Aggregate cleaning device for concrete production

By combining the vibrating and discharging components, the problem of continuous feeding and discharging of aggregates in the aggregate washing device was solved, enabling continuous aggregate washing operations, improving efficiency and reducing work intensity.

CN224128050UActive Publication Date: 2026-04-17YICHANG XINZHIRUN NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YICHANG XINZHIRUN NEW MATERIAL CO LTD
Filing Date
2025-05-16
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing aggregate washing equipment cannot continuously feed and discharge materials during the washing process, resulting in low operating efficiency and increased work intensity.

Method used

The material is dispersed by a vibrating material feeder and continuously discharged by a discharge device. The aggregate is fed into the vibrating material feeder through a trough, dispersed by vibration, and falls onto the discharge device. The discharge device is then driven by a drive motor to discharge the aggregate, thus achieving continuous operation.

Benefits of technology

It improved overall operational efficiency, reduced operational intensity, and enabled continuous aggregate washing operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an aggregate cleaning device for concrete production, which comprises a shell, a trough, a vibrating part, a discharging part and a driving motor, cleaning fluid is contained in the shell, the trough is arranged at the top of the shell and is used for feeding, the vibrating part is arranged in the shell and is positioned under the trough, the discharging part is positioned under the vibrating part, and the driving motor is used for driving the vibrating part to rotate. The material vibrating part is immersed in cleaning liquid of the shell and used for vibrating and feeding materials, the material discharging parts are oppositely arranged below the two ends of the material vibrating part and used for discharging the materials out of the shell, and the driving motor is installed outside the shell and used for driving the material discharging parts. The aggregate cleaning device solves the technical problem that an existing aggregate cleaning device cannot continuously work due to the fact that continuous feeding and discharging cannot be achieved by adopting the mode that the vibrating piece vibrates and disperses materials in cooperation with the discharging piece to continuously discharge the materials, and therefore the technical effects that the overall work efficiency is improved, and the work intensity is reduced are achieved.
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Description

Technical Field

[0001] This utility model relates to the technical field of concrete production cleaning equipment, and in particular to an aggregate cleaning device for concrete production. Background Technology

[0002] Aggregates are the main raw materials in concrete. They are granular materials that play a role in the skeleton support and filling of concrete and mortar. There are two types: fine aggregates and coarse aggregates. Before aggregates are used to form concrete, in order to ensure the quality of the finished product, the dust and soil in the aggregates need to be cleaned.

[0003] Typically, aggregates are cleaned using aggregate cleaning equipment. For example, Chinese utility model patent CN221157830U discloses an aggregate cleaning device for concrete production. This device is equipped with a cleaning tank, a spray pipe at the top of the cleaning tank, and a mixing rack inside the cleaning tank. A certain amount of aggregate is added into the cleaning tank from the top, and the aggregate is sprayed with water to clean it through the spray pipe. Then, the aggregate is mixed by the mixing rack. After cleaning, the side door of the cleaning tank is opened to discharge the cleaned aggregate. Then, a certain amount of aggregate is added back into the cleaning tank for cleaning, and the cycle is repeated to complete the operation.

[0004] However, in actual operation, the above-mentioned aggregate washing device requires waiting for the current aggregate in the washing tank to finish washing and be discharged before it can continue to wash the next batch of aggregate. It cannot continuously feed and discharge, and repeated feeding and discharging will reduce the overall operating efficiency and increase the workload. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides an aggregate cleaning device for concrete production, which solves the problem that repeated loading and unloading in existing technologies leads to reduced overall work efficiency and increased work intensity.

[0006] According to an embodiment of this utility model, an aggregate cleaning device for concrete production includes a shell, a material trough, a vibrating element, a discharging element, and a drive motor. The shell contains a cleaning liquid. The material trough is located at the top of the shell and is used for feeding materials. The vibrating element is located inside the shell and directly below the material trough. The vibrating element is immersed in the cleaning liquid in the shell and is used to vibrate and move the materials. The discharging element is located opposite to both ends of the vibrating element and is used to discharge materials to the outside of the shell. The drive motor is installed outside the shell and is used to drive the discharging element.

[0007] In the above embodiment, the aggregate to be cleaned is guided to the vibrating element through the material trough. The vibrating element vibrates and disperses the aggregate to both sides and onto the discharge element. The drive motor is started to drive the discharge element to discharge the aggregate after it has been immersed in the cleaning solution to the outside of the shell. The cycle is repeated to complete the operation.

[0008] In some embodiments, the top of the housing is open, and the feed trough is fixedly disposed at the center of the top of the housing.

[0009] In some embodiments, the trough is tapered from top to bottom, and a discharge port corresponding to the center of the top of the vibrating element is provided at the center of the bottom of the trough.

[0010] In some embodiments, the vibrating element includes a material distribution plate connected to the inner walls of both sides of the housing and a plurality of elastic rods disposed on the top sides of the material distribution plate. The two ends of the material distribution plate are inclined downwards. The top ends of the plurality of elastic rods on the same side are provided with the same limiting plate. The two rows of material components are respectively opposite to the two sides of the material distribution plate, and the drive motor is located on one side of the material distribution component.

[0011] In some embodiments, the vibrating element further includes a vibrating motor mounted at the bottom center of the distribution plate.

[0012] In some embodiments, each pair of feeding components includes a plurality of rotating shafts rotatably disposed within the housing and feeding belts respectively sleeved outside the rotating shafts in the same group. The output shaft of the drive motor is fixedly connected to one end of the rotating shaft. Spacing plates are equidistantly and perpendicularly disposed outside the two feeding belts. The opposite ends of the two feeding belts extend to the outer sides of the housing respectively, and the other ends of the feeding belts are inclined toward the bottom inside the housing.

[0013] In some embodiments, spray pipes are provided on both sides of the interior of the housing, located above the feed belt.

[0014] Compared with the prior art, the present invention has the following advantages: by adopting the method of vibrating the material to disperse it and continuously discharging it with the material discharger, it solves the technical problem of the inability to continuously operate due to the inability of existing aggregate washing devices to continuously feed and discharge materials, thereby achieving the technical effect of improving overall operating efficiency and reducing operating intensity. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model;

[0016] Figure 2 for Figure 1 A schematic diagram of the cross-sectional structure;

[0017] Figure 3 for Figure 2 A schematic diagram of the left-side view structure.

[0018] In the above figures: 100, shell; 200, trough; 210, discharge port; 300, vibrating element; 310, distribution plate; 320, elastic rod; 330, limiting plate; 340, vibrating motor; 400, discharge element; 410, rotating shaft; 420, feeding belt; 430, spacer mesh plate; 500, drive motor; 600, spray pipe. Detailed Implementation

[0019] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.

[0020] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0021] In an exemplary implementation, such as Figures 1-3 As shown, this embodiment provides an aggregate cleaning device for concrete production, including a housing 100, a material trough 200, a vibrating element 300, a discharging element 400, and a drive motor 500. The housing 100 is filled with cleaning fluid. The material trough 200 is located at the top of the housing 100 and is used for feeding materials. The vibrating element 300 is located inside the housing 100 and directly below the material trough 200. The vibrating element 300 is immersed in the cleaning fluid in the housing 100 and is used for vibrating and conveying materials. The discharging element 400 is located opposite to both ends of the vibrating element 300 and is used to discharge materials to the outside of the housing 100. The drive motor 500 is installed outside the housing 100 and is used to drive the discharging element 400.

[0022] In this embodiment, the aggregate to be cleaned is guided to the vibrating element 300 through the material trough 200. The vibrating element 300 vibrates to disperse the aggregate to both sides and onto the discharge element 400. The drive motor 500 is started to drive the discharge element 400 to discharge the aggregate after it has been immersed in the cleaning liquid to the outside of the housing 100. The cycle is repeated to complete the operation.

[0023] Please refer to Figure 2 The top of the housing 100 is open, and the material trough 200 is fixedly installed at the center of the top of the housing 100.

[0024] In one embodiment, please refer to Figures 1-3The material trough 200 is tapered from top to bottom, and the bottom center of the material trough 200 has a discharge port 210 corresponding to the top center of the vibrating material component 300.

[0025] In this embodiment, the material trough 200 is positioned at the top center of the aggregate distribution plate 310.

[0026] In one embodiment, please refer to Figures 1-3 The vibrating element 300 includes a material distribution plate 310 connected to the inner walls of both sides of the housing 100 and a plurality of elastic rods 320 disposed on the top sides of the material distribution plate 310. The two ends of the material distribution plate 310 are inclined downward. The top of the plurality of elastic rods 320 located on the same side is provided with the same limiting plate 330. The two rows of material components 400 are respectively corresponding to the two sides of the material distribution plate 310, and the drive motor 500 is located on one side of the material component 400. The vibrating element 300 also includes a vibrating motor 340 installed at the bottom center of the material distribution plate 310.

[0027] In this embodiment, after the aggregate falls onto the distribution plate 310, the vibration motor 340 is started. The vibration motor 340 drives the distribution plate 310 to vibrate. Since the distribution plate 310 is inclined downward on both sides, the aggregate will move downward to both sides when it vibrates. At this time, several elastic rods 320 continuously contact and push the aggregate, so that the aggregate is dispersed and the dirt and other impurities on the outside of the aggregate are peeled off until the aggregate falls onto the discharge component 400.

[0028] In one embodiment, please refer to Figures 1-3 Each pair of feeding components 400 includes several rotating shafts 410 rotatably disposed inside the housing 100 and feeding belts 420 respectively sleeved outside the rotating shafts 410 of the same group. The drive motor 500 is fixedly connected to one end of the rotating shaft 410. Spacing mesh plates 430 are equidistantly and vertically arranged on the outside of the two feeding belts 420. The opposite ends of the two feeding belts 420 extend to the outside of both sides of the housing 100, and the other ends of the feeding belts 420 are inclined towards the bottom inside the housing 100.

[0029] In this embodiment, the two drive motors 500 drive the two feeding belts 420 to rotate and feed materials through different sets of rotating shafts 410. The rotation of the feeding belts 420 drives the movement of several spacer mesh plates 430 on their exterior, which can drive the falling aggregate. At this time, the aggregate is washed again until it is discharged from the shell 100.

[0030] Among them, the mesh diameter of the spacer plate 430 is larger than the soil particle size but smaller than the aggregate particle size.

[0031] In one embodiment, please refer to Figure 1 and Figure 2 The housing 100 has spray pipes 600 located above the feed belt 420 on both sides inside.

[0032] In this embodiment, a spray pipe 600 located above the liquid surface is provided above the feed belt 420. The spray pipe 600 can spray the aggregate driven by the feed belt 420 to further improve the cleaning effect.

[0033] The housing 100 is provided with an inlet and an outlet for changing the cleaning fluid and balancing the liquid level, which are known to the public and will not be described in detail.

[0034] Finally, furthermore, the material distribution plate 310 and the feeding belt 420 can be designed with a mesh structure so that soil and impurities can fall quickly into the bottom of the housing 100.

[0035] To better understand this utility model, the following is combined with... Figures 1 to 3 The technical solution of this utility model is described in detail as follows: In use, the aggregate to be cleaned is guided to the distribution plate 310 through the material trough 200. After the aggregate falls onto the distribution plate 310, the vibration motor 340 is started. The vibration motor 340 drives the distribution plate 310 to vibrate. Since the distribution plate 310 is inclined downward on both sides, the aggregate will move to the sides and downward when it vibrates. At this time, several elastic rods 320 continuously contact and push the aggregate, so that the aggregate is dispersed and the dirt and other impurities on the outside of the aggregate are peeled off until the aggregate falls onto the feeding belt 420. The two drive motors 500 are started. The two drive motors 500 drive the two feeding belts 420 to rotate and feed the aggregate through different sets of rotating shafts 410. The rotation of the feeding belts 420 drives several spacer mesh plates 430 on its outside to move, which can move the falling aggregate. At this time, the aggregate is cleaned again until it is discharged from the shell 100.

[0036] Furthermore, a spray pipe 600 is installed above the feed belt 420, positioned above the liquid surface. The spray pipe 600 can spray the aggregate driven by the feed belt 420, further improving the cleaning effect.

[0037] In summary, this utility model solves the technical problem of non-continuous operation caused by the inability of existing aggregate washing devices to continuously feed and discharge materials by adopting the method of vibrating material 300 and discharging material continuously by discharging material 400, thereby achieving the technical effect of improving overall operation efficiency and reducing operation intensity.

[0038] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. An aggregate cleaning device for concrete production, characterized by, include: A housing (100) containing a cleaning solution; A feed trough (200) is provided on the top of the housing (100) and is used for feeding materials; Vibrating element (300), the vibrating element (300) is disposed inside the housing (100) and located directly below the material trough (200), the vibrating element (300) is immersed in the cleaning fluid of the housing (100) and is used for vibrating and feeding material; A discharge component (400) is disposed opposite to both ends of the vibrating component (300) and is used to discharge material to the outside of the housing (100); A drive motor (500) is mounted outside the housing (100) and is used to drive the discharge component (400).

2. The aggregate cleaning apparatus for concrete production according to claim 1, wherein The top of the housing (100) is open, and the material trough (200) is fixedly disposed at the center of the top of the housing (100).

3. The aggregate cleaning apparatus for concrete production as claimed in claim 1, wherein The material trough (200) is tapered from top to bottom, and a discharge port (210) corresponding to the center of the top of the vibrating material component (300) is provided at the center of the bottom of the material trough (200).

4. The aggregate cleaning apparatus for concrete production according to claim 3, wherein The vibrating element (300) includes a material distribution plate (310) connected to the inner walls of both sides of the housing (100) and a plurality of elastic rods (320) provided on the top two sides of the material distribution plate (310). The two ends of the material distribution plate (310) are inclined downward. The top of the plurality of elastic rods (320) on the same side is provided with the same limiting plate (330). The two rows of material components (400) are respectively opposite to the two sides of the material distribution plate (310), and the drive motor (500) is located on one side of the material component (400).

5. The aggregate cleaning apparatus for concrete production as claimed in claim 4, wherein The vibrating element (300) also includes a vibrating motor (340) installed at the bottom center of the distribution plate (310).

6. The aggregate cleaning apparatus for concrete production as claimed in claim 4, wherein Each pair of feeding components (400) includes several rotating shafts (410) rotatably disposed within the housing (100) and feeding belts (420) respectively sleeved outside the rotating shafts (410) in the same group. The output shaft of the drive motor (500) is fixedly connected to one end of the rotating shaft (410). Spacer plates (430) are equidistantly and vertically arranged on the outside of the two feeding belts (420). The opposite ends of the two feeding belts (420) extend to the outside of both sides of the housing (100), and the other end of the feeding belt (420) is inclined towards the bottom inside the housing (100).

7. The aggregate cleaning apparatus for concrete production as claimed in claim 6, wherein The housing (100) has spray pipes (600) on both sides inside, located above the feed belt (420).

Citation Information

Patent Citations

  • Aggregate cleaning device for concrete production

    CN221157830U