A vertical multidirectional material conveying system
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI TAIFU HEAVY IND MFG CO LTD
- Filing Date
- 2025-10-13
- Publication Date
- 2026-08-07
AI Technical Summary
大多数输送机的高度和倾角是固定的,无法根据实际生产需求对不同高度的料仓、包装线进行投料,导致一套设备只能服务于单一工位,整体设备的使用灵活性低;
[0011]与现有技术相比,本实用新型的优点和积极效果在于,
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Figure CN224604169U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material conveying equipment technology, and in particular to a vertical multidirectional material conveying system. Background Technology
[0002] In modern industrial production, such as mining, metallurgy, chemical industry, building materials, and warehousing and logistics, continuous material transportation is a key link to ensure production efficiency and automation level.
[0003] In practical applications, existing material conveying systems, such as stationary belt conveyors, while widely used, still have the following problems: Most conveyors have fixed height and inclination angle, making it impossible to feed materials to silos and packaging lines at different heights according to actual production needs. This results in a set of equipment serving only a single workstation, leading to low overall equipment flexibility. To achieve multi-point and multi-directional conveying, multiple fixed conveyor lines are usually required. This not only occupies a lot of factory space, but also increases equipment investment and maintenance costs, thus causing many inconveniences.
[0004] Therefore, this utility model provides a vertical multidirectional material conveying system. Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and provide a multifunctional conveying system that integrates vertical lifting, horizontal conveying, and height adjustment to meet the higher requirements of modern production for space saving and flexibility.
[0006] To achieve the above objectives, this utility model adopts the following technical solution: a vertical multidirectional material conveying system, including a support platform. A storage box is fixedly connected to the top of the support platform. A fixed frame is fixedly connected to the top of the storage box. A support frame is fixedly connected to the top of the fixed frame. A bottom limiting frame is fixedly connected inside the support frame. A sprocket is rotatably connected inside the support frame. A chain is fitted around the outside of the sprocket. The sprocket and the chain are meshed together. One end of the chain extends into the bottom limiting frame. The other end of the chain is fitted around a chain limiting frame. The bottom limiting frame and the chain limiting frame are fixedly connected, thereby ensuring that the chain can move inside the chain limiting frame and the bottom limiting frame. Two symmetrically distributed support frames are fixedly connected to one side of the storage box. Fixed side plates are slidably connected to one side of each of the two support frames. A bottom fixed platform is fixedly connected to the bottom of the fixed side plate. A second conveyor belt is installed inside the bottom fixed platform. The support platform has a bottom support plate installed at its bottom, and a bottom recycling conveying mechanism penetrating the support platform is installed at the top of the bottom support plate. The bottom recycling conveying mechanism is located below the bottom fixed platform and includes a collection bin. A support upright plate is fixedly connected to the top of the bottom support plate, and a collection bin is fixedly connected inside the support platform. A bottom fixed frame is fixedly connected to the bottom of the collection bin, and a first conveyor belt is installed inside the bottom fixed frame. One side of the support upright plate is fixedly connected to the bottom fixed frame, providing support for the bottom fixed frame and the collection bin. A fixed rod extending into the chain limiting frame is fixedly connected to one side of the fixed side plate. One side of the fixed rod is connected to one end of the chain, and one end of the chain is fixedly connected to the fixed rod via a connecting block. A limiting groove for use with the fixed rod is provided on one side of the chain limiting frame. The collection bin, in conjunction with the second conveyor belt, transports materials normally, achieving one conveying operation. A guide conveying plate is provided below the collection bin, and a conveying trough is provided inside the guide conveying plate.
[0007] In a preferred embodiment, a vibration motor is fixedly connected to the bottom of the bottom fixing frame, and a second drive motor for use with the first conveyor belt is fixedly connected to one side of the bottom fixing frame. Two symmetrically distributed bearing sleeves are fixedly connected to the top of the fixing frame. A rotating shaft is fixedly connected to the axis of the sprocket. The two bearing sleeves are used to limit the rotation rod. A motor mounting plate is fixedly connected to the top of the fixing frame and to one side of one of the bearing sleeves. A first drive motor is fixedly connected to one side of the motor mounting plate. The output end of the first drive motor is fixedly connected to one end of the rotating rod. Thus, the rotation of the first drive motor drives the rotating rod to rotate inside the two bearing sleeves, thereby driving the sprocket to rotate and causing the chain to slide inside the chain limiting frame. At this time, the connection of one end of the chain... The block drives the fixed rod to move upward, thereby adjusting the height of the fixed side plate and adjusting the height during material conveying to achieve secondary conveying operations. The movable wheels facilitate the turning and movement of the equipment, thus meeting the needs of multi-directional conveying at different heights. The support platform has a limiting groove inside that is installed to match the collection bin. The second conveyor belt is rotatably connected with equally spaced transmission conveying rollers. The top of the support frame is fixedly connected to two symmetrically distributed limiting brackets. The two limiting brackets are equipped with symmetrically distributed fans inside. The fans are used to assist in heat dissipation during operation, thereby extending the service life of the equipment. The top end of the support frame is fixedly connected to the corresponding limiting bracket, which is used to assist the second conveyor belt and transmission conveying rollers in conveying the surface material to the top of the bottom recycling conveying mechanism.
[0008] In a preferred embodiment, a recycling box is installed between the support platform and the bottom support plate, on the side away from the bottom recycling conveying mechanism. The top of the recycling box is fixedly connected to the bottom of the support platform, the material guide conveying plate is fixedly connected to the recycling box, and the bottom of the recycling box is fixedly connected to the top of the bottom support plate. By installing the recycling box between the support platform and the bottom support plate, the connection between the support platform and the bottom support plate is reinforced, and the conveyed materials are recycled and stored. A control panel is fixedly connected to the side of the recycling box away from the chain limit frame. The first drive motor, the vibration motor, the second drive motor, and the fan are all electrically connected to the control panel. The control panel is used to control the operation of the first drive motor, the vibration motor, the second drive motor, and the fan, realizing unified management of the electrical equipment.
[0009] In a preferred embodiment, two symmetrically distributed limiting sliders are fixedly connected to the side of the fixed side plate near the support frame. The two limiting sliders are located on the corresponding side of the support frame. The outer side of each limiting slider is threaded with a positioning bolt extending to the inner wall of the support frame. When the entire equipment stops running, the corresponding limiting slider and support frame can be positioned by the two positioning bolts, thereby reducing the possibility of the fixed side plate moving on its own and improving the installation stability of the equipment.
[0010] In a preferred embodiment, side reinforcement plates are fixedly connected to both sides of the bottom fixed platform. One side of each of the two side reinforcement plates is fixedly connected to the fixed side plate. The two side reinforcement plates reinforce the connection between the fixed side plate and the bottom fixed platform, providing a certain degree of support. Four casters are fixedly connected to the bottom of the bottom support plate. The four casters are used to drive the entire equipment to move to the required work location.
[0011] Compared with the prior art, the advantages and positive effects of this utility model are as follows: By setting up a support platform, bottom support plate, and material collection bin, the control panel is opened during use. When it is necessary to change the feeding height, the first drive motor is started through the control panel. The first drive motor drives the rotating shaft and the sprocket fixed on it to rotate, thereby driving the chain to move within the track formed by the chain limit frame and the bottom limit frame. Since one end of the chain is connected to the fixed side plate through a fixed rod, and the fixed side plate slides on the support frame through the limit slider, the movement of the chain is directly converted into the vertical lifting movement of the entire conveying equipment. After adjusting to the predetermined height, it can be mechanically locked by the positioning bolts to ensure stability during operation. The second conveyor belt runs under the drive of the transmission conveyor roller, conveying the material from the equipment body to the outside, completing the precise feeding of targets at different heights. The fan can provide power for the first... The drive motor and other electrical equipment are cooled to extend the equipment's lifespan. The material is conveyed normally via the collection bin and the second conveyor belt, achieving a single conveying operation. A connecting block at one end of the chain drives a fixed rod upwards, adjusting the height of the fixed side plate for a secondary conveying operation. The movable wheels facilitate turning and moving the equipment, meeting the needs of multi-directional conveying at different heights. A recycling bin is installed between the support platform and the bottom support plate, reinforcing the connection between them while simultaneously recycling and storing the conveyed materials. When the entire equipment stops running, two positioning bolts can be used to position the corresponding limit sliders and support frames, reducing the possibility of the fixed side plate moving independently and improving the equipment's installation stability. Attached Figure Description
[0012] Figure 1 A schematic diagram of the overall structure of a vertical multidirectional material conveying system provided by this utility model. Figure 1 ; Figure 2 A schematic diagram of the overall structure of a vertical multidirectional material conveying system provided by this utility model. Figure 2 ; Figure 3 A schematic diagram of the overall structure of a vertical multidirectional material conveying system provided by this utility model. Figure 3 ; Figure 4 An enlarged schematic diagram of the bottom recovery conveying mechanism of a vertical multidirectional material conveying system provided by this utility model; Figure 5 This utility model provides an accessory for a vertical multidirectional material conveying system. Figure 2 Enlarged schematic diagram of the structure at point A in the diagram; Figure 6 This utility model provides an accessory for a vertical multidirectional material conveying system. Figure 3 Enlarged schematic diagram of the structure at point B in the diagram.
[0013] Legend: 1. Support platform; 11. Storage box; 12. Fixing frame; 13. Control panel; 14. Limiting bracket; 15. Chain limiting bracket; 16. Motor mounting plate; 17. Support frame; 18. Bottom limiting bracket; 19. First drive motor; 2. Bottom support plate; 21. Recycling bin; 22. Casters; 23. Material guide conveyor plate; 24. Material conveying trough; 3. Collection bin; 31. Bottom fixing frame; 32. First conveyor belt; 33. Vibrating motor; 34. Second drive motor; 35. Supporting upright plate; 4. Fixed side plate; 41. Bottom fixed platform; 42. Side reinforcement plate; 43. Second conveyor belt; 44. Transmission conveyor roller; 45. Fixed rod; 46. Limiting slider; 47. Positioning bolt; 5. Chain; 51. Sprockets; 52. Fan; 53. Support frame. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0015] like Figures 1-6 As shown, this embodiment provides a technical solution: a vertical multidirectional material conveying system, including a support platform 1, a storage box 11 fixedly connected to the top of the support platform 1, a fixed frame 12 fixedly connected to the top of the storage box 11, a support frame 17 fixedly connected to the top of the fixed frame 12, a bottom limiting frame 18 fixedly connected inside the support frame 17, a sprocket 51 rotatably connected inside the support frame 17, a chain 5 sleeved on the outside of the sprocket 51, the sprocket 51 and the chain 5 meshing, one end of the chain 5 extending into the inside of the bottom limiting frame 18, the other end of the chain 5 sleeved on the outside of the chain limiting frame 15, the bottom limiting frame 18 and the chain limiting frame 15 fixedly connected, thereby ensuring that the chain 5 can move inside the chain limiting frame 15 and the bottom limiting frame 18; In this solution, two symmetrically distributed support frames 53 are fixedly connected to one side of the storage box 11. Fixed side plates 4 are slidably connected to one side of each of the two support frames 53. A bottom fixed platform 41 is fixedly connected to the bottom of the fixed side plate 4. A second conveyor belt 43 with equal spacing is installed inside the bottom fixed platform 41. In this design, a bottom support plate 2 is installed at the bottom of the support platform 1, and a bottom recycling conveying mechanism that penetrates the support platform 1 is installed at the top of the bottom support plate 2. The bottom recycling conveying mechanism is located below the bottom fixed platform 41 and includes a collection bin 3. A support upright plate 35 is fixedly connected to the top of the bottom support plate 2, and the collection bin 3 is fixedly connected inside the support platform 1. A bottom fixed frame 31 is fixedly connected to the bottom of the collection bin 3, and a first conveyor belt 32 is installed inside the bottom fixed frame 31. One side of the support upright plate 35 is fixedly connected to the bottom fixed frame 31. The support plate 35 supports the bottom fixed frame 31 and the collection bin 3. A fixed rod 45 extending into the chain limit frame 15 is fixedly connected to one side of the fixed side plate 4. One side of the fixed rod 45 is connected to one end of the chain 5. One end of the chain 5 is fixedly connected to the fixed rod 45 through a connecting block. A limit groove for use with the fixed rod 45 is provided on one side of the chain limit frame 15. The collection bin 3 cooperates with the second conveyor belt 43 to transport materials normally, achieving one conveying operation. A guide conveying plate 23 is provided below the collection bin 3. A conveying trough 24 is provided inside the guide conveying plate 23.
[0016] Going further, such as Figures 1-6 As shown: In this scheme, a vibration motor 33 is fixedly connected to the bottom of the bottom fixed frame 31, and a second drive motor 34 for use with the first conveyor belt 32 is fixedly connected to one side of the bottom fixed frame 31. Two symmetrically distributed bearing sleeves are fixedly connected to the top of the fixed frame 12. A rotating shaft is fixedly connected to the center of the sprocket 51. The two bearing sleeves are used to limit the rotation rod. A motor mounting plate 16 is fixedly connected to the top of the fixed frame 12 and to one side of one of the bearing sleeves. A first drive motor 19 is fixedly connected to one side of the motor mounting plate 16. The output end of the first drive motor 19 is fixedly connected to one end of the rotation rod. Thus, the rotation rod rotates inside the two bearing sleeves through the operation of the first drive motor 19, thereby driving the sprocket 51 to rotate and driving the chain 5 to slide inside the chain limit frame 15. At this time, the connecting block at one end of the chain 5 will drive the fixed rod 45 to move upward, thereby adjusting the height of the fixed side plate 4. The height is adjusted during material conveying to achieve secondary conveying operation. The movable wheel 22 facilitates the turning and movement of the equipment, thereby meeting the needs of multi-directional conveying at different heights.
[0017] Going further, such as Figures 1-3 , Figure 6As shown: In this scheme, the support platform 1 has a limiting groove inside to cooperate with the material collection bin 3. The second conveyor belt 43 is rotatably connected with equally spaced transmission conveyor rollers 44. The top of the support frame 17 is fixedly connected with two symmetrically distributed limiting brackets 14. The two limiting brackets 14 are each equipped with symmetrically distributed fans 52. The fans 52 are used to assist in heat dissipation during operation, thereby extending the service life of the equipment. The top end of the support frame 53 is fixedly connected to the corresponding limiting bracket 14. The second conveyor belt 43 and the transmission conveyor rollers 44 are used to assist in the conveying of surface materials to the top of the bottom recycling conveyor mechanism.
[0018] Going further, such as Figures 1-6 As shown, in this scheme, a recycling box 21 is installed between the support platform 1 and the bottom support plate 2, on the side away from the bottom recycling conveying mechanism. The top of the recycling box 21 is fixedly connected to the bottom of the support platform 1, the guide conveying plate 23 is fixedly connected to the recycling box 21, and the bottom of the recycling box 21 is fixedly connected to the top of the bottom support plate 2. By installing the recycling box 21 between the support platform 1 and the bottom support plate 2, the connection between the support platform 1 and the bottom support plate 2 is reinforced, and the conveyed materials are recycled and stored.
[0019] In this solution, a control panel 13 is fixedly connected to the side of the storage box 11 away from the chain limit frame 15. The first drive motor 19, the vibration motor 33, the second drive motor 34 and the fan 52 are all electrically connected to the control panel 13. The control panel 13 is used to control the operation of the first drive motor 19, the vibration motor 33, the second drive motor 34 and the fan 52, thereby realizing the unified management of electrical equipment.
[0020] Going further, such as Figures 1-5 As shown in the diagram, in this design, two symmetrically distributed limiting sliders 46 are fixedly connected to the side of the fixed side plate 4 closest to the support frame 53. Both limiting sliders 46 are located on the corresponding side of the support frame 53. The outer side of each limiting slider 46 is threaded with a positioning bolt 47 extending to the inner wall of the support frame 53. When the entire equipment stops running, the corresponding limiting slider 46 and the support frame 53 can be positioned by the two positioning bolts 47, thereby reducing the possibility of the fixed side plate 4 moving on its own and improving the installation stability of the equipment.
[0021] In this solution, side reinforcement plates 42 are fixedly connected to both sides of the bottom fixed platform 41. One side of each of the two side reinforcement plates 42 is fixedly connected to the fixed side plate 4. The two side reinforcement plates 42 reinforce the connection between the fixed side plate 4 and the bottom fixed platform 41, providing a certain degree of support. The bottom support plate 2 is fixedly connected to four wheels 22 around its bottom. The four wheels 22 are used to drive the entire equipment to move to the required work location.
[0022] Working principle: like Figures 1-6 As shown: By setting up a support platform 1, a bottom support plate 2, and a material collection bin 3, the control panel 13 is opened during use. When it is necessary to change the feeding height, the first drive motor 19 is started through the control panel 13. The first drive motor 19 drives the rotating shaft and the sprocket 51 fixed on it to rotate, thereby driving the chain 5 to move within the track formed by the chain limit frame 15 and the bottom limit frame 18. Since one end of the chain 5 is connected to the fixed side plate 4 through the fixed rod 45, and the fixed side plate 4 slides on the support frame 53 through the limit slider 46, the movement of the chain 5 will be directly converted into the vertical lifting movement of the entire conveying equipment. After adjusting to the predetermined height, it can be mechanically locked by the positioning bolt 47 to ensure the stability during operation. The second conveyor belt 43 runs under the drive of the transmission conveyor roller 44, conveying the material from the equipment body to the outside, completing the precise feeding of the target at different heights. The fan 52 can dissipate heat for the first drive motor 19 and other electrical equipment, extending the service life of the equipment. The material is conveyed normally through the collection bin 3 and the second conveyor belt 43, achieving a primary conveying operation. The connecting block at one end of the chain 5 drives the fixed rod 45 to move upward, thereby adjusting the height of the fixed side plate 4. This allows for height adjustment during material conveying, achieving a secondary conveying operation. The movable wheels 22 facilitate the turning and movement of the equipment, thus meeting the needs of multi-directional conveying at different heights. A recycling box 21 is installed between the support platform 1 and the bottom support plate 2, which not only reinforces the connection between the support platform 1 and the bottom support plate 2 but also collects and stores the conveyed materials. The control panel 13 controls the operation of the first drive motor 19, the vibration motor 33, the second drive motor 34, and the fan 52, realizing unified management of the electrical equipment. When the entire equipment stops running, the corresponding limit slider 46 and the support frame 53 can be positioned by the two positioning bolts 47, thereby reducing the autonomous movement of the fixed side plate 4 and improving the installation stability of the equipment.
[0023] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A vertical multidirectional material conveying system, comprising a support platform (1), characterized in that, A storage box (11) is fixedly connected to the top of the support platform (1). A fixing frame (12) is fixedly connected to the top of the storage box (11). A support frame (17) is fixedly connected to the top of the fixing frame (12). A bottom limiting frame (18) is fixedly connected inside the support frame (17). A sprocket (51) is rotatably connected inside the support frame (17). A chain (5) is fitted on the outside of the sprocket (51). The sprocket (51) and the chain (5) are meshed. One end of the chain (5) extends... Inside the bottom limiting frame (18), the other end of the chain (5) is fitted with a chain limiting frame (15). The bottom limiting frame (18) is fixedly connected to the chain limiting frame (15). Two support frames (53) are fixedly connected to one side of the storage box (11). Fixed side plates (4) are slidably connected to one side of each of the two support frames (53). A bottom fixed platform (41) is fixedly connected to the bottom of the fixed side plate (4). A second conveyor belt (43) is installed inside the bottom fixed platform (41). The bottom of the support platform (1) is equipped with a bottom support plate (2), and the top of the bottom support plate (2) is equipped with a bottom recycling conveying mechanism that penetrates the support platform (1). The bottom recycling conveying mechanism includes a collection bin (3), and the bottom of the collection bin (3) is fixedly connected with a bottom fixing frame (31). A first conveyor belt (32) is installed inside the bottom fixing frame (31), and a guide conveying plate (23) is provided below the collection bin (3).
2. The vertical multidirectional material conveying system according to claim 1, characterized in that: The bottom support plate (2) is fixedly connected to the top of the support plate (35), one side of the support plate (35) is fixedly connected to the bottom fixed frame (31), the bottom of the bottom fixed frame (31) is fixedly connected to the bottom of the vibration motor (33), one side of the bottom fixed frame (31) is fixedly connected to the second drive motor (34) used in conjunction with the first conveyor belt (32), the top of the fixed frame (12) is fixedly connected to two symmetrically distributed bearing sleeves, the sprocket (51) is fixedly connected to the shaft center of the shaft shaft, the two bearing sleeves are used to limit the rotation rod, the top of the fixed frame (12) and one side of one of the bearing sleeves is fixedly connected to the motor mounting plate (16), one side of the motor mounting plate (16) is fixedly connected to the first drive motor (19).
3. The vertical multidirectional material conveying system according to claim 2, characterized in that: One side of the fixed side plate (4) is fixedly connected to a fixed rod (45) extending into the chain limit frame (15). One side of the fixed rod (45) is connected to one end of the chain (5). The interior of the second conveyor belt (43) is rotatably connected to equally spaced transmission conveyor rollers (44). The top of the support frame (17) is fixedly connected to two symmetrically distributed limit brackets (14). The interior of the two limit brackets (14) is equipped with symmetrically distributed fans (52). The top end of the support frame (53) is fixedly connected to the corresponding limit bracket (14).
4. The vertical multidirectional material conveying system according to claim 3, characterized in that: A recycling box (21) is installed between the support platform (1) and the bottom support plate (2) and on the side away from the bottom recycling conveying mechanism. The top of the recycling box (21) is fixedly connected to the bottom of the support platform (1), the guide conveying plate (23) is fixedly connected to the recycling box (21), and the bottom of the recycling box (21) is fixedly connected to the top of the bottom support plate (2).
5. The vertical multidirectional material conveying system according to claim 4, characterized in that: The storage box (11) is fixedly connected to a control panel (13) on the side away from the chain limit frame (15). The first drive motor (19), the vibration motor (33), the second drive motor (34) and the fan (52) are all electrically connected to the control panel (13).
6. The vertical multidirectional material conveying system according to claim 1, characterized in that: Two symmetrically distributed limiting sliders (46) are fixedly connected to the side of the fixed side plate (4) near the support frame (53). The two limiting sliders (46) are located on the side of the corresponding support frame (53). The outer side of the limiting sliders (46) is threaded with positioning bolts (47) extending to the inner wall of the support frame (53).
7. The vertical multidirectional material conveying system according to claim 6, characterized in that: Both sides of the bottom fixed platform (41) are fixedly connected to side reinforcement plates (42), and one side of each of the two side reinforcement plates (42) is fixedly connected to the fixed side plate (4). The bottom support plate (2) is fixedly connected to the four sides of the bottom with moving wheels (22).