CN217024224U - Feeding device for washing fly ash - Google Patents
Feeding device for washing fly ash Download PDFInfo
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- CN217024224U CN217024224U CN202220850353.0U CN202220850353U CN217024224U CN 217024224 U CN217024224 U CN 217024224U CN 202220850353 U CN202220850353 U CN 202220850353U CN 217024224 U CN217024224 U CN 217024224U
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- fly ash
- baffle
- ton bag
- feeding device
- single solenoid
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Abstract
The application discloses a feed arrangement for flying dust washing, including electric block, flying dust ton bag and single solenoid feeding machine, single solenoid feeding machine passes through the rack-mount, the frame is equipped with the baffle, the vertical setting of baffle, the baffle is equipped with vibrating motor, works as flying dust ton bag is right during single solenoid feeding machine material loading, the facade butt of baffle the side of flying dust ton bag, the baffle supplies one side of flying dust ton bag butt is established to the butt side. The flying ash in the flying ash ton bag is vibrated through the baffle by the vibrating motor in this application, which is favorable for improving the feeding efficiency of the flying ash ton bag to the single solenoid feeder.
Description
Technical Field
The application relates to the field of waste incineration treatment technology, in particular to a feeding device for fly ash washing.
Background
Incineration fly ash refers to residue collected in a flue gas purification system (APC) of a waste (mainly, refuse) incineration plant, and generally includes dust collector fly ash and absorption tower fly ash or washing tower sewage sludge. The incineration fly ash is used as a double-material dangerous waste which has the characteristics of heavy metal hazard and no environmental persistent organic toxicity hazard.
The incineration fly ash cement solidification is to utilize a cement kiln to cooperatively treat the garbage fly ash, and has unique advantages. The cement production co-processing waste incineration fly ash can be processed and utilized on site according to local conditions, and high transportation cost of long-distance transportation and secondary pollution possibly caused are avoided, so that the technology has great advantages in China and is one of important development directions of incineration fly ash processing technologies in China in the future.
For example, the patent of the publication No. CN205443075U discloses a fly ash washing, feeding and stirring system, which mainly comprises an electric hoist, a fly ash ton bag, a single-screw feeder, a feeding part, a homogenizing and stirring tank, an anti-corrosion centrifugal sludge pump, a buffer tank and a pipeline valve group, wherein the homogenizing and stirring and buffer part is composed of the fly ash, the utility model provides a system for feeding, stirring, homogenizing and slow storage aiming at the new process of fly ash pretreatment-fly ash washing, which leads the fly ash to enter a cement kiln for cooperative disposal and contains substances harmful to the burning of the cement kiln.
In view of the above-mentioned related technologies, the inventor believes that during the process of loading the single screw feeder by the fly ash ton bag, because the powdered fly ash particles in the fly ash ton bag have resistance, the fly ash loading process is prone to generating stagnation, which affects the efficiency of fly ash loading.
SUMMERY OF THE UTILITY MODEL
In order to solve the fly ash ton bag and carry out the in-process of material loading to single solenoid feeding machine and easily appear the problem of hesitation, this application provides a feed arrangement for fly ash washing.
The application provides a feed arrangement for flying dust washing adopts following technical scheme:
the utility model provides a feed arrangement for flying dust washing, includes electric block, flying dust ton bag and single solenoid feeding machine, single solenoid feeding machine passes through the rack-mount, the frame is equipped with the baffle, the vertical setting of baffle, the baffle is equipped with vibrating motor, works as flying dust ton bag is right during single solenoid feeding machine material loading, the facade butt of baffle the side of flying dust ton bag, the baffle supplies one side of flying dust ton bag butt is established to the butt side.
By adopting the technical scheme, when the fly ash ton bag feeds materials to the single solenoid feeder, the vibration motor can drive the baffle to vibrate, so that fly ash in the fly ash ton bag abutting against the baffle vibrates, and when the fly ash in the fly ash ton bag vibrates, relative resistance is not easy to form among fly ash powder particles, thereby being beneficial to enabling the fly ash in the fly ash ton bag to smoothly enter the single solenoid feeder and improving the feeding efficiency of the fly ash to the single solenoid feeder.
Optionally, electric block passes through the overhead rail installation, the overhead rail length direction with the axial direction parallel of single solenoid feeding machine, and with the baffle is perpendicular.
Through adopting above-mentioned technical scheme, when electric block handling flying dust ton bag, place flying dust ton bag earlier on the ground of single solenoid feeder side or special thing platform of putting, utilize electric block to promote flying dust ton bag upwards after that, and length direction horizontal migration along overhead track to single solenoid feeder top, flying dust ton bag removes the in-process to single solenoid feeder top, need control flying dust ton bag and the position along the horizontal direction between the single solenoid feeder, under the limiting displacement of baffle, the staff is comparatively easy to control the relative position along the horizontal direction between flying dust ton bag and the single solenoid feeder, and is comparatively convenient.
Optionally, the upper edge of the baffle is bent in a direction away from the abutting side to form a guide portion.
Through adopting above-mentioned technical scheme, through setting up the guide part, be favorable to reducing the scraping effect of baffle upper edge to flying dust ton bag surface.
Optionally, a reinforcing rib plate is arranged on one side of the baffle, which is far away from the abutting side.
Through adopting above-mentioned technical scheme, be close to the in-process to the butt baffle gradually when flying ash ton bag under electric block's drive, the baffle is difficult to avoid receiving the impact of flying ash ton bag, through setting up deep floor, makes the structural strength of baffle obtain promoting to reduce the condition that the baffle appears warping under the impact of flying ash ton bag.
Optionally, one side of the baffle, which is close to the fly ash ton bag, is provided with two limiting rods, the two limiting rods are arranged in a staggered manner along the horizontal direction, and when the fly ash ton bag feeds the single solenoid feeder, the fly ash ton bag is located between the two limiting rods.
Through adopting above-mentioned technical scheme, through setting up two gag lever posts, can make flying dust ton bag remove the in-process above the single solenoid feeding machine and stop as early as possible and rock to make flying dust ton bag get into the material loading state as early as possible.
Optionally, one end of the limiting rod, which is far away from the baffle, extends to form an arc-shaped guide section, and the curvature center of the arc-shaped guide section is located on one side, which is far away from the other limiting rod.
Through adopting above-mentioned technical scheme, the arc direction section of two gag lever posts has the guide effect to flying dust ton bag, and when flying dust ton bag removed to between two gag lever posts along the horizontal direction, the tip that the baffle one end was kept away from to the gag lever post was difficult for scraping flying dust ton bag's surface.
Optionally, one end of the limiting rod, which is close to the baffle, is bent to form a connecting section, the connecting section is located on one side, which is away from the abutting side, of the baffle, and the connecting section and the baffle are welded and fixed in a cylindrical surface contact manner.
By adopting the technical scheme, the limiting rod is fixedly welded with the baffle through the connecting section, and the connecting strength between the limiting rod and the baffle is improved by arranging the connecting section. The linkage segment is bent through the gag lever post and is formed, is favorable to reducing the cracked condition of position appearance under the effort of flying dust ton bag of gag lever post connection baffle.
Optionally, an end of the connecting section remote from the arc-shaped guide section abuts against the vibration motor.
Through adopting above-mentioned technical scheme, through the tip butt vibrating motor that makes the linkage segment, when vibrating motor vibrates, vibrating motor can drive the gag lever post vibration to make the vibrating arm vibration pat flying dust ton bag, be favorable to further promoting the material loading efficiency of flying dust ton bag.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when the fly ash ton bag feeds materials to the single solenoid feeder, the vibration motor can drive the baffle to vibrate, so that fly ash in the fly ash ton bag abutting against the baffle vibrates, and when the fly ash in the fly ash ton bag vibrates, relative resistance is not easy to form among fly ash powder particles, thereby being beneficial to ensuring that the fly ash in the fly ash ton bag smoothly enters the single solenoid feeder so as to improve the fly ash feeding efficiency;
2. through setting up two gag lever posts, make flying dust ton bag remove the in-process above the single solenoid feeding machine and stop rocking as soon as possible to make flying dust ton bag get into the material loading state as soon as possible.
Drawings
Fig. 1 is a schematic view of the overall structure of the present embodiment.
Fig. 2 is a schematic view of the structure of the limiting rod according to the present embodiment.
Description of reference numerals: 1. an electric hoist; 2. fly ash ton bag; 21. a mouth part; 3. a single screw feeder; 31. a receiving hopper; 4. an overhead track; 5. a frame; 6. a baffle plate; 61. a guide portion; 7. reinforcing rib plates; 8. a vibration motor; 9. a limiting rod; 91. a main pole section; 92. a connection section; 93. an arc-shaped guide section.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses a feeding device for fly ash washing. Referring to fig. 1, the feeding device for washing the fly ash comprises an electric hoist 1, a fly ash ton bag 2 and a single solenoid feeder 3, wherein the electric hoist 1 is installed through an overhead rail 4, the single solenoid feeder 3 is installed through a rack 5, the length direction of the overhead rail 4 is parallel to the axial direction of the single solenoid feeder 3, a nozzle 21 for discharging is arranged at the lower part of the fly ash ton bag 2, and the single solenoid feeder 3 is provided with a receiving hopper 31 for receiving the fly ash.
The electric hoist 1 lifts the fly ash ton bag 2 and moves the fly ash ton bag to the upper part of the single-screw-tube feeder 3 along the horizontal direction, the mouth 21 of the fly ash ton bag 2 is aligned with the receiving hopper 31, the fly ash in the fly ash ton bag 2 is discharged from the mouth 21 and enters the single-screw-tube feeder 3 through the receiving hopper 31, and the single-screw-tube feeder 3 feeds the fly ash into the homogenizing and stirring tank.
Referring to fig. 1, a baffle 6 is fixedly connected to a frame 5, the baffle 6 is vertically arranged, the baffle 6 is perpendicular to an axis of a single solenoid feeder 3, when a fly ash ton bag 2 is fed to the single solenoid feeder 3, a vertical surface of the baffle 6 abuts against a side surface of the fly ash ton bag 2, one side of the baffle 6, which is abutted against the fly ash ton bag 2, is set as an abutting side, a guide portion 61 is formed by bending an upper edge of the baffle 6 to one side far away from the fly ash ton bag 2, and the condition that the upper edge of the baffle 61 scrapes the surface of the fly ash ton bag 2 can be reduced.
Baffle 6 has limiting displacement to flying dust ton bag 2, makes the staff need not to relapse the horizontal migration adjustment calabash, can make flying dust ton bag 2's mouth 21 aim at hopper 31, and is comparatively convenient.
Referring to fig. 2, one side of the baffle 6, which is far away from the abutting side, is provided with two reinforcing rib plates 7, the reinforcing rib plates 7 are vertically arranged, and the lower edges of the reinforcing rib plates 7 abut against the upper surface of the rack 5. The reinforcing ribs have a reinforcing effect on the baffle 6, and are favorable for reducing the deformation of the baffle 6 under the pushing or impacting effect of the fly ash ton bag 2.
Referring to fig. 1, a vibration motor 8 is disposed on one side of the baffle 6 away from the abutting side, and the vibration motor 8 can vibrate the fly ash in the fly ash ton bag 2 through the baffle 6, so that the fly ash in the fly ash ton bag 2 can be discharged from the nozzle 21 by overcoming the damping effect between the fly ash powders, and the fly ash feeding efficiency can be improved.
Referring to fig. 1 and 2, two limiting rods 9 are arranged on one side of the baffle 6 close to the fly ash ton bag 2, the cross section of each limiting rod 9 is circular, the two limiting rods 9 are arranged in a staggered mode in the horizontal direction, and when the fly ash ton bag 2 feeds the single-screw pipe feeding machine 3, the fly ash ton bag 2 is located between the two limiting rods 9. The two limiting rods 9 jointly limit the fly ash ton bag 2, so that the fly ash ton bag 2 can be quickly stopped to shake when moving to the position above the single-solenoid feeding machine 3, and the fly ash ton bag 2 can be conveniently fed as soon as possible.
Referring to fig. 2, the limiting rod 9 includes a main rod section 91, one end of the main rod section 91 close to the baffle 6 is bent to form a connecting section 92, the connecting section 92 is located on one side of the baffle 6 away from the abutting side, the connecting section 92 and the baffle 6 are welded and fixed in a cylindrical surface contact manner, and one end of the connecting section 92 away from the main rod section 91 abuts against the vibration motor 8; one end of the limiting rod 9, which is far away from the baffle 6, is extended with an arc-shaped guide section 93, and the curvature center of the arc-shaped guide section 93 is positioned at one side far away from the other limiting rod 9.
In the process that the fly ash ton bag 2 horizontally moves to a position between the two limiting rods 9, the arc-shaped guide sections 93 of the limiting rods 9 have a guide effect on the fly ash ton bag 2; gag lever post 9 passes through linkage segment 92 connecting barrier 6, makes the joint strength between gag lever post 9 and the baffle 6 obtain promoting, and the tip butt vibrating motor 8 of linkage segment 92 makes vibrating motor 8 can drive gag lever post 9 vibration and pat flying dust ton bag 2, is favorable to further accelerating the flying dust ton bag 2 and unloads.
The implementation principle of the feeding device for fly ash washing in the embodiment of the application is as follows: when the electric hoist 1 hoists the fly ash ton bag 2, the fly ash ton bag 2 is firstly placed on the ground beside the single solenoid feeder 3 or a special placing table, and then the fly ash ton bag 2 is lifted upwards by the electric hoist 1 and horizontally moved to the upper part of the single solenoid feeder 3 until the fly ash ton bag 2 is abutted against the surface of the baffle 6; when the fly ash ton bag 2 feeds the single solenoid feeder 3, the vibration motor 8 can drive the baffle 6 to vibrate, so that the fly ash in the fly ash ton bag 2 abutting against the baffle 6 vibrates, and when the fly ash in the fly ash ton bag 2 vibrates, relative resistance is not easy to form among fly ash powder particles, thereby being beneficial to enabling the fly ash in the fly ash ton bag 2 to smoothly enter the single solenoid feeder 3, and improving the feeding efficiency of the fly ash ton bag 2 to the single solenoid feeder 3.
The above are preferred embodiments of the present application, and the scope of protection of the present application is not limited thereto, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a feed arrangement for flying dust washing, includes electric block (1), flying dust ton bag (2) and single solenoid feeding machine (3), its characterized in that: the single solenoid feeding machine (3) is installed through a rack (5), the rack (5) is provided with a baffle (6), the baffle (6) is vertically arranged, the baffle (6) is provided with a vibration motor (8), when the fly ash ton bag (2) is right when the single solenoid feeding machine (3) is fed, the vertical surface of the baffle (6) is abutted to the side surface of the fly ash ton bag (2), and the baffle (6) supplies one side of the fly ash ton bag (2) to be arranged to be abutted.
2. A feeding device for fly ash washing according to claim 1, characterized in that: electric block (1) is installed through overhead track (4), the length direction of overhead track (4) with the axial direction parallel of single screwed pipe feeding machine (3), and with baffle (6) are perpendicular.
3. A feeding device for fly ash washing according to claim 1, characterized in that: the upper edge of the baffle (6) is bent to the direction departing from the abutting side to form a guide part (61).
4. A feeding device for fly ash washing according to claim 1, characterized in that: and a reinforcing rib plate (7) is arranged on one side of the baffle (6) departing from the abutting side.
5. A feeding device for fly ash washing according to claim 1, characterized in that: one side of the baffle (6) close to the fly ash ton bag (2) is provided with two limiting rods (9), the two limiting rods (9) are arranged in a staggered mode along the horizontal direction, and when the fly ash ton bag (2) feeds the single solenoid feeder (3), the fly ash ton bag (2) is located between the two limiting rods (9).
6. A feeding device for fly ash washing according to claim 5, characterized in that: one end of the limiting rod (9) far away from the baffle (6) is extended with an arc-shaped guide section (93), and the curvature center of the arc-shaped guide section (93) is positioned at one side far away from the other limiting rod (9).
7. A feeding device for fly ash washing according to claim 6, characterized in that: one end, close to the baffle (6), of the limiting rod (9) is bent to form a connecting section (92), the connecting section (92) is located on one side, away from the abutting side, of the baffle (6), and the connecting section (92) is welded and fixed with the baffle (6) in a cylindrical surface contact mode.
8. A feeding device for fly ash washing according to claim 7, characterized in that: the end of the connecting section (92) remote from the arc-shaped guide section (93) abuts against the vibration motor (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220850353.0U CN217024224U (en) | 2022-04-13 | 2022-04-13 | Feeding device for washing fly ash |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220850353.0U CN217024224U (en) | 2022-04-13 | 2022-04-13 | Feeding device for washing fly ash |
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CN217024224U true CN217024224U (en) | 2022-07-22 |
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CN202220850353.0U Active CN217024224U (en) | 2022-04-13 | 2022-04-13 | Feeding device for washing fly ash |
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- 2022-04-13 CN CN202220850353.0U patent/CN217024224U/en active Active
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