Large-dip-angle movable reversed loader
Through the flexible adjustment of the design of secondary transmission components and support structure, the problem of lack of flexibility and stability in the use of large inclination mobile reposters is solved, and the material reprinting capacity in multiple places is achieved.
Patent Information
- Application Number
- CN202311841514.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2025-07-25
AI Technical Summary
The existing large-inclination mobile reposting machines lack flexibility during use and cannot independently adjust the conveyor belt and support structure, resulting in inconvenience in use and unstable equipment, and the inability to reproduce materials in multiple places.
A large inclination mobile reposter including a moving base plate and a transmission assembly is designed. By setting the secondary transmission assembly to slidably be connected below the main transmission assembly, the position of the secondary transmission assembly is adjusted to adjust the reposting capability, and the inclination angle of the main transmission assembly is controlled through the telescopic function of the side support frame and the support column, combining the folding plate and the wheel to achieve the stability and convenience of the device.
It realizes flexible adjustment of the conveyor belt and support structure in different scenarios, improves the stability and convenience of the device, and can reproduce materials in multiple places.
Smart Images

Figure CN120364355A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of mobile transfer, and in particular relates to a large-inclination mobile transfer machine. Background Art
[0002] The full name of the transfer machine is the scraper transfer machine for the gate road. When working, the main purpose of the large-inclination transfer machine is to convey items at a relatively low horizontal position to a certain height. Its input end is lapped with the conveyor of the workbench, and its output end is lapped with the belt conveyor for conveying items.
[0003] Existing large-inclination mobile transfer machines, such as the one with the publication number CN116395330A, disclose a large-inclination coal mine belt transfer machine, which includes a left chassis, rollers, a right chassis, a movable connection part, a left first mounting frame, a left tensioning structure, a left second mounting frame, a turning part, a first belt pulley, a right lifting mounting part, a second belt pulley, a left connecting rod, a right connecting rod, a middle mounting frame, a dust reduction structure, a middle rotating lead screw, a middle guiding shaft, a downward pressing tensioning shaft, an upper knob, a mating mounting block, an inclined fixing plate, an inclined support shaft, a horizontal support shaft, an L-shaped mounting rod, and a cleaning structure.
[0004] Existing large-inclination mobile transfer machines also have the following deficiencies: existing large-inclination mobile loaders will face various transportation scenarios during use. The conveyor belt of the existing device is set as a fixed structure and cannot be autonomously adjusted and adapted in various scenarios, so there are various inconveniences in the transfer work; during the use of the large-inclination mobile transfer machine, not only the inclination angle needs to be autonomously adjusted, but also the support structure under the device is required to be adjusted synchronously to avoid the situation of unstable device structure; existing devices are generally designed in a fixed manner and can only transfer materials in a fixed place, and cannot adjust and move the device to transfer and convey materials in multiple places. Summary of the Invention
[0005] The purpose of the present invention is to address the problems that existing large-inclination mobile loaders lack mobility convenience during use, can only rely on a fixed conveyor belt for conveying during use, so lack flexibility, and need to make the transfer machine and the support assembly operate in coordination simultaneously during the large-inclination adjustment process, and provide a large-inclination mobile transfer machine.
[0006] To achieve the above object, the present invention adopts the following technical solutions: a large-inclination mobile transfer machine, including a mobile bottom plate and a transmission component. The upper surface of the mobile bottom plate is fixedly connected with two support plates. The upper surfaces of the two support plates are rotatably connected with a main rotating shaft through a rotating member. The transmission component includes a main transmission component and a secondary transmission component. The main transmission component includes two first side plates. One end of the first side plate is fixedly connected to the side surface of the main rotating shaft. A plurality of structural notches are formed on the side surface of the first side plate. A plurality of first transmission shafts are rotatably connected in an array on the side surfaces of the two first side plates facing each other. The plurality of first transmission shafts are combined into a long strip-shaped annular transmission shaft assembly. A first transmission track is slidably connected to the outside of the first transmission shaft. A plurality of material transfer baffles are fixedly connected in an array on the outer side surface of the first transmission track. First limiting plates are fixedly connected to both sides of the material transfer baffle. The first limiting plates are fixedly connected to the upper surface of the first transmission track.
[0007] Further, the secondary transmission component includes two second side plates. A plurality of second transmission shafts are rotatably connected on the side surfaces of the two second side plates facing each other. A second transmission track is slidably connected to the outside of the second transmission shaft. A plurality of secondary material transfer baffles and two second limiting plates are fixedly connected to the outer side surface of the second transmission track. The two second limiting plates are fixedly connected to the side surfaces of the secondary material transfer baffle. Three sliding members are fixedly connected to the upper ends of the second side plates. Two symmetrically arranged sliding grooves are provided on both side surfaces of the first side plate. The upper ends of the sliding members are slidably engaged and connected to the inside of the sliding grooves.
[0008] Further, side support frames are fixedly connected to both side surfaces of the first side plate. A sliding groove is provided on the bottom surface of the side support frame. Three sliding blocks are slidably engaged and connected to the inside of the sliding groove. A vertical support column is fixedly connected to the lower surface of the sliding block. An inclined side support column is fixedly connected to the side surface of the sliding block. The lower surfaces of the vertical support column and the inclined side support column are both fixedly connected to the upper surface of the mobile bottom plate.
[0009] Further, four support columns are rotatably connected to the lower surface of the mobile bottom plate. The four support columns are arranged at the four corners of the lower surface of the mobile bottom plate. A cross column is fixedly connected to the lower surface of the support column. Wheels are rotatably connected to both side surfaces of the cross column. Two folding plates are rotatably connected symmetrically to the side surface of the support column. The folding plates are arranged between the two wheels. A fixing plate is fixedly connected to the lower surface of the folding plate.
[0010] Further, placing pads are fixedly connected to one side of the two support plates close to the main transmission component. When the main transmission component is parallel to the mobile bottom plate, the lower surface of the first side plate is closely attached to the upper surface of the placing pad.
[0011] Further, the side support frame is arranged above the sliding member, the length of the main transmission assembly is twice that of the secondary transmission assembly, and the three sliding members are equidistantly arranged from the middle of the second side plate towards the direction close to the main rotating shaft.
[0012] Further, the surface of the fixing plate is provided with a wavy groove.
[0013] Further, the height of the secondary transmission assembly is less than the height of the placing cushion block.
[0014] Compared with the existing technology, the advantages of this large-angle mobile transfer machine are as follows:
[0015] 1. In the present invention, by arranging the secondary transmission assembly to be slidably connected below the main transmission assembly, this arrangement can, on the one hand, avoid excessive space occupation when parking the device, and on the other hand, when using the device, the transfer capacity of the device can be adjusted by adjusting the position of the secondary transmission assembly.
[0016] 2. In the present invention, by arranging the side support frame to be fixedly connected to the side of the main transmission assembly, and a chute and a sliding block are provided on the lower surface of the side support frame, a vertical support column and an inclined side support column are fixedly connected to the lower surface of the sliding block. The vertical support column has a load-bearing effect on the main transmission assembly, and the telescopic function of the inclined side support column enables the main transmission assembly to rotate around the main rotating shaft, thereby controlling the inclination angle of the main transmission assembly.
[0017] 3. In the present invention, by arranging the moving assembly below the moving bottom plate, in order to ensure that the device is not affected during the working process, fixing components are rotatably connected to both sides of the support column. Through the folding method, the device can be more stable during use and more convenient during the moving process. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the large-angle mobile transfer machine provided by the present invention in the non-working state;
[0019] Figure 2 is a schematic support structure diagram of the large-angle mobile transfer machine provided by the present invention;
[0020] Figure 3 is a schematic structural diagram of the large-angle mobile transfer machine provided by the present invention in the working state;
[0021] Figure 4 is a schematic side structure diagram of the large-angle mobile transfer machine provided by the present invention;
[0022] Figure 5 is a schematic internal structure diagram of the large-angle mobile transfer machine provided by the present invention;
[0023] Figure 6 isFigure 4 Enlarged view of part A
[0024] Figure 7 is Figure 4 Enlarged view of part B
[0025] In the figure, 1 is the moving bottom plate, 2 is the support column, 3 is the cross column, 4 is the folding plate, 5 is the fixed plate, 6 is the wheel, 7 is the rotating part, 8 is the support plate, 9 is the structural notch, 10 is the sliding part, 11 is the second side plate, 12 is the first limiting plate, 13 is the second limiting plate, 14 is the material transfer baffle, 15 is the first transmission shaft, 16 is the first transmission track, 17 is the second transmission shaft, 18 is the sliding groove, 19 is the first side plate, 20 is the sliding block, 21 is the vertical support column, 22 is the inclined side support column, 23 is the side support frame, 24 is the main rotating shaft, 25 is the second transmission track, 26 is the placing cushion block. Specific implementation mode
[0026] The following embodiments are only for illustrative purposes and are not intended to limit the scope of the present invention.
[0027] As Figures 1-7 shown, the large-inclination moving transfer machine includes a moving bottom plate 1 and a transmission assembly. Two support plates 8 are fixedly connected to the upper surface of the moving bottom plate 1. The upper surfaces of the two support plates 8 are rotatably connected to a main rotating shaft 24 through a rotating part 7. The transmission assembly includes a main transmission assembly and a sub-transmission assembly. The main transmission assembly includes two first side plates 19. One end of the first side plate 19 is fixedly connected to the side surface of the main rotating shaft 24. A plurality of structural notches 9 are provided on the side surface of the first side plate 19. A plurality of first transmission shafts 15 are rotatably connected in an array on the side surfaces of the two first side plates 19 facing each other. The plurality of first transmission shafts 15 are combined into a long strip-shaped annular transmission shaft assembly. The outer side of the first transmission shaft 15 is slidably connected to a first transmission track 16. A plurality of material transfer baffles 14 are fixedly connected to the outer side surface of the first transmission track 16 in an array. First limiting plates 12 are fixedly connected to both sides of the material transfer baffle 14. The first limiting plates 12 are fixedly connected to the upper surface of the first transmission track 16. By the rotation of the first transmission shaft 15, the operation of the first transmission track 16 is driven. The first transportation trough jointly composed of the baffle 14, the first transmission track 16 and the first limiting plates 12 can also better convey materials;
[0028] The secondary transmission assembly includes two second side plates 11. On the side surfaces of the two second side plates 11 close to each other, a number of second transmission shafts 17 are rotatably connected. A second transmission track 25 is slidably connected to the outer side of the second transmission shafts 17. A number of secondary feeding baffles and two second limiting plates 13 are fixedly connected to the outer side surface of the second transmission track 25. The two second limiting plates 13 are fixedly connected to the side surfaces of the secondary feeding baffles. Three sliding members 10 are fixedly connected to the upper ends of the second side plates 11. Two symmetrically arranged sliding grooves 18 are provided on the two side surfaces of the first side plate 19. The upper ends of the sliding members 10 are slidably and snap-fitted into the internal of the sliding grooves 18. By arranging the secondary transmission assembly to be slidably connected below the main transmission assembly, this setting can, on the one hand, avoid excessive space occupation when parking the device, and on the other hand, when using the device, the loading capacity of the device can be adjusted by adjusting the position of the secondary transmission assembly;
[0029] Two side supports 23 are fixedly connected to the two side surfaces of the first side plate 19. A sliding groove is provided on the bottom surface of the side support 23. Three sliding blocks 20 are slidably and snap-fitted into the internal of the sliding groove. A vertical support column 21 is fixedly connected to the lower surface of the sliding block 20. An inclined side support column 22 is fixedly connected to the side surface of the sliding block 20. The lower surfaces of the vertical support column 21 and the inclined side support column 22 are both fixedly connected to the upper surface of the moving base plate 1. The vertical support column 21 and the inclined side support column 22 both have the functions of telescoping and load-bearing during use. The side support 23 is arranged above the sliding member 10. The length of the main transmission assembly is twice that of the secondary transmission assembly. The three sliding members 10 are arranged at equal intervals from the middle of the second side plate 11 towards the direction close to the main rotating shaft 24. By arranging the side support 23 to be fixedly connected to the side surface of the main transmission assembly, and a sliding groove and a sliding block 20 are provided on the lower surface of the side support 23, a vertical support column 21 and an inclined side support column 22 are fixedly connected to the lower surface of the sliding block 20. The vertical support column 21 has a load-bearing effect on the main transmission assembly, and the telescoping function of the inclined side support column 22 enables the main transmission assembly to rotate around the main rotating shaft 24 to control the inclination angle of the main transmission assembly;
[0030] Four struts 2 are rotatably connected to the lower surface of the moving base plate 1. The four struts 2 are arranged at the four corners of the lower surface of the moving base plate 1. A cross column 3 is fixedly connected to the lower surface of the strut 2. Wheels 6 are rotatably connected to both side surfaces of the cross column 3. The mobility of the device is realized through the wheels 6, and the steering function of the wheels is realized through the rotatable struts 2, thereby improving the moving convenience of the device. Two folding plates 4 are symmetrically and rotatably connected to the side surface of the strut 2. The folding plates 4 are arranged between the two wheels 6. A fixing plate 5 is fixedly connected to the lower surface of the folding plate 4. A wavy groove is arranged on the surface of the fixing plate 5. The moving assembly is arranged below the moving base plate 1. To ensure that the device is not affected during operation, fixing components are rotatably connected to both sides of the strut. In a folded manner, the device can be more stable during use and have better convenience during movement;
[0031] Two support plates 8 are fixedly connected with placing pads 26 on the side close to the main transmission assembly. When the main transmission assembly is parallel to the moving base plate 1, the lower surface of the first side plate 19 closely adheres to the upper surface of the placing pad 26. The height of the auxiliary transmission assembly is less than the height of the placing pad 26. When the loader is not in use, the main transmission assembly is placed horizontally. The placing pad 26 can not only bear the weight of the main transmission assembly but also suspend the auxiliary transmission assembly above the moving base plate 1. When the loader is in use, both the main transmission assembly and the auxiliary transmission assembly will extend out, which is likely to cause the center of gravity of the device to shift, resulting in instability of the device. At this time, the placing pad 26 can also play a role in load balance.
[0032] The working principle of the present invention is as follows:
[0033] Use the moving components installed at the bottom of the device to move the transfer machine to the required site. Rotate the folding plate 4 to lay the fixed plate 5 flat on the ground, thereby increasing the friction between the moving transfer machine and the ground, and thus having a better fixing effect. The moving components are arranged below the moving bottom plate 1. To ensure that the device is not affected during operation, fixed components are rotatably connected to both sides of the pillar. Through the folding method, the device can be more stable during use and more convenient during movement. Then, control the telescopic movement of the vertical support column 21 and the inclined side support column 22, and control the sliding direction and position of the sliding block 20 in the chute, so that the main transmission component rotates around the main rotating shaft 24 and turns the main transmission component to a suitable angle. By setting the side support frame 23 fixedly connected to the side of the main transmission component, and there are chutes and sliding blocks 20 on the lower surface of the side support frame 23. The vertical support column 21 and the inclined side support column 22 are fixedly connected to the lower surface of the sliding block 20. The vertical support column 21 bears the weight of the main transmission component, and the telescopic function of the inclined side support column 22 enables the main transmission component to rotate around the main rotating shaft 24, thereby controlling the inclination angle of the main transmission component. According to the work requirements, then control the sub-transmission component to slide below the main transmission component, so as to further increase the conveying length and height of the transfer machine. By setting the sub-transmission component to be slidably connected below the main transmission component, this setting can, on the one hand, avoid occupying too much space when parking the device, and on the other hand, when using the device, the transfer capacity of the device can be adjusted by adjusting the position of the sub-transmission component.
[0034] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection scope of the present invention.
Claims
1. Large dip angle mobile transfer machine, characterized in that, It includes a moving bottom plate (1) and a transmission assembly. On the upper surface of the moving bottom plate (1), two support plates (8) are fixedly connected. On the upper surfaces of the two support plates (8), a main rotating shaft (24) is rotatably connected through a rotating member (7). The transmission assembly includes a main transmission assembly and a sub-transmission assembly. The main transmission assembly includes two first side plates (19). One end of the first side plate (19) is fixedly connected to the side surface of the main rotating shaft (24). A number of structural notches (9) are formed on the side surface of the first side plate (19). On the side surfaces of the two first side plates (19) that are close to each other, a number of first transmission shafts (15) are rotatably connected in an array. The number of first transmission shafts (15) forms a long strip-shaped annular transmission shaft assembly. A first transmission track (16) is slidably connected to the outside of the first transmission shaft (15). A number of material conveying baffles (14) are fixedly connected to the outer side surface of the first transmission track (16) in an array. On both sides of the material conveying baffle (14), first limiting plates (12) are fixedly connected. The first limiting plates (12) are fixedly connected to the upper surface of the first transmission track (16).
2. The large-angle mobile transfer machine according to claim 1, wherein, The sub-transmission assembly includes two second side plates (11). A number of second transmission shafts (17) are rotatably connected to the side surfaces of the two second side plates (11) that are close to each other. A second transmission track (25) is slidably connected to the outside of the second transmission shaft (17). A number of sub-material conveying baffles and two second limiting plates (13) are fixedly connected to the outer side surface of the second transmission track (25). The two second limiting plates (13) are fixedly connected to the side surfaces of the sub-material conveying baffles. Three sliding members (10) are fixedly connected to the upper ends of the second side plates (11). Two symmetrically arranged sliding grooves (18) are provided on the two side surfaces of the first side plate (19). The upper ends of the sliding members (10) are slidably and snap-fitted into the inside of the sliding grooves (18).
3. The large-angle mobile transfer machine according to claim 2, characterized in that, On both side surfaces of the first side plate (19), side support frames (23) are fixedly connected. A sliding groove is provided on the bottom surface of the side support frame (23). Three sliding blocks (20) are slidably and snap-fitted into the inside of the sliding groove. A vertical support column (21) is fixedly connected to the lower surface of the sliding block (20). An inclined side support column (22) is fixedly connected to the side surface of the sliding block (20). The lower surfaces of the vertical support column (21) and the inclined side support column (22) are both fixedly connected to the upper surface of the moving bottom plate (1).
4. The large-angle mobile transfer machine according to claim 1, characterized in that, Four support columns (2) are rotatably connected to the lower surface of the moving bottom plate (1). The four support columns (2) are arranged at the four corners of the lower surface of the moving bottom plate (1). A cross column (3) is fixedly connected to the lower surface of the support column (2). Wheels (6) are rotatably connected to both side surfaces of the cross column (3). Two folding plates (4) are symmetrically rotatably connected to the side surface of the support column (2). The folding plates (4) are arranged between the two wheels (6). A fixing plate (5) is fixedly connected to the lower surface of the folding plate (4).
5. The large-angle mobile transfer machine according to claim 1, wherein On one side of the two support plates (8) close to the main transmission assembly, a placing cushion block (26) is fixedly connected. When the main transmission assembly is parallel to the moving bottom plate (1), the lower surface of the first side plate (19) closely adheres to the upper surface of the placing cushion block (26).
6. The large-angle mobile transfer machine according to claim 3, characterized in that, The side support frame (23) is arranged above the sliding member (10). The length of the main transmission assembly is twice that of the secondary transmission assembly. The three sliding members (10) are equidistantly arranged from the middle of the second side plate (11) towards the direction close to the main rotating shaft (24).
7. The large-angle mobile transfer machine according to claim 4, wherein The surface of the fixing plate (5) is provided with a wavy groove.
8. The large-angle mobile transfer machine according to claim 5, characterized in that, The height of the secondary transmission assembly is less than the height of the placing cushion block (26).
Citation Information
Patent Citations
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