Ash material discharging equipment for electric power construction
By designing the drive and agitation components, the problems of inaccurate discharge and clumping in traditional ash material feeding equipment have been solved, achieving precise control of the discharge volume and improving construction efficiency.
Patent Information
- Application Number
- CN202423186032.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Traditional ash feeding equipment is difficult to control the feeding amount precisely, and it is easy to clump together, resulting in poor feeding or blockage. In addition, the adjustment of the discharge speed and quantity is cumbersome, which affects the construction quality and efficiency.
The drive assembly and the discharge assembly work together. The second motor drives the pinion to rotate, and the rotating plate is adjusted to control the size of the discharge port. The stirring assembly drives the stirring rod through the first motor to stir the ash material and keep it in a loose state.
It enables precise control of the amount of ash discharged, avoids material flow problems and blockages caused by caking, simplifies the adjustment of discharge speed and quantity, and improves construction efficiency and material utilization.
Smart Images

Figure CN223721684U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to power construction ash material unloading equipment technical field, specifically, relate to a kind of ash material unloading equipment for power construction. BACKGROUND
[0002] In the process of power construction, ash material unloading is a common and important operating link.
[0003] Traditional ash material unloading equipment often has some shortcomings, for example, the unloading amount is difficult to accurately control, and overloading or underloading is prone to occur, which affects the construction quality and the rational use of materials. Moreover, due to its own characteristics, ash material is prone to caking during storage and unloading, which causes unsmooth unloading and even blocks the unloading channel, affecting the construction progress and efficiency. In addition, the discharge speed and discharge amount adjustment mode of traditional unloading equipment is relatively complicated, which cannot meet the diversified needs of ash material unloading in power construction, and the operator needs to spend a lot of time and effort to adjust and maintain the equipment, increasing the construction cost and labor intensity. SUMMARY
[0004] The technical problem to be solved by the utility model is to provide an ash material unloading equipment for power construction, which facilitates the unloading and processing of ash material.
[0005] An ash material unloading equipment for power construction includes a unloading hopper, and the bottom of the unloading hopper is provided with a unloading hopper bottom ring, characterized in that: a discharge assembly is connected to the unloading hopper, and the discharge assembly is used for discharging;
[0006] An agitation assembly is connected to the unloading hopper, and the agitation assembly is used for agitating the ash material;
[0007] A drive assembly is connected to the discharge assembly to drive the discharge assembly to work and adjust the discharge amount;
[0008] The discharge assembly includes triangular plates, square plates, sliding blocks, sliding grooves, rotating plates, fixed plates, and inclined sliding grooves formed in the fixed plates. The inclined sliding grooves are a plurality of, the fixed plate is circular, the fixed plate is fixed to the inner bottom end of the unloading hopper, the fixed plate is located below the unloading hopper bottom ring, the inclined sliding grooves are evenly arranged on the circumference of the fixed plate, a circular shaft at the upper part of each sliding block is arranged in each inclined sliding groove, each inclined sliding groove matches the circular shaft at the upper part of the sliding block, the upper end of the circular shaft at the upper part of each sliding block is fixedly connected to the square plate, one side of each square plate is fixedly connected to the triangular plate, the side walls of all triangular plates are in close contact with each other, all triangular plates form a material blocking plate, each sliding block is arranged in a sliding groove, the sliding groove is a regular polygon, each side of the sliding groove is provided with the sliding block, and the sliding groove is arranged at the upper side edge position of the rotating plate.
[0009] As a further limitation of the technical solution, the stirring assembly comprises a first motor, a rotating shaft and a stirring rod, the upper end of the stirring rod is fixed with the lower end of the rotating shaft, the upper end of the rotating shaft is fixedly connected with the output shaft of the first motor, and the first motor is fixed on the upper side of the hopper.
[0010] As a further limitation of the technical solution, the driving assembly comprises a second motor, a motor support, a pinion and a gear ring, the center of the pinion is fixedly connected with the second motor, the second motor is fixed with the motor support, the motor support is fixed on the lower side of the base, the base is fixedly connected with the hopper, the pinion is engaged with the gear ring, and the gear ring is fixedly connected with the rotating plate.
[0011] As a further limitation of the technical solution, the baffle plate formed by the triangular plates is arranged on the lower side of the hopper bottom ring, the surface of the triangular plate is smooth, and the upper side of the triangular plate is attached to the lower side of the hopper bottom ring.
[0012] Compared with the prior art, the device has the following advantages and positive effects:
[0013] The device can facilitate discharging through the cooperation of the driving assembly and the discharging assembly; the second motor in the driving assembly drives the pinion to rotate, the pinion is engaged with the gear ring, thereby driving the rotating plate to rotate, the sliding block slides in the inclined sliding groove, and then the baffle plate composed of the triangular plates is opened and closed, so that the size of the discharge port of the hopper is adjusted, and the accurate requirement for the discharging amount of the ash under different construction scenes is met.
[0014] The setting of the stirring assembly effectively solves the problem of ash caking; the first motor drives the rotating shaft and the stirring rod to rotate, the ash in the hopper is continuously stirred, the ash always keeps a loose state, and the phenomenon of poor discharging or blockage caused by ash caking is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0015] The drawings described herein are used to provide a further understanding of the present application, constitute a part of the present application, and the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained from these drawings by those skilled in the art without creating labor. In the drawings:
[0016] Figure 1 The drawings described herein are used to provide a further understanding of the present application, constitute a part of the present application, and the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained from these drawings by those skilled in the art without creating labor. In the drawings: Figure One ;
[0017] Figure 2 The drawings described herein are used to provide a further understanding of the present application, constitute a part of the present application, and the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained from these drawings by those skilled in the art without creating labor. In the drawings:
[0018] Figure 3 For the utility model Figure 2 The local enlarged view of A in the middle part;
[0019] Figure 4 For the utility model's three-dimensional structure schematic Figure Three ;
[0020] Figure 5 For the utility part's local three-dimensional structure schematic Figure One ;
[0021] Figure 6 For the utility part's local three-dimensional structure schematic Figure Two .
[0022] In the drawing: 1, the blanking hopper;101, the blanking hopper bottom ring;2, stirring assembly;201, first motor;202, shaft;203, stirring rod;3, discharge assembly;301, triangular plate;302, square plate;303, sliding block;304, sliding slot;305, rotating plate;306, fixed plate;307, inclined sliding slot;4, base;5, rotating plate drive assembly;501, second motor;502, motor support;503, pinion;504, gear ring. Specific implementation
[0023] The utility model will be further described below in conjunction with the accompanying Figures 1-6 And implementation.
[0024] A kind of ash blanking equipment for electric power construction, including blanking hopper 1, the bottom of the blanking hopper 1 is provided with blanking hopper bottom ring 101, it is characterized by: discharge assembly 3, connect the blanking hopper 1, the discharge assembly 3 is used for discharge;
[0025] Stirring assembly 2, connect the blanking hopper 1, the stirring assembly 2 is used for the stirring of ash;
[0026] Drive assembly, connect the discharge assembly 3, for driving the discharge assembly 3 work, adjust discharge volume;
[0027] The discharge assembly 3 comprises a triangular plate 301, a square plate 302, a sliding block 303, a sliding groove 304, a rotating plate 305, a fixed plate 306, and inclined sliding grooves 307 provided on the fixed plate 306, the inclined sliding grooves 307 are a plurality of, the fixed plate 306 is annular, the fixed plate 306 is fixed at the inner bottom end of the hopper 1, the fixed plate 306 is located below the hopper bottom ring 101, the inclined sliding grooves 307 are circumferentially and uniformly arranged on the fixed plate 306, a circular shaft at the upper part of each sliding block 303 is arranged in each inclined sliding groove 307, each inclined sliding groove 307 matches the circular shaft at the upper part of the sliding block 303, the upper end of the circular shaft at the upper part of each sliding block 303 is fixedly connected with the square plate 302, one side of each square plate 302 is fixedly connected with the triangular plate 301, the side walls of all the triangular plates 301 are in close contact with each other, and all the triangular plates 301 form a material blocking plate, each sliding block 303 is arranged in the sliding groove 304, the sliding groove 304 is a regular polygon, each side of the sliding groove 304 is provided with the sliding block 303, and the sliding groove 304 is arranged at the upper side edge of the rotating plate 305.
[0028] In the embodiment, the rotation of the rotating plate 305 enables the sliding block 303 to slide in the inclined sliding groove 307 along the track of the inclined sliding groove 307, the sliding block 303 moves along the sliding groove 304 under the limiting action of the inclined sliding groove 307, the sliding of the sliding block 303 drives the material blocking plate formed by the triangular plates 301 to open and close, thereby adjusting the size of the discharge port below the hopper bottom ring 101 and controlling the discharge amount. When the material blocking plate is opened larger, the discharge port becomes larger, and the discharge amount increases; when the material blocking plate is closed smaller, the discharge port becomes smaller, and the discharge amount decreases.
[0029] The stirring assembly 2 comprises a first motor 201, a rotating shaft 202, and a stirring rod 203, the upper end of the stirring rod 203 is fixed with the lower end of the rotating shaft 202, the upper end of the rotating shaft 202 is fixedly connected with the output shaft of the first motor 201, and the first motor 201 is fixed on the upper center of the hopper 1.
[0030] In the embodiment, when the first motor 201 is started, the output shaft of the motor drives the rotating shaft 202 to rotate, and the rotating shaft 202 in turn drives the stirring rod 203 to rotate in the hopper 1, so that the stirring rod 203 stirs and turns the ash during the rotation process, breaks the agglomerated structure of the ash, and keeps the ash in a loose state, thereby ensuring that the ash can be smoothly discharged through the discharge port, preventing the discharge blockage problem caused by the agglomeration of the ash, and ensuring the continuity and stability of the discharging process.
[0031] The driving group comprises a second motor 501, a motor support 502, a pinion 503 and a gear ring 504, the center of the pinion 503 is fixedly connected with the second motor 501, the second motor 501 fixes the motor support 502, the motor support 502 is fixed on the lower side of the base 4, the base 4 is fixedly connected with the lower hopper 1, the pinion 503 engages the gear ring 504, and the gear ring 504 is fixedly connected with the rotating plate 305.
[0032] In the embodiment, when the second motor 501 in the driving assembly works, the pinion 503 is driven to rotate, the pinion 503 engages the gear ring 504, the gear ring 504 is fixedly connected with the rotating plate 305, and thus the rotating plate 305 is driven to rotate.
[0033] The material blocking plate formed by the triangular plates 301 is arranged on the lower side of the lower hopper bottom ring 101, the surface of the triangular plate 301 is smooth, and the upper side of the triangular plate 301 is attached to the lower side of the lower hopper bottom ring 101.
[0034] The working process of the utility model is as follows:
[0035] Before discharging, according to the required discharging amount of the ash, the second motor 501 in the driving assembly is started, the second motor 501 fixed by the motor support 502 drives the pinion 503 to rotate, the pinion 503 engages the gear ring 504, the gear ring 504 drives the rotating plate 305 to rotate, the circular shaft of the sliding block 303 slides in the inclined sliding groove 307, the sliding block 303 drives the material blocking plate composed of the square plate 302 and the triangular plate 301 to open and close, thereby adjusting the size of the discharging port below the lower hopper bottom ring 101, and achieving the expected discharging amount setting;
[0036] The first motor 201 of the stirring assembly 2 is started, the output shaft of the first motor 201 drives the rotating shaft 202 and the stirring rod 203 to rotate, the ash in the lower hopper 1 is stirred, the ash is kept in a loose state, and the ash is conveniently discharged, the rotating speed of the first motor 201 can be adjusted in time according to the actual situation during the ash discharging process, so as to ensure the fluidity of the ash and the uniformity of the discharging;
[0037] When the discharging needs to be paused or stopped, the first motor 201 is stopped first, then the second motor 501 is controlled, the triangular plates 301 of the discharging assembly 3 are closed to form a blocking plate to block the ash, the discharging action is stopped, and the stirring assembly 2 also stops stirring.
[0038] The above disclosure is only a specific embodiment of the utility model, but the utility model is not limited to this, any change that can be thought of by any person skilled in the art should fall within the protection scope of the utility model.
Claims
1. A power construction ash discharging device, comprising a discharging hopper (1), the bottom of the discharging hopper (1) is provided with a discharging hopper bottom ring (101), characterized in that: A discharging assembly (3) is connected to the hopper (1) and is used for discharging; An agitating assembly (2) is connected to the hopper (1) and is used for agitating the ash; The discharging assembly (3) comprises triangular plates (301), square plates (302), sliding blocks (303), sliding grooves (304), rotating plates (305), fixed plates (306) and inclined sliding grooves (307) formed in the fixed plates (306). The fixed plates (306) are circular and are fixed to the bottom end of the hopper (1). The fixed plates (306) are located below the hopper bottom ring (101). The inclined sliding grooves (307) are evenly arranged on the fixed plates (306). Each inclined sliding groove (307) is provided with a circular shaft at the upper portion of the sliding block (303). Each inclined sliding groove (307) is matched with the circular shaft at the upper portion of the sliding block (303). The upper end of the circular shaft at the upper portion of each sliding block (303) is fixedly connected with the square plate (302). One side of each square plate (302) is fixedly connected with the triangular plate (301). The side walls of all the triangular plates (301) are in close contact with each other. All the triangular plates (301) form a baffle. Each sliding block (303) is arranged in the sliding groove (304). The sliding groove (304) is a regular polygon. Each side of the sliding groove (304) is provided with the sliding block (303). The sliding groove (304) is arranged at the upper side edge of the rotating plate (305).
2. The mortar dispensing apparatus for electric power construction according to claim 1, characterized by The agitating assembly (2) comprises a first motor (201), a rotating shaft (202) and an agitating rod (203). The upper end of the agitating rod (203) is fixed with the lower end of the rotating shaft (202). The upper end of the rotating shaft (202) is fixedly connected with the output shaft of the first motor (201). The first motor (201) is fixed to the upper center of the hopper (1).
3. The ash material dispensing apparatus for electric power construction according to claim 2, characterized by, The driving assembly comprises a second motor (501), a motor support (502), a pinion (503) and a gear ring (504). The center of the pinion (503) is fixedly connected with the second motor (501). The second motor (501) is fixed to the motor support (502). The motor support (502) is fixed to the lower side of the base (4). The base (4) is fixedly connected with the hopper (1). The pinion (503) is engaged with the gear ring (504). The gear ring (504) is fixedly connected with the rotating plate (305).
4. The mortar dispensing apparatus for electric power construction according to claim 3, characterized by The baffle formed by the triangular plates (301) is arranged below the hopper bottom ring (101). The surface of the triangular plate (301) is smooth. The upper side of the triangular plate (301) is in close contact with the lower side of the hopper bottom ring (101).