Environmental pollution treatment agent quantitative feeding device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-25
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]为了克服现有的环境污染处理剂定量下料装置在下料过程中通过一个通道下料,会导致播撒范围较小,且下料口由于冲击会造成堵塞,影响下料效率的问题
1、该环境污染处理剂定量下料装置,通过安装多个出料管,且通过出料口可大范围播撒处理剂,且通过加固其与下料罐之间的连接,提高下料的效率,方便处理剂的播撒,提高整体的工作效率;
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Figure CN224632356U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of quantitative feeding devices for environmental pollution treatment agents, and in particular to quantitative feeding devices for environmental pollution treatment agents. Background Technology
[0002] Environmental pollution can be classified according to environmental elements as follows: air pollution, water pollution, soil pollution, noise pollution, pesticide pollution, radiation pollution, and thermal pollution. When water is polluted, treatment agents need to be added to the water to adjust the water quality. Treatment agents are used to improve the adhesion properties of substances on the surface of plastics, fillers, pigments, and adhesive carriers, and are widely used in people's daily lives. The prior art patent CN215401866U discloses a feeding device for producing a treatment agent with a quantitative configuration function. The device includes a feeding frame, a support column at the top of the feeding frame, a support beam at the top of the support column, a motor at the bottom of the support beam, and a rotating roller at the bottom of the motor. One end of the rotating roller is connected to a feeding box. The feeding box contains a first rotating mechanism, and inside the first rotating mechanism is a first rotating gear set connected to one end of the rotating roller. Rotating shafts are located on both sides of the first rotating gear set, and one end of each rotating shaft is connected to a second rotating mechanism. This feeding device for producing the treatment agent allows for quantitative control of the feeding amount through a quantitative mechanism, and a designed striking mechanism allows for striking the side of the feeding box to prevent the treatment agent from sticking to the inner wall.
[0003] However, existing quantitative feeding devices for environmental pollution treatment agents only use one channel to spread the treatment agent during the application process, resulting in a small application range and affecting application efficiency. At the same time, during the feeding process, the feeding port may become blocked due to the impact force caused by multiple doses exiting from the feeding port simultaneously, affecting the feeding efficiency and reducing the overall work efficiency. Utility Model Content
[0004] In order to overcome the problems of existing environmental pollution treatment agent quantitative feeding devices, which feed through a single channel during the feeding process, resulting in a small spreading range and blockage of the feeding port due to impact, thus affecting feeding efficiency.
[0005] The technical solution of this utility model is as follows: a quantitative feeding device for environmental pollution treatment agents, including a feeding tank, a feeding pipe fixedly connected to the lower end face of the feeding tank, an installation head sleeved on the outside of the feeding pipe, a discharge pipe fixedly connected to the outside of the installation head, six discharge pipes arranged in a ring array, a circular frame fixedly connected between the six discharge pipes, multiple discharge ports opened on the surface of each of the six discharge pipes, external threads fixedly connected to the outer surface of the feeding pipe, four sliding grooves arranged in a ring array on the surface of the installation head, a reinforcing collar sleeved on the outside of the installation head, a sliding component fixedly connected to one end of the reinforcing collar, four insertion holes arranged in a ring array inside the reinforcing collar, a threaded fixing groove opened inside the installation head, four limiting grooves arranged in a ring array on the outer surface of the feeding pipe, insertion components arranged inside the four limiting grooves, a sealing cover set on the top of the feeding tank, a driving component set on the top of the sealing cover, an anti-clogging component connected to the output end of the driving component, the anti-clogging component being used for rotational anti-clogging.
[0006] Preferably, the sealing cap is connected to the feeding tank by a buckle, which is arranged in a circular array of four. Mounting brackets are fixedly connected to both the left and right sides of the feeding tank, and a feed pipe is fixedly connected to one side of the upper surface of the sealing cap.
[0007] Preferably, the mounting head is fitted onto the outside of the feed tube and is rotatably engaged with the threaded fixing groove via an external thread, for connecting the feed tube and the mounting head.
[0008] Preferably, the sliding member includes a slider, which is located in and slidably connected to the groove. The slider slides up and down in the groove, thereby driving the reinforcing collar to move up and down.
[0009] Preferably, the insertion assembly includes a insertion rod located in a limiting groove, and a spring sleeved on the outside of the insertion rod. By sliding a reinforcing collar, the reinforcing collar contacts the insertion rod and the spring for synchronous compression of the insertion rod and the spring, and the insertion rod is inserted into the insertion hole for through connection.
[0010] Preferably, the driving component includes a motor, the anti-clogging component includes a stirring shaft, the outer surface of the stirring shaft is fitted with blades, the blades are arranged in a vertical array of four, a spiral blade is provided on the outside of the stirring shaft and below the blades, and a four-claw stirring blade is connected to the lower end of the stirring shaft.
[0011] Preferably, the output end of the motor is connected to a stirring shaft. The motor drives the stirring shaft to rotate, and the rotation of the stirring shaft drives the blades, spiral blades and four-claw stirring blades to rotate together to prevent clogging.
[0012] The beneficial effects of this utility model are: 1. This environmental pollution treatment agent quantitative feeding device, by installing multiple discharge pipes, can spread the treatment agent over a wide area through the discharge port. Furthermore, by reinforcing the connection between the device and the feeding tank, the feeding efficiency is improved, the application of the treatment agent is facilitated, and the overall work efficiency is enhanced. 2. The quantitative feeding device for the environmental pollution treatment agent improves the feeding efficiency through the stirring mechanism inside the feeding tank and the anti-clogging stirring structure at the feeding port. Attached Figure Description
[0013] Figure 1 The diagram shown is a schematic representation of the overall structure of the environmental pollution treatment agent quantitative feeding device of this utility model. Figure 2 The image shown is a bottom view of the overall structure of the environmental pollution treatment agent quantitative feeding device of this utility model; Figure 3 The diagram shown is a three-dimensional cross-sectional schematic diagram of the internal structure of the environmental pollution treatment agent quantitative feeding device of this utility model. Figure 4 The diagram shown is a partially enlarged structural schematic of the feed pipe connection of this utility model. Figure 5 This utility model is shown. Figure 4 A magnified schematic diagram of the three-dimensional structure at point A.
[0014] Explanation of reference numerals in the attached diagram: 1. Feeding tank; 2. Sealing cover; 3. Motor; 4. Circular frame; 5. Discharge pipe; 6. Mounting head; 7. Reinforcing collar; 8. Discharge port; 9. Stirring shaft; 10. Blade; 11. Four-claw stirring blade; 12. Spiral blade; 13. Feeding pipe; 14. External thread; 15. Threaded fixing groove; 16. Slide groove; 17. Sliding block; 18. Limiting groove; 19. Spring; 20. Insert rod; 21. Insertion hole. Detailed Implementation
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] Please see Figures 1-5This utility model provides an embodiment of an environmental pollution treatment agent quantitative feeding device, including a feeding tank 1, a feeding pipe 13 fixedly connected to the lower end face of the feeding tank 1, an installation head 6 sleeved on the outside of the feeding pipe 13, a discharge pipe 5 fixedly connected to the outside of the installation head 6, six discharge pipes 5 arranged in a ring array, a circular frame 4 fixedly connected between the six discharge pipes 5, multiple discharge ports 8 opened on the surface of each of the six discharge pipes 5, an external thread 14 fixedly connected to the outer surface of the feeding pipe 13, four sliding grooves 16 arranged in a ring array on the surface of the installation head 6, a reinforcing collar 7 sleeved on the outside of the installation head 6, a sliding member fixedly connected to one end of the reinforcing collar 7, and four insertion holes 21 arranged in a ring array inside the reinforcing collar 7. The mounting head 6 has a threaded fixing groove 15 inside, and the outer surface of the feeding pipe 13 has a limiting groove 18. There are four limiting grooves 18 arranged in a ring array. Each of the four limiting grooves 18 has a plug-in component inside. A sealing cover 2 is provided above the feeding tank 1. A driving component is provided above the sealing cover 2. The output end of the driving component is connected to an anti-blocking component. The anti-blocking component is used to prevent rotational blockage. There are four buckles arranged in a ring array between the sealing cover 2 and the feeding tank 1. Mounting brackets are fixedly connected to both the left and right sides of the feeding tank 1. A feed pipe is fixedly connected to one side of the upper end face of the sealing cover 2. The principle of the motor 3 driving the rotation of the stirring shaft 9 is the existing technical solution. Here, the applicant will not provide a detailed description of the internal structure and components of the motor 3 and the stirring shaft 9 or their connection relationship.
[0017] The mounting head 6 is sleeved on the outside of the feed tube 13 and is rotatably engaged with the threaded fixing groove 15 via the external thread 14, for the connection between the feed tube 13 and the mounting head 6. The sliding component includes a slider 17, which is located in and slidably connected to the slide groove 16. The slider 17 slides up and down in the slide groove 16, causing the reinforcing collar 7 to move up and down. The insertion assembly includes an insertion rod 20, which is located in the limiting groove 18. A spring 19 is sleeved on the outside of the insertion rod 20. By sliding the reinforcing collar 7, the reinforcing collar 7 contacts the insertion rod 20 and the spring 19, for the synchronous compression of the insertion rod 20 and the spring 19, and the insertion rod 20 inserts into the groove. The device is inserted into the insertion hole 21 and connected through it. The installation head 6 is sleeved on the outside of the feed tube 13, and by rotating, the external thread 14 engages with the fixing thread fixing groove 15 and is rotated and fixed. By sliding the slider 17, the slider 17 drives the reinforcing collar 7 to slide inside the slide groove 16. At the same time, the insertion rod 20 and the spring 19 come into contact with its inner wall, so that the insertion rod 20 and the spring 19 are compressed together, and the insertion rod 20 is inserted into the insertion hole 21 and passes through it, which is used to reinforce the fixation between the installation head 6 and the feed tube 13. At the same time, multiple installation heads 6 are used for the wide-area dissemination of the treatment agent, which improves its working efficiency.
[0018] The driving component includes a motor 3, and the anti-clogging component includes a stirring shaft 9. Blades 10 are fitted onto the outer surface of the stirring shaft 9, with four blades 10 arranged in a vertical array. A spiral blade 12 is positioned outside the stirring shaft 9 and below the blades 10. A four-claw stirring blade 11 is connected to the lower end of the stirring shaft 9. The output end of the motor 3 is connected to the stirring shaft 9. The motor 3 drives the rotation of the stirring shaft 9, which in turn drives the blades 10, spiral blade 12, and four-claw stirring blade 11 to rotate together, thus preventing clogging. The operation of the motor 3 drives the rotation of the stirring shaft 9, which in turn drives multiple blades 10 to perform stirring motion. Simultaneously, the spiral blade 12 and the four-claw stirring blade 11 also rotate, stirring the material at the discharge point to prevent clogging.
[0019] During operation, the mounting head 6 is sleeved on the outside of the discharge pipe 13, and by rotating, the external thread 14 engages with the fixing thread groove 15 and is rotated and fixed. The sliding slider 17 drives the reinforcing collar 7 to move up and down, so that the insertion rod 20 and the spring 19 contact the inner wall and are compressed together. Finally, the insertion rod 20 is inserted into the insertion hole 21 and passes through it to reinforce the fixation between the mounting head 6 and the discharge pipe 13. At the same time, multiple mounting heads 6 are used for wide-area dispensing of the treatment agent to improve its working efficiency. The operation of the motor 3 drives the rotation of the stirring shaft 9. The rotation of the stirring shaft 9 drives multiple blades 10 to perform stirring motion. At the same time, the spiral blade 12 rotates and the four-claw stirring blade 11 also rotates to stir the discharge point to prevent blockage.
[0020] Through the above steps, by installing multiple discharge pipes 5 and distributing the treatment agent over a wide area through the discharge port 8, and by reinforcing the connection between them and the feeding tank 1, the feeding efficiency is improved, the application of the treatment agent is facilitated, and the overall work efficiency is improved. This solves the problem that existing environmental pollution treatment agent quantitative feeding devices discharge through a single channel during the feeding process, resulting in a small application range and the discharge port being blocked due to impact, thus affecting the feeding efficiency.
Claims
1. An environmental pollution treatment agent quantitative discharging device, comprising a discharging tank (1), characterized in that: A feeding pipe (13) is fixedly connected to the lower end face of the feeding tank (1). A mounting head (6) is sleeved on the outside of the feeding pipe (13). A discharge pipe (5) is fixedly connected to the outside of the mounting head (6). There are six discharge pipes (5) arranged in a ring array. A circular frame (4) is fixedly connected between the six discharge pipes (5). Multiple discharge ports (8) are opened on the surface of each of the six discharge pipes (5). An external thread (14) is fixedly connected to the outer surface of the feeding pipe (13). A groove (16) is opened on the surface of the mounting head (6). There are four grooves (16) arranged in a ring array. A reinforcing sleeve is sleeved on the outside of the mounting head (6). A collar (7) is fixedly connected to a sliding member at one end. The reinforcing collar (7) has four insertion holes (21) arranged in a ring array. The mounting head (6) has a threaded fixing groove (15) arranged inside. The outer surface of the feed tube (13) has a limiting groove (18) arranged in a ring array. The limiting groove (18) has four insertion components arranged inside the four limiting grooves (18). A sealing cover (2) is provided above the feed tank (1). A driving member is provided above the sealing cover (2). The output end of the driving member is connected to an anti-blocking component. The anti-blocking component is used for rotational anti-blocking.
2. The environmental pollution treatment agent dosing device according to claim 1, characterized by: There are four buckles in a ring array between the sealing cover (2) and the feeding tank (1). The left and right sides of the feeding tank (1) are fixedly connected to the mounting brackets. The upper side of the sealing cover (2) is fixedly connected to the feed pipe.
3. The environmental pollution treatment agent dosing and dispensing apparatus according to claim 1, characterized in that: The mounting head (6) is sleeved on the outside of the feed tube (13) and is rotatably engaged with the threaded fixing groove (15) through the external thread (14) for the connection between the feed tube (13) and the mounting head (6).
4. The environmental pollution treatment agent dosing device according to claim 1, characterized by: The sliding component includes a slider (17), which is located in and slidably connected to the groove (16). The slider (17) slides up and down in the groove (16), thereby driving the reinforcing collar (7) to move up and down.
5. The environmental pollution treatment agent dosing and dispensing apparatus according to claim 4, wherein: The plug assembly includes a plug rod (20), which is located in a limiting groove (18). A spring (19) is sleeved on the outside of the plug rod (20). By sliding a reinforcing collar (7), the reinforcing collar (7) contacts the plug rod (20) and the spring (19) for synchronous compression of the plug rod (20) and the spring (19). The plug rod (20) is inserted into the socket (21) and connected to it.
6. The environmental pollution treatment agent dosing apparatus according to claim 1, characterized by: The driving component includes a motor (3), and the anti-clogging component includes a stirring shaft (9). The outer surface of the stirring shaft (9) is fitted with blades (10). There are four blades (10) arranged in a vertical array. A spiral blade (12) is provided on the outside of the stirring shaft (9) and below the blades (10). A four-claw stirring blade (11) is connected to the lower end of the stirring shaft (9).
7. The environmental pollution treatment agent dosing and dispensing apparatus according to claim 6, wherein: The output end of the motor (3) is connected to the stirring shaft (9). The motor (3) drives the stirring shaft (9) to rotate. The rotation of the stirring shaft (9) drives the blades (10), the spiral blades (12) and the four-claw stirring blades (11) to rotate together to prevent clogging.
Citation Information
Patent Citations
Discharging device with quantitative preparation function for treating agent production
CN215401866U