; the moving mixing barrel is provided in a cylindrical structure, the inside of the moving mixing barrel is a cavity structure, a rectangular frame-shaped protrusion is arranged on the outer wall of the moving mixing barrel, a rectangular block is arranged on the outer wall of the rectangular frame-shaped protrusion of the moving mixing barrel, a threaded through hole is arranged on the rectangular block of the moving mixing barrel, and a stirring motor is arranged on the top of the moving mixing barrel; the stirring frame is provided in a cylindrical rod structure, a stirring rod is arranged on the outer wall of the stirring frame, the stirring frame is rotationally connected to the inside of the moving mixing barrel, and the stirring frame is connected to the stirring motor.
[0013] The fly ash solidification rapid treatment device has the following beneficial effects:
[0014] 1. The outer push plate and the upper top plate are arranged, the compression cylinder is arranged at the bottom of the upper fixed plate, the mixed fly ash is discharged to the top of the upper top plate through the discharge groove under the action of gravity after the compression cylinder is aligned with the discharge groove, the fly ash in the compression cylinder is pushed out by the upper top plate moving upward controlled by the electric telescopic rod B after the moving mixing barrel moves, the discharge groove is shielded by the synchronous shutter, the fly ash block is pushed out by the outer push plate under the action of the electric telescopic rod A, and the fly ash is conveniently pushed out.
[0015] 2. The moving mixing barrel and the upper fixed plate are arranged, the upper fixed plate is fixed at the top of the compression cylinder, the overall stability of the displacement part is conveniently maintained, the moving mixing barrel is slidingly connected to the inside of the upper fixed plate, the position is conveniently adjusted under the control of the displacement rod, the moving mixing barrel is dislocated with the discharge groove, the fly ash discharged downward is compacted and shaped by the upper top plate, the remaining fly ash is continuously stirred by the stirring frame in the moving mixing barrel, synchronous processing is facilitated, and the fly ash is conveniently and rapidly processed. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a three-dimensional assembly structure schematic view of the utility model.
[0017] Figure 2 It is a three-dimensional assembly structure schematic view of the utility model.
[0018] Figure 3 It is an exploded structure schematic view of the utility model.
[0019] Figure 4 It is an exploded structure schematic view of the utility model.
[0020] Figure 5 It is a discharge state partial cut structure schematic view of the utility model.
[0021] Figure 6 It is a compression block state partial cut structure schematic view of the utility model.
[0022] In the figure, the correspondence between the component names and the figure numbers is:
[0023] 1, outer row part; 101, lower solid frame; 102, outer delivery assembly; 103, pressing cylinder; 104, outer push plate; 105, upper top plate;
[0024] 2, displacement part; 201, upper solid plate; 202, displacement rod; 203, synchronous shutter; 204, material leakage groove;
[0025] 3, mixing part; 301, moving mixing cylinder; 302, stirring frame. DETAILED DESCRIPTION
[0026] The embodiment of the present application will be further described in detail below in combination with the drawings and examples.
[0027] Example one: as shown in the accompanying Figure 1 to the accompanying Figure 6 : the utility model provides a fly ash solidification rapid processing device, include: outer row part 1, outer row part 1 includes lower solid frame 101 and pressing cylinder 103, and pressing cylinder 103 is set as cylindrical cylinder structure, and the outer wall of pressing cylinder 103 is equipped with rectangular cylinder, and the inside of pressing cylinder 103 is provided with cavity structure, and the bottom of pressing cylinder 103 is equipped with electric telescopic rod B, and the outer wall of pressing cylinder 103 is equipped with electric telescopic rod A, and the outer wall of pressing cylinder 103 is equipped with rectangular protrusion, and the rectangular protrusion position of pressing cylinder 103 is fixed in the inside of lower solid frame 101 by screw, and pressing cylinder 103 is used to assist the fixing of outer push plate 104 and upper top plate 105, to facilitate the shaping and outer push processing of fly ash, to facilitate the processing of fly ash, and the top of outer row part 1 is equipped with displacement part 2, and displacement part 2 includes upper solid plate 201, displacement rod 202, synchronous shutter 203 and material leakage groove 204, and upper solid plate 201 is fixedly connected to the top of pressing cylinder 103, and material leakage groove 204 keeps the alignment state with pressing cylinder 103, and upper solid plate 201 is set as square plate structure, and the top of upper solid plate 201 is equipped with rectangular recess, and the outer wall of upper solid plate 201 is equipped with rectangular sliding groove, and the outer wall of upper solid plate 201 is equipped with rectangular protrusion, and the rectangular protrusion of upper solid plate 201 is equipped with shaft hole, and upper solid plate 201 is used to assist the fixing of other structures of displacement part 2, to assist the processing of fly ash while keeping stable, and the top of displacement part 2 is equipped with mixing part 3, and mixing part 3 includes moving mixing cylinder 301, and moving mixing cylinder 301 is slidably connected in the inside of upper solid plate 201, and moving mixing cylinder 301 is connected with displacement rod 202 through screw thread, and moving mixing cylinder 301 is connected with synchronous shutter 203 through screw.
[0028] Example two: on the basis of example one, as Figure 5As shown, the outer discharge part 1 also includes an outer delivery component 102; the lower fixed frame 101 is set as a U-shaped structure, the inner wall of the lower fixed frame 101 is provided with a rectangular protrusion, and the outer wall of the lower fixed frame 101 is provided with an axis hole; the lower fixed frame 101 assists in installing and fixing other structures of the device to facilitate maintaining the overall stability of the device; the outer delivery component 102 is provided with a rotating shaft, the outer delivery component 102 is provided with a conveyor belt, and the rotating shaft of the outer delivery component 102 is rotatably connected to the axis hole of the lower fixed frame 101; the outer delivery component 102 is used to transport the shaped fly ash to facilitate the processing of the fly ash; the outer discharge part 1 also includes an outer push plate 104; the outer push plate 104 is set as an arc-shaped structure, The outer push plate 104 is slidably connected to the inside of the pressing cylinder 103, and the outer push plate 104 is connected to the electric telescopic rod A on the outer wall of the pressing cylinder 103; the outer push plate 104 is used to be adjusted under the action of the electric telescopic rod A to facilitate the pushing and processing of the fly ash, so as to facilitate its use; the outer discharge part 1 also includes an upper top plate 105; the upper top plate 105 is set to a disc-shaped structure, and the upper top plate 105 is slidably connected to the inside of the pressing cylinder 103, and the outer push plate 104 is connected to the electric telescopic rod B on the outer wall of the pressing cylinder 103; the outer push plate 104 is used to move upward under the action of the electric telescopic rod B to tighten the fly ash, so as to facilitate the shaping of the fly ash.
[0029] In the embodiment of the present disclosure, Figure 6 As shown, the displacement rod 202 is set to a threaded rod structure, and the two groups of bottom surfaces of the displacement rod 202 are respectively provided with cylindrical protrusions. There are two groups of displacement rods 202, and the two groups of displacement rods 202 are rotatably connected to the rectangular protrusions of the upper fixed plate 201; the displacement rod 202 is used to rotate under the action of an external driving device, so as to facilitate the position adjustment of the mobile mixing drum 301 by thread control; the synchronous shield plate 203 is set to a U-shaped structure, and the synchronous shield plate 203 is slidably connected in the upper fixed plate 201; the synchronous shield plate 203 is used to block the leakage trough 204 under the drive of the mobile mixing drum 301, so as to facilitate the shaping treatment of the fly ash; the leakage trough 204 is set to a circular through hole, and the leakage trough 204 is opened at the bottom of the upper fixed plate 201; the leakage trough 204 is used to assist the internal fly ash to leak downward after being aligned with the mobile mixing drum 301.
[0030] In the embodiment of the present disclosure, Figure 5As shown, the mixing part 3 further comprises a stirring frame 302; the movable mixing barrel 301 is in a cylindrical structure, the inside of the movable mixing barrel 301 is a cavity structure, a rectangular frame-shaped protrusion is arranged on the outer wall of the movable mixing barrel 301, a rectangular block is arranged on the outer wall of the rectangular frame-shaped protrusion of the movable mixing barrel 301, threaded holes are arranged on the rectangular block of the movable mixing barrel 301, and a stirring motor is arranged on the top of the movable mixing barrel 301; the movable mixing barrel 301 is used for assisting in installing the stirring frame 302, so as to cooperate with the stirring frame 302 to mix and treat the fly ash; the stirring frame 302 is in a cylindrical rod structure, a stirring rod is arranged on the outer wall of the stirring frame 302, the stirring frame 302 is rotationally connected to the inside of the movable mixing barrel 301, and the stirring frame 302 is connected with the stirring motor; the stirring frame 302 is used for stirring and treating the fly ash in the inside under the driving of the stirring motor, so as to facilitate the treatment of the fly ash.
[0031] The specific use mode and role of the embodiment are as follows:
[0032] In use, the device is moved to a specified position as a whole, fly ash and cement or asphalt material are conveyed into the inside of the movable mixing barrel 301, the mixing motor is started to drive the stirring frame 302 to rotate, the fly ash in the inside is mixed and treated in the rotating process, after the mixing is completed, the displacement rod 202 is controlled to rotate by an external device, the movable mixing barrel 301 is positionally adjusted by screw control in the rotating process, and the movable mixing barrel 301 is slidably adjusted in the inside of the upper fixed plate 201, after the movable mixing barrel 301 is aligned with the material leakage groove 204, the fly ash in the inside is leaked to the upper top plate 105 under the action of gravity, the movable mixing barrel 301 is moved by the displacement rod 202, the synchronous shielding plate 203 shields the material leakage groove 204, the electric telescopic rod B is started to drive the upper top plate 105 to move upwards, the fly ash is pushed to be treated, the upper top plate 105 drives the fly ash block to move downwards at the same time of resetting, the electric telescopic rod A is started to control the outer push plate 104 to be adjusted, so that the fly ash is pushed to the outer conveying assembly 102, and the fly ash is treated.
[0033] In this paper, the following points need attention:
[0034] 1. The drawings of the disclosed embodiment only relate to the structures involved in the disclosed embodiment, and other structures can be referred to the general design.
[0035] 2. In the case of no conflict, the embodiments and the features in the embodiments of the disclosure can be combined with each other to obtain new embodiments.
[0036] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A fly ash solidification rapid treatment device, comprising: The outer row part is characterized in that: the outer row part includes a lower fixing frame and a pressing cylinder; The pressing cylinder is arranged into a cylindrical structure, a rectangular cylinder is provided on the outer wall of the pressing cylinder, the interior of the pressing cylinder is arranged into a cavity structure, an electric telescopic rod B is provided at the bottom of the pressing cylinder, an electric telescopic rod A is provided on the outer wall of the pressing cylinder, a rectangular protrusion is provided on the outer wall of the pressing cylinder, and the rectangular protrusion position of the pressing cylinder is fixed to the interior of the lower fixed frame by screws; a displacement part is provided at the top of the outer row part, and the displacement part includes an upper fixing plate, a displacement rod, a synchronous shield and a material leakage groove; the upper fixing plate is fixed to the top of the pressing cylinder, and the material leakage groove and the pressing cylinder are kept aligned; the upper fixing plate is arranged into a square plate structure, a rectangular groove is provided at the top of the upper fixing plate, a rectangular sliding groove is provided on the outer wall of the upper fixing plate, a rectangular protrusion is provided on the outer wall of the upper fixing plate, and an axial hole is provided on the rectangular protrusion of the upper fixing plate; a mixing part is provided at the top of the displacement part, and the mixing part includes a movable mixing cylinder; the movable mixing cylinder is slidably connected to the interior of the upper fixing plate, the movable mixing cylinder is connected to the displacement rod by a thread, and the movable mixing cylinder is connected to the synchronous shield by a screw.
2. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The external discharge part also includes an external transport component; the lower fixed frame is configured as a U-shaped structure, a rectangular protrusion is provided on the inner wall of the lower fixed frame, and an axial hole is provided on the outer wall of the lower fixed frame; the external transport component is provided with a rotating shaft, and the external transport component is provided with a conveyor belt, and the rotating shaft of the external transport component is rotatably connected to the axial hole of the lower fixed frame.
3. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The outer portion further includes an outer push plate; the outer push plate is configured as an arc-shaped structure, the outer push plate is slidably connected to the inside of the pressing cylinder, and the outer push plate is connected to the electric telescopic rod A on the outer wall of the pressing cylinder.
4. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The outer row part also includes an upper top plate; the upper top plate is set to a disc-shaped structure, the upper top plate is slidably connected to the inside of the pressing cylinder, and the outer push plate is connected to the electric telescopic rod B on the outer wall of the pressing cylinder.
5. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The displacement rod is configured as a threaded rod structure, and cylindrical protrusions are respectively provided on the bottom surfaces of the two groups of displacement rods. There are two groups of displacement rods in total, and the two groups of displacement rods are respectively rotatably connected to the rectangular protrusions of the upper fixed plate.
6. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The synchronous shield is set as a U-shaped structure, and the synchronous shield is slidably connected in the upper fixed plate; the leakage trough is set as a circular through hole, and the leakage trough is opened at the bottom of the upper fixed plate.
7. The fly ash solidification rapid treatment device according to claim 1, characterized in that: The mixing part also includes a stirring frame; the mobile mixing drum is configured as a cylindrical structure, the interior of the mobile mixing drum is a cavity structure, a rectangular frame-shaped protrusion is provided on the outer wall of the mobile mixing drum, a rectangular block is provided on the outer wall of the rectangular frame-shaped protrusion of the mobile mixing drum, a threaded through hole is provided on the rectangular block of the mobile mixing drum, and a stirring motor is provided on the top of the mobile mixing drum; the stirring frame is configured as a cylindrical rod-shaped structure, a stirring rod is provided on the outer wall of the stirring frame, the stirring frame is rotatably connected to the interior of the mobile mixing drum, and the stirring frame is connected to the stirring motor.