Automatic excrement cleaning transport box for gosling transportation
Patent Information
- Application Number
- CN202611150886.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-31
- Publication Date
- 2026-08-28
AI Technical Summary
[0003]现有技术中在对粪便进行清理时,大多为将粪便堆积到指定位置,在运输到地点后还需要对粪便进行清理,清理后再进行运输箱的清理,才能够进行下一次运输,需要人工清理的时间长,影响运输效率
[0064] During the rinsing process, the collection component is switched to the wastewater collection mode, so that the feces and wastewater are collected separately. This eliminates the need for manual cleaning of the feces after the goslings are delivered, and they can be directly rinsed under high pressure. After rinsing, the collection component is replaced to complete the cleaning process, which helps to improve transportation efficiency.
Smart Images

Figure CN122642341A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of transport boxes, and more particularly to an automated manure-cleaning transport box for transporting goslings. Background Technology
[0002] The automated manure-cleaning transport box for goslings is a device specifically designed for gosling transportation. It features automatic manure cleaning, maintaining a clean and hygienic environment inside the box in real time, preventing manure from harming the goslings' health, and improving their survival rate. During transportation, through a reasonable structural design and intelligent control system, it ensures a comfortable and stable transportation environment for the goslings, while also facilitating management by staff, greatly improving the efficiency and safety of gosling transportation.
[0003] In existing technologies, the process of cleaning feces mostly involves piling the feces in a designated location, and then cleaning the feces after it is transported to the destination. After cleaning, the transport container also needs to be cleaned before the next transport can proceed. This requires a lot of manual cleaning time and affects the transport efficiency. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an automated manure cleaning and transport box for gosling transportation.
[0005] This invention provides an automated manure-cleaning transport box for gosling transportation, comprising a box body and further comprising:
[0006] Multiple gosling spaces are vertically arranged inside the box, and each gosling space is connected to a manure space, the bottom of which is inclined.
[0007] The falling space is located on one side of the inside of the box, and all the fecal spaces are connected to the falling space at the end near the downwardly inclined side.
[0008] The collection space is located at the bottom of the box.
[0009] A push-cleaning component, installed inside the box, is used to periodically push feces along the bottom slope of the feces space into the falling space;
[0010] A cleaning assembly, installed inside the housing, is used to drive the cleaning assembly to perform high-pressure cleaning of the bottom of the feces space and the gosling space;
[0011] A collection component, installed inside the collection space, is used for the separate collection of feces and wastewater.
[0012] The container is mounted on a transport vehicle for transport. Goslings are transported inside the gosling compartment, and their droppings fall into this compartment during transport. The bottom of the droppings compartment is sloped, causing the droppings to slide downwards. When a certain amount of droppings accumulates or a set cleaning time is reached, a cleaning mechanism is activated. This mechanism pushes the droppings down the slope and into a collection chamber within the collection area. The collection component collects feces. Upon arrival at the transport point, after the goslings have been unloaded, the cleaning component performs high-pressure rinsing of both the gosling and feces compartments, thoroughly cleaning the inside of the container and preventing feces residue. During rinsing, the collection component switches to wastewater collection mode, collecting feces and wastewater separately. This eliminates the need for manual cleaning of feces after the goslings are unloaded; high-pressure rinsing can be performed directly. After rinsing, the collection component is replaced to complete the cleaning process, thus improving transportation efficiency.
[0013] Preferably, it further includes:
[0014] A ventilation space extends through the interior of the box, and the gosling space is enclosed by a grid fence on the side facing the ventilation space and the opposite side.
[0015] The top of the fecal space is arranged in a grid pattern to connect with the ventilation space;
[0016] The ventilation space allows airflow within the gosling enclosure, while ensuring that the airflow does not flow in the direction of the vehicle, thus preventing strong winds during vehicle movement from affecting the goslings' survival rate.
[0017] Preferably, the pushing and cleaning component includes:
[0018] Multiple scrapers are slidably installed inside each of the fecal spaces, with their bottoms attached to the bottom of the fecal space;
[0019] Multiple sets of first moving platforms, two first moving platforms as a group, are slidably installed inside the installation spaces opened at both ends of the box body, and the two first moving platforms together drive the scraper to move;
[0020] Multiple lead screws are rotatably installed inside the two installation spaces, and are threadedly connected to each of the first movable tables.
[0021] Multiple motors are fixed to the outer wall of the housing, each driving a lead screw to rotate;
[0022] After the motor starts, it drives the lead screw to rotate through the output shaft. After the lead screw rotates, it drives the first moving platform connected to it to move. The first moving platform drives the scraper to move. The side wall of the gosling space is provided with clearance space for the first moving platform to drive the scraper to move, so that the scraper can move inside the manure space to clean up the accumulated manure.
[0023] Preferably, the cleaning assembly includes:
[0024] Multiple first movable frames are slidably installed inside each of the gosling spaces;
[0025] Multiple second movable frames are slidably installed inside each of the aforementioned fecal spaces;
[0026] Multiple telescopic platforms, each telescopic platform consisting of two sets of second and third movable platforms arranged vertically, connected by an elastic telescopic rod; the second movable platform drives the second movable frame to move, and the third movable platform drives the first movable frame to move.
[0027] Multiple circular holes are respectively opened through the interior of each of the third movable platforms;
[0028] Multiple switching components are installed between the third mobile station and the first mobile station for switching and adjusting the connection between the two.
[0029] High-pressure spraying components are used in conjunction with the first and second movable frames to perform high-pressure rinsing.
[0030] When high-pressure washing is not required, the switching component switches to the state where the third moving platform is detached from the first moving platform, allowing the first moving platform to move independently. When high-pressure washing is required, the switching component switches to the state where the third moving platform is connected to the first moving platform, so that the movement of the first moving platform drives the movement of the third moving platform. The third moving platform moves along the trajectory of the bottom surface of the manure space. The third moving platform drives the second moving platform to move via the elastic telescopic rod. The second moving platform moves along the trajectory of the bottom surface of the gosling space. During the movement of the second and third moving platforms, the elastic telescopic rod elastically stretches to adapt to the tilt changes of the bottom surface of the manure space. The movement of the second and third moving platforms drives the movement of the first and second moving frames, thereby driving the high-pressure spraying components to move, performing high-pressure washing on the bottom surfaces of the gosling space and the manure space, thereby cleaning the attached manure through high pressure and improving the cleaning efficiency of the inside of the box.
[0031] Preferably, the switching component includes:
[0032] An electric telescopic rod is installed inside the first moving platform;
[0033] A limiting block is fixed to the end of the telescopic rod of the electric telescopic rod;
[0034] The first insertion slot is located inside the first mobile station;
[0035] The second insertion slot is formed inside the third moving stage, and the two ends of the limiting block are respectively inserted and matched with the first insertion slot and the second insertion slot;
[0036] After the electric telescopic rod is started, it drives the limit block to move. After the limit block moves upward, its two ends are inserted into the first insertion slot and the second insertion slot respectively, connecting the first moving platform and the third moving platform so that they move synchronously, thereby realizing the switching between their independence and connection.
[0037] Preferably, the high-pressure spraying component includes:
[0038] Multiple internal slots are respectively opened inside the first movable frame and the second movable frame;
[0039] Multiple first high-pressure nozzles are respectively installed in a linear array on the side walls of the first movable frame and the second movable frame, and are connected to the inner groove;
[0040] Multiple first connecting pipes are provided with three ends, the two bottom ends are connected to the two inner grooves, and the other end extends upward through the second moving platform;
[0041] The second connecting pipe is located inside the housing, with its bottom end penetrating through the outer wall of the housing;
[0042] Multiple connecting hoses, one end of which is inserted into the first connecting tube and the other end of which is inserted into the second connecting tube;
[0043] The bottom of the second connecting pipe is connected to an external water pipe, which in turn connects to a high-pressure water pump to pump the cleaning water. The pumped water enters the second connecting pipe, then flows along the second connecting pipe into the connecting hose, and then through the first connecting pipe into the inner tank. It is then sprayed out by the first high-pressure nozzle. The first high-pressure nozzle moves with the movement of the first and second moving frames, thereby performing high-pressure cleaning on the bottom of the gosling space and the manure space. This helps to improve the cleaning efficiency of the bottom of the gosling space and the manure space. The connecting hose can be adapted to the movement of the first and second moving frames. The clean wastewater after rinsing flows down the bottom slope of the manure space into the drop space and is collected by the collection component.
[0044] Preferably, the collection component includes:
[0045] A feces collection frame is fixed inside the collection space;
[0046] A cleaning water collection frame is fixed inside the collection space;
[0047] A collection hopper is slidably installed inside the collection space, with one end fixedly connected to a plug-in box, which is slidably plugged into the cleaning water collection frame;
[0048] An electric push rod is fixed to the top of the inner wall of the collection space and drives the collection bucket to move through its telescopic end;
[0049] Two flip doors are installed on both sides of the collection space, respectively, for taking out and placing the feces collection box and the washing water collection box;
[0050] After the electric push rod is started, it drives the collection bucket to move. After the collection bucket moves to the bottom of the falling space, the cleaning wastewater flowing down the falling space enters the collection bucket, and then enters the interior of the cleaning water collection frame through the plug box. The plug box is designed to guide the cleaning wastewater and adapt to the movement of the collection bucket. After the collection bucket is reset, the feces collection frame is exposed, so that the falling feces can directly enter the interior of the feces collection frame for collection. Both the feces collection frame and the cleaning water collection frame can be removed through the flip door for cleaning and replacement.
[0051] Preferably, it further includes:
[0052] Multiple arc-shaped baffles are respectively fixed to the top of the port connecting the fecal space to the falling space;
[0053] The curved baffle can block the dropping feces or washing wastewater flowing down the drop space, preventing them from entering the feces space and then the gosling space, thus improving the cleanliness of gosling transportation.
[0054] Preferably, it further includes:
[0055] A horizontal tube is fixed to the top of the falling space;
[0056] Multiple second high-pressure nozzles are installed in a linear array at the bottom of the horizontal pipe;
[0057] A fan is fixed to the top of the falling space and connected to the outside space, and is connected to the horizontal pipe through its output end;
[0058] After the fan starts, it drives the airflow and delivers the airflow to the horizontal pipe. The horizontal pipe is connected to the second connecting pipe, which in turn drives the airflow into the interior of the inner tank. The airflow is sprayed out along the first and second high-pressure nozzles to dry the interior of the box. During the cleaning process, the output end of the fan is equipped with a control valve. After the control valve is closed, the water flows into the horizontal pipe and can be sprayed out along the second high-pressure nozzle of the horizontal pipe to perform high-pressure rinsing on the interior of the falling space.
[0059] Preferably, it further includes:
[0060] Multiple electromagnets are respectively fixed between two of the first movable platforms in the same group;
[0061] A magnet is vertically slidably mounted between two of the first moving platforms in the same group, and the scraper is fixed to the bottom of the magnet;
[0062] After the electromagnet is activated, the direction of the current can be adjusted to change the magnetic poles of the electromagnet. This allows the magnet to move vertically by repulsion or attraction. When the magnet moves downward, it drives the scraper to move down and fit against the bottom of the fecal space, thus pushing and cleaning the feces. When the scraper moves up, it creates space for the water to flow out when the first high-pressure nozzle is used for rinsing, facilitating the cleaning process.
[0063] Compared with the prior art, the present invention has the following beneficial effects:
[0064] During the rinsing process, the collection component is switched to the wastewater collection mode, so that the feces and wastewater are collected separately. This eliminates the need for manual cleaning of the feces after the goslings are delivered, and they can be directly rinsed under high pressure. After rinsing, the collection component is replaced to complete the cleaning process, which helps to improve transportation efficiency. Attached Figure Description
[0065] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0066] Figure 2 This is a schematic diagram of the overall cross-section of the present invention. Figure 1 .
[0067] Figure 3 For the present invention Figure 2 A magnified structural diagram of point A in the middle.
[0068] Figure 4 This is a schematic diagram of the overall cross-section of the present invention. Figure 2 .
[0069] Figure 5 For the present invention Figure 4 A magnified structural diagram at point B in the middle.
[0070] Figure 6 For the present invention Figure 4 A magnified structural diagram at point C.
[0071] Figure 7 For the present invention Figure 4 A magnified structural diagram at point D.
[0072] Figure 8 This is a schematic diagram of the structure of the present invention along the cross-section of the first moving stage.
[0073] Figure 9 This is a schematic diagram of the connection structure of the first connecting pipe of the present invention.
[0074] In the diagram: 1. Box body; 101. Gosling space; 102. Manure space; 103. Falling space; 104. Collection space; 2. Scraper; 201. First moving platform; 202. Lead screw; 203. Motor; 301. First moving frame; 302. Second moving frame; 303. Elastic telescopic rod; 304. Second moving platform; 305. Third moving platform; 306. Circular hole; 4. Limiting block; 401. First insertion slot; 402. Second insertion slot; 40 3. Electric telescopic rod; 5. First high-pressure nozzle; 501. Inner tank; 502. First connecting pipe; 503. Connecting hose; 504. Second connecting pipe; 601. Feces collection box; 602. Washing water collection box; 603. Connecting box; 604. Collection hopper; 605. Electric push rod; 606. Flip door; 7. Arc-shaped baffle; 8. Ventilation space; 9. Horizontal pipe; 901. Second high-pressure nozzle; 902. Fan; 10. Electromagnet; 1001. Magnet. Detailed Implementation
[0075] The following description is intended to disclose the invention and enable those skilled in the art to implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art.
[0076] like Figures 1 to 9 The automated manure removal and transport box for gosling transportation shown includes a box body 1, and also includes:
[0077] Multiple gosling spaces 101 are vertically arranged inside the box 1. Each gosling space 101 has a manure space 102 connected to it. The bottom of the manure space 102 is inclined.
[0078] The falling space 103 is located on one side inside the box 1, and all the fecal spaces 102 are connected to the falling space 103 at the end near the downward tilting side.
[0079] Collection space 104 is located at the bottom of box 1;
[0080] A push cleaning component is installed inside the box 1 and is used to periodically push the feces along the bottom slope of the feces space 102 into the falling space 103;
[0081] The cleaning component is installed inside the housing 1 and is used to drive the cleaning component to perform high-pressure cleaning on the bottom of the feces space 102 and the gosling space 101.
[0082] A collection component, installed inside the collection space 104, is used for the separate collection of feces and wastewater.
[0083] In existing technologies, the process of cleaning feces mostly involves piling the feces in a designated location, and then cleaning the feces after it is transported to the destination. After cleaning, the transport container needs to be cleaned before the next transport can be carried out. This requires a lot of manual cleaning time and affects the transport efficiency.
[0084] This embodiment of the invention can solve the above problems. The specific implementation is as follows: the box 1 is installed on a transport vehicle for transportation. Goslings are transported inside the gosling space 101. During transportation, the goslings' droppings fall into the droppings space 102. The bottom of the droppings space 102 is inclined, causing the droppings to tend to slide downwards. When the droppings in the droppings space 102 accumulate to a certain amount or when the set cleaning time is reached, the cleaning component is activated. This component pushes the droppings inside the droppings space 102, causing them to slide down the inclined surface and then fall along the falling space 103 until they reach the collection point. Inside the collection component of the collection space 104, the collection component collects feces during transportation. After the goslings are unloaded at the transportation point, the cleaning component can perform high-pressure rinsing on the inside of the gosling space 101 and the feces space 102, thereby thoroughly cleaning the inside of the box 1 and avoiding feces residue. During the rinsing process, the collection component switches to the wastewater collection mode to collect feces and wastewater separately. This eliminates the need for manual cleaning of feces after the goslings are unloaded, allowing for direct high-pressure rinsing. After rinsing, the collection component is replaced to complete the cleaning process, thus improving transportation efficiency.
[0085] As an optional embodiment, it also includes:
[0086] Ventilation space 8 runs through the interior of box 1. The gosling space 101 facing ventilation space 8 and the opposite side are both fenced off.
[0087] The top of the fecal space 102 is configured with a grid to connect to the ventilation space 8;
[0088] The ventilation space 8 allows airflow inside the gosling space 101, and the direction of airflow does not face the direction of the vehicle's movement, thus avoiding the strong winds during vehicle movement from affecting the survival rate of the goslings.
[0089] As an optional embodiment, the cleaning component includes:
[0090] Multiple scrapers 2 are slidably installed inside each fecal space 102, with their bottoms attached to the bottom of the fecal space 102;
[0091] Multiple sets of first moving platforms 201, two first moving platforms 201 as a group, are slidably installed in the installation spaces opened at both ends of the housing 1, and the two first moving platforms 201 together drive the scraper 2 to move.
[0092] Multiple lead screws 202 are rotatably installed inside two installation spaces and are threadedly connected to each of the first moving platforms 201.
[0093] Multiple motors 203 are fixed to the outer wall of the housing 1, and drive each lead screw 202 to rotate.
[0094] After the motor 203 starts, it drives the lead screw 202 to rotate through the output shaft. After the lead screw 202 rotates, it drives the first moving platform 201, which is threaded to it, to move. The first moving platform 201 drives the scraper 2 to move. The side wall of the gosling space 101 is provided with a clearance space for the first moving platform 201 to drive the scraper 2 to move, so that the scraper 2 can move inside the manure space 102 to clean up the accumulated manure.
[0095] As an optional embodiment, the cleaning assembly includes:
[0096] Multiple first movable frames 301 are slidably installed inside each gosling space 101;
[0097] Multiple second movable frames 302 are slidably installed inside each fecal space 102;
[0098] Multiple telescopic platforms are provided. Each telescopic platform consists of two sets of upper and lower movable platforms 304 and 305. The second movable platform 304 and the third movable platform 305 are connected by an elastic telescopic rod 303. The second movable platform 304 drives the second movable frame 302 to move, and the third movable platform 305 drives the first movable frame 301 to move.
[0099] Multiple circular holes 306 are respectively opened through the interior of each third moving stage 305;
[0100] Multiple switching components are installed between the third mobile station 305 and the first mobile station 201 for switching and adjusting the connection between the two.
[0101] High-pressure spraying component, used in conjunction with the first movable frame 301 and the second movable frame 302 for high-pressure rinsing;
[0102] When high-pressure flushing is not required, the switching component switches to a state where the third moving platform 305 is disengaged from the first moving platform 201, allowing the first moving platform 201 to move independently. When high-pressure flushing is required, the switching component switches to a state where the third moving platform 305 is connected to the first moving platform 201, so that the movement of the first moving platform 201 drives the movement of the third moving platform 305. The third moving platform 305 moves along the trajectory of the bottom surface of the fecal space 102. The third moving platform 305 drives the second moving platform 304 to move via the elastic telescopic rod 303. 04. Moving along the trajectory of the bottom surface of the gosling space 101, during the movement of the second moving platform 304 and the third moving platform 305, the elastic telescopic rod 303 elastically stretches to adapt to the tilt change of the bottom surface of the manure space 102. The movement of the second moving platform 304 and the third moving platform 305 drives the first moving frame 301 and the second moving frame 302 to move, thereby driving the high-pressure spraying component to move, and performing high-pressure washing on the bottom surface of the gosling space 101 and the manure space 102, thereby cleaning the attached manure through high pressure, thereby improving the cleaning efficiency of the inside of the box 1.
[0103] As an optional embodiment, the switching component includes:
[0104] The electric telescopic rod 403 is installed inside the first moving platform 201;
[0105] Limiting block 4 is fixed to the end of the telescopic rod of electric telescopic rod 403;
[0106] The first insertion slot 401 is located inside the first mobile station 201;
[0107] The second insertion slot 402 is opened inside the third moving stage 305, and the two ends of the limiting block 4 are respectively inserted and matched with the first insertion slot 401 and the second insertion slot 402.
[0108] After the electric telescopic rod 403 is started, it drives the limit block 4 to move. After the limit block 4 moves upward, its two ends are inserted into the first insertion slot 401 and the second insertion slot 402 respectively, connecting the first moving platform 201 and the third moving platform 305 so that they move synchronously, thereby realizing the switching between their independence and connection.
[0109] As an optional embodiment, the high-pressure spraying component includes:
[0110] Multiple inner slots 501 are respectively opened inside the first movable frame 301 and the second movable frame 302;
[0111] Multiple first high-pressure nozzles 5 are installed in a linear array on the side walls of the first movable frame 301 and the second movable frame 302, and are connected to the inner groove 501;
[0112] Multiple first connecting pipes 502 are provided with three ends, the two bottom ends are connected to two inner grooves 501, and the other end extends upward through the second moving stage 304.
[0113] The second connecting pipe 504 is located inside the housing 1, with its bottom end penetrating the outer wall of the housing 1.
[0114] Multiple connecting hoses 503, one end of which is inserted into the first connecting pipe 502 and the other end of which is inserted into the second connecting pipe 504;
[0115] The bottom of the second connecting pipe 504 is connected to an external water pipe, thereby connecting a high-pressure water pump to pump the cleaning water. The pumped water enters the second connecting pipe 504 and then enters the connecting hose 503 along the second connecting pipe 504. Subsequently, it enters the inner tank 501 through the first connecting pipe 502 and is then sprayed out by the first high-pressure nozzle 5. The first high-pressure nozzle 5 moves with the movement of the first moving frame 301 and the second moving frame 302, thereby performing high-pressure cleaning on the bottom of the gosling space 101 and the manure space 102, which helps to improve the cleaning efficiency of the bottom of the gosling space 101 and the manure space 102. The connecting hose 503 is designed to adapt to the movement of the first moving frame 301 and the second moving frame 302. The clean wastewater after rinsing flows down the bottom slope of the manure space 102 to the falling space 103 and then reaches the collection component for collection.
[0116] As an optional embodiment, the collection components include:
[0117] Fecal collection frame 601 is fixed inside the collection space 104;
[0118] The cleaning water collection box 602 is fixed inside the collection space 104;
[0119] The collection hopper 604 is slidably installed inside the collection space 104, and one end is fixedly connected to the plug box 603. The plug box 603 is slidably plugged into the cleaning water collection frame 602.
[0120] An electric push rod 605 is fixed to the top of the inner wall of the collection space 104 and drives the collection hopper 604 to move through its telescopic end;
[0121] Two flip doors 606 are installed on both sides of the collection space 104 respectively, for taking out and putting in the feces collection box 601 and the washing water collection box 602.
[0122] After the electric push rod 605 is started, it drives the collection bucket 604 to move. After the collection bucket 604 moves to the bottom of the falling space 103, the cleaning wastewater flowing down the falling space 103 enters the collection bucket 604, and then enters the cleaning water collection frame 602 through the plug box 603. The plug box 603 is set to guide the cleaning wastewater and can adapt to the movement of the collection bucket 604. After the collection bucket 604 is reset, the feces collection frame 601 is exposed, so that the falling feces can directly enter the feces collection frame 601 for collection. Both the feces collection frame 601 and the cleaning water collection frame 602 can be taken out through the flip door 606 for cleaning and replacement.
[0123] As an optional embodiment, it also includes:
[0124] Multiple arc-shaped baffles 7 are respectively fixed to the top of the port connecting the fecal space 102 to the falling space 103;
[0125] The curved baffle 7 can block the feces or washing wastewater falling along the falling space 103, preventing them from entering the feces space 102 and then entering the gosling space 101 and causing pollution, thereby improving the cleanliness of gosling transportation.
[0126] As an optional embodiment, it also includes:
[0127] Horizontal tube 9 is fixed to the top of the falling space 103;
[0128] Multiple second high-pressure nozzles 901 are installed in a linear array at the bottom of the horizontal pipe 9;
[0129] The fan 902 is fixed to the top of the falling space 103 and connected to the outside space, and is connected to the horizontal pipe 9 through the output end;
[0130] After the fan 902 is started, it drives the airflow to the horizontal pipe 9. The horizontal pipe 9 is connected to the second connecting pipe 504, which drives the airflow to the inside of the inner tank 501. The airflow is sprayed out along the first high-pressure nozzle 5 and the second high-pressure nozzle 901 to dry the inside of the box 1. During the cleaning process, the output end of the fan 902 is equipped with a control valve. After the control valve is closed, the water flows into the horizontal pipe 9 and can be sprayed out along the second high-pressure nozzle 901 of the horizontal pipe 9 to perform high-pressure rinsing on the inside of the falling space 103.
[0131] As an optional embodiment, it also includes:
[0132] Multiple electromagnets 10 are respectively fixed between two first moving stages 201 in the same group;
[0133] Magnet 1001 is vertically slidably installed between two first moving platforms 201 in the same group, and scraper 2 is fixed to the bottom of magnet 1001;
[0134] After the electromagnet 10 is started, the direction of the current can be adjusted to adjust the magnetic poles of the electromagnet 10, thereby adjusting the vertical movement of the magnet 1001 through magnetic repulsion or attraction. After the magnet 1001 moves downward, it drives the scraper 2 to move down and fit against the bottom surface of the fecal space 102, which can push and clean the feces. After the scraper 2 moves up, it can provide a space for the water flow from the first high-pressure nozzle 5 to be discharged, which facilitates the cleaning process.
[0135] Working principle of this invention: The box 1 is installed on a transport vehicle for transportation. Goslings are transported inside the gosling space 101. During transportation, gosling droppings fall into the droppings space 102. The bottom of the droppings space 102 is inclined, causing the droppings to tend to slide downwards. When the droppings in the droppings space 102 accumulate to a certain amount or when the set cleaning time is reached, the cleaning mechanism is activated. This mechanism pushes the droppings inside the droppings space 102, causing them to slide down the inclined surface and then fall along the falling space 103 until they reach the collection space 104. Inside the collection component, during transportation, the collection component collects feces. After the goslings are unloaded at the transportation point, the cleaning component performs high-pressure rinsing on the gosling space 101 and the feces space 102, thus thoroughly cleaning the inside of the box 1 and preventing feces residue. During the rinsing process, the collection component switches to the wastewater collection mode, collecting feces and wastewater separately. This eliminates the need for manual cleaning of feces after the goslings are unloaded; instead, high-pressure rinsing can be performed directly. After rinsing, the collection component is replaced to complete the cleaning process, thereby improving transportation efficiency.
[0136] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention.
Claims
1. An automated manure-cleaning transport box for gosling transportation, comprising a box body (1), characterized in that, Also includes: Multiple gosling spaces (101) are vertically arranged inside the box (1), and each gosling space (101) is provided with a manure space (102) connected to it. The bottom of the manure space (102) is inclined. The falling space (103) is located on one side inside the box (1), and all the fecal spaces (102) are connected to the falling space (103) at the end near the downward tilting side. A collection space (104) is provided at the bottom of the box (1); A push cleaning component is installed inside the box (1) to periodically push feces along the bottom slope of the feces space (102) into the falling space (103). A cleaning assembly is installed inside the housing (1) to drive the cleaning assembly to perform high-pressure cleaning on the bottom of the feces space (102) and the gosling space (101); A collection component, installed inside the collection space (104), is used for sorting and collecting feces and cleaning wastewater.
2. The automated manure-cleaning transport box for gosling transportation according to claim 1, characterized in that, Also includes: Ventilation space (8) extends through the interior of the box (1), and the gosling space (101) facing the ventilation space (8) and the opposite side are both set as grid fences; The top of the fecal space (102) is arranged in a grid pattern to connect with the ventilation space (8).
3. The automated manure cleaning and transport box for gosling transportation according to claim 2, characterized in that, The cleaning component includes: Multiple scrapers (2) are slidably installed inside each of the fecal spaces (102), and their bottoms are attached to the bottom of the fecal space (102); Multiple sets of first moving platforms (201), two first moving platforms (201) form a group, and are respectively slidably installed inside the installation space opened at both ends of the box (1). The two first moving platforms (201) together drive the scraper (2) to move. Multiple lead screws (202) are rotatably installed inside the two installation spaces, and are threadedly connected to each of the first movable stages (201); Multiple motors (203) are fixed on the outer wall of the housing (1) and drive each lead screw (202) to rotate.
4. The automated manure-cleaning transport box for gosling transportation according to claim 1, characterized in that, The cleaning assembly includes: Multiple first movable frames (301) are slidably installed inside each of the gosling spaces (101); Multiple second movable frames (302) are slidably installed inside each of the aforementioned fecal spaces (102); Multiple telescopic platforms are provided, each consisting of two sets of vertically arranged second movable platforms (304) and third movable platforms (305). The second movable platforms (304) and the third movable platforms (305) are connected by an elastic telescopic rod (303). The second movable platform (304) drives the second movable frame (302) to move, and the third movable platform (305) drives the first movable frame (301) to move. Multiple circular holes (306) are respectively opened through the interior of each of the third moving stages (305); Multiple switching components are installed between the third mobile station (305) and the first mobile station (201) for switching and adjusting the connection between the two. The high-pressure spraying component is used to cooperate with the first movable frame (301) and the second movable frame (302) for high-pressure rinsing.
5. An automated manure-cleaning transport box for gosling transportation according to claim 4, characterized in that, The switching component includes: An electric telescopic rod (403) is installed inside the first movable platform (201); The limiting block (4) is fixed to the end of the telescopic rod of the electric telescopic rod (403); The first insertion slot (401) is located inside the first mobile station (201); The second insertion slot (402) is located inside the third moving stage (305), and the two ends of the limiting block (4) are respectively inserted and matched with the first insertion slot (401) and the second insertion slot (402).
6. An automated manure-cleaning transport box for gosling transportation according to claim 4, characterized in that, The high-pressure spraying component includes: Multiple inner slots (501) are respectively opened inside the first movable frame (301) and the second movable frame (302); Multiple first high-pressure nozzles (5) are respectively installed in a linear array on the side walls of the first movable frame (301) and the second movable frame (302), and are connected to the inner groove (501). Multiple first connecting pipes (502) are provided with three ends, the two bottom ends are connected to the two inner grooves (501), and the other end extends upward through the second moving stage (304); The second connecting pipe (504) is disposed inside the box (1), and its bottom end penetrates the outer wall of the box (1); Multiple connecting hoses (503) are connected at one end to the first connecting pipe (502) and at the other end to the second connecting pipe (504).
7. An automated manure-cleaning transport box for gosling transportation according to claim 1, characterized in that, The collection component includes: A fecal collection frame (601) is fixed inside the collection space (104); A cleaning water collection frame (602) is fixed inside the collection space (104); A collection hopper (604) is slidably installed inside the collection space (104), and one end is fixedly connected to a plug box (603). The plug box (603) is slidably plugged into the cleaning water collection frame (602). An electric push rod (605) is fixed to the top of the inner wall of the collection space (104) and drives the collection bucket (604) to move through its telescopic end; Two flip doors (606) are installed on both sides of the collection space (104) respectively, for taking out and putting in the feces collection box (601) and the cleaning water collection box (602).
8. An automated manure-cleaning transport box for gosling transportation according to claim 1, characterized in that, Also includes: Multiple arc-shaped baffles (7) are fixed to the top of the port connecting the fecal space (102) to the falling space (103).
9. An automated manure-cleaning transport box for gosling transportation according to claim 8, characterized in that, Also includes: A horizontal tube (9) is fixed to the top of the falling space (103); Multiple second high-pressure nozzles (901) are installed in a linear array at the bottom of the horizontal pipe (9); The fan (902) is fixed to the top of the falling space (103) and connected to the outside space, and is connected to the horizontal pipe (9) through the output end.
10. An automated manure-cleaning transport box for gosling transportation according to claim 3, characterized in that, Also includes: Multiple electromagnets (10) are respectively fixed between two of the first moving platforms (201) in the same group; A magnet (1001) is vertically slidably mounted between two first moving platforms (201) in the same group, and a scraper (2) is fixed to the bottom of the magnet (1001).