Waste mud recovery device of concrete separator
By designing a waste slurry recycling device for concrete separators and using multi-stage separation and treatment technology, the problem of waste concrete slurry being difficult to recycle and reuse is solved, effectively removing debris and reuse of clean water, and reducing environmental pollution.
Patent Information
- Application Number
- CN202421812697.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The prior art is difficult to effectively recycle and reuse waste concrete slurry generated by commercial mixing mixing stations, resulting in environmental pollution.
A concrete separator waste mud recovery device is designed, including a first recycling pool and a second recycling pool. The preliminary mud removal pool and the two-step reservoir are separated by partitions. The debris is separated by a mud removal component and a high-pressure water spray device, and the clean water is further processed with a clean water auxiliary component.
The separation of debris in the waste concrete slurry and water is achieved, the debris are effectively discharged, and the clean water is further reused, reducing environmental pollution.
Smart Images

Figure CN222829119U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of waste concrete slurry recycling, and in particular relates to a waste concrete separator slurry recovery device. Background Art
[0002] Concrete is a building material, mainly composed of cement, coarse and fine aggregates and water. At present, the newly-built waste concrete mud produced by commercial concrete mixing plants is directly discarded, which will cause serious environmental pollution. In response to the call for environmental protection, the waste concrete is recycled and then used as recycled aggregate. Coarse aggregate, fine aggregate, and a large amount of micro powder are directly used as raw materials for producing concrete to achieve zero discharge and zero pollution of waste concrete, which has become a new trend. Therefore, a concrete waste mud recovery device is needed to realize the reuse of waste concrete mud. Utility Model Content
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and to provide a waste slurry recovery device for a concrete separator, thereby solving the problems in the above-mentioned background technology.
[0004] The purpose of the utility model is achieved as follows: a concrete separator waste mud recovery device, which includes a first recovery tank and a second recovery tank, the second recovery tank is arranged at the tail end of the first recovery tank, and the vertical height of the second recovery tank is smaller than that of the first recovery tank; a mud inlet tank trough is arranged at the left end of the first recovery tank, a partition is fixedly arranged inside the first recovery tank, the partition separates the first recovery tank into a preliminary mud removal tank and a second-step water storage tank, and a plurality of water holes are opened on the plate surface of the partition; a mud removal component is arranged inside the preliminary mud removal tank, a high-pressure water spraying device is arranged inside the preliminary mud removal tank, and the high-pressure water spraying device is arranged corresponding to the mud removal component; a clean water auxiliary component is arranged inside the second-step water storage tank. By arranging the first recovery tank and the second recovery tank at the concrete site, the waste concrete mud is poured into the mud inlet tank trough so that the waste mud first flows into the first recovery tank, and the debris in the mud is separated from the water inside the first recovery tank, so that the debris solid flows out from the first recovery tank, and the clean water flows into the second recovery tank, so that the water can be further reused.
[0005] Furthermore, the mud removal assembly includes a support plate fixedly mounted on the side wall of the first recovery pool, the upper surface of the support plate is an inclined surface, a first motor is fixedly mounted on the upper surface of the inclined surface, and the first motor is inclinedly mounted, the output shaft of the first motor is connected to an inclined shaft extending to the interior of the preliminary mud removal pool, and a spiral rack is arranged on the periphery of the inclined shaft. The diameter of the lower port of the spiral rack is smaller than the diameter of the upper port, and the lower end of the spiral rack is fixedly connected to the lower end of the inclined shaft. When in use, after the waste mud enters the interior of the first recovery pool, the first motor drives the spiral rack to rotate, so that the debris in the mud is entangled on the spiral rack, and at the same time, under the action of the high-pressure water spraying device, the debris in the mud is discharged from the first recovery pool.
[0006] Furthermore, the high-pressure water spray device includes a water spray head disposed on the upper surface of the inclined surface, the water spray head is connected to a water spray pipe, and the water outlet of the water spray pipe is disposed toward the spiral rack. The high-pressure water flow is sprayed toward the spiral rack through the water spray pipe to wash away the debris on the spiral rack, and under the action of the water flow, the debris is discharged into the first recovery pool.
[0007] Furthermore, the clean water auxiliary component includes a front vertical plate fixedly arranged on the front side wall of the first recovery tank, and a rear vertical plate fixedly arranged on the rear side wall of the first recovery tank, and the upper ends of the front vertical plate and the rear vertical plate are fixedly connected by a horizontal plate. A second motor with an output shaft facing downward is fixedly arranged in the middle position of the horizontal plate, and a vertically extending stirring rod is arranged inside the two-step water storage tank, and the upper end of the stirring rod is connected to the second motor, and a sweeping rod is fixedly connected to the side wall of the stirring rod. When in use, the second motor drives the stirring rod to rotate, and then drives the sweeping rod to rotate. During the rotation of the sweeping rod, the upper layer of water inside the two-step water storage tank is swept into the second recovery tank, and the water flowing into the second recovery tank is precipitated in the second recovery tank.
[0008] Furthermore, a debris mud outlet is provided on the side wall of the first recovery tank, and a clean water outlet is provided on the side wall of the second recovery tank.
[0009] The utility model has the beneficial effects of: by setting the first recovery pool and the second recovery pool at the concrete site, the waste concrete slurry is poured into the slurry inlet tank so that the waste slurry first flows into the first recovery pool, and the debris in the slurry is separated from the water inside the first recovery pool, so that the debris solid flows out of the first recovery pool, and the clean water flows into the second recovery pool, so that the water can be further reused. When in use, after the waste slurry enters the first recovery pool, the first motor drives the spiral frame to rotate, so that the debris in the slurry is entangled on the spiral frame, and at the same time, under the action of the high-pressure water spraying device, the debris in the slurry is discharged from the first recovery pool. The second motor drives the stirring rod to rotate, and then drives the sweeping rod to rotate. During the rotation of the sweeping rod, the upper layer of water inside the two-step water storage tank is swept into the second recovery pool, and the water flowing into the second recovery pool is precipitated in the second recovery pool. The high-pressure water flow is sprayed toward the spiral frame through the water spraying pipe to wash away the debris on the spiral frame, and under the action of the water flow, the debris is discharged from the first recovery pool. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a main structural schematic diagram of the utility model;
[0011] Figure 2 It is a schematic diagram of the top view structure of the utility model;
[0012] Figure 3 It is a schematic diagram of the three-dimensional structure of the utility model when viewed from the left;
[0013] Figure 4 It is a right-side top view of the three-dimensional structure of the utility model.
[0014] In the figure: 1, the first recovery tank 2, the second recovery tank 3, the mud inlet trough 4, the partition 5, the water hole 6, the support plate 7, the first motor 8, the inclined shaft 9, the spiral frame 10, the water spray head 11, the water spray pipe 12, the front vertical plate 13, the rear vertical plate 14, the second motor 15, the stirring rod 16, the sweeping rod 17, the debris mud outlet 18, the clean water outlet. DETAILED DESCRIPTION
[0015] The following is a further detailed description of the present invention in conjunction with the accompanying drawings. It should be noted that all directional words such as up, down, front, back, left, and right that appear in the present invention are based on Figure 1 The directional words are made for reference figures, and all directional words do not limit the utility model, but are only for more clear description and explanation of the utility model. Example
[0016] like Figure 1-4As shown, this embodiment discloses a waste mud recovery device for a concrete separator, which includes a first recovery tank 1 and a second recovery tank 2, wherein the second recovery tank 2 is arranged at the tail end of the first recovery tank 1, and the vertical height of the second recovery tank 2 is smaller than that of the first recovery tank 1; a mud inlet tank 3 is arranged at the left end of the first recovery tank 1, and a partition 4 is fixedly arranged inside the first recovery tank 1, wherein the partition 4 separates the first recovery tank 1 into a preliminary desilting tank and a second-step water storage tank, and a plurality of water holes 5 are opened on the plate surface of the partition 4; a desilting component is arranged inside the preliminary desilting tank, and a high-pressure water spraying device is arranged inside the preliminary desilting tank, and the high-pressure water spraying device is arranged corresponding to the desilting component; a clean water auxiliary component is arranged inside the second-step water storage tank. By setting up the first recovery tank 1 and the second recovery tank 2 at the concrete site, the waste concrete slurry is poured into the slurry inlet tank 3 so that the waste slurry first flows into the first recovery tank 1, and the sundries in the slurry are separated from the water inside the first recovery tank 1, so that the sundries solids flow out of the first recovery tank 1 and the clean water flows into the second recovery tank 2, so that the water can be further reused. Example
[0017] like Figure 1-4 As shown, this embodiment discloses a waste mud recovery device for a concrete separator, which includes a first recovery tank 1 and a second recovery tank 2, wherein the second recovery tank 2 is arranged at the tail end of the first recovery tank 1, and the vertical height of the second recovery tank 2 is smaller than that of the first recovery tank 1; a mud inlet tank 3 is arranged at the left end of the first recovery tank 1, and a partition 4 is fixedly arranged inside the first recovery tank 1, wherein the partition 4 separates the first recovery tank 1 into a preliminary desilting tank and a second-step water storage tank, and a plurality of water holes 5 are opened on the plate surface of the partition 4; a desilting component is arranged inside the preliminary desilting tank, and a high-pressure water spraying device is arranged inside the preliminary desilting tank, and the high-pressure water spraying device is arranged corresponding to the desilting component; a clean water auxiliary component is arranged inside the second-step water storage tank. By setting up the first recovery tank 1 and the second recovery tank 2 at the concrete site, the waste concrete slurry is poured into the slurry inlet tank 3 so that the waste slurry first flows into the first recovery tank 1, and the sundries in the slurry are separated from the water inside the first recovery tank 1, so that the sundries solids flow out of the first recovery tank 1 and the clean water flows into the second recovery tank 2, so that the water can be further reused.
[0018] In order to achieve better effect, the mud removal assembly includes a support plate 6 fixedly arranged on the side wall of the first recovery pool 1, the upper surface of the support plate 6 is an inclined surface, the upper surface of the inclined surface is fixedly provided with a first motor 7, and the first motor 7 is inclinedly arranged, the output shaft of the first motor 7 is connected with an inclined shaft 8 extending to the interior of the preliminary mud removal pool, and a spiral rack 9 is arranged on the periphery of the inclined shaft 8. The lower port diameter of the spiral rack 9 is smaller than the upper port diameter, and the lower end of the spiral rack 9 is fixedly connected to the lower end of the inclined shaft 8. When in use, after the waste mud enters the interior of the first recovery pool 1, the first motor 7 drives the spiral rack 9 to rotate, so that the debris in the mud is wound around the spiral rack 9, and at the same time, under the action of the high-pressure water spraying device, the debris in the mud is discharged from the first recovery pool 1.
[0019] For better effect, the high-pressure water spraying device includes a water spray head 10 arranged on the upper surface of the inclined surface, and the water spray head 10 is connected to a water spray pipe 11, and the water outlet of the water spray pipe 11 is arranged toward the spiral frame 9. The high-pressure water flow is sprayed toward the spiral frame 9 through the water spray pipe 11 to wash away the debris on the spiral frame 9, and the debris is discharged from the first recovery pool 1 under the action of the water flow. Example
[0020] like Figure 1-4 As shown, this embodiment discloses a waste mud recovery device for a concrete separator, which includes a first recovery tank 1 and a second recovery tank 2, wherein the second recovery tank 2 is arranged at the tail end of the first recovery tank 1, and the vertical height of the second recovery tank 2 is smaller than that of the first recovery tank 1; a mud inlet tank 3 is arranged at the left end of the first recovery tank 1, and a partition 4 is fixedly arranged inside the first recovery tank 1, wherein the partition 4 separates the first recovery tank 1 into a preliminary desilting tank and a second-step water storage tank, and a plurality of water holes 5 are opened on the plate surface of the partition 4; a desilting component is arranged inside the preliminary desilting tank, and a high-pressure water spraying device is arranged inside the preliminary desilting tank, and the high-pressure water spraying device is arranged corresponding to the desilting component; a clean water auxiliary component is arranged inside the second-step water storage tank. By setting up the first recovery tank 1 and the second recovery tank 2 at the concrete site, the waste concrete slurry is poured into the slurry inlet tank 3 so that the waste slurry first flows into the first recovery tank 1, and the sundries in the slurry are separated from the water inside the first recovery tank 1, so that the sundries solids flow out of the first recovery tank 1 and the clean water flows into the second recovery tank 2, so that the water can be further reused.
[0021] In order to achieve better effect, the mud removal assembly includes a support plate 6 fixedly arranged on the side wall of the first recovery pool 1, the upper surface of the support plate 6 is an inclined surface, the upper surface of the inclined surface is fixedly provided with a first motor 7, and the first motor 7 is inclinedly arranged, the output shaft of the first motor 7 is connected with an inclined shaft 8 extending to the interior of the preliminary mud removal pool, and a spiral rack 9 is arranged on the periphery of the inclined shaft 8. The lower port diameter of the spiral rack 9 is smaller than the upper port diameter, and the lower end of the spiral rack 9 is fixedly connected to the lower end of the inclined shaft 8. When in use, after the waste mud enters the interior of the first recovery pool 1, the first motor 7 drives the spiral rack 9 to rotate, so that the debris in the mud is wound around the spiral rack 9, and at the same time, under the action of the high-pressure water spraying device, the debris in the mud is discharged from the first recovery pool 1.
[0022] For better effect, the high-pressure water spraying device includes a water spray head 10 arranged on the upper surface of the inclined surface, and the water spray head 10 is connected to a water spray pipe 11, and the water outlet of the water spray pipe 11 is arranged toward the spiral frame 9. The high-pressure water flow is sprayed toward the spiral frame 9 through the water spray pipe 11 to wash away the debris on the spiral frame 9, and the debris is discharged from the first recovery pool 1 under the action of the water flow.
[0023] For better effect, the clean water auxiliary component includes a front vertical plate 12 fixedly arranged on the front side wall of the first recovery tank 1, and a rear vertical plate 13 fixedly arranged on the rear side wall of the first recovery tank 1. The upper ends of the front vertical plate 12 and the rear vertical plate 13 are fixedly connected by a horizontal plate. A second motor 14 with an output shaft facing downward is fixedly arranged in the middle position of the horizontal plate. A vertically extending stirring rod 15 is arranged inside the two-step water storage tank, and the upper end of the stirring rod 15 is connected to the second motor 14. A sweeping rod 16 is fixedly connected to the side wall of the stirring rod 15. When in use, the second motor 14 drives the stirring rod 15 to rotate, and then drives the sweeping rod 16 to rotate. During the rotation of the sweeping rod 16, the upper layer of water inside the two-step water storage tank is swept into the second recovery tank 2, and the water flowing into the second recovery tank 2 is precipitated in the second recovery tank 2.
[0024] For better effect, a debris mud outlet 17 is provided on the side wall of the first recovery tank 1 , and a clean water outlet 18 is provided on the side wall of the second recovery tank 2 .
[0025] The above are only preferred specific implementation methods of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes based on the technical solution and concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A concrete separator waste slurry recovery device, comprising a first recovery tank and a second recovery tank, characterized in that: The second recovery tank is arranged at the tail end of the first recovery tank, and the vertical height of the second recovery tank is smaller than that of the first recovery tank; a mud inlet trough is arranged at the left end of the first recovery tank, and a partition is fixedly arranged inside the first recovery tank, the partition divides the first recovery tank into a preliminary mud removal tank and a two-step water storage tank, and a plurality of water holes are opened on the plate surface of the partition; a mud removal component is arranged inside the preliminary mud removal tank, and a high-pressure water spraying device is arranged inside the preliminary mud removal tank, and the high-pressure water spraying device is arranged corresponding to the mud removal component; a clean water auxiliary component is arranged inside the two-step water storage tank.
2. The waste slurry recovery device for a concrete separator according to claim 1, characterized in that: The mud removal assembly includes a support plate fixedly arranged on the side wall of the first recovery tank, the upper surface of the support plate is an inclined surface, a first motor is fixedly arranged on the upper surface of the inclined surface, and the first motor is inclinedly arranged, the output shaft of the first motor is connected to an inclined rotating shaft extending to the interior of the preliminary mud removal tank, and a spiral frame is arranged on the outer periphery of the inclined rotating shaft.
3. The waste slurry recovery device for concrete separator according to claim 2 is characterized in that: The diameter of the lower end of the spiral frame is smaller than the diameter of the upper end thereof, and the lower end of the spiral frame is fixedly connected to the lower end of the inclined rotating shaft.
4. The waste slurry recovery device for a concrete separator according to claim 3, characterized in that: The high-pressure water spraying device comprises a water spraying head arranged on the upper surface of the inclined surface, the water spraying head is connected with a water spraying pipe, and the water outlet of the water spraying pipe is arranged toward the spiral frame.
5. The waste slurry recovery device for a concrete separator according to claim 1, characterized in that: The clean water auxiliary component includes a front vertical plate fixedly arranged on the front side wall of the first recovery tank, and a rear vertical plate fixedly arranged on the rear side wall of the first recovery tank. The upper ends of the front vertical plate and the rear vertical plate are fixedly connected by a horizontal plate.
6. The waste slurry recovery device for a concrete separator according to claim 5, characterized in that: A second motor with an output shaft facing downward is fixedly arranged in the middle position of the horizontal plate, a vertically extending stirring rod is arranged inside the two-step water storage tank, and the upper end of the stirring rod is connected to the second motor, and a sweeping rod is fixedly connected to the side wall of the stirring rod.
7. The waste slurry recovery device for a concrete separator according to claim 1, characterized in that: The side wall of the first recovery tank is provided with a debris mud outlet, and the side wall of the second recovery tank is provided with a clean water outlet.