High-speed automatic separation mechanism for material transportation
By combining the first and second positioning components and integrating them with the material pushing component, the problems of damage and scalability of the high-speed automatic lane separating mechanism during peak periods are solved, achieving flexible connection and efficient lane separating of the equipment.
Patent Information
- Application Number
- CN202520737929.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-18
AI Technical Summary
Existing high-speed automatic lane separation mechanisms are prone to damage during peak periods and have limited scalability, making them difficult to adapt to future business growth needs.
The system employs a combination of a first positioning component and a second positioning component, connecting the second conveyor frame through pre-positioning and secondary positioning. Combined with a pushing component, it achieves material channeling and utilizes the connection structure of the screw and the compensating seat to adapt to the needs of different conveying angles.
The connection structure achieves both robustness and flexibility, adapting to different conveying angles, improving the ease of use and adaptability of the equipment, and reducing the risk of equipment damage.
Smart Images

Figure CN223920451U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of material transportation technology, and specifically relates to a high-speed automatic lane separation mechanism for material transportation. Background Technology
[0002] A high-speed automated sorting mechanism is an automated device used in logistics, production lines, or sorting systems. It can quickly and accurately sort flowing items or materials into different channels or paths according to preset rules (such as destination, size, weight, etc.), and is typically used in scenarios requiring high throughput and real-time sorting. Its core functions include: 1. High-speed sorting: processing large quantities of items (such as express parcels, industrial parts, food, etc.) in a short time; 2. Precise sorting: identifying target attributes (barcode, shape, color, etc.) through sensors and algorithms and allocating them to designated channels; 3. Dynamic adjustment: switching sorting rules according to real-time needs to adapt to flexible production or logistics fluctuations.
[0003] During peak material transportation periods, the lane-separating mechanism is prone to damage when operating at high intensity. To avoid unexpected situations, the existing equipment can be expanded to reduce the operating intensity of individual lane-separating mechanisms. However, the expandability of some equipment is limited, and the fixed design of the lane-separating mechanism is difficult to adapt to future business growth. If a new lane is added, the mechanical structure needs to be readjusted, which is very troublesome. Utility Model Content
[0004] To address the AAA problem, this utility model proposes a high-speed automatic lane-separating mechanism for material transportation, in order to overcome the aforementioned technical problems existing in the existing related technologies.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a high-speed automatic sorting mechanism for material transportation, including a first conveyor frame and a second conveyor frame. A first positioning component, a connecting component, and a second positioning component are respectively arranged between the first conveyor frame and the second conveyor frame. A pushing component is arranged on the side of the first conveyor frame. The first positioning component is used to pre-position the first conveyor frame and the second conveyor frame. The connecting component is used to compensate for the gap between the second positioning component and the second conveyor frame. The second positioning component is used to fix the second conveyor frame. The pushing component is used to push the material towards the second conveyor frame to achieve sorting.
[0007] Furthermore, the first positioning component includes a first pin shaft, which is rotatably connected to a first conveyor frame. A rotating plate is fixedly connected to the outer surface of the first pin shaft, and a rod is inserted into the outer surface of the rotating plate. The rod is inserted into a second conveyor frame.
[0008] Further, the connecting assembly comprises a fixing plate, the outer surface of the fixing plate is rotationally connected with a second pin shaft, the outer surface of the second pin shaft is rotationally connected with a connecting plate, and the connecting plate and the fixing plate are fixedly connected to the outer surface of the first conveying frame.
[0009] Further, the second positioning assembly comprises a screw rod, the screw rod is rotationally connected with the connecting plate, the end of the screw rod is fixedly connected with a rotating cap, the outer surface of the screw rod is threadedly connected with a compensation seat, the compensation seat is slidingly connected with the connecting plate, and the outer surface of the compensation seat is threadedly connected with a bolt.
[0010] Further, the pushing assembly comprises a support, the support is located on the side of the first conveying frame, the outer surface of the support is fixedly installed with a plurality of mounting seats, the outer surfaces of the mounting seats are respectively fixedly connected with electric push rods and guide rods, and the movable ends of the electric push rods and the guide rods are fixedly connected with a pushing plate.
[0011] Further, the bottom of the first conveying frame and the second conveying frame is fixedly installed with a supporting leg.
[0012] Further, the upper end of the inserting rod is fixedly connected with a lifting ring.
[0013] The utility model has the following beneficial effects:
[0014] 1. The utility model discloses a first positioning assembly and a second positioning assembly are connected, when the second conveying frame is connected with the first conveying frame, the first positioning assembly is positioned to the second conveying frame first, and then the second positioning assembly is positioned to the second conveying frame second, the connecting structure is simple and firm, and the first positioning assembly and the second conveying frame can rotate, so that it can be connected with the second conveying frame of different conveying angles, and it is more convenient and flexible to use.
[0015] 2. The utility model discloses a screw rod and a compensation seat are connected, the compensation seat passes through the inside of the connecting plate, when the screw rod rotates, the rotation trend of the compensation seat on the screw rod is blocked by the connecting plate, at this time, the screw rod can drive the compensation seat to move, the compensation seat drives the bolt to move, reduces the distance between the bolt and the second conveying frame, and avoids the situation that the connecting plate and the bolt end surface are not parallel and cannot be connected.
[0016] Of course, any product implementing the utility model does not necessarily need to achieve all the advantages described above. DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the utility model, the following will briefly introduce the drawings needed to be used in the description of the embodiments, obviously, the drawings in the following description are only some of the utility model, and for those skilled in the art, other drawings can also be obtained without creative labor on the premise of the drawings.
[0018] Figure 1 The external contour structure of the utility model is shown in Figure 1 ;
[0019] Figure 2 The external contour structure of the utility model is shown in Figure 2 ;
[0020] Figure 3 The structure of the utility model is shown in Figure 2 A place in the middle of the enlarged schematic view;
[0021] Figure 4 The structure of the utility model is shown in Figure 2 B place in the middle of the enlarged schematic view;
[0022] Figure 5 The second positioning assembly of the utility model is shown in the sectional view structure schematic view;
[0023] Figure 6 The structure of the utility model is shown in Figure 2 C place in the middle of the enlarged schematic view.
[0024] In the drawings, the component list represented by each sign is as follows:
[0025] 1, first conveying frame;2, second conveying frame;3, first positioning assembly;301, first pin shaft;302, rotating plate;303, plug rod;4, connecting assembly;401, fixed plate;402, second pin shaft;403, connecting plate;5, second positioning assembly;501, screw;502, screw cap;503, compensation seat;504, bolt;6, pushing assembly;601, support;602, mounting seat;603, electric push rod;604, guide rod;605, push plate;7, supporting leg;8, lifting ring. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, obviously, the described embodiments are only some of the utility model, not all. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor are within the scope of the utility model protection.
[0027] In the description of the utility model, it is understood that the terms "opening", "upper", "lower", "top", "middle", "inner" and the like indicate the orientation or positional relationship, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated component or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model.
[0028] Please refer to Figures 1-6 The utility model discloses a high -speed automatic channel mechanism for material transportation, including first conveying frame 1 and second conveying frame 2, first conveying frame 1 and second conveying frame 2 between respectively being provided with first positioning assembly 3, connecting component 4 and second positioning assembly 5, the side of first conveying frame 1 is provided with push material component 6, first positioning assembly 3 is used to preposition first conveying frame 1 and second conveying frame 2, connecting component 4 plays the role of compensating the gap between second positioning assembly 5 and second conveying frame 2, second positioning assembly 5 is used for fixing second conveying frame 2, push material component 6 is used to push material to second conveying frame 2 and realizes the channel.
[0029] Second conveying frame 2 is close to first conveying frame 1, and first positioning assembly 3 on first conveying frame 1 is used to preposition second conveying frame 2, avoids unnecessary movement of second conveying frame 2 in subsequent assembly process, rotates connecting component 4 again, so that connecting component 4 is against second conveying frame 2, rotates second positioning assembly 5 on connecting component 4, and second positioning assembly 5 is fixed into second conveying frame 2 to complete fixing, material moves on first conveying frame 1 and passes from the front of detector, if it meets the channel requirement, then start push material component 6 and push the material to second conveying frame 2, to realize the channel of material.
[0030] The utility model discloses a first positioning assembly 3 and the connection of second positioning assembly 5, when connecting second conveying frame 2 with first conveying frame 1, first positioning assembly 3 is prepositioned to second conveying frame 2 first, and then second positioning assembly 5 is positioned to second conveying frame 2 again, and the connecting structure is simple and firm, and first positioning assembly 3 and second conveying frame 2 can rotate, so that it can be connected with second conveying frame 2 of different conveying angles, and it is more convenient and flexible to use.
[0031] In one embodiment, for the above-mentioned first positioning assembly 3, the first positioning assembly 3 comprises a first pin shaft 301, the first pin shaft 301 is rotatably connected with the first conveying frame 1, the outer surface of the first pin shaft 301 is fixedly connected with a rotating plate 302, the outer surface of the rotating plate 302 is inserted with a plug rod 303, and the plug rod 303 is inserted with the second conveying frame 2.
[0032] The second conveying frame 2 is moved to be close to the first conveying frame 1, then the rotating plate 302 on the first conveying frame 1 is pushed to rotate through the first pin shaft 301, and after the rotating plate 302 is aligned with the insertion hole on the second conveying frame 2, the insertion rod 303 is inserted through the rotating plate 302 and the second conveying frame 2, so that unnecessary movement of the second conveying frame 2 is prevented.
[0033] In one embodiment, for the above-mentioned connecting assembly 4, the connecting assembly 4 comprises a fixed plate 401, the outer surface of the fixed plate 401 is rotationally connected with a second pin shaft 402, the outer surface of the second pin shaft 402 is rotationally connected with a connecting plate 403, and the connecting plate 403 is fixedly connected with the outer surface of the first conveying frame 1.
[0034] In one embodiment, for the above-mentioned second positioning assembly 5, the second positioning assembly 5 comprises a screw rod 501, the screw rod 501 is rotationally connected with the connecting plate 403, the end of the screw rod 501 is fixedly connected with a rotating cap 502, the outer surface of the screw rod 501 is threadedly connected with a compensation seat 503, the compensation seat 503 is slidingly connected with the connecting plate 403, and the outer surface of the compensation seat 503 is threadedly connected with a screw 504.
[0035] The connecting plate 403 is pushed to rotate through the second pin shaft 402, so that the connecting plate 403 drives the compensation seat 503 to rotate, the rotating cap 502 drives the screw rod 501 to rotate, the rotation trend of the compensation seat 503 on the screw rod 501 is blocked by the connecting plate 403, at this time, the screw rod 501 can drive the compensation seat 503 to move, so that the compensation seat 503 abuts against the second conveying frame 2, then the screw 504 is rotated to be threadedly connected with the second conveying frame 2, and the butt joint of the second conveying frame 2 and the first conveying frame 1 is completed.
[0036] In one embodiment, for the above-mentioned pushing assembly 6, the pushing assembly 6 comprises a support 601, the support 601 is located on the side of the first conveying frame 1, a plurality of mounting seats 602 are fixedly installed on the outer surface of the support 601, the outer surfaces of the plurality of mounting seats 602 are respectively fixedly connected with an electric push rod 603 and a guide rod 604, and the movable ends of the electric push rod 603 and the guide rod 604 are fixedly connected with a push plate 605.
[0037] When the material passes through the detector on the first conveying frame 1, if it meets the channeling requirement, the electric push rod 603 is started to push the push plate 605 to move, the push plate 605 moves along the guide rod 604, and the push plate 605 pushes the material to the second conveying frame 2 to realize channeling, and the guide rod 604 also plays a role in sharing the gravity of the push plate 605, so that the radial force borne by the electric push rod 603 is not too large.
[0038] In one embodiment, for the first conveying frame 1 described above, the bottom of the first conveying frame 1 and the second conveying frame 2 are fixedly installed with supporting legs 7.
[0039] A plurality of supporting legs 7 are respectively installed at the bottom of the first conveying frame 1 and the second conveying frame 2 by bolts 504, and users can select different supporting legs 7 to change the working height of the first conveying frame 1 and the second conveying frame 2.
[0040] In one embodiment, for the insertion rod 303 described above, the upper end of the insertion rod 303 is fixedly connected with a pull ring 8.
[0041] The staff can move the insertion rod 303 upwards by putting fingers through the pull ring 8, so as to facilitate taking and placing the insertion rod 303.
[0042] According to the above technical scheme of the utility model, the second conveying frame 2 is moved to be close to the first conveying frame 1, then the rotating plate 302 on the first conveying frame 1 is pushed, the rotating plate 302 is rotated through the first pin shaft 301, the rotating plate 302 is aligned with the insertion hole on the second conveying frame 2, then the insertion rod 303 is inserted through the rotating plate 302 and the second conveying frame 2, unnecessary movement of the second conveying frame 2 is prevented, the connecting plate 403 is pushed, the connecting plate 403 is rotated through the second pin shaft 402, so that the connecting plate 403 drives the compensation seat 503 to rotate, the rotating tendency of the compensation seat 503 on the screw rod 501 is blocked by the connecting plate 403, at this time, the screw rod 501 can drive the compensation seat 503 to move, so that the compensation seat 503 abuts against the second conveying frame 2, then the bolt 504 is rotated to be threadedly connected with the second conveying frame 2, the butt joint of the second conveying frame 2 and the first conveying frame 1 is completed, when the material passes through the detector on the first conveying frame 1, if it meets the channeling requirement, the electric push rod 603 is started to push the push plate 605 to move, the push plate 605 moves along the guide rod 604, and the push plate 605 pushes the material to the second conveying frame 2 to realize channeling.
[0043] Through the technical scheme, 1, through the connection of the first positioning assembly 3 and the second positioning assembly 5, when the second conveying frame 2 is connected with the first conveying frame 1, the first positioning assembly 3 first prepositions the second conveying frame 2, and then the second positioning assembly 5 secondarily positions the second conveying frame 2, the connection structure is simple and firm, and the first positioning assembly 3 and the second conveying frame 2 can rotate, so that the first positioning assembly 3 can be connected with the second conveying frame 2 with different conveying angles, and use is more convenient and flexible; 2, through the connection of the screw rod 501 and the compensation seat 503, the compensation seat 503 passes through the inside of the connecting plate 403, when the screw rod 501 rotates, the rotation trend of the compensation seat 503 on the screw rod 501 is blocked by the connecting plate 403, at this time, the screw rod 501 can drive the compensation seat 503 to move, the compensation seat 503 drives the bolt 504 to move, the distance between the bolt 504 and the second conveying frame 2 is reduced, and the situation that the connecting plate 403 and the bolt 504 end face are not parallel and cannot be connected is avoided.
[0044] In the description of the present specification, the description referring to the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are contained in at least one embodiment or example of the utility model. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0045] The above disclosed utility model preferred embodiments are only used to help explain the utility model. The preferred embodiments do not describe all the details and limit the utility model to the specific embodiments described. Obviously, according to the content of the present specification, many modifications and changes can be made. The present specification selects and specifically describes these embodiments in order to better explain the principles and practical application of the utility model, so that the person skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the whole scope and equivalents thereof.
Claims
1. A high-speed automatic channeling mechanism for material transportation, comprising a first conveyor frame (1) and a second conveyor frame (2), characterized in that, A first positioning component (3), a connecting component (4), and a second positioning component (5) are respectively provided between the first conveyor frame (1) and the second conveyor frame (2). A pushing component (6) is provided on the side of the first conveyor frame (1). The first positioning component (3) is used to pre-position the first conveyor frame (1) and the second conveyor frame (2). The connecting component (4) is used to compensate for the gap between the second positioning component (5) and the second conveyor frame (2). The second positioning component (5) is used to fix the second conveyor frame (2). The pushing component (6) is used to push the material to the second conveyor frame (2) to achieve separation.
2. The high-speed automatic lane-separating mechanism for material transportation according to claim 1, characterized in that, The first positioning component (3) includes a first pin (301), which is rotatably connected to the first conveyor frame (1). A rotating plate (302) is fixedly connected to the outer surface of the first pin (301), and a plug rod (303) is inserted into the outer surface of the rotating plate (302). The plug rod (303) is inserted into the second conveyor frame (2).
3. The high-speed automatic lane-separating mechanism for material transportation according to claim 2, characterized in that, The connecting assembly (4) includes a fixing plate (401), the outer surface of which is rotatably connected to a second pin (402), the outer surface of which is rotatably connected to a connecting plate (403), and the connecting plate (403) and the fixing plate (401) are fixedly connected to the outer surface of the first conveyor frame (1).
4. The high-speed automatic lane-separating mechanism for material transportation according to claim 3, characterized in that, The second positioning component (5) includes a screw (501), which is rotatably connected to the connecting plate (403). A nut (502) is fixedly connected to the end of the screw (501). A compensation seat (503) is threadedly connected to the outer surface of the screw (501). The compensation seat (503) is slidably connected to the connecting plate (403). A bolt (504) is threadedly connected to the outer surface of the compensation seat (503).
5. A high-speed automatic lane-separating mechanism for material transportation according to claim 4, characterized in that, The feeding assembly (6) includes a bracket (601) located on the side of the first conveyor frame (1). Multiple sets of mounting seats (602) are fixedly installed on the outer surface of the bracket (601). Electric push rods (603) and guide rods (604) are fixedly connected to the outer surfaces of the multiple sets of mounting seats (602). Push plates (605) are fixedly connected to the movable ends of the electric push rods (603) and guide rods (604).
6. A high-speed automatic lane-separating mechanism for material transportation according to claim 5, characterized in that, Both the first conveyor frame (1) and the second conveyor frame (2) are fixedly equipped with support legs (7).
7. A high-speed automatic lane-separating mechanism for material transportation according to claim 6, characterized in that, A lifting ring (8) is fixedly connected to the upper end of the insertion rod (303).