Sintered brick raw material aging device
By introducing components such as combing plates, aging plates, support plates, lifting plates, and electric push rods into the sintered brick raw material aging device, the problem of raw material adhesion to the silo wall was solved, achieving efficient cleaning and washing, and improving the stability and cleaning efficiency of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XILINHOT ANLONG NEW BUILDING MATERIALS CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-05-26
AI Technical Summary
The silo door of the existing sintered brick raw material aging device is located on the side, which causes the raw materials to stick to the silo wall after aging, especially near the bottom of the silo, where residual raw materials are easily left and are difficult to clean.
A sintered brick raw material aging device is designed, which adopts a combination structure of a combing plate, an aging plate, a support plate, a lifting plate, an electric push rod, and a cleaning plate. The cleaning plate is driven by the electric push rod to rise above the aging plate. The cleaning plate scrapes away the residual raw material near the bottom of the bin when it rotates. Combined with the high-speed rotation of the aging plate, the water flow is accelerated to improve the cleaning efficiency.
It effectively removes residual raw materials from the side walls of the aging chamber near the bottom, improving cleaning and washing speed, reducing maintenance costs and difficulty, and enhancing the stability and cleaning efficiency of the equipment.
Smart Images

Figure CN224275557U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aging equipment technology, and in particular to an aging equipment for sintered brick raw materials. Background Technology
[0002] Aging refers to the process of fully hydrating and exchanging ions between fly ash or coal gangue and other material particles. This process causes some silicate minerals to hydrolyze upon contact with water, forming cementing substances, and undergoes redox reactions, leading to microbial growth. This process softens and homogenizes the raw materials. During the stacking process, the water-added mixture utilizes capillary action and steam pressure to further homogenize the moisture content and increase the humic acid content, thereby increasing the plasticity of the raw materials. After crushing, the raw materials are formed into powder, pre-mixed with water, and then conveyed to the aging chamber for further aging.
[0003] A document with publication number CN213055341U discloses a raw material aging device for sintered brick production. It includes an aging chamber with a feed hopper connected to its top. A buffer plate is hinged to the inner wall of the feed hopper, and a buffer spring is installed between the bottom of the buffer plate and the inner wall of the feed hopper. A stirring device is fixedly installed inside the aging chamber. The stirring device includes a fixed plate with multiple T-shaped hoes at its bottom. An aging plate is rotatably mounted below the stirring device, with the bottom of the T-shaped hoes tightly fitted to the top of the aging plate. Multiple vibration springs are installed at the bottom of the aging plate, and a support plate is installed at the bottom of the vibration springs. A motor is installed at the bottom of the aging chamber, with its output shaft penetrating the interior of the aging chamber and connected to the bottom of the support plate via a coupling. This design can buffer the rigid impact of falling raw materials on the interior of the aging chamber and ensure that the raw materials are evenly spread on the top of the aging plate, resulting in more uniform aging.
[0004] However, the doors of this type of aging silo are located on the side, and the raw materials that have been piled up and aged stick to the silo walls, especially the side walls near the bottom of the silo, where residual raw materials are easily left and are not easy to clean.
[0005] Therefore, it is necessary to provide a sintered brick raw material aging device to solve the above-mentioned technical problems. Utility Model Content
[0006] In view of the above situation and to overcome the defects of the existing technology, this utility model provides a sintered brick raw material aging device that can scrape off residual raw materials near the bottom of the silo.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] A sintered brick raw material aging device includes: an aging chamber, in which a combing plate, an aging plate, and a support plate are installed. The aging chamber door is located on the side. Multiple springs are installed between the aging plate and the support plate. A lifting plate is installed between the aging plate and the support plate. An electric push rod is installed at the bottom of the lifting plate. Multiple arc-shaped cleaning plates are fixedly installed at the top of the lifting plate, and the cleaning plates penetrate the aging plate.
[0009] Preferably, a drive motor is installed at the bottom of the aging chamber, and the drive motor is connected to the support plate.
[0010] Preferably, a connecting post is installed in the middle of the aging board, and the connecting post is connected to the combing board.
[0011] Preferably, the lifting plate is provided with clearance holes.
[0012] Preferably, multiple staggered combing teeth are installed at the bottom of the combing plate.
[0013] Preferably, a scraper is installed on the side of the cleaning plate.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] (1) This utility model sets up a combing plate, aging plate, support plate, lifting plate, electric push rod and cleaning plate. The electric push rod drives the cleaning plate to be higher than the aging plate. When the cleaning plate rotates, it can scrape off the residual raw materials on the side wall of the aging chamber near the bottom of the chamber, which is convenient for subsequent cleaning of the aging chamber and helps to improve the cleaning speed of the aging chamber.
[0016] (2) By designing connecting columns, this utility model can connect the combing plate and the aging plate, thereby improving the stability of the aging plate;
[0017] (3) By opening clearance holes on the lifting plate, this utility model can facilitate the connection between the spring and the support plate and the aging plate;
[0018] (4) By installing combing teeth at the bottom of the combing plate, this utility model can conveniently comb the raw materials in the bin, making the raw materials in the bin flat and uniform.
[0019] (5) By installing replaceable scrapers on the side of the cleaning plate, this utility model can help reduce maintenance costs and maintenance difficulty. Attached Figure Description
[0020] Figure 1 A schematic diagram of the sintered brick raw material aging device provided by this utility model;
[0021] Figure 2 for Figure 1 A schematic diagram of the connection structure between the aging plate and the support plate in the sintered brick raw material aging device shown.
[0022] Figure 3 for Figure 1 A schematic diagram of the aging plate in the sintered brick raw material aging device shown;
[0023] Figure 4 for Figure 1 A schematic diagram showing the use of the cleaning plate in the sintered brick raw material aging device;
[0024] Figure 5 for Figure 1 A schematic diagram of the lifting plate in the sintered brick raw material aging device shown;
[0025] Figure 6 for Figure 1 The diagram shows the structure of the cleaning plate in the sintered brick raw material aging device.
[0026] The corresponding names of the attached figures are: 1-aging chamber, 2-combing plate, 3-aging plate, 4-support plate, 5-drive motor, 6-spring, 7-lifting plate, 8-electric push rod, 9-cleaning plate, 10-connecting column, 11-avoidance hole, 12-combing teeth, 13-scraper blade. Detailed Implementation
[0027] The present invention will be further described below with reference to the accompanying drawings and embodiments. The embodiments of the present invention include, but are not limited to, the following embodiments.
[0028] Example 1:
[0029] like Figure 1-6As shown, the sintered brick raw material aging device provided by this utility model includes: an aging chamber 1, in which a combing plate 2, an aging plate 3, and a support plate 4 are installed; a drive motor 5 is installed at the bottom of the aging chamber 1 and is connected to the support plate 4; the chamber door of the aging chamber 1 is located on the side; multiple springs 6 are installed between the aging plate 3 and the support plate 4; a lifting plate 7 is installed between the aging plate 3 and the support plate 4; an electric push rod 8 is installed at the bottom of the lifting plate 7 and is fixedly connected to the support plate 4 at the bottom; the wiring of the electric push rod 8 passes through the hollow shaft of the drive motor 5 and is connected to the external circuit through a rotary joint; multiple arc-shaped cleaning plates 9 are fixedly installed at the top of the lifting plate 7 and penetrate the aging chamber. In use, the sintered brick raw materials are fed into the aging chamber 1 and placed on the aging plate 3 for aging. Once aging is complete, the side door is opened to remove the raw materials. Removal can be done manually or mechanically, which will not be elaborated here. After most of the raw materials have been removed, the electric push rod 8 is activated to raise the lifting plate 7, with the top of the lifting plate 7 exceeding the aging plate 3. Then, the drive motor 5 is activated, causing the support plate 4 to rotate. The rotation of the support plate 4, in turn, causes the aging plate 3 to rotate, and the cleaning plate 9 rotates accordingly. As the cleaning plate 9 rotates, its side contacting the chamber wall scrapes off any remaining raw materials located on the side wall of the aging chamber 1 near the aging plate 3 (bottom of the chamber), facilitating subsequent cleaning. Furthermore, when rinsing the chamber with clean water, the high-speed rotation of the aging plate 3 and the raised cleaning plate 9 accelerate the water flow on the aging plate 3, allowing the water to impact the inner wall of the aging chamber 1 more quickly, thus improving the cleaning speed.
[0030] By setting up a combing plate 2, an aging plate 3, a support plate 4, a lifting plate 7, an electric push rod 8, and a cleaning plate 9, the electric push rod 7 drives the cleaning plate 9 to be higher than the aging plate 3. When the cleaning plate 3 rotates, it can scrape off the residual raw materials on the side wall of the aging chamber 1 near the bottom of the chamber, which facilitates the subsequent cleaning of the aging chamber 1 and helps to improve the cleaning speed of the aging chamber 1.
[0031] Example 2:
[0032] like Figure 3-4 As shown, a connecting post 10 is installed in the middle of the aging plate 1. The height of the connecting post 10 is designed according to actual needs. It can be connected to the combing plate 2 at its highest point, which can effectively improve the stability of the aging plate 1. It is worth noting that the height and proportion of the connecting post 10 in the figure are not related to the actual specifications.
[0033] By designing the connecting column 10, the combing plate 2 and the aging plate 3 can be connected, thereby improving the stability of the aging plate 3.
[0034] Example 3:
[0035] like Figure 5As shown, in this embodiment, the lifting plate 7 is provided with a clearance hole 11 that allows the spring 6 to pass through. During installation, the spring 6 passes through the clearance hole 11 so that the lifting plate 7 will not affect the spring 6 when it is raised or lowered.
[0036] By opening clearance holes 11 on the lifting plate 7, the connection between the spring 6 and the support plate 4 and the aging plate 3 can be facilitated.
[0037] Example 4:
[0038] like Figure 1 As shown, combing teeth 12 are installed at the bottom of the combing plate 2. The combing teeth 12 are divided into two parts, and the combing teeth 12 in the two parts are staggered. When the aging plate 1 rotates, the combing teeth 12 move relative to the raw materials on the aging plate 1, thereby combing the raw materials on the aging plate 1 and making the raw materials in the warehouse more flat and uniform.
[0039] By installing combing teeth 12 at the bottom of the combing plate 2, the raw materials in the bin can be combed easily, making the raw materials in the bin flat and uniform.
[0040] Example 5:
[0041] like Figure 6 As shown, a replaceable scraper 13 is installed on the side of the cleaning plate 9. The scraper 13 contacts the inner wall of the aging chamber 1. During the long-term adaptation process, the scraper 13 will inevitably wear out and become unusable. Then the scraper 13 can be replaced, which avoids the inconvenience caused by the cleaning plate 9 and also helps to reduce maintenance costs.
[0042] By installing replaceable scrapers 13 on the side of the cleaning plate 9, maintenance costs and maintenance difficulty can be reduced.
[0043] Working principle: When in use, the sintered brick raw materials are fed into the aging chamber 1 and placed on the aging plate 3 for aging. When aging is complete, the side door is opened and the raw materials in the chamber are taken out.
[0044] After the raw materials are basically removed and the silo needs to be cleaned, the electric push rod 8 is activated to raise the lifting plate 7. The top of the lifting plate 7 is higher than the aging plate 3. Then the drive motor 5 is activated, which drives the support plate 4 to rotate. The rotation of the support plate 4 drives the aging plate 3 to rotate, and the cleaning plate 9 rotates accordingly. When the cleaning plate 9 rotates, the side that contacts the silo wall can scrape off the residual raw materials located near the bottom of the side wall of the aging silo 1, which facilitates subsequent cleaning.
[0045] When rinsing the chamber with clean water later, the aging plate 3 rotates at high speed, and the raised cleaning plate 9 accelerates the water flow on the aging plate 3, allowing the water flow to impact the inner wall of the aging chamber 1 more quickly, thereby improving the cleaning speed.
Claims
1. A device for aging sintered brick raw materials, characterized in that, include: An aging chamber (1) is provided, in which a combing plate (2), an aging plate (3), and a support plate (4) are installed. Multiple springs (6) are installed between the aging plate (3) and the support plate (4). A lifting plate (7) is installed between the aging plate (3) and the support plate (4). An electric push rod (8) is installed at the bottom of the lifting plate (7). Multiple cleaning plates (9) are fixedly installed at the top of the lifting plate (7). The cleaning plates (9) penetrate the aging plate (3).
2. The sintered brick raw material aging device according to claim 1, characterized in that, A drive motor (5) is installed at the bottom of the aging chamber (1), and the drive motor (5) is connected to the support plate (4).
3. The sintered brick raw material aging device according to claim 1, characterized in that, A connecting post (10) is installed in the middle of the aging plate (3), and the connecting post (10) is connected to the combing plate (2).
4. The sintered brick raw material aging device according to claim 1, characterized in that, The lifting plate (7) is provided with a clearance hole (11).
5. The sintered brick raw material aging device according to claim 1, characterized in that, The bottom of the combing plate (2) is equipped with multiple staggered combing teeth (12).
6. The sintered brick raw material aging device according to claim 1, characterized in that, The cleaning plate (9) is equipped with a scraper (13) on its side.