Mineral geological exploration device

By designing the support components and drilling screw structure of the mineral geological exploration device, the problem of the device moving on the slope was solved, achieving stable fixation and improving the accuracy of exploration.

CN223965220UActive Publication Date: 2026-03-03XINJIANG TIANDIYUAN MINING ENGINEERING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520896541.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-03-03
Estimated Expiration
2035-05-08

AI Technical Summary

Technical Problem

Existing mineral geological exploration equipment lacks effective fixing structures on relatively steep slopes, causing the equipment to shift and reducing the accuracy of exploration.

Method used

A mineral geological exploration device was designed, including a mounting base frame, an outer protective shell, a support assembly, and an exploration drilling mechanism. The device utilizes the flip-adjustment of the support assembly and a guide rod to provide stable support, and combines a telescopic rod and a drilling screw to achieve fixation. It provides sliding guidance through guide grooves and arc grooves.

Benefits of technology

The device was stabilized and fixed on steep slopes, improving the accuracy of the survey. The stability and fixation of the device on the slope were ensured by the rotation and adjustment of the support components and the embedding of the drilling screw.

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Abstract

The utility model relates to the technical field of geological exploration, in particular to a mineral geological exploration device which comprises a mounting bottom frame, the bottom end of the mounting bottom frame is fixedly connected with a moving mechanism, the top end of the mounting bottom frame is fixedly connected with a handle and an outer protective shell, and an exploration drilling mechanism is embedded in the inner side of the outer protective shell. A supporting assembly is embedded in the inner side of the mounting bottom frame, a guide groove is formed in the inner side surface of the mounting bottom frame, and the supporting assembly comprises a first supporting frame, a connecting bridge and a second supporting frame which are fixedly connected in sequence. The effect of supporting the whole device from the bottom position is achieved through the first supporting frame and the second supporting frame which are arranged in a triangular shape, and meanwhile the effect of facilitating overturning adjustment in the mounting bottom frame is achieved through the first supporting frame and the second supporting frame which can be overturned and adjusted. The effect of providing guidance for overturning adjustment of the whole supporting assembly is achieved through the guide rod, and the effect of controlling overall lifting adjustment of the earth drilling screw rod is achieved through the telescopic rod.
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Description

Technical Field

[0001] This utility model relates to the technical field of geological exploration, specifically to a mineral geological exploration device. Background Technology

[0002] Geological exploration, broadly speaking, can be understood as geological work. It involves investigating and studying the geological conditions of a certain area, such as rocks, stratigraphic structures, minerals, groundwater, and landforms, using geological exploration methods such as surveying, geophysical exploration, geochemical prospecting, drilling, pit exploration, sampling and testing, and geological remote sensing. Mineral geological exploration, on the other hand, is based on advanced geological science theories and, on the basis of extensive field geological observations and the collection and collation of relevant geological data, adopts comprehensive geological means and methods such as geological surveying, geophysical and geochemical exploration, and drilling and pit exploration engineering to obtain reliable geological and mineral information.

[0003] In existing mineral geological exploration equipment, there is no good structure to fix the equipment. On steep slopes, the equipment may move during exploration due to the lack of proper fixation, which reduces the accuracy of the exploration.

[0004] Therefore, this utility model proposes a mineral geological exploration device. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a mineral geological exploration device that can solve the following problems:

[0006] Existing mineral geological exploration equipment lacks a proper structure for securing the device. On steep slopes, the device may move during exploration due to the lack of secure fixation, reducing the accuracy of the exploration.

[0007] To solve the above-mentioned technical problems, the present invention proposes the following technical solution:

[0008] A mineral geological exploration device includes a mounting base frame, a moving mechanism fixedly connected to the bottom end of the mounting base frame, a handle and an outer protective shell fixedly connected to the top end of the mounting base frame, an exploration drilling mechanism embedded in the inner side of the outer protective shell, a support assembly embedded in the inner side of the mounting base frame, a guide groove formed on the inner surface of the mounting base frame, and the support assembly including a first support frame, a connecting bridge and a second support frame fixedly connected in sequence, a guide rod fixedly connected to the outer end of both the first support frame and the second support frame, and an installation cavity formed inside both the first support frame and the second support frame, into which a telescopic rod, a drive mechanism and a drilling screw are embedded in sequence from top to bottom.

[0009] Furthermore, the outer protective shell is designed in an "L" shape, with an exploration opening at its bottom corresponding to the exploration drilling mechanism, and sound insulation buffer layers are fixedly connected to both sides of the outer protective shell.

[0010] Furthermore, the mounting base frame is horizontally set as a rectangular frame, and the guide groove is set as an arc groove, which is opened on both sides of the inner longitudinal side of the mounting base frame.

[0011] Furthermore, both the first support frame and the second support frame are configured as right-angled triangular frames, and the two are connected and fixed by a connecting bridge, which is longitudinally connected at one end between the first support frame and the second support frame.

[0012] Furthermore, the bottom surfaces of both the first and second support frames are provided with multiple sets of separate toothed pads.

[0013] Furthermore, two sets of mounting supports are provided protruding outward at the corner of the connecting bridge end. These supports are connected to one end of the mounting base frame via a matching shaft. A drive motor is also provided at the outer end of the shaft.

[0014] Furthermore, the guide rod is fixedly connected to the outer corner of one end of the first support frame and the second support frame, and simultaneously slides into the guide groove.

[0015] Furthermore, the telescopic rod is configured as a small hydraulic telescopic rod, which is fixedly embedded in the first support frame and the second support frame. The drive mechanism is configured as a drive motor, which is fixedly connected to the telescopic rod by a set of docking plates. The drilling screw protrudes outward from the first support frame and the second support frame.

[0016] As can be seen from the above technical solution, the beneficial effects of this utility model are:

[0017] 1. This utility model achieves the effect of surrounding and protecting the exploration drilling mechanism through an outer protective shell.

[0018] 2. This utility model achieves the effect of basic support for the overall device by installing a base frame, and provides sliding guidance for the support components by cooperating with the inner guide groove.

[0019] 3. In this utility model, the first and second support frames arranged in a triangular shape achieve the effect of supporting the entire device from the bottom position. At the same time, the first and second support frames, which are adjustable by flipping, facilitate the flipping and adjustment within the mounting base frame. The guide rod provides guidance for the flipping and adjustment of the entire support assembly.

[0020] 4. This utility model achieves the effect of controlling the overall lifting and lowering adjustment of the drilling screw through the telescopic rod, the effect of controlling the rotation adjustment of the drilling screw through the drive mechanism, and the effect of embedding the drilling screw into the external ground to achieve fixation. Attached Figure Description

[0021] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0022] Figure 1 This is a side view of the overall structure of this utility model;

[0023] Figure 2 In this utility model Figure 1 Enlarged view of the structure at point A in the middle;

[0024] Figure 3 In this utility model Figure 1 Enlarged view of the structure at point B in the middle;

[0025] Figure 4 This is a schematic diagram of the connection between the outer and inner protective shells in this utility model;

[0026] Figure 5 This is a schematic diagram of the connection of the support components in this utility model;

[0027] Figure 6 In this utility model Figure 5 Enlarged view of the structure at point C.

[0028] Figure label:

[0029] 1. Mounting base frame; 2. Moving mechanism; 3. Handle; 4. Outer protective shell; 5. Exploration drilling mechanism; 6. Support assembly; 7. Guide groove; 8. Mounting cavity; 9. Telescopic rod; 10. Drive mechanism; 11. Drilling screw; 12. First support frame; 13. Second support frame; 14. Connecting bridge; 15. Guide rod. Detailed Implementation

[0030] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.

[0031] See Figure 1-6As shown, a mineral geological exploration device includes a mounting base frame 1. A moving mechanism 2 is fixedly connected to the bottom end of the mounting base frame 1. A handle 3 and an outer protective shell 4 are fixedly connected to the top end of the mounting base frame 1. An exploration drilling mechanism 5 is embedded in the inner side of the outer protective shell 4. A support assembly 6 is embedded in the inner side of the mounting base frame 1. A guide groove 7 is formed on the inner surface of the mounting base frame 1. The support assembly 6 includes a first support frame 12, a connecting bridge 14, and a second support frame 13 that are fixedly connected in sequence. Guide rods 15 are fixedly connected to the outer ends of both the first support frame 12 and the second support frame 13. An installation cavity 8 is formed inside both the first support frame 12 and the second support frame 13. A telescopic rod 9, a drive mechanism 10, and a drilling screw 11 are embedded in the installation cavity 8, arranged in sequence from top to bottom.

[0032] In this embodiment of the utility model, the outer protective shell 4 is generally L-shaped, with an exploration opening at its bottom corresponding to the exploration drilling mechanism 5, and sound insulation buffer layers are fixedly connected to both sides of the outer protective shell 4. The outer protective shell 4 achieves the effect of surrounding and protecting the exploration drilling mechanism 5.

[0033] The mounting base frame 1 is a horizontally rectangular frame. The guide groove 7 is an arc-shaped groove, which is opened on both sides of the inner longitudinal side of the mounting base frame 1. The mounting base frame 1 provides basic support for the entire device, and the guide groove 7 on the inner side provides sliding guidance for the support component 6.

[0034] The first support frame 12 and the second support frame 13 are both set as right-angled triangular frames, and are connected and fixed together by a connecting bridge 14. The connecting bridge 14 is longitudinally connected to one end of the first support frame 12 and the second support frame 13. The bottom surfaces of the first support frame 12 and the second support frame 13 are provided with multiple sets of separate toothed pads. Two sets of mounting supports are provided outwardly at the corners of the connecting bridge 14. They are flipped and connected to one end of the mounting base frame 1 through matching shafts. A drive motor is also provided at the outer end of the shaft. The guide rod 15 is fixedly connected to the outer corner of one end of the first support frame 12 and the second support frame 13, and slides into the guide groove 7. The triangular arrangement of the first support frame 12 and the second support frame 13 achieves the effect of supporting the entire device from the bottom position. At the same time, the flip-adjustable first support frame 12 and the second support frame 13 facilitate the flip-adjustment within the mounting base frame 1. The guide rod 15 provides guidance for the flip-adjustment of the entire support assembly 6.

[0035] When using this device on a slope, the user rotates the shaft and drive motor that are matched between the connecting bridge 14 and the mounting base frame 1, causing the entire support assembly 6 to flip downwards. This causes the bottom surfaces of the triangularly arranged first support frame 12 and second support frame 13 to fit against the external slope ground, forming support for the entire device. When the first support frame 12 and second support frame 13 are flipped and adjusted, the guide rod 15 slides and adjusts along the guide groove 7 simultaneously to ensure its flipping stability and provide guidance.

[0036] The telescopic rod 9 is a small hydraulic telescopic rod, which is fixedly embedded in the first support frame 12 and the second support frame 13. The drive mechanism 10 is a drive motor, which is fixedly connected to the telescopic rod 9 by a set of docking plates. The drilling screw 11 protrudes outward from the first support frame 12 and the second support frame 13. The telescopic rod 9 is used to control the overall lifting and lowering adjustment of the drilling screw 11. The drive mechanism 10 is used to control the rotation adjustment of the drilling screw 11. The drilling screw 11 is used to embed itself into the external ground to achieve a fixed effect.

[0037] After adjusting the overall support assembly 6 to fit against the external ground, the telescopic rod 9 is activated, controlling the drilling screw 11 to descend. Simultaneously, the drilling screw 11 rotates under the control of the drive mechanism 10, embedding itself into the external ground, thus fixing the entire device in the slope position. At the same time, the toothed pads on the ground of the first support frame 12 and the second support frame 13 enhance the contact friction between them and the external ground, ensuring the stability of the device. When the device is not in use, the two sets of support frames are flipped upwards to above the mounting base frame 1, located on both sides of the outer protective shell 4, forming auxiliary protection.

[0038] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model.

Claims

1. A mineral geological exploration device, characterized in that: The utility model provides an earth boring device, including installation bottom frame (1), the bottom end fixed connection of installation bottom frame (1) has removed mechanism (2), the top end fixed connection of installation bottom frame (1) has handle (3) and outer protective shell (4), the inboard of outer protective shell (4) is embedded and is provided with surveying earth boring mechanism (5), the inboard of installation bottom frame (1) is embedded and is provided with support subassembly (6), the inside surface of installation bottom frame (1) is provided with guide groove (7), support subassembly (6) includes the first support frame (12) of fixed connection in proper order, connecting bridge (14) and second support frame (13), the outer end of first support frame (12) and second support frame (13) all are fixedly connected with guide rod (15), the inside of first support frame (12) and second support frame (13) all are provided with installation cavity (8), and installation cavity (8) is embedded and is provided with telescopic rod (9), drive mechanism (10) and earth boring screw rod (11) from top to bottom in sequence.

2. The mineral geological exploration device according to claim 1, characterized in that: The outer protective shell (4) is provided as a whole in an "L" shape, an exploration opening is formed in the bottom end of the outer protective shell (4) corresponding to the surveying earth boring mechanism (5), and the outer protective shell (4) is fixedly connected with a sound insulation buffer layer on the two side surfaces.

3. The mineral geological exploration device according to claim 1, characterized in that: The installation bottom frame (1) is provided horizontally as a whole in a rectangular frame, the guide groove (7) is provided as an arc-shaped groove and is formed in the inside of the installation bottom frame (1) at the longitudinal two side positions.

4. The mineral geological exploration device according to claim 1, characterized in that: The first support frame (12) and the second support frame (13) are both provided as right-angled triangular frames and are fixedly connected through the connecting bridge (14) between the two, and the connecting bridge (14) is connected longitudinally at one end position between the first support frame (12) and the second support frame (13).

5. The mineral geological exploration device according to claim 4, characterized in that: The bottom surface of the first support frame (12) and the second support frame (13) is provided with a plurality of component type tooth-shaped base plates.

6. The mineral geological exploration device according to claim 1, characterized in that: Two groups of mounting supports are protrusively provided at the end corner positions of the connecting bridge (14) and are reversibly connected with one end of the installation bottom frame (1) through the matched shaft body, and the outer end of the shaft body is simultaneously provided with a driving motor.

7. The mineral geological exploration device according to claim 1, characterized in that: The guide rod (15) is fixedly connected with the outer end corner position of one end of the first support frame (12) and the second support frame (13) and is simultaneously slidably embedded in the guide groove (7).

8. The mineral geological exploration device according to claim 1, characterized in that: The telescopic rod (9) is provided as a small-sized hydraulic telescopic rod and is fixedly embedded in the first support frame (12) and the second support frame (13), the driving mechanism (10) is provided as a driving motor and is fixedly connected with a group of butt joint plates between the telescopic rod (9), and the earth boring screw rod (11) is protrusively provided outside the first support frame (12) and the second support frame (13).