Novel environment-friendly ecological water treatment device
By combining the cleaning drive motor and the tilting guide plate design, the problem of aquatic plants hanging on the shearing pin is solved, convenient aquatic plants and ecological waste recycling is achieved, and the convenience and efficiency of the water treatment device is improved.
Patent Information
- Application Number
- CN202422479601.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-14
AI Technical Summary
When cleaning aquatic plants, the existing environmentally friendly ecological water treatment devices are easy to hang on the shearing pins, resulting in frequent cleaning and affecting the convenience of use.
The cleaning drive motor drives the cleaning column to rotate, combined with the inclined guide plate design, so that the debris on the cleaning rod gradually falls into the main support frame, and the debris on the vibration knocking block shakes and sticks to achieve convenient recycling.
It realizes convenient recycling of aquatic plants and ecological waste, avoids the need for frequent manual cleaning of debris hanging on the surface of the cleaning rod, and improves the convenience of the recycling process and the water treatment effect.
Smart Images

Figure CN223239801U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of ecological water treatment, in particular to a novel environmentally friendly ecological water treatment device. Background Art
[0002] An existing patent (publication number: CN112479385B) proposes a new environmentally friendly ecological water treatment device, including a roller body, the roller body including a driving shaft, a first telescopic frame, a second telescopic frame connected to the output end of the first telescopic frame, and a plurality of aquatic plant collection devices arranged at the output end of the second telescopic frame. The first telescopic frame includes two movably connected input ends, and the two input ends of the first telescopic frame are connected to the driving shaft. Shear pins are provided on the driving shaft and the two input ends of the first telescopic frame. However, this device "when operating normally, the driving shaft rotates the aquatic plant collection device through the shear pin to collect aquatic plants." Aquatic plants will get caught on the shear pins during the cleaning process, and frequent cleaning is required to maintain the normal operation of the shear pins, affecting the convenience of use. Summary of the Invention
[0003] The utility model aims at the above-mentioned deficiencies in the prior art and provides a new environmentally friendly ecological water treatment device, which can realize water treatment by driving the cleaning column to rotate by a cleaning drive motor so that the cleaning rod can continuously slide under the water surface, thereby picking out aquatic plants, ecological garbage and other debris under the water. As the cleaning rod continues to rotate, when the cleaning rod slides into the cleaning rod avoidance groove, the curved design of the inclined guide plate itself makes the debris on the cleaning rod gradually fall down during the movement of the cleaning rod, and finally fall into the main support frame for completion of recovery. The recovery process is convenient, and it avoids the debris hanging on the surface of the cleaning rod and being unable to fall off automatically, which requires frequent cleaning by personnel, thereby ensuring the convenience of the recovery process and the cleaning process.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A new type of environmentally friendly ecological water treatment device includes a main support frame, a filter screen, a cleaning drive motor, a buoyancy cylinder, a cleaning column, and a vibrating knocking block. The bottom of the main support frame is provided with a filter screen connecting groove, the filter screen connecting groove is adapted to the filter screen, the filter screen connecting groove is connected to the filter screen, and the filter screen is inserted into the filter screen connecting groove. One side of the main support frame is provided with an inclined guide plate, and two buoyancy drum mounting platforms are provided in the middle of the main support frame. The two buoyancy drum mounting platforms are distributed on both sides of the inclined guide plate. The side of the buoyancy drum mounting platform is fixedly connected to the buoyancy cylinder. The bottom of the inclined guide plate is provided with a motor mounting platform. The inside of the motor mounting platform is provided with a cleaning column connecting groove, the cleaning column connecting groove is adapted to the cleaning column, and the cleaning column connecting groove is connected to the cleaning column.
[0006] The cleaning column rotates inside the cleaning column connecting groove, a cleaning rod avoidance groove is provided inside the inclined guide plate, multiple groups of cleaning rod avoidance grooves are evenly arranged on the surface of the inclined guide plate, a cleaning rod is provided on the side of the cleaning column, three groups of cleaning rods are evenly arranged around the cleaning column, the cleaning rods are adapted to the cleaning rod avoidance groove, the cleaning rods are connected to the cleaning rod avoidance groove, the cleaning rods slide inside the cleaning rod avoidance groove, and the cleaning drive motor is inserted into the motor mounting platform and fixed.
[0007] The cleaning drive motor has a transmission shaft fixedly connected to the cleaning column, and multiple groups of knocking block mounting platforms are arranged on the inner side of the inclined guide plate. The knocking block mounting platforms are distributed on both sides of the cleaning rod avoidance groove. The knocking block mounting platforms have knocking block connecting grooves inside. Two vibrating knocking blocks are symmetrically arranged at the interval between the two groups of knocking block mounting platforms, and a knocking block connecting column is provided on one side of the vibrating knocking block.
[0008] Beneficial effects: 1. When the utility model performs water treatment operations, the cleaning drive motor drives the cleaning column to rotate so that the cleaning rod continuously slides under the water surface, and aquatic plants or ecological garbage and other debris under the water are picked out. As the cleaning rod continues to rotate, when the cleaning rod slides into the cleaning rod avoidance groove, the curved design of the inclined guide plate itself makes the debris on the cleaning rod gradually fall down during the movement of the cleaning rod, and finally fall into the main support frame to complete the recycling. The recycling process is convenient, and it avoids debris hanging on the surface of the cleaning rod and unable to fall off automatically, requiring personnel to clean frequently, thereby ensuring the convenience of the recycling process and the cleaning process.
[0009] 2. The two groups of vibration knocking blocks of the utility model have matching grooves symmetrically distributed on both sides of the cleaning rod, and the matching grooves are evenly arranged at equal angles around the central axis of the cleaning column, so that when the cleaning rod slides on the surface of the vibration knocking block, the vibration knocking block is squeezed to both sides, and the corresponding spring is compressed until the cleaning rod corresponds to the matching groove, and the spring rebounds, and the matching groove is sleeved on the outside of the cleaning rod. The cleaning rod and the matching groove both adopt a design of a front arc surface and a rear straight surface, which makes the rebound process rapid, thereby generating vibration, shaking off smaller debris adhering to the cleaning rod, and further increasing the water treatment effect of this device.
[0010] 3. The angle between adjacent matching grooves of the utility model is 20°, and the angle between adjacent cleaning rods is 120°, so that the angle between the cleaning rods is an integer multiple of the angle between the matching grooves, so that when two adjacent cleaning rods are connected to the vibration knocking block at the same time, they can correspond to the matching grooves in the corresponding positions at the same time, avoiding the misalignment of the matching grooves and the adjacent cleaning rods, which causes the vibration knocking block to be stuck and unable to rebound.
[0011] 4. A filter is connected to the bottom of the main support frame of the utility model, which allows water to flow through. When the device completes the water treatment operation and performs overall recovery, the moisture on the debris can flow out through the filter part, avoiding a large amount of water being taken out during the recovery process. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the structure of the new environmentally friendly ecological water treatment device described in this utility model Figure 1 .
[0013] Figure 2 This is a schematic diagram of the structure of the new environmentally friendly ecological water treatment device described in this utility model Figure 2 .
[0014] Figure 3 This is a side sectional view of the new environmentally friendly ecological water treatment device described in the present utility model.
[0015] Figure 4 This is a partial structural diagram of the new environmentally friendly ecological water treatment device described in this utility model.
[0016] Figure 5 This is a structural schematic diagram of the main support frame described in the present utility model.
[0017] Figure 6 This is a structural schematic diagram of the vibration striking block described in the present utility model. DETAILED DESCRIPTION
[0018] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments:
[0019] Example 1:
[0020] A new type of environmentally friendly ecological water treatment device includes a main support frame 1, a filter screen 3, a cleaning drive motor 7, a buoyancy cylinder 8, a cleaning column 10, and a vibration knocking block 13. The bottom of the main support frame 1 has a filter screen connection groove 2, the filter screen connection groove 2 is adapted to the filter screen 3, the filter screen connection groove 2 is connected to the filter screen 3, and the filter screen 3 is inserted into the filter screen connection groove 2. The bottom of the main support frame 1 is connected to the filter screen 3, and the filter screen 3 allows water to flow through. When this device completes the water treatment operation and performs overall recovery, the moisture on the debris can be Part of the water flows out from the filter screen 3 to avoid a large amount of water being taken out during the recovery process. An inclined guide plate 4 is provided on one side of the main support frame 1. Two buoy mounting platforms 12 are provided in the middle of the main support frame 1. The two buoy mounting platforms 12 are distributed on both sides of the inclined guide plate 4. The sides of the buoy mounting platforms 12 are fixedly connected to the buoyancy cylinder 8. A motor mounting platform 6 is provided at the bottom of the inclined guide plate 4. A cleaning column connecting groove 11 is provided inside the motor mounting platform 6. The cleaning column connecting groove 11 is adapted to the cleaning column 10, and the cleaning column connecting groove 11 is connected to the cleaning column 10.
[0021] Example 2:
[0022] The cleaning column 10 of the utility model rotates inside the cleaning column connecting groove 11, and a cleaning rod avoidance groove 5 is provided inside the inclined guide plate 4. Multiple groups of cleaning rod avoidance grooves 5 are evenly arranged on the surface of the inclined guide plate 4. A cleaning rod 9 is provided on the side of the cleaning column 10. Three groups of cleaning rods 9 are evenly arranged around the cleaning column 10. The cleaning rod 9 is adapted to the cleaning rod avoidance groove 5. The cleaning rod 9 is connected to the cleaning rod avoidance groove 5. The cleaning rod 9 slides inside the cleaning rod avoidance groove 5. The cleaning drive motor 7 is inserted into the motor mounting platform 6 and fixed. When the water treatment operation is performed, the cleaning drive motor 7 drives the cleaning column 10 to rotate so that the cleaning rod 9 continuously slides under the water surface, and fishes out aquatic plants or ecological garbage and other debris under the water. As the cleaning rod 9 continues to rotate, when the cleaning rod 9 slides into the cleaning rod avoidance groove 5, the curved design of the inclined guide plate 4 itself makes the debris on the cleaning rod 9 gradually fall down during the movement of the cleaning rod 9, and finally fall into the main support frame 1 to complete the recovery. The recovery process is convenient, avoiding the debris hanging on the surface of the cleaning rod 9 and being unable to fall off automatically, which requires frequent cleaning by personnel, thereby ensuring the convenience of the recovery process and the cleaning process.
[0023] Example 3:
[0024] The cleaning drive motor 7 of the present invention has a transmission shaft fixedly connected to the cleaning column 10, and a plurality of knocking block mounting platforms 15 are provided on the inner side of the inclined guide plate 4. The knocking block mounting platforms 15 are distributed on both sides of the cleaning rod avoidance groove 5. The knocking block mounting platforms 15 have knocking block connecting grooves 16 inside. Two vibration knocking blocks 13 are symmetrically provided at the interval between the two groups of knocking block mounting platforms 15. The matching grooves 14 of the two groups of vibration knocking blocks 13 are symmetrically distributed on both sides of the cleaning rod 9, and the matching grooves 14 surround the central axis of the cleaning column 10 at equal angles. They are evenly arranged so that when the cleaning rod 9 slides on the surface of the vibrating knocking block 13, the vibrating knocking block 13 is squeezed to both sides, and the corresponding spring is compressed until the cleaning rod 9 corresponds to the matching groove 14, and the spring rebounds, and the matching groove 14 is sleeved on the outside of the cleaning rod 9. The cleaning rod 9 and the matching groove 14 both adopt a design of a front arc surface and a rear straight surface, which makes the rebound process rapid, thereby generating vibration, shaking off smaller debris adhering to the cleaning rod 9, and further increasing the water treatment effect of this device. A knocking block connecting column 17 is provided on one side of the vibrating knocking block 13.
[0025] Example 4:
[0026] The knocking block connecting column 17 of the utility model is adapted to the knocking block connecting groove 16, the knocking block connecting column 17 is connected to the knocking block connecting groove 16, the knocking block connecting column 17 slides inside the knocking block connecting groove 16, the knocking block connecting column 17 and the knocking block connecting groove 16 are connected by a spring, and the other side of the vibration knocking block 13 has a matching groove 14.
[0027] Example 5:
[0028] The edges of the matching grooves 14 of the present invention are chamfered, and the matching grooves 14 of the two groups of vibration knocking blocks 13 are symmetrically distributed on both sides of the cleaning rod 9. The matching grooves 14 are adapted to the cleaning rod 9, and the matching grooves 14 are evenly arranged at an angle of 20° around the central axis of the cleaning column 10. The angle between adjacent matching grooves 14 is 20°, and the angle between adjacent cleaning rods 9 is 120°, so that the angle between the cleaning rods 9 is an integer multiple of the angle between the matching grooves 14, so that when two adjacent cleaning rods 9 are connected to the vibration knocking block 13 at the same time, they can correspond to the matching grooves 14 at the corresponding positions at the same time, avoiding the misalignment of the matching grooves 14 and the adjacent cleaning rods 9, which causes the vibration knocking block 13 to be stuck and unable to rebound.
[0029] Example 6:
[0030] The installation steps of the present invention are as follows: insert the filter screen 3 into the filter screen connecting groove 2 of the main support frame 1, rotatably connect the cleaning column 10 to the cleaning column connecting groove 11 of the main support frame 1, insert the cleaning drive motor 7 into the motor mounting platform 6 of the main support frame 1 and fix it, fix the transmission shaft of the cleaning drive motor 7 to the cleaning column 10, insert the knocking block connecting column 17 of the vibration knocking block 13 into the knocking block connecting groove 16 of the main support frame 1, connect the knocking block connecting column 17 to the knocking block connecting groove 16 through a spring, and the installation of this device is completed.
[0031] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A new type of environmentally friendly ecological water treatment device, characterized by : It includes a main support frame (1), a filter screen (3), a cleaning drive motor (7), a buoyancy cylinder (8), a cleaning column (10), and a vibration knocking block (13). The bottom of the main support frame (1) is provided with a filter screen connecting groove (2), the filter screen connecting groove (2) is adapted to the filter screen (3), the filter screen connecting groove (2) is connected to the filter screen (3), and the filter screen (3) is inserted into the inside of the filter screen connecting groove (2). One side of the main support frame (1) is provided with an inclined guide plate (4), and two buoy mounting platforms (12) are provided in the middle of the main support frame (1). The two buoy mounting platforms (12) are distributed on both sides of the inclined guide plate (4). The sides of the buoy mounting platform (12) are provided with a plurality of buoy mounting platforms (12). A buoyancy cylinder (8) is fixedly connected, a motor mounting platform (6) is provided at the bottom of the inclined guide plate (4), a cleaning column connecting groove (11) is provided inside the motor mounting platform (6), the cleaning column connecting groove (11) is adapted to the cleaning column (10), and the cleaning column connecting groove (11) is connected to the cleaning column (10); the cleaning column (10) rotates inside the cleaning column connecting groove (11), a cleaning rod avoidance groove (5) is provided inside the inclined guide plate (4), a plurality of groups of cleaning rod avoidance grooves (5) are evenly arranged on the surface of the inclined guide plate (4), a cleaning rod (9) is provided on the side of the cleaning column (10), and three groups of cleaning rods (9) are evenly arranged around the cleaning column (10).
2. The novel environmentally friendly ecological water treatment device according to claim 1 is characterized in that The cleaning rod (9) is adapted to the cleaning rod avoidance groove (5), the cleaning rod (9) is connected to the cleaning rod avoidance groove (5), the cleaning rod (9) slides inside the cleaning rod avoidance groove (5), and the cleaning drive motor (7) is inserted into the motor mounting platform (6) and fixed.
3. The novel environmentally friendly ecological water treatment device according to claim 2 is characterized in that The cleaning drive motor (7) has a transmission shaft fixedly connected to the cleaning column (10), and a plurality of knocking block mounting platforms (15) are provided on the inner side of the inclined guide plate (4). The knocking block mounting platforms (15) are distributed on both sides of the cleaning rod avoidance groove (5). The knocking block mounting platforms (15) have knocking block connecting grooves (16) inside. Two vibration knocking blocks (13) are symmetrically provided at the interval between the two groups of knocking block mounting platforms (15), and one side of the vibration knocking block (13) has a knocking block connecting column (17).
4. The novel environmentally friendly ecological water treatment device according to claim 3 is characterized in that The knocking block connecting column (17) is adapted to the knocking block connecting groove (16), the knocking block connecting column (17) is connected to the knocking block connecting groove (16), the knocking block connecting column (17) slides inside the knocking block connecting groove (16), the knocking block connecting column (17) and the knocking block connecting groove (16) are connected by a spring, and the other side of the vibration knocking block (13) has a matching groove (14).
5. The novel environmentally friendly ecological water treatment device according to claim 1 is characterized in that : The matching groove (14) is provided with a chamfer at the edge, and the matching grooves (14) of the two sets of vibration knocking blocks (13) are symmetrically distributed on both sides of the cleaning rod (9), and the matching grooves (14) are adapted to the cleaning rod (9). The matching grooves (14) are evenly arranged at an angle of 20° around the central axis of the cleaning column (10).
Citation Information
Patent Citations
An ecological water treatment device
CN112479385B