Packaging material loading intelligent hanging feeder and use method
By designing a quick unloading, feeding, and leak-proof structure for the intelligent suspended feeding vehicle, the problems of difficult maintenance, low efficiency, and material and oil leakage of existing suspended feeding vehicles have been solved, achieving convenient maintenance and efficient transportation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2026-03-10
AI Technical Summary
Existing suspended material feeding vehicles cannot be unloaded quickly, making maintenance inconvenient and resulting in long repair and maintenance times; materials cannot be unloaded quickly, reducing work efficiency; and material and oil leaks are prone to occur during operation, affecting product quality.
A smart suspended feeding cart for packaging was designed, which adopts a slide rail, a conveyor cart, sliding wheels and maintenance components. The clamping head and clamping structure are driven by a pneumatic rod and an electric motor to achieve rapid unloading. A feeding component and a discharge component are installed, which use an electric motor and a stirring rod to quickly discharge materials. A pressure detection component and a processing module are set up to control the pressure of the blocking plate in real time to prevent oil leakage.
It enables the rapid unloading of the suspended feeding vehicle for easy inspection and maintenance, reducing maintenance time; it also enables rapid material unloading to improve work efficiency; and it prevents material and oil leakage, ensuring the stability and safety of the conveying process.
Smart Images

Figure CN120288315B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of material feeding vehicle technology, specifically to an intelligent suspended material feeding vehicle for packaging and its usage method. Background Technology
[0002] Automated konjac feeding can reduce reliance on manual labor, thereby lowering labor costs. Simultaneously, intelligent suspended feeding vehicles can reduce material waste and damage, further reducing production costs. These vehicles employ precise control systems and sensor technology to ensure the accuracy and stability of materials during transport, contributing to improved product quality and consistency. However, existing suspended feeding vehicles cannot be quickly unloaded, making inspection and maintenance inconvenient and increasing repair and maintenance time.
[0003] The existing suspended material supply vehicles have the following drawbacks:
[0004] 1. Patent document CN110498186B discloses a movable suspended conveyor mechanism for fabric in a textile workshop assembly line, "including a support frame, a transmission chain, a suspension beam, and a fabric body. The transmission chain is provided at the top of the support frame, a movable guide rail is provided inside the side support frame, a movable connecting frame is provided outside the movable guide rail, and a limit block is provided at the upper end of the movable connecting frame. The suspension beam is located inside the support frame, and a sliding seat is provided at the outer end of the suspension beam. A connecting cable is provided in the middle of the suspension beam, and a movable clamping seat is provided on the outer side of the suspension beam. Guide movable seats are provided on both the left and right sides of the discharge port. This movable suspended conveyor mechanism for fabric in a textile workshop assembly line can fold and suspend the fabric through the cooperation of the guide movable seat and the connecting cable that elastically connects adjacent suspension beams, which facilitates conveying and provides a larger processing surface for the assembly line, improving the practicality of the device." However, existing suspended feeding carts cannot be quickly unloaded, making inspection and maintenance inconvenient and increasing maintenance time.
[0005] 2. Patent document CN215401512U discloses an automatic feeding device for a feeding cart, "including: a support frame; a movable frame: connected to a lifting mechanism, which drives the movable frame to rise and fall on the support frame, and a belt conveyor installed inside the movable frame; a receiving frame: provided with multiple platform layers, and the belt conveyor of the movable frame is aligned with any platform layer to transport the material to the platform layer. In this utility model, the lifting motor drives the rotating gear to rotate, and the rack and pinion cause the movable frame to rise or fall, so that the belt conveyor on the movable frame is aligned with the required platform layer to transport the material to the platform layer, which is convenient to use." However, the existing suspended feeding carts cannot quickly unload konjac, reducing the working efficiency of the suspended feeding carts.
[0006] 3. Patent document CN220381305U discloses a floating sensor head, a feeding cart, and a loading system. "The floating sensor head includes a fixed base, a universal plate, a flexible connector, and at least one spring. One end of the spring abuts against the fixed base, and the other end of the spring abuts against the universal plate. The flexible connector is connected between the fixed base and the universal plate, so that the flexible connector is in a first state of tension, and the universal plate is driven to make the flexible connector in a second state of relaxation. The fixed base is used to connect with the feeding cart. The floating sensor head provided by this application can ensure that when the feeding cart is offset and swayed to different degrees, the feeding cart positioning sensor on the PCB board processing equipment can still sense the presence of the feeding cart, without affecting the normal processing of the equipment." However, the existing suspended feeding cart is prone to material leakage and oil leakage during operation, which affects product quality.
[0007] 4. Patent document CN206108318U discloses a loading trolley for a centralized feeding system, "including a frame-shaped base, a funnel-shaped tray, a handle, and casters. The funnel-shaped tray is connected inside the frame-shaped base, the handle is installed at one end of the frame-shaped base, and the casters are installed below the frame-shaped base. This loading trolley replaces the pallet, solving the problem of difficult positioning under the centralized feeding platform. Due to the funnel-shaped design, it ensures that the material at the bottom can be removed as cleanly as possible during the material retrieval process." However, existing suspended feeding trolleys cannot be compressed in time during movement, exacerbating oil leakage and dripping problems. Summary of the Invention
[0008] The purpose of this invention is to provide an intelligent suspended feeding cart for packaging and its usage method, so as to solve the technical problems mentioned in the background art, such as the inability to quickly unload the suspended feeding cart, the inconvenience of inspection and maintenance, and the increase in maintenance time.
[0009] To achieve the above objectives, the present invention provides the following technical solution: a smart suspended feeding cart for packaging, comprising a slide rail, a conveying cart, sliding wheels, and a maintenance component. The sliding wheels are installed through the inner wall of the slide rail, and the maintenance component is installed through the outer wall of the sliding wheels. The conveying cart is installed on the outer wall of the maintenance component. A discharging component is installed on the inner wall of the conveying cart, and a feeding component is installed on the outer wall of the conveying cart. An inlet is provided on the outer wall of the conveying cart, and an outlet is provided at the bottom of the conveying cart.
[0010] The maintenance components include a connecting block, a locking block, an L-shaped bracket, a first spring, a first locking head, and a pneumatic rod. The connecting block is located on the top of the conveyor cart, the locking block is located on the inner wall of the sliding wheel, and one end of the connecting block extends to the inner wall of the locking block. The L-shaped bracket is located on the outer wall of the sliding wheel, the pneumatic rod is located on the outer wall of the sliding wheel, the first spring is located on the outer wall of the L-shaped bracket, a first sliding cylinder is installed on the outer wall of the L-shaped bracket, the first locking head is located on the outer wall of the first sliding cylinder, a first locking slot is opened on the outer wall of the sliding wheel, a second locking slot is opened on the outer wall of the connecting block, and the outer wall of the first locking head extends through the first locking slot to the inside of the second locking slot. The output end of the pneumatic rod is connected to the outer wall of the first locking head, and one end of the first spring is connected to the outer wall of the first locking head.
[0011] Preferably, the first slide cylinder moves with the support of an L-shaped bracket, and the connecting block can be moved out of the inner wall of the sliding wheel.
[0012] Preferably, the feeding assembly includes a second slide rod, a second slide cylinder, a stirring rod, a second spring, a connecting rod, a first box, and a first motor. The second slide rod is located on the inner wall of the conveying cart, the second slide cylinder is located on the outer wall of the second slide rod, the stirring rod is located on the outer wall of the second slide cylinder, the outer wall of the connecting rod is located on the outer wall of the second slide cylinder, the second spring is located on the outer wall of the connecting rod, and one end of the second spring is connected to the inner wall of the conveying cart. The first box is located on the inner wall of the conveying cart, the first motor is located on the inner wall of the first box, and a striking head is installed at the output end of the first motor. A third cylinder is installed through the outer wall of the first box, a striking column is installed through the inner wall of the third cylinder, a fourth spring is installed on the outer wall of the striking column, and one end of the fourth spring is connected to the inner wall of the first box.
[0013] Preferably, the striking head is located on one side of the striking post, and the striking post is located on one side of the connecting rod.
[0014] Preferably, the feeding assembly includes a No. 5 frame, a No. 4 motor, a collecting wheel, a pull rope, a No. 6 frame, and a blocking plate. The No. 5 frame is located on the outer wall of the conveying vehicle, the No. 4 motor is located on the outer wall of the No. 5 frame, the collecting wheel is located at the output end of the No. 4 motor, the pull rope is located on the outer wall of the collecting wheel, the No. 6 frame is located on the outer wall of the conveying vehicle, the blocking plate is connected to the outer wall of the No. 6 frame through a swivel ring, and one end of the pull rope is connected to the outer wall of the blocking plate. A sealing gasket is installed on the top of the blocking plate.
[0015] Preferably, the sealing gasket seals the discharge port, and the No. 4 motor is located below the blocking plate.
[0016] Preferably, the outer wall of the sealing gasket is equipped with a pressure detection component, and the slide rail uses a built-in sliding contact line as its power source.
[0017] Preferably, the pressure detection component includes a processing module and a pressure sensor. The processing module is located on the outer wall of the slide rail, and the pressure sensor is located on the top of the blockage plate. The processing module is electrically connected to the pressure sensor and to the feeding component. The pressure sensor is used to detect the real-time pressure data of the blockage plate, and the processing module is used to detect the appropriate pressure data of the blockage plate.
[0018] Preferably, the real-time pressure data of the blocking plate is transmitted to the processing module, which compares the real-time pressure data of the blocking plate with the appropriate pressure data of the blocking plate. When the real-time pressure data of the blocking plate is at the appropriate pressure data of the blocking plate, it is set as the pressure reached state; when the real-time pressure data of the blocking plate is less than the appropriate pressure data of the blocking plate, it is set as the pressure not reached state.
[0019] Preferably, the method of using the feeding cart includes the following steps:
[0020] Step S1: The pneumatic rod starts and drives the No. 1 clamp to move. The movement of the No. 1 clamp drives the No. 1 slide cylinder to move. The movement of the No. 1 slide cylinder causes the No. 1 clamp to move the No. 1 spring. The movement of the No. 1 spring causes the No. 1 clamp to move out of the No. 2 clamp through the No. 1 clamp. At this time, the conveyor cart is pulled to move the connecting block out of the sliding wheel so that it can be quickly unloaded for inspection and maintenance. This realizes the function of quickly unloading the suspended material supply cart for convenient inspection and maintenance and reducing maintenance time.
[0021] Step S2: The rotation of motor No. 1 drives the striking head to rotate, which in turn drives the striking column to move through the support of cylinder No. 3. The movement of the striking column drives the movement of spring No. 4, which in turn causes the striking column to move the connecting rod. The movement of the connecting rod drives the movement of spring No. 2, which in turn causes the connecting rod to move the sliding cylinder No. 2. The movement of the sliding cylinder No. 2 drives the stirring rod to move, which in turn quickly picks up the material in the conveying car, thus realizing the function of quickly unloading konjac from the conveying car and improving the working efficiency of the suspended feeding car.
[0022] Step S3: The function of frame number five is to provide support for motor number four. After the konjac is fed, motor number four rotates to drive the collecting wheel to rotate. The rotation of the collecting wheel drives the pull rope to move. The movement of the pull rope drives the blocking plate to be pulled up through the rotating ring. When the blocking plate is pulled up, it drives the sealing gasket to move. The movement of the sealing gasket seals the outlet, thus realizing the function of preventing material and oil leakage from the suspended feeding vehicle during the operation of the conveying vehicle.
[0023] Step S4: The suspended feeding vehicle is divided into a feeding stage and a discharging stage. When the processing module detects the discharging stage, it controls the discharging component to open to the maximum state. When the processing module detects the feeding stage, it controls the discharging component to start when the pressure reaches the required level. The pressure sensor after the discharging component continuously monitors the real-time pressure data of the pressure plate until the processing module detects that the pressure has not reached the required level. When the processing module detects that the pressure has not reached the required level, it controls the discharging component to start. The pressure sensor after the discharging component continuously monitors the real-time pressure data of the pressure plate until the processing module detects that the pressure has reached the required level. This realizes the function of timely pressing to prevent oil leakage and dripping during the movement of the conveying vehicle.
[0024] Compared with the prior art, the beneficial effects of the present invention are:
[0025] 1. This invention uses a pneumatic rod to start and move the first clamp head, which in turn moves the first slide cylinder. The movement of the first slide cylinder causes the first clamp head to move the first spring, and the movement of the first spring causes the first clamp head to move through the first clamping slot and out of the second clamping slot. At this time, the conveyor cart is pulled to move the connecting block out of the sliding wheel so that it can be quickly unloaded for inspection and maintenance. This invention realizes the function of quickly unloading the suspended material supply cart for convenient inspection and maintenance and reducing maintenance time.
[0026] 2. This invention utilizes a first motor to rotate a striking head, which in turn moves a striking column supported by a third cylinder. This movement of the striking column moves a fourth spring, which in turn moves a connecting rod. This connecting rod then moves a second spring, which in turn moves a second sliding cylinder. This second sliding cylinder then moves a stirring rod, which quickly removes material from the conveyor car, thus improving the efficiency of the suspended feeding car.
[0027] 3. The present invention uses the No. 5 frame to provide support for the No. 4 motor. After the konjac is fed, the No. 4 motor rotates and drives the collecting wheel to rotate. The rotation of the collecting wheel drives the pull rope to move. The movement of the pull rope drives the blocking plate to be pulled up through the rotating ring. When the blocking plate is pulled up, it drives the sealing gasket to move. The movement of the sealing gasket seals the discharge port, thus realizing the function of preventing the suspended feeding car from leaking material and oil during the operation of the conveying car.
[0028] 4. This invention utilizes a suspended feeding trolley divided into feeding and discharging stages. When the processing module detects the discharging stage, it controls the discharging component to open to its maximum state. When the processing module detects the feeding stage and the pressure reaches a certain level, it controls the discharging component to start. A pressure sensor behind the discharging component continuously monitors the real-time pressure data of the pressure plate until the processing module detects that the pressure has not reached a certain level. If the processing module detects that the pressure has not reached a certain level, it controls the discharging component to start. A pressure sensor behind the discharging component continuously monitors the real-time pressure data of the pressure plate until the processing module detects that the pressure has reached a certain level. This invention achieves the function of timely tightening to prevent oil leakage and dripping during the movement of the conveying trolley. Attached Figure Description
[0029] Figure 1 This is a front view structural diagram of the present invention;
[0030] Figure 2 This is a front view of the present invention.
[0031] Figure 3 This is a schematic diagram of the No. 1 card head structure of the present invention;
[0032] Figure 4 For the present invention Figure 3 A schematic diagram of structure A;
[0033] Figure 5 This is a schematic diagram of the stirring rod structure of the present invention;
[0034] Figure 6 This is a schematic diagram of the striking column structure of the present invention;
[0035] Figure 7 This is a schematic diagram of the blocking plate structure of the present invention;
[0036] Figure 8 For the present invention Figure 2 A schematic diagram of the B structure;
[0037] Figure 9 This is a schematic diagram of the sealing control process of the present invention.
[0038] In the diagram: 1. Slide rail; 2. Conveying trolley; 4. Sliding wheel; 5. Connecting block; 6. Clamping block; 7. L-shaped bracket; 8. Spring No. 1; 9. Clamp No. 1; 10. Clamp No. 2; 11. Slide cylinder No. 1; 12. Pneumatic rod; 13. Clamp No. 1; 14. Feed inlet; 15. Slide rod No. 2; 16. Slide cylinder No. 2; 17. Connecting rod; 18. Spring No. 2; 19. Stirring rod; 20. Box No. 1; 21. Motor No. 1; 22. Striking head; 23. Cylinder No. 3; 24. Striking column; 25. Spring No. 4; 26. Frame No. 5; 27. Frame No. 6; 28. Blocking plate; 29. Sealing gasket; 30. Motor No. 4; 31. Collecting wheel; 32. Pull rope; 33. Pressure sensor. Detailed Implementation
[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0040] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for 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. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0041] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand this according to the specific circumstances.
[0042] Example 1: Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4This invention provides an embodiment of an intelligent suspended feeding cart for packaging, comprising a slide rail 1, a conveyor cart 2, sliding wheels 4, and a maintenance component. The sliding wheels 4 are installed through the inner wall of the slide rail 1, and the maintenance component is installed through the outer wall of the sliding wheels 4. The conveyor cart 2 is installed on the outer wall of the maintenance component. A discharging component is installed on the inner wall of the conveyor cart 2, and a feeding assembly is installed on the outer wall of the conveyor cart 2. An inlet 14 is provided on the outer wall of the conveyor cart 2, and an outlet is provided at the bottom of the conveyor cart 2. A pressure detection component is installed on the outer wall of the sealing gasket 29. The slide rail 1 uses a built-in sliding contact line. Powered by an infrared foolproof sensor, the suspended feeding trolley is equipped with a sliding rail 1. The entire trolley and slide rail 1 are made of food-grade 304 stainless steel. The slide rail 1 has a ring-shaped structure with an internal ramp and branching path. Material enters the conveying trolley 2 through the feed inlet 14. The sliding contact line, sliding wheels 4, and slide rail 1 work together to move the conveying trolley 2 and transport the material. Maintenance components include a connecting block 5, a locking block 6, an L-shaped bracket 7, a first spring 8, a first clamp 9, and a pneumatic rod 12. The connecting block 5 is located on the top of the conveying trolley 2, and the locking block 6 is located on the inner wall of the sliding wheel 4. One end of block 5 extends to the inner wall of block 6. L-shaped bracket 7 is located on the outer wall of sliding wheel 4. Pneumatic rod 12 is located on the outer wall of sliding wheel 4. Spring 8 is located on the outer wall of L-shaped bracket 7. Slide cylinder 11 is installed on the outer wall of L-shaped bracket 7. Lock head 9 is located on the outer wall of slide cylinder 11. Lock slot 13 is opened on the outer wall of sliding wheel 4. Lock slot 10 is opened on the outer wall of connecting block 5. The outer wall of lock head 9 extends through lock slot 13 into the inner wall of lock slot 10. The output end of pneumatic rod 12 is connected to the outer wall of lock head 9. One end of spring 8 is connected to lock head 6. The outer wall of head 9 is connected, and the first slide cylinder 11 moves under the support of L-shaped bracket 7. The connecting block 5 can move out of the inner wall of the sliding wheel 4. The pneumatic rod 12 is activated to drive the first clamp head 9 to move. The movement of the first clamp head 9 drives the first slide cylinder 11 to move. The movement of the first slide cylinder 11 causes the first clamp head 9 to drive the first spring 8 to move. The movement of the first spring 8 causes the first clamp head 9 to move out of the second clamp 10 through the first clamp 13. At this time, the conveyor trolley 2 is pulled to drive the connecting block 5 out of the sliding wheel 4 so that it can be quickly unloaded for maintenance. This realizes the function of quickly unloading the suspended material supply trolley for convenient maintenance and reducing maintenance time.
[0043] Example 2: Please refer to Figure 2 , Figure 5 and Figure 6One embodiment of the present invention provides: the feeding assembly includes a second slide rod 15, a second slide cylinder 16, a stirring rod 19, a second spring 18, a connecting rod 17, a first box 20, and a first motor 21. The second slide rod 15 is located on the inner wall of the conveying cart 2, the second slide cylinder 16 is located on the outer wall of the second slide rod 15, the stirring rod 19 is located on the outer wall of the second slide cylinder 16, the outer wall of the connecting rod 17 is located on the outer wall of the second slide cylinder 16, the second spring 18 is located on the outer wall of the connecting rod 17, and one end of the second spring 18 is connected to the inner wall of the conveying cart 2. The first box 20 is located on the inner wall of the conveying cart 2, the first motor 21 is located on the inner wall of the first box 20, and a striking head 22 is installed at the output end of the first motor 21. A third cylinder 23 is installed through the outer wall of the first box 20, and a striking column 24 is installed through the inner wall of the third cylinder 23. The outer wall is equipped with a No. 4 spring 25, and one end of the No. 4 spring 25 is connected to the inner wall of the No. 1 box 20. The striking head 22 is located on one side of the striking column 24, and the striking column 24 is located on one side of the connecting rod 17. The No. 1 motor 21 rotates to drive the striking head 22 to rotate. The rotation of the striking head 22 drives the striking column 24 to move through the support of the No. 3 cylinder 23. The movement of the striking column 24 drives the No. 4 spring 25 to move. The movement of the No. 4 spring 25 causes the striking column 24 to drive the connecting rod 17 to move. The movement of the connecting rod 17 drives the No. 2 spring 18 to move. The movement of the No. 2 spring 18 causes the connecting rod 17 to drive the No. 2 slide cylinder 16 to move. The movement of the No. 2 slide cylinder 16 drives the stirring rod 19 to move. The movement of the stirring rod 19 quickly picks the material in the conveying car 2 off, realizing the function of quickly unloading konjac in the conveying car 2 and improving the working efficiency of the suspended feeding car.
[0044] Example 3: Please refer to Figure 2 , Figure 7 and Figure 8 One embodiment of the present invention provides: the material feeding assembly includes a fifth frame 26, a fourth motor 30, a collecting wheel 31, a pull rope 32, a sixth frame 27, and a blocking plate 28. The fifth frame 26 is located on the outer wall of the conveying cart 2, the fourth motor 30 is located on the outer wall of the fifth frame 26, the collecting wheel 31 is located at the output end of the fourth motor 30, the pull rope 32 is located on the outer wall of the collecting wheel 31, the sixth frame 27 is located on the outer wall of the conveying cart 2, and the blocking plate 28 is connected to the outer wall of the sixth frame 27 via a rotating ring, and one end of the pull rope 32 is connected to the outer wall of the blocking plate 28. The top of the blocking plate 28... The part is equipped with a sealing gasket 29, which seals the discharge port. The fourth motor 30 is located below the blocking plate 28. The fifth frame 26 provides support for the fourth motor 30. After the konjac is fed, the fourth motor 30 rotates, which drives the collecting wheel 31 to rotate. The rotating collecting wheel 31 drives the pull rope 32 to move. The moving pull rope 32 drives the blocking plate 28 to be pulled up through the rotating ring. When the blocking plate 28 is pulled up, it drives the sealing gasket 29 to move. The moving sealing gasket 29 seals the discharge port, thus realizing the function of preventing the suspended feeding car from leaking material and oil during the operation of the conveying car 2.
[0045] Example 4: Please refer to Figure 2 , Figure 7 , Figure 8 and Figure 9 One embodiment of the present invention provides a pressure detection component including a processing module and a pressure sensor 33. The processing module is located on the outer wall of the slide rail 1, and the pressure sensor 33 is located on the top of the blocking plate 28. The processing module is electrically connected to the pressure sensor 33 and to the feeding component. The pressure sensor 33 is used to detect the real-time pressure data of the blocking plate 28, and the processing module is used to detect the appropriate pressure data of the blocking plate 28. The real-time pressure data of the blocking plate 28 is transmitted to the processing module, which compares the real-time pressure data of the blocking plate 28 with the appropriate pressure data. When the real-time pressure data of the blocking plate 28 is within the appropriate pressure range, it is set to a pressure reached state. When the real-time pressure data of the blocking plate 28 is less than the appropriate pressure range, it is set to a pressure reached state. The suspension feeding vehicle is divided into feeding and discharging stages. When the processing module detects the discharging stage, it controls the discharging component to open to the maximum state. When the processing module detects the feeding stage, it controls the discharging component to start when it detects that the pressure has reached the required level. The pressure sensor 33 after the discharging component continuously monitors the real-time pressure data of the blocking plate 28 until the processing module detects that the pressure has not reached the required level. When the processing module detects that the pressure has not reached the required level, it controls the discharging component to start. The pressure sensor 33 after the discharging component continuously monitors the real-time pressure data of the blocking plate 28 until the processing module detects that the pressure has reached the required level. This realizes the function of timely pressing to prevent oil leakage and dripping during the movement of the conveying vehicle 2.
[0046] The method of using this feeding cart includes the following steps:
[0047] Step S1: The pneumatic rod 12 is activated to move the first clamp 9. The movement of the first clamp 9 moves the first slide cylinder 11. The movement of the first slide cylinder 11 causes the first clamp 9 to move the first spring 8. The movement of the first spring 8 causes the first clamp 9 to move out of the second clamp 10 through the first clamp 13. At this time, the conveyor trolley 2 is pulled to move the connecting block 5 out of the sliding wheel 4 so that it can be quickly unloaded for inspection and maintenance. This realizes the function of quickly unloading the suspended material supply trolley for convenient inspection and maintenance and reducing maintenance time.
[0048] Step S2: The rotation of motor 21 drives the striking head 22 to rotate. The rotation of striking head 22 drives striking column 24 to move through the support of cylinder 23. The movement of striking column 24 drives spring 25 to move. The movement of spring 25 causes striking column 24 to drive connecting rod 17 to move. The movement of connecting rod 17 drives spring 18 to move. The movement of spring 18 causes connecting rod 17 to drive sliding cylinder 16 to move. The movement of sliding cylinder 16 drives stirring rod 19 to move. The movement of stirring rod 19 quickly picks up the material in conveying car 2, realizing the function of quickly unloading konjac in conveying car 2 and improving the working efficiency of the suspended feeding car.
[0049] Step S3, the function of frame 26 is to provide support for motor 30. After the konjac is fed, motor 30 rotates and drives the collecting wheel 31 to rotate. The rotating collecting wheel 31 drives the pull rope 32 to move. The moving pull rope 32 drives the blocking plate 28 to be pulled up through the rotating ring. When the blocking plate 28 is pulled up, it drives the sealing gasket 29 to move. The moving sealing gasket 29 seals the outlet, thus realizing the function of preventing the suspended feeding car from leaking material and oil during the operation of the conveying car 2.
[0050] Step S4: The suspended feeding vehicle is divided into a feeding stage and a discharging stage. When the processing module detects the discharging stage, it controls the discharging component to open to the maximum state. When the processing module detects the feeding stage, it controls the discharging component to start when it detects that the pressure has reached the required level. The pressure sensor 33 after the discharging component continuously monitors the real-time pressure data of the blocking plate 28 until the processing module detects that the pressure has not reached the required level. When the processing module detects that the pressure has not reached the required level, it controls the discharging component to start. The pressure sensor 33 after the discharging component continuously monitors the real-time pressure data of the blocking plate 28 until the processing module detects that the pressure has reached the required level. This realizes the function of timely pressing to prevent oil leakage and dripping during the movement of the conveying vehicle 2.
[0051] Working principle: The pneumatic rod 12 starts and drives the first clamp 9 to move. The movement of the first clamp 9 drives the first slide cylinder 11 to move. The movement of the first slide cylinder 11 causes the first clamp 9 to drive the first spring 8 to move. The movement of the first spring 8 causes the first clamp 9 to move through the first clamp slot 13 and out of the second clamp slot 10. At this time, the conveyor trolley 2 is pulled, which drives the connecting block 5 to move out of the sliding wheel 4, so that it can be quickly unloaded for maintenance. This realizes the function of quickly unloading the suspended material supply trolley for convenient maintenance and reducing maintenance time. The rotation of the first motor 21 drives the impact head 22 to rotate. The rotation of the impact head 22 drives the impact column. 24 moves via the support of cylinder 23. The movement of the striking column 24 drives the movement of spring 25, which in turn causes the striking column 24 to move the connecting rod 17. The movement of the connecting rod 17 then drives the movement of spring 18, which in turn causes the connecting rod 17 to move the slide cylinder 16. The movement of the slide cylinder 16 then drives the stirring rod 19, which quickly removes the material from the conveyor car 2. This achieves the function of rapidly unloading konjac from the conveyor car 2 and improving the working efficiency of the suspended feeding car. The function of frame 26 is to provide power to the electric motor 4. The machine 30 provides support. After the konjac is fed, the fourth motor 30 rotates, driving the collecting wheel 31 to rotate. The rotating collecting wheel 31 drives the pull rope 32 to move. The moving pull rope 32 drives the blocking plate 28 to be pulled up by the rotating ring. When the blocking plate 28 is pulled up, it drives the sealing gasket 29 to move. The moving sealing gasket 29 seals the discharge port, realizing the function of preventing material and oil leakage from the suspended feeding car during the operation of the conveying car 2. The suspended feeding car is divided into a feeding stage and a discharging stage. When the processing module detects the discharging stage, it controls the feeding component to open to the maximum state. When the processing module detects the feeding stage... When the processing module detects that the pressure has reached a certain level, it controls the material discharge assembly to start. The pressure sensor 33 after the material discharge assembly continuously monitors the real-time pressure data of the pressure measuring plate 28 until the processing module detects that the pressure has not reached a certain level. This achieves the function of timely pressing to prevent oil leakage and dripping during the movement of the conveyor car 2.
[0052] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A packing feeding intelligent hanging feeder, comprising a sliding rail (1), a feeding trolley (2), a sliding wheel (4) and a maintenance assembly, characterized in that: The inner wall of the sliding rail (1) is provided with a sliding wheel (4), the outer wall of the sliding wheel (4) is provided with a maintenance assembly, the outer wall of the maintenance assembly is provided with a conveying trolley (2), the inner wall of the conveying trolley (2) is provided with a discharging assembly, the outer wall of the conveying trolley (2) is provided with a feeding assembly, the outer wall of the conveying trolley (2) is provided with a feeding port (14), and the bottom of the conveying trolley (2) is provided with a discharging port; The maintenance assembly comprises a connecting block (5), a clamping block (6), an L-shaped support (7), a first spring (8), a first clamping head (9), a pneumatic rod (12), the connecting block (5) is located at the top of the conveying trolley (2), the clamping block (6) is located in the inner wall of the sliding wheel (4), one end of the connecting block (5) extends to the inner wall of the clamping block (6), the L-shaped support (7) is located on the outer wall of the sliding wheel (4), the pneumatic rod (12) is located on the outer wall of the sliding wheel (4), the first spring (8) is located on the outer wall of the L-shaped support (7), the outer wall of the L-shaped support (7) is provided with a first sliding cylinder (11), the first clamping head (9) is located on the outer wall of the first sliding cylinder (11), the outer wall of the sliding wheel (4) is provided with a first clamping hole (13), the outer wall of the connecting block (5) is provided with a second clamping hole (10), the outer wall of the first clamping head (9) extends to the inner wall of the second clamping hole (10) through the first clamping hole (13), the output end of the pneumatic rod (12) is connected with the outer wall of the first clamping head (9), and one end of the first spring (8) is connected with the outer wall of the first clamping head (9). The discharging assembly comprises a second sliding rod (15), a second sliding cylinder (16), a stirring rod (19), a second spring (18), a connecting rod (17), a first box (20) and a first motor (21), the second sliding rod (15) is located in the inner wall of the conveying trolley (2), the second sliding cylinder (16) is located on the outer wall of the second sliding rod (15), the stirring rod (19) is located on the outer wall of the second sliding cylinder (16), the outer wall of the connecting rod (17) is located on the outer wall of the second sliding cylinder (16), the second spring (18) is located on the outer wall of the connecting rod (17), one end of the second spring (18) is connected with the inner wall of the conveying trolley (2), the first box (20) is located in the inner wall of the conveying trolley (2), the first motor (21) is located in the inner wall of the first box (20), the output end of the first motor (21) is provided with a beating head (22), the outer wall of the first box (20) is provided with a third cylinder (23) in penetration, the inner wall of the third cylinder (23) is provided with a beating column (24) in penetration, the outer wall of the beating column (24) is provided with a fourth spring (25), and one end of the fourth spring (25) is connected with the inner wall of the first box (20).
2. The intelligent suspension feeding vehicle for packaging and feeding according to claim 1, characterized in that: The first sliding cylinder (11) moves through the support of the L-shaped support (7), and the connecting block (5) can move out of the inner wall of the sliding wheel (4).
3. The intelligent hanging feeder of claim 1, wherein: The beating head (22) is located on one side of the beating column (24), and the beating column (24) is located on one side of the connecting rod (17).
4. The intelligent hanging feeder of claim 1, wherein: The feeding assembly comprises a No. 5 frame (26), a No. 4 motor (30), a collecting wheel (31), a pull rope (32), a No. 6 frame (27), a blocking plate (28), the No. 5 frame (26) is located on the outer wall of the conveying trolley (2), the No. 4 motor (30) is located on the outer wall of the No. 5 frame (26), the collecting wheel (31) is located on the output end of the No. 4 motor (30), the pull rope (32) is located on the outer wall of the collecting wheel (31), the No. 6 frame (27) is located on the outer wall of the conveying trolley (2), the blocking plate (28) is connected with the outer wall of the No. 6 frame (27) through a rotating ring, one end of the pull rope (32) is connected with the outer wall of the blocking plate (28), and a sealing gasket (29) is installed on the top of the blocking plate (28).
5. The intelligent hanging feeder of claim 4, wherein: The sealing gasket (29) seals the discharge port, and the No. 4 motor (30) is located below the blocking plate (28).
6. The intelligent hanging feeder of claim 4, wherein: The outer wall of the sealing gasket (29) is provided with a pressure detection assembly, and the slide rail (1) adopts a built-in slide wire as power.
7. The intelligent hanging feeder of claim 6, wherein: The pressure detection assembly comprises a processing module and a pressure sensor (33), the processing module is located on the outer wall of the slide rail (1), the pressure sensor (33) is located on the top of the blocking plate (28), the processing module is electrically connected with the pressure sensor (33), the processing module is electrically connected with the feeding assembly, the pressure sensor (33) is used for detecting real-time pressure data of the blocking plate (28), and the processing module is used for detecting suitable pressure data of the blocking plate (28).
8. The intelligent hanging feeder of claim 7, wherein: The real-time pressure data of the blocking plate (28) is transmitted to the processing module, the real-time pressure data of the blocking plate (28) is compared with the suitable pressure data of the blocking plate (28) through the processing module, the real-time pressure data of the blocking plate (28) is in the suitable pressure data of the blocking plate (28) and is set as a pressure reaching state, and the real-time pressure data of the blocking plate (28) is less than the suitable pressure data of the blocking plate (28) and is set as a pressure not reaching state.
9. A method for using the packaging and feeding intelligent suspension feeding trolley, suitable for the packaging and feeding intelligent suspension feeding trolley according to any one of claims 7-8, characterized in that, The use method of the feeding trolley comprises the following steps: Step S1, the pneumatic rod (12) is started to drive the No. 1 clamp head (9) to move, the No. 1 clamp head (9) drives the No. 1 sliding cylinder (11) to move, the No. 1 sliding cylinder (11) moves to drive the No. 1 clamp head (9) to move, the No. 1 spring (8) moves to drive the No. 1 clamp head (9) to move out of the No. 2 clamp hole (10) through the No. 1 clamp hole (13), at this time, the conveying trolley (2) is pulled to drive the connecting block (5) to move out of the sliding wheel (4) to make it quickly unloaded for maintenance, and the function of quickly unloading the suspension feeding trolley for convenient maintenance and reducing maintenance time is realized. Step S2, the first motor (21) rotates to drive the striking head (22) to rotate, the striking head (22) rotates to drive the striking column (24) to move through the support of the third barrel (23), the striking column (24) moves to drive the fourth spring (25) to move, the fourth spring (25) moves to make the striking column (24) drive the connecting rod (17) to move, the connecting rod (17) moves to drive the second spring (18) to move, the second spring (18) moves to make the connecting rod (17) drive the second sliding cylinder (16) to move, the second sliding cylinder (16) moves to drive the stirring rod (19) to move, the stirring rod (19) moves to quickly pick up the material in the conveying trolley (2), realizes the function of quickly discharging the konjak in the conveying trolley (2) and improving the working efficiency of the suspension feeding trolley; Step S3, the function of the fifth frame (26) is to provide support for the fourth motor (30), after the konjak is discharged, the fourth motor (30) rotates to drive the collecting wheel (31) to rotate, the collecting wheel (31) rotates to drive the pull rope (32) to move, the pull rope (32) moves to drive the baffle (28) to be pulled up through the rotating ring, the baffle (28) is pulled up to drive the sealing gasket (29) to move, the sealing gasket (29) moves to seal the discharge port, realizes the function of preventing the suspension feeding trolley from leaking material and oil during the operation of the conveying trolley (2); Step S4, the suspension feeding trolley is divided into a feeding stage and a discharging stage, the processing module detects the discharging stage to control the discharge assembly to open to the maximum state, the processing module detects the feeding stage, the processing module detects the pressure to reach the state, the processing module controls the discharge assembly to start, the discharge assembly rear pressure sensor (33) continuously detects the real-time pressure data of the baffle (28), until the processing module detects that the pressure does not reach the state, the processing module detects that the pressure does not reach the state, the processing module controls the discharge assembly to start, the discharge assembly rear pressure sensor (33) continuously detects the real-time pressure data of the baffle (28), until the processing module detects that the pressure reaches the state, realizes the function of preventing oil leakage and oil dripping during the walking process of the conveying trolley (2).
Citation Information
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