A bulk material loading machine

By designing auxiliary conveying and loading mechanisms and combining them with a solar power system, the shortcomings of existing ship loaders in handling bulk material conveying, accidental spillage recovery, ship loading and transfer, and self-sufficient power resources have been addressed, thereby improving the flexibility and efficiency of the equipment and reducing costs.

CN118992605BActive Publication Date: 2026-03-06JIANGSU AOGOU EQUIPMENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411188483.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2026-03-06
Estimated Expiration
2044-08-28

AI Technical Summary

Technical Problem

Existing ship loader equipment cannot effectively handle the functions of bulk material conveying, accidental spillage recovery, ship loading and transfer, and self-sufficient power resources. It has high operating costs and low flexibility, resulting in long manual maintenance cycles.

Method used

A bulk material loading machine including an auxiliary conveying mechanism and an auxiliary loading mechanism was designed. By adjusting the conveyor belt angle and setting up a dust collection box and a solar power system, the flexibility and efficiency of material conveying, loading, and power supply are achieved.

Benefits of technology

It improves the flexibility and efficiency of equipment, reduces overall operating costs, reduces the labor intensity of manual maintenance, and achieves dual power supply and on-site dust suppression.

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Abstract

This invention discloses a bulk material loading machine, relating to the field of automated loading and unloading equipment technology. It includes a supporting base plate and two on-site protective baffles symmetrically installed on the top of the supporting base plate. The invention features an auxiliary conveying mechanism that can adjust the angle between the first and second conveyor belts, facilitating normal bulk material transport while controlling the material conveying speed. This prevents equipment blockage caused by excessive bulk material transport, reduces the labor intensity of frequent manual maintenance, saves overall operating costs, and enables normal equipment management. The auxiliary loading mechanism of this invention integrates functions such as bulk material transport, accidental spillage recovery, ship loading and transfer, and self-sufficiency in power resources, facilitating timely control of overall operating costs and improving the flexibility of the overall equipment during use.
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Description

Technical Field

[0001] This invention relates to the field of automated loading and unloading equipment technology, specifically a bulk material loading machine for ships. Background Technology

[0002] Ship loaders are large bulk material handling machines used for loading ships at bulk cargo terminals. These large-scale port bulk material loading equipment play a vital role in the high-speed, stable, efficient, and continuous development of industries such as energy, power, metallurgy, and ports, especially in large bulk material distribution centers. Ship loaders typically operate continuously, therefore, they must be equipped with supporting equipment to provide a continuous flow of materials, enabling continuous loading.

[0003] Chinese Patent Publication No. CN219585383U discloses a rotary bulk material loading machine, comprising a conveying trough, a collection trough fixedly connected to the top wall of the conveying trough, a pipe fixedly connected to the top of the collection trough, a shell fixedly connected to the other end of the pipe, a collection bin slidably connected inside the shell, a suction machine fixedly connected to the middle of the pipe, a box fixedly connected to the top of the conveying trough, multiple evenly distributed through holes on the bottom wall of the box, a motor fixedly connected to one side of the box, a shaft rotatably connected inside the conveying trough, and spiral blades fixedly connected to the outside of the shaft. In this patent, when conveying materials, the suction machine can be operated to create negative pressure inside the pipe, absorbing dust from inside the conveying trough into the pipe, and then transporting it to the collection bin for dust collection. Simultaneously, the collection trough increases the speed of dust collection through the pipe.

[0004] However, the above solutions still have the following problems: the coordination of the above equipment cannot effectively take into account the functions of bulk material conveying, accidental material recovery, ship loading and transfer, and self-sufficient power resources. It is impossible to control the overall usage cost in a timely manner. The overall equipment has low flexibility in use and cannot meet the needs of normal use, thereby increasing the manual maintenance cycle. Therefore, the present invention needs to design a bulk material ship loader to solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to provide a bulk material loading machine to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a bulk material loading machine, comprising a supporting base plate, and further comprising:

[0007] Two on-site protective barriers are symmetrically installed on the top of the supporting base plate.

[0008] An auxiliary conveying mechanism is installed on top of the supporting base plate and located between two on-site protective baffles. The auxiliary conveying mechanism is used to assist in the conveying of bulk materials.

[0009] An auxiliary loading mechanism is installed on top of a supporting base plate and located on one side of an auxiliary conveying mechanism. The auxiliary loading mechanism includes a transfer equipment mounting chassis and a mounting cross plate. The transfer equipment mounting chassis is installed on top of the supporting base plate. The mounting cross plate is rotatably connected to the top of the transfer equipment mounting chassis. Two symmetrically distributed limiting plates are fixedly connected to the top of the mounting cross plate. An adjusting plate is rotatably connected between the two limiting plates. A first support frame is installed on the side of the adjusting plate away from the limiting plates.

[0010] The shipping logistics box is installed on the top of the first support frame and on the side away from the adjustment plate.

[0011] Two dust collection boxes are installed on the side of two on-site protective barriers that are close to each other.

[0012] In a preferred embodiment of the present invention, the bottom of the first support frame is fixedly connected to a support base for use with the loading logistics box, and the interior of the transfer equipment mounting chassis is equipped with three equally spaced mounting rods that extend into the interior of the support base plate. The top of the transfer equipment mounting chassis is fixedly connected to a first drive motor, and the output end of the first drive motor is fixedly connected to the bottom of the mounting plate.

[0013] In a preferred embodiment of the present invention, the auxiliary conveying mechanism includes a conveying equipment fixing frame and a support rod. The conveying equipment fixing frame is located between two on-site protective baffles and is fixedly connected to the top of the support base plate. Two symmetrically distributed support frames are fixedly connected to the top of the conveying equipment fixing frame. An installation plate is fixedly connected between the two support frames. Two second support frames are fixedly connected to the top of the installation plate. Two limiting plates are fixedly connected to the top of each of the two second support frames. Two first limiting support plates are installed between the two limiting plates on the same side. A first conveyor belt is installed between the two second limiting support plates. Additionally, two second limiting support plates are installed between the two limiting plates on the same side. A second conveyor belt is installed between the two second limiting support plates.

[0014] In a preferred embodiment of the present invention, a second mounting block is installed below the first conveyor belt, and a first mounting block is installed below the second conveyor belt. Both the second and first mounting blocks have an inverted n-shaped structure. Two symmetrically distributed first insert rods are fixedly connected to the top of the first mounting block, and one end of the top of each of the two first insert rods is fixedly connected to a corresponding first limiting support plate. Two symmetrically distributed second insert rods are fixedly connected to the top of the second mounting block, and one end of the top of each of the two second insert rods is fixedly connected to a corresponding second limiting support plate. Third mounting blocks are fixedly connected to both sides of the mounting plates. A first electric telescopic rod is rotatably connected to one side of one of the third mounting blocks, and the output end of the first electric telescopic rod is rotatably connected to the first mounting block. A second electric telescopic rod is rotatably connected to one side of the other third mounting block, and the output end of the second electric telescopic rod is rotatably connected to the second mounting block. A counterweight is installed above the first and second conveyor belts.

[0015] In a preferred embodiment of the present invention, a reinforcing plate is fixedly connected to one side of one of the support frames, and a mounting side plate is fixedly connected to the top of the reinforcing plate. A second drive motor and a third drive motor are fixedly connected to one side of the mounting side plate. A first driven rotating roller is rotatably connected inside the first conveyor belt, and a first driving rotating roller is rotatably connected inside the first conveyor belt on the side away from the first driven rotating roller. The output end of the second drive motor passes through the first limiting support plate and is fixedly connected to one end of the first driving rotating roller. A second driven rotating roller is rotatably connected inside the second conveyor belt, and a second driving rotating roller is rotatably connected inside the second conveyor belt on the side away from the second driven rotating roller. The output end of the third drive motor passes through the second limiting support plate and is fixedly connected to one end of the second driving rotating roller.

[0016] In a preferred embodiment of the present invention, a mounting top plate is fixedly connected between the two on-site protective baffles and above the first conveyor belt. A second energy storage compartment is fixedly connected to the top of the mounting top plate. Two electrical control boxes are fixedly connected to the top of the second energy storage compartment. Each of the two electrical control boxes is equipped with a backup battery. A light is fixedly connected to one side of each of the two electrical control boxes. A second solar panel is rotatably connected to the top of each of the two electrical control boxes.

[0017] In a preferred embodiment of the present invention, casters are installed around the bottom of the support base plate, and a first energy storage compartment is fixedly connected to the top of the mounting top plate and to one side of the second energy storage compartment. A first solar panel is fixedly connected to the top of the first energy storage compartment.

[0018] In a preferred embodiment of the present invention, a collection chamber is fixedly connected to the side of each of the two dust collection boxes that are close to each other. A plurality of equally spaced spray pipes are fixedly connected above each collection chamber. A spray disc is installed inside each spray pipe. Two adjusting plates are installed on the top of each of the first support frames. One top end of each of the two adjusting plates is rotatably connected to a rotating rod. A fixing plate is fixedly connected between the two limiting plates. Two third electric telescopic rods are rotatably connected to the outside of the fixing plate.

[0019] In a preferred embodiment of the present invention, a support plate is fixedly connected between the two on-site protective baffles and at the top of the support base plate. A collection box is fixedly connected to the side of the support plate away from the on-site protective baffles. A limiting groove for use with the first conveyor belt is provided inside the support plate and above the collection box.

[0020] In a preferred embodiment of the present invention, a control panel is fixedly connected to the outer side of one of the on-site protective barriers. The first electric telescopic rod, the second electric telescopic rod, the first battery compartment, the first solar panel, the first drive motor, the second battery compartment, the electrical control box, the backup battery, the lighting lamp, the second solar panel, the third electric telescopic rod, the second drive motor, and the third drive motor are all electrically connected to the control panel.

[0021] Compared with the prior art, the beneficial effects of the present invention are:

[0022] 1. This invention is equipped with an auxiliary conveying mechanism to convey bulk materials on the surface of the second conveyor belt. In conjunction with the auxiliary loading mechanism for subsequent loading operations, the angle between the first and second conveyor belts can be adjusted. This facilitates the normal conveying of bulk materials while also controlling the material conveying speed, preventing equipment blockage caused by excessive conveying of bulk materials, and reducing the labor intensity of frequent manual maintenance. When operating outdoors, the two second solar panels and the first solar panel perform outdoor solar energy recovery operations. The solar energy is converted by the first and second inverters, and the converted electricity is stored by the two first and second energy storage bins. This achieves dual power supply, saves overall operating costs, and enables normal equipment management.

[0023] 2. This invention is equipped with an auxiliary loading mechanism, which can drive the first support frame to adjust its angle until it is tilted, so as to better cooperate with the loading logistics box for loading operations and improve the flexibility of the equipment during use. Through the operation of the water pump inside the dust suppression box, water is delivered to the inside of the spray pipe, and the spray plate converts the water into spray to suppress dust in the on-site working environment. It realizes the functions of bulk material transportation, accidental material recovery, loading and transfer, and self-sufficient power resources in one, which facilitates timely control of the overall operating cost and improves the flexibility of the overall equipment during use. Attached Figure Description

[0024] Figure 1 This is a first-view schematic diagram of the overall structure of the present invention;

[0025] Figure 2 This is a second-view schematic diagram of the overall structure of the present invention;

[0026] Figure 3 This is a third-view schematic diagram of the overall structure of the present invention;

[0027] Figure 4 This is a fourth-view schematic diagram of the overall structure of the present invention;

[0028] Figure 5 This is a first-view schematic diagram of the auxiliary conveying mechanism of the present invention;

[0029] Figure 6 This is a second-view schematic diagram of the auxiliary conveying mechanism of the present invention;

[0030] Figure 7 This is a first-view schematic diagram of the auxiliary loading mechanism of the present invention;

[0031] Figure 8 This is a second-view schematic diagram of the auxiliary loading mechanism of the present invention;

[0032] Figure 9 Appendix to this invention Figure 1 Enlarged view of the structure at point A in the image.

[0033] In the diagram: 1. Support base plate; 2. On-site protective barrier; 3. Collection box;

[0034] 4. Conveying equipment fixing frame; 41. Support rod; 42. Support frame; 43. First conveyor belt; 44. Second conveyor belt; 45. Counterweight; 46. First electric telescopic rod; 47. Second electric telescopic rod; 48. Mounting plate;

[0035] 5. Transfer equipment mounting chassis; 51. Support base; 52. Mounting rod; 53. Mounting cross plate; 54. Limiting plate; 55. Adjusting plate; 56. First support frame; 57. Rotating rod; 58. Ship loading logistics box; 59. Fixing plate;

[0036] 6. Casters; 7. First battery compartment; 8. First solar panel; 9. Dust collection box; 10. Mounting top plate; 11. Control panel; 12. Limiting groove; 13. First drive motor; 14. Second battery compartment; 15. Electrical control box; 16. Backup battery; 17. Illuminating light; 18. Second solar panel; 19. Spray pipe; 20. Collection compartment; 21. Third electric telescopic rod; 22. First mounting block; 23. Second mounting block; 24. Third mounting block; 25. First active rotating roller; 26. First driven rotating roller; 27. Mounting side plate; 28. Reinforcing upright plate; 29. ​​Second drive motor; 30. Third drive motor; 31. Second support frame; 32. Limiting plate; 33. Second active rotating roller; 34. Second driven rotating roller. Detailed Implementation

[0037] 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.

[0038] Please see Figures 1-9 The present invention provides a technical solution: a bulk material loading machine, including a supporting base plate 1, and further comprising:

[0039] Two on-site protective barriers 2 are symmetrically installed on the top of the supporting base plate 1.

[0040] An auxiliary conveying mechanism is installed on top of the supporting base plate 1 and located between two on-site protective baffles 2;

[0041] An auxiliary loading mechanism is installed on the top of the supporting base plate 1 and located on one side of the auxiliary conveying mechanism. The auxiliary loading mechanism includes a transfer equipment mounting chassis 5 and a mounting cross plate 53. The transfer equipment mounting chassis 5 is installed on the top of the supporting base plate 1. The mounting cross plate 53 is rotatably connected to the top of the transfer equipment mounting chassis 5. Two symmetrically distributed limiting plates 54 are fixedly connected to the top of the mounting cross plate 53. An adjusting plate 55 is rotatably connected between the two limiting plates 54. A first support frame 56 is installed on the side of the adjusting plate 55 away from the limiting plate 54.

[0042] The shipping logistics box 58 is installed on the top of the first support frame 56 and on the side away from the adjusting plate 55.

[0043] Two dust collection boxes 9 are installed on the side of the two on-site protective baffles 2 that are close to each other, and the two dust collection boxes 9 are located on both sides of the second conveyor belt 44.

[0044] When in use, the adjusting plate 55 is rotated to one side, which drives the first support frame 56 to adjust its angle until it is in an inclined state, so as to better cooperate with the loading logistics box 58 for loading operations and improve the flexibility of the equipment during use. The auxiliary conveying mechanism is used to assist in the conveying of bulk materials, and the loading logistics box 58 is used to store and process bulk materials, thereby facilitating subsequent loading operations. The two dust collection boxes 9 are used to assist in dust collection.

[0045] Please see Figures 1-4 , Figures 7-8 The bottom of the first support frame 56 is fixedly connected to a support base 51 for use with the loading logistics box 58. The inside of the transfer equipment mounting chassis 5 is installed with three equally spaced mounting rods 52 that extend into the support base plate 1. The top of the transfer equipment mounting chassis 5 is fixedly connected to a first drive motor 13. The output end of the first drive motor 13 is fixedly connected to the bottom of the mounting plate 53. The two dust collection boxes 9 are fixedly connected to a collection chamber 20 on their adjacent sides. The top of the collection chamber 20 is fixedly connected to multiple equally spaced spray pipes 19. The inside of the two dust collection boxes 9 is installed with a water pump. The inside of all the spray pipes 19 is installed with a spray disc. The top of the first support frame 56 is installed with two adjusting plates 55. The top end of the two adjusting plates 55 is rotatably connected to a rotating rod 57. A fixing plate 59 is fixedly connected between the two limiting plates 54. The outside of the fixing plate 59 is rotatably connected with two third electric telescopic rods 21. The output ends of the two third electric telescopic rods 21 are rotatably connected to the adjusting plate 55.

[0046] This invention reinforces the mounting chassis 5 and support base plate 1 of the transfer equipment with three mounting rods 52. The first drive motor 13 rotates, causing the mounting plate 53 to rotate, which in turn rotates the limiting plate 54. This facilitates the loading of bulk materials into the auxiliary loading mechanism. The operating mode can be switched according to the usage scenario, improving the equipment's flexibility. Two third electric telescopic rods 21 rotate, causing their outputs to move to one side, which in turn rotates the adjusting plate 55 to one side. The first support frame 56 and the rotating rod 57 work together to adjust the angle of the first support frame 56 until it is tilted, better cooperating with the loading logistics box 58 for loading operations, further improving the equipment's flexibility. A water pump inside the dust suppression box 9 delivers water to the spray pipe 19, which is then converted into spray by the spray disc to suppress dust in the working environment.

[0047] Please see Figures 1-8 The auxiliary conveying mechanism includes a conveying equipment fixing frame 4 and support rods 41. The conveying equipment fixing frame 4 is located between two on-site protective baffles 2 and is fixedly connected to the top of the support base plate 1. Two symmetrically distributed support frames 42 are fixedly connected to the top of the conveying equipment fixing frame 4. An installation plate 48 is fixedly connected between the two support frames 42. Two second support frames 31 are fixedly connected to the top of the installation plate 48. Two limit plates 32 are fixedly connected to the top of each of the two second support frames 31. Two first limit support plates are installed between the two limit plates 32 on the same side. A first conveyor belt 43 is installed between the two second limit support plates. In addition, two second limit support plates are installed between the two limit plates 32 on the same side. A second conveyor belt 44 is installed between the second limiting support plates. A second mounting block 23 is installed below the first conveyor belt 43, and a first mounting block 22 is installed below the second conveyor belt 44. Both the second mounting block 23 and the first mounting block 22 have an inverted n-shaped structure. The top of the first mounting block 22 is fixedly connected to two symmetrically distributed first insert rods, and the top end of each of the two first insert rods is fixedly connected to the corresponding first limiting support plate. The top of the second mounting block 23 is fixedly connected to two symmetrically distributed second insert rods, and the top end of each of the two second insert rods is fixedly connected to the corresponding second limiting support plate. Third mounting blocks 24 are fixedly connected to both sides of the mounting plate 48. One side of one of the third mounting blocks 24 is rotatably connected to... A first electric telescopic rod 46 is connected, and its output end is rotatably connected to a first mounting block 22. A second electric telescopic rod 47 is rotatably connected to one side of a third mounting block 24, and its output end is rotatably connected to a second mounting block 23. A counterweight block 45 is installed above the first conveyor belt 43 and the second conveyor belt 44. A reinforcing plate 28 is fixedly connected to one side of one of the support frames 42, and a mounting side plate 27 is fixedly connected to the top of the reinforcing plate 28. A second drive motor 29 and a third drive motor 30 are fixedly connected to one side of the mounting side plate 27, respectively. A first driven rotating roller 26 is rotatably connected inside the first conveyor belt 43. The first conveyor belt 43 is located inside and away from... A first driven roller 25 is rotatably connected to one side of the first driven roller 26. The output end of the second drive motor 29 passes through the first limiting support plate and is fixedly connected to one end of the first driven roller 25. The first driven roller 26 is driven and connected to the first driven roller 25 through the first conveyor belt 43. A second driven roller 34 is rotatably connected inside the second conveyor belt 44. A second driven roller 33 is rotatably connected inside the second conveyor belt 44 and on the side away from the second driven roller 34. The output end of the third drive motor 30 passes through the second limiting support plate and is fixedly connected to one end of the second driven roller 33. The second driven roller 34 is driven and connected to the second driven roller 33 through the second conveyor belt 44.

[0048] In this invention, when conveying bulk materials, the counterweight 45 needs to be removed, and the bulk materials placed inside the loading logistics box 58. The loading logistics box 58 is then placed on the surface of the first conveyor belt 43. The second drive motor 29 rotates, and its output drives the first active rotating roller 25 to rotate. Under the transmission of the first conveyor belt 43, the first driven rotating roller 26 rotates, thereby conveying the bulk materials on the surface of the first conveyor belt 43 until the bulk materials are conveyed to the surface of the second conveyor belt 44. Then, the third drive motor 30 rotates, and its output... The rotation of the first conveyor belt 43 drives the second active rotating roller 33 to rotate, which in turn drives the second driven rotating roller 34 to rotate under the transmission of the second conveyor belt 44. This allows for the conveying of bulk materials on the surface of the second conveyor belt 44, facilitating subsequent loading operations of the auxiliary loading mechanism. To ensure better and more efficient conveying of bulk materials, the angle between the first conveyor belt 43 and the second conveyor belt 44 can be adjusted. This facilitates the normal conveying of bulk materials while also controlling the material conveying speed, preventing excessive conveying of bulk materials from causing equipment blockages and reducing the labor intensity of frequent manual maintenance.

[0049] Please see Figures 1-4 , Figure 9 A mounting plate 10 is fixedly connected between the two on-site protective barriers 2 and above the first conveyor belt 43. A second energy storage compartment 14 is fixedly connected to the top of the mounting plate 10. Two electrical control boxes 15 are fixedly connected to the top of the second energy storage compartment 14. Each of the two electrical control boxes 15 has a spare battery 16 installed inside. A light 17 is fixedly connected to one side of each of the two electrical control boxes 15. A second solar panel 18 is rotatably connected to the top of each of the two electrical control boxes 15. Universal wheels 6 are installed around the bottom of the support base plate 1. A first energy storage compartment 7 is fixedly connected to the top of the mounting plate 10 and to one side of the second energy storage compartment 14. A first solar panel 8 is fixedly connected to the top of the first energy storage compartment 7.

[0050] This invention achieves self-sufficiency in power supply by installing a first inverter inside the second energy storage compartment 14. During outdoor operations, two second solar panels 18 perform outdoor solar energy recovery operations, convert the light resources through the first inverter, and store the converted power resources through the two second energy storage compartments 14. This saves overall operating costs. A light-emitting lamp 17 provides auxiliary nighttime lighting for convenient nighttime operations. Alternatively, a second inverter is installed inside the first energy storage compartment 7. During outdoor operations, the first solar panel 8 performs outdoor solar energy recovery operations, converts the light resources through the second inverter, and stores the converted power resources through the first energy storage compartment 7. This achieves dual power supply and saves overall operating costs.

[0051] Please see Figures 1-6 A support plate is fixedly connected between the two on-site protective baffles 2 and at the top of the support base plate 1. A collection box 3 is fixedly connected to the side of the support plate away from the on-site protective baffles 2. A collection cavity is opened inside the collection box 3. A limiting groove 12 for use with the first conveyor belt 43 is opened inside the support plate and above the collection box 3.

[0052] The present invention uses the limiting groove 12 to cooperate with the first conveyor belt 43 to adjust the angle inside the support plate. When the loading logistics box 58 is placed on the surface of the first conveyor belt 43, the collection box 3 and the collection cavity are used to collect any accidentally dropped materials, which is convenient for subsequent reuse.

[0053] Please see Figures 1-9 One of the on-site protective barriers 2 has a control panel 11 fixedly connected to its outer side. The first electric telescopic rod 46, the second electric telescopic rod 47, the first battery storage compartment 7, the first solar panel 8, the first drive motor 13, the second battery storage compartment 14, the electrical control box 15, the backup battery 16, the light 17, the second solar panel 18, the third electric telescopic rod 21, the second drive motor 29, and the third drive motor 30 are all electrically connected to the control panel 11.

[0054] The present invention uses a control panel 11 to control the operation of the first electric telescopic pole 46, the second electric telescopic pole 47, the first battery compartment 7, the first solar panel 8, the first drive motor 13, the second battery compartment 14, the electrical control box 15, the backup battery 16, the lighting lamp 17, the second solar panel 18, the third electric telescopic pole 21, the second drive motor 29, and the third drive motor 30, thereby realizing the normal management of the equipment.

[0055] Working principle:

[0056] When in use, open the control panel 11, and adjust the angle inside the support plate by using the limiting groove 12 in conjunction with the first conveyor belt 43. When the loading logistics box 58 is placed on the surface of the first conveyor belt 43, the collection box 3 and the collection cavity are used to collect any accidentally dropped materials for easy reuse later.

[0057] When conveying bulk materials, the counterweight 45 needs to be removed, and the bulk materials are placed inside the loading logistics box 58. The loading logistics box 58 is placed on the surface of the first conveyor belt 43. The second drive motor 29 is turned, and the output end of the second drive motor 29 rotates to drive the first active rotating roller 25 to rotate. Under the transmission of the first conveyor belt 43, the first driven rotating roller 26 is driven to rotate, thereby conveying the bulk materials on the surface of the first conveyor belt 43 until the bulk materials are conveyed to the surface of the second conveyor belt 44. The third drive motor 30 is turned, and the output end of the third drive motor 30 rotates to drive the second active rotating roller 33 to rotate. Under the transmission of the second conveyor belt 44, the second driven rotating roller 34 is driven to rotate, thereby conveying the bulk materials on the surface of the second conveyor belt 44, in conjunction with the auxiliary loading mechanism for subsequent loading operations.

[0058] The present invention can adjust the angle between the first conveyor belt 43 and the second conveyor belt 44, which facilitates the normal conveying of bulk materials and can also control the material conveying speed, avoid the problem of equipment blockage caused by excessive conveying of bulk materials, and reduce the labor intensity of frequent manual maintenance.

[0059] When performing outdoor operations, the two second solar panels 18 and the first solar panel 8 perform outdoor solar energy recovery operations. The solar energy is converted and processed by the first inverter and the second inverter. The converted electricity is stored and processed by the two first energy storage bins 7 and the second energy storage bins 14, realizing a dual supply of electricity and saving overall operating costs.

[0060] Auxiliary nighttime lighting is provided by the light-emitting lamp 17 to facilitate nighttime operations.

[0061] The control panel 11 controls the operation of the first electric telescopic pole 46, the second electric telescopic pole 47, the first battery storage compartment 7, the first solar panel 8, the first drive motor 13, the second battery storage compartment 14, the electrical control box 15, the backup battery 16, the lighting lamp 17, the second solar panel 18, the third electric telescopic pole 21, the second drive motor 29, and the third drive motor 30, thus realizing the normal management of the equipment.

[0062] The transfer equipment mounting chassis 5 and the support base plate 1 are reinforced and installed using three mounting rods 52.

[0063] The support base 51 and the first support frame 56 work together to place the loading logistics box 58 that is conveyed by the second conveyor belt 44. The first drive motor 13 is turned, and the output end of the first drive motor 13 rotates to drive the mounting plate 53 to rotate, thereby driving the top limit plate 54 to rotate. The auxiliary loading mechanism can switch the operation mode according to the specific use scenario from receiving bulk materials to loading the ship, which improves the flexibility of using the equipment.

[0064] The operation of the two third electric telescopic rods 21 causes the output ends of the third electric telescopic rods 21 to move to one side, which in turn causes the adjusting plate 55 to rotate to one side. The first support frame 56 and the rotating rod 57 work together to adjust the angle of the first support frame 56 as a whole until it is in an inclined state, so as to better cooperate with the loading operation of the loading logistics box 58 and improve the flexibility of the equipment during use.

[0065] Water is pumped from inside the dust collection box 9 to the spray pipe 19, where it is sprayed through a spray disc to reduce dust in the working environment. This system integrates functions such as bulk material transport, accidental spillage recovery, ship loading and transfer, and self-sufficiency in power resources, facilitating timely control of overall operating costs and improving the flexibility of the equipment during use.

[0066] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A bulk material ship loader comprising a support floor (1), characterised in that, Also include: Two field protection baffle (2), two said field protection baffle (2) symmetry is installed on the top of the support base plate (1) ; Auxiliary conveying mechanism, the auxiliary conveying mechanism is installed on the top of support base plate (1) and is located between two field protection baffle (2), auxiliary conveying mechanism is used to assist bulk material conveying; Auxiliary loading mechanism, the auxiliary loading mechanism is installed on the top of support base plate (1) and is located on one side of auxiliary conveying mechanism, the auxiliary loading mechanism includes transfer equipment mounting base plate (5) and mounting horizontal plate (53), the transfer equipment mounting base plate (5) is installed on the top of support base plate (1), the mounting horizontal plate (53) is rotatably connected to the top of transfer equipment mounting base plate (5), the top of mounting horizontal plate (53) is fixedly connected with two symmetrically distributed limit plates (54), two the limit plate (54) is rotatably connected with adjusting plate (55) between, the first support frame (56) is installed on the side of adjusting plate (55) away from limit plate (54); Loading logistics box (58), the loading logistics box (58) is installed on the top of the first support frame (56) away from the side of adjusting plate (55); Two dust fall box (9), two said dust fall box (9) is installed on the side of two field protection baffle (2) close to each other respectively; The auxiliary conveying mechanism includes conveying equipment fixing frame (4) and support rod (41), the conveying equipment fixing frame (4) is located between two field protection baffle (2), and is fixedly connected with the top of support base plate (1), the top of conveying equipment fixing frame (4) is fixedly connected with two symmetrically distributed support frame (42), two the support frame (42) is fixedly connected with mounting plate (48) between, the top of mounting plate (48) is fixedly connected with two second support frame (31), the top of two second support frame (31) is rotatably connected with two limit clamping plate (32), respectively rotatably connected with first driving roller (25) and first driven roller (26) between two opposite limit clamping plate (32), two first driving roller (25) and first driven roller (26) are respectively provided with first conveying belt (43) and second conveying belt (44) on two two corresponding first driving roller (25) and first driven roller (26). The bottom of the first support frame (56) is fixedly connected with a supporting seat (51) used in cooperation with the shipping logistics box (58), the inside of the transfer equipment mounting bottom plate (5) is mounted with three installation insertion rods (52) which are equidistantly distributed and extend to the inside of the supporting bottom plate (1), the top of the transfer equipment mounting bottom plate (5) is fixedly connected with the first driving motor (13), and the output end of the first driving motor (13) is fixedly connected with the bottom of the installation horizontal plate (53).

2. A bulk material ship loader according to claim 1 wherein: One side of one of the support frames (42) is fixedly connected with a reinforcing vertical plate (28), the top of the reinforcing vertical plate (28) is fixedly connected with an installation side plate (27), one side of the installation side plate (27) is fixedly connected with the second driving motor (29) and the third driving motor (30), respectively, the output end of the second driving motor (29) is fixedly connected with one end of the first driven rotating roller (25) after penetrating through one of the limiting clamping plates (32), and the output end of the third driving motor (30) is fixedly connected with one end of the second driven rotating roller (33) after penetrating through the other limiting clamping plate (32).

3. A bulk material ship loader according to claim 2 wherein: Two on-site protection baffles (2) are fixedly connected with an installation top plate (10) above the first conveying belt (43), the top of the installation top plate (10) is fixedly connected with a second power storage bin (14), the top of the second power storage bin (14) is fixedly connected with two electric control boxes (15), the inside of each of the two electric control boxes (15) is mounted with a backup battery (16), one side of each of the two electric control boxes (15) is fixedly connected with a light-emitting illuminating lamp (17), and the top of each of the two electric control boxes (15) is rotatably connected with a second solar panel (18).

4. The bulk material ship loader of claim 2, wherein: The bottom of the supporting bottom plate (1) is mounted with universal wheels (6) around, the top of the installation top plate (10) and on one side of the second power storage bin (14) is fixedly connected with a first power storage bin (7), and the top of the first power storage bin (7) is fixedly connected with a first solar panel (8).

5. A bulk material ship loader according to claim 4 wherein: ​ 6. The bulk material ship loader of claim 1, wherein: Both sides of two dust boxes (9) are fixedly connected with collecting bins (20), the upper side of the collecting bin (20) is fixedly connected with a plurality of equidistantly distributed spray pipes (19), the inside of all the spray pipes (19) is installed with a spray disc, the top of the first support frame (56) is installed with two adjusting plates (55), the top of both ends of the two adjusting plates (55) is rotatably connected with a rotating rod (57), the two limiting plates (54) are fixedly connected with a fixed plate (59), the outer side of the fixed plate (59) is rotatably connected with two third electric telescopic rods (21).

7. A bulk material ship loader according to claim 5 wherein: The two field protection baffles (2) are fixedly connected with a supporting vertical plate, the side, away from the field protection baffle (2), of the supporting vertical plate is fixedly connected with a collecting box (3), the inside of the supporting vertical plate and above the collecting box (3) are provided with a limiting groove (12) matched with the first conveying belt (43).

8. A bulk material ship loader according to claim 7 wherein: The outer side of one of the field protection baffles (2) is fixedly connected with a control panel (11), the first electric telescopic rod (46), the second electric telescopic rod (47), the first power storage bin (7), the first solar panel (8), the first driving motor (13), the second power storage bin (14), the electric control box (15), the standby battery (16), the light emitting illuminating lamp (17), the second solar panel (18), the third electric telescopic rod (21), the second driving motor (29) and the third driving motor (30) are electrically connected with the control panel (11).

Citation Information

Patent Citations

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    CN219585383U

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    CN117284810A

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    CN117513212A