High beam detector convenient to install
The design of quick-installation components and hinge structure solves the problems of complex and unsafe installation of high beam detectors, achieving fast, safe installation and efficient use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LIANYUNGANG GUANGYUAN INTELLIGENT TRANSPORTATION TECH CO LTD
- Filing Date
- 2025-05-06
- Publication Date
- 2026-05-15
AI Technical Summary
The installation process of existing high beam detectors is complicated and unsafe. The clamps are prone to loosening after prolonged use, which can cause the monitor to shift at the installation angle or fall off, affecting installation efficiency and safety.
The system employs quick-installation components, including arc-shaped clamps and hinge structures. The convex strips within the arc grooves create multiple points of contact with the pole surface, increasing friction. Combined with the design of support rods and threaded tubes, it achieves rapid fixing, shock resistance, and anti-slip properties, improving installation efficiency and safety.
It enables rapid installation and secure fixation of high beam detectors, reducing installation complexity and the risk of loosening, and improving service life and shooting accuracy.
Smart Images

Figure CN224247273U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of high beam detection equipment, specifically to a high beam detector that is easy to install. Background Technology
[0002] In related technologies, high beams are one of the important functions of automobiles. Compared with low beams, high beams emit parallel light, which is concentrated and brighter, and can illuminate objects that are higher and farther away, greatly helping the driver's vision at night.
[0003] The misuse of high beams is currently quite serious. Using high beams at the wrong time not only fails to improve driving safety—for example, high beams can cause momentary blindness when meeting oncoming traffic; drivers may misjudge the speed and distance of oncoming vehicles when facing high beams, leading to accidental operation; and the difficulty for oncoming vehicles to see objects behind high beams actually increases the likelihood of dangerous accidents. To improve their ability to combat the misuse of high beams, traffic management departments typically install monitors on roadside poles to detect such misuse. These monitors mostly use specialized cameras, such as high-definition cameras with nighttime glare suppression capabilities, combined with algorithms to identify whether a vehicle is using high beams. AI recognition technology is then used to identify vehicles abusing high beams, and the images and records are uploaded to the intelligent transportation system.
[0004] The installation of these specialized high-definition cameras typically involves using a lift ladder. The clamps must first be fixed to the hanging pole of the utility pole, and then the base of the high beam monitor is connected to the clamps. However, installing the clamps is cumbersome, and their grip weakens over time, causing the installation angle of the high beam monitor to shift. Furthermore, there is a risk of the clamps falling off during installation, resulting in slow installation speeds. To address these issues, a convenient high beam detector is proposed. Utility Model Content
[0005] In view of this, the present invention provides a convenient high beam detector. The present invention uses a quick-release assembly to fix the arc-shaped clamp to the road pole, uses a hinge to prevent the lower arc-shaped clamp from falling off, uses an arc groove to reduce the weight of the overall arc-shaped clamp, and uses the convex strip in the arc groove to form multi-point contact with the surface of the hanging rod on the road pole, thereby increasing the friction between the arc-shaped clamp and the road pole by local stress concentration, preventing the clamp from slipping. Then, the external threaded tube is fixed in the internal threaded cylinder, so that the high beam monitor installed on the support rod can be quickly connected to the quick-release assembly, and thus the high beam monitor can be quickly connected and fixed to the road pole, thereby improving the efficiency and safety of high beam monitor installation.
[0006] To solve the above-mentioned technical problems, this utility model provides a conveniently installed high beam detector, including a corner base at the bottom of the high beam monitor, a rotating base at the bottom of the corner base, a support rod fixedly mounted at the bottom of the rotating base, an external threaded tube at the bottom of the support rod, an internal threaded cylinder at the bottom of the external threaded tube, an arc-shaped connecting block at the bottom of the internal threaded cylinder, and a quick-release assembly at the bottom of the arc-shaped surface of the arc-shaped connecting block. The quick-release assembly includes a pair of arc-shaped sleeves separately arranged in the vertical direction, which can be closed to form a circle. A pair of hinges are symmetrically arranged at both ends of the upper arc-shaped sleeve, and the other end of each hinge is connected to the end of the lower arc-shaped sleeve on the same side.
[0007] Each arc-shaped jacket has an arc-shaped groove on its inner arc surface. The arc-shaped groove is used to install the convex strips and also to reduce the overall weight of the arc-shaped jacket. Multiple convex strips are arranged along the axial direction of the arc-shaped jacket in each arc-shaped groove. The convex strips can form multi-point contact with the surface of the hanging pole. This can increase the friction between the arc-shaped jacket and the road pole through local stress concentration, preventing the jacket from slipping. The convex strips also enhance the axial stiffness of the arc-shaped jacket and can also reduce the transmission of ground vibration to the high beam monitor, thereby improving the service life of the components.
[0008] Each arc-shaped jacket has a connecting plate on both sides of its enclosing surface. The connecting plate is used to connect and fix the two arc-shaped jackets after they are enclosed. The connecting plates on the same side are fitted together correspondingly. Multiple threaded holes are provided through the connecting plate. The threaded holes are used to install positioning bolts. Each threaded hole is equipped with a positioning bolt. The positioning bolt is used to connect and fix the two connecting plates on the same side, thereby connecting and fixing the arc-shaped jackets. The positioning bolt is adapted to the threaded hole.
[0009] The support rod is cylindrical in shape, and a grip is provided on the upper part of the external threaded tube. The grip allows personnel to manually rotate the support rod, thereby facilitating the threaded connection and fixation of the external threaded tube and the internal threaded cylinder. The grip is fixed to the outer wall of the support rod.
[0010] The grip surface has several protrusions designed to increase friction on the user's hands, making it easier to rotate the grip.
[0011] A clamp is provided on the upper part of the outer wall of the support rod. The clamp is used to connect the clamping block to the support rod. A clamping block is provided on the side of the clamp near the monitoring end of the high beam monitor. The clamping block is used to connect the clamp to the fill light. The clamping block is U-shaped. A fill light is provided on the side of the clamping block away from the clamp. The fill light is used to improve the shooting accuracy of the high beam monitor.
[0012] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects:
[0013] 1. The arc-shaped clamp is fixed to the pole using a quick-release assembly. A hinge prevents the lower arc-shaped clamp from falling off. The arc groove reduces the overall weight of the arc-shaped sleeve. The protrusions in the arc groove form multiple points of contact with the surface of the hanging rod on the pole, thereby increasing the friction between the arc-shaped sleeve and the pole due to local stress concentration, preventing the sleeve from slipping. Then, the external threaded tube is fixed inside the internal threaded cylinder, allowing the high beam monitor installed on the support rod to be quickly connected to the quick-release assembly and fixed to the pole, thus improving the efficiency and safety of high beam monitor installation.
[0014] 2. The surface of the support rod can be coated with anti-corrosion paint, which facilitates the threaded connection and fixation of the external threaded pipe and the internal threaded cylinder. The protrusion is used to increase the friction of the personnel's hands, so that the grip can be rotated more easily.
[0015] 3. The clamp is used to connect the clamping block and the support rod. The clamping block is used to connect the clamp to the supplementary light. The supplementary light is used to improve the shooting accuracy of the high beam monitor and prevent unclear shooting when the road lighting is poor. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0017] Figure 2 This utility model Figure 1 A magnified view of part A;
[0018] Figure 3 This is a side sectional view of the present invention;
[0019] Figure 4 This utility model Figure 3 A magnified view of part B.
[0020] Explanation of reference numerals in the attached drawings: 100, High beam monitor; 101, Corner base; 102, Rotating base; 103, Support rod; 104, Arc-shaped connecting block; 200, External threaded pipe; 201, Internal threaded cylinder; 202, Grip; 203, Protrusion; 300, Quick-release assembly; 301, Arc-shaped clamp; 302, Hinge; 303, Arc-shaped groove; 304, Raised strip; 400, Connecting plate; 401, Threaded hole; 402, Positioning bolt; 500, Clamp; 501, Holding block; 502, Supplemental light. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-4The technical solutions of the embodiments of this utility model are clearly and completely described below. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.
[0022] like Figure 1-4 As shown: This embodiment provides a conveniently installed high beam detector, including a corner base 101 at the bottom of a high beam monitor 100. The corner base 101 is used to adjust the vertical angle of the high beam monitor 100. A rotating base 102 is provided at the bottom of the corner base 101, which is used to adjust the horizontal angle of the high beam monitor 100. A support rod 103 is fixedly provided at the bottom of the rotating base 102. The support rod 103 supports the rotating base 102, thereby supporting the high beam monitor 100 and also connecting and fixing the high beam monitor 100 to the quick-release assembly 300. An external threaded tube 200 is provided at the bottom of the support rod 103, which is used to connect the support rod 103 to an internal threaded sleeve. An internal threaded cylinder 201 is provided at the bottom of the external threaded tube 200, which is used to connect and fix the external threaded tube 200 to the arc-shaped clamp 301 on the quick-release assembly 300, thereby connecting and fixing the high beam monitor 100. Connected to the arc-shaped sleeve 301, the inner threaded cylinder 201 has an arc-shaped connecting block 104 at its bottom. The bottom of the arc-shaped connecting block 104 is arc-shaped, and the top is horizontal. The bottom of the arc-shaped connecting block 104 is welded to the outer wall of the arc-shaped sleeve 301. A quick-installation assembly 300 is provided at the bottom of the arc-shaped surface of the arc-shaped connecting block 104. The quick-installation assembly 300 is used to quickly install the arc-shaped sleeve 301 on the hanging pole of the road pole. The quick-installation assembly 300 includes a pair of arc-shaped sleeves that are separately arranged in the vertical direction. 301, the arc-shaped clamp 301 is used to clamp and fix the hanging pole on the road pole. Two arc-shaped clamps 301 can be closed to form a circle. The two ends of the upper arc-shaped clamp 301 are symmetrically provided with a pair of hinges 302. The hinges 302 prevent the arc-shaped clamp 301 from falling off during installation. When the bottom arc-shaped clamp 301 is installed, its protrusion 304 can be coated with glue to pre-connect and fix it to the road pole. The other end of each hinge 302 is connected to the end of the arc-shaped clamp 301 on the same side of the lower part.
[0023] In use, the arc-shaped clamp is fixed to the pole by the quick-release assembly 300 and the positioning bolt 402. The hinge 302 prevents the lower arc-shaped clamp from falling off. The arc groove 303 reduces the weight of the overall arc-shaped clamp 301. The protrusion 304 in the arc groove 303 forms multi-point contact with the surface of the hanging rod on the pole, thereby increasing the friction between the arc-shaped clamp 301 and the pole by local stress concentration, preventing the clamp from slipping. The protrusion 304 also strengthens the axial stiffness of the arc-shaped clamp 301, thereby improving the service life of the component. Then, the external threaded tube 200 is fixed in the internal threaded cylinder 201, so that the high beam monitor 100 installed on the support rod 103 can be quickly connected to the quick-release assembly 300, and the high beam monitor 100 can be quickly connected and fixed to the pole, thereby improving the efficiency and safety of installing the high beam monitor 100.
[0024] This embodiment provides a high beam detector that is easy to install.
[0025] like Figure 1 , 2 As shown in Figures 3 and 4: Each arc-shaped sleeve 301 has an arc-shaped groove 303 on its inner arc surface. The arc-shaped groove 303 is embedded in the arc-shaped sleeve 301. The arc-shaped groove 303 is used to install the protrusions 304. The arc-shaped groove 303 is also used to reduce the overall weight of the arc-shaped sleeve 301. Multiple protrusions 304 are provided in each arc-shaped groove 303 along the axial direction of the arc-shaped sleeve 301. The protrusions 304 can be made of rubber. The protrusions 304 can form multiple points of contact with the surface of the hanging pole on the road pole. The friction between the arc-shaped sleeve 301 and the road pole can be increased through local stress concentration to prevent the sleeve from sliding. The protrusions 304 are also used to strengthen the axial stiffness of the arc-shaped sleeve 301. They can also be used to resist earthquakes and reduce the transmission of ground vibrations to the high beam monitor 100, thereby improving the service life of the components.
[0026] Its effects are as follows: the arc groove 303 is used to install the protrusion 304, and the arc groove 303 is also used to reduce the weight of the overall arc sleeve 301. The protrusion 304 can form multiple points of contact with the hanging pole surface on the road pole. It can increase the friction between the arc sleeve 301 and the road pole through local stress concentration, preventing the sleeve from sliding. The protrusion 304 is also used to strengthen the axial stiffness of the arc sleeve 301, and can also reduce the transmission of ground vibration to the high beam monitor 100, thereby improving the service life of the components.
[0027] like Figure 1 , 2As shown in Figures 3 and 4: A connecting plate 400 is provided on both sides of the enclosing surface of each arc-shaped sleeve 301. The dimensions of the connecting plate 400 are consistent with the axial dimensions of the arc-shaped sleeve 301. The connecting plate 400 is welded to the arc-shaped sleeve 301. The connecting plate 400 is used to connect and fix the two arc-shaped sleeves 301 after they are enclosed. The connecting plates 400 on the same side are correspondingly fitted together. Multiple threaded holes 401 are provided through the connecting plate 400. The threaded holes 401 are used to install positioning bolts 402. A positioning bolt 402 is provided in each threaded hole 401. The positioning bolt 402 is used to connect and fix the two connecting plates 400 on the same side, thereby connecting and fixing the arc-shaped sleeves 301. The positioning bolt 402 is adapted to the threaded hole 401.
[0028] Its effect is as follows: the connecting plate 400 is used to connect and fix the two arc-shaped sleeves 301 after they are enclosed, and the positioning bolt 402 is used to connect and fix the two connecting plates 400 on the same side, thereby connecting and fixing the arc-shaped sleeves 301.
[0029] like Figure 1 , 3 As shown: The support rod 103 is cylindrical in shape, and a grip 202 is provided on the upper part of the external threaded tube 200. The grip 202 facilitates manual rotation of the support rod 103. The support rod 103 is welded to the external threaded tube 200. The surface of the support rod 103 can be coated with anti-corrosion paint, so as to facilitate threaded connection and fixation between the external threaded tube 200 and the internal threaded cylinder 201. The grip 202 is fixed on the outer wall of the support rod 103. Several protrusions 203 are provided on the surface of the grip 202. The grip 202 is welded to the support rod 103. The protrusions 203 are made of stainless steel. The surfaces of the grip 202 and the protrusions 203 are coated with anti-corrosion spray. The protrusions 203 are used to increase the friction of the user's hand, so that the grip 202 can be rotated more easily.
[0030] Its effects are as follows: the surface of the support rod 103 can be coated with anti-corrosion paint, which facilitates the threaded connection and fixation between the external threaded tube 200 and the internal threaded cylinder 201; the protrusion 203 is used to increase the friction of the personnel's hands, so that the grip sleeve 202 can be rotated more easily.
[0031] like Figure 1 , 3As shown: A clamp 500 is provided on the upper part of the outer wall of the support rod 103. The clamp 500 is made of stainless steel and consists of two arc-shaped plates. The arc-shaped plates are fixed together by a threaded connection. The clamp 500 is used to clamp the block 501 and connect it to the support rod 103. A clamping block 501 is provided on the side of the clamp 500 near the monitoring end of the high beam monitor 100. The clamping block 501 can be fixed to the clamp 500 by bolts or welding. The clamping block 501 is used to connect the clamp 500 to the supplementary light 502. The clamping block 501 is U-shaped. A supplementary light 502 is provided on the side of the clamping block 501 away from the clamp 500. The supplementary light 502 is fixed to the side of the clamping block 501 away from the clamp 500 by bolts. The supplementary light 502 is used to improve the shooting accuracy of the high beam monitor 100.
[0032] Its effects are as follows: the clamp 500 is used to connect the clamping block 501 and the support rod 103 in an active manner; the clamping block 501 is used to connect the clamp 500 and the supplementary light 502; and the supplementary light 502 is used to improve the shooting accuracy of the high beam monitor 100 and prevent unclear shooting when the road lighting is poor.
[0033] Working principle: The quick-release assembly 300 fixes the circular arc-shaped clamping block to the pole. A hinge 302 prevents the lower arc-shaped clamping block from falling off. A positioning bolt 402 is installed in the threaded hole 401. The arc-shaped groove 303 reduces the overall weight of the arc-shaped clamping sleeve 301. The protrusion 304 within the arc-shaped groove 303 forms multiple points of contact with the surface of the hanging rod on the pole, thereby increasing the friction between the arc-shaped clamping sleeve 301 and the pole due to localized stress concentration, preventing slippage. The protrusion 304 also... The arc-shaped sleeve 301 is used to enhance the axial stiffness and reduce the transmission of ground vibration to the high beam monitor 100, thereby improving the service life of the component. The external threaded tube 200 is then fixed inside the internal threaded cylinder 201, so that the high beam monitor 100 installed on the support rod 103 can be quickly connected to the quick-install assembly 300, and the high beam monitor 100 can be quickly connected and fixed to the road pole, thereby improving the efficiency and safety of installing the high beam monitor 100.
[0034] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0035] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.
Claims
1. A conveniently installed high beam detector, comprising a corner base (101) disposed at the bottom of a high beam monitor (100), and a rotating base (102) disposed at the bottom of the corner base (101), characterized in that: The rotating base (102) is fixedly provided with a support rod (103) at the bottom. The support rod (103) is provided with an external threaded tube (200) at the bottom. The external threaded tube (200) is provided with an internal threaded cylinder (201) at the bottom. The internal threaded cylinder (201) is provided with an arc-shaped connecting block (104) at the bottom. The arc-shaped connecting block (104) is provided with a quick-installation assembly (300) at the bottom of its arc-shaped surface. The quick-installation assembly (300) includes a pair of arc-shaped sleeves (301) that are separately arranged in the vertical direction. The two arc-shaped sleeves (301) can be closed to form a circle. A pair of hinges (302) are symmetrically arranged at both ends of the upper arc-shaped sleeve (301). The other end of each hinge (302) is connected to the end of the lower arc-shaped sleeve (301) on the same side.
2. The conveniently installed high beam detector as described in claim 1, characterized in that: Each of the arc-shaped sleeves (301) has an arc-shaped groove (303) on its inner arc surface, and each arc-shaped groove (303) has a plurality of protrusions (304) arranged along the axial direction of the arc-shaped sleeve (301).
3. A conveniently installed high beam detector as described in claim 2, characterized in that: Each of the arc-shaped sleeves (301) has a connecting plate (400) on both sides of its enclosing surface. The connecting plates (400) on the same side are fitted together vertically. Multiple threaded holes (401) are provided through the connecting plate (400). A positioning bolt (402) is provided in each threaded hole (401). The positioning bolt (402) is adapted to the threaded hole (401).
4. A conveniently installed high beam detector as described in claim 3, characterized in that: The support rod (103) is cylindrical in shape, and a grip (202) is provided on the upper part of the external threaded tube (200). The grip (202) is fixed on the outer wall of the support rod (103).
5. A conveniently installed high beam detector as described in claim 4, characterized in that: The surface of the grip (202) is provided with several protrusions (203).
6. A conveniently installed high beam detector as described in claim 5, characterized in that: A clamp (500) is provided on the upper part of the outer wall of the support rod (103). A clamping block (501) is provided on the side of the clamp (500) near the monitoring end of the high beam monitor (100). The clamping block (501) is U-shaped. A supplementary light (502) is provided on the side of the clamping block (501) away from the clamp (500).