Bulk feed wagon with controllable discharge flow

By installing a disinfection spray device on bulk feed trucks, and using arched support pipes and atomizing spray pipes to achieve automated disinfection, the problem of cumbersome disinfection processes in existing technologies has been solved, and unloading efficiency and transportation timeliness have been improved.

CN121929050BActive Publication Date: 2026-06-16FUJIAN SUNNER DEV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FUJIAN SUNNER DEV
Filing Date
2026-03-30
Publication Date
2026-06-16

AI Technical Summary

Technical Problem

Currently, bulk feed transport vehicles need to enter the farm for disinfection when unloading, which is a cumbersome and time-consuming process that affects transportation efficiency.

Method used

A disinfection spray device is installed on the drive beam on the side of the tank. Water mist disinfection is formed by arched support pipes and atomizing spray pipes. Combined with a disinfection water supply tank and inlet pipe, automated disinfection is achieved.

Benefits of technology

It achieves automated disinfection without manual operation, shortens operation time, and ensures unloading progress and transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a bulk feed vehicle with controllable unloading flow. The bulk feed vehicle with controllable unloading flow comprises a transport vehicle, the transport vehicle comprises a vehicle body, a transport tank is arranged at the back of the vehicle body, a flow guide cover is arranged above the front of the vehicle body, an even number of in-cover cable winders are arranged in the flow guide cover, a disinfection water supply tank is fixed to the side wall of the vehicle body, and a water inlet guide pipe is arranged on the side wall of the in-cover cable winder. The disinfection spraying device is arranged on the tank side driving beam, the arch-shaped supporting pipe is arranged in a shape of arch, and the tank body is covered by the arch-shaped supporting pipe; under the cooperation of the disinfection water supply tank and the water inlet guide pipe, the disinfection water is transported to the atomizing spraying pipe and the extension spraying pipe frame, the atomizing spraying pipe and the atomizing strips on the extension spraying pipe frame are synchronously acted to form the disinfection water mist along with the displacement of the driving beam and the arch-shaped supporting pipe, the disinfection water mist is sprayed to cover the tank body and the surface of the vehicle body, manual operation is not needed for automatic disinfection, the operation time is shortened, and the unloading progress and the transport time limit are effectively ensured.
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Description

Technical Field

[0001] This invention relates to the field of vehicle technology, specifically to a bulk feed truck with controllable unloading flow rate. Background Technology

[0002] Bulk feed transport vehicles are specialized vehicles designed for transporting bulk feed. The main body is a sealed tank equipped with conveying devices such as screw conveyors or pneumatic fluidized beds. They are leak-proof and moisture-proof, preventing feed contamination and spoilage. During unloading, the feed is quickly transported to the target location by motor or pneumatic drive, with an efficiency three to five times that of bagged feed. This eliminates the need for packing and unpacking, reducing labor costs and losses. They are widely used for short-distance transportation in farms and feed mills.

[0003] However, the existing technology has the following shortcomings: Currently, bulk feed transport vehicles mainly travel between feed plants and farms, and need to enter each feed tower in the farm to unload the feed. Due to the requirements of farm disease prevention and control, external vehicles need to be disinfected to prevent disease from entering the area. However, most existing bulk feed transport vehicles rely entirely on manual disinfection, which is cumbersome and time-consuming. This not only delays the unloading progress but also affects the transportation efficiency. 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 bulk feed truck with controllable unloading flow. A disinfection spray device is installed on the tank-side drive beam, and an arched support pipe covers the tank body. The disinfection water tank and the water inlet pipe deliver water to the atomizing spray pipe and the extended spray pipe. With the auxiliary displacement of the tank-side drive beam, the atomizing strips of the two form water mist to disinfect the tank body and the surface of the vehicle body, shortening the traditional time consumption and ensuring the unloading progress and transportation efficiency.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a bulk feed truck with controllable unloading flow rate, comprising a transport vehicle, the transport vehicle including a vehicle body, a transport tank installed at the rear of the vehicle body, a flow guide shroud installed above the front of the vehicle body, an even number of in-shroud cable reels installed inside the flow guide shroud, a disinfection water supply tank fixed to the side wall of the vehicle body, a water inlet pipe installed on the side wall of each in-shroud cable reel, a water outlet auxiliary column installed at the top of each in-shroud cable reel, a liquid supply stretching pipe nested within the water outlet auxiliary column, and a control device installed on the water inlet pipe. The valve has a C-shaped three-way connector at the end of the water inlet pipe, and a front wheel flushing hood is connected to one of the pipes of the C-shaped three-way connector; the transport tank contains a tank body, an even number of tank support platforms are installed on the top of the tank body, each tank support platform is fixed with a platform guardrail, and each platform guardrail side wall is fixed with a side limit rod; a rear ladder is installed at the rear of the tank body, and a disinfection spray device is installed on the side limit rod; an even number of feed sealing caps are installed on the top of the tank body, tank side drive beams are fixed on both sides of the tank body, and several tank bases are fixed at the bottom of the tank body.

[0007] In a further improvement to the present invention, the disinfection spray device includes an arched support pipe, an even number of sliding sleeve rods fixed on the arched support pipe, an even number of atomizing spray pipes nested on the arched support pipe, a water distribution box installed beside the arched support pipe, a lower guide pipe installed in front of the water distribution box, an inner guide pipe installed behind the water distribution box, an extended spray pipe frame fixed on the outer wall of the end of the arched support pipe, and an auxiliary movable seat fixed on the bottom surface of the arched support pipe.

[0008] In a further improvement to the present invention, an auxiliary swing water supply seat is installed on the extended spray pipe frame, and a lower swing spray block is installed between the auxiliary swing water supply seats, with hooks installed on both sides of the lower swing spray block.

[0009] In a further improvement to the present invention, the hook is attached to the lower guide diversion pipe, the lower swing spray block is hinged and swings through the auxiliary swing water supply seat, the extended spray pipe frame is welded and fixed to the outer wall of the arched layout support pipe, the top of the water distribution box is connected to the liquid supply stretching pipe, the auxiliary movable seat is slidably engaged with the tank side drive beam, the liquid supply stretching pipe can be stored in the cable reel inside the cover, and the water inlet pipe is connected to the disinfection water supply tank.

[0010] In a further improvement to the present invention, atomizing strips are installed on the inner walls of the arched support pipe and the extended spray pipe frame, a welding block is provided in the auxiliary movable seat, a wheeled slide block is provided below the welding block, and an even number of seat toothed discs are installed on the wheeled slide block.

[0011] In a further improvement to the present invention, the upper gear plate of the seat cooperates with the tank-side drive beam, the pulley slide block slides within the tank-side drive beam, the upper surface of the welded block is fixed to the bottom of the arched support tube, and the lower surface of the welded block is fixed to the upper surface of the pulley slide block.

[0012] In a further improvement to the present invention, a slot is provided on the tank-side drive beam, a lower support frame is provided below the tank-side drive beam, an even number of toothed auxiliary wheels are installed in the slot on the beam, an even number of drive motors are fixed on the lower support frame, and a chain drive wheel is connected to the front of each drive motor. Pulley grooves are provided on both sides of the slot on the beam.

[0013] In a further improvement to the present invention, the inner pulley groove of the beam is slidably engaged with the pulley slide block, the drive motor can be controlled by the vehicle body front, the toothed auxiliary wheel in the groove meshes with the chain on the chain drive wheel, the chain on the chain drive wheel meshes with the chain drive wheel, and the lower support frame is welded to the solid tank base.

[0014] In a further improvement to the present invention, an oil tank is installed next to the disinfection water supply tank, an electrically controlled air box is fixed to the side wall of the vehicle body, a flow-controlled unloading box is fixed to the other side wall of the vehicle body, an air storage tank is fixed to the cylinder side of the flow-controlled unloading box, the disinfection water supply tank includes a water tank, a dual-pump extraction box is installed above the water tank, the electrically controlled air box is connected to an air supply pipeline, and a discharge pipe with a flow-controlled valve is installed inside the flow-controlled unloading box.

[0015] In a further improvement to the present invention, the flow control valve of the discharge pipe with flow control valve is set in the flow control unloading box, while the discharge pipe is connected to the bottom of the tank body, the air supply pipe is connected to the tank body, the dual pump extraction box is connected to the water inlet pipe, and the electric control air box is cooperated with the air storage tank.

[0016] Compared with the prior art, the present invention has the following beneficial effects;

[0017] 1. This invention installs a disinfection spray device on the drive beam on the side of the tank, and uses an arched arrangement of support pipes to form a covering structure for the tank body. With the coordinated operation of the disinfection water supply tank and the water inlet pipe, disinfectant water is delivered to the atomizing spray pipe and the extended spray pipe frame. As the drive beam moves the arched support pipe, the atomizing spray pipe and the atomizing strips on the extended spray pipe frame work synchronously to form disinfectant water mist, which covers the tank body and the vehicle body surface for spray disinfection. Ultimately, it achieves automated disinfection without manual operation, shortens operation time, and effectively ensures unloading progress and transportation efficiency.

[0018] 2. The present invention installs the cable reel inside the shroud. By means of the displacement of the arched support pipe on the tank-side drive beam, the liquid supply tension pipe on the cable reel is stretched to achieve water supply pipe length compensation, ensuring that disinfectant is fully supplied during the displacement of the arched support pipe. After use, the extended water supply pipe can also be retracted and stored.

[0019] 3. This invention achieves spray disinfection of the rear wheels of the vehicle by manually detaching the hook of the lower swing spray block from the auxiliary swing water supply seat and hanging the lower guide diversion pipe, and then compensating for the length of the arched support pipe and extended spray pipe frame. At the same time, the front wheels of the vehicle are cleaned by the front wheel washing cover, avoiding disinfection omissions and the introduction of pathogens into the area. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of a bulk feed truck with controllable unloading flow rate according to the present invention;

[0021] Figure 2 This is a side view schematic diagram of a bulk feed truck with controllable unloading flow rate according to the present invention.

[0022] Figure 3 This is a rear view schematic diagram of the transport tank in a bulk feed truck with controllable unloading flow rate according to the present invention.

[0023] Figure 4 This is a side view of the vehicle body of a bulk feed truck with controllable unloading flow rate according to the present invention.

[0024] Figure 5 This is a three-dimensional structural diagram of a disinfection spray device for a bulk feed truck with controllable unloading flow rate according to the present invention.

[0025] Figure 6 This is a partially enlarged schematic diagram of a disinfection spray device in a bulk feed truck with controllable unloading flow rate according to the present invention.

[0026] Figure 7 This is a bottom view of the water inlet pipe in a bulk feed truck with controllable unloading flow according to the present invention.

[0027] Figure 8 This is a side view of the tank-side drive beam in a bulk feed truck with controllable unloading flow rate according to the present invention.

[0028] Figure 9 For the present invention Figure 8 A magnified schematic diagram of the local structure at point A;

[0029] Figure 10 For the present invention Figure 8 A magnified schematic diagram of the structure at point B in the middle.

[0030] In the diagram: Transport vehicle-1, vehicle body-11, transport tank-12, flow deflector-111, cable reel inside the deflector-112, disinfection water supply tank-113, oil tank-114, electrically controlled gas box-115, flow-controlled unloading box-116, gas storage tank-117, tank body-121, tank support platform-122, platform guardrail-123, side limit bar-124, rear ladder-125, disinfection spray device-126, water inlet pipe-1121, water outlet auxiliary column-1122, liquid supply tension pipe-1123, water tank-1131, dual pump extraction box-1132, gas supply pipeline-1151, discharge pipe with flow control valve-1161, inlet sealing cover-1211, tank side drive beam-1212, fixed tank base-1213, arched support pipe-1261 1262, Sleeve sliding component - 1263, Atomizing spray pipe - 1264, Water distribution box - 1265, Lower guide diversion pipe - 1266, Extended spray pipe bracket - 1267, Auxiliary moving seat - 1268, Inner diversion pipe - 1269, Control valve - 11211, C-shaped three-way connector - 11212, Front wheel wash hood - 11213, Grooved beam - 12121, Lower support frame - 12 122. Toothed auxiliary wheel in the groove - 12123. Chain drive wheel - 12124. Drive motor - 12125. Pulley groove in the beam - 12126. Atomizing strip - 12611. Auxiliary swing water supply seat - 12661. Lower swing spray block - 12662. Hook - 12663. Welded block - 12671. Pulley slide - 12672. Gear plate on seat - 12673. 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 7 As shown:

[0037] This embodiment provides a bulk feed truck with controllable unloading flow rate, including a transport vehicle 1. The transport vehicle 1 includes a vehicle body 11, a transport tank 12 installed at the rear of the vehicle body 11, a flow guide 111 installed above the front of the vehicle body 11, an even number of cable reels 112 installed inside the flow guide 111, a disinfection water supply tank 113 fixed to the side wall of the vehicle body 11, an oil tank 114 installed next to the disinfection water supply tank 113, an electrically controlled air box 115 fixed to the side wall of the vehicle body 11, a flow-controlled unloading box 116 fixed to the other side wall of the vehicle body 11, an air storage tank 117 fixed to the cylinder side of the flow-controlled unloading box 116, the disinfection water supply tank 113 includes a water tank 1131, a dual-pump extraction box 1132 installed above the water tank 1131, an air supply pipe 1151 connected to the electrically controlled air box 115, and a discharge pipe 1161 with a flow control valve installed inside the flow-controlled unloading box 116.

[0038] Furthermore, at least two cable retractors 112 are provided inside the cover, both installed inside the flow guide cover 111. Through their own winding performance, they can be stretched or wound into the liquid stretching tube 1123 to achieve release and storage.

[0039] Furthermore, the discharge pipe 1161 with a flow control valve installed inside the flow control discharge box 116 forms an airflow bed through the air supply pipe 1151 connected to the electric control air box 115, and completes flow control discharge in conjunction with the pipe and control valve in the discharge pipe 1161 with a flow control valve.

[0040] Furthermore, the dual-pump extraction box 1132 is equipped with two booster water pumps, which enable the adjustment of the disinfectant in the water tank 1131. The two booster water pumps are independently connected to the inlet pipes 1121 and connected to the independent cable reel 112 inside the cover.

[0041] The inner cable reel 112 has an inlet conduit 1121 installed on its side wall, an outlet auxiliary column 1122 installed on its top, a liquid supply stretching pipe 1123 nested in the outlet auxiliary column 1122, a control valve 11211 installed on the inlet conduit 1121, and a C-shaped three-way connector 11212 connected to the end of the inlet conduit 11212. One of the pipes of the C-shaped three-way connector 11212 is connected to a front wheel flushing cover 11213.

[0042] Furthermore, the water supply auxiliary column 1122 is installed on the top of the cable reel 112 inside the cover, and has rollers inside to assist the liquid supply tensioning pipe 1123 in supplying water, so that the liquid supply tensioning pipe 1123 can be stretched or retracted more smoothly.

[0043] Furthermore, the C-shaped three-pipe connector 11212 is mainly connected to the dual-pump extraction box 1132, the inlet control valve 11211, and the front wheel flush cover 11213, respectively, and the front wheel flush cover 11213 can be closed independently by the valve.

[0044] Furthermore, the front wheel wash hood 11213 is installed on the inner wall of the mudguard of the front wheel of the vehicle body 11, facing the front wheel, thereby completing the disinfection spraying of the front wheel and preventing the wheel from carrying pathogens into the area.

[0045] The transport tank 12 contains a tank body 121. An even number of tank support platforms 122 are installed on the top of the tank body 121. Each tank support platform 122 is fixed with a platform guardrail 123. Each platform guardrail 123 is fixed with a side limit bar 124. A rear ladder 125 is installed at the rear of the tank body 121. A disinfection spray device 126 is installed on the side limit bar 124. An even number of feed sealing caps 1211 are installed on the top of the tank body 121. Tank side drive beams 1212 are fixed on both sides of the tank body 121. Several tank bases 1213 are fixed at the bottom of the tank body 121.

[0046] Furthermore, the disinfection spray device 126 is mainly installed on the tank-side drive beam 1212. The tank-side drive beam 1212 assists the disinfection spray device 126 in forming a displacement, thereby achieving comprehensive disinfection of the transport tank 12.

[0047] Furthermore, the side limit rod 124 is mainly fixed to the guardrail 123 on the platform, and both ends are welded to the guardrail 123 on the platform. The side limit rod 124 assists the disinfection spray device 126 in displacement.

[0048] The disinfection spray device 126 includes an arched support pipe 1261, an even number of sliding sleeve rods 1262 fixed on the arched support pipe 1261, an even number of atomizing spray pipes 1263 nested on the arched support pipe 1261, a water distribution box 1264 installed beside the arched support pipe 1261, a lower guide diversion pipe 1265 installed in front of the water distribution box 1264, an inner diversion pipe 1268 installed behind the water distribution box 1264, an extension spray pipe frame 1266 fixed on the outer wall of the end of the arched support pipe 1261, and an auxiliary movable seat 1267 fixed on the bottom surface of the arched support pipe 1261.

[0049] Furthermore, the arched support pipe 1261 consists of two arched support pipes, each of which is equipped with an atomizing spray pipe 1263. The atomization angles on the atomizing spray pipes 1263 are different and staggered, thereby expanding the disinfection range.

[0050] Furthermore, the arched support pipe 1261 is embedded in the spray pipe 1263 at the arched part, while the rest is formed by the atomizing strip 12611 cooperating with the water supply inside the support pipe to form a disinfecting water mist.

[0051] Furthermore, the water distribution box 1264 is fixed between two arched support pipes, and the disinfectant water is distributed and supplied through the lower guide pipe 1265 at the front and the inner branch pipe 1268 at the rear, so that the disinfectant water can enter the arched support pipe 1261 and the extended spray pipe frame 1266.

[0052] Furthermore, the auxiliary movable seat 1267 mainly assists the arched support pipe 1261 in forming displacement, allowing the arched support pipe 1261 to move laterally on the tank-side drive beam 1212 with the cooperation of the auxiliary movable seat 1267.

[0053] Among them, the inner walls of the arched support pipe 1261 and the extended spray pipe frame 1266 are equipped with atomizing strips 12611, the extended spray pipe frame 1266 is equipped with an auxiliary swing water supply seat 12661, the auxiliary swing water supply seats 12661 are equipped with a lower swing spray block 12662, and hooks 12663 are installed on both sides of the lower swing spray block 12662.

[0054] Furthermore, the auxiliary water supply base 12661 is mainly connected to the extended spray pipe frame 1266 to introduce part of the water flow into the auxiliary water supply base 12661, and then the incoming water flow is input into the lower spray block 12662.

[0055] Furthermore, the lower spray block 12662 is mainly formed by the hooks 12663 on both sides to complete the length compensation, so that the lower spray block 12662 moves together with the extended spray pipe frame 1266 and the arched support pipe 1261.

[0056] Furthermore, the atomizing strips 12611 installed on the inner walls of the arched support pipe 1261 and the extended spray pipe frame 1266 mainly realize the atomization of disinfectant water, thereby allowing the atomized disinfectant water to disinfect the vehicle body 11 and the transport tank 12 in all directions.

[0057] The specific working principle is as follows:

[0058] This invention uses a vehicle body 11 and a transport tank 12 to form a transport vehicle 1. After the transport vehicle 1 travels to the breeding farm area, the disinfection spray device 126 at one end of the tank support platform 122 above the tank body 121 is deployed, causing the auxiliary swing water supply seat 12661 and the auxiliary swing spray block 12662 on the extended spray pipe frame 1266 to swing down, and the hook 12663 to disengage from the lower guide diversion pipe 1265, allowing them to be arranged on both sides of the vehicle body 11 to compensate. Its remaining length, in conjunction with the dual-pump extraction box 1132 on the water tank 1131 and the C-shaped three-connector 11212, pressurizes and transmits the disinfectant water, allowing it to enter the cable reel 112 inside the hood, and then output from the supply tension pipe 1123 in the outlet auxiliary column 1122. The supply tension pipe 1123 is then displaced on the tank-side drive beam 1212 by the arched support pipe 1261 and the auxiliary movable seat 1267, atomizing the spray. The atomizing strips 12611 on the surface of the spray pipe 1263, the arched support pipe 1261, and the extended spray pipe frame 1266 form a disinfecting water mist, achieving all-round disinfection of the transport tank 12 and the vehicle body 11. The lower spray block 12662 sprays the rear wheels of the vehicle body 11, while the front wheels are disinfected by the front wheel washing cover 11213 on the C-shaped three-pipe, to avoid omissions and prevent the entry of infected vehicles into the area. After disinfection, the vehicles enter the site and unload the feed tower. The electric control air box 115 controls the operation of the air compressor built into the vehicle body 11. After the gas enters the air storage tank 117, it is controlled by the electric control air box 115 and finally input into the tank 121 through the air supply pipe 1151, forming a pressurization of the tank 121. After reaching the specified pressure, the flow control valve in the flow control unloading box 116 connected to the pipeline is opened to control the flow. The bulk feed is discharged from the discharge pipe and enters the corresponding feed tower for storage.

[0059] Example 2: As shown in the attached document Figure 5 To be continued Figure 6 Appendix Figure 8 To be continued Figure 10 As shown:

[0060] The disinfection spray device 126 includes an arched support pipe 1261, an even number of sliding sleeve rods 1262 fixed on the arched support pipe 1261, an even number of atomizing spray pipes 1263 nested on the arched support pipe 1261, a water distribution box 1264 installed beside the arched support pipe 1261, a lower guide pipe 1265 installed in front of the water distribution box 1264, and an inner distributor installed behind the water distribution box 1264. An extended spray pipe frame 1266 is fixed on the outer wall of the end of the flow pipe 1268 and the arched support pipe 1261. An auxiliary movable seat 1267 is fixed on the bottom surface of the arched support pipe 1261. An auxiliary swing water supply seat 12661 is installed on the extended spray pipe frame 1266. A lower swing spray block 12662 is installed between the auxiliary swing water supply seats 12661. Hooks 12663 are installed on both sides of the lower swing spray block 12662.

[0061] Among them, the inner walls of the arched support pipe 1261 and the extended spray pipe frame 1266 are equipped with atomizing strips 12611, the auxiliary movable seat 1267 is provided with a welding block 12671, the welding block 12671 is provided with a wheeled slide seat 12672 below it, and an even number of seat toothed discs 12673 are installed on the wheeled slide seat 12672.

[0062] Furthermore, the atomizing strip 12611 is mainly used to form an atomization effect after the arched support pipe 1261 and the extended spray pipe frame 1266 supply disinfectant water, thereby completing the formation of disinfectant water mist around the tank 121.

[0063] Furthermore, the welded block 12671 is mainly used to support the bottom of the arched support pipe 1261. It cooperates with the wheeled sliding block 12672 fixed below to complete the sliding cooperation with the tank-side drive beam 1212, thereby forming displacement.

[0064] Furthermore, two gear discs 12673 are provided on the seat, respectively installed on the left and right sides of the pulley slide block 12672, to cooperate with the internal drive of the tank side drive beam 1212 to form a connection, complete the transmission, and drive the pulley slide block 12672 to move automatically.

[0065] The tank-side drive beam 1212 has a slot 12121, and a lower support frame 12122 is provided below the tank-side drive beam 1212. An even number of toothed auxiliary wheels 12123 are installed in the slot 12121. An even number of drive motors 12125 are fixed on the lower support frame 12122. Each drive motor 12125 is connected to a chain drive wheel 12124 in front of it. The slot 12121 has pulley grooves 12126 on both sides.

[0066] Furthermore, the lower support frame 12122 is mainly welded to the side wall of the solid tank base 1213 to support and fix the drive motor 12125, allowing the chain drive wheel 12124 connected to the front of the drive motor 12125 to complete the chain drive.

[0067] Furthermore, the chain drive wheel 12124 is equipped with a chain belt, which is driven by the drive wheel to make the chain belt rotate synchronously. It works with at least two slotted toothed auxiliary wheels 12123 to form a transmission assistance, allowing the gear plate 12673 on the seat to form a lateral displacement.

[0068] Furthermore, the pulley groove 12126 inside the beam mainly assists the pulley slide block 12672 in displacement during the lateral displacement of the gear plate 12673 on the seat, so that the arched support pipe 1261 above the indirectly transmitted welded block 12671 of the pulley slide block 12672 also moves.

[0069] The specific working principle is as follows:

[0070] This invention activates the drive motor 12125 on the lower support frame 12122 inside the front of the vehicle body 11. The two drive motors 12125 drive synchronously, causing the chain drive wheel 12124 to rotate. This drives the toothed auxiliary wheel 12123 in the slot 12121 of the chain drive beam, which in turn drives the toothed discs 12673 on both sides of the auxiliary pulley slide 12672. This indirectly causes displacement of the arched support tube 1261 above the welded block 12671. Meanwhile, the rollers on the pulley slide block 12672 move in the pulley groove 12126 inside the beam, causing the arched support pipe 1261 to slowly move laterally in the driving beam 1212 on the side of the tank. This drives the atomizing spray pipe 1263, the arched support pipe 1261, and the extended spray pipe frame 1266 to form atomized spray, completing the atomized disinfection of the transport tank 12. This automated drive eliminates the tedious steps of manual disinfection, shortens the operation time, and effectively ensures the unloading progress and transportation efficiency.

[0071] 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.

[0072] 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.

[0073] 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 bulk feed wagon with controllable discharge flow, characterized in that, The vehicle includes a transport vehicle (1), which includes a vehicle body (11). A transport tank (12) is installed at the rear of the vehicle body (11). A flow deflector (111) is installed above the front of the vehicle body (11). An even number of cable reels (112) are installed inside the flow deflector (111). A disinfection water supply tank (113) is fixed to the side wall of the vehicle body (11). A water inlet pipe (1121) is installed on the side wall of the cable reel (112). The top of the cable reel (112) inside the cover is equipped with a water outlet auxiliary column (1122), and a liquid supply tension pipe (1123) is nested in the water outlet auxiliary column (1122). A control valve (11211) is installed on the water inlet pipe (1121), and a C-shaped three-way connector (11212) is connected to the end of the water inlet pipe (1121). A front wheel flush cover (11213) is connected to one of the pipes of the C-shaped three-way connector (11212). The transport tank (12) is equipped with a tank body (121). An even number of tank support platforms (122) are installed on the top of the tank body (121). Each tank support platform (122) is fixed with a platform guardrail (123). Each platform guardrail (123) is fixed with a side limit rod (124). A rear ladder (125) is installed at the rear of the tank body (121). A disinfection spray device (126) is installed on the side limit rod (124). The top of the tank (121) is equipped with an even number of inlet sealing caps (1211), and the tank side drive beams (1212) are fixed on both sides of the tank (121). The bottom of the tank (121) is fixed with several tank bases (1213). The disinfection spray device (126) includes an arched support pipe (1261), an even number of sliding sleeve rods (1262) fixed on the arched support pipe (1261), an even number of atomizing spray pipes (1263) nested on the arched support pipe (1261), a water distribution box (1264) installed beside the arched support pipe (1261), a lower guide diversion pipe (1265) installed in front of the water distribution box (1264), an inner diversion pipe (1268) installed behind the water distribution box (1264), an extension spray pipe frame (1266) fixed on the outer wall of the end of the arched support pipe (1261), and an auxiliary movable seat (1267) fixed on the bottom surface of the arched support pipe (1261).

2. A bulk feed wagon with controllable discharge flow according to claim 1, characterized in that: An auxiliary swing water supply seat (12661) is installed on the extended spray pipe frame (1266), and a lower swing spray block (12662) is installed between the auxiliary swing water supply seats (12661). Hooks (12663) are installed on both sides of the lower swing spray block (12662).

3. A bulk feed truck with controllable unloading flow rate according to claim 2, characterized in that: The hook (12663) is attached to the lower guide diversion pipe (1265), the lower swing spray block (12662) swings through the auxiliary swing water supply seat (12661), the extended spray pipe frame (1266) is welded and fixed to the outer wall of the arched layout support pipe (1261), the top of the water distribution box (1264) is connected to the liquid supply stretching pipe (1123), the auxiliary moving seat (1267) is slidably engaged with the tank side drive beam (1212), the liquid supply stretching pipe (1123) can be stored in the inner cable reel (112), and the water inlet pipe (1121) is connected to the disinfection water supply tank (113).

4. A bulk feed truck with controllable unloading flow rate according to claim 3, characterized in that: The inner walls of the arched support pipe (1261) and the extended spray pipe frame (1266) are both equipped with atomizing strips (12611). A welding block (12671) is provided inside the auxiliary movable seat (1267). A wheeled slide seat (12672) is provided below the welding block (12671). An even number of seat toothed discs (12673) are installed on the wheeled slide seat (12672).

5. A bulk feed truck with controllable unloading flow rate according to claim 4, characterized in that: The upper gear plate (12673) cooperates with the tank-side drive beam (1212), the pulley slide (12672) slides within the tank-side drive beam (1212), the upper surface of the welded block (12671) is fixed to the bottom of the arched support tube (1261), and the lower surface of the welded block (12671) is fixed to the upper surface of the pulley slide (12672).

6. A bulk feed truck with controllable unloading flow rate according to claim 5, characterized in that: The tank-side drive beam (1212) has a slot (12121) on the beam, and a lower support frame (12122) is provided below the tank-side drive beam (12122). An even number of toothed auxiliary wheels (12123) are installed in the slot (12121). An even number of drive motors (12125) are fixed on the lower support frame (12122). Each drive motor (12125) is connected to a chain drive wheel (12124) in front of it. The slot (12121) on the beam has pulley grooves (12126) on both sides.

7. A bulk feed truck with controllable unloading flow rate according to claim 6, characterized in that: The inner pulley groove (12126) of the beam is slidably engaged with the pulley slide block (12672). The drive motor (12125) can be controlled by the front of the vehicle body (11). The toothed auxiliary wheel (12123) in the groove meshes with the chain on the chain drive wheel (12124). The chain on the chain drive wheel (12124) meshes with the chain drive wheel (12124). The lower support frame (12122) is welded to the solid tank base (1213).

8. A bulk feed truck with controllable unloading flow rate according to claim 3, characterized in that: An oil tank (114) is installed next to the disinfection water supply tank (113). An electric control air box (115) is fixed to the side wall of the vehicle body (11). A flow control unloading box (116) is fixed to the other side wall of the vehicle body (11). An air storage tank (117) is fixed to the cylinder side of the flow control unloading box (116). The disinfection water supply tank (113) includes a water tank (1131). A dual pump extraction box (1132) is installed above the water tank (1131). An air supply pipe (1151) is connected to the electric control air box (115). A discharge pipe (1161) with a flow control valve is installed inside the flow control unloading box (116).

9. A bulk feed truck with controllable unloading flow rate according to claim 8, characterized in that: The flow control valve of the discharge pipe (1161) with flow control valve is installed in the flow control unloading box (116), and the discharge pipe is connected to the bottom of the tank (121). The gas supply pipe (1151) is connected to the tank (121). The dual pump extraction box (1132) is connected to the water inlet pipe (1121). The electric control gas box (115) is matched with the gas storage tank (117).