Lifting type soil detection auxiliary equipment

Through the protection, cleaning and fixing devices of lifting soil detection auxiliary equipment, the problem of high wear and maintenance costs of detectors is solved, and efficient and accurate soil detection is achieved.

CN120253327APending Publication Date: 2025-07-04DONGGUAN BOPENG ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510463309.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

During the inspection process, the detector directly contacts the soil and causes wear, making it difficult to achieve deeper soil detection and high maintenance costs.

Method used

The lifting soil detection auxiliary equipment is adopted, including protection devices, cleaning devices and fixing devices. The drill bit is inserted into the soil through the lifting motor to avoid direct contact of the detector, and an alarm is issued when encountering stones. The cleaning device sprays water to clean the drill bit. The fixing device prevents equipment from erroneously moving, improves detection accuracy and reduces maintenance costs.

Benefits of technology

Effectively avoid detector damage, improve detection accuracy and efficiency, reduce equipment maintenance costs, and extend service life.

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Abstract

The invention discloses lifting type soil detection auxiliary equipment, and relates to the technical field of soil detection. The soil detection auxiliary equipment comprises a processing frame, a lifting motor and a detector, and further comprises a protection device, a cleaning device and a fixing device, wherein the protection device comprises a partition plate, an air cylinder, an air cylinder plate, a first sliding plate, a supporting rod, a first conduction rod, a drill bit, a second conduction rod, a round pipe, a second sliding plate, a third conduction rod and a bell, the partition plate is fixedly installed in the treatment frame, the air cylinder is fixedly installed above the partition plate, and the air cylinder plate is slidably installed in the air cylinder; according to the soil detection auxiliary equipment, damage caused by direct contact between a detector and soil can be avoided, meanwhile, the efficiency of being inserted into the soil is improved, damage caused by continuous collision between a drill bit and stones is avoided, the maintenance cost of the equipment is reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of soil detection, and particularly to a lifting soil detection auxiliary device. Background Art

[0002] In order to improve the utilization efficiency of soil, a soil detection device is required to detect the temperature and humidity of the soil and improve the utilization rate of the soil.

[0003] The patent with the patent publication number CN215493589U relates to a novel soil detection device, belonging to the technical field of soil detection devices, including a bottom plate, a lead screw cover and a first bearing. The first bearing is movably connected to the left side of the upper end of the bottom plate. A lead screw cover is welded to one side of the upper end of the bottom plate close to the first bearing. A rotating shaft is nested inside the first bearing, and the bottom of the rotating shaft penetrates through the lower surface of the bottom plate. A storage battery is clamped to the right side of the upper end of the bottom plate. A first support rod is welded to the lower end of the right side of the bottom plate. Wheel frames are clamped to the bottoms of the bottom of the rotating shaft and the first support rod respectively. Crawler wheels are rotatably connected to the left and right ends of the two wheel frames. Through the improvement of the structure, the device does not need to manually insert the detector into the soil during actual use, and when the soil detection device needs to be moved, the soil detection device can be easily moved to the required position, and the overall operation performance of the soil detection device is strong.

[0004] In the above patent, through the improvement of the structure, the device does not need to manually insert the detector into the soil during actual use, and when the soil detection device needs to be moved, the soil detection device can be easily moved to the required position, and the overall operation performance of the soil detection device is strong. However, during the process of detecting the soil, by moving the detector to directly contact the soil for detection, the direct contact and collision between the detector and the soil will cause a certain degree of wear to the detector, and even the detection table will be damaged due to extrusion during the process of inserting into the soil, resulting in the detection equipment being unable to continue working, and it is difficult to detect deeper soil layers, increasing the maintenance cost. Therefore, a lifting soil detection auxiliary device with a protection device is provided at this time. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a lifting soil detection auxiliary device to solve the problems raised in the above background art.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: A lifting soil detection auxiliary device, including a processing frame, a lifting motor, and a detector, further includes a protection device, a cleaning device, and a fixing device; wherein, the protection device includes a partition board, a cylinder, a cylinder plate, a sliding plate one, a support rod, a conduction rod one, a drill bit, a conduction rod two, a circular tube, a sliding plate two, a conduction rod three, and a bell. The partition board is fixedly installed inside the processing frame. The cylinder is fixedly installed above the partition board. The cylinder plate is slidably installed inside the cylinder. The upper end of the cylinder plate is fixedly connected to the output end of the lifting motor. The sliding plate one is slidably installed inside the output end of the cylinder. The support rod is rotatably installed below the sliding plate one. The detector is fixedly installed below the support rod. The conduction rod one is fixedly installed above the sliding plate one. The drill bit is fixedly installed below the detector. The conduction rod two is fixedly installed on the inner wall of the processing frame. The circular tube is fixedly penetrated through the upper inner and outer walls of the cylinder. The sliding plate two is slidably installed inside the circular tube. The conduction rod three is fixedly installed above the sliding plate two. An elastic telescopic rod one is fixedly installed above the circular tube. The bell is fixedly installed at the free end of the elastic telescopic rod one. The conduction rod three moves upward to contact the bell and send out an alarm to remind the staff to transfer the detection device, avoiding continuous collision of the drill bit with stones, reducing the maintenance cost of the device, and improving work efficiency.

[0007] According to the above technical solution, a threaded groove is provided on the surface of the support rod. The end of the conduction rod two away from the processing frame contacts the threaded groove. When the support rod moves downward, it rotates under the action of the conduction rod two. The support rod drives the drill bit to rotate to improve the efficiency of inserting into the soil. The rotation of the support rod drives the detector to rotate, and the rotation of the detector can better contact the soil and improve the detection accuracy.

[0008] According to the above technical solution, the cleaning device includes a water storage frame, a conduction plate one, a spray head, an L-shaped rod one, a U-shaped rod one, and a friction plate. The water storage frame is fixedly installed above the partition board. The conduction plate one is slidably installed inside the water storage frame. The spray head is fixedly penetrated through the lower inner and outer walls of the water storage frame. The L-shaped rod one is fixedly installed at the output end of the lifting motor. The end of the L-shaped rod one away from the output end of the lifting motor is fixedly installed above the conduction plate one. The U-shaped rod one is fixedly installed on the surface of the L-shaped rod one. The friction plate is fixedly installed at the end of the U-shaped rod one away from the L-shaped rod one.

[0009] According to the above technical solution, a pressure valve is arranged inside one end of the spray head close to the support rod. The friction plate contacts the output end of the cylinder. The water inside the water delivery frame is sprayed out through the spray head to clean the support rod and the drill bit, preventing the residual soil during the detection from affecting the soil detection in different areas next time. The friction plate moves downward and rubs against the output end of the cylinder to generate heat, which can effectively dry the residual water stains, prevent the drill bit and the support rod from corroding and rusting in a humid environment, reduce the maintenance cost of the equipment, and extend its service life.

[0010] According to the above technical solution, the bottom inner wall of the treatment frame is provided with an inclined plane one, and a limiting hole one is opened at the bottom inner wall of the treatment frame. The drill bit slides through the limiting hole one. The inclined plane one facilitates the drained water after cleaning to pass through the limiting hole one and discharge from the inside of the treatment frame.

[0011] According to the above technical solution, the fixing device includes a conduction rod four, a conduction rod five, a limiting frame, a conduction plate two, a conduction rod six, a roller, a limiting rod and a U-shaped rod two. The conduction rod four is fixedly installed on the surface of the U-shaped rod one. The conduction rod five is slidably installed on the inner wall of the treatment frame. The limiting frame is fixedly installed on the inner and outer walls below the treatment frame. The conduction plate two is slidably installed inside the limiting frame. The conduction rod six is fixedly installed below the conduction plate two. The roller is rotatably installed on the inner wall of the limiting frame. The limiting rod is fixedly installed on the surface of the roller. The U-shaped rod two is fixedly installed above the conduction plate two. One end of the U-shaped rod two away from the conduction plate two contacts the bottom inner wall of the treatment frame. The conduction plate two moves upward and resets under the action of the elastic telescopic rod two and then jitters up and down. The conduction plate two jittering up and down drives the U-shaped rod two to jitter up and down. The U-shaped rod two jittering up and down contacts and drives the bottom of the treatment frame to jitter. The jitter of the bottom of the treatment frame can effectively clean the residual soil blocks on its surface.

[0012] According to the above technical solution, one end of the conduction rod five close to the conduction rod four is provided with an inclined plane two, one end of the limiting rod away from the roller is provided with an inclined plane three, and one end of the conduction rod six away from the conduction plate two is provided with an inclined plane four. The rotation of the limiting rod drives the inclined plane two to contact the inclined plane three and then pushes the conduction rod five to move upward.

[0013] According to the above technical solution, a limiting hole two is opened on the surface of the limiting frame. One end of the conduction rod five away from the conduction rod four slides through the limiting hole two. The conduction plate two and the inner wall of the limiting frame are fixedly connected through an elastic telescopic rod two. The limiting hole two facilitates the conduction rod five to limit the conduction plate two, and the elastic telescopic rod two can drive the conduction plate two to reset.

[0014] The present invention provides a lifting type soil detection auxiliary device. It has the following beneficial effects: (1). The lifting soil detection auxiliary device drives the drill bit to insert into the soil through the output end of the lifting motor, avoiding direct contact between the detector and the soil to cause damage. At the same time, the drill bit rotates through the contact between the thread groove on the surface of the support rod and the second conduction rod, improving the efficiency of inserting into the soil and increasing the depth of entering the soil for detecting deeper soil layers. When the drill bit touches a hard stone, the drill bit stops moving, and the cylinder plate continues to move downward to squeeze the first sliding plate through the first conduction rod, thereby driving the third conduction rod to move and collide with the bell to generate an alarm, reminding the staff to transfer the device, avoiding continuous collision between the drill bit and the stone to cause damage, reducing the maintenance cost of the device, and improving work efficiency.

[0015] (2). The lifting soil detection auxiliary device drives the first L-shaped rod at the output end of the lifting motor to squeeze the first conduction plate, so that the water inside the water storage frame is sprayed out through the nozzle to clean the support rod and the drill bit, avoiding the influence of residual soil during the detection on the soil detection in different areas next time. At the same time, the first L-shaped rod drives the first U-shaped rod to move, and then drives the grinding and inserting plate to move on the surface of the output end of the cylinder to generate heat, which can effectively dry the residual water stains, avoiding corrosion and rust of the drill bit and the support rod in a humid environment, reducing the maintenance cost of the device, and extending its service life.

[0016] (3). When the lifting soil detection auxiliary device is performing detection, while the first U-shaped rod moves, it drives the fourth conduction rod to move. The fourth conduction rod moves to push the fifth conduction rod to move to limit the second conduction plate, thereby preventing the rollers inside the limiting frame from rotating, which can effectively avoid the movement of the processing frame during the test due to accidental touch or other factors, thus affecting the test, and improving the detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the internal structure position of the present invention; Figure 3 is of the present invention Figure 2 enlarged schematic diagram of part A; Figure 4 is a schematic diagram of the internal structure position of the circular tube of the present invention; Figure 5 is of the present invention Figure 2 enlarged schematic diagram of part B; Figure 6 is a schematic diagram of the sectional structure position of the present invention; Figure 7 is of the present invention Figure 6 enlarged schematic diagram of part C; Figure 8 is a schematic diagram of the structure position of the limiting rod and the sixth conduction rod of the present invention.

[0018] In the figure: 1. Processing box; 11. Partition board; 2. Lifting motor; 3. Detector; 41. Cylinder; 411. Cylinder plate; 42. First sliding plate; 421. Support rod; 43. First conduction rod; 44. Drill bit; 45. Second conduction rod; 46. Round tube; 461. Second sliding plate; 462. Third conduction rod; 47. Bell; 51. Water storage box; 511. First conduction plate; 512. Sprinkler; 52. First L-shaped rod; 53. First U-shaped rod; 54. Friction plate; 61. Fourth conduction rod; 62. Fifth conduction rod; 63. Limit frame; 631. Second conduction plate; 632. Sixth conduction rod; 64. Roller; 641. Limit rod; 65. Second U-shaped rod. Specific implementation mode

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention. Embodiment

[0020] Please refer to Figures 1-8 , this embodiment provides a lifting soil detection auxiliary device, including a processing box 1, a lifting motor 2 and a detector 3, and also includes a protection device, a cleaning device and a fixing device; wherein, the protection device includes a partition board 11, a cylinder 41, a cylinder plate 411, a first sliding plate 42, a support rod 421, a first conduction rod 43, a drill bit 44, a second conduction rod 45, a round tube 46, a second sliding plate 461, a third conduction rod 462 and a bell 47. The partition board 11 is fixedly installed inside the processing box 1, the cylinder 41 is fixedly installed above the partition board 11, the cylinder plate 411 is slidably installed inside the cylinder 41, the upper part of the cylinder plate 411 is fixedly connected to the output end of the lifting motor 2, the first sliding plate 42 is slidably installed inside the output end of the cylinder 41, the support rod 421 is rotatably installed below the first sliding plate 42, the detector 3 is fixedly installed below the support rod 421, the first conduction rod 43 is fixedly installed above the first sliding plate 42, the drill bit 44 is fixedly installed below the detector 3, the second conduction rod 45 is fixedly installed on the inner wall of the processing box 1, the round tube 46 is fixedly penetrated through the inner and outer walls above the cylinder 41, the second sliding plate 461 is slidably installed inside the round tube 46, the third conduction rod 462 is fixedly installed above the second sliding plate 461, an elastic telescopic rod one is fixedly installed above the round tube 46, the bell 47 is fixedly installed at the free end of the elastic telescopic rod one. When the third conduction rod 462 moves upward to contact the bell 47 and emits an alarm to remind the staff to transfer the detection equipment, it can avoid the drill bit 44 from continuing to collide with the stone and causing damage, reduce the maintenance cost of the equipment, and improve the work efficiency.

[0021] The surface of the support rod 421 is provided with a threaded groove. One end of the second conduction rod 45 far from the processing frame 1 contacts the threaded groove. When the support rod 421 moves downward, it rotates under the action of the second conduction rod 45. The support rod 421 drives the drill bit 44 to rotate, improving the efficiency of inserting into the soil. The rotation of the support rod 421 drives the detector 3 to rotate, and the rotation of the detector 3 can make better contact with the soil, improving the detection accuracy.

[0022] The cleaning device includes a water storage frame 51, a first conduction plate 511, a spray head 512, an L-shaped rod 52, a U-shaped rod 53 and a friction plate 54. The water storage frame 51 is fixedly installed above the partition plate 11. The first conduction plate 511 is slidably installed inside the water storage frame 51. The spray head 512 is fixedly penetrated through the inner and outer walls below the water storage frame 51. One end of the L-shaped rod 52 far from the output end of the lifting motor 2 is fixedly installed above the first conduction plate 511. The U-shaped rod 53 is fixedly installed on the surface of the L-shaped rod 52. The friction plate 54 is fixedly installed at one end of the U-shaped rod 53 far from the L-shaped rod 52.

[0023] A pressure valve is arranged inside one end of the spray head 512 close to the support rod 421. The friction plate 54 contacts the output end of the air cylinder 41. The water inside the water delivery frame 51 is sprayed out through the spray head 512 to clean the support rod 421 and the drill bit 44, avoiding the influence of the residual soil during the detection on the soil detection in different areas next time. When the friction plate 54 moves downward, it generates heat by friction with the output end of the air cylinder 41, which can effectively dry the residual water stains, avoiding corrosion and rust of the drill bit 44 and the support rod 421 in a humid environment, reducing the maintenance cost of the equipment and extending its service life.

[0024] The bottom inner wall of the processing frame 1 is provided with an inclined plane 1. A first limiting hole is opened at the bottom inner wall of the processing frame 1. The drill bit 44 slidably penetrates through the first limiting hole. The inclined plane 1 facilitates the water flow after cleaning to drain out of the inside of the processing frame 1 through the first limiting hole.

[0025] The fixing device includes a conduction rod four 61, a conduction rod five 62, a limiting frame 63, a conduction plate two 631, a conduction rod six 632, a roller 64, a limiting rod 641 and a U-shaped rod two 65. The conduction rod four 61 is fixedly installed on the surface of the U-shaped rod one 53. The conduction rod five 62 is slidably installed on the inner wall of the processing frame 1. The limiting frame 63 is fixedly installed on the inner and outer walls below the processing frame 1. The conduction plate two 631 is slidably installed inside the limiting frame 63. The conduction rod six 632 is fixedly installed below the conduction plate two 631. The roller 64 is rotatably installed on the inner wall of the limiting frame 63. The limiting rod 641 is fixedly installed on the surface of the roller 64. The U-shaped rod two 65 is fixedly installed above the conduction plate two 631. One end of the U-shaped rod two 65 away from the conduction plate two 631 contacts the bottom of the inner wall of the processing frame 1. The conduction plate two 631 moves upward and resets under the action of the elastic telescopic rod two, and then shakes up and down. The up-and-down shaking of the conduction plate two 631 drives the U-shaped rod two 65 to shake up and down. The up-and-down shaking of the U-shaped rod two 65 contacts and drives the bottom of the processing frame 1 to shake. The shaking of the bottom of the processing frame 1 can effectively clean the soil blocks remaining on its surface.

[0026] One end of the conduction rod five 62 close to the conduction rod four 61 is provided with an inclined plane two. One end of the limiting rod 641 away from the roller 64 is provided with an inclined plane three. One end of the conduction rod six 632 away from the conduction plate two 631 is provided with an inclined plane four. The rotation of the limiting rod 642 drives the inclined plane two to contact the inclined plane three, thereby pushing the conduction rod five 62 to move upward.

[0027] The limiting frame 63 is provided with a limiting hole two on its surface. One end of the conduction rod five 62 away from the conduction rod four 61 slidably penetrates through the limiting hole two. The conduction plate two 631 is fixedly connected to the inner wall of the limiting frame 63 through the elastic telescopic rod two. The limiting hole two facilitates the conduction rod five 62 to limit the conduction plate two 631, and the elastic telescopic rod two can drive the conduction plate two 631 to reset.

[0028] During operation, the lifting motor 2 is started. The output end of the lifting motor 2 moves downward, driving the cylinder plate 411 to move downward. The downward movement of the cylinder plate 411 squeezes the air inside the cylinder 41. The compressed air pushes the first sliding plate 42 downward. The downward movement of the first sliding plate 42 drives the support rod 421 to move downward. The downward movement of the support rod 421 drives the detector 3 to move downward. The downward movement of the detector 3 drives the drill bit 44 to move downward. Since the thread groove on the surface of the support rod 421 contacts the second conducting rod 45, the downward movement of the support rod 421 causes rotation under the action of the second conducting rod 45. The support rod 421 drives the drill bit 44 to rotate, improving the efficiency of inserting into the soil. The rotation of the support rod 421 drives the detector 3 to rotate, enabling better contact with the soil and improving the detection accuracy. When the drill bit 44 touches a stone in the soil, it stops moving downward. The cylinder plate 411 continues to move downward and contacts the first conducting rod 43, causing it to push the second sliding plate 461 upward. The upward movement of the second sliding plate 461 drives the third conducting rod 462 upward. The upward movement of the third conducting rod 462 contacts the bell 47 and issues an alarm to remind the staff to transfer the detection equipment, avoiding continued collision between the drill bit 44 and the stone, reducing the maintenance cost of the equipment, and improving the work efficiency.

[0029] While the output end of the lifting motor 2 moves downward, it drives the first L-shaped rod 52 downward. The downward movement of the first L-shaped rod 52 drives the first conducting plate 511 downward. The downward movement of the first conducting plate 511 increases the air pressure inside the water storage frame 51. When the pressure reaches a certain level, the nozzle 512 is opened, and the water inside is sprayed out through the nozzle 512 to clean the support rod 421 and the drill bit 44, preventing the residual soil during the detection process from affecting the soil detection in different areas next time. At the same time, the downward movement of the first L-shaped rod 52 drives the first U-shaped rod 53 downward. The downward movement of the first U-shaped rod 53 drives the friction plate 54 downward. The downward movement of the friction plate 54 generates heat by friction with the output end of the cylinder 41, effectively drying the residual water stains, preventing the drill bit 44 and the support rod 421 from corroding and rusting in a humid environment, reducing the maintenance cost of the equipment, and extending its service life.

[0030] During the movement of the processing frame 1, the roller 64 is driven to rotate. The rotation of the roller 64 drives the limit rod 641 to rotate. The rotation of the limit rod 641 contacts and presses the conduction rod six 632 to move upward. The upward movement of the conduction rod six 632 drives the conduction plate two 631 to move upward. The conduction plate two 631 moves upward and resets under the action of the elastic telescopic rod two, and then shakes up and down. The up-and-down shaking of the conduction plate two 631 drives the U-shaped rod two 65 to shake up and down. The up-and-down shaking of the U-shaped rod two 65 contacts and drives the bottom of the processing frame 1 to shake. The shaking of the bottom of the processing frame 1 can effectively clean the soil blocks remaining on its surface. At the same time, when the U-shaped rod one 53 moves downward, it drives the conduction rod four 61 to move downward. The downward movement of the conduction rod four 61 contacts and presses the conduction rod five 62 to move away from the conduction rod four 61. The conduction rod five 62 moves through the limit frame 63 and limits the conduction plate two 631, thereby preventing the roller 64 from rotating, effectively avoiding the movement of the processing frame 1 during the test due to accidental touch or other factors, and thus affecting the test, and improving the detection efficiency.

[0031] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An elevating soil detection auxiliary device, comprising a processing frame (1), an elevating motor (2) and a detector (3), characterized in that: It further includes a protection device, a cleaning device and a fixing device; Among them, the protection device includes a partition board (11), a cylinder (41), a cylinder plate (411), a first sliding plate (42), a support rod (421), a first conduction rod (43), a drill bit (44), a second conduction rod (45), a circular tube (46), a second sliding plate (461), a third conduction rod (462) and a bell (47). The partition board (11) is fixedly installed inside the processing frame (1). The cylinder (41) is fixedly installed above the partition board (11). The cylinder plate (411) is slidably installed inside the cylinder (41). The upper part of the cylinder plate (411) is fixedly connected to the output end of the lifting motor (2). The first sliding plate (42) is slidably installed inside the output end of the cylinder (41). The support rod (421) is rotatably installed below the first sliding plate (42). The detector (3) is fixedly installed below the support rod (421). The first conduction rod (43) is fixedly installed above the first sliding plate (42). The drill bit (44) is fixedly installed below the detector (3). The second conduction rod (45) is fixedly installed on the inner wall of the processing frame (1). The circular tube (46) fixedly penetrates through the inner and outer walls above the cylinder (41). The second sliding plate (461) is slidably installed inside the circular tube (46). The third conduction rod (462) is fixedly installed above the second sliding plate (461). An elastic telescopic rod one is fixedly installed above the circular tube (46). The bell (47) is fixedly installed at the free end of the elastic telescopic rod one.

2. The lifting type soil detection auxiliary device according to claim 1, characterized in that: Thread grooves are provided on the surface of the support rod (421), and one end of the second conduction rod (45) away from the processing frame (1) contacts the thread grooves.

3. The lift-type soil detection auxiliary device according to claim 2, wherein: The cleaning device includes a water storage frame (51), a first conduction plate (511), a spray head (512), an L-shaped rod one (52), a U-shaped rod one (53) and a friction plate (54). The water storage frame (51) is fixedly installed above the partition board (11). The first conduction plate (511) is slidably installed inside the water storage frame (51). The spray head (512) fixedly penetrates through the inner and outer walls below the water storage frame (51). The L-shaped rod one (52) is fixedly installed at the output end of the lifting motor (2). One end of the L-shaped rod one (52) away from the output end of the lifting motor (2) is fixedly installed above the first conduction plate (511). The U-shaped rod one (53) is fixedly installed on the surface of the L-shaped rod one (52). The friction plate (54) is fixedly installed at one end of the U-shaped rod one (53) away from the L-shaped rod one (52).

4. The lift type soil detection auxiliary device according to claim 3, characterized in that: A pressure valve is provided inside one end of the spray head (512) close to the support rod (421), and the friction plate (54) contacts the output end of the cylinder (41).

5. The lifting type soil detection auxiliary device according to claim 4, characterized in that: The bottom inner wall of the processing frame (1) is provided as a first inclined plane, and a first limiting hole is provided at the bottom of the inner wall of the processing frame (1). The drill bit (44) slidably penetrates through the first limiting hole.

6. The lift-type soil detection auxiliary device according to claim 5, characterized in that: The fixing device includes a fourth conduction rod (61), a fifth conduction rod (62), a limiting frame (63), a second conduction plate (631), a sixth conduction rod (632), a roller (64), a limiting rod (641) and a second U-shaped rod (65). The fourth conduction rod (61) is fixedly installed on the surface of the first U-shaped rod (53). The fifth conduction rod (62) is slidably installed on the inner wall of the processing frame (1). The limiting frame (63) is fixedly installed on the inner and outer walls below the processing frame (1). The second conduction plate (631) is slidably installed inside the limiting frame (63). The sixth conduction rod (632) is fixedly installed below the second conduction plate (631). The roller (64) is rotatably installed on the inner wall of the limiting frame (63). The limiting rod (641) is fixedly installed on the surface of the roller (64). The second U-shaped rod (65) is fixedly installed above the second conduction plate (631). One end of the second U-shaped rod (65) away from the second conduction plate (631) contacts the bottom of the inner wall of the processing frame (1).

7. The lift-type soil detection auxiliary device according to claim 6, wherein: One end of the fifth conduction rod (62) close to the fourth conduction rod (61) is provided with a second inclined plane. One end of the limiting rod (641) away from the roller (64) is provided with a third inclined plane. One end of the sixth conduction rod (632) away from the second conduction plate (631) is provided with a fourth inclined plane.

8. The lifting type soil detection auxiliary device according to claim 7, characterized in that: A second limiting hole is provided on the surface of the limiting frame (63). One end of the fifth conduction rod (62) away from the fourth conduction rod (61) slidably penetrates through the second limiting hole. The second conduction plate (631) is fixedly connected to the inner wall of the limiting frame (63) through a second elastic telescopic rod.

Citation Information

Patent Citations

  • Novel soil detection device

    CN215493589U