Broiler breeding feed delivery cart
By designing a feed transport cart for broiler farming, a combination of a tipping unloading hopper and a lifting platform was adopted, which enabled direct unloading without manual lifting and placing, solving the problem of manual lifting and placing in the existing technology, improving operation efficiency and continuity, and adding a sludge cleaning function to improve the utilization rate of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-14
- Publication Date
- 2026-04-07
AI Technical Summary
The existing small handcarts require manual lifting and placement into the feed line box during feed transportation, resulting in limited functionality and difficulty in meeting the requirements of refined farming for operational efficiency and continuity.
A feed transport cart for broiler farming was designed. By loading feed into the tipping hopper and pulling it to the designated position in the pen, the tipping hopper is raised using a lifting platform to match the height of the feed box, and the discharge door is opened to discharge the feed directly, which simplifies the end-of-line operation process. A detachable pusher is used to clean up the waste.
It greatly simplifies the end-of-line operation process, improves operational efficiency and continuity, and increases the utilization rate of transport trolleys, realizing the versatility of "feed transportation and waste cleaning".
Smart Images

Figure CN121493078B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of trolley technology, specifically a trolley for transporting feed for broiler chickens. Background Technology
[0002] Feed carts are specialized feed transport equipment for the livestock industry, and they are divided into two categories: large bulk carts and small hand-pushed carts. Large carts are equipped with automatic unloading systems, have large capacity and are tightly sealed, making them suitable for efficient transfer of bulk feed in large-scale farms; small carts are lightweight and flexible, suitable for short-distance transport between pens, and are mostly made of corrosion-resistant stainless steel. Both types of carts reduce manual labor load and feed spillage through optimized structure, helping to improve the efficiency and standardization of livestock operations.
[0003] However, the existing technology has the following shortcomings: the small handcarts used to add feed to the feed line in the current breeding pens only have the function of pushing and transporting feed. When they reach the feed line box, the feed still needs to be lifted and placed into the box manually. This does not meet the need for convenient feeding at the end, resulting in relatively simple equipment functionality, which is difficult to adapt to the requirements of refined breeding for operational efficiency and continuity. 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 feed transport cart for broiler farming. The improved transport cart loads feed into a tipping unloading hopper, pulls it to a designated position in the pen, raises the lifting platform, and then the tipping hopper is raised to match the height of the feed box. The unloading door is then opened to unload the feed directly. Compared with the traditional manual lifting and placing, this simplifies the end process and improves operational efficiency and continuity.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a broiler feed transport cart, comprising a transport cart with a frame inside, an equipment box fixed to the top surface of the frame, a connecting frame inside the equipment box, a pivot seat mounted on the connecting frame, a pull handle mounted on the pivot seat, an even number of shock-absorbing lifting wheels on the frame, a frame plate inside the frame, a lower frame guard fixed below the frame plate, and a feeding device installed inside the lower frame guard; a lifting platform inside the feeding device, a tilting unloading hopper mounted above the lifting platform, and a detachable push shovel mounted at one end of the tilting unloading hopper. The shock-absorbing lifting wheels are mainly used for the movement of the cart frame and to prevent lifting during travel in the breeding area.
[0007] A further improvement to the present invention includes an outer loading frame inside the tilting unloading hopper, within which a tilting inner hopper is installed. A groove is formed at the bottom of the outer loading frame, and a frame-moving slide is connected to the bottom of the outer loading frame. An auxiliary roller is positioned parallel to the frame-moving slide. A discharge gate is fixed to one end of the tilting inner hopper. A frame-lowering pivot is fixed to the bottom of the outer loading frame, and a bottom-fixing rod is fixed to the bottom of the tilting inner hopper. A hydraulic rod is mounted on the bottom-fixing rod. The hydraulic rod is primarily used to lift the tilting inner hopper, thereby creating a swinging motion within the outer loading frame, tilting the feed-loaded tilting inner hopper to discharge the feed.
[0008] A further improvement to the present invention includes a door frame inside the unloading gate, with an even number of sleeve holes on the door frame. A first tilting door is located inside the door frame, and an even number of side blocks are installed on the door frame. A tilting door through slot is located in the center of the first tilting door, and a second tilting door is installed on the through slot. Locking rod blocks are located on both sides of the through slot, and each locking rod block contains a detachable connecting rod. An even number of hopper tilting ears are fixed on the door frame. The hopper tilting ears are mainly used to assist in tilting the inner hopper in conjunction with the rotating shaft under the frame. After tilting at a certain angle, the first tilting door opens to allow feed to be discharged.
[0009] In a further improvement to the invention, the hopper's tilting lug is connected to the lower pivot of the frame and performs hinged swinging. The detachable connecting rod is used for the installation of the detachable pusher. The sleeve hole is used for the nesting of the upper rod of the outer frame. The door frame is fixed to the end of the tilting inner hopper. The locking rod block is mainly used for connecting the detachable connecting rod. The detachable connecting rod is used for the installation and fixation of the detachable pusher, so that the detachable pusher can be installed on the detachable connecting rod during functional conversion.
[0010] In a further improvement to the present invention, the frame-side stop block is used to limit the first tilting door, the hydraulic rod is connected to the lifting platform, and the frame moving slide and the auxiliary roller platform cooperate with the lifting platform. The frame-side stop block mainly achieves the limiting support of the first tilting door through its own swing, preventing the first tilting door from swinging open when it does not need to be opened.
[0011] A further improvement to the present invention is that a sleeve seat is provided inside the detachable pusher, and an inclined guide drawer is connected to the sleeve seat. A pin plate passes through the sleeve seat, and an upper connecting shaft is installed at the end of the inclined guide drawer. A wheeled shovel plate is installed on the upper connecting shaft. The pin plate is mainly used to pass through the sleeve seat, and then indirectly through the inclined guide drawer to complete the connection and fixation between the inclined guide drawer and the sleeve seat.
[0012] In a further improvement to the present invention, the bottom of the wheeled shovel plate is equipped with ball bearings, the inclined guide drawer is fixed to the locking rod block by the sleeve rod seat, the sleeve rod seat partially penetrates into the swing door through groove, and the pin plate is used for connecting and fixing the inclined guide drawer and the sleeve rod seat.
[0013] A further improvement to the present invention is that the lifting platform is provided with a cross lifting frame, on which an even number of frame limiting plates are installed. One of the frame limiting plates is connected to a lifting drive motor, and an even number of upper sliding beams are fixed to the upper surface of the other frame limiting plate. Limit blocks are fixed to the side walls at two-thirds of the length of each frame limiting plate, and a connecting top shaft is fixed between the upper sliding beams. The upper sliding beams are mainly used to assist the sliding engagement of the frame moving slide, while the surface of the frame limiting plate is used for the lateral auxiliary movement of the auxiliary rolling platform.
[0014] In a further improvement to the invention, the connecting top shaft is connected to the top end of the hydraulic rod, the auxiliary roller table is located on the right side of the connecting top shaft, the frame moving slide slides in the sliding beam on the plate, the hydraulic rod is powered by the equipment box, and the lifting drive motor is electrically connected to the equipment box. One of the frame limiting plates is fixed to the lower protective frame of the frame. The lifting drive motor is mainly used to drive the cross lifting frame for upgrades, achieving height compensation for the material line box and completing height matching.
[0015] A further improvement to the invention is that the equipment box contains a housing, a charging port cover is installed on the side wall of the housing, a battery box is installed inside the housing, a hydraulic oil supply tank is located next to the battery box, an operation control console is installed on the housing, and a hose reel is fixed to the outer wall of the housing. One end of the hose reel is connected to the hydraulic oil supply tank via a pipe, and the other end is connected to the hydraulic rod via a pipe. The battery box supplies power to the lifting drive motor, and the lifting drive motor and the hydraulic oil supply tank are controlled by the operation control console. The hose reel is mainly used for winding the pipe, thereby compensating for length when the lifting platform rises and completing the hydraulic oil supply to the hydraulic rod.
[0016] Compared with the prior art, the present invention has the following beneficial effects;
[0017] 1. This invention uses an improved feed transport trolley to load feed into a tipping unloading hopper. After being transported to the designated position in the pen by a handle on the trolley frame, the lifting platform raises the height, and then the tipping unloading hopper lifts the inner hopper to match the height of the feed box. The feed can then be unloaded directly by opening the unloading door. Compared with the traditional method of manually lifting and placing feed into the box, this invention greatly simplifies the end-of-line operation process and improves operational efficiency and continuity.
[0018] 2. This invention adds a detachable shovel to one side of the tipping hopper. When in use, the wheeled shovel plate is in contact with the ground of the breeding pen and is pushed by the cart to remove residual dirt from the pen. The dirt enters the tipping hopper for collection along the shovel plate and is then discharged uniformly. Compared with traditional transport carts, it achieves the versatility of "feed transportation and dirt cleaning", indirectly improving the utilization rate of transport carts. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of a feed transport cart for broiler chickens according to the present invention;
[0020] Figure 2 This is a rear view schematic diagram of the frame structure of a broiler feed transport cart according to the present invention;
[0021] Figure 3 This is a rear-view structural diagram of the equipment box in a broiler feed transport cart according to the present invention;
[0022] Figure 4 This is a top view schematic diagram of the feeding device in a broiler feed transport cart according to the present invention;
[0023] Figure 5 This is a three-dimensional structural diagram of the lifting platform in a broiler feed transport cart according to the present invention.
[0024] Figure 6 This is a bottom view of the tipping unloading hopper in a broiler feed transport cart according to the present invention.
[0025] Figure 7 This is a front view schematic diagram of the unloading door in a broiler feed transport cart according to the present invention;
[0026] Figure 8 For the present invention Figure 6 A magnified schematic diagram of the structure at point A in the middle.
[0027] In the diagram: Transport trolley-1, Frame-11, Equipment box-12, Connecting frame-13, Rotary shaft seat-14, Pull handle-15, Shock-absorbing lifting wheel-16, Frame plate-111, Under-frame guard frame-112, Feeding device-113, Box shell-121, Charging port cover-122, Battery box-123, Control console-124, Hydraulic oil supply tank-125, Tube reel-126, Lifting platform-1131, Tilting unloading hopper-1132, Detachable pusher-1133, Cross lifting frame-11311, Lifting drive motor-11312, Frame limiting plate-11313, Upper sliding beam-11314, Limiting block-11315, Connecting top shaft-11316, Outer frame-11321, Tilting inner hopper -11322, Frame under groove -11323, Frame moving slide -11324, Auxiliary roller table -11325, Unloading door -11326, Frame under pivot -11327, Bucket bottom fixing rod -11328, Hydraulic rod -11329, Sleeve rod seat -11331, Inclined guide drawer -11332, Pin plate -11333, Wheeled shovel plate -11334, Drawer upper connecting shaft -11335, Door frame -113261, Sleeve hole -113262, First tilting door -113263, Frame side stop block -113264, Swing door through groove -113265, Second tilting door -113266, Locking rod block -113267, Detachable connecting rod -113268, Bucket tilting ear -113269. 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 7 As shown:
[0034] This embodiment provides a broiler feed transport cart, including a transport cart 1, a frame 11 inside the transport cart 1, an equipment box 12 fixed on the top surface of the frame 11, a connecting frame 13 inside the equipment box 12, a swivel seat 14 installed on the connecting frame 13, a pull handle 15 installed on the swivel seat 14, and an even number of shock-absorbing lifting wheels 16 on the frame 11.
[0035] Furthermore, the shock-absorbing lift wheel 16 is composed of elastic suspension and special anti-slip tire tread. A vertical travel of 60mm is reserved between the wheel axle and the frame 11. The spring in the elastic suspension absorbs the impact of the ground and the spring compression allows the wheel to sink to the solid ground and restore the ability to move.
[0036] The equipment box 12 is equipped with a housing 121, a charging port cover 122 is installed on the side wall of the housing 121, a battery box 123 is installed inside the housing 121, a hydraulic oil supply box 125 is installed next to the battery box 123, an operation control console 124 is installed on the housing 121, and a hose reel 126 is fixed on the outer wall of the housing 121.
[0037] Furthermore, the operation console 124 is used to control the battery box 123 and the hydraulic oil supply tank 125 respectively, and can also control the lifting drive motor 11312.
[0038] Furthermore, the hose reel 126 employs a driveless winding mechanism, but when one end is subjected to force, the built-in pipe is pulled outward. When the stressed end returns to its original position, the hose reel 126 then rewinds the released pipe back to its original position.
[0039] The frame 11 is equipped with a frame plate 111, and a lower frame guard frame 112 is fixed below the frame plate 111. A feeding device 113 is installed inside the lower frame guard frame 112. A lifting platform 1131 is installed inside the feeding device 113. A tilting unloading hopper 1132 is installed above the lifting platform 1131. A detachable pusher 1133 is installed at one end of the tilting unloading hopper 1132. A cross lifting frame 11311 is installed inside the lifting platform 11311. An even number of frame limiting plates 11313 are installed on the cross lifting frame 11311. A lifting drive motor 11312 is connected to one of the frame limiting plates 11313. An even number of upper sliding beams 11314 are fixed on the upper surface of the other frame limiting plate 11313. Limit blocks 11315 are fixed on the side walls of the frame limiting plate 11313 at two-thirds of the distance. A connecting top shaft 11316 is fixed between the upper sliding beams 11314.
[0040] Furthermore, the cross lifting frame 11311 is mainly driven by the drive motor 11312, which in turn drives the cross lifting frame 11311 to lift on the frame limiting plate 11313, thereby raising one of the frame limiting plates 11313.
[0041] Furthermore, the sliding beam 11314 installed on the frame limiting plate 11313 is mainly used to assist the frame moving slide 11324 in displacement. The maximum movement range is limited by the limiting block 11315 to prevent the overturned unloading hopper 1132 from exceeding the movement area.
[0042] The tilting unloading hopper 1132 is provided with an outer loading frame 11321, and a tilting inner hopper 11322 is installed inside the outer loading frame 11321. The bottom of the outer loading frame 11321 is provided with a frame groove 11323. The bottom of the outer loading frame 11321 is connected to a frame moving slide 11324. An auxiliary roller 11325 is provided in parallel with the frame moving slide 11324. One end of the tilting inner hopper 11322 is fixed with a discharge door 11326. The bottom of the outer loading frame 11321 is fixed with a frame rotating shaft 11327. The bottom of the tilting inner hopper 11322 is fixed with a hopper bottom fixing rod 11328. A hydraulic rod 11329 is installed on the hopper bottom fixing rod 11328.
[0043] Furthermore, the surface of the outer frame 11321 is mainly used for the tilting inner hopper 11322, and the tilting inner hopper 11322 is connected to the lower frame pivot 11327 through the unloading gate 11326 installed at the end, so as to complete the hinged swing of the tilting inner hopper 11322.
[0044] Furthermore, the frame moving slide 11324 is mainly fixed on the outer frame 11321. By cooperating with the sliding beam 11314 on the plate to form displacement, half of the outer frame 11321 can be displaced out of the frame limiting plate 11313.
[0045] Furthermore, one end of the hydraulic rod 11329 is installed at the bottom of the tipping hopper 11322, and the other end is connected to the connecting top shaft 11316. After the hydraulic rod 11329 is lifted, the tipping hopper 11322 is lifted, completing the angle change.
[0046] The unloading gate 11326 is equipped with a door frame 113261. The door frame 113261 has an even number of sleeve holes 113262. The door frame 113261 is equipped with a first tilting door 113263. The door frame 113261 is equipped with an even number of frame side blocks 113264. The first tilting door 113263 has a tilting door through slot 113265 in the center. The tilting door through slot 113265 is equipped with a second tilting door 113266. The tilting door through slot 113265 is equipped with locking rod blocks 113267 on both sides. The locking rod blocks 113267 are equipped with detachable connecting rods 113268. The door frame 113261 is fixed with an even number of bucket tilting ears 113269.
[0047] Furthermore, the first tilting door 113263 is mainly secured by the frame side block 113264 installed on the door frame 113261 to prevent the first tilting door 113263 from swinging arbitrarily and causing the feed loaded inside to slip off.
[0048] Furthermore, the swing door through slot 113265 is located in the center of the first swing door 113263, and is covered by the second swing door 113266, so that the damping property of the second swing door 113266 completes the closure of the door through slot 113265.
[0049] Furthermore, the hopper body tilting lug 113269 is mainly used for the tilting inner hopper 11322 connected to the door frame 113261 to swing with hinges, so that the tilting inner hopper 11322 can be hinged on the frame under pivot 11327 on the outer frame 11321.
[0050] The specific working principle is as follows:
[0051] This invention involves driving the pusher 1 to a designated position, loading feed into the tipping unloading hopper 1132, and using the pull handle 15 to push the connecting frame 13 to move the frame 11 in conjunction with the shock-absorbing lifting wheels 16. The rotating shaft seat 14 allows the pull handle 15 to adjust its angle. After reaching the designated position, the feeding and loading 113 in the under-frame guard frame 112 below the frame plate 111 completes the conveying of feed. The equipment box 12 triggers the lifting platform 1131, and the cross-upgrading frame 11311, with the cooperation of the upgrading drive motor 11312, lifts one of the frame limiting plates 11313. The frame moving slide 11324 connected in the slide groove 11314 on the plate... The outer frame 11321 is moved to the limit block 11315, so that half of the outer frame 11321 is suspended in the air. At the same time, the inner hopper 11322 is triggered. The hydraulic rod 11329, with the assistance of the bottom fixing rod 11328, lifts the top shaft 11316 at the other end. The inner hopper 11322 is hinged and swung up. After reaching a certain angle, the side stop block 113264 is moved, so that the first tilting door 113263 in the door frame 113261 is opened, allowing the feed to slide down into the feed box at a certain height. Compared with the traditional method of manually lifting and putting the feed into the box, this greatly simplifies the end operation process and improves the efficiency and continuity of operation.
[0052] Example 2: As shown in the attached document Figure 4 Appendix Figure 6 To be continued Figure 8 As shown:
[0053] The feeding device 113 includes a lifting platform 1131, a tilting unloading hopper 1132 mounted above the lifting platform 1131, a detachable pusher 1133 mounted at one end of the tilting unloading hopper 1132, an outer frame 11321 inside the tilting unloading hopper 1132, a tilting inner hopper 11322 inside the outer frame 11321, a frame groove 11323 at the bottom of the outer frame 11321, a frame moving slide 11324 connecting the outer frames 11321, an auxiliary roller 11325 positioned parallel to the frame moving slide 11324, a discharge gate 11326 fixed at one end of the tilting inner hopper 11322, a frame under-rotating shaft 11327 fixed at the bottom of the outer frame 11321, a hopper bottom fixing rod 11328 fixed at the bottom of the tilting inner hopper 11322, and a hydraulic rod 11329 mounted on the hopper bottom fixing rod 11328.
[0054] The detachable pusher 1133 is equipped with a sleeve seat 11331, and a slanted guide drawer 11332 is connected to the sleeve seat 11331. A pin plate 11333 passes through the sleeve seat 11331. A drawer-top connecting shaft 11335 is installed at the end of the slanted guide drawer 11332, and a wheeled shovel plate 11334 is installed on the drawer-top connecting shaft 11335.
[0055] Furthermore, the sleeve seat 11331 is mainly used to nest the detachable connecting rod 113268, and through the partial through-swing door through-slot 113265, the wheeled shovel plate 11334 shovels the collected dirt directly into the tipping inner hopper 11322.
[0056] Furthermore, the pin plate 11333 is mainly used to pass through the sleeve rod seat 11331 and the inclined guide drawer 11332 connected between the sleeve rod seat 11331, to fix the inclined guide drawer 11332 and to guide the waste.
[0057] Furthermore, the wheeled shovel 11334 has ball bearings at the bottom. Through the ball bearings, in conjunction with the shovel that fits in front, waste in the breeding pen is collected, and the waste is transferred and processed in conjunction with the transport shovel.
[0058] The unloading gate 11326 is equipped with a door frame 113261. The door frame 113261 has an even number of sleeve holes 113262. The door frame 113261 is equipped with a first tilting door 113263. The door frame 113261 is equipped with an even number of frame side blocks 113264. The first tilting door 113263 has a tilting door through slot 113265 in the center. The tilting door through slot 113265 is equipped with a second tilting door 113266. The tilting door through slot 113265 is equipped with locking rod blocks 113267 on both sides. The locking rod blocks 113267 are equipped with detachable connecting rods 113268. The door frame 113261 is fixed with an even number of bucket tilting ears 113269.
[0059] Furthermore, the locking rod blocks 113267 provided on both sides of the swing door through groove 113265 are mainly for the installation of the detachable connecting rod 113268, so that the detachable connecting rod 113268 can be connected with the sleeve rod seat 11331 to complete the fixation of the sleeve rod seat 11331.
[0060] The specific working principle is as follows:
[0061] This invention involves lowering the lifting platform 1131 to the same height as the frame plate 111, then installing a detachable pusher 1133 on the tilting unloading hopper 1132. At the center of the door frame 113261, locking rod blocks 113267 on both sides of the swing door through slot 113265 fix the detachable connecting rod 113268. Then, a sleeve rod seat 11331 is nested onto the rod body and locked with a nut. The sleeve rod seat 11331 partially penetrates the swing door through slot 113265. Finally, an inclined guide drawer 11332 is installed between the sleeve rod seats 11331, secured by a pin plate 11333. The inclined guide drawer 11332 is fixed through the two. The inclined guide drawer 11332 is tilted, and the connecting shaft 11335 at the end of the drawer connects to the wheeled shovel 11334. The wheeled shovel 11334 is attached to the ground of the breeding pen. The pull handle 15 pushes the frame 11, allowing the shovel to shovel the waste in the pen. As the waste accumulates on the inclined guide drawer 11332, it moves and eventually falls into the tipping inner hopper 11322 for subsequent cleaning. When transporting feed, the detachable push shovel 1133 can be disassembled, indirectly improving the utilization rate of the transport cart.
[0062] 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.
[0063] 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.
[0064] 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 feed transport cart for broiler chickens, characterized in that, The system includes a transport trolley (1), a frame (11) is provided inside the transport trolley (1), an equipment box (12) is fixed on the top surface of the frame (11), a connecting frame (13) is provided inside the equipment box (12), a swivel seat (14) is installed on the connecting frame (13), a pull handle (15) is installed on the swivel seat (14), an even number of shock-absorbing lifting wheels (16) are provided on the frame (11), a frame plate (111) is provided inside the frame (11), a lower frame guard frame (112) is fixed below the frame plate (111), and a feeding device (113) is installed inside the lower frame guard frame (112). The feeding device (113) is equipped with a lifting platform (1131), and a tilting unloading hopper (1132) is installed above the lifting platform (1131). A detachable pusher (1133) is installed at one end of the tilting unloading hopper (1132). The tilting unloading hopper (1132) is provided with an outer frame (11321), and a tilting inner hopper (11322) is installed inside the outer frame (11321). The bottom of the outer frame (11321) is provided with a frame groove (11323). The bottom of the outer frame (11321) is connected to a frame moving slide (11324). An auxiliary roller (11325) is provided parallel to the frame moving slide (11324). A discharge door (11326) is fixed at one end of the tilting inner hopper (11322). A frame under rotating shaft (11327) is fixed at the bottom of the outer frame (11321). A hopper bottom fixing rod (11328) is fixed at the bottom of the tilting inner hopper (11322). A hydraulic rod (11329) is installed on the hopper bottom fixing rod (11328). The unloading gate (11326) is provided with a door frame (113261), and the door frame (113261) has an even number of sleeve holes (113262). The door frame (113261) is provided with a first swing door (113263), and the door frame (113261) is equipped with an even number of frame side blocks (113264). A swing door is provided in the center of the first swing door (113263). A through slot (113265) is provided, and a second tilting door (113266) is installed on the through slot (113265). Locking rod blocks (113267) are provided on both sides of the through slot (113265), and detachable connecting rods (113268) are installed in each of the locking rod blocks (113267). An even number of bucket tilting ears (113269) are fixed on the door frame (113261). The hopper body tilting lug (113269) is connected to the frame under pivot (11327) and hinges and swings. The detachable connecting rod (113268) is used for the installation of the detachable pusher (1133). The sleeve hole (113262) is used for the nesting of the rod body on the outer frame (11321). The door frame (113261) is fixed to the end of the tilting inner hopper (11322). The detachable pusher (1133) is provided with a sleeve seat (11331), and an inclined guide drawer (11332) is connected to the sleeve seat (11331). A pin plate (11333) passes through the sleeve seat (11331). An upper connecting shaft (11335) is installed at the end of the inclined guide drawer (11332), and a wheeled shovel plate (11334) is installed on the upper connecting shaft (11335).
2. The broiler feed transport cart according to claim 1, characterized in that: The frame side stop (113264) is used to limit the first tilting door (113263), the hydraulic rod (11329) is connected to the lifting platform (1131), and the frame moving slide (11324) and the auxiliary rolling platform (11325) cooperate with the lifting platform (1131).
3. The broiler feed transport cart according to claim 1, characterized in that: The wheeled shovel plate (11334) has a ball bearing at the bottom. The inclined guide drawer (11332) is fixed to the locking rod block (113267) through the sleeve rod seat (11331). The sleeve rod seat (11331) is partially inserted into the swing door through groove (113265). The pin plate (11333) is used to connect and fix the inclined guide drawer (11332) and the sleeve rod seat (11331).
4. The broiler feed transport cart according to claim 2, characterized in that: The lifting platform (1131) is equipped with a cross lifting frame (11311), and an even number of frame limiting plates (11313) are installed on the cross lifting frame (11311). A lifting drive motor (11312) is connected to one of the frame limiting plates (11313), and an even number of upper sliding beams (11314) are fixed on the upper surface of the other frame limiting plate (11313). Limiting blocks (11315) are fixed on the side walls of the frame limiting plate (11313) at two-thirds of the distance. A connecting top shaft (11316) is fixed between the upper sliding beams (11314).
5. A broiler feed transport cart according to claim 4, characterized in that: The connecting top shaft (11316) is connected to the top of the hydraulic rod (11329). The auxiliary roller table (11325) is located on the right side of the connecting top shaft (11316). The frame moving slide (11324) slides in the sliding beam (11314) on the plate. The hydraulic rod (11329) is powered by the equipment box (12). The lifting drive motor (11312) is electrically connected to the equipment box (12). One of the frame limiting plates (11313) is fixed in the lower frame guard frame (112).
6. The broiler feed transport cart according to claim 5, characterized in that: The equipment box (12) is provided with a box shell (121), and a charging port cover (122) is installed on the side wall of the box shell (121). A battery box (123) is provided inside the box shell (121), and a hydraulic oil supply tank (125) is provided next to the battery box (123). An operation control console (124) is installed on the box shell (121). A hose reel (126) is fixed on the outer wall of the box shell (121). One end of the hose reel (126) is connected to the hydraulic oil supply tank (125) through a pipe, and the other end is connected to the hydraulic rod (11329) through a pipe. The battery box (123) is used to supply power to the lifting drive motor (11312). The lifting drive motor (11312) and the hydraulic oil supply tank (125) are controlled by the operation control console (124).
Citation Information
Patent Citations
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