Waterproof shell of multifunctional laser detection comprehensive rod
By setting the design of the butt sealing assembly and the cap assembly on the inner side of the maintenance port of the laser warning column, the problem of rainwater leakage is solved and the waterproof effect of the laser warning column shell is achieved.
Patent Information
- Application Number
- CN202421482748.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The maintenance port of the laser warning column causes rainwater leakage due to gaps, which affects the safety of electrical components inside the housing.
A waterproof shell of a multifunctional laser detection integrated rod is designed. By setting a docking sealing component inside the maintenance port of the column shell, combining the triangle cover plate, rectangular butt frame and docking groove of the cover assembly, the sealing installation between the cover assembly and the column shell is realized, and rainwater accumulation is avoided through the sink structure.
It realizes rapid installation of the cover assembly and column shell and good sealing effect, avoids rainwater leakage and improves the waterproof performance of the shell structure.
Smart Images

Figure CN222834780U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laser warning poles, in particular to a waterproof shell of a multifunctional laser detection integrated pole. Background Art
[0002] The laser warning post detects pedestrians through lasers. The moment a pedestrian enters the zebra crossing, the warning post projects multiple red laser lines onto the pedestrian's legs, forming a red area projection, which effectively reminds car drivers to drive safely, allows pedestrians to cross the road safely, and reduces the occurrence of accidents.
[0003] In order to facilitate later maintenance, the shell structure of the laser warning column will reserve a corresponding maintenance port. Under normal circumstances, the maintenance port is blocked by an maintenance door. The gap between the maintenance door and the maintenance port can easily cause rainwater leakage, which is not conducive to the safe use of electrical components inside the shell. Based on this, a waterproof shell of a multifunctional laser detection integrated pole is provided. Utility Model Content
[0004] The purpose of the utility model is to provide a waterproof shell of a multifunctional laser detection integrated rod in order to solve the problems in the above background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a waterproof shell of a multifunctional laser detection integrated pole, comprising a warning column shell composed of a column shell, a laser emitter mounting port, a laser radar detector mounting hole, and a warning light mounting port, and a cover assembly, wherein the laser emitter mounting port and the laser radar detector mounting hole are respectively opened on the vertical end faces of the column shell, and the warning light mounting port is opened on the top of the column shell, and a vertical end face of the column shell away from the laser emitter mounting port and the laser radar detector mounting hole is formed with an inspection port, and a docking sealing assembly is arranged on the inner side of the inspection port, and the docking sealing assembly is used to realize the sealed installation of the cover assembly and the warning column shell;
[0006] The cover assembly includes a triangular cover plate, a rectangular docking frame, and a docking groove, wherein the rectangular docking frame is fixed to one end of the triangular cover plate, and the docking groove is provided on the inner side of the vertical portion of the rectangular docking frame;
[0007] The docking sealing assembly includes a rectangular fixing frame, a top straight groove, a side lifting groove, a connecting rod, a top clamping block, a side clamping block, and a rectangular sealing pad;
[0008] The rectangular fixed frame is fixed to the inner side of the inspection opening, the top straight groove is opened at the top of the rectangular fixed frame, the side lifting groove is opened at the side of the rectangular fixed frame, and the top straight groove and the side lifting groove penetrate to the inner side of the rectangular fixed frame;
[0009] The connecting rods are symmetrically distributed inside the rectangular fixing frame, the top clamping blocks are fixed to the tops of the two connecting rods and received inside the top straight grooves, and the side clamping blocks are fixed to one side of the connecting rods and pass through the side lifting grooves to the outside of the rectangular fixing frame;
[0010] The rectangular docking frame is sleeved on the outside of the rectangular fixed frame by aligning the docking groove with the side clamping block, and the connecting rod, the top clamping block and the side clamping block are moved upward as a whole, so that the top clamping block is clamped into the top of the inner side of the rectangular docking frame and the side clamping block is misaligned with the docking groove, so as to realize the installation and fixation of the triangular cover plate;
[0011] The rectangular sealing gasket is sleeved on the outside of the rectangular fixing frame, and the triangular cover plate is squeezed by the rectangular docking frame to deform the rectangular sealing gasket to achieve sealing between the triangular cover plate and the column shell.
[0012] As a further solution of the utility model: the side lifting grooves, side clamping blocks and docking grooves are arranged in multiple in the vertical direction and the positions and quantities correspond one to one, the wall thickness of the rectangular docking frame is greater than the gap between the side clamping block and the rectangular sealing gasket, and the top of the top clamping block and the top of the side clamping block are both arc-shaped structures.
[0013] As a further solution of the utility model: the inner wall size of the rectangular docking frame matches the outer wall size of the rectangular fixed frame, the height of the triangular cover plate matches the inner wall height of the inspection port, and the triangular cover plate and the column shell as a whole present a polygonal columnar structure.
[0014] As a further solution of the utility model: a first drainage groove is formed on the bottom of the inner wall of the inspection opening, and a second drainage groove is formed on the top of the triangular cover plate.
[0015] As a further solution of the utility model: a mounting hole is formed at one end of the triangular cover plate away from the column shell, and the mounting hole is used to install a lock body structure, and the lock body structure is used to provide an upward extrusion force to the top clamping block.
[0016] Compared with the prior art, the beneficial effects of the utility model are:
[0017] By setting up a docking sealing assembly, the cover assembly and the column shell can be quickly installed and a good sealing effect can be maintained. By setting up the first drainage groove and the second drainage groove, rainwater can be avoided from accumulating in the gap between the triangular cover plate and the inspection port, thereby further improving the waterproof effect of the shell structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the utility model;
[0019] Figure 2 This is a structural distribution diagram of the docking seal assembly of the utility model;
[0020] Figure 3 It is a schematic diagram of the internal structure of the utility model;
[0021] Figure 4 It is a sectional exploded view of the present utility model.
[0022] In the figure: 1. Warning column shell; 101. Column shell; 102. Laser transmitter mounting port; 103. LiDAR detector mounting hole; 104. Warning light mounting port; 105. Inspection port; 106. First drainage groove; 2. Cover assembly; 201. Triangular cover plate; 202. Rectangular docking frame; 203. Docking groove; 204. Mounting hole; 205. Second drainage groove; 3. Docking sealing assembly; 301. Rectangular fixing frame; 302. Top straight groove; 303. Side lifting groove; 304. Connecting rod; 305. Top clamping block; 306. Side clamping block; 307. Rectangular sealing gasket. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0024] See also Figures 1 to 4 In the embodiment of the utility model, a waterproof shell of a multifunctional laser detection integrated pole includes a warning column shell 1 composed of a column shell 101, a laser emitter installation port 102, a laser radar detector installation hole 103, and a warning light installation port 104, and a cover assembly 2. The laser emitter installation port 102 and the laser radar detector installation hole 103 are respectively opened on the vertical end faces of the column shell 101, and the warning light installation port 104 is opened on the top of the column shell 101. A vertical end face of the column shell 101 away from the laser emitter installation port 102 and the laser radar detector installation hole 103 is formed with an inspection port 105, and a docking sealing assembly 3 is arranged on the inner side of the inspection port 105. The docking sealing assembly 3 is used to realize the sealing installation of the cover assembly 2 and the warning column shell 1;
[0025] The cover assembly 2 includes a triangular cover plate 201, a rectangular docking frame 202, and a docking groove 203. The rectangular docking frame 202 is fixed to one end of the triangular cover plate 201, and the docking groove 203 is provided inside the vertical portion of the rectangular docking frame 202.
[0026] The docking sealing assembly 3 includes a rectangular fixing frame 301, a top straight groove 302, a side lifting groove 303, a connecting rod 304, a top clamping block 305, a side clamping block 306, and a rectangular sealing pad 307;
[0027] The rectangular fixed frame 301 is fixed to the inner side of the inspection opening 105, the top straight groove 302 is opened at the top of the rectangular fixed frame 301, and the side lifting groove 303 is opened at the side of the rectangular fixed frame 301, and the top straight groove 302 and the side lifting groove 303 penetrate to the inner side of the rectangular fixed frame 301;
[0028] The connecting rods 304 are symmetrically distributed inside the rectangular fixed frame 301, the top clamping block 305 is fixed to the top of the two connecting rods 304 and received inside the top straight groove 302, and the side clamping block 306 is fixed to one side of the connecting rod 304 and passes through the side lifting groove 303 to the outside of the rectangular fixed frame 301;
[0029] The rectangular docking frame 202 is sleeved on the outside of the rectangular fixed frame 301 by aligning the docking groove 203 with the side clamping block 306. The connecting rod 304, the top clamping block 305 and the side clamping block 306 are moved upward as a whole, so that the top clamping block 305 is clamped into the top of the inner side of the rectangular docking frame 202 and the side clamping block 306 is misaligned with the docking groove 203, so that the triangular cover plate 201 is installed and fixed;
[0030] The rectangular sealing gasket 307 is sleeved on the outside of the rectangular fixing frame 301, and the triangular cover plate 201 is squeezed by the rectangular docking frame 202 to deform the rectangular sealing gasket 307 to achieve sealing between the triangular cover plate 201 and the column housing 101;
[0031] An installation hole 204 is formed at one end of the triangular cover plate 201 away from the column housing 101 . The installation hole 204 is used to install a lock body structure, and the lock body structure is used to provide an upward extrusion force to the top clamping block 305 .
[0032] In this embodiment: It should be supplemented that: the laser emitter installation port 102, the laser radar detector installation hole 103, and the warning light installation port 104 are used to provide installation positions for the laser emitter, the laser radar detector, and the warning light, respectively, and corresponding seals will be installed during installation to ensure the sealing of the installation location;
[0033] When installing the cover assembly 2, the operating steps are as follows:
[0034] Align the docking groove 203 on the rectangular docking frame 202 with the side clamping block 306 and push it horizontally into the inner side of the inspection port 105. At this time, the rectangular docking frame 202 will be sleeved on the outer side of the rectangular fixed frame 301 and fit with the end surface of the rectangular sealing gasket 307;
[0035] Afterwards, the lock body structure installed in the mounting hole 204 is operated (it should be noted that: a corresponding sealing member is also provided between the mounting hole 204 and the lock body structure), and the lock body structure is provided with an extrusion block at one end of the inner side of the column housing 101, and the top clamping block 305 is squeezed upward by rotating the extrusion block to move it upward, and the top clamping block 305 is clamped upward into the inner side of the top of the rectangular docking frame 202, and at the same time, the top clamping block 305 drives the side clamping block 306 to move upward synchronously through the connecting rod 304, so that the side clamping block 306 is clamped into the inner side of the side of the rectangular docking frame 202, and at this time, the side clamping block 306 is misaligned with the docking groove 203, so that the installation and fixation of the triangular cover plate 201 is achieved;
[0036] At the same time, in the process of the top clamping block 305 and the side clamping block 306 moving upward, the top clamping block 305 and the side clamping block 306 will give an extrusion force to the rectangular docking frame 202, and this extrusion force causes the rectangular docking frame 202 to move toward the rectangular sealing gasket 307, so that the rectangular sealing gasket 307 is deformed under force to fill the gap between the rectangular docking frame 202 and the column shell 101, thereby achieving a good sealing operation between the cover assembly 2 and the column shell 101.
[0037] Please refer to Figures 1 to 4 , the side lifting grooves 303, the side clamping blocks 306 and the docking grooves 203 are provided in a plurality in the vertical direction and the positions and the numbers correspond one to one, the wall thickness of the rectangular docking frame 202 is greater than the gap between the side clamping blocks 306 and the rectangular sealing gasket 307, and the tops of the top clamping blocks 305 and the side clamping blocks 306 are both in an arc structure;
[0038] The inner wall size of the rectangular docking frame 202 matches the outer wall size of the rectangular fixing frame 301 , the height of the triangular cover plate 201 matches the inner wall height of the inspection opening 105 , and the triangular cover plate 201 and the column housing 101 are integrally formed into a polygonal columnar structure.
[0039] In this embodiment: multiple sets of side lifting grooves 303, side clamping blocks 306, and docking grooves 203 are used to provide sufficient clamping force for the triangular cover plate 201. At the same time, the top clamping block 305 and the top of the side clamping block 306 are all arc-shaped structures, so that when the top clamping block 305 and the side clamping block 306 contact the rectangular docking frame 202, a horizontal thrust will be slowly given to the rectangular docking frame 202, thereby providing power for the rectangular docking frame 202 to squeeze the rectangular sealing pad 307;
[0040] By matching the height of the triangular cover plate 201 with the height of the inner wall of the inspection opening 105 , the triangular cover plate 201 can be kept stable during the upward movement of the top clamping block 305 and the side clamping block 306 .
[0041] Please refer to Figures 1 to 4 A first drainage groove 106 is formed at the bottom of the inner wall of the inspection opening 105 , and a second drainage groove 205 is formed at the top of the triangular cover plate 201 .
[0042] In this embodiment: the second drainage groove 205 can provide an external drainage channel for rainwater that has penetrated into the gap between the top of the triangular cover plate 201 and the top of the inspection port 105, and the first drainage groove 106 can provide an external drainage channel for rainwater that has penetrated into the gap between the bottom of the triangular cover plate 201 and the bottom of the inspection port 105, thereby effectively avoiding the accumulation of rainwater inside the inspection port 105.
[0043] What is described above is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A waterproof housing of a multifunctional laser detection integrated pole, comprising a warning column shell (1) consisting of a column shell (101), a laser emitter mounting port (102), a laser radar detector mounting hole (103), and a warning light mounting port (104), and a cover assembly (2), wherein the laser emitter mounting port (102) and the laser radar detector mounting hole (103) are respectively opened on the vertical end faces of the column shell (101), the warning light mounting port (104) is opened on the top of the column shell (101), and a vertical end face of the column shell (101) away from the laser emitter mounting port (102) and the laser radar detector mounting hole (103) is formed with an inspection port (105), characterized in that: A docking sealing assembly (3) is provided on the inner side of the inspection opening (105), and the docking sealing assembly (3) is used to achieve sealed installation of the sealing cover assembly (2) and the warning column housing (1); The cover assembly (2) comprises a triangular cover plate (201), a rectangular docking frame (202), and a docking groove (203); the rectangular docking frame (202) is fixed to one end of the triangular cover plate (201), and the docking groove (203) is arranged on the inner side of the vertical portion of the rectangular docking frame (202); The docking sealing assembly (3) comprises a rectangular fixing frame (301), a top straight groove (302), a side lifting groove (303), a connecting rod (304), a top clamping block (305), a side clamping block (306), and a rectangular sealing pad (307); The rectangular fixed frame (301) is fixed to the inner side of the inspection opening (105), the top straight groove (302) is opened at the top of the rectangular fixed frame (301), the side lifting groove (303) is opened at the side of the rectangular fixed frame (301), and the top straight groove (302) and the side lifting groove (303) penetrate to the inner side of the rectangular fixed frame (301); The connecting rods (304) are symmetrically distributed inside the rectangular fixed frame (301); the top clamping block (305) is fixed to the tops of the two connecting rods (304) and received inside the top straight groove (302); the side clamping block (306) is fixed to one side of the connecting rod (304) and passes through the side lifting groove (303) to the outside of the rectangular fixed frame (301); The rectangular docking frame (202) is sleeved on the outside of the rectangular fixed frame (301) by aligning the docking groove (203) with the side clamping block (306), and the connecting rod (304), the top clamping block (305), and the side clamping block (306) are moved upward as a whole, so that the top clamping block (305) is clamped into the top of the inner side of the rectangular docking frame (202) and the side clamping block (306) is misaligned with the docking groove (203), thereby achieving installation and fixation of the triangular cover plate (201); The rectangular sealing gasket (307) is sleeved on the outside of the rectangular fixing frame (301), and the triangular cover plate (201) is squeezed by the rectangular docking frame (202) to deform the rectangular sealing gasket (307) to achieve sealing between the triangular cover plate (201) and the column housing (101).
2. The waterproof housing of a multifunctional laser detection integrated pole according to claim 1 is characterized in that: The side lifting groove (303), the side clamping block (306) and the docking groove (203) are arranged in a plurality in the vertical direction, and the positions and the numbers correspond one to one. The wall thickness of the rectangular docking frame (202) is greater than the gap between the side clamping block (306) and the rectangular sealing gasket (307), and the tops of the top clamping block (305) and the side clamping block (306) are both in an arc structure.
3. The waterproof housing of a multifunctional laser detection integrated pole according to claim 1 is characterized in that: The inner wall size of the rectangular docking frame (202) matches the outer wall size of the rectangular fixing frame (301), the height of the triangular cover plate (201) matches the inner wall height of the inspection opening (105), and the triangular cover plate (201) and the column housing (101) are integrally formed into a polygonal columnar structure.
4. The waterproof housing of a multifunctional laser detection integrated pole according to claim 1 is characterized in that: A first drainage groove (106) is formed at the bottom of the inner wall of the inspection opening (105), and a second drainage groove (205) is formed at the top of the triangular cover plate (201).
5. The waterproof housing of a multifunctional laser detection integrated pole according to claim 1 is characterized in that: An installation hole (204) is formed at one end of the triangular cover plate (201) away from the column housing (101), and the installation hole (204) is used to install a lock body structure, and the lock body structure is used to provide an upward extrusion force to the top clamping block (305).