Broiler chicken breeding transport vehicle
By using a hydraulic control system to tilt the platform of the broiler transport vehicle and a motor to move the pallet, the problems of high labor intensity and stress on broilers caused by manual stacking are solved, and a highly efficient and stable loading and unloading process and waste collection are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FUJIAN SHENGZE BIOLOGICAL TECH DEV CO LTD
- Filing Date
- 2025-12-23
- Publication Date
- 2026-05-05
AI Technical Summary
Currently, the loading and unloading of broiler chicken transport vehicles requires manual stacking of turnover boxes, which is labor-intensive, easily leads to skewed stacking and unstable stacking, reduces loading and unloading efficiency, and can easily trigger stress reactions in broilers.
The hydraulic rod is controlled by the hydraulic tank on the top of the waste guide platform, which drives the second box platform to swing and tilt the platform frame, so that the turnover box is locked into the left and right clamps. The loading is completed by the displacement of the bearing plate and the clamps through the drive motor, which reduces the intensity of manual labor and avoids stress.
It reduced the intensity of manual labor, improved loading and unloading efficiency, avoided stress reactions in broilers, and achieved efficient collection of waste and stability of the loading and unloading process.
Smart Images

Figure CN121361404B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of transport vehicle technology, specifically a broiler chicken farming transport vehicle. Background Technology
[0002] Broiler transport vehicles are specialized vehicles customized for transporting live broilers. The core design revolves around "ensuring comfort, protecting safety, improving survival, and increasing efficiency": optimizing the spatial layout to shorten loading and unloading time, and mitigating stress in the flock through detailed design, ensuring the health of chickens during long-distance transportation, and facilitating efficient connection between breeding and slaughtering.
[0003] However, the existing technology has the following shortcomings: Current broiler farming transport vehicles have obvious deficiencies in the loading process at the farming end: Although mechanical assistance can be used, manual labor is still required to stack the turnover boxes. As the stacking height increases, the manual laborer has to contend with greater gravity load, which not only increases the labor intensity sharply, but also easily leads to stacking tilt and unstable stacking due to fatigue, which in turn causes the turnover boxes to tip over. At the same time, it also reduces loading and unloading efficiency. Furthermore, as the stacking height of the turnover boxes increases, the broilers are also prone to stress reactions during the stacking process. Summary of the Invention
[0004] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and other accompanying drawings.
[0005] The purpose of this invention is to overcome the above-mentioned shortcomings and provide a broiler chicken farming transport vehicle. The hydraulic rod is controlled by the hydraulic box on the top of the waste guide platform to drive the second box carrier platform to swing and tilt the frame plate, so that the turnover box is locked into the left and right clamping plates. The turnover box on the carrier plate and the clamping plate is driven by the drive motor to complete the loading and resetting. This can reduce the intensity of manual labor, improve the efficiency of loading and unloading, and avoid the stress reaction of broilers caused by stacking.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a broiler chicken farming and transport vehicle, comprising a transport vehicle, a cargo box installed at the rear of the transport vehicle, a cargo body inside the cargo box, a rear frame installed at the end of the cargo box, an even number of cargo doors installed in the rear frame, several sets of arch rod fixing seats installed on both sides of the rear frame, an upper protective frame fixed above the rear frame, and a set of plate-mounted arch rods fixed on the several sets of arch rod fixing seats, with arch rods at both ends of the plate-mounted arch rods; an upper arc groove is opened on both walls of the cargo box, an even number of side fixing platforms are fixed on both sides of the cargo box, a first auxiliary sliding groove is provided above one of the side fixing platforms, a second auxiliary sliding groove is provided above the other side fixing platform, hydraulic rods are fixed on the even number of side fixing platforms, a first box carrier is installed inside the cargo box, a waste guide platform is provided below the first box carrier, a waste collection box is installed below the cargo box, and a second box carrier is provided above the first box carrier. The waste guide platform is installed at the bottom of the compartment to receive the excrement produced by the chickens during transportation on the first and second carrier platforms. The waste is then guided into the waste collection box for collection.
[0007] A further improvement to the present invention includes a platform frame inside the second container platform. A second fixed rotating shaft is installed at the end of the platform frame, and a swing cover is installed at the center of the second fixed rotating shaft. Limiting caps are installed at both ends of the second fixed rotating shaft. Several anti-shifting frames are provided on the platform frame. A swing shaft is installed below the top of the platform frame, and swing shaft caps are fixed at both ends of the swing shaft. The second fixed rotating shaft is mainly used for the fixed-axis swing of the platform frame. In conjunction with the swing shaft at the end of the platform frame, it assists the swing shaft, allowing it to swing downwards in the arc groove on the box for loading and unloading the broiler turnover box.
[0008] A further improvement to the present invention includes a frame body within the anti-shifting frame of the container, through which several drive shafts pass. A chain fixing ring is installed at the center of each drive shaft, and a cargo chain is mounted on each chain fixing ring. Connecting teeth are provided on both sides of each chain fixing ring. Several bearing plates are mounted on one surface of the cargo chain, with a left clamping plate mounted on one side of each bearing plate and a right clamping plate mounted on the other side. The drive shafts rotate primarily through the connecting teeth, thereby driving the cargo chain in the chain fixing rings to rotate, and consequently moving the bearing plates, left clamping plate, and right clamping plate together to complete the movement of the container.
[0009] In a further improvement to the present invention, the right clamping plate is disposed on the right side of the support plate, and the left clamping plate is disposed on the left side of the support plate. The support plate, the left clamping plate, and the right clamping plate are all fixed to the carrying chain belt. The connecting chain teeth are fixed to the transmission shaft, and the connecting chain teeth cooperate with the second fixed rotating shaft. Several transmission shafts are installed between the frames and are evenly arranged in a straight line. The protrusions at both ends of the platform frame are respectively disposed in the first auxiliary sliding groove and the second auxiliary sliding groove. The left and right clamping plates are mainly used for fitting and engaging the broiler turnover boxes placed on the support plate, thereby allowing the broiler turnover boxes to move to the top of the frame and completing the loading of the chicken cages on the platform frame.
[0010] In a further improvement to the invention, the two ends of the swing shaft are installed in the arc grooves on the upper part of the compartment. The flip-up cover is used to cover and ventilate the second fixed rotating shaft. The swing shaft cap and the limiting shaft cap are both set on the outer wall of the compartment. The arch rod is fixed to the surface of the upper protective frame. The waste guide platform is used to guide waste out of the first and second box platforms. The upper protective frame is mainly used to protect the broiler turnover boxes carried on the upper platform frame, and the slots on the surface allow air to enter, thus achieving ventilation for the broiler turnover boxes.
[0011] A further improvement to the invention is that the platform frame has an even number of interconnecting slots, each containing a transmission chain. An even number of under-plate anti-collision strips are fixed to the lower surface of the platform frame. Anti-detachment plates are provided at both ends of the swing shaft. An even number of drive motors are installed in the second fixed-rotation shaft, each equipped with drive teeth. The drive motors primarily drive the transmission chains via the drive teeth mounted on their shafts, thereby indirectly driving the connecting chain teeth and causing the transmission shaft to rotate.
[0012] In a further improvement to the invention, the drive gear engages with the connecting gear via the transmission chain; the under-plate anti-collision strip is used to prevent pressure on the broiler turnover box; the anti-detachment plate is disposed inside the box body; and the drive motor is powered and controlled by the transport vehicle. The under-plate anti-collision strip primarily prevents downward pressure on the broiler turnover boxes loaded on the first box platform, and also limits the movement of the loaded broiler turnover boxes, reducing the gap between them and preventing displacement due to excessive gaps.
[0013] A further improvement to the present invention includes a partition frame plate inside the first box-mounted platform. Several mounting rollers are installed on the partition grooves of the partition frame plate. Several through slots are formed on the partition frame plate. A first fixed rotating shaft is installed at the end of the partition frame plate. A ventilation plate is installed at the top of the partition frame plate. A lifting block is fixed on the ventilation plate. Several hinged connectors are installed on the lower surface of the lifting block. An equal number of lifting rods are connected below each hinged connector. Hydraulic tanks are installed on both sides of each lifting rod. The hydraulic tanks are mainly used for hydraulic control, independently inputting hydraulic oil into the lifting rods or hydraulic rods to perform corresponding actions and achieve deformation.
[0014] A further improvement to the invention is that the hydraulic tank cooperates with the lifting rod, and the hydraulic tank also cooperates with the hydraulic rod. The bottom of the lifting rod is fixed to the top surface of the waste guide platform. The through slot on the plate is directly opposite the waste guide platform. The hydraulic tank can be controlled both internally by the transport vehicle and externally by a handheld device. The through slot on the plate is mainly used to guide the waste generated during cleaning, allowing it to fall into the waste guide platform, completing the waste guiding and collection work, and finally falling from the guide trough into the waste collection box.
[0015] A further improvement to the present invention is that the waste guide platform is provided with an inclined guide compartment, and a waste guide groove is opened at the end of the inclined guide compartment. Several sets of compensating support columns are installed on the surface of the inclined guide compartment, and a frame plate is fixed to the surface of the several sets of compensating support columns. The frame plate is used to support the partition frame plate, and the waste guide groove is directly opposite the waste collection box. The compensating support columns are mainly used to compensate for the different inclination heights of the inclined guide compartment surface, so that the frame plate fixed above it is in a horizontal state, thus completing the support work for the partition frame plate.
[0016] Compared with the prior art, the present invention has the following beneficial effects;
[0017] 1. This invention controls the hydraulic rods of a hydraulic tank installed above the top of the waste guide platform. When loading broiler turnover boxes, the second box platform can be driven to swing, causing the platform frame to tilt and swing downward. At this time, the turnover boxes can be sequentially locked between the left and right clamping plates on both sides of the support plate. With the drive motor in the second fixed rotating shaft, the turnover boxes on the support plate and the left and right clamping plates are displaced to complete the loading and reset. This design can greatly reduce the intensity of manual labor, improve loading and unloading efficiency, and avoid stress reactions during the stacking of turnover boxes.
[0018] 2. In this invention, a partition rack is installed on the surface of the rack frame. After the second box platform is loaded, when loading the broiler turnover boxes onto the first box platform, the broiler turnover boxes can be directly assisted by the rollers on the rack to slide them to the top. The loading of the broiler turnover boxes is completed by pushing them in one by one. When unloading, it is only necessary to control the lifting rod to lift it up, so that the partition rack is tilted at a small angle, allowing the broiler turnover boxes to slide down into the receiving platform in the slaughtering area.
[0019] 3. This invention manually washes the excrement produced by the chickens on the first and second carrier platforms during transportation. The washing water flows directly down the through groove on the plate into the inclined guide chamber. With the help of the inclined guide chamber's own inclination, all the waste is guided into the waste collection box and discharged at a fixed point after collection. Compared with traditional washing, this invention can better prevent the waste from spreading to the vehicle washing area. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of a broiler chicken farming and transportation vehicle according to the present invention;
[0021] Figure 2 This is a rear view structural diagram of a broiler chicken farming and transportation vehicle according to the present invention;
[0022] Figure 3 This is a rear view schematic diagram of the carriage structure of a broiler chicken farming and transportation vehicle according to the present invention;
[0023] Figure 4 This is an enlarged schematic diagram of the end structure of the first box platform in a broiler chicken farming and transport vehicle according to the present invention.
[0024] Figure 5 This is a three-dimensional structural diagram of the top of the first platform in a broiler chicken farming transport vehicle according to the present invention.
[0025] Figure 6 This is a top view schematic diagram of the waste guide platform in a broiler chicken farming transport vehicle according to the present invention;
[0026] Figure 7 This is a top view schematic diagram of the second platform in a broiler chicken farming transport vehicle according to the present invention;
[0027] Figure 8 This is an enlarged schematic diagram of the top structure of the platform plate in a broiler chicken farming transport vehicle according to the present invention;
[0028] Figure 9 This is a bottom view of the end structure of the platform plate in a broiler chicken farming transport vehicle according to the present invention.
[0029] Figure 10 This is a schematic diagram of the internal cross-sectional structure of the second fixed rotating shaft in a broiler chicken farming and transport vehicle according to the present invention.
[0030] In the diagram: Transport vehicle-1, Carriage-2, Carriage body-21, Rear frame-22, Carriage door-23, Arch rod fixing seat-24, Upper guard frame-25, Arch rod-26, Arch rod assembly with plate-27, Upper arc groove-211, Side fixing platform-212, First auxiliary sliding groove-213, Second auxiliary sliding groove-214, Hydraulic rod-215, First box platform-216, Waste guide platform-217, Waste collection box-218, Second box platform-219, Dividing frame plate-2161, Frame roller-2162, Through groove on the plate-2163, First fixed rotating shaft-2164, Ventilation plate-2165, Lifting block-2166, Hinged connector-2167, Lifting rod-2168, Hydraulic box-2169, Waste guide groove-217 1. Inclined inner compartment - 2172. Compensating support column - 2173. Shelf frame - 2174. Platform frame - 2191. Second fixed rotating shaft - 2192. Swing cover - 2193. Limiting shaft cap - 2194. Cargo box anti-shift frame - 2195. Swing shaft - 2196. Swing shaft cap - 2197. Interconnecting groove - 21911. Transmission chain - 21912. Underboard anti-collision strip - 21913. Anti-detachment plate - 21914. Drive motor - 21921. Drive gear - 21922. Frame - 21951. Chain belt fixing ring - 21952. Transmission shaft rod - 21953. Cargo chain belt - 21954. Connecting chain teeth - 21955. Bearing plate - 21956. Left clamping plate - 21957. Right clamping plate - 21958. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
[0032] Furthermore, in the description of this invention, it should be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention 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. Therefore, they should not be construed as limitations on this invention.
[0033] In this invention, unless otherwise explicitly 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 unit; 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. However, specifying a direct connection indicates that the two main bodies are not connected through a transitional structure, but rather formed as a whole through a connecting structure. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0034] In this invention, unless otherwise expressly specified and limited, the first feature "on" or "below" the second feature may be in direct contact with the first and second features, or indirect contact through an intermediate medium. In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. 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.
[0035] The present invention will be further described below with reference to the accompanying drawings:
[0036] Example 1: As shown in the attached document Figure 1 To be continued Figure 5 Appendix Figure 7 To be continued Figure 10 As shown:
[0037] This embodiment provides a broiler chicken farming transport vehicle, including a transport vehicle 1, a cargo box 2 installed at the rear of the transport vehicle 1, a cargo box 21 inside the cargo box 2, a rear frame 22 installed at the end of the cargo box 21, an even number of cargo doors 23 installed inside the rear frame 22, several sets of arch rod fixing seats 24 installed on both sides of the rear frame 22, an upper protective frame 25 fixed above the rear frame 22, and a set of plated arch rods 27 fixed on the several sets of arch rod fixing seats 24, with arch rods 26 at both ends of the plated arch rods 27; and upper arc grooves 21 are opened on both walls of the cargo box 21. 1. An even number of side mounting platforms 212 are fixed on both sides of the compartment 21. A first auxiliary slide 213 is provided above one side mounting platform 212, and a second auxiliary slide 214 is provided above the other side mounting platform 212. Hydraulic rods 215 are fixed on each of the even number of side mounting platforms 212. A first box platform 216 is installed inside the compartment 21. A waste guide platform 217 is provided below the first box platform 216. A waste collection box 218 is installed below the compartment 21. A second box platform 219 is provided above the first box platform 216.
[0038] Furthermore, the plated arch rod assembly 27 is mainly set between the arch rods 26. The plated arch rod assembly 27 is connected by side plates to form protection for both sides of the upper protective frame 25, while the arch rods 26 are nested into the upper protective frame 25.
[0039] Furthermore, the side mounting platform 212 is mainly used for the fixed support of the hydraulic rod 215. Together with the first auxiliary slide groove 213 and the second auxiliary slide groove 214 above the hydraulic rod 215, it completes the support and displacement of the second box platform 219.
[0040] Furthermore, the waste collection box 218 is fixed to the bottom of the compartment 21, below the end of the waste guide platform 217, and is connected to the waste guide platform 217, so that the waste generated by the waste guide platform 217 can be directly guided into the waste collection box 218 for collection.
[0041] The first box platform 216 is equipped with a partition plate 2161. Several frame rollers 2162 are installed on the partition groove of the partition plate 2161. Several through grooves 2163 are opened on the partition plate 2161. A first fixed rotating shaft 2164 is installed at the end of the partition plate 2161. A ventilation plate 2165 is installed at the top of the partition plate 2161. A lifting block 2166 is fixed on the ventilation plate 2165. Several hinged connectors 2167 are installed on the lower surface of the lifting block 2166. The same number of lifting rods 2168 are connected below the hinged connectors 2167. Hydraulic tanks 2169 are provided on both sides of the lifting rods 2168.
[0042] Furthermore, at least three partitions are formed on the partition plate 2161, and several rollers 2162 are evenly arranged in a line between each partition. With the assistance of the rollers 2162, the broiler turnover box is moved forward to complete the loading of the broiler turnover box.
[0043] Furthermore, there are two hydraulic tanks 2169, which are used to drive the lifting rod 2168 and the hydraulic rod 215 respectively, and can be controlled by a controller located in the front of the transport vehicle 1 or an external handheld controller.
[0044] Furthermore, the ventilation plate 2165 is mainly used for air input to provide ventilation and oxygen supply for the broilers in the broiler turnover box, while the lifting block 2166 fixed on the ventilation plate 2165 is used to connect the hinged connector 2167 below to the lifting rod 2168 to form a lifting operation, allowing the partition frame plate 2161 to tilt at a slight angle.
[0045] The second box platform 219 is equipped with a platform frame plate 2191. A second fixed rotating shaft 2192 is installed at the end of the platform frame plate 2191. A flip cover 2193 is installed in the center of the second fixed rotating shaft 2192. Limiting shaft caps 2194 are installed at both ends of the second fixed rotating shaft 2192. Several anti-shift frames 2195 for the box are opened on the platform frame plate 2191. A swing shaft 2196 is installed below the top of the platform frame plate 2191. Swing shaft caps 2197 are fixed at both ends of the swing shaft 2196.
[0046] Furthermore, the platform frame plate 2191 is fixed by the second fixed rotating shaft 2192, and the protruding protrusions on both sides are respectively nested in the handle through-hole, the first auxiliary sliding groove 213, and the second auxiliary sliding groove 214, and are connected to the hydraulic rod 215 below, so that the platform frame plate 2191 is fixed by the hydraulic rod 215.
[0047] Furthermore, the anti-shifting frame 2195 is also provided in three places, evenly distributed on the surface of the platform frame 2191. The installation of the broiler turnover box is completed through the anti-shifting frame 2195. During installation, the platform frame 2191 is in an inclined state, and after installation, the platform frame 2191 is in a horizontal state.
[0048] The platform frame plate 2191 has an even number of interconnecting slots 21911, and each of the even number of interconnecting slots 21911 is equipped with a transmission chain 21912. Each of the even number of anti-collision strips 21913 is fixed on the lower surface of the platform frame plate 2191. Each of the two ends of the swing shaft 2196 is equipped with anti-detachment plates 21914. Each of the even number of drive motors 21921 is equipped with a second fixed rotating shaft 2192, and each of the even number of drive motors 21921 is equipped with drive teeth 21922.
[0049] Furthermore, the interconnecting groove 21911 directly penetrates into the second fixed rotating shaft 2192, allowing the transmission chain 21912 to pass through and connect with the drive teeth 21922 on the drive motor 21921 in the second fixed rotating shaft 2192, thereby indirectly driving the transmission shaft rod 21953.
[0050] Furthermore, the anti-collision strips 21913 under the even-numbered strips are fixed to the bottom of the platform frame 2191. After the platform frame 2191 is raised to a horizontal position, the space range of the broiler turnover box loaded in the first box platform 216 is reduced and displacement is prevented.
[0051] The anti-slip frame 2195 contains a frame 21951, through which several drive shafts 21953 pass. A chain fixing ring 21952 is installed in the center of each drive shaft 21953. A cargo chain 21954 is installed on the chain fixing ring 21952. Chain teeth 21955 are provided on both sides of the chain fixing ring 21952. Several bearing plates 21956 are installed on one surface of the cargo chain 21954. A left clamping plate 21957 is installed on one side of the bearing plate 21956, and a right clamping plate 21958 is installed on the other side of the bearing plate 21956.
[0052] Furthermore, the frame 21951 is mainly used to fit the protruding part at the bottom of the broiler turnover box, complete its positioning, and then when the bearing plate 21956 moves to the front, it places the broiler turnover box on it and moves it to complete the loading of the broiler turnover box.
[0053] Furthermore, the left card plate 21957 and the right card plate 21958 set the support plate 21956 in the middle. By limiting the two sides of the support plate 21956, when the support plate 21956 is loaded with the broiler turnover box, the left card plate 21957 and the right card plate 21958 on both sides can just complete the locking of the side wall of the broiler turnover box.
[0054] Furthermore, the drive shaft 21953 is driven by the connecting teeth 21955 at both ends, while the chain belt fixing ring 21952 drives the load chain 21954 to rotate under synchronous drive. During the rotation, the bearing plate 21956 and the left and right clamping plates are synchronously displaced.
[0055] The specific working principle is as follows:
[0056] In this invention, after the transport vehicle 1 travels to the breeding area, the door 23 on the rear frame 22 of the cargo compartment 2 is opened. Then, the second platform 219 inside the cargo compartment 21 is pre-triggered. Inside the front of the transport vehicle 1, the hydraulic tank 2169 controls the retraction of the hydraulic rod 215, causing the swing shaft 2196 at the end of the platform frame 2191 to displace in the upper arc groove 211, tilting it so that its end rests on the end surface of the first platform 216. After this, the drive motor 21921 in the second fixed rotating shaft 2192 is activated. The drive gear 21922, in conjunction with the transmission chain 21912 extending through the inter-slot 21911, drives the connecting teeth 21955 on the transmission shaft 21953. This causes the load chain 21954 on the chain fixing ring to displace during the rotation of the transmission shaft 21953, thereby driving the bearing plate 21956 and the left clamping plate 21. 957. The right card plate 21958 moves to the surface of the frame 21951, and the broiler turnover box is sequentially clamped and supported on the support plate 21956, the left card plate 21957, and the right card plate 21958 to complete the loading work. Finally, the hydraulic rod 215 lifts the platform frame 2191 to the upper protective frame 25, which is protected by the plate arch rod group 27 on both sides. Then, the broiler turnover boxes are installed on the first box platform 216. The number of broiler turnover boxes with the appropriate stacking height are placed directly on the roller 2162 on the frame and pushed to move them sequentially to complete the loading of the first box platform 216. When unloading is required, the process is reversed. The second box platform 219 can only be triggered to swing after the first box platform 216 is unloaded. Then, the drive motor 21921 reverses and drives the support plate 21956 in the opposite direction to unload the broiler turnover boxes.
[0057] Example 2: As shown in the attached document Figure 4 To be continued Figure 6 As shown:
[0058] The first box platform 216 is equipped with a partition plate 2161. Several frame rollers 2162 are installed on the partition groove of the partition plate 2161. Several through grooves 2163 are opened on the partition plate 2161. A first fixed rotating shaft 2164 is installed at the end of the partition plate 2161. A ventilation plate 2165 is installed at the top of the partition plate 2161. A lifting block 2166 is fixed on the ventilation plate 2165. Several hinged connectors 2167 are installed on the lower surface of the lifting block 2166. The same number of lifting rods 2168 are connected below the hinged connectors 2167. Hydraulic tanks 2169 are provided on both sides of the lifting rods 2168.
[0059] The waste guide platform 217 is equipped with an inclined guide inner chamber 2172. The inclined guide inner chamber 2172 has a waste guide trough 2171 at its end. Several sets of compensating support columns 2173 are installed on the surface of the inclined guide inner chamber 2172. A frame plate 2174 is fixed on the surface of the several sets of compensating support columns 2173.
[0060] Furthermore, the partition plate 2161 has a support pad underneath, which is used to raise the partition plate 2161, thereby providing the partition plate 2161 with swing space when the partition plate 2161 is indirectly lifted by the lifting block 2166.
[0061] Furthermore, the interior of the inclined guide chamber 2172 slopes from top to bottom, allowing the falling dirt and the water generated during cleaning to slide directly down to the guide trough 2171, thereby better completing the external discharge of sewage and dirt.
[0062] Furthermore, several sets of compensating support columns 2173 are provided to compensate for the inclination of the surface of the compensating support columns 2173, thereby allowing the frame 2174 to be placed horizontally.
[0063] Furthermore, the sewage trough 2171 is directly below the sewage collection box 218, so that all the generated sewage and wastewater fall into it for collection, and then the transport vehicle 1 drives to the designated location to complete the fixed-point discharge.
[0064] The specific working principle is as follows:
[0065] This invention involves rinsing the first platform 216 and the second platform 219 above it. During the rinsing process, the chicken excrement on the second platform 219 falls onto the partition plate 2161. The wastewater and excrement are guided by the through groove 2163 on the partition plate 2161, and then fall directly onto the surface of the inclined guide chamber 2172. As the inclined guide chamber 2172 is tilted, the wastewater finally falls into the sewage guide trough 2171 and directly enters the sewage collection box 218 for collection. When the transport vehicle 1 travels to the designated location, the wastewater is discharged at a fixed point.
[0066] It should be understood that the embodiments disclosed herein are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.
[0067] The term "embodiment" in this specification means that a specific feature or characteristic described in connection with an embodiment is included in at least one embodiment of the invention. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.
[0068] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of embodiments of the invention. However, those skilled in the art will understand that the invention can be implemented without the aforementioned specific details or may be implemented using other methods, components, materials, etc.
Claims
1. A broiler chicken farming and transport vehicle, characterized in that, The vehicle includes a transport vehicle (1), a cargo box (2) installed at the rear of the transport vehicle (1), a cargo box (21) installed inside the cargo box (2), a rear frame (22) installed at the end of the cargo box (21), an even number of cargo doors (23) installed inside the rear frame (22), several sets of arch rod fixing seats (24) installed on both sides of the rear frame (22), an upper protective frame (25) fixed above the rear frame (22), and a plate-mounted arch rod group (27) fixed on the several sets of arch rod fixing seats (24), with arch rods (26) installed at both ends of the plate-mounted arch rod group (27). The two walls of the compartment (21) are provided with upper arc grooves (211). An even number of side fixing platforms (212) are fixed on both sides of the compartment (21). A first auxiliary sliding groove (213) is provided above one of the side fixing platforms (212), and a second auxiliary sliding groove (214) is provided above the other side fixing platform (212). A hydraulic rod (215) is fixed on each of the even number of side fixing platforms (212). A first box carrier (216) is installed inside the compartment (21). A waste guide platform (217) is provided below the first box carrier (216). A waste collection box (218) is installed below the compartment (21). A second box carrier (219) is provided above the first box carrier (216). The second box platform (219) is provided with a platform frame plate (2191). A second fixed rotating shaft (2192) is installed at the end of the platform frame plate (2191). A flip cover (2193) is installed at the center of the second fixed rotating shaft (2192). Limiting shaft caps (2194) are installed at both ends of the second fixed rotating shaft (2192). Several anti-shift frames (2195) for the box are opened on the platform frame plate (2191). A swing shaft (2196) is installed below the top of the platform frame plate (2191). Swing shaft caps (2197) are fixed at both ends of the swing shaft (2196). The anti-shift frame (2195) of the container is provided with a frame body (21951), and a number of drive shafts (21953) are passed through the frame bodies (21951). A chain fixing ring (21952) is installed at the center of each of the drive shafts (21953). A cargo chain (21954) is installed on the chain fixing ring (21952). Chain teeth (21955) are provided on both sides of the chain fixing ring (21952). A number of bearing plates (21956) are installed on one surface of the cargo chain (21954). A left clamping plate (21957) is installed on one side of the bearing plate (21956), and a right clamping plate (21958) is installed on the other side of the bearing plate (21956). The right card plate (21958) is located on the right side of the support plate (21956), and the left card plate (21957) is located on the left side of the support plate (21956). The support plate (21956), the left card plate (21957), and the right card plate (21958) are all fixed on the load chain (21954). The connecting chain teeth (21955) are fixed on the transmission shaft (21953). The connecting chain teeth (21955) cooperate with the second fixed rotating shaft (2192). Several transmission shafts (21953) are installed between the frame (21951) and are evenly arranged in a line. The protrusions at both ends of the platform frame plate (2191) are respectively located in the first auxiliary slide groove (213) and the second auxiliary slide groove (214). The platform frame (2191) has an even number of interconnecting slots (21911), and each of the even number of interconnecting slots (21911) is equipped with a transmission chain (21912). Each of the even number of anti-collision strips (21913) is fixed on the lower surface of the platform frame (2191). Each of the two ends of the swing shaft (2196) is equipped with anti-detachment plates (21914). Each of the even number of drive motors (21921) is equipped with a drive gear (21922). The drive tooth (21922) cooperates with the connecting tooth (21955) through the transmission chain (21912), the anti-collision strip (21913) under the plate is used to prevent pressure on the broiler turnover box, the anti-detachment plate (21914) is set on the inside of the box body (21), and the drive motor (21921) is powered and controlled by the transport vehicle (1).
2. The broiler chicken farming transport vehicle according to claim 1, characterized in that: The two ends of the swing shaft (2196) are installed in the upper arc groove (211) of the compartment. The flip cover (2193) is used to cover and ventilate the second fixed rotating shaft (2192). The swing shaft cap (2197) and the limiting shaft cap (2194) are both set on the outer wall of the compartment (21). The arch rod (26) is fixed to the surface of the upper protective frame (25). The waste guide platform (217) is used to guide the waste out of the first box platform (216) and the second box platform (219).
3. The broiler chicken farming transport vehicle according to claim 2, characterized in that: The first box platform (216) is provided with a partition plate (2161). Several frame rollers (2162) are installed on the partition groove of the partition plate (2161). Several through grooves (2163) are opened on the partition plate (2161). A first fixed rotating shaft (2164) is installed at the end of the partition plate (2161). A ventilation plate (2165) is installed at the top of the partition plate (2161). A lifting block (2166) is fixed on the ventilation plate (2165). Several hinged connectors (2167) are installed on the lower surface of the lifting block (2166). The same number of lifting rods (2168) are connected below the hinged connectors (2167). Hydraulic tanks (2169) are provided on both sides of the lifting rods (2168).
4. The broiler chicken farming transport vehicle according to claim 3, characterized in that: The hydraulic tank (2169) cooperates with the lifting rod (2168), and the hydraulic tank (2169) cooperates with the hydraulic rod (215). The bottom of the lifting rod (2168) is fixed to the top surface of the waste guide platform (217). The bottom of the through groove (2163) on the plate is directly opposite the waste guide platform (217). The hydraulic tank (2169) can be controlled by the internal control of the transport vehicle (1) and the external handheld terminal.
5. A broiler chicken farming transport vehicle according to claim 4, characterized in that: The waste guide platform (217) is provided with an inclined guide inner chamber (2172). The inclined guide inner chamber (2172) has a waste guide groove (2171) at its end. Several sets of compensating support columns (2173) are installed on the surface of the inclined guide inner chamber (2172). A frame plate (2174) is fixed on the surface of the several sets of compensating support columns (2173). The frame plate (2174) is used to support the partition frame plate (2161). The waste guide groove (2171) is directly opposite the waste collection box (218).
Citation Information
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Carriage with automatic loading and unloading function
CN112389550A
Livestock and poultry transport vehicle with spraying function
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