Cleaning device for small cattle, sheep and pig breeding site
By combining a multi-directional adjustable nozzle, a movable support, a mobile chassis, and a rotating brush, the problem of hard-to-reach cleaning corners in confined spaces is solved, achieving efficient and flexible cleaning results.
Patent Information
- Application Number
- CN202423153357.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing cleaning devices for cattle, sheep, and pig farms are unable to reach hard-to-reach areas in confined spaces, resulting in poor cleaning performance.
A small cleaning device was designed, including a multi-directional adjustable nozzle, a movable support, a mobile chassis, a cleaning fluid tank, and a rotating brush. The cleaning fluid is delivered to the target cleaning location through the spray pipe, the rotating brush assists in cleaning, the movable support adjusts the angle and height of the spray pipe, and the mobile chassis ensures that the device can move flexibly in confined spaces.
It effectively solves the problem of cleaning dead spots in confined spaces, improves cleaning efficiency and quality, and enhances the flexibility and applicability of cleaning devices.
Smart Images

Figure CN223541120U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of agricultural machinery technology, specifically to a cleaning device for small-scale cattle, sheep and pig farms. Background Technology
[0002] Cleaning devices for cattle, sheep, and pig farms are primarily used in livestock farms to clean floors and walls. These devices typically integrate multiple functions such as water rinsing, foam spraying, and scrubbing, effectively removing stains and bacteria to ensure a hygienic environment. However, these cleaning devices have limitations in practical use, especially in confined spaces where hard-to-reach areas can become breeding grounds for germs, affecting overall cleaning effectiveness. Summary of the Invention
[0003] In view of this, the present disclosure provides a cleaning device for small-scale cattle, sheep and pig farms, which at least partially solves the problems existing in the prior art.
[0004] This application discloses a cleaning device for small-scale cattle, sheep, and pig farms, comprising:
[0005] The spray nozzle is used to deliver cleaning fluid to the target cleaning location and has a multi-directional adjustable nozzle.
[0006] A movable support bracket is used to support and adjust the angle and height of the injection pipe;
[0007] A mobile chassis for carrying the entire cleaning unit and moving it on the ground;
[0008] A cleaning fluid storage tank, used to store cleaning fluid and connected to a spray pipe via a pipeline;
[0009] A rotating brush, installed at the end of the spray nozzle, is used to assist in cleaning the spray nozzle;
[0010] The rotating brush is composed of a bristle layer and a hard brush layer, with a thickness ratio of 2:1; and
[0011] The movable support includes multiple telescopic arms and a locking mechanism, which allows the height and angle of the spray pipe to be adjusted.
[0012] Preferably, the spray pipe is a multi-section telescopic pipe with quick connectors for easy replacement and cleaning.
[0013] Preferably, the multi-directional adjustable nozzle has multiple nozzles with independently adjustable angles.
[0014] Preferably, the locking mechanism is a knob-type or snap-on design.
[0015] Preferably, the mobile chassis is equipped with multiple omnidirectional wheels and a foot brake.
[0016] Preferably, the cleaning fluid storage tank is located at the front end of the mobile chassis and is connected to the spray pipe via a flexible pipeline.
[0017] Preferably, the rotating brush is driven to rotate by a drive motor, which is fixed to the bottom of the spray pipe and connected to the controller.
[0018] Preferably, the outer surface of the spray pipe is provided with scale markings to indicate the spray distance and angle.
[0019] Preferably, the width of the movable support is smaller than the width of the movable chassis.
[0020] This disclosure provides a cleaning device for small-scale cattle, sheep, and pig farms, comprising: a spray pipe for delivering cleaning fluid to the target cleaning location, having multi-directional adjustable nozzles; a movable support for supporting and adjusting the angle and height of the spray pipe; a movable chassis for carrying the entire cleaning device and moving it on the ground; a cleaning fluid storage tank for storing the cleaning fluid and connecting it to the spray pipe via a pipe; and a rotating brush installed at the end of the spray pipe for assisting in cleaning. The rotating brush is composed of a bristle layer and a hard brush layer, with a thickness ratio of 2:1. The movable support includes multiple retractable arms and a locking mechanism, allowing adjustment of the height and angle of the spray pipe. This solution addresses the problem of difficult-to-reach cleaning areas caused by operating the cleaning device in confined spaces. Attached Figure Description
[0021] To more clearly illustrate the technical solutions of the exemplary embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure 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.
[0022] Figure 1 This is a schematic diagram of the axial structure of the cleaning device of this utility model;
[0023] Figure 2 This utility model Figure 1 A partially truncated enlarged structural diagram of the movable support frame;
[0024] Figure 3 This utility model Figure 2 Enlarged side view of the rotating brush.
[0025] In the diagram: 1. Spray pipe; 2. Movable support; 3. Mobile chassis; 4. Cleaning fluid tank; 5. Rotary brush; 6. Quick connector; 7. Multi-directional adjustable nozzle; 8. Nozzle; 9. Multi-segment telescopic support arm; 10. Locking mechanism; 11. Casters; 12. Foot brake; 13. Flexible piping; 14. Brush layer; 15. Hard brush layer; 16. Drive motor; 17. Controller; 18. Scale markings Detailed Implementation
[0026] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this application. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.
[0027] like Figure 1 and Figure 2 As shown, a small-scale cleaning device for cattle, sheep, and pig farms according to this application includes a spray pipe 1, a movable support 2, a mobile chassis 3, a cleaning solution tank 4, and a rotating brush 5. The spray pipe 1 is used to deliver the cleaning solution to the target cleaning location and has multi-directional adjustable nozzles 7, allowing for directional adjustment according to different cleaning needs. The movable support 2 supports and adjusts the angle and height of the spray pipe 1, enabling flexible directional adjustment in confined spaces. The mobile chassis 3 carries the entire cleaning device and moves it on the ground, ensuring free movement within narrow spaces. The cleaning solution tank 4 stores the cleaning solution and is connected to the spray pipe 1 via a pipe, ensuring a sufficient supply of cleaning solution during operation. The rotating brush 5 is installed at the end of the spray pipe 1 to assist in cleaning hard-to-reach corners and enhance the cleaning effect.
[0028] The spray pipe 1 is one of the key components of this device. It uses a high-pressure pump to draw cleaning fluid from the cleaning fluid storage tank 4 and deliver it to the target area requiring cleaning. The spray pipe 1 is equipped with multi-directional adjustable nozzles 7, whose design allows users to easily adjust their direction and angle to adapt to different cleaning needs. The movable support 2 is designed to be telescopic and multi-angle adjustable. By adjusting its angle and height, it ensures that the spray pipe 1 can operate flexibly in various confined spaces to achieve comprehensive coverage. The mobile chassis 3 adopts a four-wheel structure, possessing good stability and mobility. The flexible steering of the wheels ensures that the device can move freely in confined and complex environments. The cleaning fluid storage tank 4 is a container with a pumping system, ensuring sufficient pressure and flow rate of the cleaning fluid during delivery. The tank is also equipped with filters and pressure gauges to guarantee the quality of the cleaning fluid and its safe use. The rotating brush 5 is an auxiliary cleaning tool installed at the end of the spray pipe 1. It effectively removes dirt from hard-to-reach areas with the help of the cleaning fluid, as the spray pipe 1 moves and its angle is adjusted.
[0029] Specifically, the spray pipe 1 is made of corrosion-resistant stainless steel, and its internal pipes are smoothed to reduce resistance during the transmission of cleaning fluid. The adjustable nozzle mechanism is achieved through threaded connection and spring locking, making operation simple, stable, and reliable. The movable support 2 consists of multiple sections of metal tubes, connected by hinges and locking nuts, allowing users to easily adjust its height and angle using knobs or wrenches. The four wheels on the mobile chassis 3 are equipped with universal joints, one of which is a drive wheel, while the others are free wheels, ensuring overall mobility. The cleaning fluid storage tank 4 contains a pumping device and a pressure sensor, and the control system regulates the pump's operating frequency to ensure stable cleaning fluid pressure. Furthermore, the outlet of the storage tank connects to the spray pipe 1 via a quick-connect interface for easy connection and disassembly. The rotating brush 5 uses high-density nylon bristles and is fixed to the end of the spray pipe 1 via an adjustable connecting rod during installation. The length and density of the bristles can be selected and replaced according to actual cleaning needs.
[0030] This cleaning device for small-scale cattle, sheep, and pig farms successfully solves the technical problem of difficult-to-reach cleaning areas caused by confined spaces through the effective combination of the aforementioned components. First, the combination of the spray pipe 1 and the multi-directional adjustable nozzle 7 ensures that the cleaning fluid can be accurately delivered to all areas requiring cleaning, even narrow crevices and corners. Second, the multi-angle adjustment function of the movable support 2 allows the spray pipe 1 to be flexibly adjusted to the optimal cleaning angle and height, adapting to different cleaning environments. Third, the flexible mobility of the mobile chassis 3 ensures that the entire device can move freely in narrow and complex spaces, covering all cleaning areas. Finally, the addition of the rotating brush 5 greatly enhances the cleaning effect, especially in areas that the spray pipe 1 cannot directly reach; through mechanical brushing, dirt is thoroughly removed, improving overall cleaning efficiency and quality. In summary, this device, through the comprehensive application of multiple technologies, significantly improves the cleaning challenges of small-scale cattle, sheep, and pig farms, enhancing the convenience and effectiveness of cleaning work.
[0031] In one embodiment, the spray pipe 1 of the cleaning device for small-scale cattle, sheep, and pig farms according to this application is a multi-section telescopic pipe. This multi-section telescopic pipe is adjustable in length, making the spray pipe 1 more flexible and easily accessible to cleaning areas at different heights. This design not only improves the adaptability of the spray pipe 1 but also significantly enhances its operational flexibility in confined spaces. Each section of the spray pipe 1 can extend and retract relatively independently, thereby achieving dynamic adjustment of the overall length. This flexibility allows the operator to quickly adjust the extension length of the spray pipe 1 according to specific cleaning needs, ensuring that the cleaning liquid is accurately sprayed onto the areas requiring cleaning.
[0032] In addition, the spray pipe 1 is equipped with a multi-directional adjustable nozzle 7, which can be finely adjusted according to the specific location and angle of the cleaning target, thereby covering more cleaning dead spots. This multi-directional adjustable nozzle 7 can be adjusted manually or electrically, and remotely operated via the controller 17, further improving cleaning efficiency. For ease of operation and maintenance, the spray pipe 1 is also equipped with a quick connector 6. The design of the quick connector 6 allows for quick connection and disconnection of the spray pipe 1, which not only facilitates component replacement but also simplifies pipeline connections during the cleaning process, reducing maintenance time and costs. In some application scenarios, such as in long-term uncleaned breeding areas, the spray pipe 1 may need frequent replacement; therefore, the design of the quick connector 6 becomes particularly important, ensuring that operators can complete disassembly and assembly in a short time, improving work efficiency.
[0033] Specifically, the multi-section telescopic tube can be composed of multiple tube sections of the same or different diameters. Each tube section is equipped with a guide device to ensure smooth sliding between the sections without jamming. For example, the inner and outer walls of each tube section are coated with a lubricating layer to reduce frictional resistance. Additionally, to prevent tube sections from falling off during telescopic movement, a limiting protrusion or spring fastener can be installed at one end of each tube section to ensure reliable fixation after telescopic movement. Meanwhile, the quick connector 6 uses a standard quick-connect interface with an internal sealing ring and locking mechanism to ensure sealing and stability at the connection. During installation, each tube section is sequentially inserted into the main tube, ensuring that the guide device of each tube section is aligned to guarantee smooth telescopic movement. Furthermore, a sensor can be installed at the end of the spray pipe 1 to monitor the spray pressure and flow rate, further optimizing the cleaning effect.
[0034] In one embodiment, the multi-directional adjustable nozzle 7 of the cleaning device for small-scale cattle, sheep, and pig farms of this application is not only a key component, but also significantly improves the flexibility and applicability of the cleaning device. The multi-directional adjustable nozzle 7 has multiple nozzles 8 with independently adjustable angles. The design of these nozzles 8 enables the nozzle to cope with various complex cleaning environments, especially in confined spaces and hard-to-reach corners.
[0035] Specifically, the main component of the multi-directional adjustable nozzle 7 is several independent nozzles 8. These nozzles 8 are installed in different positions on the nozzle and can be adjusted in angle manually or automatically. Each nozzle 8 has an individual adjustment mechanism, such as a rotary joint or angle adjustment screw, allowing the operator to finely adjust the spray angle of each nozzle 8 according to actual needs. This design ensures that regardless of the nozzle's orientation, each nozzle 8 can accurately align with the target area, thereby effectively reducing cleaning dead zones.
[0036] Furthermore, the connection method between the multi-directional adjustable nozzle 7 and the spray pipe 1 is also noteworthy. The nozzle is typically connected to the spray pipe 1 via a quick connector 6 or other connectors to ensure that the nozzle does not leak or detach when adjusting the angle. The quick connector 6 not only facilitates disassembly and assembly but also maintains the seal and stability between the spray pipe 1 and the nozzle, ensuring smooth delivery of the cleaning fluid.
[0037] To further enhance the functionality of the multi-directional adjustable nozzle 7, additional technical details can be added. For example, a flow regulation device can be installed inside each nozzle 8, allowing different nozzles 8 to adjust the spray intensity according to actual needs. This function enables operators to handle different types and levels of dirt more effectively. Specifically, the flow regulation device can be implemented through a knob or other form of manual adjustment mechanism, or it can employ an electronic control system that uses sensor feedback to automatically adjust the spray intensity, thereby better adapting to various complex cleaning tasks.
[0038] In one embodiment, the movable support 2 of a small-scale cleaning device for cattle, sheep, and pig farms according to this application includes multiple telescopic arms 9 and a locking mechanism 10. The design of the multiple telescopic arms 9 allows for rapid adjustment of the height and angle of the spray pipe 1, making it suitable for various complex farming environments, especially providing greater flexibility and convenience in confined spaces. The movable support 2 is connected to the mobile chassis 3 via hinges, ensuring stability during multi-angle adjustment. The multiple telescopic arms 9 consist of multiple nested tubular components, each with an internal limiting structure, allowing each arm to extend and retract incrementally, achieving precise adjustment of height and angle. The locking mechanism 10 is installed at the connection points of each arm segment, securely locking the extension and retraction of the arms and preventing loosening or displacement due to vibration during use.
[0039] In one embodiment, the locking mechanism 10 can be a knob-type or snap-on design, which is simple to operate and stable and reliable. The knob-type locking mechanism 10 increases the friction between the inner and outer arms by rotating the locking knob, thereby achieving the locking function; the snap-on locking mechanism 10 locks the inner and outer arms in the desired position by pressing the snap-on button. Both locking methods have high stability and reliability, ensuring that the spray pipe 1 remains in the required adjustment position during operation and is not affected by external vibrations or other factors. For example, the knob-type locking mechanism 10 has threaded holes on the outer side of each arm segment, and corresponding protrusions or grooves on the inner arm. After tightening the knob, the protrusions or grooves are firmly fixed in the threaded holes, preventing the arms from loosening. The snap-on locking mechanism 10 uses a spring and locking pin design, allowing the locking pin to quickly engage with a predetermined slot when the snap-on is pressed, ensuring a secure lock on the arms.
[0040] In one embodiment, this design not only enhances the height and angle adjustment range of the spray pipe 1 but also significantly improves the ease of operation and applicability of the entire cleaning device. Users can quickly adjust the position of the spray pipe 1 according to the actual terrain and cleaning needs of the breeding site, allowing it to cover more cleaning dead corners. Simultaneously, the hinged connection between the movable support 2 and the mobile chassis 3 achieves an optimal balance between flexibility and stability of the spray pipe 1 in complex terrain. The locking mechanism 10 is designed with user convenience in mind, allowing for quick adjustments via simple knob or buckle operation, greatly reducing operational difficulty and improving the user experience. For example, when cleaning a high corner of the breeding farm, the user can easily pull out the telescopic arm and lock it using a knob or buckle, ensuring that the spray pipe 1 is securely pointed at the target location.
[0041] In one embodiment, a cleaning device for small-scale cattle, sheep, and pig farms according to this application includes a mobile chassis 3 with multiple casters 11 and a foot brake 12. The design of the mobile chassis 3 not only allows the entire device to move easily in narrow and complex farm areas but also ensures flexibility through the casters 11. The foot brake 12 further enhances the stability of the device during operation, preventing incomplete cleaning due to limited mobility. The mobile chassis 3 is the foundation of the entire cleaning device, and its structural design fully considers the characteristics of the farm area, ensuring efficient operation in complex terrain.
[0042] Specifically, multiple casters 11 are evenly distributed at the four corners or edges of the bottom of the mobile chassis 3, ensuring stability under various ground conditions. Each caster 11 has flexible steering capabilities, allowing the mobile chassis 3 to turn freely in confined spaces. Foot brakes 12 are typically located on one side of each caster 11, securing the wheel's position through a simple and convenient operation to prevent accidental slippage during operation. This design is particularly important when cleaning small and complex aquaculture areas, as it ensures the device remains stationary in areas requiring meticulous cleaning.
[0043] For example, the mobile chassis 3 is made of high-strength metal material, capable of bearing the weight of components such as the spray pipe 1, movable support 2, and cleaning fluid storage tank 4, ensuring the stability and durability of the overall structure. The casters 11 are made of wear-resistant polyurethane material, allowing for prolonged use on rough surfaces without damage, extending the device's lifespan. Simultaneously, each caster 11 is equipped with a spring-loaded foot brake 12, which can be manually tightened or loosened to lock and unlock the wheel, ensuring the device maintains the required stability at different operational stages. In this way, the cleaning device of this application can flexibly handle various cleaning tasks and adapt to the actual needs of various aquaculture sites.
[0044] In one embodiment, the cleaning fluid storage tank 4 of the small-scale cattle, sheep, and pig farm cleaning device of this application is located at the front end of the mobile chassis 3 and connected to the spray pipe 1 via a flexible pipe 13. The location of the cleaning fluid storage tank 4 is chosen to facilitate observation of the liquid level and to maintain balance when the entire device is moved. The front end of the mobile chassis 3 is typically spacious, providing stability and sufficient installation space for the storage tank. The cleaning fluid storage tank 4 is fixed to the mobile chassis 3 by bolts or clips to ensure that it will not slip or tilt during movement.
[0045] The design of the flexible conduit 13 is crucial, with its length being twice the maximum working radius of the spray pipe 1. This design not only ensures a continuous supply of cleaning fluid under any operating condition but also enhances the flexibility of the spray pipe 1. Made of corrosion-resistant material, the flexible conduit 13 maintains a good service life even under frequent bending. This connection method ensures uninterrupted liquid transfer between the spray pipe 1 and the storage tank, even when the spray pipe 1 is frequently adjusted in confined spaces. For example, when the spray pipe 1 needs to be adjusted to a higher or lower position, the flexible conduit 13 can easily extend or retract to adapt to different operational needs. Specifically, the flexible conduit 13 can employ a multi-layered braided structure to enhance its wear resistance and pressure resistance, further ensuring stable delivery of the cleaning fluid.
[0046] In one embodiment, such as Figure 3 As shown, the rotating brush 5 of the cleaning device for small-scale cattle, sheep, and pig farms according to this application is composed of a bristle layer 14 and a hard brush layer 15. This combination of brushes allows the cleaning device to effectively remove complex, hard-to-reach areas within the farm. Specifically, the bristle layer 14 is made of nylon, possessing good flexibility and wear resistance, and can adapt to surfaces of different shapes and roughness. The hard brush layer 15 is made of hard plastic or metal, providing greater hardness to facilitate the removal of stubborn dirt adhering to corners and crevices. The thickness ratio of the bristle layer 14 to the hard brush layer 15 is 2:1. This ratio ensures both the softness and conformity of the bristle layer 14 in confined spaces and maintains the strength and scraping ability of the hard brush layer 15.
[0047] A rotating brush 5 is installed at the end of the spray pipe 1 and is adjusted in multiple directions along with the spray pipe 1. The design of the multi-directional adjustable nozzle 7 allows the spray pipe 1 to flexibly cover different cleaning targets, while the rotational movement of the rotating brush 5 further enhances the cleaning effect. In actual operation, the spray pipe 1 delivers cleaning fluid to the position of the rotating brush 5. The cleaning fluid is sprayed out under high pressure, combining with the physical friction of the rotating brush 5 to effectively remove dirt. This composite cleaning method is particularly effective in complex and confined spaces, ensuring that every corner is thoroughly cleaned. For example, when cleaning the corners of a pigsty, the operator can adjust the angle and height of the movable bracket 2 to precisely point the spray pipe 1 at the location to be cleaned. At this time, the rotating brush 5 rotates at high speed under the action of the cleaning fluid, and through the combined action of the bristle layer 14 and the hard brush layer 15, it thoroughly removes the accumulated dirt.
[0048] In one embodiment, the rotating brush 5 of the cleaning device for small-scale cattle, sheep, and pig farms of this application is driven to rotate by a drive motor 16. The drive motor 16 is fixed to the bottom of the spray pipe 1 and connected to a controller 17. The controller 17 can automatically adjust the rotation speed of the rotating brush 5 through remote control or program setting, thereby adapting to different cleaning needs, especially cleaning hard-to-reach corners in confined spaces. The rotating brush 5 is installed at the end of the spray pipe 1, with its axis perpendicular to the longitudinal axis of the spray pipe 1, ensuring effective cleaning of corners during rotation. The rotating brush 5 consists of a brush head and a brush handle. The brush head is made of a soft and wear-resistant material, providing good cleaning results when contacting irregular surfaces.
[0049] The drive motor 16 is a low-power, high-performance motor to ensure stability and reliability during long-term operation. It is securely bolted to the bottom of the spray pipe 1 to prevent loosening under vibration or impact. The connection cable between the controller 17 and the drive motor 16 passes inside the spray pipe 1, keeping the entire device clean and preventing damage from exposed cables. The controller 17 has a built-in microprocessor that can accept remote signals or execute preset cleaning programs, adjusting the output power and speed of the drive motor 16 according to actual conditions.
[0050] For example, when cleaning small and hard-to-reach corners, the operator can set the rotation speed of the rotating brush 5 to high-speed mode via the remote control system. In this case, the controller 17 sends a high-speed command to the drive motor 16, which drives the rotating brush 5 to rotate at a higher speed, effectively removing accumulated dirt. In other situations, such as cleaning relatively flat and smooth floors, a low-speed mode can be selected to reduce energy consumption and extend battery life.
[0051] In one embodiment, the outer surface of the spray pipe 1 of a small-scale cleaning device for cattle, sheep, and pig farms according to this application is provided with scale markings 18 to indicate the spraying distance and angle. These scale markings 18 can be lines or numerals to provide a visual reference, helping the operator to accurately adjust the direction and height of the spray pipe 1. The scale markings 18 are typically evenly distributed on the outer surface of the spray pipe 1 and can be appropriately spaced according to actual needs to accommodate fine adjustments in different scenarios. Through these scale markings 18, the operator can more intuitively understand the current status of the spray pipe 1, thereby ensuring that each cleaning point is accurately reached in confined spaces.
[0052] Furthermore, these scale markings 18 can also cooperate with the angle adjustment mechanism on the movable support 2. Specifically, the movable support 2 is hinged to the movable chassis 3, allowing the movable support 2 to be freely adjusted within multiple angle ranges. The spray pipe 1 is fixed to the movable support 2, and its position changes as the angle of the movable support 2 changes. The scale markings 18 not only help the operator adjust the height of the spray pipe 1, but also assist in adjusting its horizontal or vertical angle to ensure that the cleaning device can cover all cleaning areas. In this way, cleaning needs at both high and low points can be effectively met.
[0053] For example, the scale markings 18 on the spray tube 1 can extend from one end to the other, with a larger scale marking every 5 centimeters and a smaller scale marking every 1 centimeter. This allows the operator to easily read the specific position and angle of the spray tube 1, enabling precise adjustment. The scale markings 18 can also indicate different spray modes, such as strong spray and gentle spray, helping the operator select the appropriate spray intensity according to different cleaning objects. Through these detailed designs, the scale markings 18 not only provide a convenient operating experience but also enhance the practicality of the entire cleaning device.
[0054] In one embodiment, the width of the movable support 2 of the cleaning device for small-scale cattle, sheep, and pig farms is smaller than the width of the mobile chassis 3. Specifically, this design allows the entire cleaning device to operate more flexibly in confined spaces and effectively reduces cleaning dead zones caused by an excessively large device. The smaller width of the movable support 2 not only facilitates its passage through narrow doorways or aisles but also provides better maneuverability at corners. Furthermore, this design reduces interference with the limited space within the farm, improving the applicability and flexibility of the device in practical use.
[0055] The width ratio of the movable support 2 to the mobile chassis 3 can be adjusted according to the specific usage environment. However, under normal circumstances, the width of the movable support 2 is about 60% to 80% of the width of the mobile chassis 3. This ensures that the movable support 2 has sufficient support strength without making it too bulky. By adjusting the width of the movable support 2, it can not only move more flexibly in narrow areas, but also better adapt to different types and sizes of breeding sites.
[0056] For example, the movable support 2 can be designed as a telescopic frame structure, with its width adjustable via a sliding rod and locking device. The movable chassis 3 maintains a fixed width, ensuring the stability and load-bearing capacity of the entire device when moving on the ground. The connection between the movable support 2 and the movable chassis 3 is achieved through a high-strength hinge, which provides multi-angle adjustment, allowing the movable support 2 to be adjusted to different angles and heights as needed. In this way, whether on flat or irregular ground, the movable support 2 can be flexibly adjusted to ensure that the spray pipe 1 and the rotating brush 5 can cover every cleaning point.
[0057] In actual operation, when using this device, the mobile chassis 3 is first placed in the small cattle, sheep, and pig farm area that needs cleaning. The mobile chassis 3 ensures that the entire cleaning device can move freely in narrow and irregular spaces, and the user can easily control the position of the mobile chassis 3 by pushing or remote control. Next, according to the specific conditions of the cleaning area, the angle and height of the movable support 2 are adjusted so that the spray pipe 1 can be accurately aimed at the target area that needs cleaning. The movable support 2 and the mobile chassis 3 are connected by a hinge, which realizes multi-angle adjustment, ensuring that the spray pipe 1 can flexibly adjust its direction in confined spaces and fully cover all corners.
[0058] Subsequently, the pumping system of the cleaning fluid storage tank 4 is activated, and the cleaning fluid is delivered through pipelines to the spray pipe 1 and sprayed out from the multi-directional adjustable nozzle 7. The nozzle design supports multi-directional adjustment, allowing users to adjust the direction of the nozzle according to actual needs to adapt to the cleaning requirements of different areas. The spray pipe 1 delivers high-pressure cleaning fluid to the target cleaning location, rinsing walls, floors, and equipment surfaces. The rotating brush 5 installed at the end of the spray pipe 1 operates synchronously with the movement and adjustment of the spray pipe 1, effectively removing dirt from hard-to-reach corners. The movement of the rotating brush 5, combined with the cleaning fluid, increases the efficiency and thoroughness of cleaning, especially effective when dealing with stubborn stains and crevices. Overall, through the coordinated work of the movable chassis 3, movable support 2, spray pipe 1, cleaning fluid storage tank 4, and rotating brush 5, this device achieves comprehensive and efficient cleaning of cattle, sheep, and pig farms.
[0059] The specific embodiments described above further illustrate the purpose, technical solutions, and beneficial effects of the embodiments of this disclosure. It should be understood that the above descriptions are merely specific embodiments of the embodiments of this disclosure and are not intended to limit the scope of protection of the embodiments of this disclosure. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of this disclosure should be included within the scope of protection of the embodiments of this disclosure.
Claims
1. A cleaning device for small-scale cattle, sheep, and pig farms, characterized in that, include: The spray pipe (1) is used to deliver the cleaning liquid to the target cleaning location and has a multi-directional adjustable nozzle (7); Movable bracket (2) is used to support and adjust the angle and height of the spray pipe (1); Mobile chassis (3) is used to support the entire cleaning unit and move it on the ground; A cleaning fluid storage tank (4) is used to store cleaning fluid and is connected to a spray pipe (1) via a pipeline; A rotating brush (5) is installed at the end of the spray pipe (1) to assist in cleaning the spray pipe; The rotating brush (5) is composed of a bristle layer (14) and a hard brush layer (15), with a thickness ratio of 2:
1. The movable support (2) includes multiple telescopic arms (9) and a locking mechanism (10), which allows the height and angle of the spray pipe (1) to be adjusted.
2. The cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The spray pipe (1) is a multi-section telescopic pipe and is equipped with a quick connector (6) for easy replacement and cleaning.
3. The cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The multi-directional adjustable nozzle (7) has multiple nozzles (8) whose angles can be adjusted independently.
4. The cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The locking mechanism (10) is a knob-type or snap-on design.
5. A cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The mobile chassis (3) is equipped with multiple casters (11) and foot brakes (12).
6. A cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The cleaning fluid storage tank (4) is located at the front end of the mobile chassis (3) and is connected to the spray pipe (1) through a flexible pipeline (13).
7. A cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The rotating brush (5) is driven to rotate by a drive motor (16), which is fixed to the bottom of the spray pipe (1) and connected to the controller (17).
8. A cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The outer surface of the spray pipe (1) is provided with scale markings (18) to indicate the spray distance and angle.
9. A cleaning device for small-scale cattle, sheep, and pig farms according to claim 1, characterized in that: The width of the movable support (2) is smaller than the width of the movable chassis (3).