Anti-corrosion refractory brick raw material batching device
By introducing auxiliary feed port components, double-sided transmission components, and adjustable discharge components into the raw material batching device for corrosion-resistant refractory bricks, the problems of feeding lag and uneven mixing were solved, realizing automated and efficient raw material processing and improving the accuracy of batching and production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-03-31
AI Technical Summary
Existing raw material batching devices for corrosion-resistant refractory bricks have a lag in feeding, which affects the batching progress, and the mixing method is singular, making it difficult to achieve rapid and uniform mixing.
It adopts an auxiliary feeding port assembly, a double-sided transmission assembly, and an adjustable discharge assembly. Automatic feeding is achieved by a rotary motor driving the feeding ramp plate, a double-sided gear system drives the stirring rod for mixing, and an adjustable wrench controls the discharge, ensuring uniform mixing and accurate discharge.
It has achieved automated and efficient raw material feeding, mixing and discharging processes, improving the convenience of batching and the quality of mixing, and ensuring the accuracy of batching and production efficiency.
Smart Images

Figure CN224060100U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of refractory brick production and processing, specifically to a raw material batching device for corrosion-resistant refractory bricks. Background Technology
[0002] In industrial production, the manufacturing of corrosion-resistant refractory bricks requires extremely high precision in raw material proportioning. Traditional batching devices mostly rely on manual operation or simple mechanical systems, resulting in low efficiency, large errors, and difficulty in adapting to complex formulations. With the development of automation technology, modern batching devices have gradually incorporated technologies such as electronic weighing, PLC control, and sensor monitoring to improve batching accuracy and production efficiency. However, existing devices still have shortcomings in handling the mixing of multiple raw materials, real-time adjustment of proportions, and adaptation to high-temperature corrosive environments. Therefore, developing a highly efficient, precise, and durable batching device for corrosion-resistant refractory brick raw materials has become an urgent problem to be solved in the industry.
[0003] Application number CN202322393372.2 discloses a batching device for corrosion-resistant refractory brick raw materials, including: a batching box and multiple feeding boxes. The multiple feeding boxes are fixedly connected to the top surface of the batching box and communicate with the inner cavity of the batching box. A transparent glass is fixedly connected to the feeding box. Two baffles are rotatably connected inside the feeding box. A fixed shaft is fixedly connected to the bottom surface of the baffles. Two first sliding grooves are opened on the inner wall of the feeding box. A slider is slidably connected in the first sliding groove. A transmission rod is rotatably connected between the slider and the corresponding fixed shaft. Multiple drive components are located in the multiple feeding boxes. This utility model solves the problem that the batching device cannot quantitatively batch materials according to the usage requirements, resulting in low batching accuracy and being unfavorable for use. It also solves the problem that the mixing method of the batching device is relatively simple and cannot quickly mix and blend evenly. However, there are shortcomings. When the device is used, it provides a wide feeding port, which has a certain lag in feeding and thus affects the batching progress. Utility Model Content
[0004] The purpose of this invention is to provide a raw material batching device for corrosion-resistant refractory bricks, which solves the problem that when the device is in use, the wide-mouth feeding operation results in a certain lag in feeding, thus affecting the batching progress.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a raw material batching device for corrosion-resistant refractory bricks, including a batching box assembly. An auxiliary feed port assembly is installed on the top of the batching box assembly, and a double-sided transmission assembly is installed on one side of the batching box assembly. Meanwhile, an adjusting discharge assembly is installed at the bottom of the batching box assembly, and a braking assembly is installed on one side of the double-sided transmission assembly.
[0007] The auxiliary feed inlet assembly includes a rotary motor, which is fixedly installed on the top of the mixing tank by a bracket and is located on one side of the feed inlet. A rotating rod is fixedly installed on the inner side of the rotary motor, and a feed ramp is fixedly installed on the outer side of the rotating rod.
[0008] Furthermore, the mixing box assembly includes a support plate, a mixing box is fixedly installed on the top center of the support plate, an inspection cover is movably installed on the top of the mixing box, and a feed inlet is opened on the rear side of the top of the mixing box, while a discharge outlet is opened at the bottom of the mixing box.
[0009] Furthermore, the feed ramp can be rotated to cover the feed inlet.
[0010] Furthermore, the dual-sided transmission assembly includes a first rotating gear, a second rotating gear is associated with one side of the first rotating gear, and the first rotating gear and the second rotating gear mesh with each other. At the same time, a first driven gear is installed on the top outer side of the first rotating gear, and a stirring rod is installed in the middle of the first driven gear. A second driven gear is installed on the top outer side of the second rotating gear, and another stirring rod is also fixedly installed in the middle of the second driven gear. Both the second driven gear and the first driven gear are limited and installed on the outer wall of one side of the mixing box. The stirring rod is installed through the interior of the mixing box, and a mixing plate is fixedly installed on the outer wall of the stirring rod.
[0011] Furthermore, the braking assembly includes a brake motor, which is mounted and fixed by a bracket, and an active rotating wheel is fixedly mounted on the outside of the brake motor. A passive rotating wheel is connected to one side of the active rotating wheel via a transmission belt. The passive rotating wheel is mounted on the outside of the transmission box and drives the transmission box to operate. A rotating gear one and a rotating gear two are mounted on the other side of the transmission box.
[0012] Furthermore, the adjusting discharge assembly includes an adjusting wrench, a rotating rod is fixedly installed on the inner side of the adjusting wrench, the rotating rod is installed on the outer wall of the rotating disk and is limited to the outer walls on both sides of the discharge port, a connecting rod is fixedly installed on one side of the middle of the two rotating disks, and a discharge blocking plate is fixedly installed on the other side of the middle of the two rotating disks, the discharge blocking plate being correspondingly positioned at the discharge port.
[0013] This utility model has the following beneficial effects:
[0014] (1) The present invention provides a batching device for raw materials of corrosion-resistant refractory bricks. By installing an auxiliary feeding port component on the device, the feeding port component can increase the convenience of feeding when using the device. After feeding is completed, the auxiliary feeding port component can be rotated until it is closed, so as to realize convenient material input and avoid leakage.
[0015] (2) The present invention provides a batching device for raw materials of corrosion-resistant refractory bricks. By installing an adjustable discharge component on the device, when the mixing is completed, the device can be adjusted to discharge different materials, making the device more flexible to use.
[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the overall structure of a raw material batching device for corrosion-resistant refractory bricks according to this utility model;
[0019] Figure 2 This is a schematic diagram of the double-sided transmission assembly and auxiliary feed inlet assembly of a raw material batching device for corrosion-resistant refractory bricks according to this utility model.
[0020] Figure 3 This is a schematic diagram of the auxiliary feed inlet component of a raw material batching device for corrosion-resistant refractory bricks according to this utility model.
[0021] Figure 4 This is a schematic diagram of the internal structure of a raw material batching device for corrosion-resistant refractory bricks according to this utility model;
[0022] Figure 5 This is a schematic diagram of the structure of the adjusting discharge component of the raw material batching device for corrosion-resistant refractory bricks according to this utility model;
[0023] The attached diagram lists the components represented by each number as follows:
[0024] In the diagram: 1. Batching box assembly; 2. Auxiliary feed inlet assembly; 3. Dual-sided transmission assembly; 4. Braking assembly; 5. Adjusting discharge assembly; 101. Support plate; 102. Mixing box; 103. Inspection cover plate; 104. Feed inlet; 105. Discharge outlet; 201. Rotary motor; 202. Rotating rod; 203. Feed ramp; 301. Rotating gear one; 302. Rotating gear two; 303. Driven gear one; 304. Mixing rod; 305. Driven gear two; 306. Batching mixing plate; 401. Braking motor; 402. Driving wheel; 403. Driven wheel; 404. Transmission box; 501. Adjusting wrench; 502. Rotating rod; 503. Rotating disc; 504. Connecting rod; 505. Discharge blockage plate. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figures 1-5 As shown, this utility model is a batching device for corrosion-resistant refractory brick raw materials, including a batching box assembly 1, an auxiliary feed port assembly 2 installed on the top of the batching box assembly 1, a double-sided transmission assembly 3 installed on one side of the batching box assembly 1, an adjusting discharge assembly 5 installed at the bottom of the batching box assembly 1, and a braking assembly 4 installed on one side of the double-sided transmission assembly 3.
[0027] The auxiliary feed inlet assembly 2 includes a rotary motor 201, which is fixedly installed on the top of the mixing tank 102 by a bracket and is located on one side of the feed inlet 104. Meanwhile, a rotating rod 202 is fixedly installed on the inner side of the rotary motor 201, and a feed ramp 203 is fixedly installed on the outer side of the rotating rod 202.
[0028] By installing an auxiliary feed port component 2 on the device, the feeding port can be made more convenient when feeding materials. After feeding is completed, the auxiliary feed port component 2 can be rotated until it is closed, thus enabling convenient material input and preventing leakage.
[0029] The mixing box assembly 1 includes a support plate 101, a mixing box 102 is fixedly installed on the top middle of the support plate 101, a maintenance cover plate 103 is movably installed on the top of the mixing box 102, and a feed inlet 104 is opened on the rear side of the top of the mixing box 102, while a discharge outlet 105 is opened at the bottom of the mixing box 102.
[0030] The feed ramp 203 can cover the feed inlet 104 after rotation. After the rotary motor 201 is started, it drives the rotating rod 202 to rotate, which in turn drives the feed ramp 203 to rotate. When the feed ramp 203 rotates to the open position, the raw material enters the mixing tank 102 through the feed inlet 104. When the feeding is completed, the rotary motor 201 reverses and the feed ramp 203 rotates to the closed position, covering the feed inlet 104 to prevent the raw material from overflowing.
[0031] The dual-sided transmission assembly 3 includes a first rotary gear 301, a second rotary gear 302 associated with one side of the first rotary gear 301, and the first rotary gear 301 and the second rotary gear 302 mesh with each other. A first driven gear 303 is correspondingly mounted on the top outer side of the first rotary gear 301, and a stirring rod 304 is mounted in the middle of the first driven gear 303. A second driven gear 305 is correspondingly mounted on the top outer side of the second rotary gear 302, and another stirring rod 304 is also fixedly mounted in the middle of the second driven gear 305. Both the second rotating gear 305 and the first driven gear 303 are limited and installed on one side of the outer wall of the mixing tank 102. The stirring rod 304 is installed through the inside of the mixing tank 102, and the mixing plate 306 is fixedly installed on the outer wall of the stirring rod 304. The first rotating gear 301 and the second rotating gear 302 drive the first driven gear 303 and the second driven gear 305 to rotate, thereby driving the two stirring rods 304 to rotate inside the mixing tank 102. The mixing plate 306 on the stirring rod 304 fully mixes the raw materials to ensure that the raw materials are evenly distributed.
[0032] The braking assembly 4 includes a brake motor 401, which is mounted and fixed by a bracket. A drive wheel 402 is fixedly mounted on the outside of the brake motor 401. A driven wheel 403 is connected to one side of the drive wheel 402 via a transmission belt. The driven wheel 403 is mounted on the outside of the transmission box 404 and drives the transmission box 404 to operate. A first rotating gear 301 and a second rotating gear 302 are mounted on the other side of the transmission box 404. When the brake motor 401 in the braking assembly 4 is started, it drives the drive wheel 402 to rotate, which in turn drives the driven wheel 403 and the transmission box 404 to operate via the transmission belt. The transmission box 404 drives the first rotating gear 301 and the second rotating gear 302 to mesh and rotate.
[0033] The discharge adjustment assembly 5 includes an adjustment wrench 501. A rotating rod 502 is fixedly installed on the inner side of the adjustment wrench 501. The rotating rod 502 is installed on the outer wall of the rotating disk 503 and is limited on both sides of the outer wall of the discharge port 105. A connecting rod 504 is fixedly installed on one side of the middle of the two rotating disks 503, and a discharge blocking plate 505 is fixedly installed on the other side of the middle of the two rotating disks 503. The discharge blocking plate 505 is correspondingly set at the position of the discharge port 105.
[0034] After the rotary motor 201 starts, it drives the rotating rod 202 to rotate, which in turn drives the feeding ramp 203 to rotate. When the feeding ramp 203 rotates to the open position, the raw material enters the mixing tank 102 through the feed inlet 104. After feeding is completed, the rotary motor 201 reverses, and the feeding ramp 203 rotates to the closed position, covering the feed inlet 104 to prevent the raw material from overflowing. The brake motor 401 in the braking assembly 4 starts, driving the driving wheel 402 to rotate. This drives the driven wheel 403 and the transmission box 404 to operate through the transmission belt. The transmission box 404 drives the rotating gear 1 301 and the rotating gear 2 302 to mesh and rotate. The rotating gear 1 301 and the rotating gear 2 302 drive the driven gear 1 303 and the driven gear 2 305 to rotate, which in turn drives the two stirring rods 304 to rotate inside the mixing tank 102. The mixing plate 306 on the stirring rods 304 fills the raw material with the mixture. The mixing process ensures uniform distribution of raw materials. After mixing, the operator rotates the rotating rod 502 using the adjusting wrench 501, which drives the rotating disk 503 and the connecting rod 504 to move. The connecting rod 504 moves the discharge blocking plate 505 away from the discharge port 105, opening the discharge port 105. The uniformly mixed raw materials are discharged from the discharge port 105 and enter the next process. After discharge, the adjusting wrench 501 is rotated in the opposite direction to make the discharge blocking plate 505 cover the discharge port 105 again, closing the discharge channel. The inspection cover 103 on the top of the mixing tank 102 can be opened to facilitate cleaning, maintenance, or replacement of the mixing rod 304 and the batching mixing plate 306 inside the mixing tank 102. This device achieves automatic feeding of raw materials through the auxiliary feeding port assembly 2, efficient mixing of raw materials through the dual-side transmission assembly 3 and the braking assembly 4, and precise control of discharge through the adjusting discharge assembly 5. The entire process is highly automated and easy to operate, which can effectively improve the batching efficiency and mixing quality of corrosion-resistant refractory brick raw materials.
[0035] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A raw material batching device for anti-erosion refractory bricks, comprising a batching bin assembly (1), characterized in that: The top of the ingredient box assembly (1) is provided with an auxiliary feeding port assembly (2), one side of the ingredient box assembly (1) is provided with a double-sided transmission assembly (3), and the bottom of the ingredient box assembly (1) is provided with an adjusting discharge assembly (5), and one side of the double-sided transmission assembly (3) is provided with a brake assembly (4); The auxiliary feeding port assembly (2) comprises a rotary motor (201), the rotary motor (201) is fixedly installed on the top of the stirring box (102) through a support, and one side of the rotary motor (201) is provided with a feeding slope plate (203).
2. A raw material batching device for anti-erosion refractory bricks according to claim 1, characterized in that: The ingredient box assembly (1) comprises a support plate (101), the middle top of the support plate (101) is fixedly provided with a stirring box (102), the top of the stirring box (102) is movably provided with an inspection cover plate (103), and the top rear side of the stirring box (102) is provided with a feeding port (104), and the bottom of the stirring box (102) is provided with a discharge port (105).
3. A raw material batching device for anti-erosion refractory bricks according to claim 1, characterized in that: The feeding slope plate (203) can cover the feeding port (104) through rotation.
4. A raw material batching device for anti-erosion refractory bricks according to claim 1, characterized in that: The double-sided transmission assembly (3) comprises a rotary gear one (301), one side of the rotary gear one (301) is provided with a rotary gear two (302), the rotary gear one (301) and the rotary gear two (302) are meshed with each other, the outer top of the rotary gear one (301) is correspondingly provided with a driven gear one (303), the middle of the driven gear one (303) is provided with a stirring rod (304), the outer top of the rotary gear two (302) is correspondingly provided with a driven gear two (305), the middle of the driven gear two (305) is also fixedly provided with another stirring rod (304), and the driven gear two (305) and the driven gear one (303) are both limitingly installed on one side of the outer wall of the stirring box (102), the stirring rod (304) penetrates through the inside of the stirring box (102), and the outer wall of the stirring rod (304) is fixedly provided with an ingredient mixing plate (306).
5. A raw material batching device for anti-erosion firebricks according to claim 1, characterized in that: The brake assembly (4) comprises a brake motor (401), the brake motor (401) is fixedly installed through a support, and the outer side of the brake motor (401) is fixedly provided with a driving runner (402), one side of the driving runner (402) is provided with a driven runner (403) through a transmission belt, the driven runner (403) is installed on the outer side of a transmission box (404), and the driven runner (403) drives the transmission box (404) to work, the other side of the transmission box (404) is provided with the rotary gear one (301) and the rotary gear two (302).
6. A raw material batching device for anti-erosion refractory bricks according to claim 1, characterized in that: The adjusting discharge assembly (5) comprises an adjusting wrench (501), the inner side of the adjusting wrench (501) is fixedly installed with a rotating rod (502), the rotating rod (502) is installed on the outer wall of a rotating disc (503), and is limitingly installed on the outer walls of both sides of a discharge port (105), the middle side of the rotating disc (503) on one side is fixedly installed with a connecting rod (504), and the middle side of the rotating disc (503) on the other side is fixedly installed with a discharge blocking plate (505), and the discharge blocking plate (505) is correspondingly arranged at the position of the discharge port (105).
Citation Information
Patent Citations
Anti-corrosion refractory brick raw material batching device
CN221089486U