Deep soil detection equipment
By introducing buffering and adjustment mechanisms into the deep soil testing equipment, the problems of easy damage to the equipment on rough roads and difficulty in viewing the display screen under sunlight have been solved, thus achieving the stability and visibility of the equipment.
Patent Information
- Application Number
- CN202422964858.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing deep soil testing equipment is easily damaged when used on rough terrain, and the display screen is difficult to see in sunlight.
It employs a buffer mechanism and an adjustment mechanism, including a buffer spring, a damper, a servo motor, and a sun visor. The buffer mechanism reduces vibration through the buffer spring and damper, while the adjustment mechanism achieves angle adjustment through the servo motor and a threaded rod.
Effectively preventing the partition from being used for buffer springs and angle adjustment reduces equipment vibration, solves the problems in existing technologies, and achieves equipment stability on rough roads and visibility of the display screen in sunlight.
Smart Images

Figure CN223924313U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of soil testing technology, specifically a deep soil testing device. Background Technology
[0002] In the prior art, patent CN219455537U discloses a deep soil testing device, including a mounting base. Support legs are fixedly connected to the four corners of the base's bottom. Two sets of front support legs are fixedly connected to the bottom of their omnidirectional wheels, and two sets of rear support legs are fixedly connected to the bottom of their directional wheels. A battery pack is installed on the top of the mounting base. This deep soil testing device uses a second drive motor to rotate the spliced auger tunneling pipe and auger tunneling head, enabling deep soil sampling and testing. Furthermore, by setting up a splicable auger tunneling pipe and auger tunneling head, the length of the auger tunneling pipe can be adjusted, allowing for free adjustment of the testing depth. Additionally, symmetrically distributed electric telescopic rods are provided; during the splicing of the auger tunneling pipe, the lower section of the auger tunneling pipe can be clamped using these electric telescopic rods, reducing the difficulty of splicing.
[0003] The above-mentioned equipment has the following technical problems in actual use: Installation base (1) The soil tester on the existing equipment is fixed on the installation base for use. The existing installation base does not have a buffer structure. Since the equipment is generally used outdoors, the long-term bumps when traveling on relatively rugged roads will damage the internal parts of the soil tester, thereby shortening the service life of the soil tester. Support platform (2) The existing soil tester is fixed on the installation base for use and is square. Since it does not have the function of angle adjustment, it is not convenient to view the data on the display screen of the soil tester when used in the sun.
[0004] Therefore, a deep soil testing device is proposed. Utility Model Content
[0005] The purpose of this invention is to provide a deep soil testing device to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a deep soil testing device, including a mounting base, a support platform mounted on the mounting base, a partition plate provided on the support platform, a soil testing instrument body mounted on the partition plate, a buffer mechanism provided on the support platform, the buffer mechanism being installed on the bottom side of the partition plate, and an adjustment mechanism being installed on the partition plate, the adjustment mechanism being installed on the bottom side of the soil testing instrument body.
[0007] The buffer mechanism includes multiple limiting grooves. Multiple limiting grooves are provided on the support platform. Sliding blocks are slidably installed on the inner walls of the multiple limiting grooves. Transmission rods are rotatably installed on the multiple sliding blocks. Fixing blocks are rotatably installed on the other end of the multiple transmission rods. The multiple fixing blocks are installed on the bottom side of the partition.
[0008] Preferably, a buffer spring is installed on the inner wall of the limiting groove, and the other end of the buffer spring is installed on the sliding block.
[0009] Preferably, a damper is installed on the support platform, and the other end of the damper is installed on the bottom side of the partition.
[0010] Preferably, the adjustment mechanism includes a drive block, which is slidably mounted on the partition plate. Connecting rods are rotatably mounted on both sides of the drive block, and positioning blocks are rotatably mounted on the other ends of the two connecting rods. The positioning blocks are mounted on the bottom side of the soil tester body.
[0011] Limiting blocks are installed on the partition plate, and rotating rods are rotatably installed on both sides of the limiting blocks. Both rotating rods are installed on the soil testing instrument body.
[0012] Preferably, two fixing blocks are installed on the partition, and threaded rods are rotatably installed on the two fixing blocks, and the drive block is threadedly installed on the threaded rods.
[0013] Preferably, a servo motor is mounted on one end of the threaded rod, and the servo motor is mounted on the partition plate.
[0014] Preferably, the soil testing instrument body is equipped with a sunshade, which is U-shaped.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] (1) In this utility model, by setting up a structure such as a damper, a buffer spring, a sliding block and a transmission rod, when the mounting base travels on a rough road, the moving wheel on the mounting base will vibrate with the ground. The vibration will give the partition an upward force, causing the partition to move upward. At the same time, since the components on the partition have a certain weight, there will be a downward force to drive the sliding block to squeeze the buffer spring. At this time, the restoring force of the buffer spring can effectively offset the kinetic energy generated by the vibration, thereby effectively buffering the partition. At the same time, by setting up the damper, the partition will not move up and down continuously.
[0017] (2) This utility model, through the setting of a sunshade, a drive block, a threaded rod, a limit block, a rotating rod and a servo motor, etc., when in use, the servo motor drives the drive block to move, and the drive block drives the soil detector body to move upward. At this time, the rotating rod on the soil detector body rotates on the limit block, so that the soil detector body can rotate around the limit block in an arc, so that one end of the soil detector body tilts upward, thus making it easy to adjust the angle of the soil detector body. At the same time, the setting of the sunshade can effectively block the sunlight and prevent the sunlight from shining directly on the display screen on the soil detector body, which is inconvenient for the staff to see. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the connection structure between the support platform, partition, and soil testing instrument body of this utility model;
[0020] Figure 3 This is a schematic diagram of the installation structure of the buffer mechanism of this utility model;
[0021] Figure 4 This is a schematic diagram of the installation structure of the adjustment mechanism of this utility model;
[0022] In the diagram: 1. Mounting base; 2. Support platform; 3. Partition plate; 4. Soil tester body; 5. Limiting groove; 51. Sliding block; 52. Transmission rod; 53. Fixing block; 54. Buffer spring; 55. Damper; 6. Drive block; 61. Connecting rod; 62. Threaded rod; 63. Fixing block; 64. Servo motor; 65. Positioning block; 66. Limiting block; 67. Rotating rod; 68. Sunshade. Detailed Implementation
[0023] 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.
[0024] Example 1: Please refer to Figure 1-4 This utility model provides a technical solution: a deep soil testing device, including a mounting base 1, a support platform 2 mounted on the mounting base 1, a partition 3 on the support platform 2, a soil testing instrument body 4 mounted on the partition 3, a buffer mechanism on the support platform 2, the buffer mechanism being mounted on the bottom side of the partition 3, and an adjustment mechanism mounted on the partition 3, the adjustment mechanism being mounted on the bottom side of the soil testing instrument body 4.
[0025] To prevent the soil testing instrument body 4 from being bumped or knocked when the mounting base 1 is driven on rough roads, a buffer mechanism is arranged on the support platform 2. Specifically, this includes multiple limiting grooves 5, each with a sliding block 51 slidably mounted on its inner wall. A transmission rod 52 is rotatably mounted on each sliding block 51, and a retaining block 53 is rotatably mounted on the other end of each transmission rod 52. The retaining blocks 53 are mounted on the bottom side of the partition plate 3. A buffer spring 54 is installed on the inner wall of each limiting groove 5, with the other end of the buffer spring 54 mounted on the sliding block 51. A damper 55 is installed on the support platform 2. The other end is installed on the bottom side of the partition 3. When the mounting base 1 travels on a rough road, the vibration generated by the moving wheel on the mounting base 1 and the ground will cause the entire partition 3 to move downward. When the partition 3 moves downward, it will drive the retaining block 53 to move. The retaining block 53 drives the transmission rod 52 to rotate. The transmission rod 52 drives the sliding block 51 to slide in the limiting groove 5. The sliding of the limiting groove 5 drives the buffer spring 54 to be compressed. At this time, the restoring force of the buffer spring 54 can effectively shorten the movement of the limiting groove 5, avoiding the partition 3 from colliding with the support platform 2. At the same time, the setting of the damper 55 can effectively prevent the partition 3 from shaking in the vertical direction for a long time.
[0026] Example 2: Based on Example 1, to facilitate viewing the data on the display screen of the soil testing instrument body 4, an adjustment mechanism is arranged on the partition 3. Specifically, it includes a drive block 6, which is slidably mounted on the partition 3. Connecting rods 61 are rotatably mounted on both sides of the drive block 6, and positioning blocks 65 are rotatably mounted on the other ends of the two connecting rods 61. The positioning blocks 65 are mounted on the bottom side of the soil testing instrument body 4. Limit blocks 66 are mounted on the partition 3, and rotating rods 67 are rotatably mounted on both sides of the limit blocks 66. Both rotating rods 67 are mounted on the soil testing instrument body 4. Two fixing blocks 63 are mounted on the partition 3, and threaded rods 62 are rotatably mounted on the two fixing blocks 63. The drive block 6 is threaded onto the threaded rods 62, and a servo motor 64 is mounted on one end of the threaded rods 62. The servo motor 64 is mounted on the partition 3. A sunshade 68 is installed on the main body 4. The sunshade 68 is U-shaped. The threaded rod 62 on the fixing block 63 of the servo motor 64 rotates, which drives the drive block 6 to move. The drive block 6 drives the connecting rod 61 to rotate, and the connecting rod 61 drives the soil tester main body 4 on the positioning block 65 to move upward. At this time, the rotating rod 67 on the soil tester main body 4 will rotate on the limiting block 66. Under the restriction of the limiting block 66, one end of the soil tester main body 4 will rotate around the limiting block 66 in an arc and tilt upward, so that the angle of the soil tester main body 4 can be easily adjusted, making it easier for users to view the data on the display screen of the soil tester main body 4. At the same time, the sunshade 68 can effectively block sunlight and prevent sunlight from directly shining on the display screen of the soil tester main body 4, which is inconvenient for the staff to view. The other features are the same as in embodiment 1.
[0027] The working principle is as follows: When using the components on the mounting base 1 to test soil at different depths, the mounting base 1 is first moved to a suitable position. During the movement, when the mounting base 1 travels on a rough road, the vibration generated by the moving wheels on the mounting base 1 and the ground will cause the entire assembly on the partition 3 to move downwards. When the partition 3 moves downwards, it will drive the retaining block 53 to move. The retaining block 53 will drive the transmission rod 52 to rotate. The transmission rod 52 will drive the sliding block 51 to slide within the limiting groove 5. The sliding of the limiting groove 5 will cause the buffer spring 54 to be compressed. At this time, the restoring force of the buffer spring 54 can effectively shorten the movement of the limiting groove 5, avoiding collision between the partition 3 and the support platform 2. At the same time, the damper 55 can effectively prevent the partition 3 from shaking in the vertical direction for a long time. The display screen on the soil tester body 4 displays the data transmitted by the test probe. To facilitate viewing the data on the display screen of the soil testing instrument body 4, the switch on the servo motor 64 is activated. The threaded rod 62 on the fixing block 63 of the servo motor 64 rotates, which drives the drive block 6 to move. The drive block 6 drives the connecting rod 61 to rotate, and the connecting rod 61 drives the soil testing instrument body 4 on the positioning block 65 to move upward. At this time, the rotating rod 67 on the soil testing instrument body 4 will rotate on the limiting block 66. Under the restriction of the limiting block 66, one end of the soil testing instrument body 4 will rotate in an arc around the limiting block 66 and tilt upward, so that the angle of the soil testing instrument body 4 can be easily adjusted, making it easier for the user to view the data on the display screen of the soil testing instrument body 4. At the same time, the sunshade 68 can effectively block sunlight and prevent direct sunlight from shining on the display screen of the soil testing instrument body 4, which would make it inconvenient for the staff to view.
[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A deep soil testing device, characterized in that: Includes a mounting base (1), on which a support platform (2) is mounted, on which a partition (3) is provided, on which a soil testing instrument body (4) is provided, on which a buffer mechanism is provided on the support platform (2), the buffer mechanism is installed on the bottom side of the partition (3), and on which an adjustment mechanism is installed, the adjustment mechanism is installed on the bottom side of the soil testing instrument body (4); The buffer mechanism includes multiple limiting grooves (5), and multiple limiting grooves (5) are provided on the support platform (2). Sliding blocks (51) are slidably installed on the inner walls of the multiple limiting grooves (5). Transmission rods (52) are rotatably installed on the multiple sliding blocks (51). Fixing blocks (53) are rotatably installed on the other end of the multiple transmission rods (52). The multiple fixing blocks (53) are all installed on the bottom side of the partition (3).
2. The deep soil testing equipment according to claim 1, characterized in that: A buffer spring (54) is installed on the inner wall of the limiting groove (5), and the other end of the buffer spring (54) is installed on the sliding block (51).
3. The deep soil testing equipment according to claim 1, characterized in that: A damper (55) is installed on the support platform (2), and the other end of the damper (55) is installed on the bottom side of the partition plate (3).
4. The deep soil testing equipment according to claim 1, characterized in that: The adjustment mechanism includes a drive block (6), which is slidably mounted on the partition plate (3). Connecting rods (61) are rotatably mounted on both sides of the drive block (6), and positioning blocks (65) are rotatably mounted on the other end of the two connecting rods (61). The positioning blocks (65) are mounted on the bottom side of the soil tester body (4). A limiting block (66) is installed on the partition (3). A rotating rod (67) is rotatably installed on both sides of the limiting block (66). Both rotating rods (67) are installed on the soil tester body (4).
5. The deep soil testing equipment according to claim 4, characterized in that: Two fixing blocks (63) are installed on the partition (3), and threaded rods (62) are rotatably installed on the two fixing blocks (63). The drive block (6) is threadedly installed on the threaded rods (62).
6. The deep soil testing equipment according to claim 5, characterized in that: A servo motor (64) is installed on one end of the threaded rod (62), and the servo motor (64) is mounted on the partition plate (3).
7. The deep soil testing equipment according to claim 4, characterized in that: The soil testing instrument body (4) is equipped with a sunshade (68), which is U-shaped.
Citation Information
Patent Citations
Deep soil detection equipment
CN219455537U