Multifunctional geological core inspection table

The design of the multifunctional geological core inspection table solves the problem of damage and falling of core samples during the transfer and inspection process, realizes efficient and safe core sample inspection, and adapts to different working environments and posture requirements.

CN223435900UActive Publication Date: 2025-10-14POWERCHINA BEIJING ENG CORP
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Patent Information

Application Number
CN202422832897.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-10-14
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing core inspection facilities lack flexibility and adaptability, which causes core samples to be easily damaged during transfer and easily dropped during inspection, affecting the analysis results.

Method used

A multifunctional geological core inspection table was designed, which includes extendable table legs, module brackets, camera modules, desk lamp modules and core baffles. The main table with adjustable height and angle, combined with brakeable pulleys and modular design, can achieve safe transfer and detailed inspection of core samples.

Benefits of technology

It improves the efficiency and safety of core sample inspection, meets the diverse needs of geologists and technicians, reduces the risk of core sample damage and falling, and adapts to different working environments and posture requirements.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a multifunctional geological rock core inspection table. The multifunctional geological rock core inspection table comprises a main table top, extensible table legs, a support sliding groove, a camera module, a table lamp module, a first module support, a second module support, a rock core baffle and a rock core groove. The front side and the rear side of the main table top are each provided with a support sliding groove, the first module support is installed in the support sliding groove in one side in a sliding mode, and the camera module is installed at one end of the first module support. The second module support is installed in the support sliding groove in the other side in a sliding mode, and the table lamp module is installed at one end of the second module support. The utility model provides a multifunctional geological rock core inspection table which can efficiently and safely inspect rock core samples, improve the efficiency and safety of rock core sample inspection and meet various requirements of geologists and technicians in the sample inspection process.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to geological exploration equipment design and manufacturing technical field, concretely relates to a multifunctional geological core inspection platform. BACKGROUND

[0002] The oil and gas industry relies heavily on geological core samples to assess the properties of subsurface rock formations during exploration and production activities. These core samples, which are long cylindrical pieces of rock extracted from subsurface formations, provide valuable direct geological information to geologists and engineers. However, there are several technical challenges and safety hazards in the entire handling process from sampling, inspection to analysis.

[0003] The physical integrity of core samples is crucial, and any excessive manipulation or improper handling of core samples can lead to damage to the core samples, which in turn affects the analysis results of the core samples. The existing core inspection facilities have the following problems: (1) highly fixed, it is not convenient for technical personnel and material handlers to transfer the core samples to be inspected to the core inspection facilities, or to transfer the core samples after inspection from the core inspection facilities to the next processing procedure, and the core samples are easily damaged during the handling process; (2) during the inspection of the core samples, the core samples are easy to fall off, resulting in the loss of valuable core samples.

[0004] Therefore, the traditional core inspection facility is faced with the problem of insufficient flexibility and adaptability, which is not conducive to the efficient and safe inspection of core samples by geologists. INVENTION CONTENTS

[0005] In view of the defects in the prior art, the utility model provides a multifunctional geological core inspection platform, which can effectively solve the above problems.

[0006] The utility model adopts the following technical scheme:

[0007] The utility model provides a multifunctional geological core inspection platform, which comprises a main table (1), an extendable table leg (3), a bracket sliding groove (4), a camera module (5), a table lamp module (6), a first module support (7-1), a second module support (7-2), a core baffle (9) and a core groove (10).

[0008] The bottom four corner positions of the main table (1) are each hingedly installed with one extendable table leg (3), and the height and inclination angle of the main table (1) are adjusted through the extendable table leg (3); the surface of the main table (1) has a main table groove (1-1); a plurality of parallel core grooves (10) are fixedly arranged in the groove of the main table groove (1-1); one side of each core groove (10) is provided with a core baffle (9).

[0009] The front and back sides of the main table top (1) are each provided with a bracket sliding groove (4), the bracket sliding groove (4) on one side is slidably installed with the first module bracket (7-1), one end of the first module bracket (7-1) is installed with the camera module (5); the bracket sliding groove (4) on the other side is slidably installed with the second module bracket (7-2), one end of the second module bracket (7-2) is installed with the table lamp module (6).

[0010] Preferably, the core groove (10) is a groove with a triangular cross section.

[0011] Preferably, the first module bracket (7-1) and the second module bracket (7-2) are angle- and position-adjustable module brackets.

[0012] Preferably, the first module bracket (7-1) and the second module bracket (7-2) are the same in structure and each include a bracket vertical rod (A1), a vertical rod support seat (A2), a bracket horizontal rod (A3), a horizontal rod support seat (A4), a horizontal rod locking piece (A5), and a horizontal rod support seat locking piece (A6).

[0013] The bracket vertical rod (A1) is slidably connected with the bracket sliding groove (4); the top of the bracket vertical rod (A1) is installed with the vertical rod support seat (A2); one side of the vertical rod support seat (A2) is rotatably installed with the horizontal rod support seat (A4) and locked by the horizontal rod support seat locking piece (A6); the bracket horizontal rod (A3) passes through the support hole of the horizontal rod support seat (A4) and is locked by the horizontal rod locking piece (A5).

[0014] Preferably, the extendable table leg (3) includes a brakeable pulley (13), an extendable table leg inner cylinder (14), an extendable table leg outer cylinder (15), and a one-way hinge (16).

[0015] The top of the extendable table leg outer cylinder (15) is installed on the bottom of the main table top (1) through the one-way hinge (16).

[0016] The extendable table leg inner cylinder (14) that can be lifted relative to the extendable table leg outer cylinder (15) is installed below the extendable table leg outer cylinder (15); the bottom end of the extendable table leg inner cylinder (14) is installed with the brakeable pulley (13).

[0017] Preferably, an electric driving mechanism is used to drive the extendable table leg inner cylinder (14) to lift relative to the extendable table leg outer cylinder (15).

[0018] Preferably, the electric driving mechanism includes a table leg inner cylinder force transmission gasket (17), a transmission screw rod (18), and a motor (19).

[0019] The inside of the extendable table leg outer cylinder (15) is provided with a transmission screw (18) in a vertical state, the top of the transmission screw (18) is provided with a motor (19) for driving the transmission screw (18) to rotate, the transmission screw (18) is sleeved with a table leg inner cylinder force transmission gasket (17), and the top of the table leg inner cylinder force transmission gasket (17) and the extendable table leg inner cylinder (14) are fixed.

[0020] Preferably, the lower portion of the main table top (1) is provided with a sub table top (2), the side portion of the main table top (1) is provided with a pullable expansion platform (11), and the lower portion of the expansion platform (11) is provided with a storage rack (12).

[0021] Preferably, the side portion of the main table top (1) is provided with a table top adjusting switch (8).

[0022] The multifunctional geological core inspection table has the following advantages:

[0023] The multifunctional geological core inspection table can efficiently and safely inspect core samples, improves the efficiency and safety of core sample inspection, and meets various needs of geologists and technical personnel in the sample inspection process. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 A perspective view of the multifunctional geological core inspection table is provided.

[0025] Figure 2 A side view of the multifunctional geological core inspection table is provided.

[0026] Figure 3 A structure view of the main table top and related components mounted on the main table top is provided.

[0027] Figure 4 A partial view of the module support is provided.

[0028] Figure 5 A structure view of components in the module support is provided.

[0029] Figure 6 A perspective view of the extendable table leg is provided.

[0030] Figure 7 An internal structure view of the extendable table leg is provided.

[0031] Among them:

[0032] 1. main table top; 1-1. main table top groove; 2. sub table top; 3. extendable table leg; 4. bracket sliding groove; 5. camera module; 6. desk lamp module; 7-1. first module bracket; 7-2. second module bracket; A1. bracket vertical rod; A2. vertical rod support seat; A3. bracket horizontal rod; A4. horizontal rod support seat; A5. horizontal rod locking piece; A6. horizontal rod support seat locking piece; 8. table top adjusting switch; 9. core baffle; 10. core groove; 11. expansion platform; 12. storage rack; 13. brakeable pulley; 14. extendable table leg inner cylinder; 15. extendable table leg outer cylinder; 16. one-way hinge; 17. table leg inner cylinder force transmission gasket; 18. transmission screw; 19. motor. DETAILED DESCRIPTION

[0033] In order to make the technical problems, technical schemes and beneficial effects solved by the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.

[0034] Referring to Figures 1 and 2 The utility model provides a kind of multifunctional geological core inspection platform, including main table top 1, extendable table leg 3, bracket sliding groove 4, camera module 5, desk lamp module 6, first module bracket 7-1, second module bracket 7-2, core baffle 9 and core groove 10;

[0035] The bottom four corner positions of main table top 1 are each hingedly installed with an extendable table leg 3, and the height and inclination angle of the main table top 1 are adjusted by the extendable table leg 3.

[0036] The surface of the main table top 1 has a main table top groove 1-1, and a plurality of parallel core grooves 10 are fixedly arranged inside the groove of the main table top groove 1-1. As a specific structure, the core grooves 10 are grooves with triangular cross sections. A core baffle 9 is arranged on one side of each core groove 10. Therefore, a plurality of geological core samples can be placed in each core groove 10, and a plurality of geological core samples can be inspected at the same time, improving the inspection efficiency. In addition, since the inclination angle of the main table top 1 can be adjusted by the extendable table leg 3, the core baffle 9 is arranged on one side of each core groove 10, and when the main table top 1 is inclined, the core baffle 9 limits the core samples in the core groove 10 to prevent them from falling and being damaged.

[0037] Referring to Figure 1 and Figure 3 A sub table top 2 is arranged below the main table top 1. A pull-out expansion platform 11 is arranged on the side of the main table top 1. A storage rack 12 is arranged below the expansion platform 11. A table top adjusting switch 8 is installed on the side of the main table top 1.

[0038] The front and back of the main table 1 are respectively provided with a bracket sliding groove 4, the bracket sliding groove 4 on one side is slidably installed with a first module bracket 7-1, one end of the first module bracket 7-1 is installed with a camera module 5; the bracket sliding groove 4 on the other side is slidably installed with a second module bracket 7-2, one end of the second module bracket 7-2 is installed with a table lamp module 6.

[0039] The first module bracket 7-1 and the second module bracket 7-2 are angle and position adjustable module brackets.

[0040] In combination Figure 4 And Figure 5 The first module bracket 7-1 and the second module bracket 7-2 are the same in structure, and each includes a bracket vertical rod A1, a vertical rod support seat A2, a bracket horizontal rod A3, a horizontal rod support seat A4, a horizontal rod locking piece A5 and a horizontal rod support seat locking piece A6;

[0041] The bracket vertical rod A1 is slidably connected with the bracket sliding groove 4; the top of the bracket vertical rod A1 is installed with the vertical rod support seat A2; one side of the vertical rod support seat A2 is rotatably installed with the horizontal rod support seat A4 and locked by the horizontal rod support seat locking piece A6; the bracket horizontal rod A3 passes through the support hole of the horizontal rod support seat A4 and is locked by the horizontal rod locking piece A5.

[0042] Therefore, when each core groove 10 is respectively placed with a geological core sample, during the inspection of each geological core sample, the first module bracket 7-1 and the second module bracket 7-2 can be flexibly moved in the length direction of the main table 1 through the bracket sliding groove 4, so as to adjust the position of the table lamp module 6 and the camera module 5 in the length direction; the position of the table lamp module 6 and the camera module 5 in the width direction can be adjusted by moving the bracket horizontal rod A3 relative to the horizontal rod support seat A4 and locking by the horizontal rod locking piece A5; the pitch angle of the table lamp module 6 and the camera module 5 can be adjusted by adjusting the rotation angle of the horizontal rod support seat A4 relative to the vertical rod support seat A2 and locking by the horizontal rod support seat locking piece A6.

[0043] Therefore, on the surface of the main table 1, the position and the pitch angle of the camera module 5 and the table lamp module 6 can be flexibly adjusted according to the position of the geological core sample to be inspected, so as to realize the fine inspection of the geological core sample.

[0044] As an embodiment, the number of the extendable table legs 3 is at least two, for example, four; refer to Figure 6 The extendable table leg 3 includes a brakeable pulley 13, an extendable table leg inner cylinder 14, an extendable table leg outer cylinder 15 and a one-way hinge 16;

[0045] The top of the extendable table leg outer cylinder 15 is installed on the bottom of the main table 1 through the one-way hinge 16;

[0046] The lower part of the extendable table leg outer cylinder 15 is provided with an extendable table leg inner cylinder 14 which can be lifted relative to the extendable table leg outer cylinder 15; the bottom end of the extendable table leg inner cylinder 14 is provided with a brakeable pulley 13.

[0047] As a specific structure, in order to support the processing requirement of heavy core samples, an electric driving mechanism can be used to drive the extendable table leg inner cylinder 14 to lift relative to the extendable table leg outer cylinder 15. Figure 7 The electric driving mechanism comprises a table leg inner cylinder force transmission gasket 17, a transmission screw 18 and a motor 19; the transmission screw 18 is arranged in a vertical state in the interior of the extendable table leg outer cylinder 15, the top of the transmission screw 18 is provided with the motor 19 which drives the transmission screw 18 to rotate; the transmission screw 18 is sleeved with the table leg inner cylinder force transmission gasket 17; the table leg inner cylinder force transmission gasket 17 and the top of the extendable table leg inner cylinder 14 are fixed.

[0048] Therefore, when the motor 19 drives the transmission screw 18 to rotate, the table leg inner cylinder force transmission gasket 17 which is sleeved on the surface of the transmission screw 18 moves up and down along the transmission screw 18, thereby driving the extendable table leg inner cylinder 14 which is fixed with the table leg inner cylinder force transmission gasket 17 to lift relative to the extendable table leg outer cylinder 15, and further adjusting the telescopic length of the extendable table leg 3.

[0049] The extendable table leg 3 with the effective length of at least two legs being adjustable has the following advantages:

[0050] (1) By adjusting the effective length of each extendable table leg 3, the height and the inclination angle of the main table top 1 can be adjusted to adapt to different working height and angle requirements, so as to facilitate the technical personnel and material handlers to transfer the core samples to be inspected to the main table top 1, or to transfer the core samples which have been inspected on the main table top 1 to the next processing procedure, thereby avoiding the damage of the core samples during the transfer process;

[0051] (2) By arranging the brakeable pulley 13, when the multifunctional geological core inspection platform is used for inspection operation, the brakeable pulley 13 is in the braking state to ensure that the position is fixed, thereby avoiding the movement of the brakeable pulley 13 which is not conducive to the geological core inspection operation;

[0052] (3) By arranging the brakeable pulley 13, when the brakeable pulley 13 is in the unbraked state, the multifunctional geological core inspection platform can be moved flexibly, so as to move the multifunctional geological core inspection platform to a position which is conducive to the transfer of the core samples, thereby facilitating the transfer of the core samples;

[0053] The multifunctional geological core inspection platform has the following design features:

[0054] (1) By arranging the extendable table leg 3 with the adjustable effective length, different working height and angle requirements can be adapted;

[0055] Specifically, by providing an extendable table leg 3 with adjustable effective length, the height of the inspection table can be flexibly adjusted according to the needs of the operator and the specific requirements of the core sample, thereby adapting to different working environments and sample processing requirements; the inclination angle of the inspection table can also be adjusted, providing a better viewing angle and working posture, especially when performing detailed analysis and observation of specific core samples; and it can also enable technicians to work in a more comfortable and healthy posture, reducing occupational injuries caused by prolonged bending or stretching.

[0056] (2) The multifunctional geological core inspection table is made mobile by the extendable table legs 3 and is provided with stability by the brakes at the working position, which facilitates the movement of the inspection table within different working areas, provides convenience for the transportation and repositioning of geological core samples, and improves work efficiency.

[0057] (3) By providing a core baffle 9, the core sample is prevented from sliding or falling when the main table is moved or the inclination angle is adjusted, thereby improving the safety of the core sample inspection and reducing the safety risks during the operation;

[0058] Specifically, safety is enhanced by design: Considering the preciousness and fragility of core samples, the inspection platform incorporates a core baffle 9 to effectively prevent core samples from slipping or tipping over during operation. This design not only protects the integrity of the core samples but also improves worker safety.

[0059] (4) The examination table adopts a modular design and can be customized according to specific safety, mobility and multi-functional use requirements, including but not limited to extendable table legs, modular brackets, etc., to meet various actual use needs;

[0060] Specifically, the inspection table adopts a modular design concept, allowing functional modules to be added or removed according to specific needs. For example, wheels with a locking mechanism facilitate easy movement within the laboratory or on-site. The inspection table can also be connected to other similar inspection tables through a specially designed interface, achieving flexible expansion of the workspace.

[0061] (5) By providing a flexibly movable camera module 5 and a desk lamp module 6, each core sample can be inspected in detail and efficiently;

[0062] (6) Richness of auxiliary functions:

[0063] This inspection table also includes a variety of auxiliary functions and accessories. The expansion platform 11 can be used to store laptops, and the storage shelf 12 is used to store measurement tools and other necessary analytical equipment. The expansion platform 11 and storage shelf 12 are detachable and can be installed on either side of the main table according to work needs.

[0064] The inspection table's main body and key components are constructed from corrosion-resistant and vibration-resistant materials, ensuring stable operation even in harsh environments. The tabletop is covered with a special waterproof material for easy cleaning and maintenance, while also protecting the equipment from liquids such as chemical reagents used during core analysis.

[0065] The utility model provides a multifunctional geological core inspection table, which can carry out efficient and safe inspection of core samples, improve the efficiency and safety of core sample inspection, and meet various needs of geologists and technicians in the sample inspection process.

[0066] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A multifunctional geological core inspection platform, characterized in that: It comprises a main table top (1), extendable table legs (3), a bracket slide (4), a camera module (5), a desk lamp module (6), a first module bracket (7-1), a second module bracket (7-2), a core baffle (9) and a core groove (10); The four corners of the bottom of the main table (1) are each hingedly mounted with an extendable table leg (3), and the height and tilt angle of the main table (1) are adjusted by the extendable table leg (3); the surface of the main table (1) has a main table groove (1-1); a plurality of parallel core grooves (10) are fixedly arranged inside the groove of the main table groove (1-1); a core baffle (9) is provided on one side of each core groove (10); The front and rear sides of the main table (1) are each provided with a bracket slide groove (4), the bracket slide groove (4) on one side can be slidably installed with the first module bracket (7-1), and one end of the first module bracket (7-1) is installed with the camera module (5); the bracket slide groove (4) on the other side can be slidably installed with the second module bracket (7-2), and one end of the second module bracket (7-2) is installed with the desk lamp module (6).

2. A multifunctional geological core inspection platform according to claim 1, characterized in that: The core groove (10) is a groove with a triangular cross section.

3. The multifunctional geological core inspection platform according to claim 1, characterized in that: The first module bracket (7-1) and the second module bracket (7-2) are module brackets with adjustable angles and positions.

4. The multifunctional geological core inspection platform according to claim 3, characterized in that: The first module bracket (7-1) and the second module bracket (7-2) have the same structure, and both comprise a bracket vertical rod (A1), a vertical rod support seat (A2), a bracket cross rod (A3), a cross rod support seat (A4), a cross rod locking member (A5) and a cross rod support seat locking member (A6); The bracket vertical rod (A1) is slidably connected to the bracket slide groove (4); the vertical rod support seat (A2) is installed on the top of the bracket vertical rod (A1); the cross bar support seat (A4) is rotatably installed on one side of the vertical rod support seat (A2) and is locked by the cross bar support seat locking piece (A6); the bracket cross bar (A3) passes through the support hole of the cross bar support seat (A4) and is locked by the cross bar locking piece (A5).

5. The multifunctional geological core inspection platform according to claim 1, characterized in that: The extendable table leg (3) comprises a brakeable pulley (13), an extendable table leg inner tube (14), an extendable table leg outer tube (15) and a one-way hinge (16); The top of the extendable table leg outer tube (15) is mounted on the bottom of the main table top (1) through the one-way hinge (16); The extendable table leg inner tube (14) is installed below the extendable table leg outer tube (15) and can be raised and lowered relative to the extendable table leg outer tube (15); the brakeable pulley (13) is installed at the bottom end of the extendable table leg inner tube (14).

6. The multifunctional geological core inspection platform according to claim 5, characterized in that: An electric drive mechanism is used to drive the inner tube (14) of the extendable table leg to rise and fall relative to the outer tube (15) of the extendable table leg.

7. The multifunctional geological core inspection platform according to claim 6, characterized in that: The electric drive mechanism comprises a table leg inner tube force transmission pad (17), a transmission screw (18) and a motor (19); The transmission screw (18) is installed in a vertical state inside the outer tube (15) of the extendable table leg, and the motor (19) for driving the transmission screw (18) to rotate is installed on the top of the transmission screw (18); the transmission screw (18) is sleeved with the force transmission gasket (17) of the inner tube of the table leg; the force transmission gasket (17) of the inner tube of the table leg is fixed to the top of the inner tube (14) of the extendable table leg.

8. The multifunctional geological core inspection platform according to claim 1, characterized in that: A secondary tabletop (2) is provided below the main tabletop (1); a push-pull expansion platform (11) is provided on the side of the main tabletop (1); and a storage rack (12) is provided below the expansion platform (11).

9. The multifunctional geological core inspection platform according to claim 1, characterized in that: A tabletop adjustment switch (8) is installed on the side of the main tabletop (1).