Water detection radar convenient to install

By using the coaxial connection between the water-penetrating radar body and the base, and the design of the disassembly and assembly components, the problem of inconvenient installation of water-penetrating radar is solved, enabling rapid installation and disassembly, facilitating maintenance, and improving the stability and reliability of exploration equipment.

CN224081808UActive Publication Date: 2026-04-03SHAANXI KUANGLIAN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The installation and removal of existing water detection radars on push carts are inconvenient, making maintenance and replacement difficult.

Method used

The radar probe at the bottom of the water-detecting radar body is coaxially fitted with the passage opening of the base. Combined with the vertical sliding fit of the mating plate and the mating groove of the disassembly and assembly assembly and the longitudinal sliding fit of the limiting rod and the limiting hole, the water-detecting radar can be detached and fixed. Elastic cushioning is provided by the bottom buffer assembly.

Benefits of technology

It enables rapid installation and disassembly of water-penetrating radar, facilitating exploration, use, and maintenance, and improving operational stability and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a convenient-to-install water probing radar, which comprises a base and a water probing radar body, the middle part of the base is vertically provided with an object passing opening, the water probing radar body is placed in the middle part of the top surface of the base, and the top surface of the base is provided with disassembly and assembly combination components at the front and back positions of the water probing radar body. According to the technical scheme of the utility model, the radar probe at the bottom of the water-probing radar body is coaxially matched with the object passing opening of the base, so that the water-probing radar body can be positioned and placed at the top of the base. Then, the water detecting radar body can be detachably fixed to the middle of the top face of the base by means of pressing of a pressing plate in the mode that a matching plate and a matching groove of the disassembly and assembly combination assembly are in vertical sliding fit and a limiting rod and a limiting hole are in longitudinal sliding fit, and the fixed combination mode of the water detecting radar body on the top of the base is simple and easy to achieve; and then the water-probing radar body can be conveniently and rapidly combined at the top of the base for coal mine exploration.
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Description

Technical Field

[0001] This utility model relates to the field of auxiliary components for coal mine exploration, specifically to a water detection radar that is easy to install. Background Technology

[0002] Coal mine exploration refers to the geological exploration and technical detection of coal resources through various methods and means to determine the characteristics of coal seams, such as quality, reserves, thickness, structure and distribution, so as to carry out the rational development and utilization of coal resources. Water-penetrating radar is often used in coal mine exploration to facilitate geological surveys. It has the advantages of fast detection speed, continuous detection process and high resolution.

[0003] In the existing technology, water-detecting radar is usually installed on a push trolley and moves with it to change its position so that the exploration location can be flexibly changed at the coal exploration site. However, when it comes to the installation of water-detecting radar on the push trolley, the current water-detecting radar is usually fixed by adding screws, which is very inconvenient to disassemble and assemble, making it difficult to send the water-detecting radar for inspection and maintenance later. Utility Model Content

[0004] The purpose of this utility model is to provide an easy-to-install water detection radar to solve the above problems. By coaxially engaging the radar probe at the bottom of the water detection radar body with the passage opening of the base, the water detection radar body can be positioned on the top of the base. Then, by vertically sliding the mating plate and the mating groove of the disassembly and assembly assembly and longitudinally sliding the limiting rod and the limiting hole, the water detection radar body can be detachably fixed to the middle of the top surface of the base by pressing down with a pressure plate. The fixed assembly method of the water detection radar body on the top of the base is simple and easy to implement, as detailed below.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] This utility model provides an easy-to-install water detection radar, including a base and a water detection radar body. The base is arranged horizontally along the longitudinal direction, and a vertical opening for passing objects is opened in the middle of the base. The water detection radar body is placed in the middle of the top surface of the base. A radar probe is coaxially integrated on the bottom surface of the water detection radar body, and the radar probe passes through the opening for passing objects coaxially in a vertical sliding engagement manner.

[0007] The top surface of the base is equipped with disassembly and assembly components at both the front and rear positions of the water detection radar body, and the water detection radar body is detachably fixed to the middle of the top surface of the base through the disassembly and assembly components.

[0008] The base is equipped with multiple bottom buffer components around the passage opening to cushion and support the water detection radar body from the bottom.

[0009] Preferably, each of the four corners of the base is fixedly equipped with casters that have omnidirectional and locking functions.

[0010] Preferably, each of the disassembly and assembly components includes a mating plate and a fixing sleeve. There are two mating plates, each positioned at the front and rear of the water-detecting radar body. A pressure plate extends horizontally from the top surface of each mating plate, and the pressure plates at the front and rear positions are attached to the front and rear of the top surface of the water-detecting radar body. Limiting holes are longitudinally formed on the outermost ends of the mating plates at the front and rear positions. The mating plates are vertically fixed to the top surface of the base at the front and rear positions of the water-detecting radar body. A mating groove is vertically formed on the top surface of each fixing sleeve, corresponding to and sliding vertically with each mating plate. Mounting holes are longitudinally formed on the outermost ends of the fixing sleeves at the front and rear positions, communicating perpendicularly with the corresponding mating grooves. The mounting holes are longitudinally coaxial with the corresponding limiting holes, and limiting rods slide longitudinally with each other in the mounting holes. The innermost ends of the limiting rods at the front and rear positions slide longitudinally with the corresponding limiting holes.

[0011] Preferably, the outer ends of the limiting rods in the front and rear positions, which are far apart from each other, extend out of the outer end face of the corresponding fixed sleeve and are coaxially fixed with handles. The portion of the limiting rod located between the corresponding handle and the outer end face of the fixed sleeve is coaxially fitted with a spring, and the two ends of the spring are respectively fixedly connected to the corresponding handle and the outer end face of the fixed sleeve.

[0012] Preferably, the horizontal cross-sectional shape of the mating plate and the mating groove is rectangular, the mating groove is a blind groove in the vertical direction, and the bottom end of the mating plate is in close contact with the bottom end of the corresponding mating groove.

[0013] Preferably, the top surface of each pressure plate is fixedly fitted with a handle for easy gripping.

[0014] Preferably, each of the bottom buffer components includes a mating hole and a stud. The base has multiple mating holes vertically opened around the passage opening, and all of the mating holes are through holes. The stud is coaxially inserted into each of the mating holes in a threaded manner. The top of each stud is coaxially fixed with an elastic top block whose outer diameter is smaller than the diameter of the mating hole, and the elastic top block is pressed against and supported on the bottom surface of the water detection radar body.

[0015] Preferably, a plurality of studs are evenly distributed around the periphery of the passage opening, and the bottom end of each stud is coaxially fixed with an external hexagonal end.

[0016] Preferably, the elastic top blocks are all cylindrical rubber blocks, and when the end is pressed against the bottom surface of the base, the top of the elastic top block is higher than the top surface of the base.

[0017] The aforementioned easy-to-install water-detecting radar, specifically in the assembly and disassembly operations of the water-detecting radar body on the top surface of the base, allows for the following: During assembly, the radar probe at the bottom of the water-detecting radar body is coaxially engaged with the passage opening of the base, positioning the water-detecting radar body on the top of the base. Then, through the vertical sliding engagement of the mating plate and the mating groove of the assembly / disassembly assembly component, and the longitudinal sliding engagement of the limiting rod and the limiting hole, the water-detecting radar body is detachably fixed to the center of the top surface of the base by pressing down with the pressure plate. The method of fixing and assembling the water-detecting radar body on the top of the base is simple and easy to implement, facilitating quick assembly of the water-detecting radar body on the top of the base for coal mine exploration. During disassembly, only the handle needs to be held... Pulling the handles outwards at the front and rear positions and stretching them through the springs causes the limiting rods to disengage from the limiting holes. This allows the mating plate to vertically disengage from the mating groove, thus removing the pressure plate. The water-detecting radar body can then be lifted to detach from the top of the base. The method of separating the water-detecting radar body from the top of the base is simple and easy to implement, facilitating subsequent inspection and maintenance. Furthermore, because the base has multiple bottom buffer components installed around the passage opening, the studs of these bottom buffer components drive the top elastic block to press against and support the bottom surface of the water-detecting radar body, providing elastic cushioning during movement and improving the working stability and reliability of the water-detecting radar body.

[0018] The beneficial effects are as follows: 1. This utility model can position the water-detecting radar body on the top of the base by coaxially engaging the radar probe at the bottom of the water-detecting radar body with the material passage opening of the base. Then, by vertically sliding the mating plate and the mating groove of the disassembly and assembly assembly and longitudinally sliding the limiting rod and the limiting hole, the water-detecting radar body can be detachably fixed to the middle of the top surface of the base by pressing down with the pressure plate. The method of fixing and assembling the water-detecting radar body on the top of the base is simple and easy to achieve, which makes it easy to quickly assemble the water-detecting radar body on the top of the base for use in coal mine exploration.

[0019] 2. Only by pulling the limiting rod out of the limiting hole can the mating plate be vertically dislodged from the mating groove and the pressure plate be removed. Then, the water detection radar body can be removed from the top of the base by lifting. The method of disassembling the water detection radar body at the top of the base is simple and easy to achieve, which makes it convenient to send the water detection radar body for inspection and maintenance after it is removed from the base.

[0020] 3. Multiple bottom buffer components are installed around the passage opening on the base. The bottom buffer components are driven by studs to press and support the top elastic block against the bottom surface of the water detection radar body. This can achieve elastic buffering of the water detection radar body during movement, which helps to improve the working stability and reliability of the water detection radar body. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 This is an overall isometric schematic diagram of this utility model. Figure 1 ;

[0023] Figure 2 This is an overall isometric schematic diagram of this utility model. Figure 2 ;

[0024] Figure 3 This is an overall isometric schematic diagram of the present invention without the combined water-detecting radar body;

[0025] Figure 4 This is a utility model Figure 1 A schematic diagram of the cross-section;

[0026] Figure 5 This is a utility model Figure 4 A magnified view of part A;

[0027] Figure 6 This is a utility model Figure 1 A frontal view diagram;

[0028] Figure 7 This is a utility model Figure 1 A top-down view.

[0029] The annotations in the attached figures are explained as follows:

[0030] 1. Base; 101. Movable seat; 102. Passage opening; 2. Assembly / disassembly assembly; 201. Pressure plate; 202. Handle; 203. Mating plate; 204. Fixing sleeve; 205. Spring; 206. Handle; 207. Mating groove; 208. Limiting hole; 209. Limiting rod; 2010. Mounting hole; 3. Water detection radar body; 301. Radar probe; 4. Bottom buffer assembly; 401. End; 402. Mating hole; 403. Elastic top block; 404. Stud. Detailed Implementation

[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0032] See Figures 1-7As shown, this utility model provides an easy-to-install water detection radar, including a base 1 and a water detection radar body 3. The base 1 is arranged horizontally along the longitudinal direction, and a vertical passage opening 102 is opened in the middle of the base 1. The water detection radar body 3 is placed in the middle of the top surface of the base 1. A radar probe 301 is coaxially integrated on the bottom surface of the water detection radar body 3, and the radar probe 301 passes through the passage opening 102 coaxially in a vertical sliding fit. Disassembly and assembly components 2 are installed on the top surface of the base 1 at the front and rear positions of the water detection radar body 3, and the water detection radar body 3 is detachably fixed to the middle of the top surface of the base 1 through the disassembly and assembly components 2. Specifically, each disassembly and assembly component 2 includes a mating plate 203 and a fixing sleeve 204. The number of mating plates 203... Two mating plates 203 are respectively positioned at the front and rear of the water-detecting radar body 3. Each mating plate 203 has a horizontally extending pressure plate 201 fixed to its top surface. The pressure plates 201 at the front and rear positions are attached to the front and rear of the top surface of the water-detecting radar body 3. The outer end faces of the mating plates 203 at the front and rear positions are longitudinally provided with limiting holes 208. The top surface of the base 1 at the front and rear positions of the water-detecting radar body 3 is vertically fixed with mating plates 203. The top surface of the fixing sleeves 204 is vertically provided with mating grooves 207, which correspond one-to-one with the mating plates 203 and slide vertically. The outer end faces of the fixing sleeves 204 at the front and rear positions are longitudinally provided with mounting holes 2010, which correspond to the mating grooves 208. 07. Vertical connection, and the mounting holes 2010 are all longitudinally coaxially aligned with the corresponding limiting holes 208. The mounting holes 2010 are all longitudinally coaxially slidably fitted with limiting rods 209, and the inner ends of the limiting rods 209 at the front and rear positions are longitudinally slidably fitted with the corresponding limiting holes 208. The outer ends of the limiting rods 209 at the front and rear positions extend out of the outer end face of the corresponding fixing sleeve 204 and are coaxially fixed with handles 206. The portion of the limiting rod 209 located between the corresponding handle 206 and the outer end face of the fixing sleeve 204 is coaxially fitted with springs 205, and the two ends of the springs 205 are respectively fixedly connected to the corresponding handles 206 and the outer end faces of the fixing sleeve 204. The purpose of this arrangement is to allow the radar at the bottom of the water-detecting radar body 3 to... The probe 301 and the material passage opening 102 of the base 1 are coaxially engaged to position the water-detecting radar body 3 on the top of the base 1. Then, by vertically sliding the mating plate 203 and the mating groove 207 of the disassembly and assembly assembly 2 and longitudinally sliding the limiting rod 209 and the limiting hole 208, the water-detecting radar body 3 can be detachably fixed to the middle of the top surface of the base 1 by pressing down with the pressure plate 201. At the same time, by simply pulling the limiting rod 209 out of the limiting hole 208, the mating plate 203 can be vertically disengaged from the mating groove 207, and the pressure plate 201 can be removed. Then, the water-detecting radar body 3 can be removed from the top of the base 1 by lifting. The fixing and disassembly of the water-detecting radar body 3 on the top of the base 1 is simple and easy to implement.

[0033] See Figures 1-5 As shown, the base 1 has multiple bottom buffer components 4 installed around the passage opening 102 to buffer and support the water detection radar body 3 from the bottom. Specifically, each bottom buffer component 4 includes a mating hole 402 and a stud 404. The base 1 has multiple mating holes 402 vertically opened around the passage opening 102, and all mating holes 402 are through holes. The stud 404 is coaxially inserted into each mating hole 402 by means of thread engagement. The top of each stud 404 is coaxially fixed with an elastic top block 403 with an outer diameter smaller than the diameter of the mating hole 402. The elastic top block 403 is pressed against and supported on the bottom surface of the water detection radar body 3. The purpose of this arrangement is to achieve elastic buffering of the water detection radar body 3 during movement by having the stud 404 of the bottom buffer component 4 drive the top elastic top block 403 to press against and support the bottom surface of the water detection radar body 3, which is beneficial to improving the working stability and reliability of the water detection radar body 3.

[0034] See Figures 1-5 As shown, the base 1, the disassembly and assembly assembly 2, and the bottom buffer assembly 4 have been optimized as follows. Specifically, for the base 1, each of the four corners of the bottom surface of the base 1 is fixedly equipped with a movable wheel with universal and locking functions, so as to move the base 1 by means of the movable wheel. Specifically, for the disassembly and assembly assembly 2, the horizontal cross-sectional shape of the mating plate 203 and the mating groove 207 is rectangular, and the mating groove 207 is a blind groove in the vertical direction. The bottom end of the mating plate 203 is in close contact with the bottom end of the corresponding mating groove 207. With this setting, firstly, it is convenient for the mating plate 203 and the mating groove 207 to have a good positioning and guiding design when they slide in the longitudinal direction. At the same time, when the limiting hole 208 slides vertically along the mating groove 207 with the mating plate 203, when the limiting hole 208 slides vertically with the mating plate 203 to be aligned with the limiting rod 209, the bottom end of the mating plate 203 can contact the bottom of the mating groove 207 to provide a clear indication. Alternatively, a handle 202 is fixedly installed on the top surface of the pressure plate 201 for easy gripping, so that the pressure plate 201 and the mating plate 203 can be driven to rise and fall vertically together by applying force by holding the handle 202.

[0035] Specifically, regarding the bottom buffer assembly 4, multiple studs 404 are evenly distributed circumferentially around the passage opening 102. Each stud 404 has a coaxially fixed hexagonal end 401 at its bottom. This arrangement facilitates rotation of the stud 404 by using a wrench or similar tool to tighten the end 401. The elastic top blocks 403 are cylindrical rubber blocks. When the end 401 is pressed against the bottom surface of the base 1, the top of the elastic top block 403 is higher than the top surface of the base 1. Preferably, the top of the elastic top block 403 is slightly higher than the top surface of the base 1, so that the elastic top block 403 can provide elastic cushioning when it comes into contact with the bottom surface of the water-detecting radar body 3.

[0036] Using the above structure, specifically in the assembly and disassembly operations of the water-detecting radar body 3 on the top surface of the base 1, when assembling, the water-detecting radar body 3 can be positioned on the top of the base 1 by coaxially engaging the radar probe 301 at the bottom of the water-detecting radar body 3 with the material passage opening 102 of the base 1. Then, by vertically sliding the mating plate 203 and the mating groove 207 of the disassembly and assembly assembly 2 and longitudinally sliding the limiting rod 209 and the limiting hole 208, the water-detecting radar body 3 can be detachably fixed to the middle of the top surface of the base 1 by pressing down with the pressure plate 201. The fixing and assembly method of the water-detecting radar body 3 on the top of the base 1 is simple and easy to implement, thus facilitating the quick assembly of the water-detecting radar body 3 on the top of the base 1 for use in coal mine exploration. When disassembling, only the handles in the front and rear positions need to be held. The limiting rod 209 is pulled out of the limiting hole 208 by the spring 205 and stretched outward. Then the mating plate 203 can be vertically disengaged from the mating groove 207 and the pressure plate 201 can be removed. Then the water detection radar body 3 can be removed from the top of the base 1 by lifting. The method of disassembling the water detection radar body 3 from the top of the base 1 is simple and easy to achieve, which facilitates the subsequent removal of the water detection radar body 3 from the base 1 for inspection and maintenance. Since multiple bottom buffer components 4 are installed around the passage opening 102 of the base 1, the top elastic block 403 is pressed against and supported by the stud 404 of the bottom buffer component 4, which can achieve elastic buffering of the water detection radar body 3 during the movement process, which is conducive to improving the working stability and reliability of the water detection radar body 3.

[0037] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. A water-probing radar for easy installation, comprising a base (1) and a water-probing radar body (3), characterized in that: The base (1) is longitudinally placed, the middle part of the base (1) is vertically provided with a passing opening (102), the water detecting radar body (3) is placed in the middle part of the top surface of the base (1), the bottom surface of the water detecting radar body (3) is coaxially provided with a radar probe (301), and the radar probe (301) coaxially passes through the passing opening (102) in a vertically sliding fit manner; The top surface of the base (1) is provided with a disassembly and assembly assembly (2) at the front and rear positions of the water detecting radar body (3), and the water detecting radar body (3) is detachably fixed to the middle part of the top surface of the base (1) through the disassembly and assembly assembly (2). The base (1) is provided with a plurality of bottom buffer assemblies (4) for buffering and supporting the water detecting radar body (3) from the bottom at the positions around the passing opening (102).

2. The water detecting radar of claim 1, wherein: The bottom surface of the base (1) is fixedly provided with a plurality of moving wheels with universal and locking functions at the four corners.

3. The water detecting radar of claim 1, wherein: The disassembly and assembly assembly (2) comprises a fitting plate (203) and a fixing sleeve (204), the number of the fitting plates (203) is two, and the fitting plates (203) are respectively arranged at the front and rear positions of the water detecting radar body (3), the top surface of each fitting plate (203) is horizontally extended and fixedly provided with a pressing plate (201), the pressing plates (201) at the front and rear positions are attached and pressed on the top surface of the water detecting radar body (3) at the front and rear positions, the outer side end surfaces of the fitting plates (203) at the front and rear positions are away from each other and are longitudinally provided with limiting holes (208), the top surface of the base (1) is vertically fixed with the fitting plates (203) at the front and rear positions of the water detecting radar body (3), the top surface of each fixing sleeve (204) is vertically provided with a fitting groove (207), the fitting grooves (207) correspond to the fitting plates (203) in a one-to-one manner and are vertically slidingly fitted, the outer end surfaces of the fixing sleeves (204) at the front and rear positions are away from each other and are longitudinally provided with mounting holes (2010), the mounting holes (2010) are vertically communicated with the corresponding fitting grooves (207), the mounting holes (2010) are longitudinally coaxially matched with the corresponding limiting holes (208), the mounting holes (2010) are longitudinally coaxially slidingly fitted with limiting rods (209), and the inner ends of the limiting rods (209) at the front and rear positions are away from each other and are longitudinally slidingly fitted with the corresponding limiting holes (208).

4. The water detecting radar of claim 3, wherein: The outer end surfaces of the limiting rods (209) at the front and rear positions are away from each other and extend out of the outer end surfaces of the corresponding fixing sleeves (204) and are coaxially fixed with handles (206), the parts of the limiting rods (209) between the corresponding handles (206) and the outer end surfaces of the fixing sleeves (204) are coaxially gap-fitted with springs (205), and the two ends of the springs (205) are fixedly connected with the corresponding handles (206) and the outer end surfaces of the fixing sleeves (204).

5. The water detecting radar of claim 4, wherein: The horizontal sectional shape of the matching plate (203) and the matching groove (207) is rectangular, the matching groove (207) is a blind groove in the vertical direction, and the bottom end of the matching plate (203) is in contact with the bottom end of the corresponding matching groove (207).

6. The water detecting radar of claim 5, wherein: The top surface of the pressing plate (201) is fixedly installed with a handle (202) for convenient gripping.

7. The water detecting radar of easy installation as claimed in any one of claims 3 to 6, wherein: The bottom buffer assembly (4) comprises a matching hole (402) and a stud (404). A plurality of matching holes (402) are vertically formed around the object passing opening (102) of the base (1), and the matching holes (402) are through holes. The matching holes (402) are coaxially inserted with the studs (404) in a threaded matching manner. The top end of the stud (404) is coaxially fixed with an elastic top block (403) having an outer diameter smaller than the hole diameter of the matching hole (402), and the elastic top block (403) is abuttingly supported on the bottom surface of the water detection radar body (3).

8. The water detecting radar of claim 7, wherein: A plurality of studs (404) are circumferentially arranged around the object passing opening (102), and the bottom end of the stud (404) is coaxially fixed with an end head (401) in an outer hexagonal pattern.

9. The water detecting radar of claim 8, wherein: The elastic top block (403) is a cylindrical rubber block, and when the end head (401) is abuttingly supported on the bottom surface of the base (1), the top end of the elastic top block (403) is higher than the top surface of the base (1).