Road geological radar detection device

By using threaded assembly of the mounting bracket assembly and the chassis assembly, the problem of combining and assembling the detection antenna device was solved, enabling convenient assembly and height adjustment, and improving assembly efficiency and stability.

CN223757676UActive Publication Date: 2026-01-02HENAN PINGYUAN EXPRESSWAY CO LTD
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Patent Information

Application Number
CN202520317830.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-02
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

The main body of the detection antenna of some highway geological radar detection devices is a non-standard frame structure, which makes it inconvenient to assemble.

Method used

The assembly of the detection antenna device and its height adjustment are achieved by using an assembly frame assembly and a vehicle frame assembly, with external studs for threaded assembly.

Benefits of technology

It facilitates the assembly of the detection antenna device and the adjustment of the bottom height, thus improving the assembly speed and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of road geology detection, in particular to a road geology radar detection device which comprises an assembly frame assembly, a radar detection assembly and a frame assembly, and in order to improve the assembly rate and the installation stability of a detection antenna device, an auxiliary positioning piece is installed on the detection antenna device. The two adjacent buckle plates are subjected to threaded assembly limiting through an external stud, the external stud folding frame and the limiting plate are subjected to threaded assembly, the interior of the inclined plate and the interior of the trapezoidal table are subjected to threaded assembly through the external stud, and the assembling stud is manually rotated, so that the assembling stud and the column block move leftwards, and the column block slides in the column barrel; by means of the arrangement, the detection antenna device can be conveniently combined and assembled through the device body, and the height between the bottom of the detection antenna device and the bottom face of a road can be adjusted through the device body.
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Description

TECHNICAL FIELD

[0001] The utility model relates to highway geological detection technical field, concretely is a highway geological radar detection device. BACKGROUND

[0002] The geological problems of highway road generally include cavity, loose and the like, in order to guarantee the safe and smooth operation of city infrastructure, eliminate the safety hidden danger of city highway, need to carry out geological detection to highway regularly, take the highway geological radar detection device installed with vehicle as an example.

[0003] The detection antenna device main body of part highway geological radar detection device is non-standard frame body type structure, makes the device main body not convenient to combine the assembly of detection antenna device, therefore, aiming at above -mentioned problem proposes a highway geological radar detection device. UTILITY MODEL CONTENT

[0004] The utility model discloses a highway geological radar detection device, and the detection antenna device main body of part highway geological radar detection device is non-standard frame body type structure, makes the device main body not convenient to combine the assembly of detection antenna device.

[0005] In order to realize above -mentioned purpose, the utility model provides the following technical scheme:

[0006] A highway geological radar detection device, including assembly frame subassembly, radar detection subassembly and frame subassembly, radar detection subassembly is arranged at the left side of assembly frame subassembly, frame subassembly is arranged at the right side of assembly frame subassembly, the assembly frame subassembly includes base disc, stand, limit board, sleeve, trapezoidal board, plug rod, buffer spring, strip, trapezoidal table, assembly stud, column block, cylinder and pasting board, the top of base disc is fixedly provided with stand, limit board and sleeve, the top of sleeve is in contact with trapezoidal board, the bottom of trapezoidal board is fixedly provided with plug rod, plug rod is slidably arranged in sleeve, buffer spring is fixedly arranged between the top of base disc and the bottom of trapezoidal board, the left end of trapezoidal board is fixedly provided with strip, the top of strip is fixedly provided with trapezoidal table, the inside of stand is threadedly assembled with assembly stud, the left end of assembly stud is fixedly provided with column block, column block is slidably arranged in cylinder, the left end of cylinder is fixedly provided with pasting board, the upper inclined surface of cylinder is in contact with the lower right inclined surface of trapezoidal board, radar detection subassembly includes detection antenna device, buckle and inclined plate, two buckle are symmetrically arranged at the top left side and the top right side of detection antenna device, the inside of buckle is in contact with the top of detection antenna device, the lower fixed setting of buckle has inclined plate.

[0007] Preferably, the frame assembly includes a folding frame, a carrier plate, and a battery assembly. The folding frame is welded and fixedly mounted on the highway inspection vehicle. The carrier plate is fixedly mounted on the top of the folding frame, and the battery assembly is threadedly assembled inside the top of the carrier plate using external studs.

[0008] Preferably, two adjacent buckle plates are threaded together using external studs.

[0009] Preferably, the interior of the inclined plate and the interior of the trapezoidal platform are assembled using external studs.

[0010] Preferably, the folding frame and the limiting plate are connected by external studs for threaded assembly.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] In this invention, external studs are used to thread and limit the connection between two adjacent fasteners. External studs are also used to thread and limit the connection between the folding frame and the limiting plate. External studs are also used to thread and limit the connection between the inclined plate and the trapezoidal platform. By manually rotating the assembly studs, the assembly studs and the column block move to the left, and the column block slides inside the column cylinder until the left end of the column block abuts against the pressing plate. The pressing plate then abuts against the trapezoidal plate, and the trapezoidal plate moves upward. With the above configuration, the main body of the device facilitates the assembly of the detection antenna device, and the height of the bottom of the detection antenna device relative to the road surface can be adjusted. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a structural schematic diagram of the assembly frame assembly of this utility model;

[0015] Figure 3 This is a schematic cross-sectional view of some components of the assembly frame assembly of this utility model;

[0016] Figure 4 This utility model Figure 3 A magnified structural diagram at point A;

[0017] Figure 5 This is a schematic diagram of the radar detection component of this utility model;

[0018] Figure 6 This utility model Figure 5 A magnified structural diagram at point B;

[0019] Figure 7 This is a schematic diagram showing the internal components of the radar detection component of this utility model.

[0020] Figure 8 It is a structural schematic view of the utility model vehicle frame assembly.

[0021] In the figure: 1, assembly frame assembly; 101, base disc; 102, vertical plate; 103, limiting plate; 104, sleeve; 105, trapezoidal plate; 106, plug rod; 107, buffer spring; 108, strip plate; 109, trapezoidal table; 110, assembly stud; 111, column block; 112, column cylinder; 113, pasting plate; 2, radar detection assembly; 21, detection antenna device; 22, buckle plate; 23, inclined plate; 3, vehicle frame assembly; 31, folding frame; 32, carrier disc; 33, battery assembly. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.

[0023] As Figures 1-8 shown, a highway geological radar detection device, including assembly frame assembly 1, radar detection assembly 2 and vehicle frame assembly 3, assembly frame assembly 1 left side is provided with radar detection assembly 2, and assembly frame assembly 1 right side is provided with vehicle frame assembly 3, and assembly frame assembly 1 includes base disc 101, vertical plate 102, limiting plate 103, sleeve 104, trapezoidal plate 105, plug rod 106, buffer spring 107, strip plate 108, trapezoidal table 109, assembly stud 110, column block 111, column cylinder 112 and pasting plate 113, and the top of base disc 101 is fixedly provided with vertical plate 102, limiting plate 103 and sleeve 104, and the top of sleeve 104 is in contact with trapezoidal plate 105, and the bottom of trapezoidal plate 105 is fixedly provided with plug rod 106, and plug rod 106 is slidably arranged in sleeve 104, and the top of base disc 101 and the bottom of trapezoidal plate 105 are fixedly provided with buffer spring 107, and the left end of trapezoidal plate 105 is fixedly provided with strip plate 108, and the top of strip plate 108 is fixedly provided with trapezoidal table 109, and the inside of vertical plate 102 is threadedly assembled with assembly stud 110, and the left end of assembly stud 110 is fixedly provided with column block 111, and column block 111 is slidably arranged in column cylinder 112, and the left end of column cylinder 112 is fixedly provided with pasting plate 113, and the upper inclined surface of column cylinder 112 is in contact with the lower right inclined surface of trapezoidal plate 105, and radar detection assembly 2 includes detection antenna device 21, buckle plate 22 and inclined plate 23, and the top left side and the top right side of detection antenna device 21 are symmetrically provided with two buckle plates 22, and the inside of buckle plate 22 is in contact with the top of detection antenna device 21, and the lower side of buckle plate 22 is fixedly provided with inclined plate 23.

[0024] The frame assembly 3 comprises a folding frame 31, a loading plate 32 and a battery assembly 33, the folding frame 31 is fixedly arranged on the highway detection vehicle, the loading plate 32 is fixedly arranged at the top of the folding frame 31, and the battery assembly 33 is screw-assembled in the inner top of the loading plate 32 through external studs, through the above arrangement, the frame assembly 3 serves as a vehicle-mounted anchoring assembly and is used for mounting and positioning the battery assembly 33 and the assembly frame assembly 1.

[0025] The two buckling plates 22 arranged adjacent to each other are screw-assembled through external studs, through the above arrangement, the overall assembly structure of the radar detection assembly 2 is formed.

[0026] The inner inclined plate 23 and the inner trapezoidal table 109 are screw-assembled through external studs, through the above arrangement, the radar detection assembly 2 and the assembly frame assembly 1 are conveniently combined and mounted.

[0027] The folding frame 31 and the limiting plate 103 are screw-assembled through external studs, through the above arrangement, the frame assembly 3 and the assembly frame assembly 1 are conveniently combined and mounted.

[0028] Workflow: The utility model provides a kind of highway geological radar detection device suitable for vehicle-mounted installation, device main part is convenient to the combination assembly of detection antenna device 21, and device main part can adjust the height of the bottom of detection antenna device 21 and highway bottom surface.

[0029] Detection antenna device 21, battery assembly 33 and radar detection display controller are electrically connected in the device, two radar detection assemblies 2 are arranged in the device, one detection antenna device 21 emits radar waves, and the other detection antenna device 21 receives reflected waves, when there are cavities, loose geological problems in the highway bottom surface, the data of detection antenna device 21 received by external radar detection display will change obviously, which is used for detecting cavities, loose geological problems in the highway bottom surface.

[0030] In order to improve the assembly rate and installation stability of detection antenna device 21, an auxiliary positioning member is arranged on detection antenna device 21, two buckling plates 22 are symmetrically arranged on the top left side and the top right side of detection antenna device 21, and the two buckling plates 22 arranged adjacent to each other are screw-assembled through external studs, to form a radar detection assembly 2.

[0031] The threaded assembly between the outer stud and the folding frame 31 and the limiting plate 103 is used for the combined installation and positioning of the assembled frame assembly 1 and the frame assembly 3, the radar detection assembly 2 is placed downward, so that the inclined surface below the inclined plate 23 is in contact with the inclined surface of the trapezoidal table 109, the threaded assembly of the inner inclined plate 23 and the inner trapezoidal table 109 is carried out through the outer stud, and the device main body is convenient for the combined assembly of the detection antenna device 21 used on the vehicle.

[0032] The manual rotation assembly stud 110 is moved to the left due to the threaded assembly of the inner vertical plate 102 and the assembly stud 110, the column block 111 is slid in the inner column cylinder 112 until the left end of the column block 111 abuts against and presses the abutting plate 113, the abutting plate 113 abuts against and presses the trapezoidal plate 105, the trapezoidal plate 105 is moved upward, the insertion rod 106 is slid in the inner sleeve 104, and the buffer spring 107 is in a stretched state and can adjust the height between the bottom of the detection antenna device 21 and the road surface.

[0033] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A highway geological radar detection device, comprising an assembly frame component (1), a radar detection component (2) and a vehicle frame component (3), characterized in that: The assembly frame assembly (1) is provided with a radar detection assembly (2) on the left side, and a frame assembly (3) is arranged on the right side of the assembly frame assembly (1), the assembly frame assembly (1) comprises a base disc (101), a vertical plate (102), a limiting plate (103), a sleeve (104), a trapezoidal plate (105), a plug rod (106), a buffer spring (107), a strip plate (108), a trapezoidal table (109), an assembly stud (110), a column block (111), a column cylinder (112) and a paste plate (113), the top end of the base disc (101) is fixedly provided with the vertical plate (102), the limiting plate (103) and the sleeve (104), the top end of the sleeve (104) is in contact with the trapezoidal plate (105), the bottom end of the trapezoidal plate (105) is fixedly provided with the plug rod (106), the plug rod (106) is slidably arranged in the sleeve (104), the buffer spring (107) is fixedly arranged between the top end of the base disc (101) and the bottom end of the trapezoidal plate (105), the left end of the trapezoidal plate (105) is fixedly provided with the strip plate (108), the top end of the strip plate (108) is fixedly provided with the trapezoidal table (109), the vertical plate (102) is threadedly assembled with the assembly stud (110), the left end of the assembly stud (110) is fixedly provided with the column block (111), the column block (111) is slidably arranged in the column cylinder (112), the left end of the column cylinder (112) is fixedly provided with the paste plate (113), the upper inclined surface of the column cylinder (112) is in contact with the lower right inclined surface of the trapezoidal plate (105), the radar detection assembly (2) comprises a detection antenna device (21), a buckle plate (22) and an inclined plate (23), two buckle plates (22) are symmetrically arranged on the top left side and the top right side of the detection antenna device (21), the buckle plate (22) is in contact with the top of the detection antenna device (21), and the buckle plate (22) is fixedly provided with the inclined plate (23) below.

2. The highway geological radar detection device according to claim 1, characterized in that: The frame assembly (3) comprises a folding frame (31), a carrier disc (32) and a battery assembly (33), the folding frame (31) is welded and fixedly arranged on the highway detection vehicle, the top end of the folding frame (31) is fixedly provided with the carrier disc (32), and the battery assembly (33) is threadedly assembled in the top end of the carrier disc (32) through external studs.

3. The highway geological radar detection device according to claim 1, characterized in that: Two adjacent buckle plates (22) are threadedly assembled through external studs.

4. The highway geological radar detection device according to claim 1, characterized in that: The inclined plate (23) and the trapezoidal table (109) are threadedly assembled through external studs.

5. The highway geological radar detection device according to claim 2, characterized in that: The folding frame (31) and the limiting plate (103) are threadedly assembled through external studs.