Reversing transfer mechanism
By connecting the liftable second conveyor component with the first conveyor component, the screen can be quickly reversed and transferred, solving the problem that belt conveyors can only transport in a fixed direction, thus improving efficiency and reducing costs.
Patent Information
- Application Number
- CN202520354440.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-03-03
AI Technical Summary
In existing technologies, belt conveyors can only transport screens in a fixed direction, which requires manual transfer of the screens to another conveyor, which is time-consuming, labor-intensive, and inefficient.
The second conveyor component, which can be raised and lowered, can be aligned with the two first conveyor components during the lifting stroke to achieve rapid reversal and transfer of the screen. Combined with the angle settings of the two first conveyor components, the screen can be transferred in the opposite direction.
It improves the efficiency of screen delivery, saves labor costs, and allows for individual disassembly and assembly when components are damaged, reducing maintenance and production costs.
Smart Images

Figure CN223722029U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of material conveying, in particular to a reversing transfer mechanism. BACKGROUND
[0002] LIPO is a screen packaging technology, which protects the display screen wire connection by using high molecular material for liquid packaging, and then makes the high molecular material, display screen and mobile phone frame tightly combined by curing the high molecular material, so as to reduce the frame width of mobile phone screen.
[0003] At present, in the production process of LIPO screen, the screen is generally conveyed between different processes by using belt conveyor. However, the belt conveyor can only convey the screen along the fixed direction, and when the screen needs to be conveyed in other directions, the operator needs to manually transfer the screen to another belt conveyor, which is not only time-consuming and laborious, but also low in efficiency. CONTENT OF THE UTILITY MODEL
[0004] In order to overcome the shortcomings of the prior art, the present application provides a reversing transfer mechanism.
[0005] The reversing transfer mechanism provided by the present application adopts the following technical scheme:
[0006] A reversing transfer mechanism, comprising two first conveying assemblies arranged in an up-down manner, a second conveying assembly arranged in a side direction of the two first conveying assemblies and capable of lifting, and a driving assembly for driving the second conveying assembly to lift, wherein the conveying directions of the two first conveying assemblies are arranged at an angle, and the second conveying assembly can be in positive alignment with the two first conveying assemblies in the lifting stroke of the second conveying assembly.
[0007] By adopting the above technical scheme, the second conveying assembly capable of lifting can be in positive alignment with the two first conveying assemblies in the lifting stroke of the second conveying assembly, so as to quickly transfer the screen from one of the first conveying assemblies to the other first conveying assembly, thereby realizing the reversing transfer of the screen without manual transfer, which not only improves the conveying efficiency of the screen, but also saves the labor cost.
[0008] In a specific implementable scheme, the conveying directions of the two first conveying assemblies are opposite.
[0009] By adopting the above technical scheme, the screen can be reversely transferred under the cooperation of the second conveying assembly, which greatly improves the conveying efficiency.
[0010] In a specific implementable scheme, each of the first conveying assemblies comprises two first belt conveyors arranged side by side along the horizontal direction, and the conveying directions of the two first belt conveyors are the same.
[0011] By adopting the technical scheme, the two sides of the screen can be respectively carried on the two first belt conveyors, and the conveying stability of the screen on the first conveying assembly is effectively improved.
[0012] In a specific implementation, the first conveying assembly further comprises a first mounting plate arranged horizontally, and the two first belt conveyors are respectively detachably connected to the two sides of the first mounting plate.
[0013] By adopting the technical scheme, when the first conveying assembly is damaged, the two first belt conveyors constituting the first conveying assembly can be respectively and individually disassembled from the first mounting plate without the need to disassemble and replace the first conveying assembly as a whole, so that the maintenance efficiency is improved and the maintenance cost is saved.
[0014] In a specific implementation, the two first belt conveyors are respectively provided with a first clamping groove at the inner side, and the two sides of the first mounting plate are respectively embedded in the two first clamping grooves, and each first clamping groove is in interference fit with the corresponding side of the first mounting plate.
[0015] By adopting the technical scheme, the first belt conveyor can be quickly disassembled from the first mounting plate under the cooperation of the first clamping groove, and the maintenance efficiency of the first belt conveyor is effectively improved.
[0016] In a specific implementation, the second conveying assembly comprises two second belt conveyors arranged side by side along the horizontal direction, and the two second belt conveyors have the same conveying direction.
[0017] By adopting the technical scheme, the two sides of the screen can be respectively carried on the two second belt conveyors, and the conveying stability of the screen on the second conveying assembly is effectively improved.
[0018] In a specific implementation, the second conveying assembly further comprises a second mounting plate arranged horizontally, and the two second belt conveyors are respectively detachably connected to the two sides of the second mounting plate.
[0019] By adopting the technical scheme, when the second conveying assembly is damaged, the two second belt conveyors constituting the second conveying assembly can be respectively and individually disassembled from the second mounting plate without the need to disassemble and replace the second conveying assembly as a whole, so that the maintenance efficiency is improved and the maintenance cost is saved.
[0020] In one specific implementation, the inner sides of the two second belt conveyors are respectively provided with second clamping grooves, and the two sides of the second mounting plate are respectively embedded in the two second clamping grooves, and each second clamping groove is in interference fit with the corresponding side of the second mounting plate.
[0021] By adopting the above technical solution, the second belt conveyor can be quickly disassembled from the second mounting plate under the cooperation of the second clamping groove, effectively improving the maintenance efficiency of the second belt conveyor.
[0022] In one specific implementation, the second conveying assembly further comprises a mounting table, an articulated seat arranged on the mounting table, and a jacking module arranged on the mounting table, the length direction of the second mounting plate is the same as the conveying direction of the second belt conveyor, the second mounting plate is articulated on the articulated seat, and the rotation axis therebetween extends along the width direction of the second mounting plate, and the jacking module is located on the side of the articulated seat and is used to jack up one end of the second mounting plate in the length direction.
[0023] By adopting the above technical solution, the second mounting plate can swing under the action of the jacking module, so that the two second belt conveyors can respectively form an angle with the two first conveying assemblies, facilitating the flow of the screen between the first conveying assembly and the second conveying assembly.
[0024] In one specific implementation, the jacking module comprises a jacking cylinder and a jacking rod coaxially connected to the output end of the jacking cylinder, and the end of the jacking rod is articulated with one end of the second mounting plate in the length direction.
[0025] In summary, the present application has at least one of the following beneficial technical effects:
[0026] The second conveying assembly capable of lifting can be respectively butt-jointed with the two first conveying assemblies in the lifting stroke, so as to quickly transfer the screen from one of the first conveying assemblies to the other first conveying assembly, thereby realizing the reversing transfer of the screen without manual transfer, which not only improves the conveying efficiency of the screen, but also saves the labor cost. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a structural schematic view of the reversing transfer mechanism of the embodiment of the present application.
[0028] MARKED FOR EXPLANATION:
[0029] 1, first conveying assembly; 11, first belt conveyor; 12, first mounting plate; 2, second conveying assembly; 21, second belt conveyor; 22, second mounting plate; 23, mounting table; 24, hinged seat; 25, jacking module; 251, jacking cylinder; 252, jacking rod; 3, driving assembly; 4, first clamping groove; 5, second clamping groove; 6, machine base. DETAILED DESCRIPTION
[0030] The application will be further described in detail below with reference to the accompanying drawings.
[0031] Referring to Figure 1 shown, wherein a reversing transfer mechanism is shown, comprising a machine base 6, two first conveying assemblies 1 arranged above and below the machine base 6, a second conveying assembly 2 arranged laterally to the two first conveying assemblies 1 and capable of being lifted, and a driving assembly 3 for driving the second conveying assembly 2 to lift. Among them, the conveying direction of the two first conveying assemblies 1 and the conveying direction of the second conveying assembly 2 are the same as the length direction of the machine base 6, the two first conveying assemblies 1 and the second conveying assembly 2 are arranged along the length direction of the machine base 6, and the driving assembly 3 is a motor screw structure. The conveying directions of the two first conveying assemblies 1 are arranged at an angle, and the two first conveying assemblies 1 each have an end portion close to the second conveying assembly 2, and the second conveying assembly 2 can be positioned and docked with the end portion of the two first conveying assemblies 1 respectively in its lifting stroke.
[0032] When conveying screens, the second conveying assembly 2 capable of being lifted can be positioned and docked with the two first conveying assemblies 1 respectively in its lifting stroke, so as to quickly transfer the screens from one of the first conveying assemblies 1 to the other of the first conveying assemblies 1, thereby realizing the reversing transfer of the screens without manual transfer, which not only improves the conveying efficiency of the screens, but also saves the labor cost.
[0033] In the embodiment, the conveying directions of the two first conveying assemblies 1 are opposite and the projections of the two first conveying assemblies 1 on the same horizontal plane coincide with each other. The screens can be reversely transferred under the cooperation of the two first conveying assemblies 1 and the second conveying assembly 2, greatly improving the conveying efficiency.
[0034] Of course, in some other embodiments, the conveying directions between the two first conveying assemblies 1 can also be at other angles to realize the transfer of the screens in different directions.
[0035] In the embodiment, each first conveying assembly 1 respectively comprises two first belt conveyors 11 arranged side by side along the width direction of the machine base, the first belt conveyor 11 is a prior art, and the conveying directions of the two first belt conveyors 11 are the same. When the first conveying assembly 1 conveys the screens, the two sides of the screens can be carried on the two first belt conveyors 11 respectively, effectively improving the conveying stability of the screens on the first conveying assembly 1.
[0036] In the embodiment, the first conveying assembly 1 further comprises a first mounting plate 12 arranged horizontally, and the two first belt conveyors 11 are detachably connected to two sides of the first mounting plate 12. Specifically, the inner sides of the two first belt conveyors 11 are respectively provided with first clamping grooves 4, and the two sides of the first mounting plate 12 are respectively embedded in the two first clamping grooves 4, and each first clamping groove 4 is in interference fit with the corresponding side of the first mounting plate 12.
[0037] When the first conveying assembly 1 is damaged, the two first belt conveyors 11 constituting the first conveying assembly 1 can be individually disassembled from the first mounting plate 12, without the need to disassemble and replace the first conveying assembly 1 as a whole, which not only improves the maintenance efficiency, but also saves the maintenance cost. Meanwhile, the first mounting plate 12 can also position the first belt conveyors 11, so that the installed first belt conveyors 11 can directly cooperate with the other first belt conveyor 11 without the need to adjust the position. After installation, the first belt conveyors 11 are fixed to the first mounting plate 12 by bolts. In specific production, the first belt conveyors 11 can also be designed in a modular manner to reduce the production cost of the first belt conveyors 11.
[0038] In the embodiment, the second conveying assembly 2 comprises two second belt conveyors 21 arranged side by side along the width direction of the machine base 6, and the second belt conveyors 21 are prior art, and the conveying directions of the two second belt conveyors 21 are the same. When the screen is transferred to the second conveying assembly 2, the two sides of the screen can be carried on the two second belt conveyors 21 respectively, effectively improving the conveying stability of the screen on the second conveying assembly 2.
[0039] In the embodiment, the second conveying assembly 2 further comprises a second mounting plate 22 arranged horizontally, and the two second belt conveyors 21 are detachably connected to two sides of the second mounting plate 22. Specifically, the inner sides of the two second belt conveyors 21 are respectively provided with second clamping grooves 5, and the two sides of the second mounting plate 22 are respectively embedded in the two second clamping grooves 5, and each second clamping groove 5 is in interference fit with the corresponding side of the second mounting plate 22.
[0040] When the second conveying assembly 2 is damaged, the two second belt conveyors 21 constituting the second conveying assembly 2 can be respectively and individually disassembled from the second mounting plate 22, and the second conveying assembly 2 does not need to be disassembled and replaced as a whole, so that the maintenance efficiency is improved, and the maintenance cost is saved; meanwhile, the second mounting plate 22 can position the second belt conveyors 21, so that the installed second belt conveyors 21 can directly cooperate with another second belt conveyor 21, and the position of the second belt conveyors 21 does not need to be adjusted after installation. After installation, the second belt conveyors 21 are fixed to the second mounting plate 22 by bolts. In specific production, the second belt conveyors 21 can be modularly designed, so that the production cost of the second belt conveyors 21 is reduced
[0041] In the embodiment, the second conveying assembly 2 further comprises a mounting table 23, a hinged seat 24 arranged on the mounting table 23, and a jacking module 25 arranged on the mounting table 23. The length direction of the second mounting plate 22 is the same as the conveying direction of the second belt conveyor 21. The second mounting plate 22 is hinged to the hinged seat 24, and the rotation axis between the second mounting plate 22 and the hinged seat 24 extends along the width direction of the second mounting plate 22. The jacking module 25 is located on the side of the hinged seat 24 away from the first conveying assembly, and is used to jack up the end of the second mounting plate 22 in the length direction. In this way, the second mounting plate 22 can swing under the action of the jacking module 25, so that the two second belt conveyors 21 can respectively form an angle with the two first conveying assemblies 1, and the screen can be conveniently transferred between the first conveying assembly 1 and the second conveying assembly 2.
[0042] Specifically, the jacking module 25 comprises a jacking cylinder 251 and a jacking rod 252 coaxially connected to the output end of the jacking cylinder 251. The piston rod of the jacking cylinder 251 can be extended and retracted in the vertical direction. The end of the jacking rod 252 is hinged to the end of the second mounting plate 22 away from the first conveying assembly 1 in the length direction.
[0043] When the second conveying assembly 2 is in positive butt joint with the two first conveying assemblies 1 respectively, if the screens are input from the first conveying assembly 1 to the second conveying assembly 2, the jacking module 25 drives the second mounting plate 22 to swing clockwise, and the two second belt conveyors 21 are turned to the feeding position. In the feeding position, one end of the two second belt conveyors 21 is in butt joint with the first conveying assembly 1, and the other end of the two second belt conveyors 21 is respectively inclined downward along the direction away from the first conveying assembly 1. In this way, when the screens are transferred from the first conveying assembly 1 to the second conveying assembly 2, the slightly downward inclined second belt conveyors 21 are more convenient for the input of the screens. If the screens are output from the second conveying assembly 2 to the first conveying assembly 1, the jacking module 25 drives the second mounting plate 22 to swing counterclockwise, and the two second belt conveyors 21 are turned to the discharging position. In the discharging position, one end of the two second belt conveyors 21 is in butt joint with the first conveying assembly 1, and the other end of the two second belt conveyors 21 is respectively inclined upward along the direction away from the first conveying assembly 1. In this way, when the screens are transferred from the second conveying assembly 2 to the first conveying assembly 1, the slightly upward inclined second belt conveyors 21 are more convenient for the output of the screens.
[0044] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application. Any equivalent changes made on the basis of the structure, shape, and principle of the present application should be covered by the protection scope of the present application.
Claims
1. A reversing transfer mechanism, characterized by: The utility model provides a kind of conveying device, including two first conveying components (1) arranged up and down, second conveying component (2) of liftable being arranged in the side of two first conveying components (1), driving assembly (3) for driving second conveying component (2) lifting, the conveying direction of two first conveying components (1) is arranged at angle, and second conveying component (2) can be respectively with two first conveying components (1) positive position butt joint in its lifting stroke.
2. A commutating transfer mechanism according to claim 1, wherein: The conveying direction of two first conveying components (1) is opposite.
3. A reversing transfer mechanism according to claim 1 or 2, wherein: Each first conveying component (1) includes two first belt conveyors (11) arranged side by side along the horizontal direction, and the conveying directions of the two first belt conveyors (11) are the same.
4. A commutating transfer mechanism according to claim 3, wherein: The first conveying component (1) further includes a first mounting plate (12) arranged horizontally, and the two first belt conveyors (11) are detachably connected to the two sides of the first mounting plate (12).
5. A commutating transfer mechanism according to claim 4, wherein: The inner sides of the two first belt conveyors (11) are respectively provided with first clamping grooves (4), and the two sides of the first mounting plate (12) are respectively embedded in the two first clamping grooves (4), and each first clamping groove (4) is in interference fit with the corresponding side of the first mounting plate (12).
6. A commutating transfer mechanism according to claim 1 wherein: The second conveying component (2) includes two second belt conveyors (21) arranged side by side along the horizontal direction, and the conveying directions of the two second belt conveyors (21) are the same.
7. A commutating transfer mechanism according to claim 6, wherein: The second conveying component (2) further includes a second mounting plate (22) arranged horizontally, and the two second belt conveyors (21) are detachably connected to the two sides of the second mounting plate (22).
8. A commutating transfer mechanism according to claim 7, wherein: The inner sides of the two second belt conveyors (21) are respectively provided with second clamping grooves (5), and the two sides of the second mounting plate (22) are respectively embedded in the two second clamping grooves (5), and each second clamping groove (5) is in interference fit with the corresponding side of the second mounting plate (22).
9. A commutating transfer mechanism according to claim 7, wherein: The second conveying component (2) further includes a mounting table (23), a hinge seat (24) arranged on the mounting table (23), and a jacking module (25) arranged on the mounting table (23), the length direction of the second mounting plate (22) is the same as the conveying direction of the second belt conveyor (21), the second mounting plate (22) is hinged to the hinge seat (24), and the rotation axis between the second mounting plate (22) and the hinge seat (24) extends along the width direction of the second mounting plate (22), and the jacking module (25) is located on the side of the hinge seat (24) and is used for jacking one end of the second mounting plate (22) in the length direction.
10. A commutating transfer mechanism according to claim 9, wherein: The jacking module (25) includes a jacking cylinder (251) and a jacking rod (252) coaxially connected to the output end of the jacking cylinder (251), and the end of the jacking rod (252) is hinged to one end of the second mounting plate (22) in the length direction.