A special vehicle compartment for live chicken transportation
By combining a transmission chain and a power supply device, the cleaning of live chicken transport compartments has been automated, solving the problem of low cleaning efficiency in existing technologies, improving transportation efficiency and reducing labor intensity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FUJIAN SUNNER DEV
- Filing Date
- 2025-12-24
- Publication Date
- 2026-04-24
AI Technical Summary
The existing live chicken transport vehicles rely on cleaning rooms and manual labor for cleaning and disinfection, resulting in high labor intensity, slow process connection, low efficiency, and inability to effectively avoid cross-infection and the risk of vehicle corrosion.
The system uses a drive unit to rotate the transmission chain, and releases the power supply device to connect the pipeline through a pipe retractor, thereby achieving automated cleaning of the shower and swing spray hood, reducing reliance on cleaning rooms and manual labor.
It achieves automated cleaning without the need for a cleaning room or manual labor, saving costs, improving the overall turnover efficiency of live chicken transportation, and effectively cleaning residual feces, feathers, and avian influenza virus.
Smart Images

Figure CN121375617B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of transport vehicle technology, specifically a special carriage for a live chicken transfer vehicle. Background Technology
[0002] Live chicken transport compartments, as specialized compartments used in conjunction with live chicken transport vehicles, typically employ a fence-type or panel structure design to meet short-distance transport needs: the fences and panels separate the space to prevent live chickens from being crushed while ensuring air circulation; their load-bearing capacity is adapted to the needs of bulk transport, taking into account safety, ventilation, and operational efficiency, making them common functional facilities in poultry transport scenarios.
[0003] However, the existing technology has the following shortcomings: During the transportation of live chickens, feces, feathers and pathogens such as avian influenza virus are easily left in the rear compartment. Therefore, it is necessary to avoid cross-infection and corrosion risks in the compartment through cleaning and disinfection. However, this step depends on conditions such as cleaning room, manual labor and semi-automatic equipment. If the conditions are not met, cleaning cannot be carried out effectively. In addition, the manual and semi-automatic cleaning mode has problems such as high labor intensity, slow process connection and low efficiency, which directly slows down the overall turnover efficiency of live chicken transportation. 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 special carriage for live chicken transfer vehicles. The drive device drives the transmission chain to rotate through the transmission component on the frame, driving the moving teeth to move. The pipe rewinder releases the power supply device connected to the pipe, compensating for the pulling power supply of the shower and the swing spray hood. It does not rely on the cleaning room and manpower, saving costs and improving transportation turnover efficiency.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a special vehicle compartment for live chicken transfer, comprising a transport vehicle with a compartment installed at the rear, a body inside the compartment, side doors on both sides of the body, and a rear door at the rear of the body; an upper fence frame is installed inside the compartment, an upper drive component is installed on the top surface of the upper fence frame, several sets of side lugs are fixed on the side walls of the upper fence frame, arched railings are erected between the sets of side lugs, a front fence is fixed on the upper fence frame, a power supply device is installed on the front fence, and a drive device is fixed on the front surface of the front fence. The front fence mainly serves to cooperate with the installation of the power supply device and the drive device, thereby completing the driving and power supply of the upper drive component, enabling the upper drive component to perform its corresponding work.
[0007] A further improvement to the present invention includes an even number of auxiliary sliding plates within the frame-mounted transmission component. Each auxiliary sliding plate has a through-slot on its surface. Several locking sleeves are fixed to the outer walls of each of the even number of auxiliary sliding plates. An even number of suspension cable beams connect the even number of auxiliary sliding plates. A flushing assembly is installed between the even number of auxiliary sliding plates. An auxiliary rotating gear shaft is located at the end of each auxiliary sliding plate. A transmission chain is installed within each auxiliary sliding plate, and a gear frame is connected to the transmission chain. An auxiliary chain frame is located behind the gear frame. An even number of upper lifting rings are installed at the center of the lower surface of each suspension cable beam. The gear frame primarily assists in the turning of the transmission chain and, in conjunction with the rear auxiliary chain frame, supports it to prevent the auxiliary chain frame from falling off, thus ensuring smooth operation during the drive process.
[0008] A further improvement to the present invention is that the flushing assembly is provided with an even number of mounting shafts, each with a movable tooth mounted at both ends. A showerhead is fixed on each mounting shaft, and a rotating shaft frame is installed between the showerheads. A swing spray hood is mounted on the rotating shaft frame, and a stretchable pipe is fixed to the outer surface of the swing spray hood. The showerheads are vertically arranged, and after being powered by the power supply device, they are assisted by the movable teeth at both ends of the mounting shafts to achieve horizontal displacement, thereby realizing the flushing of the interior of the compartment.
[0009] In a further improvement to the invention, the other end of the stretchable pipe is connected to the power supply device, the swinging spray hood can be hinged and swing on the rotating shaft frame, the moving gear cooperates with the transmission chain, the mounting shaft passes through the through groove on the plate, the transmission chain is driven by the driving device, the auxiliary chain frame and the gear frame are both fixed on the upper fence frame, and the locking sleeve is nested on the arch railing. The swinging spray hood is mainly assisted by the rotating shaft frame to form a hinged swing, and after swinging, it is in a vertical state, thereby enabling corresponding rinsing of the partition panels.
[0010] A further improvement to the invention includes a water tank within the power supply device, booster pumps on both sides of the water tank, an even number of pipe winders mounted above the water tank with connecting pipes inside, an even number of water supply pipes fixed to the outer wall of the water tank, a controller located below the water tank, a platform within the drive device, a motor housing mounted on the platform, a shaft cover plate fixed to the side wall of the platform, and transmission gears connected to the drive shaft of the motor housing. The booster pumps primarily regulate and pressurize the water flow within the water tank, then output water through the connecting pipes to supply water to the shower and oscillating spray hood.
[0011] In a further improvement to the present invention, the controller is used to control the motor housing and the booster pump; the end of the connecting pipe is respectively connected to the shower and the stretchable pipe; the other end of the connecting pipe is connected to the booster pump; the water tank is fixed to the inner wall of the front fence; the pipe reel is used for releasing and storing the connecting pipe; the platform is fixed to the outer wall of the front fence; and the transmission gear is used to drive the transmission chain. The pipe reel stores the connecting pipe internally, releasing it when it is displaced, and rinsing and winding the connecting pipe back into the pipe reel during retrieval.
[0012] A further improvement to the present invention is that a plurality of frame rods are installed on the side wall of the upper fence frame, wherein side lifting rings and auxiliary lifting cable holders are respectively installed on the side wall of the even number of frame rods. A wastewater guide platform is fixed inside the upper fence frame, and a partition plate is provided above the wastewater guide platform. The auxiliary lifting cable holder is mainly used for securing the hook cable chain, and works in conjunction with the side lifting rings for securing, so that the plate is stored close to the inner wall of the upper fence frame.
[0013] A further improvement to the invention is that an anti-corrosion guide groove is formed within the sewage guide platform, and several platform beams are mounted on the anti-corrosion guide groove. A sewage discharge pipe is installed below the anti-corrosion guide groove, and a partitioned air guide plate is fixed above the end of each platform beam. An even number of plates are arranged within each partitioned plate, and several hinged fixing ears are installed on the outer side of each plate. An even number of upper shaft grooves are formed on each plate, and a ring-shaped swing support rod is installed in each of the even number of upper shaft grooves. The ring-shaped swing support rod mainly cooperates with the upper shaft grooves to support the plate after it swings down.
[0014] A further improvement to the present invention is that the bottom of the ring-shaped swing support rod is supported on the upper beam plate of the platform, the upper ring of the ring-shaped swing support rod is connected to the upper lifting ring through a suspension cable chain, the hinge fixing lug is fixed to the inner wall of the frame rod, and the plate body can swing hingedly through the hinge fixing lug. The ring on the ring-shaped swing support rod can be fixed to either the upper lifting ring or the side lifting ring through the cooperation of the suspension cable chain.
[0015] Compared with the prior art, the present invention has the following beneficial effects;
[0016] 1. This invention uses a drive device to trigger the transmission component on the frame, which drives the transmission chain to rotate, thereby driving the moving teeth at both ends of the support shaft to move. At the same time, the connecting pipe in the power supply device is released by the pipe retractor to compensate for the power supply demand when the shower and the swing spray hood are pulled. The entire cleaning process does not require a cleaning room or manual labor, which saves costs and indirectly improves the overall turnover efficiency of live chicken transportation.
[0017] 2. This invention fixes the hinged fixing ears to the frame rod. When in use, the hooks pre-attached to the cable chain are first removed from the side lifting ring and fixed to the upper lifting ring. At the same time, the upper beam plate is supported by the ring-shaped swing support rod under the plate, thus completing the suspension of the plate and realizing the distributed support force of the plate. When not in use, the plate and supporting facilities can be reset to the side wall of the fence frame on the box body. It can switch between "use / storage" state at any time to adapt to the transportation needs and is suitable for short-distance, temporary and other variable live chicken transportation scenarios. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a special carriage for a live chicken transfer vehicle according to the present invention;
[0019] Figure 2 This is a rear view structural diagram of the carriage of a special vehicle for transporting live chickens according to the present invention.
[0020] Figure 3 This is a top view of the fence frame on the upper compartment of a special vehicle for transporting live chickens, according to the present invention.
[0021] Figure 4 This is a top view schematic diagram of the transmission component on the frame of a special carriage for transporting live chickens according to the present invention.
[0022] Figure 5 This is a front view schematic diagram of the power supply device in the special carriage of a live chicken transfer vehicle according to the present invention;
[0023] Figure 6 This is a top view schematic diagram of a washing assembly in a special carriage of a live chicken transfer vehicle according to the present invention.
[0024] Figure 7 This is a rear view schematic diagram of the upper fence frame of the special compartment of a live chicken transfer vehicle according to the present invention.
[0025] Figure 8 This is a front view structural diagram of the partition panel of the special carriage of a live chicken transfer vehicle according to the present invention.
[0026] Figure 9 This is a side view of the fence frame on the upper compartment of a special vehicle for transporting live chickens, according to the present invention.
[0027] In the diagram: Transport vehicle-1, Carriage-2, Carriage body-21, Side door-22, Rear door-23, Frame transmission component-211, Frame side lug-212, Arch railing-213, Front fence-214, Power supply device-215, Drive device-216, Carriage fence frame-217, Lock sleeve-2111, Cable support beam-2112, Auxiliary sliding plate-2113, Through groove on the plate-2114, Washing assembly-2115, Transmission chain-2116, Gear frame-2117, Auxiliary chain frame-2118, Auxiliary rotating gear shaft-2119, Water tank-2151, Booster pump-2152, Pipe rewinder-2153, Connecting pipe-2154, Water supply pipe-2155, Controller-2156, Platform-2 161. Motor box - 2162. Shaft cover plate - 2163. Transmission gear - 2164. Frame rod - 2171. Side lifting ring - 2172. Auxiliary lifting cable holder - 2173. Sewage guide platform - 2174. Section guardrail - 2175. Upper lifting ring - 21121. Erection shaft - 21151. Moving gear - 21152. Shower - 21153. Shaft bracket - 21154. Stretchable pipe - 21155. Swinging spray hood - 21156. Platform beam plate - 21741. Anti-corrosion guide groove - 21742. Sewage discharge pipe - 21743. Section air guide plate - 21744. Hinge fixing ear - 21751. Plate body - 21752. Upper shaft groove - 21753. Ring-type swing support rod - 21754. Detailed Implementation
[0028] 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.
[0029] 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.
[0030] 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.
[0031] 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.
[0032] The present invention will be further described below with reference to the accompanying drawings:
[0033] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown:
[0034] This embodiment provides a special vehicle for transporting live chickens, including a transport vehicle 1, a vehicle compartment 2 installed at the rear of the transport vehicle 1, a compartment 21 inside the compartment 2, side doors 22 installed on both sides of the compartment 21, and a rear door 23 installed at the rear of the compartment 21; an upper fence frame 217 is installed inside the compartment 21, an upper drive component 211 is installed on the top surface of the upper fence frame 217, several sets of frame side lugs 212 are fixed on the side walls of the upper fence frame 217, arch railings 213 are erected between the several sets of frame side lugs 212, a front fence 214 is fixed on the upper fence frame 217, a power supply device 215 is installed on the front fence 214, and a drive device 216 is fixed on the front surface of the front fence 214.
[0035] The frame transmission component 211 is equipped with an even number of auxiliary slide plates 2113. Each auxiliary slide plate 2113 has a through groove 2114 on its surface. Each auxiliary slide plate 2113 has several locking sleeves 2111 fixed to its outer wall. Each auxiliary slide plate 2113 is connected to an even number of cable support beams 2112. Each auxiliary slide plate 2113 is equipped with a flushing assembly 2115. Each auxiliary slide plate 2113 has an auxiliary rotating gear shaft 2119 at its end. Each auxiliary slide plate 2113 is equipped with a transmission chain 2116. Each transmission chain 2116 is connected to a gear frame 2117. An auxiliary chain frame 2118 is located behind the gear frame 2117. Each cable support beam 2112 has an even number of upper lifting rings 21121 installed at the center of its lower surface.
[0036] Furthermore, at least two auxiliary sliding plates 2113 are provided, installed opposite each other, with a hollow interior and through slots 2114 on the inner surface of each plate for the installation of the flushing assembly 2115, while also improving the maximum distance limit of displacement.
[0037] Furthermore, the transmission chain 2116 is nested inside the auxiliary slide plate 2113, with its end engaged by the auxiliary rotating gear shaft 2119 inside the auxiliary slide plate 2113, and its other end used to connect to the drive device 216 for driving.
[0038] Furthermore, both the gear frame 2117 and the auxiliary chain frame 2118 are fixed on the upper fence frame 217. Both are used to assist the transmission chain 2116. The gear frame 2117 provides support for the reversing point of the transmission chain 2116, while the auxiliary chain frame 2118 completes the erection of the transmission chain 2116 to prevent it from falling downward and affecting the smoothness of movement.
[0039] The power supply device 215 is equipped with a water tank 2151. Booster pumps 2152 are installed on both sides of the water tank 2151. An even number of pipe retractors 2153 are installed above the water tank 2151. Connecting pipes 2154 are installed in the pipe retractors 2153. An even number of water supply pipes 2155 are fixed on the outer wall of the water tank 2151. A controller 2156 is installed below the water tank 2151.
[0040] Furthermore, booster pumps 2152 are installed on both sides of the water tank 2151. After the pipes are connected to the water tank 2151 by the booster pumps 2152, the water flow is pressurized, and the pressurized water flow is output from the connecting pipe 2154 connected to the water tank 2151.
[0041] Furthermore, the pipe retractor 2153 is mainly used for storing the connecting pipe 2154. When the connecting pipe 2154 is stretched by an external force, it is pulled outward. When the flushing assembly 2115 is reset, the connecting pipe 2154 is re-stored into the pipe retractor 2153.
[0042] Furthermore, the controller 2156 is installed below the water tank 2151 and is used to trigger the booster pump 2152 and the drive device 216. It is covered by the side door 22 and must be opened before use.
[0043] The drive unit 216 includes a platform 2161, on which a motor housing 2162 is mounted. A shaft cover 2163 is fixed on the side wall of the platform 2161, and a transmission gear 2164 is connected to the drive shaft of the motor housing 2162.
[0044] Furthermore, the transmission gear 2164 on the motor housing 2162 is mainly used to cooperate with the transmission chain 2116 to trigger the operation, thereby driving the transmission chain 2116 to form a cycle operation, causing the flushing component 2115 to move and complete the cleaning of the compartment 21.
[0045] Furthermore, the shaft cover plate 2163 is mainly used to cover the transmission gear 2164 and assist the motor housing 2162 in rotating the drive shaft to prevent the drive shaft from protruding outward.
[0046] The flushing assembly 2115 is provided with an even number of mounting shafts 21151. Each end of the even number of mounting shafts 21151 is equipped with a moving tooth 21152. Each mounting shaft 21151 is fixed with a shower head 21153. A rotating shaft frame 21154 is installed between the shower heads 21153. A swing spray hood 21156 is installed on the rotating shaft frame 21154. A stretchable pipe 21155 is fixed on the outer surface of the swing spray hood 21156.
[0047] Furthermore, the shower head on the shower 21153 is in a vertical position to complete the rinsing work between the fence frames 217 on the compartment, so as to avoid residual feces, feathers and pathogens such as avian influenza virus.
[0048] Furthermore, the swing spray hood 21156 is assisted in swinging by the rotating shaft frame 21154, so that it forms a vertical state and completes the rinsing and disinfection of the partition panels 2175 on the side wall of the upper fence frame 217 of the storage compartment.
[0049] Furthermore, the stretchable pipe 21155 is connected to the connecting pipe 2154 to supply water to the swinging spray hood 21156. Through its stretchability, it compensates for the length when the swinging spray hood 21156 swings.
[0050] The specific working principle is as follows:
[0051] In this invention, after the live chicken transfer is completed, the side door 22 of the compartment 21 on the transport vehicle 1 is opened, while the rear door 23 remains closed. A water supply pipe containing disinfectant is then connected to the water tank 2151 via the water supply pipe 2155. Once full, the controller 2156 is activated, triggering the motor housing 2162 on the platform 2161 inside the drive device 216 to drive the transmission gear 2164 inside the shaft cover 2163. This causes the transmission gear 2164 to drive the transmission chain 2116, which in turn slowly rotates with the auxiliary slide plate 2113. This indirectly causes the mounting shaft 21151, with the assistance of the moving gears 21152 at both ends, to cooperate with the transmission chain 2111. 16 moves, causing the shower 21153 to shift, while the rotating frame 21154, in conjunction with the auxiliary swing spray hood 21156, swings the stretchable pipe 21155 to compensate for the pipe length, keeping it in a vertical state. With the operation of the booster pump 2152, the water in the water tank 2151 is driven, and the pressurized water is output from the connecting pipe 2154, entering the shower 21153 and the swing spray hood 21156 respectively, completing the rinsing of the upper fence frame 217, washing away and disinfecting residual feces, feathers and pathogens such as avian influenza virus generated during the transportation of live chickens. The rinsing water flows into the waste guide platform 2174 in the upper fence frame for subsequent external discharge.
[0052] Example 2: As shown in the attached document Figure 3 Appendix Figure 7 To be continued Figure 9 As shown:
[0053] The compartment 21 is equipped with an upper rail frame 217. The top surface of the upper rail frame 217 is equipped with an upper transmission component 211. Several sets of side lugs 212 are fixed on the side walls of the upper rail frame 217. Arch railings 213 are erected between the sets of side lugs 212. A front rail 214 is fixed on the upper rail frame 217. A power supply device 215 is installed on the front rail 214. A drive device 216 is fixed on the front surface of the front rail 214.
[0054] Among them, several frame rods 2171 are installed on the side wall of the upper fence frame 217, and side lifting rings 2172 and auxiliary lifting cable brackets 2173 are respectively installed on the side wall of the even number of frame rods 2171. A sewage guide platform 2174 is fixed inside the upper fence frame 217, and a partition plate 2175 is set above the sewage guide platform 2174.
[0055] Furthermore, the side lifting ring 2172 and the auxiliary lifting cable holder 2173 are installed on the same vertical plane. The side lifting ring 2172 is used for hooking and securing the top of the lifting cable chain, while the auxiliary lifting cable holder is used for supporting and suspending the lifting cable chain.
[0056] The sewage guide platform 2174 has a corrosion-resistant guide channel 21742 inside, and several platform beams 21741 are mounted on the corrosion-resistant guide channel 21742. A sewage discharge pipe 21743 is installed below the corrosion-resistant guide channel 21742, and a partitioned air guide plate 21744 is fixed above the end of the platform beam 21741.
[0057] Furthermore, the inner surface of the anti-corrosion guide channel 21742 is treated with an anti-corrosion coating to prevent chicken manure from corroding the carriage. The interior is slightly inclined from the front to the rear of the carriage, and together with the sewage pipe 21743 set at the bottom, the sewage is discharged at a fixed point during cleaning.
[0058] Furthermore, the platform beam 21741 is strip-shaped and consists of several strips, covering the anti-corrosion guide channel 21742. The gaps between them allow sewage to be guided downwards, and several platform beams 21741 in the middle section are fixed with flat connecting blocks to provide support for the ring-shaped swing strut 21754.
[0059] The partition panel 2175 contains an even number of panels 21752. Each panel 21752 has several hinged fixing ears 21751 installed on its outer side. Each panel 21752 has an even number of upper shaft grooves 21753. Each upper shaft groove 21753 has a ring-shaped swing support rod 21754 installed in it.
[0060] Furthermore, the partition panel 2175 is divided into two panels 21752, which are installed on the inner side of the frame rod 2171 respectively. With the cooperation of the hinge fixing ear 21751, they can swing hingedly to adapt to the transportation needs and switch between the "use / storage" state at any time.
[0061] Furthermore, the ring-shaped swing strut 21754 mainly swings through the shaft groove 21753 on the plate, thereby forming a perpendicular state with the plate 21752 and completing the support of the plate 21752. The support force is further strengthened by the automatic ring and the suspension cable chain.
[0062] The specific working principle is as follows:
[0063] This invention involves opening the rear door 23 and placing the live chicken crates sequentially on the platform beam 21741. After one side is placed, the plate 21752 connected to the hinged fixing lug 21751 on the inner side of the frame rod 2171 is hinged and swung. Before swinging, the ring-type swing support rod 21754 is swung to a vertical state with the assistance of the shaft groove 21753 on the plate, and then the placed live chicken crates are covered. The hooks of the lifting cable chain are removed from the side lifting ring 2172 and the auxiliary lifting cable holder 2173, and then hung... The upper lifting ring 21121 fixed below the cable support beam 2112 provides support for the plate 21752. Then, the other side is operated simultaneously to complete the installation of the live chicken turnover box and carry out the transfer work of the transport vehicle 1. After unloading, the reverse operation is carried out to reset the plate 21752. During the rinsing process of the rinsing component, sewage and dirt fall from the gap of the platform beam 21741 into the anti-corrosion guide groove 21742, and the dirt is discharged directly by opening the sewage pipe 21743.
[0064] 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.
[0065] 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.
[0066] 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 special carriage for transporting live chickens, characterized in that, The vehicle includes a transport vehicle (1), a cargo box (2) is installed at the rear of the transport vehicle (1), a compartment (21) is provided inside the cargo box (2), side doors (22) are installed on both sides of the compartment (21), and a rear door (23) is installed at the rear of the compartment (21). The compartment (21) is provided with a compartment upper fence frame (217), and a frame upper transmission component (211) is installed on the top surface of the compartment upper fence frame (217). Several sets of frame side lugs (212) are fixed on the side walls of the compartment upper fence frame (217). Arch railings (213) are erected between the several sets of frame side lugs (212). A front fence (214) is fixed on the compartment upper fence frame (217). A power supply device (215) is installed on the front fence (214). A drive device (216) is fixed on the front surface of the front fence (214). The frame transmission component (211) is provided with an even number of auxiliary slide plates (2113). Each of the auxiliary slide plates (2113) has a through groove (2114) on its surface. Each of the even number of auxiliary slide plates (2113) has several locking sleeves (2111) fixed to its outer wall. Each of the even number of auxiliary slide plates (2113) is connected to an even number of cable support beams (2112). Each of the even number of auxiliary slide plates (2113) is connected to a flushing assembly (2115). Each of the auxiliary slide plates (2113) has an auxiliary rotating gear shaft (2119) at its end. Each of the auxiliary slide plates (2113) has a transmission chain (2116) installed inside its surface. Each of the transmission chains (2116) has a gear frame (2117) connected to its surface. Each of the gear frame (2117) has an auxiliary chain frame (2118) behind it. Each of the cable support beams (2112) has an even number of upper lifting rings (21121) installed at the center of its lower surface. The flushing assembly (2115) is provided with an even number of mounting shafts (21151), and each end of the even number of mounting shafts (21151) is equipped with a moving tooth (21152). Each mounting shaft (21151) is fixed with a shower head (21153), and a rotating shaft frame (21154) is installed between the shower heads (21153). A swing spray hood (21156) is installed on the rotating shaft frame (21154), and a stretchable pipe (21155) is fixed on the outer surface of the swing spray hood (21156). The other end of the stretchable pipe (21155) is connected to the power supply device (215). The swing spray hood (21156) can be hinged and swing on the rotating shaft frame (21154). The moving gear (21152) cooperates with the transmission chain (2116). The mounting shaft (21151) passes through the through groove (2114) on the plate. The transmission chain (2116) is driven by the driving device (216). The auxiliary chain frame (2118) and the gear frame (2117) are both fixed on the upper fence frame (217). The locking sleeve (2111) is nested on the arch railing (213). The power supply device (215) is equipped with a water tank (2151), and booster pumps (2152) are installed on both sides of the water tank (2151). An even number of pipe winders (2153) are installed above the water tank (2151), and connecting pipes (2154) are installed in the pipe winders (2153). An even number of water supply pipes (2155) are fixed on the outer wall of the water tank (2151). A controller (2156) is installed below the water tank (2151). The drive device (216) is equipped with a platform (2161), and a motor housing (2162) is installed on the platform (2161). A shaft cover plate (2163) is fixed on the side wall of the platform (2161), and a transmission gear (2164) is connected to the drive shaft of the motor housing (2162). The controller (2156) is used to control the motor housing (2162) and the booster pump (2152). The end of the connecting pipe (2154) is respectively connected to the shower (21153) and the stretchable pipe (21155). The other end of the connecting pipe (2154) is connected to the booster pump (2152). The water tank (2151) is fixed on the inner wall of the front fence (214). The pipe retractor (2153) is used for releasing and storing the connecting pipe (2154). The platform (2161) is fixed on the outer wall of the front fence (214). The transmission gear (2164) is used for driving the transmission chain (2116).
2. The special carriage for live chicken transfer vehicles according to claim 1, characterized in that: Several frame rods (2171) are installed on the side wall of the upper fence frame (217), and side lifting rings (2172) and auxiliary lifting cable holders (2173) are respectively installed on the side wall of the even number of frame rods (2171). A sewage guide platform (2174) is fixed inside the upper fence frame (217), and a partition plate (2175) is provided above the sewage guide platform (2174).
3. The special carriage for live chicken transfer vehicles according to claim 2, characterized in that: The sewage guide platform (2174) has a corrosion-resistant guide channel (21742) formed inside. Several platform beams (21741) are mounted on the corrosion-resistant guide channel (21742). A sewage discharge pipe (21743) is installed below the corrosion-resistant guide channel (21742). A partition air guide plate (21744) is fixed above the end of the platform beam (21741). An even number of plates (21752) are provided inside the partition plate (2175). Several hinged fixing ears (21751) are installed on the outer side of each plate (21752). An even number of upper shaft grooves (21753) are opened on each plate (21752). A ring-shaped swing support rod (21754) is installed in each of the even number of upper shaft grooves (21753).
4. The special carriage for live chicken transfer vehicles according to claim 3, characterized in that: The bottom of the ring-shaped swing support rod (21754) is supported on the upper beam plate (21741). The upper ring of the ring-shaped swing support rod (21754) is connected to the upper hanging ring (21121) through the hanging cable chain. The hinge fixing lug (21751) is fixed to the inner wall of the frame rod (2171). The plate (21752) can swing hingedly through the hinge fixing lug (21751).
Citation Information
Patent Citations
High-fence type livestock transfer trolley
CN222905402U