Load-carrying material overturning system

By designing a load-load material flip system including a flipable support plate, a slidable fixture and a power component, the problem of large space occupancy in the existing system is solved, and efficient flip of load-load materials of different sizes is achieved.

CN223032195UActive Publication Date: 2025-06-27广东长信精密设备有限公司
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Patent Information

Application Number
CN202420634587.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-29
Publication Date
2025-06-27
Estimated Expiration
2034-03-29

AI Technical Summary

Technical Problem

Existing load-load material flip systems require a large space, especially when dealing with load-load material of different sizes.

Method used

A load-load material flip system is designed, including a device body, a clamping assembly and a power assembly. The clamping assembly consists of a reversible support plate and a slidable fixing member. The power assembly drives the support plate to be flipped through the output shaft, and the fixing member can be adjusted according to the load-load material of different sizes.

Benefits of technology

This system can effectively save space, and does not require multiple different load platforms and driving hoisting, and is suitable for flipping load materials of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of material overturning, and particularly discloses a load-carrying material overturning system which comprises a device body, a clamping assembly and a power assembly. The clamping assembly comprises a supporting plate and a fixing piece. The supporting plate is arranged on the device body in a turnover mode. The fixing piece is arranged on the supporting plate in a sliding mode and used for fixing a load-carrying material. The power assembly is arranged on the device body and used for driving the supporting plate to turn over. According to the scheme, after a load-carrying material is placed on the supporting plate, the load-carrying material can be fixed through the fixing piece; and meanwhile, when the fixing piece faces the load-carrying materials with different sizes, the fixing piece can slide on the supporting plate so as to adapt to the load-carrying materials with different sizes, and therefore a plurality of different load-carrying platforms do not need to be used. The overturning process is completed by driving the supporting plate to overturn through the power assembly, additional stroke hoisting is not needed, and the problem that an existing overturning mode for the load-carrying materials needs to occupy a large space can be effectively solved.
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Description

Technical Field

[0001] This application relates to the technical field of material turning, and particularly to a turning system for load-bearing materials. Background Art

[0002] When turning load-bearing materials, the existing turning systems generally first place the load-bearing materials on a load-bearing platform for fixation, and then use a traveling crane to lift and turn the load-bearing materials.

[0003] When turning non-standard customized load-bearing materials, such as load-bearing materials with different sizes like cardboard, wooden boards, and LED liquid crystal displays, this method often requires the use of different load-bearing platforms, and the method of turning with a traveling crane requires a large amount of space. Summary of the Utility Model

[0004] In view of this, the purpose of this application is to provide a turning system for load-bearing materials to solve the problem that the existing turning method for load-bearing materials requires a large amount of space.

[0005] To achieve the above technical purpose, this application provides a turning system for load-bearing materials, including: a device main body, a clamping assembly, and a power assembly;

[0006] The clamping assembly includes: a support plate and a fixing member;

[0007] The support plate is rotatably arranged on the device main body;

[0008] The fixing member is slidably arranged on the support plate for fixing the load-bearing material;

[0009] The power assembly is arranged on the device main body for driving the support plate to turn.

[0010] Further, the fixing member is slidably arranged along a first direction on the plane where the support plate is located;

[0011] A pressing device is arranged on the fixing member;

[0012] The pressing device is slidably arranged along a second direction on the plane where the support plate is located;

[0013] The pressing device is used for fixing the load-bearing material;

[0014] The first direction intersects with the second direction.

[0015] Further, a plurality of the pressing devices are arranged on the fixing member.

[0016] Further, a turning handle is arranged on the pressing device;

[0017] The turning handle is used to control the tightness of the compactor.

[0018] Further, there are at least two clamping assemblies;

[0019] The power assembly includes a rotatable output shaft;

[0020] The output shaft is arranged between two support plates of at least two of the clamping assemblies;

[0021] The output shaft is used to drive the two support plates of at least two of the clamping assemblies to flip simultaneously.

[0022] Further, a loading station and an unloading station are provided on the device main body;

[0023] The loading station and the unloading station are located on the same side of the device main body.

[0024] Further, a travel sensor is also included;

[0025] The travel sensor is arranged on the device main body and is used to sense the flipping angle of the support plate.

[0026] Further, a photoelectric sensor is also included;

[0027] The photoelectric sensor is arranged on the device main body and is used to sense whether the support plate flips to a preset angle;

[0028] The photoelectric sensor is electrically connected to the power assembly and is also used to control the power assembly to turn off after the support plate flips to the preset angle.

[0029] Further, an emergency stop button is provided on the device main body;

[0030] The emergency stop button is electrically connected to the power assembly and is used to control the power assembly to turn off.

[0031] Further, a loading and unloading assembly is also included;

[0032] The loading and unloading assembly includes a transfer table and a support table;

[0033] The transfer table is used to transfer the load-bearing material;

[0034] A liftable lifting table is provided on the support table;

[0035] The transfer table is arranged on the lifting table and is slidably arranged in the horizontal direction.

[0036] Further, a vacuum adsorption tooling for sucking the load-bearing material is provided on the transfer table.

[0037] As can be seen from the above technical solutions, the present application provides a load material flipping system, including: a device main body, a clamping assembly and a power assembly; the clamping assembly includes: a support plate and a fixing member; the support plate is rotatably arranged on the device main body; the fixing member is slidably arranged on the support plate for fixing the load material; the power assembly is arranged on the device main body for driving the support plate to flip.

[0038] In this solution, after the load material is placed on the support plate, the load material can be fixed by the fixing member; at the same time, when facing load materials of different sizes, the fixing member can slide on the support plate to adapt to load materials of different sizes, so that there is no need to use multiple different load platforms. The flipping process is completed by the power assembly driving the support plate to flip, and there is no need to use an additional travel hoist, which can effectively solve the problem that the existing flipping method for load materials requires a large amount of space. Description of the Drawings

[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application 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 drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0040] Figure 1 It is a block diagram of the overall structure of a load material flipping system provided by an embodiment of the present application;

[0041] Figure 2 It is a schematic diagram of a pressing member of a load material flipping system provided by an embodiment of the present application;

[0042] Figure 3 It is a front view of a load material flipping system provided by an embodiment of the present application. Detailed Embodiments

[0043] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Based on the embodiments in this specification of the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection claimed by the present application.

[0044] In the description of the embodiments of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the embodiments of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the embodiments of the present application. In addition, the terms "first", "second", and "third" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance.

[0045] In the description of the embodiments of the present application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a replaceable connection, or an integral connection, it can be a mechanical connection, it can be an electrical connection, it can be a direct connection, it can be indirectly connected through an intermediate medium, and it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific circumstances.

[0046] See also Figure 1 A load-bearing material turning system provided in an embodiment of the present application includes: a device body 10, a clamping assembly 20 and a power assembly 30. The device body 10 is used for mounting a load-bearing material 40; the device body 10 may be provided with a loading position for loading and a unloading position for unloading.

[0047] The clamping assembly 20 is used to clamp and fix the load-bearing material 40 on the device body 10, and includes: a support plate 21 and a fixing member 22. The support plate 21 can be turned over and set on the device body 10; the support plate 21 can be used to place the load-bearing material 40. The fixing member 22 is used to fix the load-bearing material 40, and it can be slidably set on the support plate 21, so that it can be adjusted according to the load-bearing material 40 of different sizes.

[0048] The power assembly 30 is arranged on the device body 10, and is used to drive the support plate 21 to flip. The power assembly 30 can be a drive member such as a variable frequency motor, and is connected to the support plate 21 through an output shaft 31. Among them, the end of the output shaft 31 can be arranged on the bearing seat 14 on the device body 10. The power assembly 30 in this embodiment uses a motor with a brake function to ensure that the power assembly 30 can be controlled to be closed when necessary.

[0049] In this solution, after the load-bearing material 40 is placed on the support plate 21, the load-bearing material 40 can be fixed by the fixing member 22, and then the support plate 21 is driven to rotate by rotating the output shaft 31. On the one hand, when facing various load-bearing materials 40 of different sizes, there is no need to configure multiple flipping systems, and on the other hand, there is no need to configure a traveling crane for hoisting, which can effectively save the floor space of the flipping system.

[0050] In this embodiment, a sliding groove for the fixing member 22 to slide can be provided on the support plate 21, and the sliding groove plays a guiding role for the fixing member 22.

[0051] In a more specific embodiment, the fixing member 22 is slidably arranged along a first direction on the plane where the support plate 21 is located; a pressing device 23 is arranged on the fixing member 22; the pressing device 23 is slidably arranged along a second direction on the plane where the support plate 21 is located; the pressing device 23 is used to fix the load-bearing material 40. The first direction and the second direction intersect, and the two directions form an angle. In application, the first direction and the second direction can be set to be perpendicular to each other.

[0052] Among them, the first direction on the plane where the support plate 21 is located can be Figure 1 the y-axis direction in Figure 1 ; correspondingly, the second direction on the plane where the support plate 21 is located can be

[0053] the x-axis direction in

[0054] . By setting that both the fixing member 22 and the pressing device 23 are slidable, the length direction and the width direction of the load-bearing material 40 of different sizes can be fixed.

[0055] In a further improved embodiment, a plurality of pressing devices 23 can be arranged on the fixing member 22, so as to be able to fix multiple positions of the load-bearing material 40 in the second direction.

[0056] Please refer to Figure 2 , a clamping cavity 232 for the load-bearing material 40 to be clamped into is arranged in the pressing device 23; the screwing handle 231 penetrates into the clamping cavity 232, and can clamp the load-bearing material 40 in the clamping cavity 232.

[0057] Among them, a silica gel pad 233 can be arranged in the clamping cavity 232; a silica gel pad 233 is also arranged at one end of the screwing handle 231 extending into the clamping cavity 232, which can reduce the damage to the load-bearing material 40 when pressing the load-bearing material 40.

[0058] Among them, the rotation of the handle 231 can be automatically controlled by a driving member such as a motor. In this embodiment, the handle 231 can be manually rotated by the staff; after the handle 231 is loosened by rotation, the staff can drive the presser 23 to slide in the second direction and drive the fixing member 22 to slide in the first direction by rotating the handle 231, so as to facilitate the staff to control.

[0059] In one embodiment, the clamping assembly 20 includes at least two; the power assembly 30 includes a rotatable output shaft 31; the output shaft 31 is disposed between two support plates 21 of at least two clamping assemblies 20; the output shaft 31 is used to drive the two support plates 21 of at least two clamping assemblies 20 to flip simultaneously.

[0060] In this embodiment, when the support plates 21 are horizontally placed, the two support plates 21 are arranged one above the other.

[0061] For the convenience of description, the support plate 21 located above in the initial state is called the first support plate; correspondingly, the other support plate 21 is the second support plate. In the actual application process, after the first support plate loads and fixes the load material 40, the two support plates 21 are flipped by the power assembly 30; after flipping 180°, the second support plate is located above, so that the load material 40 that needs to be flipped next can be loaded, and after the first support plate is flipped to the lower side, the staff can loosen the handle 231 by manual feeding, and then take out the load material 40 from the feeding port.

[0062] In another embodiment, a travel sensor 50 is further included; the travel sensor 50 is disposed on the device main body 10 and is used to sense the flipping angle of the support plate 21.

[0063] The travel sensor 50 can sense the flipping angle of the support plate 21, so as to judge whether the support plate 21 is flipped in place and whether the support plate 21 is in a horizontal state. Among them, the travel sensor 50 can be electrically connected to the power assembly 30, so as to control the power assembly 30 to turn off after the power assembly 30 flips the support plate 21 by 180°.

[0064] Furthermore, a photoelectric sensor 60 is further included; the photoelectric sensor 60 is disposed on the device main body 10 and is used to sense whether the support plate 21 is flipped to a preset angle; the photoelectric sensor 60 is electrically connected to the power assembly 30 and is also used to control the power assembly 30 to turn off after the support plate 21 is flipped to the preset angle.

[0065] In this embodiment, the photoelectric inductor 60 can prevent the support plate 21 from overflipping in the case of the failure of the stroke inductor 50, and can control the power assembly 30 to shut down after the support plate 21 is flipped by a preset angle, playing a role of dual sensing and dual control. Correspondingly, the preset angle in this embodiment can be 180°.

[0066] Further, an emergency stop button 13 is provided on the device main body 10; the emergency stop button 13 is electrically connected to the power assembly 30 and is used to control the power assembly 30 to shut down.

[0067] The emergency stop button 13 can shut down the power assembly 30 when unsafe factors are encountered during the flipping process. Among them, multiple emergency stop buttons 13 can be included and set at multiple positions on the device main body 10.

[0068] In one embodiment, please refer to Figure 3 , the flipping system provided by this solution further includes: a loading and unloading assembly 70. The loading and unloading assembly 70 is used to transfer the load material 40 onto the device main body 10 to achieve loading or take the load material 40 off the device main body 10 to achieve unloading.

[0069] Specifically, the loading and unloading assembly 70 includes: a transfer table 73 and a support table 74; the transfer table 73 is used to transfer the load material 40; a lift table 75 that can be lifted is provided on the support table 74; the transfer table 73 is arranged on the lift table 75 and is slidably arranged in the horizontal direction.

[0070] A lift motor 71 for controlling the lifting of the lift table 75 can be provided on the support table 74; a horizontal motor 72 for driving the transfer table 73 to slide horizontally can be provided on the lift table 75. Correspondingly, pulleys that can slide and brake can be provided at the bottom of the support table 74.

[0071] Through the cooperation of the lift motor 71 and the horizontal motor 72, after the transfer table 73 loads and unloads the load material 40, it can enter the device main body 10 from the loading port 11 and move to the position of the support plate 21 for the fixing member 22 to fix the load material 40.

[0072] Similarly, after flipping, the transfer table 73 can move to contact the load material 40 with the lower support plate 21, so that the flipped load material 40 can be driven by the transfer table 73 for unloading.

[0073] It should be noted that in this embodiment, two clamping assemblies 20 are provided and loading is performed from the upper support plate 21, and unloading is performed from the lower support plate 21 for illustration. In actual application, it can also be loading from the lower support plate 21 and unloading from the upper support plate 21.

[0074] Moreover, the above-mentioned lifting motor 71, horizontal motor 72, and power assembly 30 can all be controlled by the controller 15.

[0075] In practical applications, the loading and unloading assembly 70 can be arranged on one side of the device main body 10, and an operating platform 17 for staff operation can be arranged on the other side of the device main body 10. The operating platform 17 can be used for temporarily placing the load material 40.

[0076] Furthermore, a vacuum adsorption tooling for sucking the load material 40 is arranged on the transfer table 73.

[0077] That is, the transfer table 73 sucks and fixes the load material 40 through the vacuum adsorption tooling. Correspondingly, after the staff unloads the flipped load material 40, it can also be transported to the next process through the vacuum adsorption tooling.

[0078] In one embodiment, pulleys 16 can also be arranged at the bottom of the device main body 10. The pulleys 16 have a braking function. A pedal 18 that can horizontally expand and contract can also be arranged on the device main body 10 for the staff to step on.

[0079] The above are the preferred embodiments of the present application and are not used to limit the present invention. Although the present application has been described in detail with reference to the examples, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing examples, or perform equivalent replacements for some of the technical features. However, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A load-bearing material turning system, characterized in that: include: A device body (10), a clamping assembly (20) and a power assembly (30); The clamping assembly (20) comprises: a support plate (21) and a fixing member (22); The support plate (21) can be flipped and arranged on the device body (10); The fixing member (22) is slidably arranged on the supporting plate (21) and is used to fix the load-bearing material (40); The power assembly (30) is arranged on the device body (10) and is used to drive the support plate (21) to flip.

2. The load-carrying material turning system according to claim 1, characterized in that: The fixing member (22) is slidably arranged along a first direction on the plane where the supporting plate (21) is located; The fixing member (22) is provided with a pressing device (23); The pressing device (23) is slidably arranged along a second direction on the plane where the supporting plate (21) is located; The clamp (23) is used to fix the load-bearing material (40); The first direction intersects the second direction.

3. The load-carrying material turning system according to claim 2, characterized in that: A plurality of the pressers (23) are arranged on the fixing member (22).

4. The load-carrying material turning system according to claim 2, characterized in that: The pressing device (23) is provided with a twisting handle (231); The twisting handle (231) is used to control the tightness of the pressing device (23).

5. The load-carrying material turning system according to any one of claims 1 to 4, characterized in that: The clamping assembly (20) comprises at least two; The power assembly (30) comprises a rotatable output shaft (31); The output shaft (31) is arranged between the two support plates (21) of at least two of the clamping assemblies (20); The output shaft (31) is used to drive the two support plates (21) of at least two clamping assemblies (20) to flip simultaneously.

6. The load-carrying material turning system according to claim 1, characterized in that: Also includes a travel sensor (50); The travel sensor (50) is arranged on the device body (10) and is used to sense the flipping angle of the support plate (21).

7. The load-carrying material turning system according to claim 1 or 6, characterized in that: Also includes a photoelectric sensor (60); The photoelectric sensor (60) is arranged on the device body (10) and is used to sense whether the support plate (21) is flipped to a preset angle; The photoelectric sensor (60) is electrically connected to the power assembly (30), and is also used to control the power assembly (30) to be turned off after the support plate (21) is flipped to the preset angle.

8. The load-carrying material turning system according to claim 1, characterized in that: An emergency stop button (13) is provided on the device body (10); The emergency stop button (13) is electrically connected to the power assembly (30) and is used to control the power assembly (30) to shut down.

9. The load-carrying material turning system according to claim 1, characterized in that: Also includes: Loading and unloading assembly (70); The loading and unloading assembly (70) comprises: a transfer platform (73) and a support platform (74); The transfer platform (73) is used to transfer the load-bearing material (40); The support platform (74) is provided with a lift platform (75) that can be raised and lowered; The transfer platform (73) is arranged on the lifting platform (75) and is slidable in the horizontal direction.

10. The load-carrying material turning system according to claim 9, characterized in that: The transfer platform (73) is provided with a vacuum adsorption tool for adsorbing the load-bearing material (40).