A camera mount
Patent Information
- Application Number
- CN202522394353.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-12
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-11-12
AI Technical Summary
1.存在安全隐患
1.安全可靠性高
Smart Images

Figure CN224756660U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of boiler furnace maintenance lifting platform, specifically to a camera mounting bracket. Background Technology
[0002] When setting up a lifting platform for boiler furnace maintenance, the traditional method of fixing cameras using wire binding is commonly used on construction sites. Wire binding is a primitive and crude temporary measure with significant drawbacks: 1. There are potential safety hazards. Using wire to secure cameras can lead to sudden breakage due to repeated bending, uneven stress, or improper selection of the wire type, causing the camera to fall from a height of tens of meters. Relying solely on the friction of the wire for fixation makes it prone to loosening during platform movement or vibration, potentially causing the camera to shift at an angle or even slip completely off. Furthermore, the broken ends of the wire are extremely sharp and can easily cut the clothing and bodies of workers.
[0003] 2. Installation is time-consuming and labor-intensive. Installation requires finding suitable binding points, wrapping the wire multiple times, and tightening it forcefully. The entire process is time-consuming, labor-intensive, and inefficient. The strength of the binding largely depends on the worker's experience and sense of responsibility, resulting in inconsistent quality. Removing the tightened wire is also troublesome, sometimes even requiring pliers to cut it, leading to wasted wire.
[0004] 3. Poor monitoring performance Wire binding is a "flexible" connection, but the camera will shake with the platform's movement, resulting in shaky and blurry footage that severely affects monitoring effectiveness. It's also difficult to precisely adjust and fix the camera's angle; often, "good enough" is sufficient, which may prevent it from covering the optimal viewing angle.
[0005] 4. Poor management standardization Iron wire is typically a disposable consumable, requiring new wire for each installation, which is wasteful in the long run. Temporary wire binding makes the site look messy and unprofessional, failing to meet the standardized management requirements of modern factories. It also cannot be effectively managed as a standard workpiece. Utility Model Content
[0006] In order to overcome the shortcomings of the existing technology, this application proposes to provide a camera mounting bracket, which is a steel pipe plug-in mounting bracket that is easy to install and disassemble, and realizes the standardization of structural design, the tooling of use, and the modularization of management.
[0007] This application discloses a camera mounting bracket, including: Base; A column, the lower end of which is mounted upright on the base; A camera mounting bracket is installed on the upper end of the column in a plug-in manner; The column and the base are connected and fixed by a detachable pin, and the camera mounting bracket is installed and connected to the column by a steel pipe sleeve structure.
[0008] Furthermore, the base includes: A base floor, wherein the base floor is provided with base bolt holes; The base ear plate is set on the base floor and has a base pin hole for inserting a pin.
[0009] Furthermore, the base ear plate consists of two pieces, which are disposed opposite to each other on the base floor, and a gap is formed between the two base ear plates for mounting the column.
[0010] Furthermore, the column includes: Upright pole; Column feet, wherein the column feet are located at the lower end of the column rod; The column foot is provided with a column pin hole corresponding to the base pin hole, and the base pin hole and the column pin hole are used to insert a pin; the upper end of the column rod is provided with a column locking pin hole, and the column locking pin hole is used to insert a locking pin.
[0011] Furthermore, the distance from the center of the column pin hole to the edge of the column foot is equal to the distance from the center of the base pin hole to the upper surface of the base floor.
[0012] Furthermore, the column rod is a tubular structure; the column locking pin holes are symmetrically arranged on opposite sides of the column rod.
[0013] Furthermore, the tubular structure is preferably a square tube, and at least two sets of column locking pin holes are symmetrically arranged along its axial direction on the four sides of the square tube. The column locking pin holes are located on opposite sides of the upper end of the column rod.
[0014] Furthermore, the camera mounting bracket includes a pull-out bracket and a mounting plate for mounting the camera; the pull-out bracket is provided with a pull-out bracket locking pin hole corresponding to the column locking pin hole, and the column locking pin hole and the pull-out bracket locking pin hole are used to simultaneously insert locking pins.
[0015] Furthermore, the pull-out bracket is a tubular structure, the cross-sectional shape of which is adapted to the cross-sectional shape of the inner cavity of the column rod, and the outer dimensions of the pull-out bracket are smaller than or equal to the inner cavity dimensions of the column rod, so that the pull-out bracket can be inserted into the cavity of the column rod.
[0016] Furthermore, the distance from the center of the pull-out bracket locking pin hole to the upper end of the pull-out bracket is greater than or equal to the distance from the center of the column locking pin hole to the upper end of the column rod.
[0017] Furthermore, the pull-out bracket is L-shaped or straight rod-shaped; the fixing plate is vertically or parallelly connected to one end of the pull-out bracket.
[0018] Compared with the prior art, this application has at least the following beneficial effects: 1. High safety and reliability Sturdy Structure: The steel pipe sleeve structure itself has excellent bending and torsional resistance, and can be firmly connected to the special interface of the work platform to form a rigid whole. The camera will not shake, tip over or fall off due to the movement or vibration of the work platform.
[0019] Preventing falls: This fundamentally eliminates the risk of cameras falling from heights due to broken or loose wires, ensuring the safety of personnel and equipment below.
[0020] Pin connection: The strength and failure mode of the sleeve structure with pin and bolt locking are calculable and predictable, avoiding the problem that the tightening force of the wire depends on the worker's feel and has great uncertainty.
[0021] 2. High installation and dismantling efficiency Quick operation: The insertion and locking actions are very simple, and installation or removal can usually be completed in just a few minutes or even less, achieving "plug and play".
[0022] No special skills required: Workers do not need to master complicated wire binding techniques; simple training is sufficient for standardized operation, reducing reliance on manual labor.
[0023] Tool-based operation: Tightening can be completed using standard wrenches and other tools, which is less effort and faster than tightening wire by force.
[0024] 3. Stable monitoring images Precise positioning: The camera bracket can be designed with a structure that allows for fine adjustment of the horizontal and tilt angles, enabling the camera to be precisely fixed in the optimal observation position, ensuring that the monitoring image covers key maintenance areas.
[0025] No jitter interference: The rigid connection avoids continuous camera jitter caused by the operation of the working platform or other reasons, thus providing stable and clear video images, which makes it easier for the command center or monitoring personnel to accurately judge the situation.
[0026] 4. Reusability High durability: The metal bracket can be used repeatedly for a long time, is not easily damaged, and has a low life cycle cost.
[0027] Cost savings: Avoids the need to consume wire every time a camera is installed, resulting in a lower overall cost.
[0028] Standardized management: The bracket can be numbered and managed as a standard equipment component, which facilitates storage, retrieval and inventory, and improves the management level of on-site tools and equipment.
[0029] 5. Professionalism and Standardization Using specialized brackets demonstrates the professionalism and standardization of maintenance operations, enhances the company's image, and meets the requirements of modern industrial safety management systems for the standardization of tooling, fixtures, and fixing methods.
[0030] In the high-risk, high-efficiency maintenance environment of power plant boiler furnaces, a camera mounting bracket with a steel pipe sleeve structure represents an improvement over traditional wire binding methods. Through a simple yet ingenious design, it fundamentally addresses the three core issues of safety, efficiency, and quality, driving maintenance operations towards standardization, specialization, and safety. Attached Figure Description
[0031] Figure 1 : A schematic diagram of the camera mounting bracket in this application; Figure 2 : A schematic diagram of the base structure in this application; Figure 3 : Front view of the column in this application; Figure 4 Side view of the column in this application; Figure 5 : A schematic diagram of the camera mounting bracket in this application; Figure 6 Another structural schematic diagram of the camera mounting bracket in this application; In the diagram: 1. Base, 101. Base floor, 102. Base ear plate, 1011. Base bolt hole, 1021. Base pin hole; 2. Column, 201. Column rod, 202. Column foot, 2011. Column locking pin hole, 2021. Column pin hole; 3. Camera mounting bracket, 301. Pull-out bracket, 302. Fixing plate, 3011. Pull-out bracket locking pin hole, 3021. Bolt hole; 401. Pin, 402. Locking pin. Detailed Implementation
[0032] The present application will now be further described in conjunction with the accompanying drawings. Example
[0033] like Figure 1As shown, the camera mounting bracket structure consists of three parts: a base 1, a column 2, and a camera mounting bracket 3. The base 1 is fixed on the work platform, the column 2 is installed on the base 1, and the camera mounting bracket 3 is inserted into the upper cavity of the column 2. A pin 401 is inserted between the column 2 and the base 1, and a locking pin 402 is inserted between the column 2 and the camera mounting bracket 3 to facilitate the installation of the camera mounting bracket structure.
[0034] like Figure 2 As shown, the base 1 has a base plate 101 and a base ear plate 102; the base plate 101 has base bolt holes 1011, and the base ear plate 102 has base pin holes 1021. The two base ear plates 102 are symmetrically welded to the base plate 101, with a gap L1 between the two base ear plates 102; the center distance of the base pin hole 1021 from the upper plane of the base plate 101 is h2.
[0035] like Figure 3-4 As shown, column 2 has a column rod 201 and a column foot 202, with the column foot 202 located at the lower end of the column rod 201. The column foot 202 has a pin hole 2021, the center of which is h1 from the lower edge of the column foot 202, and the width of the column foot 202 is L2. The upper end of the column rod 201 has a locking pin hole 2011, the center of which is H1 from the upper end of the column rod 201.
[0036] The diameter of the pin hole 1021 in the base is the same as that of the pin hole 2021 in the column foot 202.
[0037] The inner diameter L1 between the two base ear plates 102 is greater than or equal to the width L2 of the column foot 202. The distance h1 from the center of the pin hole 2021 of the column foot 202 to the lower edge of the column foot 202 is equal to the distance h2 from the center of the pin hole 1021 of the base to the upper plane of the base floor 101.
[0038] The column 201 uses tubing as its structural material, preferably square tubing. Locking pin holes 2011 are symmetrically arranged on the front and rear sides of the tubing, with two locking pin holes 2011 forming a group. At least two groups must be provided, and the centers of the two locking pin holes 2011 in a group are aligned on the same straight line. For column 201 using square tubing, two groups of locking pin holes 2011 are symmetrically arranged on each of the four sides of the square tubing.
[0039] like Figure 5-6 As shown, the camera mounting bracket 3 is provided with a pull-out bracket 301 and a fixing plate 302; the pull-out bracket 301 has a locking pin hole 3011, and the fixing plate 302 has a bolt hole 3021. The pull-out bracket 301 uses a profile with the same cross-sectional shape as the column rod 201 as the structural material. The outer diameter of the pull-out bracket 301 profile is slightly smaller than or equal to the inner diameter of the column rod 201 tube.
[0040] The center distance of the locking pin hole 3011 on the pull-out bracket 301 from the upper end of the pull-out bracket 301 is H2; the locking pin holes 3011 are symmetrically arranged on the front and rear sides of the pull-out bracket 301 profile, and the centers of the front and rear locking pin holes 3011 are on the same straight line. The diameter of the locking pin hole 2011 on the column rod 201 is the same as that of the locking pin hole 3011 on the pull-out bracket 301.
[0041] The drawer bracket 301 can be designed in an L-shape, with the fixing plate 302 vertically welded to the front end of the drawer bracket 301; alternatively, the drawer bracket 301 can be a straight rod, with the fixing plate 302 vertically welded to the front end of the drawer bracket 301, or the fixing plate 302 can be welded parallel to the front end of the drawer bracket 301. Regardless of the structural form adopted, after the fixing plate 302 is welded, the upper end stroke dimension H2 of the drawer bracket 301 must be ≥ the distance H1 from the center of the locking pin hole 2011 to the upper end dimension H1 of the column rod 201.
[0042] Determine the camera's installation location based on the required monitoring area. Secure the base 1 to the designated work platform using bolts passed through the base bolt holes 1011. Then, insert the column foot 202 between the two base ear plates 102 of the base 1, aligning the center of the base pin hole 1021 with the pin hole 2021 of the column foot 202. Insert the pin 401 into both holes to securely connect them, allowing the column 2 to stand vertically on the base 1.
[0043] The camera is mounted on the camera mounting bracket 3 by passing bolts through both the bolt holes 3021 of the mounting plate 302 and the bolt holes of the camera base.
[0044] Adjust the camera's orientation according to the work area to be monitored, insert the lower end of the pull-out bracket 301 into the upper end of the column rod 201, aligning the locking pin hole 2011 at the upper end of the column rod 201 with the locking pin hole 301 on the pull-out bracket 301, and then insert the locking pin 402 into both holes to prevent the pull-out bracket 301 from being pulled out from the upper end of the column rod 201. This ensures that the camera is stably installed on the upper end of the column rod 201, preventing it from swinging left or right or moving up or down.
[0045] Bolts can be used to replace pins 401 and locking pins 402. The changes in the structural shape of the drawer bracket 301 and the use of bolts to replace pins 401 and locking pins 402 have the same effect.
Claims
1. A camera mount, characterized by, include: Base; A column, the lower end of which is mounted upright on the base; A camera mounting bracket is installed on the upper end of the column in a plug-in manner; The column and the base are connected and fixed by a detachable pin, and the camera mounting bracket is installed and connected to the column by a steel pipe sleeve structure.
2. The camera mounting bracket according to claim 1, characterized in that, The base includes: A base floor, wherein the base floor is provided with base bolt holes; The base ear plate is set on the base floor and has a base pin hole for inserting a pin.
3. The camera mounting bracket according to claim 2, characterized in that, The base ear plate consists of two pieces, which are disposed opposite to each other on the base floor, and a gap is formed between the two base ear plates for inserting the column.
4. The camera mounting bracket according to claim 1, characterized in that, The column includes: Upright pole; Column feet, wherein the column feet are located at the lower end of the column rod; The column foot is provided with a column pin hole corresponding to the base pin hole, and the base pin hole and the column pin hole are used to insert a pin; the upper end of the column rod is provided with a column locking pin hole, and the column locking pin hole is used to insert a locking pin.
5. The camera mounting bracket according to claim 4, characterized in that, The distance from the center of the column pin hole to the edge of the column foot is equal to the distance from the center of the base pin hole to the upper surface of the base floor.
6. The camera mounting bracket according to claim 4, characterized in that, The column rod is a tubular structure, and the tubular structure of the column rod can be a square tube; at least two sets of column locking pin holes are symmetrically arranged on the four sides of the square tube along its axial direction.
7. The camera mounting bracket according to claim 1, characterized in that, The camera mounting bracket includes a pull-out bracket and a mounting plate for mounting the camera; the pull-out bracket is provided with a pull-out bracket locking pin hole corresponding to the column locking pin hole.
8. The camera mounting bracket according to claim 7, characterized in that, The pull-out bracket is a tubular structure. The cross-sectional shape of the tubular structure of the pull-out bracket is adapted to the cross-sectional shape of the inner cavity of the column rod, and the outer dimensions of the pull-out bracket are smaller than or equal to the inner cavity dimensions of the column rod, so that the pull-out bracket can be inserted into the cavity of the column rod.
9. The camera mounting bracket according to claim 7, characterized in that, The distance from the center of the pull-out bracket locking pin hole to the upper end of the pull-out bracket is greater than or equal to the distance from the center of the column locking pin hole to the upper end of the column rod.
10. The camera mounting bracket according to claim 7, characterized in that, The pull-out bracket is L-shaped or straight rod-shaped; the fixing plate is vertically or parallel to one end of the pull-out bracket.