Material imaging data acquisition device

By designing the connecting components for the rotating plate and the mounting plate, the problem of inconvenient installation and maintenance of the imaging mechanism was solved, enabling convenient disassembly and repair, improving equipment operating efficiency and stability, and reducing maintenance costs.

CN223655553UActive Publication Date: 2025-12-12ANHUI GUOKE INTELLIGENT CONTROL OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423173154.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-12
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The existing imaging mechanism is inconvenient to install and maintain, resulting in long maintenance time and high costs, which affects production efficiency and equipment stability.

Method used

A material imaging data acquisition device was designed, which adopts a connecting component of a rotating plate and a mounting plate. The imaging mechanism can be easily disassembled and maintained through a limiting component and a connecting component. The device includes structures such as a limiting block, a snap-fit ​​component, a slide bar, and an operating handle to ensure the stability and synchronous movement of the rotating plate.

Benefits of technology

It simplifies the disassembly and maintenance process of the imaging mechanism, reduces the difficulty and cost of equipment maintenance, reduces downtime, improves equipment operating efficiency and stability, and extends equipment lifespan.

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Abstract

The utility model discloses a material imaging data acquisition device, which belongs to the technical field of imaging data acquisition and comprises a conveying mechanism, a feeding mechanism is arranged on one side of the conveying mechanism, a sorting box is arranged on the other side of the conveying mechanism, an air injection mechanism is arranged in the conveying mechanism, and the material imaging data acquisition device further comprises an imaging mechanism. The beneficial effects of the utility model are that the rotating plate is connected with the mounting plate through the connecting assembly, and the rotating plate deflects to drive the mounting plate to act synchronously on the premise that the stability is guaranteed by the limiting assembly, so that the mounting plate can be overturned upwards, the imaging mechanism is exposed outside, workers can easily overhaul or clean the imaging mechanism, and the working efficiency is improved. The equipment maintenance difficulty and cost are effectively reduced, the equipment failure downtime caused by inconvenient maintenance is shortened, the overall operation efficiency and stability of the equipment are improved, and the service life of the equipment is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of imaging data acquisition, especially relates to a material imaging data acquisition device. BACKGROUND

[0002] In the field of material processing and analysis, imaging data acquisition devices play a key role, providing core basis for accurate sorting, quality detection and characteristic research of materials.

[0003] Most imaging mechanisms are not convenient to install and maintain, and the imaging mechanism installation structure is usually rigid. When the equipment fails or needs regular maintenance and cleaning, it is difficult for technicians to successfully access the imaging components. The complex disassembly process not only consumes a lot of time and energy, but also prolongs the equipment downtime maintenance time, increases the enterprise operating cost and production cycle. UTILITY MODEL CONTENT

[0004] The utility model aims at: in order to solve the above-mentioned technical problem, and put forward a kind of material imaging data acquisition device.

[0005] In order to achieve the above object, the utility model adopts the following technical scheme:

[0006] A material imaging data acquisition device, comprising a conveying mechanism, the conveying mechanism one side is equipped with feeding mechanism, the conveying mechanism other side is equipped with sorting box, the conveying mechanism inside is equipped with air injection mechanism, further comprising:

[0007] Imaging mechanism: the conveying mechanism upper end is equipped with dustproof top cover, the top cover upper end is equipped with through opening, the top cover upper end is hingedly equipped with rotating plate, the rotating plate upper end is equipped with limiting assembly for limiting the deflection of rotating plate, the rotating plate outer side is equipped with mounting plate for covering through opening by connecting assembly, the mounting plate upper end is equipped with mounting port for imaging mechanism installation.

[0008] Further description of the above technical scheme:

[0009] The limiting assembly includes a limiting block rotatably arranged on the upper end of the rotating plate and cooperated with the upper end surface of the top cover, an elastic connecting piece is arranged in the limiting block, a first clamping hole matched with the elastic connecting piece is arranged on the upper end of the rotating plate, and a second clamping hole matched with the elastic connecting piece is arranged on the upper end of the top cover.

[0010] Further description of the above technical scheme:

[0011] The connecting assembly includes a mounting cavity arranged in the mounting plate, a connecting piece is arranged in the mounting cavity, and a clamping groove matched with the connecting piece is arranged on the surface of the rotating plate.

[0012] As a further description of the above technical solutions:

[0013] The connecting piece comprises a sliding rod slidingly arranged inside the mounting cavity, and a clamping block fixedly arranged at one end of the sliding rod and matched with the clamping groove, and the clamping block is connected with the inner wall of the mounting cavity through a connecting spring.

[0014] As a further description of the above technical solutions:

[0015] The other end of the sliding rod is rotatably provided with an operating handle, and a moving plate in sliding contact with the inner wall of the mounting cavity is fixedly arranged outside the operating handle.

[0016] As a further description of the above technical solutions:

[0017] The clamping piece comprises a clamping rod movably penetrating one side of the limiting block and a cavity formed in the limiting block, a sliding plate in sliding contact with the inner wall of the cavity is fixedly arranged outside the clamping rod, and the sliding plate is connected with the inner wall of the cavity through a compression spring.

[0018] As described above, due to the adoption of the above technical solutions, the beneficial effects of the present application are:

[0019] In the present application, the rotating plate is connected with the mounting plate through the connecting assembly, and under the premise of ensuring the stability of the limiting assembly, the deflection of the rotating plate can drive the mounting plate to move synchronously, so that the mounting plate can be flipped upward, and the imaging mechanism is exposed to the outside, so that the staff can easily overhaul or clean it, effectively reducing the equipment maintenance difficulty and cost, reducing the equipment downtime caused by inconvenient maintenance, improving the overall operation efficiency and stability of the equipment, and prolonging the service life of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 An overall structure schematic diagram is shown according to an embodiment of the present application;

[0021] Figure 2 A top cover and imaging mechanism separation state structure schematic diagram is shown according to an embodiment of the present application;

[0022] Figure 3 An imaging mechanism and mounting plate separation state structure schematic diagram is shown according to an embodiment of the present application;

[0023] Figure 4 A rotating plate and mounting plate separation state structure schematic diagram is shown according to an embodiment of the present application;

[0024] Figure 5 A mounting plate local structure sectional view is shown according to an embodiment of the present application;

[0025] Figure 6A connection assembly partial structure schematic diagram is shown according to the embodiment of the utility model.

[0026] Figure 7 A limit block and rotating plate separation state partial structure sectional view is shown according to the embodiment of the utility model.

[0027] Legend: 1, conveying mechanism; 2, feeding mechanism; 3, sorting box; 4, top cover; 5, imaging mechanism; 6, through opening; 7, mounting plate; 8, mounting opening; 9, limit block; 10, rotating plate; 11, sliding rod; 12, clamping block; 13, connecting spring; 14, moving plate; 15, operating handle; 16, bearing; 17, clamping groove; 18, hinge; 19, mounting shaft; 20, first clamping hole; 21, clamping rod; 22, sliding plate; 23, compression spring; 24, second clamping hole. DETAILED DESCRIPTION

[0028] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0029] As shown in Figures 1-7 A material imaging data acquisition device, comprising conveying mechanism 1, conveying mechanism 1 one side is equipped with feeding mechanism 2, conveying mechanism 1 other side is equipped with sorting box 3, sorting box 3 inside is equipped with two blanking passages, so that the material sorted out from different blanking passages, sorting box 3 below can be respectively placed with blanking passage cooperation for collecting material's collecting frame, conveying mechanism 1 inside is equipped with air jet mechanism, air jet mechanism is blown into different blanking passages by air jet respectively with material, still include:

[0030] The imaging mechanism 5: the upper end of the conveying mechanism 1 is provided with a top cover 4 for dust prevention, the top cover 4 is U-shaped in cross section, the top cover 4 is fixedly connected with the shell of the conveying mechanism 1 through bolts, the upper end of the top cover 4 is provided with a through port 6, the through port 6 is ladder-shaped, the upper end of the top cover 4 is hingedly provided with a rotating plate 10, the rotating plate 10 is hingedly connected with the top cover 4 through a hinge 18, the upper end of the rotating plate 10 is provided with a limiting assembly for limiting the deflection of the rotating plate 10, the outer side of the rotating plate 10 is provided with a mounting plate 7 for covering the through port 6 through a connecting assembly, under the action of the limiting assembly, the stability of the closing of the rotating plate 10 can be ensured, that is, the stability of the mounting plate 7 covering the through port 6 can be ensured, under the connecting action of the connecting assembly, the deflection of the rotating plate 10 will drive the mounting plate 7 to deflect synchronously, and then the mounting plate 7 can be turned up, so that the staff can maintain or clean the imaging mechanism 5, the upper end of the mounting plate 7 is provided with a mounting port 8 for mounting the imaging mechanism 5, and the imaging mechanism 5 is connected and fixed with the mounting plate 7 through bolts.

[0031] Further, the limiting assembly comprises a limiting block 9 rotatably arranged on the upper end of the rotating plate 10 and matched with the upper end surface of the top cover 4, the upper end of the rotating plate 10 is fixedly provided with a mounting shaft 19 for rotatable connection of the limiting block 9, the limiting block 9 is elastically connected with a clamping piece in the inside, the upper end of the rotating plate 10 is provided with a first clamping hole 20 matched with the clamping piece, when the clamping piece is clamped into the first clamping hole 20, the limiting block 9 and the rotating plate 10 are in parallel state, that is, the limiting block 9 does not contact with the upper surface of the top cover 4, at this time, the rotating plate 10 can be deflected, the upper end of the top cover 4 is provided with a second clamping hole 24 matched with the clamping piece, when the clamping piece is clamped into the second clamping hole 24, the limiting block 9 and the rotating plate 10 are in staggered state, that is, the limiting block 9 contacts with the upper surface of the top cover 4, thereby limiting the deflection of the rotating plate 10, and ensuring the stability of the closing state of the rotating plate 10.

[0032] Further, the connecting assembly comprises a mounting cavity provided in the inside of the mounting plate 7, a connecting piece is elastically connected in the inside of the mounting cavity, a clamping groove 17 matched with the connecting piece is provided on the surface of the rotating plate 10, the connecting piece is clamped into the clamping groove 17, so that the mounting plate 7 and the rotating plate 10 are in connected state, the deflection of the rotating plate 10 will drive the mounting plate 7 to deflect synchronously, that is, the operation of opening or closing the mounting plate 7 is realized.

[0033] Further, the connecting piece comprises a sliding rod 11 slidably arranged in the inside of the mounting cavity, the sliding rod 11 is square in cross section, one end of the sliding rod 11 is fixedly provided with a clamping block 12 matched with the clamping groove 17, the clamping block 12 is a rectangular block, the clamping block 12 is connected with the inner wall of the mounting cavity through a connecting spring 13, under the resetting action of the connecting spring 13, the clamping block 12 is always clamped in the clamping groove 17.

[0034] Further, the other end of the slide rod 11 is rotatably provided with an operating handle 15, the operating handle 15 is rotatably connected with the slide rod 11 through a bearing 16, the outer side of the operating handle 15 is fixedly sleeved with a moving plate 14 in sliding contact with the inner wall of the installation cavity, when the installation plate 7 is deflected to be opened, the worker can pull the operating handle 15 to make the clamping block 12 disengage from the clamping groove 17, when the moving plate 14 moves to the outer side of the installation cavity, the worker rotates the operating handle 15 to drive the moving plate 14 to be deflected, so that the moving plate 14 abuts against the side of the installation plate 7, that is, the stability after the clamping block 12 disengages from the clamping groove 17 is ensured, then the installation plate 7 can be disassembled from the rotating plate 10, and the imaging mechanism 5 can be conveniently disassembled and overhauled.

[0035] Further, the clamping member comprises a clamping rod 21 movably penetrating one side of the limiting block 9 and a cavity formed in the limiting block 9, the outer side of the clamping rod 21 is fixedly provided with a sliding plate 22 in sliding contact with the inner wall of the cavity, the sliding plate 22 is connected with the inner wall of the cavity through a compression spring 23, in use, the worker pulls the clamping rod 21 upwards to release the rotational constraint of the limiting block 9, then the rotating limiting block 9 can be rotated to release the limiting of the rotating plate 10.

[0036] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A material imaging data acquisition device, comprising a conveying mechanism (1), one side of which is provided with a feeding mechanism (2), the other side of which is provided with a sorting box (3), and the inside of which is provided with a jet mechanism, characterized in that, Also include: Imaging mechanism (5): the top cover (4) on the upper end of the conveying mechanism (1) is provided with a top cover (4), the top cover (4) is provided with a through hole (6) on the upper end, the top cover (4) is hingedly provided with a rotating plate (10) on the upper end, the rotating plate (10) is provided with a limiting assembly for limiting the deflection of the rotating plate (10) on the upper end, the rotating plate (10) is provided with a mounting plate (7) for covering the through hole (6) through the connecting assembly on the outer side, the mounting plate (7) is provided with a mounting hole (8) for mounting the imaging mechanism (5) on the upper end.

2. A material imaging data acquisition apparatus according to claim 1, wherein, The limiting assembly comprises a limiting block (9) rotatably arranged on the upper end of the rotating plate (10) and matched with the upper end surface of the top cover (4), the limiting block (9) is elastically connected with a clamping piece in the inside, the upper end of the rotating plate (10) is provided with a first clamping hole (20) matched with the clamping piece, and the upper end of the top cover (4) is provided with a second clamping hole (24) matched with the clamping piece.

3. A material imaging data acquisition apparatus according to claim 2, wherein, The connecting assembly comprises an installation cavity opened in the inside of the mounting plate (7), the installation cavity is elastically connected with a connecting piece in the inside, and the surface of the rotating plate (10) is provided with a clamping groove (17) matched with the connecting piece.

4. A material imaging data acquisition apparatus according to claim 3, wherein, The connecting piece comprises a sliding rod (11) slidably arranged in the installation cavity, one end of the sliding rod (11) is fixedly provided with a clamping block (12) matched with the clamping groove (17), and the clamping block (12) is connected with the inner wall of the installation cavity through a connecting spring (13).

5. A material imaging data acquisition apparatus according to claim 4, wherein, The other end of the sliding rod (11) is rotatably provided with an operating handle (15), and the outer side of the operating handle (15) is fixedly sleeved with a moving plate (14) in sliding contact with the inner wall of the installation cavity.

6. The material imaging data acquisition apparatus of claim 2, wherein, The clamping piece comprises a clamping rod (21) movably penetrating one side of the limiting block (9) and a cavity opened in the inside of the limiting block (9), the outer side of the clamping rod (21) is fixedly provided with a sliding plate (22) in sliding contact with the inner wall of the cavity, and the sliding plate (22) is connected with the inner wall of the cavity through a compression spring (23).