Landform information acquisition device

By designing a geomorphological information acquisition device that includes a frame, acquisition components, adjustment components, buffer components, and limiting components, the problem of ground-penetrating radar swaying on uneven ground was solved, and the stability of the acquisition components and reliable reception of electromagnetic wave signals were achieved.

CN224018121UActive Publication Date: 2026-03-20ZHEJIANG LAND INFORMATION CENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Ground-penetrating radar is prone to shaking during movement due to uneven ground, which affects the transmission and reception of electromagnetic waves, and existing technologies have not been able to effectively solve this problem.

Method used

A terrain information acquisition device was designed, comprising a frame, an acquisition component, an adjustment component, a buffer component, and a limiting component. The height of the buffer component is adjusted by the adjustment component, and the buffer spring and support wheel of the buffer component are used to prevent shaking and ensure the stability of the acquisition component.

Benefits of technology

This effectively avoids the shaking caused by uneven ground during the movement of the ground-penetrating radar, and improves the stability of the acquisition components and the reception effect of electromagnetic wave signals.

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Abstract

The utility model discloses a landform information acquisition device, and relates to the technical field of information acquisition. The device comprises a frame body, wherein a collecting assembly, an adjusting assembly, a buffering assembly and a limiting assembly are respectively arranged on the frame body; the bottom end of the acquisition assembly is fixedly mounted with the top end of the frame body, so that the frame body drives the acquisition assembly to perform information acquisition; the moving end of the adjusting assembly and the top end of the buffering assembly are fixedly mounted, so that the adjusting assembly adjusts the height of the buffering assembly; the adjusting assembly is rotated to drive the buffering assembly installed at the bottom end of the adjusting assembly to move, so that the adjusting assembly can drive the frame body to be away from the ground, the distance between the collecting assembly and the ground can be increased, and collision in the moving process is avoided; the collecting assembly can move upwards, generated shaking is buffered, and therefore the stability of the collecting assembly in the working process is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to information collection technical field, specifically, especially relate to a geomorphologic information collection device. BACKGROUND

[0002] There are various types of geomorphologic information collection equipment, and different equipment has its own characteristics in principle, function and application scene, and geomorphologic information collection has important application in geological exploration, city planning, agricultural production, disaster prevention and other fields, and can provide basic data and decision support for related work.

[0003] In municipal engineering, geological radar is generally used to detect underground cavities, pipelines, geological structures and other objects by transmitting and receiving high-frequency electromagnetic waves according to the reflection of electromagnetic waves in underground medium.

[0004] In actual use, the distance between the geological radar and the ground needs to be adjusted according to the flatness of the ground, and the geological radar needs to be prevented from shaking during movement. Because there are many stones and impurities of different sizes on the ground, the geological radar is easy to shake when rolling the stones and impurities during movement, which affects the transmission and reception of electromagnetic waves.

[0005] At present, no effective solution has been proposed for the problems in the related art. CONTENT OF THE UTILITY MODEL

[0006] In view of the problems in the related art, the utility model provides a geomorphologic information collection device to overcome the above technical problems existing in the prior art.

[0007] To solve the above technical problems, the utility model is realized by the following technical scheme:

[0008] The utility model is a geomorphologic information collection device, which comprises a frame body:

[0009] The frame body is respectively provided with a collection assembly, an adjusting assembly, a buffer assembly and a limiting assembly;

[0010] The bottom end of the collection assembly is fixedly installed with the top end of the frame body, so that the frame body drives the collection assembly to collect information;

[0011] The moving end of the adjusting assembly is fixedly installed with the top end of the buffer assembly, so that the adjusting assembly adjusts the height of the buffer assembly;

[0012] One side of the limiting assembly is fixedly connected with one side of the buffer assembly, so that the limiting assembly limits the moving direction of the buffer assembly.

[0013] Further, the collecting assembly comprises a fixing frame, the bottom end of the fixing frame is fixedly installed with the top end of the frame body, and the bottom end of the fixing frame is fixedly installed with a ground penetrating radar.

[0014] Further, the adjusting assembly comprises a mounting frame, the bottom end of the mounting frame is fixedly installed with the top end of the frame body, the top end of the mounting frame is fixedly installed with a threaded seat, the inside of the threaded seat is threadedly connected with a threaded rod, the top end of the threaded rod is fixedly connected with a handle, and the bottom end of the threaded rod is rotatably installed with a rotating seat.

[0015] Further, the buffering assembly comprises a U-shaped frame, the top end of the U-shaped frame is fixedly installed with the bottom end of the rotating seat, the inside top end of the U-shaped frame is fixedly connected with a limiting rod, the outer surface of the limiting rod is slidably provided with a connecting barrel, the top end of the connecting barrel is fixedly connected with a limiting disc, and the top end of the limiting disc is fixedly connected with a buffering spring.

[0016] Further, the buffering assembly further comprises a mounting block, the top end of the mounting block is fixedly connected with the bottom end of the connecting barrel, one side of the mounting block is rotatably connected with a supporting shaft, and the outer surface of the supporting shaft is fixedly installed with a supporting wheel.

[0017] Further, the limiting assembly comprises a sliding rod, both ends of the sliding rod are fixedly connected with the inside of the mounting frame, the outer surface of the sliding rod is slidably provided with a sliding block, and one side of the sliding block is fixedly connected with one side of the U-shaped frame.

[0018] Further, the inside of the U-shaped frame is provided with a limiting groove, the inside of the limiting groove is slidably provided with a limiting block, and one side of the limiting block is fixedly connected with the outer surface of the connecting barrel.

[0019] The utility model has the following beneficial effects:

[0020] 1、 the utility model discloses a rotating adjusting assembly moves the buffering assembly installed at the bottom end of the adjusting assembly to make the frame body away from the ground, thereby increasing the distance between the collecting assembly and the ground, avoiding bumping during movement, and when the buffering assembly encounters impurities such as stones during movement, the buffering assembly can move upwards to buffer the generated shaking, thereby ensuring the stability of the collecting assembly during operation.

[0021] 2, the utility model discloses a rotation handle drives the fixed threaded rod at bottom to move down to rotate to make it cooperate with the rotation seat and drive the U -shaped frame installed at bottom to move, when U -shaped frame moves, can cooperate with buffer spring and drive limit disc to move to make it drive the fixed connecting cylinder at bottom to move, when connecting cylinder moves, can drive its fixed mounting block at bottom to move to make it cooperate with the support axle of one side rotation setting and drive support wheel to move down to be able to drive the frame body to be far away from ground to make the frame body cooperate with fixed frame and drive geological radar to be far away from ground to make it be applicable to different working environment.

[0022] Of course, it is not necessary to achieve all the advantages described above at the same time to implement any product of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical scheme of the utility model embodiment, the following will be needed to use the drawing described simply introduces, obviously, the following description in the drawing is only some embodiments of the utility model, for those skilled in the art, under the premise of not paying creative labor, other drawings can also be obtained according to these drawings.

[0024] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0025] Figure 2 It is the structure schematic diagram under the rear view angle of the utility model;

[0026] Figure 3 It is the structure schematic diagram under the right view angle of the utility model;

[0027] Figure 4 It is the structure schematic diagram of the utility model Figure 3 It is the enlarged schematic diagram of the partial structure of A in the utility model;

[0028] Figure 5 It is the buffer assembly explosion schematic diagram of the utility model;

[0029] Figure 6 It is the structure schematic diagram of the utility model Figure 5 It is the enlarged schematic diagram of the partial structure of B in the utility model.

[0030] In the drawing, the component list represented by each sign is as follows:

[0031] 1, frame body; 2, acquisition assembly; 201, fixing frame; 202, geological radar; 3, adjusting assembly; 301, mounting frame; 302, threaded seat; 303, threaded rod; 304, handle; 305, rotating seat; 4, buffer assembly; 401, U-shaped frame; 402, limiting rod; 403, connecting barrel; 404, limiting disc; 405, buffer spring; 406, mounting block; 407, support shaft; 408, support wheel; 5, limiting assembly; 501, sliding rod; 502, sliding block; 6, limiting groove; 7, limiting block. DETAILED DESCRIPTION

[0032] The technical solutions in the utility model embodiments will be clearly and completely described below with reference to the drawings in the utility model embodiments. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0033] In the description of the utility model, it should be understood that the terms "opening", "upper", "lower", "top", "middle", "inner" and the like indicate the orientation or positional relationship, which are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the indicated components or elements must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the utility model.

[0034] Please refer to Figures 1-6 The utility model discloses a kind of topographic information acquisition devices, including frame body 1:

[0035] The frame body 1 is respectively provided with acquisition assembly 2, adjusting assembly 3, buffer assembly 4 and limiting assembly 5;

[0036] The bottom end of the acquisition assembly 2 is fixedly installed with the top end of the frame body 1, so that the frame body 1 drives acquisition assembly 2 to carry out information acquisition;

[0037] The moving end of the adjusting assembly 3 is fixedly installed with the top end of the buffer assembly 4, so that the adjusting assembly 3 adjusts the height of the buffer assembly 4;

[0038] One side of the limiting assembly 5 is fixedly connected with one side of the buffer assembly 4, so that the limiting assembly 5 limits the moving direction of the buffer assembly 4.

[0039] In use, by pushing the frame body 1, the adjusting assembly 3 is driven to move, so that the frame body 1 drives the collecting assembly 2 to collect information on the ground, when the road surface flatness is low, by rotating the adjusting assembly 3, the bottom end mounted buffer assembly 4 is driven to move, since one side of the buffer assembly 4 is fixedly connected with one side of the limiting assembly 5, when the buffer assembly 4 moves, it can move along the direction of the limiting assembly 5, and the frame body 1 can be driven away from the ground, so that the distance between the collecting assembly 2 and the ground can be increased, and bumping during movement can be avoided, and when the buffer assembly 4 encounters stones and impurities during movement, it can move upward to buffer the generated shaking, so that the stability of the collecting assembly 2 during work can be improved.

[0040] The utility model discloses a rotating adjusting assembly 3, and the bottom end mounted buffer assembly 4 is driven to move, so that the frame body 1 can be driven away from the ground, so that the distance between the collecting assembly 2 and the ground can be increased, and bumping during movement can be avoided, and when the buffer assembly 4 encounters stones and impurities during movement, it can move upward to buffer the generated shaking, so that the stability of the collecting assembly 2 during work can be improved.

[0041] In one embodiment, for the above-mentioned collecting assembly 2, the collecting assembly 2 comprises a fixing frame 201, the bottom end of the fixing frame 201 is fixedly installed with the top end of the frame body 1, and the bottom end of the fixing frame 201 is fixedly installed with a geological radar 202.

[0042] When the frame body 1 moves, the top end mounted fixing frame 201 can be driven to move, so that the bottom end mounted geological radar 202 is driven to move, so that underground information can be collected.

[0043] In one embodiment, for the above-mentioned adjusting assembly 3, the adjusting assembly 3 comprises an installation frame 301, the bottom end of the installation frame 301 is fixedly installed with the top end of the frame body 1, the top end of the installation frame 301 is fixedly installed with a threaded seat 302, the inside of the threaded seat 302 is threadedly connected with a threaded rod 303, the top end of the threaded rod 303 is fixedly connected with a handle 304, and the bottom end of the threaded rod 303 is rotatably installed with a rotating seat 305.

[0044] By rotating the handle 304, the bottom end fixed threaded rod 303 is driven to rotate, so that the threaded seat 302 threadedly connected with the threaded surface moves up and down, so that the bottom end rotatably installed rotating seat 305 can be driven to move, since the bottom end of the threaded seat 302 is fixedly installed with the top end of the installation frame 301, and the threaded rod 303 threadedly connected in the threaded seat 302 penetrates the inside of the installation frame 301, so that the threaded rod 303 can move in the inside of the installation frame 301.

[0045] In one embodiment, for the above-mentioned buffer assembly 4, the buffer assembly 4 comprises a U-shaped frame 401, the top end of the U-shaped frame 401 is fixedly installed with the bottom end of the rotating seat 305, the inner top end of the U-shaped frame 401 is fixedly connected with a limiting rod 402, the outer surface of the limiting rod 402 is slidingly provided with a connecting barrel 403, the top end of the connecting barrel 403 is fixedly connected with a limiting disc 404, and the top end of the limiting disc 404 is fixedly connected with a buffer spring 405.

[0046] The buffer assembly 4 further comprises a mounting block 406, the top end of the mounting block 406 is fixedly connected with the bottom end of the connecting barrel 403, one side of the mounting block 406 is rotatably connected with a supporting shaft 407, and the outer surface of the supporting shaft 407 is fixedly installed with a supporting wheel 408.

[0047] When the rotating seat 305 moves with the movement of the threaded rod 303, the U-shaped frame 401 installed at the bottom end thereof can be moved, since the inner side of the U-shaped frame 401 is fixedly connected with one end of the buffer spring 405, and the other end of the buffer spring 405 is fixedly connected with the top end of the limiting disc 404, when the U-shaped frame 401 moves, the limiting disc 404 can be moved in cooperation with the buffer spring 405, so as to drive the connecting barrel 403 fixedly installed at the bottom end to move, when the connecting barrel 403 moves, the mounting block 406 fixedly installed at the bottom end can be moved, so as to drive the supporting wheel 408 rotatably arranged at one side to move downward in cooperation with the supporting shaft 407, thereby enabling the frame body 1 to move away from the ground;

[0048] When the supporting wheel 408 rolls over stones and other sundries, the mounting block 406 can be moved upward in cooperation with the supporting shaft 407 installed inside, so as to drive the connecting barrel 403 to move upward, when the connecting barrel 403 moves upward, the limiting disc 404 can exert a force on the buffer spring 405, so as to buffer the impact force, thereby improving the stability of the landform information collecting device during use.

[0049] In one embodiment, for the above-mentioned limiting assembly 5, the limiting assembly 5 comprises a sliding rod 501, both ends of the sliding rod 501 are fixedly connected with the inner side of the mounting frame 301, and the outer surface of the sliding rod 501 is slidingly provided with a sliding block 502, one side of the sliding block 502 is fixedly connected with one side of the U-shaped frame 401.

[0050] When the U-shaped frame 401 moves with the movement of the rotating seat 305, the sliding block 502 fixed on one side thereof can be moved to move along the direction of the sliding rod 501 arranged inside, so as to limit the movement direction of the U-shaped frame 401, thereby improving the stability of the U-shaped frame 401 during movement.

[0051] In one embodiment, for the above-mentioned U-shaped frame 401, the inside of the U-shaped frame 401 is provided with a limiting groove 6, and the limiting block 7 is arranged to slide inside the limiting groove 6, and one side of the limiting block 7 is fixedly connected with the outer surface of the connecting cylinder 403.

[0052] When the connecting cylinder 403 moves with the movement of the mounting block 406, the limiting block 7 fixed on the outer surface thereof can be moved. Since the limiting block 7 is arranged in multiple groups and is arranged to slide inside the limiting groove 6, the limiting groove 6 can limit the limiting block 7, thereby avoiding rotation of the connecting cylinder 403 during movement, and further improving the stability of the topographic information acquisition device.

[0053] Through the above technical solution, 1, by rotating the adjusting assembly 3, the buffer assembly 4 installed at the bottom end thereof is moved, so that the frame body 1 can be moved away from the ground, thereby increasing the distance between the acquisition assembly 2 and the ground, avoiding bumping during movement, and when the buffer assembly 4 moves and encounters stones and impurities during movement, it can move upward to buffer the generated shaking, thereby ensuring the stability of the acquisition assembly 2 during work;

[0054] 2, by rotating the rotating handle 304 to drive the threaded rod 303 fixed at the bottom end to rotate downward, so as to cooperate with the rotating seat 305 to drive the U-shaped frame 401 installed at the bottom end to move, when the U-shaped frame 401 moves, the limiting disc 404 can be driven to move by cooperating with the buffer spring 405, so as to drive the connecting cylinder 403 fixed at the bottom end to move, when the connecting cylinder 403 moves, the mounting block 406 fixed at the bottom end can be moved, so as to cooperate with the support shaft 407 arranged on one side to drive the support wheel 408 to move downward, thereby moving the frame body 1 away from the ground, so that the frame body 1 cooperates with the fixed frame 201 to drive the geological radar 202 to move away from the ground, thereby making it suitable for different working environments.

[0055] In the description of the application, references to "one embodiment", "an example", "certain examples" etc. mean that a particular feature, structure, material or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "an example" or "certain examples" in various places in the specification are not necessarily referring to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.

[0056] The preferred embodiments of the application disclosed above are only to help explain the application. The preferred embodiments do not describe all the details and limit the application to the specific embodiments described. Obviously, many modifications and variations can be made in light of the contents of the specification. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is only limited by the claims and their full scope and equivalents.

Claims

1. A terrain information acquisition device, comprising a frame (1), characterized in that: The frame (1) is respectively equipped with a data acquisition component (2), an adjustment component (3), a buffer component (4), and a limiting component (5); The bottom end of the acquisition component (2) is fixedly installed to the top end of the frame (1) so that the frame (1) drives the acquisition component (2) to acquire information; The adjusting component (3) has its movable end fixedly installed at the top of the buffer component (4) so ​​that the adjusting component (3) can adjust the height of the buffer component (4); The limiting component (5) is fixedly connected to one side of the buffer component (4) so ​​that the limiting component (5) restricts the movement direction of the buffer component (4).

2. The geomorphological information acquisition device according to claim 1, characterized in that, The acquisition component (2) includes a mounting frame (201), the bottom end of which is fixedly installed to the top end of the frame (1), and a ground-penetrating radar (202) is fixedly installed at the bottom end of the mounting frame (201).

3. The geomorphological information acquisition device according to claim 1, characterized in that, The adjustment component (3) includes a mounting bracket (301), the bottom end of which is fixedly installed to the top end of the frame (1), a threaded seat (302) is fixedly installed on the top end of the mounting bracket (301), a threaded rod (303) is internally threaded to the threaded seat (302), a handle (304) is fixedly connected to the top end of the threaded rod (303), and a rotating seat (305) is rotatably installed on the bottom end of the threaded rod (303).

4. The geomorphological information acquisition device according to claim 3, characterized in that, The buffer assembly (4) includes a U-shaped frame (401), the top end of which is fixedly installed with the bottom end of the rotating seat (305). A limiting rod (402) is fixedly connected to the top end of the inner side of the U-shaped frame (401). A connecting cylinder (403) is slidably provided on the outer surface of the limiting rod (402). A limiting plate (404) is fixedly connected to the top end of the connecting cylinder (403). A buffer spring (405) is fixedly connected to the top end of the limiting plate (404).

5. The geomorphological information acquisition device according to claim 4, characterized in that, The buffer assembly (4) further includes a mounting block (406), the top end of which is fixedly connected to the bottom end of the connecting cylinder (403), and a support shaft (407) is rotatably connected to one side of the mounting block (406). A support wheel (408) is fixedly mounted on the outer surface of the support shaft (407).

6. The geomorphological information acquisition device according to claim 5, characterized in that, The limiting component (5) includes a sliding rod (501), both ends of which are fixedly connected to the inner side of the mounting bracket (301). A sliding block (502) is slidably disposed on the outer surface of the sliding rod (501), and one side of the sliding block (502) is fixedly connected to one side of the U-shaped frame (401).

7. A geomorphological information acquisition device according to claim 5, characterized in that, The U-shaped frame (401) has a limiting groove (6) inside, and a limiting block (7) is slidably arranged inside the limiting groove (6). One side of the limiting block (7) is fixedly connected to the outer surface of the connecting cylinder (403).