Monitoring and marking device for natural resource engineering

Through the design of the hexagonal frame structure and cleaning components, the problems of fixed stability and marking information clarity of the monitoring marking device used in natural resource engineering are solved, and the device is firmly fixed and automatically cleaned, ensuring that the marking information is clearly visible in different environments.

CN120628047AInactive Publication Date: 2025-09-12ZAOZHUANG CITY YICHENG DISTRICT NATURAL RESOURCES BUREAU
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Patent Information

Application Number
CN202510979648.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-16
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing monitoring marking devices used in natural resource projects have poor fixing stability, are prone to tilting, and the marking information is easily covered by dust, resulting in unclear observation.

Method used

It adopts a hexagonal frame structure, combined with a cleaning component, an adjustment component and a positioning component. Through the cooperation of a screw, a gear ring and a driving gear, the device can be firmly fixed and automatically cleaned. The wind impeller is used to generate electricity and illuminate the marking information.

Benefits of technology

The stability of the device and the clarity of the marking information are improved, ensuring that the marking information is easy to observe and remains clear in different environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of monitoring and marking, in particular to a monitoring and marking device for natural resource engineering. The six-edge frame is slidably connected to the surface of the six-edge frame in a sleeving mode, a plurality of marking boxes are fixedly installed on the top of the six-edge frame in the circumferential direction, the marking boxes are transparent, and a cavity is formed in the six-edge frame. A stirring wheel disc drives a driving gear to rotate through a rotating shaft, a plurality of gear rings meshed with the driving gear are controlled to synchronously rotate, at the moment, protruding blocks in the gear rings and grooves in the screw rods are in sliding clamping connection, the screw rods and spiral blades can be driven to spirally move downwards to be screwed into the ground, firm fixing of the device is achieved, and the firmness of the device is improved; and meanwhile, when the wind impeller is blown by wind to rotate, each brush plate is driven by the ball nut to move back and forth on the surface of the corresponding marking box, so that dust on the surface of the marking box is automatically cleaned, and the clarity of the surface of the marking box is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of monitoring marking, and in particular to a monitoring marking device for natural resource engineering. Background Art

[0002] Natural resources refer to substances in nature that humans can directly or indirectly obtain for production and life, primarily including non-renewable resources, renewable resources, and inexhaustible resources. Each region contains a variety of natural resources, and these resources change over time, necessitating the use of marking devices to annotate these resources.

[0003] However, existing monitoring and marking devices for natural resource projects have poor fixing stability. Most monitoring and marking devices are often placed on the ground. Due to terrain conditions, the equipment is prone to tilting, resulting in poor equipment stability. At the same time, existing marking devices are also easily covered with dust during the marking process of various natural resources, making the marking information difficult to observe. Therefore, the present invention provides a monitoring and marking device for natural resource projects. Summary of the Invention

[0004] The purpose of the present invention is to solve the problems in the background technology and to propose a monitoring marking device for natural resource engineering.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions: A monitoring marking device for natural resource engineering, comprising: Hexagonal frame; The hexagonal frame is slidably sleeved on the surface of the hexagonal frame, and a plurality of marking boxes are fixedly installed on the top of the hexagonal frame in a circumferential direction, and the marking boxes are transparent. A cavity is opened in the hexagonal frame; A cleaning component, used to remove dust from the surface of each marking box; An adjustment component, used for adjusting the position of the hexagonal frame on the surface of the hexagonal frame; Three positioning assemblies are circumferentially distributed within the cavity, each comprising a screw threaded through the bottom of the cavity, a gear ring fixedly mounted on the surface of the screw, and two grooves formed on the surface of the screw, two protrusions fixedly mounted within the gear ring, the protrusions being slidably connected to the grooves, and a spiral blade fixedly mounted on the surface of one end of the screw extending below the hexagonal frame; A driving gear is meshed between the three gear rings, and a rotating shaft is coaxially fixedly installed on the surface of the driving gear. The other end of the rotating shaft is movably inserted into the top of the hexagonal frame and is fixedly installed with a wheel.

[0006] Preferably, the cleaning assembly includes a gantry fixedly mounted on the top of the hexagonal frame, a reciprocating screw is rotatably mounted on the top of the gantry, a wind impeller is fixedly mounted on the top of the reciprocating screw, and the surface of the reciprocating screw is connected to six right-angle rods through a ball nut, and the six right-angle rods are distributed circumferentially, the other end of each of the right-angle rods is connected to a brush plate through an adjusting assembly, and the brush plate can be slidably placed on the front side of the marking box, and a limit plate is fixedly mounted on both ends of each of the brush plates, and the limit plate is slidably connected to the surface of the hexagonal frame.

[0007] Preferably, the adjustment assembly includes an adjusting bolt with threads penetrating the surface of the hexagonal frame, and the surface of the hexagonal frame is provided with a plurality of thread grooves, which are distributed in a vertical linear array and are threadedly connected to or separated from the adjusting bolt.

[0008] Preferably, a generator is fixedly installed on the inner top of the gantry, and the driving end of the generator is coaxially fixed with the reciprocating screw, a battery is fixedly installed on the top of the cavity, and a lighting lamp is fixedly installed on the surface of each marking box, and the lighting lamp, battery and generator are electrically connected in sequence.

[0009] Preferably, the tops of the three gear rings are in contact with a limiting ring, and the limiting ring is fixedly installed in the cavity through three brackets, and the three brackets are distributed circumferentially.

[0010] Preferably, a section of the surface of each screw rod placed in the cavity is threadedly sleeved with an internal threaded tube, and the upper end of the internal threaded tube is fixedly installed on the top of the cavity.

[0011] Preferably, the adjustment assembly includes a screw threadedly connected to one end of the right-angle rod away from the ball nut, the lower end of the screw is fixedly sleeved with a bearing, and the outer ring of the bearing is fixedly installed on the top of the brush plate.

[0012] Compared with the existing technology, the advantages of the monitoring marking device for natural resource engineering provided by the present invention are: 1. By turning the wheel, the driving gear rotates through the rotating shaft, controlling the synchronous rotation of multiple gear rings meshing with it. At this time, the sliding engagement between the protrusion in the gear ring and the groove on the screw can also drive the screw to rotate synchronously. Because the screw is connected to the bottom of the cavity and the internal threaded tube by thread, the screw finally drives the spiral blade to move downward and screw into the ground, thus firmly fixing the device and improving the firmness of the device. 2. By screwing the adjusting bolt out of the corresponding thread groove, the hexagonal frame can be moved vertically along the hexagonal frame to adjust the position of the hexagonal frame on the hexagonal frame. Then, screw the adjusting bolt into the corresponding thread groove to fix the hexagonal frame on the hexagonal frame to adjust the height of the marking information in the marking box according to actual needs; 3. When the impeller is rotated by the wind, it can drive the reciprocating screw and the generator to rotate synchronously. At this time, the generator generates electricity and stores the electricity in the battery. The battery then powers each lamp to illuminate the marking information in the marking box at night to improve the clarity; 4. When the reciprocating screw rotates, it can also drive each right-angle rod to move up and down through the ball nut, so that each brush plate can move back and forth on the surface of the corresponding marking box to remove dust on the surface of the marking box, thereby realizing automatic cleaning of the dust on the surface of the marking box and ensuring the clarity of the surface of the marking box. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic cross-sectional view of a monitoring marking device for natural resource engineering proposed by the present invention; Figure 2 This is a schematic structural diagram of a monitoring marking device for natural resource engineering proposed by the present invention; Figure 3 This is a structural schematic diagram of a positioning component in a monitoring and marking device for natural resource engineering proposed by the present invention; Figure 4 This is a schematic diagram of the explosion structure between the screw and the gear ring in a monitoring and marking device for natural resource engineering proposed by the present invention; Figure 5 This is a partial structural diagram of a monitoring marking device for natural resource engineering proposed by the present invention; Figure 6 for Figure 1 Schematic diagram of the enlarged structure of part A.

[0014] In the figure: 1 hexagonal frame, 2 hexagonal frame, 3 marking box, 4 cavity, 5 screw, 6 gear ring, 7 bump, 8 groove, 9 internal threaded tube, 10 spiral blade, 11 driving gear, 12 rotating shaft, 13 wheel plate, 14 gantry, 15 reciprocating screw, 16 fan wheel, 17 ball nut, 18 right-angle rod, 19 brush plate, 20 limit plate, 21 adjusting bolt, 22 thread groove, 23 generator, 24 lighting lamp, 25 screw, 26 bearing, 27 limit ring, 28 bracket. DETAILED DESCRIPTION

[0015] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0016] Reference Figures 1 to 6 , a monitoring marking device for natural resource engineering, comprising: Hexagonal frame 1; The hexagonal frame 2 is slidably sleeved on the surface of the hexagonal frame 1 , and a plurality of marking boxes 3 are fixedly installed circumferentially on the top of the hexagonal frame 2 , and the marking boxes 3 are transparent. A cavity 4 is opened in the hexagonal frame 1 .

[0017] The cleaning assembly is used to remove dust from the surface of each marking box 3; the cleaning assembly includes a gantry 14 fixedly mounted on the top of the hexagonal frame 1, and a reciprocating screw 15 is rotatably mounted on the top of the gantry 14. A wind impeller 16 is fixedly mounted on the top of the reciprocating screw 15, and the surface of the reciprocating screw 15 is connected to six right-angle rods 18 through ball nuts 17, and the six right-angle rods 18 are distributed circumferentially, and the other end of each right-angle rod 18 is connected to a brush plate 19 through an adjusting assembly, and the adjusting assembly includes a screw 25 threadedly connected to the end of the right-angle rod 18 away from the ball nut 17, and the lower end of the screw 25 is fixedly sleeved with a bearing 26, and the outer ring of the bearing 26 is fixedly mounted on the top of the brush plate 19. By turning the screw 25, it can be spirally moved on the right-angle rod 18, thereby driving the brush plate 19 to move vertically, so that it can be adjusted according to the following adjustment of the height of the marking box 3 to ensure that the brush plate 19 can always clean the surface of the marking box 3.

[0018] The brush plate 19 can be slidably placed on the front side of the marking box 3. A limiting plate 20 is fixedly installed at both ends of each brush plate 19, and the limiting plate 20 is slidably connected to the surface of the hexagonal frame 1. By sliding the limiting plate 20 on the surface of the hexagonal frame 1, the brush plate 19 can be limited, thereby preventing the brush plate 19 from deflecting.

[0019] An adjustment component is used to adjust the position of the hexagonal frame 2 on the surface of the hexagonal frame 1; the adjustment component includes an adjustment bolt 21 with threads passing through the surface of the hexagonal frame 2, and a plurality of thread grooves 22 are provided on the surface of the hexagonal frame 1, and the plurality of thread grooves 22 are distributed in a vertical linear array and are threadedly connected or separated from the adjustment bolt 21. By unscrewing the adjustment bolt 21 out of the corresponding thread groove 22, the hexagonal frame 2 can be moved vertically along the hexagonal frame 1, thereby adjusting the position of the hexagonal frame 2 on the hexagonal frame 1 to adjust the height of the marking box 3 according to actual needs.

[0020] Three positioning components are distributed circumferentially in the cavity 4. The positioning components include a screw 5 with a thread running through the bottom of the cavity 4. Each screw 5 is placed in the cavity 4 and a section of the surface is threadedly sleeved with an internal threaded tube 9, and the upper end of the internal threaded tube 9 is fixedly installed on the top of the cavity 4, further improving the movement stability of the screw 5 during spiral movement.

[0021] A gear ring 6 is fixedly installed on the surface of the screw 5. The tops of the three gear rings 6 are jointly fitted with a limit ring 27, and the limit ring 27 is fixedly installed in the cavity 4 through three brackets 28. The three brackets 28 are distributed circumferentially, which provides stability for each gear ring 6 during rotation, and also ensures that the gear ring 6 will not jump up and down.

[0022] Two grooves 8 are provided on the surface of the screw 5, two protrusions 7 are fixedly installed in the gear ring 6, and the protrusions 7 are slidably connected to the grooves 8. A spiral blade 10 is fixedly installed on the surface of one end of the screw 5 extending below the hexagonal frame 1. When the screw 5 moves spirally, the spiral blade 10 is inserted into the soil, which can reduce the difficulty of inserting the screw 5 into the soil while ensuring the stability of the screw 5 inserted into the soil.

[0023] A driving gear 11 is meshed between the three gear rings 6, and a rotating shaft 12 is coaxially fixedly installed on the surface of the driving gear 11. The other end of the rotating shaft 12 is movable through the top of the hexagonal frame 1 and is fixedly installed with a wheel 13. The driving gear 11 is rotated by the wheel 13 to drive each gear ring 6 meshed with it to rotate. At this time, the sliding engagement between the protrusion 7 in the gear ring 6 and the groove 8 on the screw 5 can also drive the screw 5 to rotate synchronously. Since the screw 5 and the bottom of the cavity 4 and the internal threaded tube 9 are all threaded connections, when the screw 5 rotates, the screw 5 will spiral up or spiral down.

[0024] Furthermore, a generator 23 is fixedly installed on the inner top of the gantry 14, and the driving end of the generator 23 is coaxially fixed with the reciprocating screw 15, and a battery is fixedly installed on the top of the cavity 4. A lighting lamp 24 is fixedly installed on the surface of each marking box 3, and the lighting lamp 24, the battery and the generator 23 are electrically connected in sequence. When the wind impeller 16 is rotated by the wind, it can drive the reciprocating screw 15 and the generator 23 to rotate synchronously. At this time, the generator 23 generates electricity and stores the electricity in the battery. The battery then supplies each lighting lamp 24 to illuminate the mark in the marking box 3.

[0025] The working principle of the present invention is: When in use, the hexagonal frame 1 is first moved to the designated location of the natural resource project, and then each screw 5 is initially inserted into the ground. Then, the wheel 13 is turned to drive the driving gear 11 to rotate through the rotating shaft 12, and the multiple gear rings 6 engaged therewith are controlled to rotate synchronously. At this time, the sliding engagement between the protrusion 7 in the gear ring 6 and the groove 8 on the screw 5 can also drive the screw 5 to rotate synchronously. Because the screw 5 and the bottom of the cavity 4 and the internal threaded tube 9 are all threadedly connected, the screw 5 finally drives the spiral blade 10 to move downward and screw into the ground, thereby firmly fixing the device and improving the firmness of the device. Then, the information of the natural resources measured by the staff is placed in each marking box 3 for people to observe. Here, the staff can also screw the adjusting bolt 21 out of the corresponding thread groove 22, and move the hexagonal frame 2 vertically along the hexagonal frame 1 to adjust the position of the hexagonal frame 2 on the hexagonal frame 1. Then, the adjusting bolt 21 is screwed into the corresponding thread groove 22 to fix the hexagonal frame 2 on the hexagonal frame 1 to adjust the height of the marked information in the marking box 3 according to actual needs. Then, when the wind impeller 16 is rotated by the wind, it can drive the reciprocating screw 15 and the generator 23 to rotate synchronously. At this time, the generator 23 generates electricity and stores the electricity in the battery. The battery then powers each lighting lamp 24 to illuminate the mark in the mark box 3 at night. At the same time, when the reciprocating screw 15 rotates, it can also drive each right-angle rod 18 to move back and forth up and down through the ball nut 17, so that each brush plate 19 can move back and forth on the surface of the corresponding marking box 3, removing dust on the surface of the marking box 3, so as to realize automatic cleaning of the dust on the surface of the marking box 3, ensure the clarity of the surface of the marking box 3, and prevent dust from blocking the information of natural resources in the marking box 3.

[0026] It is further explained that the above-mentioned fixed connection should be understood in a broad sense unless otherwise clearly specified and limited. For example, it can be welding, gluing, or one-piece molding, etc., which are common means well known to those skilled in the art.

[0027] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A monitoring marking device for natural resource engineering, characterized in that: include: Hexagonal frame (1); The hexagonal frame (2) is slidably sleeved on the surface of the hexagonal frame (1), and a plurality of marking boxes (3) are fixedly installed in a circumferential direction on the top of the hexagonal frame (2), and the marking boxes (3) are transparent. A cavity (4) is opened in the hexagonal frame (1); A cleaning component for removing dust from the surface of each marking box (3); An adjustment component, used for adjusting the position of the hexagonal frame (2) on the surface of the hexagonal frame (1); Three positioning components are circumferentially distributed in the cavity (4), the positioning components comprising a screw (5) threadedly penetrating the bottom of the cavity (4), a gear ring (6) fixedly mounted on the surface of the screw (5), and two grooves (8) are formed on the surface of the screw (5), two protrusions (7) are fixedly mounted in the gear ring (6), and the protrusions (7) are slidably connected to the grooves (8), and a spiral blade (10) is fixedly mounted on the surface of one end of the screw (5) extending below the hexagonal frame (1); A driving gear (11) is meshed between the three gear rings (6), and a rotating shaft (12) is coaxially fixedly mounted on the surface of the driving gear (11). The other end of the rotating shaft (12) is movably inserted into the upper portion of the hexagonal frame (1) and is fixedly mounted with a wheel disc (13).

2. A natural resource engineering monitoring marking device according to claim 1, characterized in that: The cleaning assembly comprises a gantry (14) fixedly mounted on the top of the hexagonal frame (1), a reciprocating screw (15) rotatably mounted on the top of the gantry (14), a wind impeller (16) fixedly mounted on the top of the reciprocating screw (15), and six right-angle rods (18) connected to the surface of the reciprocating screw (15) via a ball nut (17), and the six right-angle rods (18) are circumferentially distributed, and the other end of each right-angle rod (18) is connected to a brush plate (19) via an adjustment assembly, and the brush plate (19) can be slidably placed on the front side of the marking box (3), and a limiting plate (20) is fixedly mounted on both ends of each brush plate (19), and the limiting plate (20) is slidably connected to the surface of the hexagonal frame (1).

3. A natural resource engineering monitoring marking device according to claim 1, characterized in that: The adjustment assembly comprises an adjusting bolt (21) threadedly penetrating the surface of the hexagonal frame (2); a plurality of thread grooves (22) are provided on the surface of the hexagonal frame (1), and the plurality of thread grooves (22) are distributed in a vertical linear array and are threadedly connected to or separated from the adjusting bolt (21).

4. A natural resource engineering monitoring marking device according to claim 1, characterized in that: A generator (23) is fixedly mounted on the inner top of the gantry (14), and a driving end of the generator (23) is coaxially fixed to the reciprocating screw (15). A battery is fixedly mounted on the top of the cavity (4). A lighting lamp (24) is fixedly mounted on the surface of each marking box (3), and the lighting lamp (24), the battery and the generator (23) are electrically connected in sequence.

5. A natural resource engineering monitoring marking device according to claim 1, characterized in that: The tops of the three gear rings (6) are in contact with a limiting ring (27), and the limiting ring (27) is fixedly installed in the cavity (4) via three brackets (28), and the three brackets (28) are distributed circumferentially.

6. A natural resource engineering monitoring marking device according to claim 1, characterized in that: A section of the surface of each screw rod (5) placed in the cavity (4) is threadedly sleeved with an internal threaded tube (9), and the upper end of the internal threaded tube (9) is fixedly mounted on the top of the cavity (4).

7. A natural resource engineering monitoring marking device according to claim 2, characterized in that: The adjustment assembly includes a screw rod (25) threadedly connected to one end of the right-angle rod (18) away from the ball nut (17), the lower end of the screw rod (25) is fixedly sleeved with a bearing (26), and the outer ring of the bearing (26) is fixedly mounted on the top of the brush plate (19).