Dust treatment device
By employing flexible connections and a sealing design, the problem of dust escaping from the dust treatment device is solved, achieving effective sealing and efficient treatment of dust and avoiding secondary pollution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU JINZHU NEW MATERIALS CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-26
AI Technical Summary
Existing dust treatment devices have poor sealing performance at the connection between the filter bag pipe and the treatment box, which makes it easy for dust to escape from the connection, causing secondary pollution. Furthermore, dust is easily spilled during disassembly, causing environmental pollution.
The ash feeding hose and the sleeve hose are flexibly connected. The counterweight ring hangs down naturally and is tied to the outside of the ash inlet pipe. Combined with the binding groove, the stability is improved and dust is prevented from escaping. At the same time, the baffle and the positioning rod are linked to realize the rapid opening and closing and sealing of the discharge port, and the water supply mechanism has a flushing function.
It effectively prevents dust from escaping from the connection point, avoids secondary pollution, ensures the airtightness and efficient discharge of dust, and reduces the risk of environmental pollution.
Smart Images

Figure CN224275590U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of workshop dust treatment technology, and in particular to a dust treatment device. Background Technology
[0002] During the production and processing of concrete, a large amount of dust is generated during the mixing, transportation, and pouring of raw materials such as sand, gravel, and cement. If not handled properly, this dust will not only pollute the environment but also endanger the health of workers.
[0003] In existing technologies, dust treatment mainly relies on wet dust suppression (such as spraying water) or mechanical filtration. However, traditional wet operations waste a lot of water resources, have limited spraying range, and are prone to secondary dust re-entrainment after drying. Therefore, mechanical filtration devices are often used to collect dust.
[0004] Mechanical filtration devices collect dust and store it in a treatment chamber. Water is then added to the chamber, and the dust and water are stirred to form a dust-water mixture. This prevents the collected dust from re-entraining and polluting the environment. Currently, existing mechanical filtration devices deliver dust into the treatment chamber via a bag-and-pipe system. The connection between the bag-and-pipe system and the treatment chamber is simply a binding, which results in insufficient sealing and allows dust to escape from the connection point, potentially causing secondary pollution. Furthermore, if… Figure 6 As shown, the connection between the filter bag pipe and the outer wall of the treatment box pipe creates a space that can hold dust. When personnel disassemble the filter bag pipe, the dust in this space will fall directly, causing secondary pollution. Utility Model Content
[0005] The main purpose of this utility model is to provide a dust handling device in which the ash delivery hose and the sleeve hose are flexibly connected. The ash delivery hose hangs down naturally under the action of the counterweight ring. After being connected to the ash inlet pipe, the ash delivery hose will pass through the inside of the ash inlet pipe and directly enter the treatment box. The sleeve hose can be sleeved on the outside of the ash inlet pipe. Therefore, this connection method can effectively prevent dust from escaping from the connection between the ash delivery hose and the ash inlet pipe and avoid the risk of secondary pollution.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] A dust handling device includes a handling box, a water supply mechanism, and a stirring mechanism. The stirring component of the stirring mechanism is located inside the handling box. An ash inlet pipe is provided on the top of the handling box. The device also includes an ash delivery hose. A matching connecting hose is provided around the ash delivery hose. The connecting hose is tied to the outside of the ash inlet pipe with a rope. The bottom end of the ash delivery hose is inserted into the ash inlet pipe, and a counterweight ring is fixed to the bottom of the ash delivery hose.
[0008] Furthermore, a binding groove is provided on the outer surface of the ash inlet pipe.
[0009] Furthermore, the stirring mechanism includes a motor fixed to one side of the processing tank and a stirring rod located inside the processing tank. The power output end of the motor is connected to a reducer, and the power output end of the reducer is fixedly connected to the central shaft of the stirring rod.
[0010] Furthermore, a bearing seat is fixed inside the processing box on the side away from the motor, and the central shaft of the stirring rod is fixed inside the rotating ring of the bearing seat.
[0011] Furthermore, the water delivery mechanism includes a water pump and a water outlet pipe connected to the treatment tank, with the water outlet end of the water pump fixedly connected to the water outlet pipe.
[0012] Furthermore, a discharge port is provided at the bottom of the processing box.
[0013] Furthermore, a baffle for closing the discharge port is rotatably connected to the bottom of the processing box, and a fixing mechanism for fixing the baffle is also provided on the processing box.
[0014] Furthermore, the fixing mechanism includes a vertical plate fixed to one side of the processing box, a positioning hole is provided on one side of the baffle, and a positioning rod that matches the position of the positioning hole is slidably inserted into the vertical plate.
[0015] Furthermore, the processing box is fixed to the top of the frame and the discharge port is offset from the frame.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] The ash-feeding hose and the sleeve hose of this utility model are flexibly connected. The ash-feeding hose hangs naturally under the action of the counterweight ring. After being connected to the ash inlet pipe, the ash-feeding hose will pass through the inside of the ash inlet pipe and directly enter the processing box. The sleeve hose can be sleeved on the outside of the ash inlet pipe. Therefore, this connection method can effectively prevent dust from escaping from the connection between the ash-feeding hose and the ash inlet pipe, avoiding the risk of secondary pollution. In addition, no space for dust accumulation will be formed between the ash-feeding hose and the ash inlet pipe. When the ash-feeding pipe is disassembled, there will be no dust spillage causing secondary pollution.
[0018] This utility model achieves rapid opening and closing and sealing of the discharge port through the linkage of the baffle and the positioning rod. Combined with the rinsing function of the water supply mechanism, it can effectively remove residues in the treatment tank.
[0019] The outer surface of the ash inlet pipe of this utility model is provided with a binding groove. When the connecting hose is tied with a rope, the connecting hose can be tightly tied in the binding groove, thereby improving the connection stability between the connecting hose and the ash inlet pipe. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of a dust treatment device according to the present invention.
[0021] Figure 2 This is a schematic diagram of the connection structure of the dust feeding hose, the connecting hose, and the counterweight ring of a dust handling device according to this utility model.
[0022] Figure 3 This is a schematic diagram showing the connection of the ash delivery hose, the connecting hose, and the ash inlet pipe of a dust handling device according to this utility model.
[0023] Figure 4 This is a schematic diagram of the internal structure of the processing box of a dust treatment device according to this utility model.
[0024] Figure 5 This is a schematic diagram of the fixing mechanism and baffle connection of a dust treatment device according to this utility model.
[0025] Figure 6 This is a schematic diagram of the connection between the bag filter pipe and the inlet pipe of the treatment tank in the prior art.
[0026] In the diagram: 1. Processing box; 101. Discharge port; 2. Ash delivery hose; 3. Connecting hose; 4. Tie rope; 5. Ash inlet pipe; 6. Binding groove; 7. Mixing mechanism; 701. Motor; 702. Mixing rod; 703. Bearing seat; 704. Reducer; 8. Water pump; 9. Water outlet pipe; 10. Frame; 11. Baffle; 12. Counterweight ring; 13. Positioning rod; 14. Vertical plate; 15. Positioning hole. Detailed Implementation
[0027] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] like Figure 1-5As shown, a dust treatment device includes a treatment tank 1, a water supply mechanism, and a stirring mechanism 7. The water supply mechanism includes a water pump 8 and a water outlet pipe 9 connected to the treatment tank 1. The water outlet end of the water pump 8 is fixedly connected to the water outlet pipe 9. The stirring component of the stirring mechanism 7 is located inside the treatment tank 1. The stirring component is a stirring rod 702. The stirring mechanism 7 includes a motor 701 fixed to one side of the treatment tank 1 and a stirring rod 702 located inside the treatment tank 1. The power output end of the motor 701 is connected to a reducer 704. The power output end of the speed generator 704 is fixedly connected to the central shaft of the stirring rod 702. The top of the processing box 1 is provided with an ash inlet pipe 5 and also includes an ash delivery hose 2. The ash delivery hose 2 is provided with a matching sleeve hose 3 around the ash inlet pipe 5. The sleeve hose 3 is tied to the outside of the ash inlet pipe 5 by a rope 4. The bottom end of the ash delivery hose 2 is inserted into the ash inlet pipe 5 and a counterweight ring 12 is fixed at the bottom of the ash delivery hose 2. The counterweight ring 12 is made of iron and can make the bottom of the ash delivery hose 2 always open and the opening is circular.
[0029] In this embodiment, such as Figure 1 , Figure 2 and Figure 3 As shown, both the ash conveying hose 2 and the connecting hose 3 are made of cloth. The connecting hose 3 is sewn onto the ash conveying hose 2. The upper free end of the ash conveying hose 2 is connected to the dust discharge pipe in the workshop. The bottom of the ash conveying hose 2 passes through the ash inlet pipe 5 and enters the treatment box 1. Under the weight of the counterweight ring 12, it hangs down naturally. At this time, the personnel can put the connecting hose 3 around the outside of the ash inlet pipe 5 and use the rope 4 to tie the connecting hose 3 to the ash inlet pipe 5, thereby ensuring that the bottom of the ash conveying hose 2 is always located in the ash inlet pipe 5.
[0030] When in use, the dust collection device in the workshop collects the dust and sends it into the dust inlet pipe 5 through the pipe. At this time, since the bottom of the dust delivery hose 2 hangs down naturally, the dust will enter the processing box 1 without obstruction. Furthermore, since the bottom of the dust delivery hose 2 is located inside the processing box 1 and the outer periphery of the dust delivery hose 2 is also fixed to the dust inlet pipe 5 by the sleeve hose 3, the dust will not leak from the connection between the dust delivery hose 2 and the dust inlet pipe 5, thus enabling the device to be used indoors.
[0031] Once dust enters the treatment tank 1, personnel can control the water pump 8 to pump water into the treatment tank 1 through the outlet pipe 9. At the same time, the motor 701 operates, which drives the stirring rod 702 to rotate through the reducer 704, thereby mixing the dust and water to achieve the dust treatment operation and prevent the dust from flying again.
[0032] Among them, such as Figure 1 and Figure 3 As shown, a binding groove 6 is provided on the outer surface of the ash inlet pipe 5. When the binding rope 4 binds the sleeve hose 3, the sleeve hose 3 can be tightly bound in the binding groove 6, thereby improving the connection stability between the sleeve hose 3 and the ash inlet pipe 5.
[0033] Among them, such as Figure 4 As shown, a bearing seat 703 is fixed on the side of the processing box 1 away from the motor 701. The central shaft of the stirring rod 702 is fixed inside the rotating ring of the bearing seat 703. The two ends of the central shaft of the stirring rod 702 are fixed to the bearing seat 703 and the reducer 704 respectively. Therefore, the stirring rod 702 has good stability when rotating.
[0034] like Figure 4 and Figure 5 As shown, a discharge port 101 is provided at the bottom of the processing box 1. A baffle 11 for closing the discharge port 101 is rotatably connected to the bottom of the processing box 1. A fixing mechanism for fixing the baffle 11 is also provided on the processing box 1. The baffle 11 can rotate, so that the discharge port 101 can be opened or closed to realize the discharge operation or stop the discharge. When the discharge operation is carried out, the water pump 8 can be made to work, so as to use the flushing force of the water flow to flush the inside of the processing box 1 to improve the discharge rate of the discharge operation.
[0035] Among them, such as Figure 5 As shown, the fixing mechanism includes a vertical plate 14 fixed to one side of the processing box 1. A positioning hole 15 is provided on one side of the baffle 11. A positioning rod 13 that matches the position of the positioning hole 15 is slidably inserted on the vertical plate 14. When the baffle 11 is in a horizontal state, it can close the discharge port 101. At this time, the positioning rod 13 can be inserted into the positioning hole 15, so that the baffle 11 remains in a horizontal state to close the discharge port 101.
[0036] It also includes a frame 10, with the processing box 1 fixed to the top of the frame 10 and the discharge port 101 offset from the frame 10.
[0037] Working principle: First, personnel connect the upper free end of the ash delivery hose 2 to the dust discharge pipe in the workshop. Then, the bottom of the ash delivery hose 2 passes through the ash inlet pipe 5 and enters the treatment box 1. Under the weight of the counterweight ring 12, the bottom of the ash delivery hose 2 naturally droops. At this time, personnel can put the connecting hose 3 around the outside of the ash inlet pipe 5 and use the rope 4 to tie the connecting hose 3 to the ash inlet pipe 5, thus ensuring that the bottom of the ash delivery hose 2 is always located in the ash inlet pipe 5. When the dust collection device in the workshop collects dust and sends it into the ash inlet pipe 5 through the pipe, the dust will enter the treatment box 1 without obstruction because the bottom of the ash delivery hose 2 naturally droops. Furthermore, because the bottom of the ash delivery hose 2 is located inside the treatment box 1 and the ash delivery hose... The outer perimeter of pipe 2 is also fixed to the ash inlet pipe 5 by a connecting hose 3, so dust will not leak from the connection between the ash delivery hose 2 and the ash inlet pipe 5, thus enabling the device to be used indoors. After the dust enters the treatment box 1, the operator controls the motor 701 and the water pump 8 to work. The water pump 8 will send water into the treatment box 1 through the outlet pipe 9. At the same time, the motor 701 will drive the stirring rod 702 to rotate through the reducer 704, thereby mixing the dust and water to achieve the dust treatment operation and prevent the dust from flying again. When it is necessary to discharge the ash-water mixture in the treatment box 1, the baffle 11 can be rotated to open the discharge port 101 so that the ash-water mixture in the treatment box 1 can be discharged through the discharge port 101.
[0038] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A dust treatment device, comprising a treatment box (1), a water supply mechanism, and a stirring mechanism (7), wherein the stirring component of the stirring mechanism (7) is located inside the treatment box (1), and an ash inlet pipe (5) is provided at the top of the treatment box (1), characterized in that: It also includes a ash delivery hose (2), and a connecting hose (3) matching the ash inlet pipe (5) is provided around the ash delivery hose (2). The connecting hose (3) is tied to the outside of the ash inlet pipe (5) by a rope (4). The bottom end of the ash delivery hose (2) is inserted into the ash inlet pipe (5) and a counterweight ring (12) is fixed at the bottom of the ash delivery hose (2).
2. The dust treatment device according to claim 1, characterized in that: The outer surface of the ash inlet pipe (5) is provided with a binding groove (6).
3. The dust treatment device according to claim 1, characterized in that: The stirring mechanism (7) includes a motor (701) fixed to one side of the processing tank (1) and a stirring rod (702) located inside the processing tank (1). The power output end of the motor (701) is connected to a reducer (704), and the power output end of the reducer (704) is fixedly connected to the central axis of the stirring rod (702).
4. A dust treatment device according to claim 3, characterized in that: A bearing seat (703) is fixed on the side of the processing box (1) away from the motor (701), and the central axis of the stirring rod (702) is fixed inside the rotating ring of the bearing seat (703).
5. A dust treatment device according to claim 1, characterized in that: The water delivery mechanism includes a water pump (8) and a water outlet pipe (9) connected to the treatment tank (1), with the water outlet end of the water pump (8) fixedly connected to the water outlet pipe (9).
6. A dust treatment apparatus according to any one of claims 1-5, characterized in that: The bottom of the processing box (1) is provided with a discharge port (101).
7. A dust treatment device according to claim 6, characterized in that: The bottom of the processing box (1) is rotatably connected to a baffle (11) for closing the discharge port (101), and the processing box (1) is also provided with a fixing mechanism for fixing the baffle (11).
8. A dust treatment device according to claim 7, characterized in that: The fixing mechanism includes a vertical plate (14) fixed to one side of the processing box (1), a positioning hole (15) is provided on one side of the baffle (11), and a positioning rod (13) that matches the position of the positioning hole (15) is slidably inserted on the vertical plate (14).
9. A dust treatment device according to claim 6, characterized in that: It also includes a frame (10), the processing box (1) is fixed to the top of the frame (10) and the discharge port (101) is offset from the frame (10).