Point laser sensor mounting bracket suitable for three-dimensional detection

Through the design of lifting components, adjustment components and quick disassembly components, the problems of unstable installation and adjustment difficulties of traditional point laser sensors are solved, and the rapid installation and disassembly of the sensors are achieved, which improves the stability and accuracy of detection.

CN223165343UActive Publication Date: 2025-07-29NANJING IRON & STEEL CO LTD
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Patent Information

Application Number
CN202422187035.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-29
Estimated Expiration
2034-09-06

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Abstract

The utility model discloses a point laser sensor mounting bracket suitable for three-dimensional detection, which relates to the technical field of industrial detection, and comprises a chassis, the top surface of the chassis is fixedly connected with a mounting column, the top end of the mounting column is fixedly connected with a fluted disc, and one end of an adjusting assembly is provided with a quick release assembly; according to the utility model, through the arrangement of the lifting assembly and the adjusting assembly, when the sensor is installed and the height of the sensor needs to be adjusted, a circular ring is rotated to drive a sliding rod to move so as to drive a first installation frame to move, and when the sensor needs to be rotated, the first installation frame is pulled to be separated from a fluted disc; when the sensor is installed, the first installation frame is rotated to a proper position, and through the design, the sensor can be adjusted to the proper position by adjusting the height and the angle of the support when the sensor is installed, so that the stability of the sensor during detection is improved, and the sensor can be adjusted at different angles and heights.
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Description

Technical Field

[0001] The utility model relates to the technical field of industrial inspection, and more specifically, to a point laser sensor mounting bracket suitable for three-dimensional inspection. Background Technique

[0002] In the medium plate plant of Nanjing Iron and Steel, the three-dimensional inspection technology is a key link to ensure that the product size and shape meet the quality standards. Through it, it can effectively detect whether the product size and shape reach the standards. Through its strict inspection of the product, it can effectively reduce the outflow of unqualified products, thus ensuring the product quality.

[0003] There are some problems with the traditional installation method of the point laser sensor, such as unstable fixation, difficult adjustment, inability to adapt to production line changes, etc. These problems will directly affect the accuracy and stability of the inspection, resulting in inaccurate inspection results, unable to ensure whether the product is qualified. Moreover, it is often fixed on the bracket, and when performing maintenance and replacement, it takes a certain amount of time and cannot be replaced quickly. Content of the Utility Model

[0004] The purpose of the utility model is to provide a point laser sensor mounting bracket suitable for three-dimensional inspection, which can realize the function of conveniently adjusting the position and angle of the sensor.

[0005] The above technical purpose of the utility model is achieved through the following technical solutions: A point laser sensor mounting bracket suitable for three-dimensional inspection, including a chassis, the top surface of the chassis is fixedly connected with a mounting column, the top end of the mounting column is fixedly connected with a gear disk, a lifting component is arranged at the top end of the mounting column, an adjusting component is arranged at the top end of the lifting component, and a quick-release component is arranged at one end of the adjusting component;

[0006] Among them, the lifting component includes a second mounting bracket, the second mounting bracket is rotationally connected with a ring through a groove opened therein, the second mounting bracket is meshed with the gear disk through the teeth arranged on its bottom surface, a first spring is arranged at the bottom end of the second mounting bracket, the bottom end of the first spring is fixedly connected with the mounting column, the second mounting bracket is slidably connected with a sliding rod through a through hole opened therein, the sliding rod is threadedly connected with the ring through a thread arranged on its outer wall, and the top end of the sliding rod is fixedly connected with a first mounting bracket.

[0007] Furthermore, the adjusting component includes a support rod, two first connecting rods are arranged on both sides of the support rod, and the first connecting rods are threadedly connected with threaded rods through threaded holes opened therein.

[0008] Furthermore, one end of the threaded rod is rotationally connected with a second connecting rod, and a turntable is fixedly connected to the outer wall of the threaded rod.

[0009] Further, connection columns are fixedly connected to one side of the first connecting rod and the second connecting rod, and the first connecting rod is rotationally connected to the support rod through the connection column.

[0010] Further, the second connecting rod is rotationally connected to the first mounting bracket through the connection column, and the support rod is rotationally connected to the first mounting bracket through a through hole opened at one end thereof.

[0011] Further, the quick-release assembly includes a mounting block, and a support frame is rotationally connected to the top surface of the mounting block.

[0012] Further, a mounting shaft is rotationally connected to the support frame through a through hole opened on one side thereof, and a sliding frame is slidably connected to the mounting block through a groove opened therein.

[0013] Further, a second spring is fixedly connected to one side of the sliding frame, and a rack is fixedly connected to one end of the sliding frame.

[0014] Further, the mounting block is slidably connected to the outer wall of the support rod through a groove opened therein, and the rack is engaged with the teeth in the groove opened in the support rod.

[0015] Further, the rack is slidably connected to the mounting block through a groove opened therein.

[0016] Compared with the prior art, the beneficial effects of this solution are as follows:

[0017] 1. In this solution, by providing a lifting assembly and an adjusting assembly, when installing the sensor, when it is necessary to adjust its height, rotating the ring drives the sliding rod to move, thereby driving the first mounting bracket to move. When rotation is required, pull the first mounting bracket to separate it from the toothed disc, rotate the first mounting bracket to the appropriate position and release the first mounting bracket, so that it is reconnected to the toothed disc through the first spring. Through this design, when installing the sensor, the sensor can be adjusted to the appropriate position by adjusting the height and angle of the bracket, thereby improving the stability of the sensor during detection and enabling it to be adjusted at different angles and heights.

[0018] 2. In this solution, by providing a quick-release assembly, during installation, the sensor is fixed to the mounting shaft, and by pressing the sliding frame to drive the rack to contract, the mounting block is placed into the groove opened on the top surface of the support rod, and the sliding frame is released so that the rack is engaged with the teeth in the groove of the support rod. Through this design, the quick disassembly of the sensor is realized, enabling it to be disassembled in a timely manner during replacement or maintenance, thereby reducing its impact on the production process. At the same time, the angle of the sensor can be adjusted through the mounting shaft and the support seat to improve the detection accuracy. Description of the Drawings

[0019] Figure 1 It is a three-dimensional structure schematic diagram for embodying the present utility model;

[0020] Figure 2 It is a split structure schematic diagram for embodying the present utility model;

[0021] Figure 3 It is a split structure schematic diagram for embodying the lifting assembly of the present utility model;

[0022] Figure 4 It is a split structure schematic diagram for embodying the adjustment assembly of the present utility model;

[0023] Figure 5 It is a split structure schematic diagram for embodying the quick-release assembly of the present utility model.

[0024] In the figure: 1, chassis; 2, mounting column; 3, gear disk; 4, lifting assembly; 41, first mounting bracket; 42, circular ring; 43, second mounting bracket; 44, first spring; 45, sliding rod; 5, adjustment assembly; 51, support rod; 52, first connecting rod; 53, threaded rod; 54, turntable; 55, second connecting rod; 56, connecting column; 6, quick-release assembly; 61, mounting shaft; 62, support frame; 63, mounting block; 64, second spring; 65, sliding frame; 66, rack. Specific embodiments

[0025] The present utility model will be further described in detail below in conjunction with the drawings and through specific embodiments. The following embodiments are only descriptive and do not limit the protection scope of the present utility model.

[0026] Embodiment 1: A point laser sensor mounting bracket applicable to three-dimensional detection, as Figures 1-5 shown, including a chassis 1, a mounting column 2 is fixedly connected to the top surface of the chassis 1, a gear disk 3 is fixedly connected to the top end of the mounting column 2, a lifting assembly 4 is provided at the top end of the mounting column 2, an adjustment assembly 5 is provided at the top end of the lifting assembly 4, and a quick-release assembly 6 is provided at one end of the adjustment assembly 5;

[0027] Among them, the lifting assembly 4 includes a second mounting bracket 43, the second mounting bracket 43 is rotatably connected with a circular ring 42 through a groove opened therein, the second mounting bracket 43 is engaged with the gear disk 3 through the teeth provided on its bottom surface, a first spring 44 is provided at the bottom end of the second mounting bracket 43, the bottom end of the first spring 44 is fixedly connected to the mounting column 2, the second mounting bracket 43 is slidably connected with a sliding rod 45 through a through hole opened therein, the sliding rod 45 is threadedly connected with the circular ring 42 through the thread provided on its outer wall, and the top end of the sliding rod 45 is fixedly connected to a first mounting bracket 41;

[0028] In practical applications, by providing a lifting component 4, when installing the sensor and adjusting its height, rotating the ring 42 drives the slide bar 45 to move, which in turn drives the first mounting bracket 41 to move and the whole assembly to move. When rotation is required, pull the first mounting bracket 41 to separate it from the gear disk 3 and stretch the first spring 44. Rotate the first mounting bracket 41 to the appropriate position and release it, so that it reconnects with the gear disk 3 through the first spring 44.

[0029] Embodiment 2: A mounting bracket for a point laser sensor applicable to three-dimensional detection, which is different from Embodiment 1 and Embodiment 3 in that, as Figure 4 shown, the adjusting component 5 includes a support rod 51. On both sides of the support rod 51, there are first connecting rods 52. The first connecting rods 52 are threadedly connected with threaded rods 53 through threaded holes opened therein. One end of the threaded rod 53 is rotatably connected to a second connecting rod 55. A turntable 54 is fixedly connected to the outer wall of the threaded rod 53. On one side of each of the first connecting rod 52 and the second connecting rod 55, there is a connecting column 56 fixedly connected thereto. The first connecting rod 52 is rotatably connected to the support rod 51 through the connecting column 56. The second connecting rod 55 is rotatably connected to the first mounting bracket 41 through the connecting column 56. The support rod 51 is rotatably connected to the first mounting bracket 41 through a through hole opened at one end thereof.

[0030] In practical applications, by providing the adjusting component 5, when adjusting the angle of the bracket, rotating the turntable 54 drives the threaded rod 53 to rotate, thereby changing the distance between the first connecting rod 52 and the second connecting rod 55 and changing the included angle of the bracket.

[0031] Embodiment 3: A mounting bracket for a point laser sensor applicable to three-dimensional detection, which is different from Embodiment 1 in that, as Figure 5 shown, the quick-release component 6 includes a mounting block 63. On the top surface of the mounting block 63, there is a support frame 62 rotatably connected thereto. The support frame 62 is rotatably connected to a mounting shaft 61 through a through hole opened on one side thereof. The mounting block 63 is slidably connected with a sliding frame 65 through a slot opened therein. On one side of the sliding frame 65, there is a second spring 64 fixedly connected thereto. At one end of the sliding frame 65, there is a rack 66 fixedly connected thereto. The mounting block 63 is slidably connected with the support rod 51 through a slot opened on the outer wall thereof. The rack 66 is meshed with the teeth in the slot opened in the support rod 51. The rack 66 is slidably connected with the mounting block 63 through a slot opened therein.

[0032] In practical applications, by providing a quick-release component 6, during installation, the sensor is fixed to the mounting shaft 61, and by pressing the sliding frame 65, the rack 66 is contracted and the second spring 64 is compressed, so that the mounting block 63 is placed into the groove formed in the top surface of the support rod 51. Then, by releasing the sliding frame 65, the rack 66 is driven by the second spring 64 to extend and engage with the teeth in the groove of the support rod 51. Meanwhile, during disassembly, simply pressing the sliding frame 65 to drive the rack 66 to contract allows for disassembly.

[0033] Working principle: During the installation of the sensor, when it is necessary to adjust its height, by rotating the ring 42, the slide bar 45 is driven to move, which in turn drives the first mounting bracket 41 to move and the whole to move. When rotation is required, the first mounting bracket 41 is pulled to separate it from the gear disk 3 and the first spring 44 is stretched. Then, the first mounting bracket 41 is rotated to a suitable position and released, so that it reconnects with the gear disk 3 through the first spring 44. When it is necessary to adjust the angle of the bracket, by rotating the turntable 54, the threaded rod 53 is driven to rotate, so that the distance between the first connecting rod 52 and the second connecting rod 55 changes, and the included angle of the bracket changes. When installing the sensor, the sensor is fixed to the mounting shaft 61, and by pressing the sliding frame 65, the rack 66 is contracted and the second spring 64 is compressed, so that the mounting block 63 is placed into the groove formed in the top surface of the support rod 51. Then, by releasing the sliding frame 65, the rack 66 is driven by the second spring 64 to extend and engage with the teeth in the groove of the support rod 51. Meanwhile, during disassembly, simply pressing the sliding frame 65 to drive the rack 66 to contract allows for disassembly.

[0034] This specific embodiment is only an explanation of the present invention and does not limit the present invention. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as it is within the scope of the claims of the present invention, it is protected by the patent law.

Claims

1. A point laser sensor mounting bracket applicable to three-dimensional detection, characterized in that Comprising: A chassis (1); a mounting post (2) is fixedly connected to the top surface of the chassis (1), a gear disc (3) is fixedly connected to the top end of the mounting post (2), a lifting assembly (4) is provided at the top end of the mounting post (2), an adjusting assembly (5) is provided at the top end of the lifting assembly (4), and a quick-release assembly (6) is provided at one end of the adjusting assembly (5). Among them, the lifting assembly (4) includes a second mounting frame (43), a circular ring (42) is rotatably connected to the second mounting frame (43) through a groove formed therein, the second mounting frame (43) is engaged with the gear disc (3) through the teeth provided on its bottom surface, a first spring (44) is provided at the bottom end of the second mounting frame (43), the bottom end of the first spring (44) is fixedly connected to the mounting post (2), a sliding rod (45) is slidably connected to the second mounting frame (43) through a through hole formed therein, the sliding rod (45) is threadedly connected to the circular ring (42) through the thread provided on its outer wall, and a first mounting frame (41) is fixedly connected to the top end of the sliding rod (45).

2. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 1, characterized in that, The adjusting assembly (5) includes a support rod (51), first connecting rods (52) are provided on both sides of the support rod (51), and a threaded rod (53) is threadedly connected to the first connecting rods (52) through threaded holes formed therein.

3. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 2, characterized in that, One end of the threaded rod (53) is rotatably connected to a second connecting rod (55), and a turntable (54) is fixedly connected to the outer wall of the threaded rod (53).

4. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 3, wherein Connecting columns (56) are fixedly connected to one side of both the first connecting rod (52) and the second connecting rod (55), and the first connecting rod (52) is rotatably connected to the support rod (51) through the connecting column (56).

5. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 4, characterized in that The second connecting rod (55) is rotatably connected to the first mounting frame (41) through the connecting column (56), and the support rod (51) is rotatably connected to the first mounting frame (41) through a through hole formed at one end thereof.

6. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 5, characterized in that The quick-release assembly (6) includes a mounting block (63), and a support frame (62) is rotatably connected to the top surface of the mounting block (63).

7. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 6, characterized in that, A mounting shaft (61) is rotatably connected to the support frame (62) through a through hole formed on one side thereof, and a sliding frame (65) is slidably connected to the mounting block (63) through a groove formed therein.

8. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 7, characterized in that, A second spring (64) is fixedly connected to one side of the sliding frame (65), and a rack (66) is fixedly connected to one end of the sliding frame (65).

9. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 8, characterized in that, The mounting block (63) is slidably connected to the outer wall of the support rod (51) through a groove formed therein, and the rack (66) is engaged with the teeth provided in the groove of the support rod (51).

10. The mounting bracket for a point laser sensor applicable to three-dimensional detection according to claim 9, characterized in that, The rack (66) is slidably connected to the mounting block (63) through a groove formed therein.