Storage device for geological exploration soil sampling

By using curved plates and hydraulic telescopic cylinders in the geological exploration storage device, the problem of increasing the weight of the box due to the large amount of sampling soil is solved, and the portability and convenience of use of the device are improved. It is suitable for sampling and preservation of soil in geological exploration.

CN223015291UActive Publication Date: 2025-06-24HUBEI LIANYUNGANG ELECTRIC POWER DESIGN CO LTD
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Patent Information

Application Number
CN202422016499.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-24
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

In geological exploration, the large amount of sampled soil leads to an increase in the weight of the storage box, which in turn affects portability and makes it difficult to carry and follow-up testing.

Method used

A storage device for geological exploration and soil sampling was designed, using arc plates to reduce the contact area, and the hydraulic telescopic cylinder drives the support wheel to contact the bottom surface, improves portability, and facilitates deployment and collection through the hinged structure and buckle plate.

Benefits of technology

By reducing friction and improving portability, the obstacles to storage box passing rate are reduced, the portability and convenience of use of the device are improved, and subsequent soil detection is facilitated.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage device for geological exploration soil sampling, which comprises a storage box, two groups of first limiting blocks arranged on the storage box, two groups of fixing plates arranged on the storage box, a hydraulic telescopic cylinder arranged on the fixing plates, a supporting plate arranged at one end of the hydraulic telescopic cylinder, a limiting groove arranged on the supporting plate, and a limiting groove arranged on the limiting groove. The groove is matched with the first limiting block, a hole is formed in the supporting plate, a shaft is matched in the hole, and a supporting wheel is arranged at one end of the shaft, so that the passing rate of the storage box 1 is increased, when the soil surface is flat, the hydraulic telescopic cylinder 4 is unfolded to drive the supporting plate 5 and the supporting wheel 6 to move downwards, and therefore the supporting wheel 6 makes contact with the bottom surface; and finally, a first handle 13 is pulled by hand, so that a second vertical plate 12 and a first vertical plate 10 are separated under the action of a second limiting block 11, the device is unfolded, and the use convenience is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of geological exploration, in particular to a storage device for soil sampling in geological exploration. Background Art

[0002] Geological exploration can be generally understood as geological work. According to the needs of economic construction, national defense construction and the development of science and technology, geological exploration methods such as surveying and mapping, geophysical exploration, geochemical prospecting, drilling, adit exploration, sampling and testing, and geological remote sensing are used to conduct investigation and research on the geological conditions such as rocks, stratigraphic structures, minerals, groundwater, and landforms in a certain area, thus requiring soil sampling and inspection.

[0003] Since the areas where sampling is generally required are relatively large, in some special areas, multiple samplings are needed, and the sampled soil also needs to be stored to facilitate subsequent detection with professional instruments. When there is too much soil sampling, the storage box will become heavier and heavier, making it inconvenient to carry later. To improve the portability of the soil sampling box, this solution proposes a storage device for soil sampling in geological exploration. Summary of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide a storage device for soil sampling in geological exploration to solve the problems raised in the background art.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A storage device for soil sampling in geological exploration includes a storage box. Two groups of first limit blocks are arranged on the storage box. Two groups of fixed plates are arranged on the storage box. A hydraulic telescopic cylinder is arranged on the fixed plate. One end of the hydraulic telescopic cylinder is provided with a support plate. A limit groove is opened on the support plate, and the groove is matched with the first limit block. A hole is opened on the support plate, and a shaft is fitted in the hole. One end of the shaft is provided with a support wheel. A group of arc-shaped plates are arranged at the bottom of the storage box, and the bottom of the arc-shaped plate is arc-shaped. A first hinge seat is arranged on the storage box, and a rotating block is hinged on the first hinge seat. A first vertical plate is arranged on the rotating block. A groove is opened on the first vertical plate, and a second limit block is fitted in the groove. A second vertical plate is arranged on the second limit block. A first handle is arranged on the second vertical plate. The first vertical plate and the second vertical plate are slidably connected.

[0007] Preferably, a group of clamping plates are arranged on the storage box. An arc-shaped protruding block is arranged on the clamping plate. The second vertical plate and the first vertical plate are clamped and connected to the clamping plate.

[0008] Preferably, a group of second hinge seats are arranged on the storage box. A cover plate is hinged on the second hinge seat. A group of pulling plates are arranged on the cover plate.

[0009] Preferably, a partition is provided inside the storage box, and a storage mechanism is provided inside the storage box. The storage mechanism includes a storage box, a set of engaging grooves are formed on the storage box, a top plate is provided on the storage box, a second handle is provided on the top plate, and a set of engaging blocks are provided on the top plate. The engaging blocks are engaged in the engaging grooves.

[0010] Preferably, a rectangular groove is formed on the top plate, and a sign plate is provided in the rectangular groove.

[0011] The utility model has the following beneficial effects:

[0012] Through the arc-shaped plate, the contact area between the storage box and the soil is reduced, thereby reducing the friction force and improving the passing rate of the storage box. When the soil surface is relatively flat, by expanding the hydraulic telescopic cylinder, the support plate and the support wheels are driven to move downward, so that the support wheels contact the bottom surface, so that the arc-shaped plate is separated from the bottom surface, thereby improving the portability of the storage box. Finally, by pulling the first handle by hand, under the action of the second limiting block, the second vertical plate and the first vertical plate are separated, so as to expand the device and improve the convenience of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the storage device;

[0014] Figure 2 It is a schematic diagram of the structure of the storage box;

[0015] Figure 3 It is a schematic diagram of the structure of the storage box;

[0016] Figure 4 It is a schematic diagram of the structure of the engaging plate.

[0017] In the figure: 1. Storage box; 101. Partition; 2. First limiting block; 3. Fixed plate; 4. Hydraulic telescopic cylinder; 5. Support plate; 6. Support wheels; 7. Arc-shaped plate; 8. First hinge seat; 9. Rotating block; 10. First vertical plate; 11. Second limiting block; 12. Second vertical plate; 13. First handle; 14. Engaging plate; 15. Second hinge seat; 16. Cover plate; 17. Pulling plate; 18. Storage mechanism; 1801. Storage box; 1802. Engaging grooves; 1803. Top plate; 1804. Second handle; 1805. Engaging blocks; 1806. Rectangular groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0019] Refer toFigures 1-4 , a storage device for geological exploration soil sampling, including a storage box 1. There are two groups of first limit blocks 2 arranged on the storage box 1. There are two groups of fixed plates 3 arranged on the storage box 1. A hydraulic telescopic cylinder 4 is arranged on the fixed plate 3. One end of the hydraulic telescopic cylinder 4 is provided with a support plate 5. A limit groove is opened on the support plate 5, and the groove is matched with the first limit block 2. A hole is opened on the support plate 5, and a shaft is fitted in the hole. One end of the shaft is provided with a support wheel 6. A group of arc-shaped plates 7 are arranged at the bottom of the storage box 1. The bottom of the arc-shaped plate 7 is arc-shaped. A first hinge seat 8 is arranged on the storage box 1. A rotating block 9 is hinged on the first hinge seat 8. A first vertical plate 10 is arranged on the rotating block 9. A groove is opened on the first vertical plate 10, and a second limit block 11 is fitted in the groove. A second vertical plate 12 is arranged on the second limit block 11. A first handle 13 is arranged on the second vertical plate 12. The first vertical plate 10 and the second vertical plate 12 are slidably connected. Since the ruggedness of the bottom surface of the area where the soil sampling is located is different, the increasing amount of sampled soil inside the storage box 1 will gradually increase the mass of the storage box 1. When the ruggedness of the bottom surface is too complex, through the arc-shaped plate 7, the contact area between the storage box 1 and the soil is reduced, thereby reducing the friction force and improving the passing rate of the storage box 1. When the soil surface is relatively flat, by extending the hydraulic telescopic cylinder 4, the support plate 5 and the support wheel 6 are driven to move downward, so that the support wheel 6 contacts the bottom surface, and the arc-shaped plate 7 is separated from the bottom surface, thereby improving the portability of the storage box 1. Finally, by pulling the first handle 13 by hand, under the action of the second limit block 11, the second vertical plate 12 and the first vertical plate 10 are separated, and the device is unfolded to improve the convenience of use.

[0020] A group of clamping plates 14 are arranged on the storage box 1. Arc-shaped protruding blocks are arranged on the clamping plates 14. The second vertical plate 12 is clamped and connected to the clamping plate 14, and the first vertical plate 10 is clamped and connected to the clamping plate 14. The first vertical plate 10 and the second vertical plate 12 are clamped and fixed by the clamping plate 14, so as to achieve the function of convenient pulling.

[0021] A set of second hinge seats 15 are provided on the storage box 1. A cover plate 16 is hinged on the second hinge seats 15. A set of pulling plates 17 are provided on the cover plate 16. The opening and closing of the cover plate 16 is controlled by the pulling plates 17. A partition 101 is provided inside the storage box 1. A storage mechanism 18 is provided inside the storage box 1. The storage mechanism 18 includes a storage box 1801. A set of engaging grooves 1802 are formed on the storage box 1801. A top plate 1803 is provided on the storage box 1801. A second handle 1804 is provided on the top plate 1803. A set of engaging blocks 1805 are provided on the top plate 1803. The engaging blocks 1805 are engaged in the engaging grooves 1802. A rectangular groove 1806 is formed on the top plate 1803. A label plate is provided in the rectangular groove 1806. The sampled soil is loaded into the storage box 1801, and then the top plate 1803 is covered on the top of the storage box 1801, so as to collect, classify and store the sampled soil inside. The label plate provided in the rectangular groove 1806 marks the sampling time and soil quality of the soil, thereby improving the convenience of using the storage box 1801.

[0022] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A storage device for soil sampling in geological exploration, comprising a storage box (1), characterized in that: The storage box (1) is provided with two groups of first limit blocks (2), the storage box (1) is provided with two groups of fixed plates (3), the fixed plates (3) are provided with a hydraulic telescopic cylinder (4), one end of the hydraulic telescopic cylinder (4) is provided with a support plate (5), the support plate (5) is provided with a limit groove, the limit groove is matched with the first limit block (2), the support plate (5) is provided with a hole, a shaft is matched in the hole, and a support wheel (6) is provided at one end of the shaft; A group of arc-shaped plates (7) are arranged at the bottom of the storage box (1), and the bottom of the arc-shaped plates (7) is in the form of an arc surface; The storage box (1) is provided with a first hinge seat (8), a rotating block (9) is hinged on the first hinge seat (8), a first vertical plate (10) is provided on the rotating block (9), a groove is provided on the first vertical plate (10), a second limiting block (11) is matched in the groove, a second vertical plate (12) is provided on the second limiting block (11), a first handle (13) is provided on the second vertical plate (12), and the first vertical plate (10) is slidably connected to the second vertical plate (12).

2. A storage device for soil sampling in geological exploration according to claim 1, characterized in that: The storage box (1) is provided with a group of snap-fit ​​plates (14), the snap-fit ​​plates (14) are provided with arc-shaped protruding blocks, the snap-fit ​​plates (14) are snap-fitted with the second vertical plates (12), and the snap-fit ​​plates (14) are snap-fitted with the first vertical plates (10).

3. A storage device for soil sampling in geological exploration according to claim 1, characterized in that: The storage box (1) is provided with a group of second hinge seats (15), a cover plate (16) is hingedly connected to the second hinge seat (15), and a group of pulling plates (17) is provided on the cover plate (16).

4. A storage device for soil sampling in geological exploration according to claim 1, characterized in that: A partition (101) is arranged inside the storage box (1), and a storage mechanism (18) is arranged inside the storage box (1). The storage mechanism (18) comprises a storage box (1801), and a group of snap-fit ​​grooves (1802) are provided on the storage box (1801). A top plate (1803) is arranged on the storage box (1801), and a second handle (1804) is arranged on the top plate (1803). A group of snap-fit ​​blocks (1805) are arranged on the top plate (1803), and the snap-fit ​​blocks (1805) are snap-fitted on the snap-fit ​​grooves (1802).

5. A storage device for soil sampling in geological exploration according to claim 4, characterized in that: A rectangular groove (1806) is provided on the top plate (1803), and a sign is provided in the rectangular groove (1806).