Multidirectional detection equipment

By designing multi-directional detection equipment and using the third support frame and power mechanism to drive the bearing block to rotate, the problem of blind angle detection is solved and more efficient detection effect is achieved.

CN223348709UActive Publication Date: 2025-09-16SUZHOU WISETECH AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422395615.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-09-16
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing detection equipment has blind spots when testing mobile phone camera lenses, resulting in inaccurate and incomplete detection.

Method used

A multi-directional detection equipment is designed. Through the cooperation of the third support frame, sliding frame, bearing plate, power unit, bearing block and power mechanism, multi-directional rotation and illumination of the workpiece during the detection process are achieved, reducing the detection blind angle.

Benefits of technology

The accuracy and practicability of detection are improved, and mobile phone camera lenses can be detected more comprehensively, making the method suitable for wide promotion and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of detection equipment, and particularly discloses multidirectional detection equipment which comprises a third supporting frame, a sliding frame is arranged on the third supporting frame, a bearing plate is connected to the sliding frame in a sliding mode, and a power part used for driving the bearing plate to slide is arranged on the sliding frame. A mounting block is arranged on the bearing plate, a plurality of groups of bearing blocks are rotationally connected to the mounting block, and each bearing block is provided with a workpiece through a corresponding mounting groove; a power mechanism for driving the bearing block to rotate is arranged on the bearing plate; and a plurality of groups of detection components are arranged on the third support frame. The power mechanism drives the bearing block to rotate, and when the bearing block rotates, the workpiece on the bearing block is driven to rotate at the detection station, so that the detection part can fully irradiate the workpiece, detection dead angles are reduced, the accuracy of workpiece detection is improved, the detection practicability can be greatly improved, and the device is suitable for being widely popularized and used.
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Description

Technical Field

[0001] The utility model relates to the technical field of detection equipment, in particular to a multi-directional detection equipment. Background Art

[0002] The digital camera function of a mobile phone refers to whether the mobile phone can take still pictures or short videos through a built-in or external digital camera. As a new additional function of the mobile phone, the digital camera function of the mobile phone has developed rapidly.

[0003] During the production and processing of mobile phone lenses, testing equipment is often used to inspect the internal components of the camera. Mobile phone camera lenses undergo multiple production and testing processes before being put into use. During these testing processes, it is necessary to determine whether the tested mobile phone camera lenses meet production and usage standards. Failure to meet the predetermined imaging standards will affect the sales and use of the product.

[0004] In the prior art, such as the Chinese patent with application number 202020070345.5, authorization announcement number CN211043940U, and name "A camera lens detection device", the above patent discloses a camera lens detection device, which includes a support plate, a light lamp fixedly connected to the left side of the inner wall of the U-shaped frame, optical glass fixedly connected between the top and bottom of the inner wall of the U-shaped frame, a cooling fan fixedly connected to the left side of the inner wall of the U-shaped frame, and a lens interface is opened on the right side of the fixed box and located on the right side of the U-shaped frame.

[0005] The output end of the motor of the camera lens inspection device in the above-mentioned patent is fixedly connected to a lead screw, which allows the lens to be inspected through optical inspection, making the inspection results more accurate. At the same time, the camera lens can be inspected under different light sources, which greatly improves the reputation and sales of the product and increases the practicality of the inspection device. In the existing technology such as the above-mentioned patent, when inspecting lens components, the lens components are usually placed directly at the inspection station and then inspected by the inspection camera. During this process, the lens components are in a relatively static state, and there are blind spots for inspection, which has certain shortcomings. Utility Model Content

[0006] The purpose of the present invention is to provide a multi-directional detection device to solve the problems raised in the above background technology.

[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a multi-directional detection device, comprising a third support frame, a sliding frame is provided on the third support frame, a carrying plate is slidably connected to the sliding frame, and a power part for driving the carrying plate to slide is provided on the sliding frame; a mounting block is provided on the carrying plate, and a plurality of groups of carrying blocks are rotatably connected to the mounting block, and each carrying block is respectively installed with a workpiece through a corresponding mounting groove; a power mechanism for driving the carrying block to rotate is provided on the carrying plate; and a plurality of detection components are provided on the third support frame.

[0008] Furthermore, an adaptor rod is fixedly connected to the bottom of each bearing block, and a rotating rod is rotatably connected to the bottom of the adaptor rod, and the rotating rod is rotatably connected to the mounting block through a rotating groove.

[0009] Furthermore, the power mechanism includes a sliding block slidably connected to a supporting plate, and a power cylinder is provided on the supporting plate for driving the sliding block to slide; and each adapter rod is connected to the sliding block through a corresponding connecting piece, and when the sliding block slides, the adapter rod is driven to rotate through the connecting piece.

[0010] Furthermore, the connecting member includes a connecting plate, which is provided with an avoidance groove. A connecting rod is fixedly connected to the sliding block, and the connecting rod slides in the avoidance groove; and an adaptation groove adapted to the adaptation rod is provided on the connecting plate. When the connecting plate rotates, the connecting plate drives the adaptation rod to rotate together.

[0011] Furthermore, a slide rail is fixedly connected to the carrying plate, and the mounting block is slidably connected to the carrying plate via the slide rail.

[0012] Furthermore, there are two sliding racks, and the two sliding racks are connected via a second migration mechanism.

[0013] Furthermore, the third support frame is provided with multiple groups of lighting light sources for lighting operations.

[0014] Furthermore, the detection component includes a positioning frame, and a detection camera is installed on the positioning frame.

[0015] Furthermore, a supporting mechanism is provided on the bottom of the third supporting frame.

[0016] Furthermore, a plurality of support units are provided at the bottom of the support mechanism, and a heat dissipation component is also provided inside the support mechanism.

[0017] Compared with the prior art, the beneficial effect of the present invention is that the multi-directional detection equipment, through the cooperation between the third support frame, the sliding frame, the load-bearing plate, the power unit, the load-bearing block and the power mechanism, during actual use, when the power unit drives the load-bearing plate to slide on the sliding frame, the workpiece on the load-bearing block will pass through the detection station illuminated by the detection component. During this stroke, the power mechanism drives the load-bearing block to rotate. When the load-bearing block rotates, it will drive the workpiece on the load-bearing block to rotate at the detection station, so that the detection component can fully illuminate the workpiece, reduce detection blind spots, and improve the accuracy of workpiece detection, thereby greatly improving the practicality of the detection and being suitable for wide promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0019] Figure 1 A schematic diagram of the overall structure provided for an embodiment of the present utility model;

[0020] Figure 2 A schematic diagram of the partial structure of the detection equipment provided by an embodiment of the utility model;

[0021] Figure 3 A schematic diagram of the structure of the installation method of multiple groups of detection components provided in an embodiment of the utility model;

[0022] Figure 4 A schematic diagram of the structure of the mounting method of the carrier plate provided in an embodiment of the present utility model;

[0023] Figure 5 A schematic diagram of the partial structure of the power mechanism provided in an embodiment of the utility model;

[0024] Figure 6 This is a schematic diagram of the detection component structure provided by an embodiment of the present utility model.

[0025] Explanation of the accompanying drawings: 14. Third support frame; 15. Sliding frame; 16. Sliding rail; 17. Power unit; 18. Loading plate; 19. Mounting block; 20. Loading block; 21. Mounting slot; 22. Power mechanism; 22.1. Rotating rod; 22.2. Adapter rod; 22.3. Connecting plate; 22.4. Avoidance slot; 22.5. Connecting rod; 22.6. Sliding block; 22.7. Power cylinder; 23. Second migration mechanism; 24. Detection component; 24.1. Positioning frame; 24.2. Detection camera. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] See also Figure 1-6 The utility model provides a technical solution: a multi-directional detection device, including a third support frame 14, a sliding frame 15 is provided on the third support frame 14, a carrying plate 18 is slidably connected to the sliding frame 15, and a power part 17 for driving the carrying plate 18 to slide is provided on the sliding frame 15; a mounting block 19 is provided on the carrying plate 18, and a plurality of groups of carrying blocks 20 are rotatably connected to the mounting block 19, and each carrying block 20 is respectively installed with a workpiece through a corresponding mounting groove 21; a power mechanism 22 for driving the carrying block 20 to rotate is provided on the carrying plate 18; and a plurality of groups of detection components 24 are provided on the third support frame 14.

[0028] Specifically, the multi-directional inspection device includes a third support frame 14, on which is mounted a sliding frame 15, to which is slidably connected a support plate 18. During operation, the support plate 18 slides on the sliding frame 15. The sliding frame 15 is provided with a power unit 17 for driving the support plate 18 to slide, enabling adjustment of the position of the sliding frame 15 according to operational needs. Furthermore, the support plate 18 is provided with a mounting block 19, to which are rotatably connected multiple sets of support blocks 20. Each support block 20 is mounted via a corresponding mounting slot 21, thereby enhancing stability during workpiece mounting. Furthermore, the support plate 18 is provided with a power mechanism 22 for rotating the support blocks 20. Therefore, during use, the support blocks 20 are rotated by the power mechanism 22 while the support plate 18 slides on the sliding frame 15, achieving enhanced performance. Furthermore, the third support frame 14 is provided with multiple sets of inspection components 24, enabling comprehensive inspection of the workpieces mounted on the support blocks 20. Therefore, during actual use, when the power unit 17 drives the carrying plate 18 to slide on the sliding frame 15, the workpiece on the carrying block 20 will pass through the detection station illuminated by the detection component 24. During this stroke, the power mechanism 22 drives the carrying block 20 to rotate. When the carrying block 20 rotates, it will drive the workpiece on the carrying block 20 to rotate at the detection station, so that the detection component 24 can fully illuminate the workpiece, reduce detection blind spots, and improve the accuracy of workpiece detection, thereby greatly improving the practicality of the detection and being suitable for widespread promotion and use.

[0029] In the embodiment provided by the present invention, an adapter rod 22.2 is fixedly connected to the bottom of each supporting block 20, and a rotating rod 22.1 is rotatably connected to the bottom of the adapter rod 22.2, and the rotating rod 22.1 is rotatably connected to the mounting block 19 through a rotating groove, thereby improving the stability of the adapter rod 22.2 during rotation.

[0030] In the embodiment provided by the present utility model, the power mechanism 22 includes a sliding block 22.6 slidably connected to the supporting plate 18, and a power cylinder 22.7 is provided on the supporting plate 18 for driving the sliding block 22.6 to slide; and each adapter rod 22.2 is connected to the sliding block 22.6 through a corresponding connecting piece. When the sliding block 22.6 slides, the adapter rod 22.2 is driven to rotate through the connecting piece.

[0031] In the embodiment provided by the present invention, the connecting member includes a connecting plate 22.3, which is provided with an escape groove 22.4. A connecting rod 22.5 is fixedly connected to a sliding block 22.6, and the connecting rod 22.5 slides within the escape groove 22.4. The connecting plate 22.3 is provided with an adapting groove that adapts to the adapting rod 22.2. When the connecting plate 22.3 rotates, the connecting plate 22.3 drives the adapting rod 22.2 to rotate together. Specifically, the adapting rod 22.2 has a square cross-section, and the adapting groove also has a square cross-section. Therefore, when the connecting plate 22.3 rotates, it can passively drive the adapting rod 22.2 to rotate.

[0032] In the embodiment provided by the present invention, the slide rail 16 is fixedly connected to the carrying plate 18 , and the mounting block 19 is slidably connected to the carrying plate 18 via the slide rail 16 , thereby further improving the stability of the mounting block 19 when sliding.

[0033] In the embodiment provided herein, two slides 15 are connected by a second transfer mechanism 23. This allows for more inspection components 24 to inspect the workpiece, resulting in improved performance. Specifically, the workpiece may have a right-angle surface (A), an inked surface (B), a large surface (C), an inked surface (D), an inked surface (E), an inked surface (F), an inked surface (G), an inked surface (H), an inked surface (I), and an inked surface (J). Therefore, multiple inspection components 24 are required.

[0034] In the embodiment provided by the present invention, a plurality of lighting light sources are provided on the third support frame 14 to provide lighting for the inspection and improve the brightness of the inspection station during the inspection operation.

[0035] In the embodiment provided by the present invention, the detection component 24 includes a positioning frame 24.1, on which a detection camera 24.2 is mounted. Specifically, the detection camera 24.2 is a CCD detection camera 24.2. Specifically, CCD cameras are used in security systems. Currently, images are mainly generated from CCD cameras. CCD, short for charge coupled device (CCD), can convert light into electric charge, store and transfer the charge, and also extract the stored charge to change the voltage. Therefore, it is an ideal CCD camera component. CCD cameras constructed with CCDs are widely used due to their small size, light weight, immunity to magnetic fields, and resistance to vibration and impact.

[0036] In the embodiment provided by the present invention, a supporting mechanism is provided on the bottom of the third supporting frame 14, which makes it more stable during operation.

[0037] In the embodiment provided by the present invention, a plurality of support units are provided at the bottom of the support mechanism, and a heat dissipation component is also provided inside the support mechanism, which has a better use effect.

[0038] It should be noted that the electrical equipment involved in this application can be powered by batteries or external power supply.

[0039] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "connected," etc. should be understood in a broad sense. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0040] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A multi-directional detection device, comprising a third support frame (14), characterized in that: The third support frame (14) is provided with a sliding frame (15), a carrying plate (18) is slidably connected to the sliding frame (15), and a power unit (17) for driving the carrying plate (18) to slide is provided on the sliding frame (15); A mounting block (19) is provided on the bearing plate (18), and a plurality of groups of bearing blocks (20) are rotatably connected to the mounting block (19), and each bearing block (20) is respectively mounted with a workpiece through a corresponding mounting slot (21); The bearing plate (18) is provided with a power mechanism (22) for driving the bearing block (20) to rotate; Furthermore, multiple groups of detection components (24) are arranged on the third support frame (14).

2. The multi-directional detection device according to claim 1, characterized in that: An adapting rod (22.2) is fixedly connected to the bottom of each bearing block (20), and a rotating rod (22.1) is rotatably connected to the bottom of the adapting rod (22.2), and the rotating rod (22.1) is rotatably connected to the mounting block (19) through a rotating groove.

3. The multi-directional detection device according to claim 2, characterized in that: The power mechanism (22) comprises a sliding block (22.6) slidably connected to a carrying plate (18), and a power cylinder (22.7) for driving the sliding block (22.6) to slide is provided on the carrying plate (18); Each adapter rod (22.2) is connected to the sliding block (22.6) via a corresponding connecting piece. When the sliding block (22.6) slides, the adapter rod (22.2) is driven to rotate via the connecting piece.

4. The multi-directional detection device according to claim 3, characterized in that: The connecting member comprises a connecting plate (22.3), an avoidance groove (22.4) is provided on the connecting plate (22.3), a connecting rod (22.5) is fixedly connected to the sliding block (22.6), and the connecting rod (22.5) slides in the avoidance groove (22.4); An adapting groove adapted to the adapting rod (22.2) is provided on the connecting plate (22.3). When the connecting plate (22.3) rotates, the connecting plate (22.3) drives the adapting rod (22.2) to rotate together.

5. The multi-directional detection device according to claim 1, characterized in that: The bearing plate (18) is fixedly connected with a slide rail (16), and the mounting block (19) is slidably connected to the bearing plate (18) via the slide rail (16).

6. The multi-directional detection device according to claim 1, characterized in that: There are two sliding frames (15), and the two sliding frames (15) are connected via a second migration mechanism (23).

7. The multi-directional detection device according to claim 1, characterized in that: The third support frame (14) is provided with multiple groups of lighting light sources for lighting operations.

8. The multi-directional detection device according to claim 1, characterized in that: The detection component (24) comprises a positioning frame (24.1), and a detection camera (24.2) is mounted on the positioning frame (24.1).

9. The multi-directional detection device according to claim 1, characterized in that: A supporting mechanism is provided on the bottom of the third supporting frame (14).

10. The multi-directional detection device according to claim 9, characterized in that: A plurality of support units are arranged at the bottom of the support mechanism, and a heat dissipation component is also arranged inside the support mechanism.

Citation Information

Patent Citations

  • Camera lens detection device

    CN211043940U