Novel camera mounting structure

By combining arc-shaped and square-shaped locking blocks with stabilizing components such as springs and dampers, the problem of cumbersome installation and loosening caused by shaking in traditional cameras is solved, achieving rapid installation and stable connection.

CN223609848UActive Publication Date: 2025-11-28GANSU XIGOU MINING CO LTD
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Patent Information

Application Number
CN202520356276.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-11-28
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Traditional camera installation is cumbersome, time-consuming, and the connecting parts are prone to loosening due to vibration, leading to a decrease in equipment stability.

Method used

It adopts a combination structure of arc-shaped and square locking blocks, using locking and rotational connection, combined with stabilizing components of springs and dampers, to achieve rapid installation and buffer swaying forces.

Benefits of technology

It improves installation efficiency, enhances equipment stability, prevents connecting parts from loosening due to shaking, and ensures quick installation and disassembly of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cameras, and discloses a novel camera mounting structure which comprises a camera body, a connecting rod is fixedly connected to the top of the camera body, a protective shell is fixedly connected to the top of the connecting rod, a connecting plate is fixedly connected to the top of the protective shell, and a connecting column is fixedly connected to the top of the connecting plate. A first connecting ring is slidably connected to the outer wall of the connecting column, a second connecting ring is fixedly connected to the top of the first connecting ring, a first arc-shaped clamping block is fixedly connected to the top of the second connecting ring, first square clamping blocks are fixedly connected to the two sides of the second arc-shaped clamping block, and second square clamping blocks are slidably connected to the outer walls of the first square clamping blocks. According to the device, the second square clamping block is used for clamping and fixing the device, meanwhile, the first square clamping block is moved into the second square clamping block, the connection stability of the second arc-shaped clamping block and the second square clamping block is enhanced, rapid installation of the device is achieved, the installation efficiency of the device is improved, and the installation stability of the device is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to camera technical field especially relates to a novel camera mounting structure. BACKGROUND

[0002] The camera is a kind of device for capturing image or video, and its lens is composed of multiple lenses, these lenses are arranged according to certain optical design, and its function is to focus light on image sensor, and aperture is an adjustable component in lens, which controls the amount of light entering the lens. The size of aperture is represented by aperture value (such as f / 2.8, f / 4, etc.), and the smaller the aperture value is, the larger the aperture is;

[0003] The camera is generally divided into visible light camera and infrared camera: the visible light camera is the most common camera type, which can capture the image in the light range visible to human eyes, while the infrared camera can capture the infrared radiation emitted by the object and convert it into image. This kind of camera has unique advantages in night or low light environment, and can realize monitoring and shooting under no light condition. For example, in the security field, infrared camera can shoot clear image in completely dark environment;

[0004] But the traditional equipment usually uses screw and nut to install and fix in installation process, and installer needs to use tool (such as screwdriver, wrench, etc.) to tighten screw and nut one by one, which is relatively cumbersome and time-consuming, and screw and nut will be gradually loosened by external force such as vibration and impact in long-term use, which reduces the efficiency of equipment connection, so a novel camera mounting structure is proposed to solve the above problems. UTILITY MODEL CONTENT

[0005] In order to overcome the problems existing in the prior art, the utility model aims at providing a novel camera mounting structure, which aims at improving the problem that the installation process of traditional equipment is relatively cumbersome and needs to consume long time. In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] The utility model provides a new camera mounting structure, including camera body, the top fixedly connected with connecting rod, the top fixedly connected with the protection shell of connecting rod, the top fixedly connected with the connecting plate of protection shell, the top fixedly connected with the connecting column of connecting plate, the outer wall slidingly connected with connecting ring no.

[0007] As a further description of the above technical solution:

[0008] The stabilizing assembly includes a spring two, which is fixedly connected to the inner wall of the protection shell, one end of the spring one is fixedly connected to the outer wall of the square block two, and the other end of the spring one is fixedly connected to the outer wall of the support frame.

[0009] As a further description of the above technical solution:

[0010] The bottom of the protection shell is fixedly connected with a fixed support, and the fixed support is fixedly connected to the outer wall of the connecting rod.

[0011] As a further description of the above technical solution:

[0012] The inner wall of the protection shell is fixedly connected with a plurality of fixed blocks one on one side, and a plurality of fixed blocks two on the other side.

[0013] As a further description of the above technical solution:

[0014] The inner side of the fixed block one on one side is slidingly connected with a rotating plate two, and the inner side of the fixed block one on the other side is slidingly connected with a rotating plate one.

[0015] As a further description of the above technical solution:

[0016] The rotating plate one is rotatably connected with a rotating shaft in the inner side of the rotating plate two.

[0017] As a further description of the above technical solution:

[0018] The rotating shaft outer wall is fixedly connected with a fixed block three, the fixed block three is fixedly connected with a bidirectional telescopic rod inside, and the bidirectional telescopic rod is fixedly connected to the inner wall of the protective shell at both ends;

[0019] As further description of the above technical solutions:

[0020] The bidirectional telescopic rod is arranged on the inner wall of the spring two, the spring two is fixedly connected to the two sides of the fixed block three, a plurality of dampers are arranged on the two sides of the spring two, and the inner walls of the rotating plate one and the rotating plate two are connected with the damper output ends.

[0021] The utility model has the advantages of:

[0022] 1、the utility model discloses, move to the square clamping block no. 2 outer wall through pushing the arc clamping block no. 2, and utilize square clamping block no. 2 to carry out clamping position fixed, rotate arc clamping block no. 2 simultaneously, let square clamping block no. 1 move to the inside of square clamping block no. 2, strengthen arc clamping block no. 2 and square clamping block no. 2 connection stability, realized the quick installation of equipment, solved the traditional equipment installation process to be more complicated, need to consume long time's problem, improved the installation efficiency of equipment, strengthened the stability of equipment installation.

[0023] 2、the utility model discloses, the shaking power of equipment is conducted to the inside of protective shell, thereby drive spring no. 2, damper compression and rotating plate no. 1 rotate, make it buffer absorption to shaking power, solved the traditional equipment shaking process, will drive equipment connecting piece synchronous shaking, thereby make its connecting component appear the problem of loosening, strengthened the stability of equipment connecting piece. ACCURACY OF DRAWINGS

[0024] Figure 1 A three-dimensional schematic view of a novel camera mounting structure is provided for the utility model;

[0025] Figure 2 A square clamping block no. 2 structure schematic view of a novel camera mounting structure is provided for the utility model;

[0026] Figure 3 A spring no. 2 structure schematic view of a novel camera mounting structure is provided for the utility model.

[0027] In the drawing: 1, camera body; 2, connecting rod; 3, fixed support; 4, protective shell; 5, connecting plate; 6, connecting ring one; 7, connecting ring two; 8, connecting column; 9, arc clamping block one; 10, arc clamping block two; 11, square clamping block one; 12, square clamping block two; 13, connecting shaft; 14, spring one; 15, support frame; 16, connecting shell; 17, fixed block one; 18, fixed block two; 19, rotating plate one; 20, rotating plate two; 21, rotating shaft; 22, fixed block three; 23, spring two; 24, bidirectional telescopic rod; 25, damper. DETAILED DESCRIPTION

[0028] The utility model will be described in detail below in combination with the drawings and specific embodiments:

[0029] Referring to Figure 1 and Figure 2 , the utility model provides a kind of embodiment: a kind of novel camera mounting structure, including camera body 1, the top of camera body 1 is fixedly connected with connecting rod 2, the top of connecting rod 2 is fixedly connected with protective shell 4, the top of protective shell 4 is fixedly connected with connecting plate 5, the top of connecting plate 5 is fixedly connected with connecting column 8, connecting ring one 6 is slidably connected to the outer wall of connecting column 8, the top of connecting ring one 6 is fixedly connected with connecting ring two 7, the top of connecting ring two 7 is fixedly connected with arc clamping block one 9, one end of connecting column 8 is fixedly connected with arc clamping block two 10, both sides of arc clamping block two 10 are fixedly connected with square clamping block one 11, the acute angle barb of square clamping block one 11 edge can enhance the stability of the connection between arc clamping block two 10 and square clamping block two 12, the outer wall of square clamping block one 11 is slidably connected with square clamping block two 12, the top plane structure of square clamping block two 12 can be clamped and fixed to the plane at the bottom of arc clamping block two 10, one side of square clamping block two 12 is fixedly connected with connecting shaft 13, the outer wall of connecting shaft 13 is slidably connected with support frame 15, the top of support frame 15 is fixedly connected with connecting shell 16, spring one 14 is arranged on the outer wall of connecting shaft 13, stabilizing assembly is arranged in protective shell 4, and stabilizing assembly is used to ensure equipment stability, one end of spring one 14 is fixedly connected on the outer wall of square clamping block two 12, the other end of spring one 14 is fixedly connected on the outer wall of support frame 15, the bottom of protective shell 4 is fixedly connected with fixed support 3, and fixed support 3 is fixedly connected on the outer wall of connecting rod 2.

[0030] Specifically, in the installation process of the device, first, the connecting shell 16 is fixed inside the wall, then the arc-shaped clamping block two 10 on one side of the support frame 15 is moved to the inside of the connecting shell 16, when the arc-shaped clamping block two 10 moves to the outer wall of the square clamping block two 12, the arc surface of the outer wall will generate extrusion force on both sides of the square clamping block two 12, this extrusion force drives the connecting shaft 13 to slide along the inside of the support frame 15, and causes the compression of the spring one 14, when the plane on one side of the arc-shaped clamping block two 10 moves to the outer wall of the square clamping block two 12, the square clamping block two 12 loses the extrusion force of the arc surface of the outer wall of the arc-shaped clamping block two 10, at this time the rebounding force of the spring one 14 will push the square clamping block two 12 to move to the plane on one side of the arc-shaped clamping block two 10, so that the square clamping block two 12 can be firmly clamped and fixed on the arc-shaped clamping block two 10, then through the rotation of the connecting plate 5, the arc-shaped clamping block two 10 can be synchronously rotated, so that the square clamping block one 11 on the outer wall of the arc-shaped clamping block two 10 is rotated and moved to the inside of the clamping groove of the square clamping block two 12, this rotation makes the fixed connection between the square clamping block two 12 and the arc-shaped clamping block two 10 more firm, avoiding the aging phenomenon that may occur after long-term use of the connecting shaft 13, thereby reducing the fixed effect of the square clamping block two 12 on the arc-shaped clamping block two 10, when disassembly is needed, first, rotate the arc-shaped clamping block two 10, so that the square clamping block one 11 on the outer wall of the arc-shaped clamping block two 10 moves out of the inside of the clamping groove of the square clamping block two 12, then push the connecting ring one 6, so as to push the arc-shaped clamping block one 9 on the top of the connecting ring two 7 to move, similarly, the arc surface of the outer wall of the arc-shaped clamping block one 9 will exert extrusion force on the square clamping block two 12, so that the square clamping block two 12 is separated from the plane on one side of the arc-shaped clamping block two 10, when the plane on one side of the arc-shaped clamping block one 9 moves to the outside of the arc-shaped clamping block two 10, rotate the arc-shaped clamping block one 9, so as to move the square clamping block one 11 to the inside of the recess of the arc-shaped clamping block one 9, thereby ensuring the complete fitting between the arc-shaped clamping block one 9 and the arc-shaped clamping block two 10, finally, the arc-shaped clamping block two 10 can be moved out of the inside of the connecting shell 16, realizing the quick installation and disassembly of the device.

[0031] Referring to Figure 1 and Figure 3The stabilizing assembly comprises a spring 23 fixedly connected to the inner wall of the protective shell 4, a plurality of fixed blocks 17 fixedly connected to one side of the inner wall of the protective shell 4, a rotating plate 20 rotatably connected to the inside of one fixed block 17, a rotating plate 19 rotatably connected to the inside of the other fixed block 17, the rotating plate 19 being rotatably connected to the inside of one fixed block 18, the rotating plate 20 being rotatably connected to the inside of the other fixed block 18, a rotating shaft 21 rotatably connected to the inside of the rotating plate 19 and the rotating plate 20, a fixed block 22 fixedly connected to the outer wall of the rotating shaft 21, and a two-way telescopic rod 24 fixedly connected to the inner wall of the protective shell 4 and arranged in the spring 23.

[0032] Specifically, when the device shakes, the force is transmitted to the inside of the protective shell 4, the fixed blocks 17 and 18 in the protective shell 4 move, and the spring 23 is compressed. The compression of the spring 23 helps to reduce the shaking force of the device. The movement of the fixed blocks 17 and 18 drives the rotating plates 19 and 20 to rotate and slide. The rotation adjusts the center of gravity of the device and disperses the shaking force. In addition, the compression characteristics of the dampers 25 further reduce the influence of the shaking force, preventing the force from being transmitted to the connecting shell 16, thereby protecting the connecting parts from being affected. The device connection part is loose during the traditional device shaking process, which enhances the stability of the device connection part.

[0033] Working principle: during the installation process of the device, the connecting shell 16 is fixed inside the wall, and then the arc-shaped block two 10 on one side of the support frame 15 is moved to the inside of the connecting shell 16. When the arc-shaped block two 10 moves to the outer wall of the square block two 12, the arc surface of the outer wall of the arc-shaped block two 10 is used to extrude the square block two 12 on both sides, so as to drive the square block two 12 to shrink. The square block two 12 moves at the same time, which drives the connecting shaft 13 to slide inside the support frame 15, and the spring one 14 is compressed. When the plane on one side of the arc-shaped block two 10 moves to the outer wall of the square block two 12, the square block two 12 loses the extrusion force of the arc surface of the outer wall of the arc-shaped block two 10, so as to use the rebound force of the spring one 14 to push the square block two 12 to move to the plane on one side of the arc-shaped block two 10, and then use the square block two 12 to clamp and fix the arc-shaped block two 10. Then rotate the connecting plate 5, which drives the arc-shaped block two 10 to rotate synchronously, and moves the square block one 11 on the outer wall of the arc-shaped block two 10 to the inside of the square block two 12, so as to enhance the fixed connection between the square block two 12 and the arc-shaped block two 10. When it is necessary to disassemble, rotate the arc-shaped block two 10 again, move the square block one 11 on the outer wall of the arc-shaped block two 10 out of the inside of the square block two 12, and then push the connecting ring one 6 to push the arc-shaped block one 9 on the top of the connecting ring two 7 to move. Similarly, use the arc surface of the outer wall of the arc-shaped block one 9 to extrude and move the square block two 12, so as to separate the square block two 12 from the plane on one side of the arc-shaped block two 10. When the plane on one side of the arc-shaped block one 9 moves to the outside of the arc-shaped block two 10, rotate the arc-shaped block one 9 to move the square block one 11 to the inside of the recess of the arc-shaped block one 9, so as to ensure that the arc-shaped block one 9 is completely fitted with the arc-shaped block two 10. Then move the arc-shaped block two 10 out of the inside of the connecting shell 16 to realize the quick installation and disassembly of the device, which facilitates the use of the user. During the shaking process of the device, the force will be transmitted to the inside of the protective shell 4, which drives the fixed block one 17 and the fixed block two 18 inside the protective shell 4 to move and the spring two 23 to compress. The compression of the spring two 23 can slow down the shaking force of the device. The movement of the fixed block one 17 and the fixed block two 18 drives the rotating plate one 19 and the rotating plate two 20 to rotate and slide, so as to adjust the center of gravity and disperse the shaking force. At the same time, the compressible characteristic of the damper 25 can slow down the shaking force of the device again, so as to avoid the transmission of the shaking force to the inside of the connecting shell 16, thereby affecting the connection components and reducing the connection stability of the connection components, and enhancing the stability of the connection components of the device.

Claims

1. A new camera mounting structure comprising a camera body (1), characterized in that: The top of the camera body (1) is fixedly connected with a connecting rod (2), the top of the connecting rod (2) is fixedly connected with a protective shell (4), the top of the protective shell (4) is fixedly connected with a connecting plate (5), the top of the connecting plate (5) is fixedly connected with a connecting column (8), the outer wall of the connecting column (8) is slidably connected with a connecting ring one (6), the top of the connecting ring one (6) is fixedly connected with a connecting ring two (7), the top of the connecting ring two (7) is fixedly connected with an arc-shaped clamping block one (9), one end of the connecting column (8) is fixedly connected with an arc-shaped clamping block two (10), the two sides of the arc-shaped clamping block two (10) are fixedly connected with square clamping blocks one (11), the outer walls of the square clamping blocks one (11) are slidably connected with square clamping blocks two (12), one side of the square clamping blocks two (12) is fixedly connected with a connecting shaft (13), the outer walls of the connecting shaft (13) are slidably connected with support frames (15), the top of the support frame (15) is fixedly connected with a connecting shell (16), the outer wall of the connecting shaft (13) is provided with a spring one (14), the inside of the protective shell (4) is provided with a stabilizing assembly, and the stabilizing assembly is used to ensure the stability of the equipment.

2. A new camera mounting structure according to claim 1, characterized in that: The stabilizing assembly comprises a spring two (23), the spring two (23) is fixedly connected on the inner walls of the protective shell (4), one end of the spring one (14) is fixedly connected on the outer wall of the square clamping blocks two (12), and the other end of the spring one (14) is fixedly connected on the outer wall of the support frame (15).

3. A new camera mounting structure according to claim 1, characterized in that: The bottom of the protective shell (4) is fixedly connected with a fixed support (3), and the fixed support (3) is fixedly connected on the outer wall of the connecting rod (2).

4. The novel camera mounting structure according to claim 2, characterized in that: The inner wall of the protective shell (4) is fixedly connected with a plurality of fixed blocks one (17) on one side, and the inner wall of the protective shell (4) is fixedly connected with a plurality of fixed blocks two (18) on the other side.

5. A novel camera mounting structure according to claim 4, characterized in that: The inside of one side of the fixed block one (17) is slidably connected with a rotating plate two (20), and the inside of the other side of the fixed block one (17) is slidably connected with a rotating plate one (19), the rotating plate one (19) is slidably connected in the inside of one side of the fixed block two (18), and the rotating plate two (20) is slidably connected in the inside of the other side of the fixed block two (18).

6. A novel camera mounting structure according to claim 5, characterized in that: The inside of the rotating plate one (19) is rotatably connected with a rotating shaft (21), and the rotating shaft (21) is rotatably connected in the inside of the rotating plate two (20).

7. A novel camera mounting structure according to claim 6, characterized in that: The outer wall of the rotating shaft (21) is fixedly connected with a fixed block three (22), the inside of the fixed block three (22) is fixedly connected with a bidirectional telescopic rod (24), and the two ends of the bidirectional telescopic rod (24) are fixedly connected on the inner walls of the protective shell (4).

8. A new camera mounting structure according to claim 7, characterized in that: The bidirectional telescopic rod (24) is arranged in the inner wall of the spring two (23), the spring two (23) is fixedly connected on the two sides of the fixed block three (22), the two sides of the spring two (23) are provided with a plurality of dampers (25), and the inner walls of the rotating plate one (19) and the rotating plate two (20) are connected with the output ends of the dampers (25).