Jacking and transferring conveyor and conveying system
By designing a hoisting conveyor integrated on the rack, the problem of difficult and interference in equipment installation in material steering conveying is solved, and the effect of simplifying installation and reducing workload is achieved.
Patent Information
- Application Number
- CN202421669178.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-07-15
AI Technical Summary
In the automated production assembly line, it is difficult to install the equipment when material transfer is turned and conveyed, and the equipment is easy to interfere, so the on-site installation work is large.
A jacking conveyor is designed, including a frame, a first conveyor mechanism and a second conveyor mechanism. The transfer conveyor assembly is lifted and lowered in the cross area to realize the steering conveying of materials. The equipment is integrated on the frame to simplify the installation process.
It reduces the installation difficulty and workload of equipment during material steering conveying, avoids equipment interference, and simplifies the on-site installation process.
Smart Images

Figure CN223133327U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of conveying systems, in particular to a lifting and transferring conveyor and a conveying system. Background Art
[0002] At present, in an automated production line, a conveying mechanism is required to transport materials. Due to process flow or site limitations, there are inevitably some parts with intersections or turns on the conveying mechanism. Therefore, materials often encounter turning problems during transportation.
[0003] In the related art, generally, multiple devices need to be assembled and installed to achieve the turning transportation of materials. For example, a lifting and transferring machine is embedded in a chain machine to achieve docking with a roller machine.
[0004] In the above technical solution, the method of combining multiple devices often has equipment interference, and the relative positions between the devices need to be determined, resulting in a large amount of on-site installation work. Summary of the Utility Model
[0005] The utility model provides a lifting and transferring conveyor and a conveying system to solve the defects of the large installation difficulty and workload of equipment in the turning transportation of materials in the prior art, and to effectively reduce the installation difficulty and workload of equipment in the turning transportation of materials.
[0006] The utility model provides a lifting and transferring conveyor, comprising:
[0007] A frame and a first conveying mechanism and a second conveying mechanism integrated on the frame, wherein the first conveying mechanism and the second conveying mechanism are arranged crosswise;
[0008] The first conveying mechanism includes a first conveying component, a transferring and conveying component and a lifting component; the transferring and conveying component is arranged in the cross area of the first conveying mechanism and the second conveying mechanism;
[0009] The lifting component is used to drive the transferring and conveying component to rise to dock with the first conveying component, or to descend to be located below the second conveying mechanism.
[0010] According to the lifting and transferring conveyor provided by the utility model, the transferring and conveying component includes:
[0011] A frame body, which is slidably matched with the frame in the height direction, and the driving end of the lifting component is connected with the frame body for driving the frame body to lift and lower;
[0012] Transferring rollers, a plurality of which are arranged side by side along the extending direction of the first conveying mechanism, and both ends of the transferring rollers are respectively rotatably connected with the frame body, and adjacent transferring rollers are in transmission connection;
[0013] The first driving member is in transmission connection with the transfer roller and is used to drive the transfer roller to rotate.
[0014] According to a lifting and transfer conveyor provided by the present utility model, the first conveying assembly includes:
[0015] Receiving rollers, a plurality of which are arranged side by side along the extending direction of the first conveying mechanism. The receiving rollers are rotatably supported on the frame, and adjacent receiving rollers are in transmission connection;
[0016] A driving module is in transmission connection with the receiving rollers and is used to drive the receiving rollers to rotate.
[0017] According to a lifting and transfer conveyor provided by the present utility model, the transfer roller and the receiving roller are in transmission connection through a first transmission structure, so that the first driving member can synchronously drive the receiving roller to rotate, forming the driving module.
[0018] According to a lifting and transfer conveyor provided by the present utility model, a first sprocket and a second sprocket are fixedly connected to the end of the transfer roller and / or the receiving roller, and the first sprockets and the second sprockets of adjacent transfer rollers and / or receiving rollers are connected by a first chain.
[0019] According to a lifting and transfer conveyor provided by the present utility model, the first driving member includes a first motor, and the first motor is fixedly connected to the frame;
[0020] A first driving sprocket is connected to the output shaft of the first motor, and the first driving sprocket engages with the first chain.
[0021] According to a lifting and transfer conveyor provided by the present utility model, the first transmission structure includes:
[0022] A first transmission sprocket is rotatably connected to the frame and is connected to the first sprocket or the second sprocket of the transfer roller at the other end through a second chain;
[0023] A second transmission sprocket is rotatably connected to the frame and is connected to the first sprocket or the second sprocket of the receiving roller at the end through a third chain;
[0024] A first transmission chain is suitable for connecting the first transmission sprocket and the second transmission sprocket.
[0025] According to a lifting and transfer conveyor provided by the present utility model, the lifting assembly includes:
[0026] A second motor, which is fixedly connected to the frame;
[0027] The swing arm includes a first end and a second end. The first end is in transmission connection with the second motor, and the second end is in abutting and sliding fit with the frame body.
[0028] According to a lifting and transferring conveyor provided by the present utility model, a roller is rotatably connected to the second end of the swing arm, and the roller is in rolling contact with the frame body.
[0029] According to a lifting and transferring conveyor provided by the present utility model, there are multiple swing arms, and the multiple swing arms are symmetrically arranged around the center of the frame body. The multiple swing arms are in transmission connection with the second motor through a second transmission structure.
[0030] According to a lifting and transferring conveyor provided by the present utility model, the second transmission structure includes:
[0031] A pair of transmission shafts are arranged in parallel. The transmission shafts are rotatably supported on the machine frame, and two swing arms are respectively connected to the two ends of the transmission shafts;
[0032] A third transmission sprocket is coaxially and fixedly connected to the transmission shaft;
[0033] A second transmission chain. Two second driving sprockets are connected to the second motor. The two second driving sprockets and the third transmission sprockets on the two transmission shafts are connected through the second transmission chain.
[0034] According to a lifting and transferring conveyor provided by the present utility model, it further includes a guiding assembly. The guiding assembly includes a guiding groove and a sliding block. The guiding groove is arranged on one of the machine frame and the frame body, and the sliding block is connected to the other.
[0035] According to a lifting and transferring conveyor provided by the present utility model, the second conveying mechanism includes a second conveying component. The second conveying component includes:
[0036] There are at least two chain frames arranged in parallel on the machine frame, and the chain frames are arranged along the extending direction of the second conveying mechanism;
[0037] Conveyor chains are connected to the chain frames, and the conveyor chains on different chain frames are in transmission connection;
[0038] A third driving member is used to drive the conveyor chain to move.
[0039] According to a lifting and transferring conveyor provided by the present utility model, the third driving member includes:
[0040] A third motor is fixedly connected to the machine frame, and a third driving sprocket is fixedly connected to the output shaft of the third motor;
[0041] The drive shaft is rotatably supported on the frame, and its layout direction is perpendicular to the layout direction of the chain rack. A driven sprocket and a fourth transmission sprocket corresponding to the position of the chain rack are fixedly connected to the drive shaft. The third driving sprocket is connected to the driven sprocket by a chain, and the fourth transmission sprocket is connected to the conveying chain.
[0042] The present utility model further provides a conveying system, including two cross - arranged conveying lines, and the above - mentioned lifting and transferring conveyor disposed in the cross - region of the two conveying lines; the first conveying mechanism and the second conveying mechanism are respectively docked with the two conveying lines.
[0043] When the lifting and transferring conveyor and the conveying system provided by the present utility model are used for material conveying, the lifting assembly drives the transfer and conveying assembly to rise, so that the transfer and conveying assembly is docked with the first conveying assembly. The material is transported to the transfer and conveying assembly through the first conveying assembly, and then the lifting assembly drives the transfer and conveying assembly to descend below the second conveying mechanism. Since the transfer and conveying assembly is located in the cross - region of the first conveying mechanism and the second conveying mechanism, when the transfer and conveying assembly descends below the second conveying mechanism, the material will be received on the second conveying mechanism, and then the second conveying mechanism conveys the material, thus realizing the steering conveyance of the material. Since both the first conveying mechanism and the second conveying mechanism are integrated on the frame, during use, only the whole lifting and transferring conveyor needs to be placed at a specific position and leveled, which effectively avoids the interference problem between devices and does not require complex calibration, reducing the on - site installation workload. Description of the Drawings
[0044] In order to more clearly illustrate the technical solutions in the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following - described drawings are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0045] Figure 1 is one of the structural schematic diagrams of the lifting and transferring conveyor provided by the embodiment of the present utility model.
[0046] Figure 2 is the second structural schematic diagram of the lifting and transferring conveyor provided by the embodiment of the present utility model.
[0047] Figure 3 is the third structural schematic diagram of the lifting and transferring conveyor provided by the embodiment of the present utility model.
[0048] Figure 4 is the fourth structural schematic diagram of the lifting and transferring conveyor provided by the embodiment of the present utility model.
[0049] Reference numerals:
[0050] 1, frame; 2, first conveying assembly; 20, receiving roller; 3, transfer conveying assembly; 30, frame body; 31, transfer roller; 32, first transmission structure; 320, first transmission sprocket; 321, second transmission sprocket; 322, first transmission chain; 323, second chain; 324, third chain; 33, first sprocket; 34, second sprocket; 35, first motor; 4, lifting assembly; 40, second motor; 41, swing arm; 42, second transmission structure; 420, transmission shaft; 421, third transmission sprocket; 422, second transmission chain; 43, guiding assembly; 430, guiding groove; 431, slider; 5, second conveying assembly; 50, chain rack; 51, third driving member; 510, third motor; 511, driving shaft; 512, driven sprocket; 513, fourth transmission sprocket. Detailed implementation manners
[0051] To make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions in the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the present utility model. Apparently, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present utility model without making creative efforts fall within the protection scope of the present utility model.
[0052] To facilitate the understanding of the jacking transfer conveyor and conveying system provided by the present utility model, its application background will be introduced first. In an automated production line, due to process flow or site limitations, there will inevitably be some parts with intersections or turns on the conveyor line, making it often encounter turning problems during the transportation of materials.
[0053] In the related art, generally, multiple devices need to be combined and installed to achieve the turning transportation of materials. For example, a jacking transfer machine is embedded in a chain machine to achieve the docking with a roller machine.
[0054] In the above technical solutions, the method of combining multiple devices often has device interference, and the relative positions between the devices need to be determined, resulting in a large on-site installation workload.
[0055] Therefore, how to reduce the installation workload of devices in the turning transportation of materials has become an important issue that needs to be solved urgently at present.
[0056] Based on the above, the present utility model provides a jacking transfer conveyor and conveying system, which can effectively reduce the installation difficulty and installation workload of devices in the turning transportation of materials.
[0057] The following will be combined with Figures 1-4The utility model is described as a lifting and transferring conveyor and a conveying system.
[0058] Reference Figure 1 and Figure 2 A lifting and transferring conveyor comprises a frame 1 and a first conveying mechanism and a second conveying mechanism integrated on the frame 1; the first conveying mechanism and the second conveying mechanism are arranged crosswise; the first conveying mechanism comprises a first conveying assembly 2, a transferring and conveying assembly 3 and a lifting assembly 4; wherein the transferring and conveying assembly 3 is arranged at the intersection area of the first conveying mechanism and the second conveying mechanism; the lifting assembly 4 is used to drive the transferring and conveying assembly 3 to rise and dock with the first conveying assembly 2, or to descend and be located under the second conveying mechanism.
[0059] In a specific application scenario, when conveying materials, the lifting component 4 drives the transfer and conveying component 3 to rise, so that the transfer and conveying component 3 is docked with the first conveying component 2, and the materials are transported to the transfer and conveying component 3 through the first conveying component 2, and then the lifting component 4 drives the transfer and conveying component 3 to descend below the second conveying mechanism. Since the transfer and conveying component 3 is located in the intersection area of the first conveying mechanism and the second conveying mechanism, when the transfer and conveying component 3 descends below the second conveying mechanism, the materials will be received by the second conveying mechanism, and then the materials will be conveyed by the second conveying mechanism, thus realizing the diverted conveying of the materials. Since the first conveying mechanism and the second conveying mechanism are both integrated on the frame 1, the lifting and transfer conveyor only needs to be placed in a specific position and leveled before use, which effectively avoids interference problems between equipment, and does not require complex adjustments, reducing the workload of on-site installation.
[0060] In a specific embodiment of the utility model, one end of the first conveying component 2 is formed as the starting end of the first conveying mechanism, which is suitable for docking with an external conveying line, and the other end opposite is used for docking with the transfer conveying component 3; specifically, the first conveying component 2 includes a receiving roller 20 and a driving module; wherein, the receiving roller 20 is rotatably supported on the frame 1 and is arranged in multiple numbers side by side along the extension direction of the first conveying mechanism, thereby forming a roller conveyor, and adjacent receiving rollers 20 are transmission connected; the driving module is transmission connected to the receiving roller 20 at the head end or the end end, and is used to drive the receiving roller 20 to rotate, thereby transporting the material.
[0061] In a specific embodiment of the present utility model, one end of the transfer and conveying assembly 3 is used to dock with the first conveying assembly 2. Specifically, the transfer and conveying assembly 3 includes a frame 30, transfer rollers 31 and a first driving member. Among them, the frame 30 is slidably engaged with the machine frame 1 in the height direction, and the driving end of the lifting assembly 4 is connected to the frame 30 for driving the frame 30 to lift and lower. The transfer rollers 31 are rotatably supported on the frame 30 and are arranged side by side along the extending direction of the first conveying mechanism to form a roller path, and adjacent transfer rollers 31 are drivingly connected. The first driving member is drivingly connected to the transfer rollers 31 for driving the transfer rollers 31 to rotate, so as to convey the materials.
[0062] It can be understood that the transfer rollers 31 and the receiving rollers 20 can be driven separately, that is, the driving module and the first driving member are configured as two separate driving components. When conveying materials, only the two driving components need to be driven synchronously. The transfer rollers 31 and the receiving rollers 20 can also be driven by the same driving component, that is, the driving module and the first driving member are configured as the same driving component to save costs.
[0063] In this embodiment, the transfer rollers 31 and the receiving rollers 20 are drivingly connected through a first transmission structure 32, so that the first driving member can synchronously drive the receiving rollers 20 to rotate, thereby forming the above-mentioned driving module.
[0064] Specifically, a first sprocket 33 and a second sprocket 34 are fixedly connected to the end of the transfer roller 31, and the first sprockets 33 and the second sprockets 34 of adjacent transfer rollers 31 are connected by a first chain to realize the driving connection between the transfer rollers 31. A first sprocket 33 and a second sprocket 34 are also fixedly connected to the end of the transfer roller 31, and the first sprockets 33 and the second sprockets 34 of adjacent transfer rollers 31 are connected by a first chain to realize the driving connection between the transfer rollers 31.
[0065] The first driving member includes a first motor 35, and the first motor 35 is fixedly connected to the frame 30 and can lift and lower with the frame 30. A first driving sprocket is coaxially connected to the output shaft of the first motor 35, and the first driving sprocket engages with the first chain. With such a setting, when the first motor 35 rotates, the first driving sprocket drives the first chain to move, and adjacent transfer rollers 31 are driven by the first chain, so as to realize the movement of the entire roller path.
[0066] The first transmission structure 32 includes a first transmission sprocket 320, a second transmission sprocket 321 and a first transmission chain 322; wherein the first transmission sprocket 320 is rotatably connected to the frame body 30, and is connected to the first sprocket 33 or the second sprocket 34 of the transfer roller 31 located at the other end through the second chain 323; the second transmission sprocket 321 is rotatably connected to the frame 1, and is connected to the first sprocket 33 or the second sprocket 34 of the receiving roller 20 located at the end through the third chain 324; when the receiving roller 20 is docked with the transfer roller 31, the first sprocket 33 and the second sprocket 34 are flush, and the first transmission chain 322 is suitable for connecting the first transmission sprocket 320 and the second transmission sprocket 321.
[0067] It should be pointed out here that since the first transmission structure 32 adopts chain transmission, and the chain transmission allows the chain to have a certain verticality, that is to say, the first transmission chain 322 is not in a taut state, so that during the lifting and lowering of the frame 30, there is a certain margin for relative movement between the first sprocket 33 and the second sprocket 34.
[0068] It is understandable that the transmission method between adjacent receiving rollers 20 or transfer rollers 31 includes but is not limited to chain transmission. Other transmission methods such as gear transmission, belt transmission, etc. are also applicable and can be configured according to actual needs and application scenarios.
[0069] The other structures of the lifting and transferring conveyor will be described in detail below in conjunction with the accompanying drawings.
[0070] Reference Figures 1 to 4 , the lifting assembly 4 includes a second motor 40 and a swing arm 41; wherein the second motor 40 is fixedly connected to the frame 1, and the swing arm 41 includes a first end and a second end, and the first end is drivingly connected to the second motor 40, so that the swing arm 41 can swing with the first end as the center of the circle, and the second end abuts and slides with the frame 30. In actual work, under the drive of the first motor 35, the swing arm 41 swings with the first end as the center of the circle to make the second end rise and fall, and the second end drives the frame 30 to rise and fall to realize the overall lifting of the transfer and conveying assembly 3.
[0071] In a specific embodiment of the present invention, a roller is rotatably connected to the second end of the swing arm 41, and the roller is in rolling contact with the frame 30, thereby reducing the friction resistance between the second end of the swing arm 41 and the frame 30, making the cooperation between the second end and the frame 30 smoother.
[0072] In a specific embodiment of the utility model, a plurality of swing arms 41 are provided, and the plurality of swing arms 41 are symmetrically arranged around the center of the frame 30, and the plurality of swing arms 41 are transmission-connected to the second motor 40 through the second transmission structure 42. The plurality of swing arms 41 are synchronously driven to improve the stability of the lifting and lowering of the frame 30.
[0073] Specifically, the second transmission structure 42 includes a transmission shaft 420, a third transmission sprocket 421, and a second transmission chain 422. Among them, a pair of transmission shafts 420 are arranged in parallel. The transmission shafts 420 are rotationally supported on the frame 1, and two swing arms 41 are respectively connected to both ends of the transmission shafts 420. The third transmission sprocket 421 is coaxially and fixedly connected to the transmission shaft 420. Two second driving sprockets are connected to the second motor 40, and the two second driving sprockets are respectively connected to the third transmission sprockets 421 on the two transmission shafts 420 through the second transmission chains 422.
[0074] In actual work, the second motor 40 drives the second driving sprocket to rotate. The second driving sprocket drives the second transmission chain 422 to rotate, thereby driving the two transmission shafts 420 to move synchronously, and further realizing the synchronous driving of the four swing arms 41, improving the smoothness of the lifting of the frame 30.
[0075] It can be understood that the lifting assembly 4 includes but is not limited to the structures listed above. Other structures or forms of driving components such as cylinders, oil cylinders, screw jacks, electric push rods, etc. are also applicable, and can be specifically configured according to actual requirements and application scenarios.
[0076] In order to make the lifting of the frame 30 more stable, the lifting and transfer conveyor further includes a guiding assembly 43. Specifically, the guiding assembly 43 includes a guiding groove 430 and a slider 431 that are slidably engaged. Among them, the guiding groove 430 is provided on one of the frame 1 and the frame 30, and the slider 431 is connected to the other. Through the mutually cooperating guiding groove 430 and slider 431, the lifting of the frame 30 can be restricted and guided, improving the smoothness and fluency of the lifting of the frame 30.
[0077] Refer to Figures 1 to 4 , the second conveying mechanism includes a second conveying assembly 5. The second conveying assembly 5 includes a chain rack 50, a conveying chain, and a third driving member 51. Among them, there are at least two chain racks 50 and they are arranged along the extending direction of the second conveying mechanism. The multiple chain racks 50 are arranged in parallel on the frame 1. The chain rack 50 can provide an installation basis for the chain. The conveying chain is connected to the chain rack 50, and the chains on different chain racks 50 are drivingly connected. The third driving member 51 is used to drive the conveying chain to move.
[0078] In a specific embodiment of the present utility model, the third driving member 51 includes a third motor 510 and a driving shaft 511. Among them, the third motor 510 is fixedly connected to the frame 1, and a third driving sprocket is fixedly connected to the output shaft of the third motor 510. The driving shaft 511 is rotatably supported on the frame 1 and its arrangement direction is perpendicular to the arrangement direction of the chain frame 50. A driven sprocket 512 and a fourth transmission sprocket 513 corresponding to the position of the chain frame 50 are fixedly connected to the driving shaft 511. The third driving sprocket is connected to the driven sprocket 512 by a chain, and the fourth transmission sprocket 513 is connected to the conveying chain. In actual work, the third motor 510 drives the driving shaft 511 to move, and the driving shaft 511 synchronously drives the conveying chains on multiple chain frames 50 to move, realizing the conveying of materials. It can be understood that the above-mentioned transmission method includes but is not limited to chain transmission, and other feasible transmission methods such as belt transmission, gear transmission, etc. are equally applicable as long as the corresponding transmission effect can be achieved.
[0079] It can be understood that, on the premise of no conflict, the technical features in the embodiments of the present utility model can be combined.
[0080] The conveying device provided by the present utility model will be described below. The conveying device described below can be mutually corresponding and referred to with the lifting and transferring conveyor described above.
[0081] A conveying device includes two intersecting conveying lines and the above-mentioned lifting and transferring conveyor arranged in the intersecting area of the two conveying lines. Among them, the first conveying mechanism is docked with one of the conveying lines, and the second conveying mechanism is docked with the other conveying line.
[0082] The innovative point of the present utility model is that when conveying materials, the lifting assembly 4 drives the transfer and conveying assembly 3 to rise, so that the transfer and conveying assembly 3 is docked with the first conveying assembly 2. The materials are transported to the transfer and conveying assembly 3 through the first conveying assembly 2, and then the lifting assembly 4 drives the transfer and conveying assembly 3 to descend below the second conveying mechanism. Since the transfer and conveying assembly 3 is located in the intersecting area of the first conveying mechanism and the second conveying mechanism, when the transfer and conveying assembly 3 descends below the second conveying mechanism, the materials will be received on the second conveying mechanism, and then the second conveying mechanism conveys the materials, thus realizing the turning conveying of the materials. Since both the first conveying mechanism and the second conveying mechanism are integrated on the frame 1, only need to place the whole lifting and transferring conveyor at a specific position and level it before use, effectively avoiding the interference problem between devices, and there is no need for complex calibration, reducing the workload of on-site installation.
[0083] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A jacking transfer conveyor, characterized in that, Comprising: A frame (1), a first conveying mechanism and a second conveying mechanism integrated on the frame (1), and the first conveying mechanism and the second conveying mechanism are arranged in a crosswise manner; The first conveying mechanism includes a first conveying component (2), a transfer conveying component (3) and a lifting component (4); the transfer conveying component (3) is arranged in the cross area of the first conveying mechanism and the second conveying mechanism; The lifting component (4) is used for driving the transfer conveying component (3) to rise to dock with the first conveying component (2), or to descend to be located below the second conveying mechanism.
2. The lifting and transfer conveyor according to claim 1, wherein The transfer conveying component (3) includes: A frame body (30), which is in sliding fit with the frame (1) in the height direction, and the driving end of the lifting component (4) is connected to the frame body (30) for driving the frame body (30) to lift and lower; Transfer rollers (31), a plurality of which are arranged side by side along the extending direction of the first conveying mechanism, and both ends of the transfer rollers (31) are respectively rotatably connected to the frame body (30), and adjacent transfer rollers (31) are in transmission connection; A first driving member, which is in transmission connection with the transfer rollers (31) for driving the transfer rollers (31) to rotate.
3. The lifting and transfer conveyor according to claim 2, wherein, The first conveying component (2) includes: Receiving rollers (20), a plurality of which are arranged side by side along the extending direction of the first conveying mechanism, and the receiving rollers (20) are rotatably supported on the frame (1), and adjacent receiving rollers (20) are in transmission connection; A driving module, which is in transmission connection with the receiving rollers (20) for driving the receiving rollers (20) to rotate.
4. The lifting and transfer conveyor according to claim 3, wherein, The transfer rollers (31) and the receiving rollers (20) are in transmission connection through a first transmission structure (32), so that the first driving member can synchronously drive the receiving rollers (20) to rotate, forming the driving module.
5. The jacking transfer conveyor according to claim 4, wherein, First sprockets (33) and second sprockets (34) are fixedly connected to the ends of the transfer rollers (31) and / or the receiving rollers (20), and the first sprockets (33) and second sprockets (34) of adjacent transfer rollers (31) and / or receiving rollers (20) are connected by a first chain.
6. The lifting and transfer conveyor according to claim 5, wherein, The first transmission structure (32) includes: A first transmission sprocket (320), which is rotatably connected to the frame body (30) and is connected to the first sprocket (33) or the second sprocket (34) of the transfer roller (31) at the other end through a second chain (323); A second transmission sprocket (321), which is rotatably connected to the frame (1) and is connected to the first sprocket (33) or the second sprocket (34) of the receiving roller (20) at the end through a third chain (324); A first transmission chain (322), which is suitable for connecting the first transmission sprocket (320) and the second transmission sprocket (321).
7. The lifting and transfer conveyor according to any one of claims 2-6, characterized in that, The lifting component (4) includes: A second motor (40), which is fixedly connected to the frame (1); A swing arm (41), including a first end and a second end, the first end is in transmission connection with the second motor (40), and the second end is in abutting and sliding fit with the frame body (30).
8. The lifting and transfer conveyor according to claim 7, wherein There are multiple swing arms (41), and the multiple swing arms (41) are symmetrically arranged around the center of the frame body (30). The multiple swing arms (41) are in transmission connection with the second motor (40) through a second transmission structure (42).
9. The lifting and transfer conveyor according to claim 1, wherein The second conveying mechanism includes a second conveying assembly (5), and the second conveying assembly (5) includes: Chain frames (50), with at least two chain frames arranged in parallel on the frame (1), and the chain frames (50) are arranged along the extending direction of the second conveying mechanism; Conveyor chains, connected to the chain frames (50), and the conveyor chains on different chain frames (50) are in transmission connection; A third driving member (51) for driving the conveyor chains to move.
10. A conveying system, characterized in that, It includes two intersecting conveying lines, and a lifting and transferring conveyor as described in any one of claims 1-9 arranged in the intersecting area of the two conveying lines; the first conveying mechanism and the second conveying mechanism are respectively docked with the two conveying lines.