Soil collecting rod production device for geological exploration

By using a fixing assembly consisting of bevel gears and screws, combined with cylinders and motors, the problems of unstable fixing and low processing efficiency in soil collection pole production devices have been solved, achieving efficient and stable pole grinding and surface smoothing.

CN224144165UActive Publication Date: 2026-04-21THE THIRD TEAM OF JIANGSU COAL GEOLOGICAL EXPLORATION
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
THE THIRD TEAM OF JIANGSU COAL GEOLOGICAL EXPLORATION
Filing Date
2025-05-20
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing soil collection pole production equipment has low processing efficiency and is not firmly fixed, which makes it easy to shake during the grinding process and makes it difficult to adjust the pole's position.

Method used

The fixed assembly consists of a bevel gear and a screw. The bevel gear meshes to drive the screw to rotate, and together with the cylinder and motor, the rod body is fixed and rotated for adjustment. Polishing is then performed in conjunction with the grinding parts.

Benefits of technology

It achieves efficient and stable rod fixing and grinding, improves processing efficiency, prevents shaking, is easy to operate, and results in a smooth rod surface.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224144165U_ABST
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Abstract

The utility model relates to the technical field of collecting rod surface processing, in particular to a soil collecting rod production device for geological exploration, which overcomes the defects of collecting rod surface processing in the prior art and comprises a box body, a first motor is fixedly connected to one side of the box body, and a second rotating rod is arranged on one side of the first motor. A first rotating rod is rotationally connected to one side of the inner wall of the box body, fixing assemblies are arranged at one end of the first rotating rod and one end of the second rotating rod, each fixing assembly comprises a chassis, a fixing plate is fixedly connected to one side of each chassis, a sleeve is fixedly connected to one side of each fixing plate, and a second bevel gear is rotationally connected to the outer ring of each chassis; one end of the sleeve is rotationally connected with a first bevel gear, the first bevel gear is connected with a second bevel gear in a meshed mode, one side of the first bevel gear is fixedly connected with a screw rod, and the screw rod is in clearance fit with the interior of the sleeve.
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Description

Technical Field

[0001] This utility model relates to the field of surface processing technology for collecting rods, specifically a production device for soil collecting rods used in geological exploration. Background Technology

[0002] Soil sampling refers to the methods of collecting soil samples, including sampling layout and sampling techniques. Profile soil sampling should be carried out after the profile observation and recording are completed. Soil sampling collection rods are the main tools used in this process. During the production of soil collection rods, their surfaces need to be polished to make them smooth for subsequent work. Existing soil collection rod production equipment has slow processing efficiency, and it is easy to shake during the polishing process due to insecure fixing, or it is not easy to adjust the position of the rod to speed up the polishing process. Some improvements are needed.

[0003] Therefore, it is necessary to design a soil collection rod production device for geological exploration that is highly practical and versatile in processing. Utility Model Content

[0004] The purpose of this invention is to provide a soil collection rod production device for geological exploration, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a soil collection rod production device for geological exploration, comprising a housing, a motor fixedly connected to one side of the housing, a rotating rod second disposed on one side of the motor, a rotating rod first rotatably connected to one side of the inner wall of the housing, a fixing assembly provided at one end of both the rotating rod first and the rotating rod second, the fixing assembly including a chassis, a fixing plate fixedly connected to one side of the chassis, a sleeve fixedly connected to one side of the fixing plate, a bevel gear second rotatably connected to the outer ring of the chassis, a bevel gear first rotatably connected to one end of the sleeve, the bevel gear first and the bevel gear second meshing with each other, a screw fixedly connected to one side of the bevel gear first, the screw having a clearance fit with the inside of the sleeve. The screw passes through the fixed plate, and a pressure plate is threadedly connected to the surface of the screw. A rod body is arranged between the pressure plates. The pressure plate is slidably connected to the surface of the chassis. A locking screw is threadedly connected inside the chassis. The nut of the locking screw covers one side of the chassis and the second bevel gear. A cylinder is fixedly connected to one side of the housing. A telescopic rod is arranged on one side of the cylinder. The telescopic rod passes through the housing. A slider is fixedly connected to one end of the telescopic rod. A sliding groove is provided on one side of the housing. The slider is slidably connected to the inside of the sliding groove. A cylinder is fixedly connected to one side of the slider. A telescopic rod is arranged on one side of the cylinder. A motor is fixedly connected to one end of the telescopic rod. A grinding part is arranged on one side of the motor.

[0006] According to the above technical solution, a protective pad is provided on one side of the pressure plate.

[0007] According to the above technical solution, the chassis surface is provided with holes and grooves.

[0008] According to the above technical solution, a door is provided on one side of the box, and a pull handle is provided on the surface of the door.

[0009] Compared with the prior art, the beneficial effects achieved by this utility model are:

[0010] (1) By setting a fixed component, rotating two bevel gears II drives bevel gear I, which is meshed on one side, to rotate. Bevel gear I drives the screw to rotate. The screw rotates in place inside the sleeve. The threads on the surfaces of the two screws are matched. When the two screws rotate, the movement trajectory of the pressure plates connected by their threads is either closer to each other or further away from each other. At this time, they are further away from each other until the distance between the pressure plates is greater than the diameter of the rod. The rod is placed between the pressure plates. At this time, bevel gear II is rotated in the opposite direction, so that the subsequent components operate in the opposite direction. The pressure plates move closer to each other and press the rod. After fixing the rod, rotate the locking screw to lock. Tighten the screws deep into the chassis, and press the nut against the side of the chassis and bevel gear 2, preventing it from rotating further, thus completing the entire fixation. Motor 1 can drive the upper fixing component to rotate via rotating rod 2. Since the upper and lower fixing components fix the rod body simultaneously, the lower fixing component is rotatably connected to the inner wall of the box via rotating rod 1, allowing the entire rod body to be rotated and adjusted to make its entire surface smooth. Cylinder 1 drives the slider to slide inside the slide groove via telescopic rod 1, cylinder 2 controls the feed, and motor 2 operates the grinding parts to polish and grind the surface of the rod body. The entire workflow is efficient, effective, and easy to operate.

[0011] (2) A protective pad is provided to protect the fixed part of the end of the rod and prevent scratches. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0013] Figure 2 This is a schematic diagram of the grinding component of this utility model;

[0014] Figure 3 This is a schematic diagram of the fixing component of this utility model;

[0015] In the diagram: 1. Box body; 2. Box door; 3. Pull handle; 4. Motor 1; 5. Cylinder 1; 6. Cylinder 2; 7. Telescopic rod 1; 8. Slider; 9. Telescopic rod 2; 10. Motor 2; 11. Grinding part; 12. Rod body; 13. Rotating rod 1; 14. Rotating rod 2; 15. Chassis; 16. Fixing plate; 17. Sleeve; 18. Screw; 19. Bevel gear 1; 20. Bevel gear 2; 21. Pressure plate; 22. Protective pad; 23. Hole and slot; 24. Locking screw. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0017] Please see Figure 1-3 This utility model provides a technical solution: a soil collection rod production device for geological exploration, comprising a housing 1, a motor 4 fixedly connected to one side of the housing 1, a rotating rod 14 disposed on one side of the motor 4, a rotating rod 13 rotatably connected to one side of the inner wall of the housing 1, and a fixing component disposed at one end of both the rotating rod 13 and the rotating rod 14, the fixing component including a chassis 15, a fixing plate 16 fixedly connected to one side of the chassis 15, a sleeve 17 fixedly connected to one side of the fixing plate 16, a bevel gear 20 rotatably connected to the outer ring of the chassis 15, a bevel gear 19 rotatably connected to one end of the sleeve 17, the bevel gear 19 meshing with the bevel gear 20, a screw 18 fixedly connected to one side of the bevel gear 19, the screw 18 having a clearance fit with the inside of the sleeve 17, the screw 1... A through-plate 16 is fixed, and a pressure plate 21 is threadedly connected to the surface of the screw 18. A rod 12 is set between the pressure plates 21. The pressure plate 21 is slidably connected to the surface of the chassis 15. A locking screw 24 is threadedly connected inside the chassis 15. The nut of the locking screw 24 covers one side of the chassis 15 and the bevel gear 20. A cylinder 5 is fixedly connected to one side of the housing 1. A telescopic rod 7 is set on one side of the cylinder 5. The telescopic rod 7 passes through the housing 1. A slider 8 is fixedly connected to one end of the telescopic rod 7. A sliding groove is set on one side of the housing 1. The slider 8 is slidably connected to the inside of the sliding groove. A cylinder 6 is fixedly connected to one side of the slider 8. A telescopic rod 9 is set on one side of the cylinder 6. A motor 10 is fixedly connected to one end of the telescopic rod 9. A grinding part 11 is set on one side of the motor 10.

[0018] Specifically, first, rotate the two bevel gears 20. The rotation of bevel gears 20 drives the rotation of bevel gear 19, which meshes on one side. The rotation of bevel gear 19 drives the screw 18 to rotate. The screw 18 rotates in place inside the sleeve 17. The threads on the surfaces of the two screws 18 are matched. When the two screws rotate, the movement trajectory of the pressure plates 21 connected by their threads is either closer to each other or farther away from each other. At this time, they are farther away from each other until the distance between the pressure plates 21 is greater than the diameter of the rod 12. The rod 12 is placed between the pressure plates 21. At this time, rotate the bevel gears 20 in the opposite direction to make the subsequent components operate in the opposite direction. The pressure plates 21 move closer to each other to press the rod 12. After fixing the rod 12, rotate the locking screw 24. The locking screw 24 penetrates into the chassis 15. The nut presses down on one side of the base plate 15 and the bevel gear 20, preventing it from rotating further, thus completing the entire fixation. The motor 4 can drive the upper fixing component to rotate through the rotating rod 14. Since the upper and lower fixing components fix the rod 12 simultaneously, the lower fixing component is rotatably connected to the inner wall of the housing 1 through the rotating rod 13, allowing the entire rod 12 to be rotated and adjusted so that its entire surface is polished smooth. The cylinder 5 drives the slider 8 to slide inside the groove through the telescopic rod 7. The cylinder 6 controls the feed, and the motor 10 controls the polishing part 11 to polish the surface of the rod 12. The entire workflow is efficient, effective, easy to operate, and the fixing components are firmly fixed to prevent shaking during processing, with good linkage.

[0019] A protective pad 22 is provided on one side of the pressure plate 21.

[0020] Specifically, the protective pad 22 is used to protect the end of the rod 12 and prevent scratches.

[0021] The surface of the chassis 15 is provided with holes and grooves 23.

[0022] Specifically, the slot 23 allows some of the grinding debris to fall onto the surface of the housing 1, preventing the chassis 15 from accumulating.

[0023] A door 2 is provided on one side of the box body 1, and a pull handle 3 is provided on the surface of the door 2.

[0024] Specifically, the door 2 can be closed during processing to prevent splashing and affecting the safety factor, and the handle 3 makes it easy to open and close the door 2.

[0025] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A geological exploration soil collecting rod production device comprising a box (1), characterized in that: A motor (4) is fixedly connected to one side of the housing (1). A rotating rod (14) is provided on one side of the motor (4). A rotating rod (13) is rotatably connected to one side of the inner wall of the housing (1). A fixing component is provided at one end of both the rotating rod (13) and the rotating rod (14). The fixing component includes a chassis (15). A fixing plate (16) is fixedly connected to one side of the chassis (15). A sleeve (1) is fixedly connected to one side of the fixing plate (16). 7) A bevel gear two (20) is rotatably connected to the outer ring of the chassis (15), and a bevel gear one (19) is rotatably connected to one end of the sleeve (17). The bevel gear one (19) meshes with the bevel gear two (20). A screw (18) is fixedly connected to one side of the bevel gear one (19). The screw (18) is clearance-fitted with the inside of the sleeve (17). The screw (18) passes through the fixing plate (16), and the surface of the screw (18) is threaded with... A pressure plate (21) is provided between the pressure plates (21), and a rod (12) is provided between the pressure plates (21). The pressure plates (21) are slidably connected to the surface of the chassis (15). A locking screw (24) is threaded inside the chassis (15). The nut of the locking screw (24) covers one side of the chassis (15) and the second bevel gear (20). A cylinder (5) is fixedly connected to one side of the housing (1). A telescopic rod (7) is provided on one side of the cylinder (5). A (7) penetrating box (1) is provided with a slider (8) fixedly connected to one end of the telescopic rod (7). A sliding groove is provided on one side of the box (1). The slider (8) is slidably connected to the inside of the sliding groove. A cylinder (6) is fixedly connected to one side of the slider (8). A telescopic rod (9) is provided on one side of the cylinder (6). A motor (10) is fixedly connected to one end of the telescopic rod (9). A grinding part (11) is provided on one side of the motor (10).

2. The soil collecting rod production device for geological exploration of claim 1, characterized in that: A protective pad (22) is provided on one side of the pressure plate (21).

3. The soil collecting rod production device for geological exploration of claim 1, wherein: The chassis (15) has grooves (23) on its surface.

4. The soil collecting rod production device for geological exploration of claim 1, wherein: The box body (1) is provided with a box door (2) on one side, and a pull handle (3) is provided on the surface of the box door (2).