Geological record sampling device

By employing a combined structure of a collection box, motor, cylinder, and auger in the geological logging and sampling device for high slopes in open-pit mines, along with a lifting mechanism and sliding bar and spring design, the problem of material splashing caused by loose sampling doors was solved, achieving efficient collection and stable storage, and improving sampling efficiency and convenience.

CN223926036UActive Publication Date: 2026-02-17YUNNAN HUALIAN ZINC & INDIUM
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Patent Information

Application Number
CN202520140858.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-02-17
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

During the geological logging and sampling process on the high slope of an open-pit mine, the sampling gate became loose when the motor rotated, causing the collected material to splash and reducing sampling efficiency.

Method used

The system employs a combination structure of a collection box, motor, cylinder, and auger. Through the design of the lifting mechanism, slide bar, and spring, it achieves stable rotation of the auger and stable downward pressure of the collection box, thus preventing material splashing.

Benefits of technology

It improves the sampling efficiency and ease of use of the sampling device, ensures stable material storage, avoids material splashing, and enhances the overall performance of the sampling device.

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Abstract

The geological logging and sampling device comprises a collecting box, a motor is fixedly connected to the top of the collecting box, the output end of the motor penetrates into the collecting box, a cylinder is fixedly connected to the bottom in the collecting box, and an auger is arranged in the cylinder. The auger is driven by the motor to rotate, the auger is matched with the cylinder to collect soil in the process, and when the placing frame is in contact with the ground, the cylinder is stopped from being inserted downwards, and soil needs to be collected deeper, the collecting box is pushed to move downwards, the collecting box drives the lifting plate to slide on the surface of the sliding rod, the lifting plate compresses the spring, and the soil is collected. The collecting box drives the motor, the auger and the cylinder to move downwards, the auger conveys soil into the collecting box, the device has the advantage of efficient collection, when the motor works, the sampling box is in a standing state, materials in the sampling box are stably stored, and the collecting efficiency of the sampling device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mine geological sampling device technical field, concretely is a geological recording sampling device. BACKGROUND

[0002] In the process of geological recording sampling of high slope of open pit mine, a sampling device needs to be used. CN214584179U discloses a mine geological sampling device, which comprises a motor, the motor is fixed on a mounting plate, the output end of the motor is connected with a sampling box through the mounting plate, a sampling port is arranged on the sampling box, a sampling door is arranged on the outer side of the sampling box opposite to the sampling port, a threaded rod is connected with the bottom of the sampling box, the threaded rod is provided with a hollow structure, and the threaded rod and the sampling box are integrated into a T-shaped structure, a drill bit is arranged at the bottom of the threaded rod, and a sample guide support is arranged at the top of the drill bit; the threaded rod penetrates through a supporting mechanism, the supporting mechanism comprises a base and a plurality of supporting legs, a plurality of supports are arranged on the outer wall of the top of the base, the supports are rotatably connected with the supporting legs through fixing shafts, and the base is threadedly connected with the threaded rod. The utility model can quickly extract soil samples, and has high stability and is convenient to carry when collecting soil.

[0003] The prior art scheme has the following defects: in the process of rotating the sampling box driven by the motor, the sampling door also rotates, when the sampling door is shaken for a long time, the sampling door will be loose with the sampling box, when the sampling door is shaken open, the collected materials in the sampling box will splash everywhere, which causes the collected materials in the sampling box to be unable to be stored, and reduces the collection efficiency of the sampling device. UTILITY MODEL CONTENTS

[0004] The utility model aims at solving the defects in the above background art, and provides an open pit mine high slope geological recording sampling device, which has the advantages of efficient collection, can solve the problems that in the process of rotating the sampling box driven by the motor, the sampling door also rotates, when the sampling door is shaken for a long time, the sampling door will be loose with the sampling box, when the sampling door is shaken open, the collected materials in the sampling box will splash everywhere, which causes the collected materials in the sampling box to be unable to be stored, and reduces the collection efficiency of the sampling device.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] An open pit mine high slope geological recording sampling device, comprising a collecting box, a motor is fixedly connected to the top of the collecting box, the output end of the motor penetrates into the inside of the collecting box, a cylinder is fixedly connected to the bottom of the inside of the collecting box, an auger is arranged in the inside of the cylinder, the top of the auger is fixedly connected to the output end of the motor, lifting plates are fixedly connected to the bottom of both sides of the collecting box, a lifting mechanism is arranged on the outside of the collecting box, a work plate is fixedly connected to the top of the surface of the cylinder, and the surface of the work plate is fixedly connected to the inner wall of the collecting box.

[0007] As the utility model prefers, the lifting mechanism includes the placing rack, the placing rack is located the outside of the lifting plate, the inside of the lifting plate is provided with the slide rod, the bottom of the slide rod is fixedly connected in the bottom of the inner wall of the placing rack, the surface of the slide rod is equipped with the spring, the bottom of the spring is fixedly connected in the bottom of the inner wall of the placing rack, the top of the spring is fixedly connected in the bottom of the lifting plate.

[0008] As the utility model prefers, the both sides of the placing rack are provided with the sliding slot, the inside of the sliding slot is provided with the sliding block, the surface of the sliding block is fixedly connected in the surface of the lifting plate.

[0009] As the utility model prefers, the outside of the sliding block is fixedly connected with the linkage plate, and the linkage plate is located at the outside of the placing rack.

[0010] As the utility model prefers, the inside of the lifting plate is fixedly connected with the supporting plate, and the inside of the supporting plate is fixedly connected in the surface of the collecting box.

[0011] As the utility model prefers, the top of the working plate is fixedly connected with the flow guide plate, and the flow guide plate is located in the inside of the collecting box.

[0012] As the utility model prefers, the both sides of the bottom of the working plate are fixedly connected with the supporting column, and the bottom of the supporting column is fixedly connected in the bottom of the inner wall of the collecting box.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] 1、The utility model discloses a motor drives the auger to rotate, in this process, the auger cooperates with the cylinder, and the soil is collected, when the placing rack contacts the ground, stops downwardly inserting the cylinder, when needing to collect the deeper layer of soil, the collecting box is moved down, and the collecting box drives the lifting plate to slide on the surface of the slide rod, and the lifting plate compresses the spring, and the collecting box drives the motor, the auger and the cylinder to move down, and the auger transports the soil to the inside of the collecting box, has the advantage of efficient collection, when the motor works, the sampling box is in the stationary state, and the material in the inside of the sampling box is stably stored, so that the collection efficiency of the sampling device is improved.

[0015] 2、The utility model discloses a lifting mechanism, can control the collecting box, avoids needing manual lifting after the collecting box is pressed down, improves the use convenience of the collecting box. ACCURACY

[0016] Figure 1 It is the structural schematic diagram of the utility model;

[0017] Figure 2 It is the three -dimensional section view of the collecting box of the utility model;

[0018] Figure 3 It is a perspective view of the auger of the utility model;

[0019] Figure 4 It is the utility model Figure 3 A enlarged structural view at A in the middle.

[0020] In the figure: 1, collecting box; 2, motor; 3, cylinder; 4, auger; 5, lifting plate; 6, lifting mechanism, 61, placing rack, 62, sliding rod, 63, spring; 7, work plate; 8, sliding slot; 9, sliding block; 10, linkage plate; 11, support plate; 12, guide plate; 13, support column. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not 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.

[0022] As Figures 1 to 4 shown, the utility model provides a kind of open pit high slope geological recording sampling device, including collecting box 1, the top of collecting box 1 is fixedly connected with motor 2, the output end of motor 2 is penetrated to the inside of collecting box 1, the bottom of the inside of collecting box 1 is fixedly connected with cylinder 3, cylinder 3 is provided with auger 4 in the inside, the top of auger 4 is fixedly connected in the output end of motor 2, the bottom of both sides of collecting box 1 is fixedly connected with lifting plate 5, the outside of collecting box 1 is provided with lifting mechanism 6, the top of the surface of cylinder 3 is fixedly connected with work plate 7, the surface of work plate 7 is fixedly connected in the inner wall of collecting box 1.

[0023] Referring to Figure 2 , lifting mechanism 6 includes placing rack 61, placing rack 61 is located at the outside of lifting plate 5, the inside of lifting plate 5 is provided with sliding rod 62, the bottom of sliding rod 62 is fixedly connected in the bottom of the inner wall of placing rack 61, spring 63 is sleeved on the surface of sliding rod 62, the bottom of spring 63 is fixedly connected in the bottom of the inner wall of placing rack 61, the top of spring 63 is fixedly connected in the bottom of lifting plate 5.

[0024] As a kind of technical optimization scheme of the utility model, by setting lifting mechanism 6, collecting box 1 can be controlled, avoid collecting box 1 to need artificial lifting after pressing down, improve the use convenience of collecting box 1.

[0025] Referring to Figure 1 , the both sides of placing rack 61 are all provided with sliding slot 8, sliding slot 8 is provided with sliding block 9 in the inside, the surface of sliding block 9 is fixedly connected on the surface of lifting plate 5.

[0026] As a technical optimization scheme of the utility model, through setting up the sliding groove 8 and the sliding block 9, the lifting plate 5 can be stably slid, and the lifting plate 5 is prevented from shaking during the sliding movement, so that the lifting plate 5 is prevented from loosening, and the sliding stability of the lifting plate 5 is improved.

[0027] Referring to Figure 1 The outer side of the sliding block 9 is fixedly connected with the linkage plate 10, and the linkage plate 10 is located at the outer side of the placing rack 61.

[0028] As a technical optimization scheme of the utility model, through setting up the linkage plate 10, the sliding block 9 can be reinforced, and the sliding block 9 is prevented from deforming during the movement, so that the durability of the sliding block 9 is improved.

[0029] Referring to Figure 2 The inner side of the lifting plate 5 is fixedly connected with the support plate 11, and the inner side of the support plate 11 is fixedly connected to the surface of the collecting box 1.

[0030] As a technical optimization scheme of the utility model, through setting up the support plate 11, the structural strength of the lifting plate 5 can be strengthened, and the lifting plate 5 is prevented from deforming during long-term use, so that the lifting plate 5 cannot be normally used, and the use stability of the lifting plate 5 is improved.

[0031] Referring to Figure 2 The top of the work plate 7 is fixedly connected with the flow guide plate 12, and the flow guide plate 12 is located inside the collecting box 1.

[0032] As a technical optimization scheme of the utility model, through setting up the flow guide plate 12, the materials inside the collecting box 1 can be guided, and the materials are prevented from being difficult to discharge from the inside of the collecting box 1, so that the discharging efficiency of the collecting box 1 is improved.

[0033] Referring to Figure 4 Both sides of the bottom of the work plate 7 are fixedly connected with the support column 13, and the bottom of the support column 13 is fixedly connected to the bottom of the inner wall of the collecting box 1.

[0034] As a technical optimization scheme of the utility model, through setting up the support column 13, the work plate 7 can be supported and reinforced, and the work plate 7 is prevented from collapsing during long-term use, so that the work plate 7 cannot normally work.

[0035] The working principle and use process of the utility model: in use, first, part of the cylinder 3 is inserted into the soil, during starting motor 2, motor 2 drives the auger 4 to rotate, in this process, the auger 4 cooperates with the cylinder 3, and the soil is collected, when the placing frame 61 contacts the ground, stop inserting the cylinder 3 downward, when needing to collect the deeper layer of soil, push the collection box 1 to move downward, the collection box 1 drives the lifting plate 5 to slide on the surface of the slide rod 62, the lifting plate 5 compresses the spring 63, the collection box 1 drives motor 2, the auger 4 and the cylinder 3 to move downward, and the auger 4 transports the soil to the inside of the collection box 1.

[0036] In conclusion: the open-pit mine high slope geological logging sampling device, through the cooperation of the collection box 1, motor 2, cylinder 3, auger 4, lifting plate 5 and lifting mechanism 6, solves the problem that the sampling door also rotates in the process that the motor drives the sampling box to rotate, when the sampling door is shaken for a long time, the sampling door will be loose with the sampling box, when the sampling door is shaken open, the materials collected in the sampling box will splash everywhere, so that the collected materials in the sampling box cannot be saved, and the sampling device collection efficiency problem is reduced.

[0037] It should be noted that, in this document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0038] Although the embodiments of the utility model have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A device for sampling geological records of high slope of open-pit mine, comprising a collection box (1), characterized in that: The top of collecting box (1) is fixedly connected with motor (2), the output end of motor (2) penetrates to the inside of collecting box (1), the bottom of the inside of collecting box (1) is fixedly connected with cylinder (3), the inside of cylinder (3) is provided with auger (4), the top of auger (4) is fixedly connected with the output end of motor (2), the bottom of both sides of collecting box (1) is fixedly connected with lifting plate (5), the outside of collecting box (1) is provided with lifting mechanism (6), the top of the surface of cylinder (3) is fixedly connected with work plate (7), the surface of work plate (7) is fixedly connected with the inner wall of collecting box (1).

2. The high slope geological logging sampling device for open-pit mine according to claim 1, characterized in that: The lifting mechanism (6) includes placing rack (61), the placing rack (61) is located on the outside of lifting plate (5), the inside of lifting plate (5) is provided with slide rod (62), the bottom of slide rod (62) is fixedly connected with the bottom of the inner wall of placing rack (61), the surface of slide rod (62) is sleeved with spring (63), the bottom of spring (63) is fixedly connected with the bottom of the inner wall of placing rack (61), the top of spring (63) is fixedly connected with the bottom of lifting plate (5).

3. The high slope geological logging sampling device for open-pit mine according to claim 2, characterized in that: The both sides of placing rack (61) are provided with sliding groove (8), the inside of sliding groove (8) is provided with sliding block (9), the surface of sliding block (9) is fixedly connected with the surface of lifting plate (5).

4. The high slope geological logging sampling device for open-pit mine according to claim 3, characterized in that: The outside of sliding block (9) is fixedly connected with linkage plate (10), the linkage plate (10) is located on the outside of placing rack (61).

5. The geological logging sampling device for high slope of open-pit mine according to any one of claims 1-4, characterized in that: The inside of lifting plate (5) is fixedly connected with support plate (11), the inside of support plate (11) is fixedly connected with the surface of collecting box (1).

6. The geological logging sampling device for high slope of open-pit mine according to any one of claims 1-4, characterized in that: The top of work plate (7) is fixedly connected with guide plate (12), the guide plate (12) is located in the inside of collecting box (1).

7. The geological logging sampling device for high slope of open-pit mine according to any one of claims 1-4, characterized in that: The bottom of both sides of work plate (7) is fixedly connected with support column (13), the bottom of support column (13) is fixedly connected with the bottom of the inner wall of collecting box (1). The bottom of both sides of work plate (7) is fixedly connected with support column (13), the bottom of support column (13) is fixedly connected with the bottom of the inner wall of collecting box (1).

Citation Information

Patent Citations

  • Mine geology sampling device

    CN214584179U