Water body cleaning device

By combining the material guide and the material baffle, the problem of garbage easily falling out in traditional water cleaning devices is solved, achieving efficient garbage collection and cleaning.

CN224148661UActive Publication Date: 2026-04-21UBTECH ROBOTICS CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
UBTECH ROBOTICS CORP LTD
Filing Date
2025-04-30
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In traditional water cleaning systems, the design of the garbage collection device is inadequate, causing garbage to easily fall out of the device during movement, reducing cleaning efficiency and increasing repetitive workload.

Method used

Design a water cleaning device that uses a combination of a guide and a baffle. The guide is used to suck up the waste into the receiving cavity, and the baffle rotates around the axis under the action of buoyancy to cover the inlet and prevent the waste from flowing back. The baffle and the guide are arranged radially at intervals to reduce the impact on the feeding.

Benefits of technology

It effectively reduces the probability of garbage falling out of the device, improves cleaning efficiency, reduces the amount of repetitive cleaning work, and enhances the effectiveness of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water body cleaning device, and relates to the technical field of water body cleaning devices, and the water body cleaning device comprises a device main body, a material guiding part and a material blocking part. The device body is provided with a containing cavity and a feeding port, and the feeding port communicates with the containing cavity. The material guiding piece is arranged at the feeding port and rotationally connected with the device body, the material guiding piece rotates around the axial direction of the material guiding piece relative to the device body, and the containing cavity is formed in the side, in the radial direction of the material guiding piece, of the material guiding piece; the material blocking part is arranged at the feeding port and rotationally connected with the device body, the material blocking part extends in the axial direction of the material guiding part, the material blocking part rotates around the axial direction of the material guiding part relative to the device body under the action of buoyancy, and the material blocking part and the material guiding part are arranged at intervals in the radial direction of the material guiding part. According to the water body cleaning device, the probability that collected garbage falls out of the device can be reduced.
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Description

Technical Field

[0001] This utility model relates to the technical field of water body cleaning devices, and more specifically, to a water body cleaning device. Background Technology

[0002] To maintain the hygiene of swimming pools, water cleaning devices have emerged, primarily functioning to remove various floating debris, including but not limited to fallen leaves and other suspended waste. Traditional water cleaning devices suffer from significant shortcomings in waste collection. Due to poor design or inadequate structure, collected waste easily falls out during device movement, reducing cleaning efficiency, increasing the workload of repeated cleaning, and impacting the overall effectiveness of the device. Utility Model Content

[0003] In view of this, the purpose of this application is to overcome the shortcomings of the prior art and provide a water cleaning device that can reduce the probability of collected garbage falling out of the device.

[0004] To achieve the above objectives, the technical solution adopted in this application is as follows:

[0005] This application provides a water cleaning device, comprising: a device body having a receiving cavity and a feed inlet, the receiving cavity communicating with the feed inlet; a guide member disposed at the feed inlet and rotatably connected to the device body, the guide member rotating relative to the device body about its axial direction, the receiving cavity being disposed on one side of the guide member along its radial direction; and a baffle member disposed at the feed inlet and rotatably connected to the device body, the baffle member extending along the axial direction of the guide member, the baffle member rotating relative to the device body about its axial direction under buoyancy, and being radially spaced from the guide member.

[0006] In an optional embodiment, the main body of the device includes a top plate, a side plate, and a bottom plate. The top plate and the bottom plate are spaced apart. The side plate is disposed between the top plate and the bottom plate and surrounds the top plate and the bottom plate to define the receiving cavity and the feed inlet. The baffle is rotatably connected to the bottom plate, and the guide is rotatably connected to the side plate and disposed close to the top plate.

[0007] In an optional embodiment, the main body of the device further includes a connector connected to the base plate. The connector has a connecting groove, and the baffle is at least partially inserted through the connecting groove and rotates relative to the connector about the axial direction of the guide.

[0008] In an optional embodiment, the material stop has a material stop portion and a connecting portion, the connecting portion is connected to the material stop portion, the connecting portion passes through the connecting groove and rotates relative to the connecting member about the axial direction of the material guide, and the connecting portion abuts against the groove wall of the connecting groove at the groove opening.

[0009] In an optional embodiment, the material stop is provided with a clearance opening, the clearance opening is located near the connecting part, and the connecting member passes through the clearance opening around the axial direction of the material guide.

[0010] In an optional embodiment, there are multiple connectors, which are spaced apart along the axial direction of the guide member, and each connector is connected to the base plate. The baffle member passes through multiple connectors simultaneously.

[0011] In an optional embodiment, the main body of the device further includes a first limiting member, which is disposed on the side of the stop member that is radially away from the receiving cavity along the guide member, and the first limiting member is inclined toward the receiving cavity. The bottom plate is provided with the first limiting member at both ends along the axial direction of the guide member, wherein the first limiting member at one end abuts against one end of the stop member along the axial direction of the guide member, and the first limiting member at the other end abuts against the other end of the stop member along the axial direction of the guide member.

[0012] In an optional embodiment, the main body of the device further includes a second limiting member, which is disposed on the side of the first limiting member near the receiving cavity and is angled to the first limiting member around the axial direction of the guide member. The bottom plate is provided with the second limiting member at both ends along the axial direction of the guide member, wherein the second limiting member at one end abuts against one end of the stop member along the axial direction of the guide member, and the second limiting member at the other end abuts against the other end of the stop member along the axial direction of the guide member.

[0013] In an optional embodiment, the base plate has a material-carrying portion, which is spaced apart from the top plate to define the feed inlet. The baffle is connected to one end of the material-carrying portion near the feed inlet and rotates relative to the material-carrying portion about the axial direction of the guide member.

[0014] In an optional embodiment, the base plate further has a bent portion connected to one end of the material loading portion near the guide member and extending toward the guide member, and the bent portion is spaced apart from the top plate to define the feed inlet, the baffle member is connected to the bent portion and rotates relative to the bent portion about the axial direction of the guide member.

[0015] The water cleaning device of this application has the following advantages:

[0016] In the water cleaning device of this application, the guide member is at least partially located in the water body. The guide member rotates relative to the main body of the device to draw garbage into the receiving cavity through the inlet, thereby cleaning the water. During this process, since the baffle member is set at the inlet and can rotate relative to the main body of the device around the axis of the guide member under the action of buoyancy, as the water cleaning device goes deeper into the water body, the baffle member can rotate around the axis of the guide member in a direction away from the receiving cavity, so that the baffle member covers at least part of the inlet. In this way, the baffle member can block the garbage in the receiving cavity and prevent the garbage in the receiving cavity from flowing back into the water body through the inlet, thereby reducing the probability of the collected garbage falling out of the device. Furthermore, since the baffle member and the guide member are arranged radially apart, the influence of the baffle member on the feeding can be reduced, so that the garbage can enter the receiving cavity through the gap between the baffle member and the guide member at the inlet. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 A schematic diagram of the water cleaning device in this application is shown. Figure 1 ;

[0019] Figure 2 A schematic diagram of the water cleaning device in this application is shown. Figure 2 ;

[0020] Figure 3 A structural schematic diagram of the top plate, side plate, bottom plate, guide member, and stop member in this application is shown;

[0021] Figure 4 This application shows a structural schematic diagram of the top plate, side plate, bottom plate, and baffle.

[0022] Figure 5 It shows Figure 4 Enlarged structural diagram at point A;

[0023] Figure 6 A schematic diagram of the base plate and the stopper element in this application is shown.

[0024] Explanation of key component symbols:

[0025] 100 - Main body of the device; 110 - Receiving cavity; 120 - Feed inlet; 130 - Top plate; 140 - Side plate; 150 - Bottom plate; 151 - Material loading part; 152 - Bending part; 160 - Connecting part; 161 - Connecting groove; 170 - First limiting part; 180 - Second limiting part;

[0026] 200-Guide component;

[0027] 300 - Material stop; 310 - Material stop section; 311 - Clearance opening; 320 - Connecting part. Detailed Implementation

[0028] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0029] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "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 based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not 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 application.

[0030] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0031] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0032] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0033] Reference Figure 1 , Figure 2 as well as Figure 4 As shown, the water cleaning device involved in the embodiments of this application includes: a device body 100, a material guide 200, and a material stopper 300.

[0034] Specifically, the main body 100 of the device is provided with a receiving cavity 110 and a feed inlet 120, and the feed inlet 120 is connected to the receiving cavity 110; the guide member 200 is disposed at the feed inlet 120 and is rotatably connected to the main body 100 of the device, and the guide member 200 rotates relative to the main body 100 about the axis of the guide member 200; the receiving cavity 110 is disposed on one side of the guide member 200 along the radial direction; the baffle member 300 is disposed at the feed inlet 120 and is rotatably connected to the main body 100 of the device, the baffle member 300 extends along the axis of the guide member 200, and under the action of buoyancy, the baffle member 300 rotates relative to the main body 100 about the axis of the guide member 200, and is radially spaced from the guide member 200.

[0035] In the water cleaning device of this application, the guide member 200 is at least partially located in the water body. The guide member rotates relative to the device body 100 to draw waste into the receiving cavity 110 through the inlet 120, thereby cleaning the water. During this process, since the baffle member 300 is located at the inlet 120 and can rotate relative to the device body 100 about the axis of the guide member 200 under buoyancy, as the water cleaning device penetrates deeper into the water, the baffle member 300 can rotate about the axis of the guide member 200 away from the receiving cavity 110, thereby... The baffle 300 covers at least a portion of the inlet 120, thereby blocking the waste in the receiving cavity 110 and preventing it from flowing back into the water body through the inlet 120. This reduces the probability of the collected waste falling out of the device. Furthermore, since the baffle 300 and the guide 200 are arranged radially apart along the guide 200, the influence of the baffle 300 on the feeding is reduced, allowing the waste to enter the receiving cavity 110 through the gap between the baffle 300 and the guide 200 in the inlet 120.

[0036] Specifically, in this embodiment, the baffle 300 is made of a buoyant material to meet the requirements of being lightweight, waterproof, durable, and able to maintain buoyancy in water.

[0037] More specifically, in this embodiment, the buoyant material can be a foam material, such as polystyrene foam, polyurethane foam, and closed-cell foam; the buoyant material can also be a plastic material, such as hollow plastic, foamed plastic, etc.; the buoyant material can also be a metal material, such as aluminum alloy floats (with sealed cavities), stainless steel floats (with sealed cavities), etc.; the buoyant material can also be a composite material, such as glass fiber reinforced plastic, carbon fiber composite material, etc.; the buoyant material can also be other innovative materials, such as airbag buoyant materials, bio-based materials (such as recycled plastic foam), etc.

[0038] Reference Figure 3 as well as Figure 4 As shown, the main body 100 of the device includes a top plate 130, a side plate 140 and a bottom plate 150. The top plate 130 and the bottom plate 150 are spaced apart. The side plate 140 is disposed between the top plate 130 and the bottom plate 150 and surrounds the top plate 130 and the bottom plate 150 to define the receiving cavity 110 and the feed inlet 120. The baffle 300 is rotatably connected to the bottom plate 150 and the guide 200 is rotatably connected to the side plate 140 and is disposed close to the top plate 130.

[0039] In this embodiment, a receiving cavity 110 can be formed by the enclosing of the top plate 130, the side plate 140 and the bottom plate 150 to collect garbage in the water. Since the baffle 300 is rotatably connected to the bottom plate 150 and the guide 200 is rotatably connected to the side plate 140 and is set close to the top plate 130, the baffle 300 and the guide 200 are spaced apart, so that the garbage can enter the receiving cavity 110 through the feed inlet 120.

[0040] Reference Figure 5 As shown, the main body 100 of the device also includes a connector 160, which is connected to the base plate 150. The connector 160 is provided with a connecting groove 161. The baffle 300 passes through the connecting groove 161 at least partially and rotates relative to the connector 160 about the axial direction of the guide 200.

[0041] In this embodiment, the base plate 150 and the baffle 300 are connected by the connector 160. Specifically, the baffle 300 is at least partially inserted into the connecting groove 161 and can rotate relative to the connector 160 about the axis of the guide 200, so that the baffle 300 can rotate relative to the connector 160 about the axis of the guide 200, thereby realizing the rotational movement of the baffle 300 relative to the base plate 150. Through this rotational movement, the baffle 300 can effectively cover at least a part of the feed inlet 120, thereby achieving its expected baffle function.

[0042] Continue to refer to Figure 5 As shown, the material stop 300 has a material stop portion 310 and a connecting portion 320. The connecting portion 320 is connected to the material stop portion 310. The connecting portion 320 passes through the connecting groove 161 and rotates relative to the connecting member 160 about the axial direction of the guide member 200. The connecting portion 320 abuts against the groove wall of the connecting groove 161 at the groove opening.

[0043] In this embodiment, since the connecting part 320 passes through the connecting groove 161 and rotates relative to the connecting member 160 around the guide member 200, the connecting part 320 can drive the baffle part 310 to rotate relative to the connecting member 160 around the guide member 200. This allows the baffle part 310 to effectively cover at least a portion of the feed inlet 120. Furthermore, since the connecting part 320 abuts against the groove wall of the connecting groove 161 at the groove opening, the possibility of the connecting part 320 disengaging from the connecting groove 161 is reduced when the connecting part 320 rotates relative to the connecting member 160 around the guide member 200. This improves the connection stability between the connecting part 320 and the connecting member 160.

[0044] Continue to refer to Figure 5As shown, the material stop 310 is provided with a clearance opening 311, which is located near the connecting part 320. The connecting member 160 passes through the clearance opening 311 around the axial direction of the material guide 200.

[0045] In this embodiment, since the clearance opening 311 is located close to the connecting part 320, the connecting member 160 passes through the clearance opening 311 around the axial direction of the guide member 200. Thus, when the connecting part 320 rotates relative to the connecting member 160 around the axial direction of the guide member 200, the clearance opening 311 can provide clearance for the connecting member 160, providing the necessary movement space for the connecting member 160 and avoiding interference between the connecting member 160 and the blocking part 310 during the rotation of the connecting part 320. This ensures that the blocking member 300 can rotate smoothly within a preset angle range, thereby allowing the blocking member 300 to rotate to a preset position around the axial direction of the guide member 200 under the action of buoyancy, thereby improving the blocking effect of the blocking member 300.

[0046] Reference Figure 4 As shown, there are multiple connectors 160, which are spaced apart along the axial direction of the guide member 200, and each connector 160 is connected to the base plate 150. The baffle member 300 passes through multiple connectors 160 simultaneously.

[0047] Specifically, in this embodiment, the connecting groove 161 of each connector 160 is coaxially arranged along the axial direction of the guide member 200 to improve the smoothness of the rotation of the stop member 300 around the axial direction of the guide member 200.

[0048] In this embodiment, multiple connectors 160 are spaced apart along the axial direction of the guide member 200, and each connector 160 is connected to the base plate 150. The stop member 300 passes through multiple connectors 160. Therefore, the connection stability between the stop member 300 and the base plate 150 can be improved by multiple connectors 160. At the same time, multiple connectors 160 together constitute the rotation guide mechanism of the stop member 300, which guides the rotation of the stop member 300 and ensures that the stop member 300 can rotate smoothly relative to the base plate 150 with the axial direction of the guide member 200 as the axis.

[0049] Reference Figure 5 As shown, the main body 100 of the device also includes a first limiting member 170. The first limiting member 170 is disposed on the side of the stop member 300 away from the receiving cavity 110 along the radial direction of the guide member 200, and the first limiting member 170 is inclined toward the receiving cavity 110. The bottom plate 150 is provided with first limiting members 170 at both ends along the axial direction of the guide member 200. The first limiting member 170 at one end abuts against one end of the stop member 300 along the axial direction of the guide member 200, and the first limiting member 170 at the other end abuts against the other end of the stop member 300 along the axial direction of the guide member 200.

[0050] Specifically, in this embodiment, each first limiting member 170 is connected to the side plate 140 and protrudes from the side plate 140 toward the receiving cavity 110 along the axial direction of the guide member 200, so as to limit the two ends of the stop member 300 along the axial direction of the guide member 200.

[0051] In this embodiment, the first limiting member 170 is positioned at a specific angle on the side of the baffle member 300 that is radially away from the receiving cavity 110 along the guide member 200, and is inclined towards the receiving cavity 110. When the water cleaning device submerges in the water, the baffle member 300 will rotate around the axial direction of the guide member 200, with its rotation trajectory pointing away from the receiving cavity 110, until it contacts the first limiting member 170. In this way, the first limiting member 170 can limit the rotation of the baffle member 300, thereby allowing the baffle member 300 to cover at least a portion of the inlet 120 in the water, thus achieving the function of baffle member 300. The material blocking function of the 300 is further enhanced by the fact that the base plate 150 is provided with first limiting members 170 at both ends along the axial direction of the guide member 200. One end of the first limiting member 170 abuts against one end of the material blocking member 300 along the axial direction of the guide member 200, and the other end of the first limiting member 170 abuts against the other end of the material blocking member 300 along the axial direction of the guide member 200. In this way, the first limiting members 170 at both ends of the base plate 150 can simultaneously limit the rotation of the material blocking member 300 at both ends along the axial direction of the guide member 200, thereby significantly enhancing the limiting effect and ensuring the stability and reliability of the material blocking member 300 during operation.

[0052] Continue to refer to Figure 5 As shown, the main body 100 of the device also includes a second limiting member 180. The second limiting member 180 is disposed on the side of the first limiting member 170 near the receiving cavity 110 and is angled to the first limiting member 170 around the axial direction of the guide member 200. The bottom plate 150 is provided with second limiting members 180 at both ends along the axial direction of the guide member 200. The second limiting member 180 at one end abuts against one end of the stop member 300 along the axial direction of the guide member 200, and the second limiting member 180 at the other end abuts against the other end of the stop member 300 along the axial direction of the guide member 200.

[0053] Specifically, in this embodiment, each second limiting member 180 is connected to the base plate 150 and protrudes from the base plate 150 toward the receiving cavity 110 to limit the two ends of the stop member 300 along the axial direction of the guide member 200.

[0054] In this embodiment, when the water surface cleaning device rises in the water, the baffle 300 will rotate around the axial direction of the guide 200, with its rotation trajectory pointing towards the receiving cavity 110. This gradually increases the distance between the baffle 300 and the inlet 120, thus facilitating the cleaning of waste in the receiving cavity 110. During the rotation of the baffle 300 around the axial direction of the guide 200 towards the receiving cavity 110, the baffle 300 will gradually approach the second limiting member 180 until it contacts the second limiting member 180. The second limiting member 180 then limits the rotation of the baffle 300, preventing excessive rotation of the baffle 300 around the axial direction of the guide 200 towards the receiving cavity 110. Therefore, when the water surface cleaning device is submerged in the water, it can ensure that the baffle 300 can rotate smoothly around the axial direction of the guide 200 in a direction away from the receiving cavity 110. Furthermore, since the bottom plate 150 is provided with second limiting members 180 at both ends along the axial direction of the guide 200, one end of the second limiting member 180 abuts against one end of the baffle 300 along the axial direction of the guide 200, and the other end of the second limiting member 180 abuts against the other end of the baffle 300 along the axial direction of the guide 200, the second limiting members 180 at both ends of the bottom plate 150 can simultaneously limit the rotation of the baffle 300 at both ends along the axial direction of the guide 200, thereby significantly enhancing the limiting effect and ensuring the stability and reliability of the baffle 300 during operation.

[0055] Reference Figure 6 As shown, the bottom plate 150 has a material-carrying part 151, which is spaced apart from the top plate 130 to define the inlet 120. The baffle 300 is connected to the end of the material-carrying part 151 near the inlet 120 and rotates relative to the material-carrying part 151 about the axial direction of the guide 200.

[0056] In this embodiment, the material stop 300 can be installed at the end of the material loading part 151 adjacent to the feed inlet 120, and has the function of rotating relative to the material loading part 151 about the axis of the guide 200. Through this rotational movement, the material stop 300 can cover a part of the feed inlet 120, thereby effectively realizing its material stop function.

[0057] Continue to refer to Figure 6 As shown, the base plate 150 also has a bent portion 152, which is connected to one end of the loading portion 151 near the guide member 200 and extends toward the guide member 200. The bent portion 152 is spaced apart from the top plate 130 to define the feed inlet 120. The baffle member 300 is connected to the bent portion 152 and rotates relative to the bent portion 152 about the axial direction of the guide member 200.

[0058] Specifically, in this embodiment, the connector 160 is connected to the bent portion 152 so as to realize the rotational connection between the stop member 300 and the bent portion 152 through the connector 160.

[0059] In this embodiment, since the bent portion 152 is connected to the end of the loading portion 151 near the guide member 200 and extends toward the guide member 200, when the waste enters the receiving cavity 110 through the inlet 120, the bent portion 152 can play a certain role in blocking the waste in the receiving cavity 110, reducing the possibility of the waste falling out of the receiving cavity 110. Since the bent portion 152 is spaced apart from the top plate 130 to limit the inlet 120, and the baffle member 300 is connected to the bent portion 152 and rotates relative to the bent portion 152 around the axis of the guide member 200, the baffle member 300 can block the inlet 120 through the rotation of the baffle member 300 relative to the bent portion, thereby realizing the baffle member 300's blocking function.

[0060] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0061] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.

Claims

1. A water body cleaning device, characterized in that, include: The main body of the device is provided with a receiving cavity and a feeding port, and the receiving cavity is connected to the feeding port; A guide component is disposed at the feed inlet and rotatably connected to the main body of the device. The guide component rotates relative to the main body of the device about the axial direction of the guide component. The receiving cavity is disposed on one side of the guide component along the radial direction of the guide component. A baffle is disposed at the feed inlet and rotatably connected to the main body of the device. The baffle extends along the axial direction of the guide member. Under the action of buoyancy, the baffle rotates relative to the main body of the device about the axial direction of the guide member and is radially spaced from the guide member.

2. The water body cleaning device of claim 1, wherein, The main body of the device includes a top plate, a side plate, and a bottom plate. The top plate and the bottom plate are spaced apart. The side plate is disposed between the top plate and the bottom plate and surrounds the top plate and the bottom plate to define the receiving cavity and the feed inlet. The baffle is rotatably connected to the bottom plate, and the guide is rotatably connected to the side plate and disposed close to the top plate.

3. The water body cleaning device of claim 2, wherein, The main body of the device also includes a connector, which is connected to the base plate. The connector is provided with a connecting groove, and the baffle is at least partially inserted through the connecting groove and rotates relative to the connector about the axial direction of the guide.

4. The water body cleaning device of claim 3, wherein, The material stop has a material stop portion and a connecting portion. The connecting portion is connected to the material stop portion. The connecting portion passes through the connecting groove and rotates relative to the connecting member about the axial direction of the material guide. The connecting portion abuts against the groove wall of the connecting groove at the groove opening.

5. The water body cleaning device of claim 4, wherein, The material stop is provided with a clearance opening, which is located near the connecting part, and the connecting member passes through the clearance opening around the axial direction of the material guide.

6. The body of water cleaning device of claim 3, wherein, There are multiple connectors, which are spaced apart along the axial direction of the guide member, and each connector is connected to the base plate. The baffle is simultaneously inserted through multiple connectors.

7. The body of water cleaning device of claim 2, wherein, The main body of the device also includes a first limiting member, which is disposed on the side of the material stop member that is radially away from the receiving cavity along the material guide member, and the first limiting member is inclined toward the receiving cavity. The bottom plate is provided with the first limiting member at both ends along the axial direction of the material guide member, wherein the first limiting member at one end abuts against one end of the material stop member along the axial direction of the material guide member, and the first limiting member at the other end abuts against the other end of the material stop member along the axial direction of the material guide member.

8. The body of water cleaning device of claim 7, wherein, The main body of the device also includes a second limiting member, which is disposed on the side of the first limiting member near the receiving cavity and is angled to the first limiting member around the axial direction of the guide member. The bottom plate is provided with the second limiting member at both ends along the axial direction of the guide member, wherein the second limiting member at one end abuts against one end of the stop member along the axial direction of the guide member, and the second limiting member at the other end abuts against the other end of the stop member along the axial direction of the guide member.

9. The body of water cleaning device of claim 2, wherein, The bottom plate has a material-carrying section, which is spaced apart from the top plate to define the feed inlet. The baffle is connected to one end of the material-carrying section near the feed inlet and rotates relative to the material-carrying section about the axial direction of the guide.

10. The body of water cleaning device of claim 9, wherein, The base plate also has a bent portion, which is connected to one end of the material-carrying portion near the guide member and extends toward the guide member. The bent portion is spaced apart from the top plate to define the feed inlet. The baffle member is connected to the bent portion and rotates relative to the bent portion about the axial direction of the guide member.