Soil sampling device and method of use thereof
By designing a multifunctional soil sampling device, the problems of the inconvenience of carrying and the limited quantity of the ring knife are solved, and the ring knife can be reused and the material is pushed with less effort, which is suitable for large-scale soil sample collection.
Patent Information
- Application Number
- CN202411868679.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-12-18
AI Technical Summary
The ring cutters of existing soil sampling devices are heavy and inconvenient to carry, and their number limits the number of samples that can be collected, making it difficult to meet large-scale collection needs.
A soil sampling device was designed, which included a sample pushing mechanism, a cleaning mechanism, a connection unit, a reversing unit, a winding and pulling unit, and a transmission unit. These units enabled the reuse and convenient operation of the ring knife, including multiple pushing modes and cleaning functions.
It realizes the reuse of ring knives, reduces the number of ring knives carried, facilitates large-scale soil sample collection, provides labor-saving pushing and cleaning functions, and is suitable for sampling needs in different terrains.
Smart Images

Figure CN119574193B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of soil survey and sampling, in particular to a soil sampling device and a use method thereof. Background Art
[0002] Soil sampling refers to the method of collecting soil samples, including the layout of the sampling and sampling techniques. The collection of profile soil samples should be carried out after the profile observation and recording is completed. Before sampling, the profile should be repaired and cleaned, and the topmost layer of loose soil should be removed. Then, samples should be taken from the central typical part layer by layer from top to bottom. The samples after sampling are heated and evaporated in the laboratory to remove moisture before analysis.
[0003] When taking quantitative soil samples, a pressure handle is generally used to press a ring knife of a specific volume into the soil, and then the ring knife and the soil sample inside are sent to the laboratory for testing and analysis. After each sampling is completed, the ring knife and the soil sample must be stored and transported together. When a large number of samples need to be collected, a large number of ring knives need to be prepared. These metal ring knives are heavy and inconvenient to carry. The ring knives loaded with soil samples need to be stored separately and are not convenient to transport. In addition, the number of ring knives will also limit the number of soil samples that can be collected, which is very restrictive when collecting large quantities of soil samples on a large scale. Summary of the Invention
[0004] In response to the shortcomings of the prior art, the present invention provides a soil sampling device, comprising: a main body and a disassembly and assembly part, the main body comprising a sample pushing mechanism, the disassembly and assembly part comprising a cleaning mechanism and a hard soil pushing auxiliary mechanism, the cleaning mechanism being movably arranged at the bottom of the sample pushing mechanism, the hard soil pushing auxiliary mechanism being movably arranged at the top of the sample pushing mechanism, and the hard soil pushing auxiliary mechanism comprising a connecting unit, a reversing unit, a winding and pulling unit, a transmission unit and a pull rope unit, and the connecting unit is arranged on the surface of the sample pushing mechanism, the reversing unit is arranged on the top of the sample pushing mechanism, and the winding and pulling unit, the transmission unit and the pull rope unit are all installed inside the connecting unit.
[0005] Preferably, the sample pushing mechanism includes a holding tube, a first docking inner ring groove, a docking outer ring groove, an anti-pinch protrusion, a sliding hole and a constant pressure groove, the first docking inner ring groove is provided on the inner wall of the bottom end of the holding tube, the docking outer ring groove is provided on the outer wall of the bottom end of the holding tube, the anti-pinch protrusion is integrally provided on the surface of the docking outer ring groove, and the number of the anti-pinch protrusions is two, and the two anti-pinch protrusions are relatively distributed, the sliding hole is provided through the middle of the top end of the holding tube, and the constant pressure groove is provided on the inner wall of the sliding hole;
[0006] The sample ejection mechanism also includes a protective tube, a second docking inner ring groove, a first blade retaining groove and a ring knife. The second docking inner ring groove is opened on the inner wall of the top end of the protective tube, and the surface of the outer ring groove is provided with an external thread, and the inner wall of the second docking inner ring groove is provided with an internal thread, and the protective tube is threadedly connected to the holding tube through the second docking inner ring groove and the docking outer ring groove, the first blade retaining groove is provided on the inner wall of the bottom end of the protective tube, the ring knife is slidably connected to the inner wall of the protective tube, and the ring knife is slidably connected to the holding tube through the first docking inner ring groove.
[0007] Preferably, the sample ejection mechanism also includes a pushing piston, a push rod, a handle and a limiting ring. The pushing piston is slidably connected to the inner wall of the holding tube, and the inner diameter length of the holding tube is equal to the inner diameter length of the ring knife. The push rod is threadedly connected to the top of the pushing piston, and the surface of the push rod is slidably connected to the inner wall of the sliding hole. The handle is fixedly sleeved on the top of the push rod, and the limiting ring is fixedly connected to the surface of the push rod.
[0008] Preferably, the cleaning mechanism includes a water storage bottle, a docking cover, an air intake one-way valve, a water pump, a docking ring, a second blade retaining groove, a drain pipe, a water inlet pipe, a water guide hose, a battery and an atomizing nozzle. The water storage bottle is arranged below the ring knife, the docking cover is threadedly connected to the top of the water storage bottle, and a sealing ring is provided between the docking cover and the water storage bottle, the air intake one-way valve is fixedly mounted on the top of the docking cover, the water pump and the battery are both fixedly mounted on the surface of the docking cover, the docking ring is fixedly mounted on one side of the water pump, the second blade retaining groove is opened on the inner wall of the top of the docking ring, the drain pipe and the water inlet pipe are respectively fixedly mounted on the output end and the input end of the water pump, the water guide hose is fixedly connected to one end of the water inlet pipe, the atomizing nozzle is fixedly mounted on one end of the drain pipe, and the atomizing nozzle is located inside the docking ring, and the docking ring is slidably connected to the ring knife through the second blade retaining groove.
[0009] Preferably, the connecting unit includes a first connecting seat, a second connecting seat, bolts, nuts, an anti-slip pad, a support roller, a mounting seat, a side cover, a belt outlet and a rope outlet hole. The first connecting seat and the second connecting seat are fixedly mounted on the surface of the holding tube by bolts and nuts, and the first connecting seat is rotatably connected to the second connecting seat. The anti-slip pad is fixedly attached to the inner wall of the first connecting seat and the inner wall of the second connecting seat respectively. The support roller is rotatably connected to the surface of the first connecting seat through a rotating shaft. The mounting seat is fixedly connected to the surface of the second connecting seat. The side covers are fixedly connected to both sides of the mounting seat respectively. The belt outlet and the rope outlet hole are both opened through the upper surface of the mounting seat.
[0010] Preferably, the reversing unit includes a cartridge, a deformation groove, an anti-slip strip, a clamping block, a pressure ring, a top block, a guide roller and a reset spring. The cartridge is movably sleeved on the top of the handle, the deformation groove is opened on the surface of the cartridge, the anti-slip strip is fixedly connected to the inner wall of the cartridge, the clamping block is integrally arranged on the surface of the cartridge, the pressure ring is clamped on the surface of the cartridge through the clamping block, the top block is fixedly connected to the top of the cartridge, the guide roller is rotatably connected to the inner wall of the top block, the reset spring is movably sleeved on the surface of the push rod, and the reset spring is located between the holding cartridge and the cartridge.
[0011] Preferably, the winding and pulling unit includes a transmission cylinder, a first driven gear, a winding roller, a winding belt, a rubber diaphragm, an extrusion piston and a threaded column. The transmission cylinder is rotatably connected to the surface of the mounting seat through a bearing, the first driven gear is fixedly sleeved on the surface of the transmission cylinder, the winding roller is movably sleeved on the surface of the transmission cylinder, the winding belt is fixedly connected between the winding roller and the support roller, and the surface of the winding belt is rollingly connected to the surface of the guide support roller, the rubber diaphragm is fixedly connected to the surface of the transmission cylinder, the extrusion piston is slidably connected to the inner wall of the transmission cylinder, and hydraulic oil is filled between the transmission cylinder and the extrusion piston, the threaded column is fixedly inserted at one end of the extrusion piston, and the surface of the threaded column is threadedly connected to the inner wall of the transmission cylinder.
[0012] Preferably, the transmission unit includes a first transmission shaft, a second transmission shaft, a toggle cylinder, a second driven gear, a pawl, a reed, a ratchet and a first driving gear, the first transmission shaft and the second transmission shaft are both rotatably connected to the surface of the mounting seat through bearings, and the axis center of the first transmission shaft coincides with the axis center of the second transmission shaft, the toggle cylinder is fixedly sleeved at one end of the first transmission shaft, the second driven gear is fixedly sleeved at the other end of the first transmission shaft, the pawl is rotatably connected to the inner wall of the toggle cylinder, the reed is fixedly connected to the inner wall of the toggle cylinder, and the surface of the reed is slidably connected to the surface of the pawl, the ratchet is fixedly sleeved at one end of the second transmission shaft, and the ratchet is meshed with the pawl, the first driving gear is fixedly sleeved at the other end of the second transmission shaft, and the first driving gear is meshed with the first driven gear, and the inner diameter of the first driving gear is smaller than the inner diameter of the first driven gear.
[0013] Preferably, the rope pulling unit includes a transmission shaft, a second driving gear, a cable winding roller, an inner ring, a pulling rope, a pulling ring, an outer ring and a scroll spring. The transmission shaft is rotatably connected to the surface of the mounting seat through a bearing, the second driving gear is fixedly sleeved on one end of the transmission shaft, the inner ring is fixedly sleeved on the other end of the transmission shaft, the cable winding roller is fixedly sleeved on the surface of the transmission shaft, the pulling rope is fixedly connected to the surface of the cable winding roller, the pulling ring is fixedly connected to one end of the pulling rope, and the pulling rope is wound around the surface of the cable winding roller, the outer ring is fixedly connected to one side of the mounting seat, and the scroll spring is fixedly connected between the outer ring and the inner ring.
[0014] A method for using a soil sampling device, comprising:
[0015] When pushing material:
[0016] The first pushing mode:
[0017] Step S11: inserting the ring cutter with the sample into the first docking inner ring groove;
[0018] Step S12: Push the push rod, and the push piston pushes out the soil sample;
[0019] The second pushing mode:
[0020] Step S21: inserting the ring knife with the sample into the protective tube;
[0021] Step S22: docking the holding tube with the protective tube;
[0022] Step S23: pushing the push rod and the pushing piston to push out the soil sample;
[0023] The third pushing mode:
[0024] Step S31: Installing the first connecting seat and the second connecting seat on the surface of the holding tube;
[0025] Step S32: twisting the threaded column to ensure the tape roller can rotate freely;
[0026] Step S33: Covering the return spring on the surface of the push rod;
[0027] Step S34: The cartridge is fixedly sleeved on the top of the handle and presses the reset spring. The reset spring pushes the cartridge upward so that the push rod drives the push piston to reset.
[0028] Step S35: twisting the threaded column to ensure that the tape roller and the transmission cylinder are locked;
[0029] Step S36: inserting the ring knife with the sample into the protective tube;
[0030] Step S37: docking the gripping tube with the protective tube;
[0031] Step S38: repeatedly pulling and releasing the pulling ring to push the material;
[0032] When cleaning:
[0033] Step U1: Connect the water storage bottle filled with purified water to the docking cap;
[0034] Step U2: inserting the ring knife after taking out the sample into the second knife edge retaining groove;
[0035] Step U3: retract the push rod so that the push piston slides out from the ring cutter;
[0036] Step U4: Start the water pump for flushing.
[0037] Compared with the prior art, the present invention has the following beneficial effects:
[0038] This invention, through the provision of a sample pushing mechanism, a cleaning mechanism, a connecting unit, a reversing unit, a winding and pulling unit, a transmission unit and a pull rope unit, can take out the soil sample inside the ring knife through the sample pushing mechanism after the ring knife has taken samples, ensuring that the ring knife can take samples again, thereby avoiding the need to carry a large number of ring knives extra, and avoiding the limitation of the number of samples on the number of ring knives during sampling.
[0039] This invention, through the provision of a holding tube, a first docking inner ring groove, a docking outer ring groove, an anti-pinch protrusion, a sliding hole, a constant pressure groove, a protective tube, a second docking inner ring groove, a first blade stop groove, a ring knife, a pushing piston, a push rod, a handle and a limit ring, can provide two pushing modes when in use, ensuring that pushing can be achieved through a simple mechanism, making it convenient for sampling soil samples with normal texture, and convenient for carrying to narrow locations such as caves. Through the provision of the protective tube, a second pushing mode and an auxiliary third pushing mode can be formed, ensuring that the blade is protected when pushing to avoid easy hand injuries.
[0040] The invention is equipped with a water storage bottle, a docking cover, an air intake one-way valve, a water pump, a docking ring, a second blade retaining groove, a drain pipe, a water inlet pipe, a water guide hose, a battery and an atomizing nozzle, so that the ring knife and the pushing piston can be flushed after sampling, ensuring that the ring knife can be reused.
[0041] The invention provides a first connecting seat, a second connecting seat, bolts, nuts, anti-slip pads, support rollers, mounting seats, side covers, belt outlets and rope outlet holes, so that the sample pushing mechanism can be disassembled and assembled at any time, ensuring that the sample pushing mechanism can be used as needed.
[0042] The invention provides a clamping cylinder, a deformation groove, an anti-slip strip, a clamping block, a pressure ring, a top block, a guide roller and a reset spring, so as to facilitate disassembly and assembly between the handle at any time.
[0043] This invention, through the arrangement of a transmission cylinder, a first driven gear, a winding roller, a take-up belt, a rubber diaphragm, an extrusion piston and a threaded column, enables the handle to be moved by winding the take-up belt, thereby ensuring that the movable pulley structure is labor-saving, so that sampling of relatively hard soil can be achieved with labor-saving pushing.
[0044] This invention, through the arrangement of the first transmission shaft, the second transmission shaft, the driving cylinder, the second driven gear, the pawl, the reed, the ratchet, the first driving gear, the transmission shaft, the second driving gear, the cable roller, the inner ring, the pulling cable, the pulling ring, the outer ring and the spiral spring, can form a gear labor-saving mechanism during use to further save labor, and at the same time can convert the frequent pulling of the pulling cable and the pulling ring into the winding power of the winding belt, and reduce the pulling force of the winding belt by increasing the movement length of the pulling cable. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] Figure 1 It is a schematic diagram of the structure of the present invention;
[0046] Figure 2 This is a schematic structural diagram of the main body of the present invention;
[0047] Figure 3 This is a schematic diagram of the internal explosion structure of the main body embodiment 1 of the present invention;
[0048] Figure 4 This is a side cross-sectional view of the internal explosion of the main body embodiment 1 of the present invention;
[0049] Figure 5 This is a schematic structural diagram of the cleaning mechanism of the present invention;
[0050] Figure 6 It is a side sectional view of the cleaning mechanism of the present invention;
[0051] Figure 7 This is a schematic diagram of the sample ejection mechanism structure of the present invention;
[0052] Figure 8 This is a schematic diagram of the internal explosion structure of the reversing unit of the present invention;
[0053] Figure 9 This is a structural diagram of the connection unit of the present invention;
[0054] Figure 10 This is a schematic diagram of the explosion structure at the connection unit position of the present invention;
[0055] Figure 11 This is a structural diagram of the pull rope unit of the present invention;
[0056] Figure 12 This is a schematic structural diagram of the transmission unit of the present invention;
[0057] Figure 13 This is a side sectional view of the winding and pulling unit of the present invention:
[0058] Figure 14 This is a structural diagram of the anti-dropping block position in Example 2 of the present invention.
[0059] In the figure: 101, holding tube; 102, first docking inner ring groove; 103, docking outer ring groove; 104, anti-pinch protrusion; 105, sliding hole; 106, constant pressure groove; 107, protective tube; 108, second docking inner ring groove; 109, first knife edge retaining groove; 110, ring knife; 111, push piston; 112, push rod; 113, handle; 114, limit ring; 201, water storage bottle; 202, docking Cover; 203, air intake check valve; 204, water pump; 205, docking ring; 206, second blade retaining groove; 207, drain pipe; 208, water inlet pipe; 209, water guide hose; 210, battery; 211, atomizing nozzle; 301, first connecting seat; 302, second connecting seat; 303, bolt; 304, nut; 305, anti-slip pad; 306, support roller; 307, mounting seat; 308 , side cover; 309, belt outlet; 310, cable outlet hole; 401, cartridge; 402, deformation groove; 403, anti-slip strip; 404, clamping block; 405, pressure ring; 406, top block; 407, guide roller; 408, return spring; 501, transmission cylinder; 502, first driven gear; 503, belt roller; 504, take-up belt; 505, rubber diaphragm; 506, extrusion piston; 507, thread Column; 601, first transmission shaft; 602, second transmission shaft; 603, driving cylinder; 604, second driven gear; 605, pawl; 606, reed; 607, ratchet; 608, first driving gear; 701, transmission shaft; 702, second driving gear; 703, cable roller; 704, inner ring; 705, pulling cable; 706, pulling ring; 707, outer ring; 708, scroll spring. DETAILED DESCRIPTION
[0060] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0061] See also Figure 1-14, a soil sampling device includes: a main body and a disassembling part, the main body includes a sample pushing mechanism, the disassembling part includes a cleaning mechanism and a hard soil pushing auxiliary mechanism, the cleaning mechanism is movably arranged at the bottom of the sample pushing mechanism, the hard soil pushing auxiliary mechanism is movably arranged at the top of the sample pushing mechanism, and the hard soil pushing auxiliary mechanism includes a connecting unit, a reversing unit, a winding and pulling unit, a transmission unit and a pull rope unit, and the connecting unit is arranged on the surface of the sample pushing mechanism, the reversing unit is arranged on the top of the sample pushing mechanism, the winding and pulling unit, the transmission unit and the pull rope unit are all installed inside the connecting unit, through the set sample pushing mechanism, cleaning mechanism, connecting unit, reversing unit, winding and pulling unit, transmission unit and pull rope unit, the soil sample inside the ring knife 110 can be taken out through the sample pushing mechanism after the ring knife 110 takes the sample, so as to ensure that the ring knife 110 can take the sample again, thereby avoiding carrying more ring knives 110 extra, and at the same time avoiding the number of ring knives 110 limiting the number of samples during sampling.
[0062] Among them; in this embodiment 1, the sample pushing mechanism includes a holding tube 101, a first docking inner ring groove 102, a docking outer ring groove 103, an anti-pinch protrusion 104, a sliding hole 105 and a constant pressure groove 106, the first docking inner ring groove 102 is provided on the inner wall of the bottom end of the holding tube 101, the docking outer ring groove 103 is provided on the outer wall of the bottom end of the holding tube 101, the anti-pinch protrusion 104 is integrally provided on the surface of the docking outer ring groove 103, and the number of the anti-pinch protrusions 104 is two, and the two anti-pinch protrusions The blocks 104 are relatively distributed, the sliding hole 105 is opened through the middle of the top of the holding tube 101, and the constant pressure groove 106 is opened on the inner wall of the sliding hole 105. The constant pressure groove 106 can ensure the constant pressure of the pushing piston 111 when it is extended and retracted, and it is convenient to replenish lubricating oil through the constant pressure groove 106. The surfaces of the holding tube 101, the protective tube 107, the pushing piston 111, the push rod 112, the handle 113 and the docking ring 205 are all coated with a layer of atomic film to avoid contamination of the measurement of heavy metal content;
[0063] The sample ejection mechanism also includes a protective tube 107, a second docking inner ring groove 108, a first blade retaining groove 109 and a ring knife 110. The second docking inner ring groove 108 is opened on the inner wall of the top of the protective tube 107, and the surface of the outer ring groove 103 is provided with an external thread, and the inner wall of the second docking inner ring groove 108 is provided with an internal thread, and the protective tube 107 is threadedly connected to the holding tube 101 through the second docking inner ring groove 108 and the docking outer ring groove 103, the first blade retaining groove 109 is provided on the inner wall of the bottom end of the protective tube 107, the ring knife 110 is slidably connected to the inner wall of the protective tube 107, and the ring knife 110 is slidably connected to the holding tube 101 through the first docking inner ring groove 102.
[0064] Among them; in this embodiment 2, the sample pushing mechanism includes the sample pushing mechanism including a holding tube 101, a first docking inner ring groove 102, a docking outer ring groove 103, an anti-pinch protrusion 104, a sliding hole 105 and a constant pressure groove 106, the first docking inner ring groove 102 is opened on the inner wall of the bottom end of the holding tube 101, the docking outer ring groove 103 is opened on the outer wall of the bottom end of the holding tube 101, the anti-pinch protrusion 104 is integrally arranged on the surface of the docking outer ring groove 103, and the number of the anti-pinch protrusions 104 is two, and the two anti-pinch protrusions The blocks 104 are relatively distributed, the sliding hole 105 is opened through the middle of the top of the holding tube 101, and the constant pressure groove 106 is opened on the inner wall of the sliding hole 105. The constant pressure groove 106 can ensure the constant pressure of the pushing piston 111 when it is extended and retracted, and it is convenient to replenish lubricating oil through the constant pressure groove 106. The surfaces of the holding tube 101, the protective tube 107, the pushing piston 111, the push rod 112, the handle 113 and the docking ring 205 are all coated with a layer of atomic film to avoid contamination of the measurement of heavy metal content;
[0065] The sample ejection mechanism also includes a protective tube 107, a second docking inner ring groove 108, a first blade retaining groove 109 and a ring knife 110. The second docking inner ring groove 108 is opened on the inner wall of the top end of the protective tube 107, and the surface of the docking outer ring groove 103 is integrally provided with an anti-slip protrusion, and the surface of the second docking inner ring groove 108 is penetrated by an anti-slip notch, and the protective tube 107 is clamped with the holding tube 101 through the anti-slip protrusion and the anti-slip notch, the first blade retaining groove 109 is set on the inner wall of the bottom end of the protective tube 107, the ring knife 110 is slidably connected to the inner wall of the protective tube 107, and the ring knife 110 is slidably connected to the holding tube 101 through the first docking inner ring groove 102.
[0066] Among them, the sample pushing mechanism also includes a pushing piston 111, a pushing rod 112, a handle 113 and a limiting ring 114. The pushing piston 111 is slidably connected to the inner wall of the holding tube 101, and the inner diameter length of the holding tube 101 is equal to the inner diameter length of the ring knife 110. The pushing rod 112 is threadedly connected to the top of the pushing piston 111, and the surface of the pushing rod 112 is slidably connected to the inner wall of the sliding hole 105. The handle 113 is fixedly sleeved on the top of the pushing rod 112, and the limiting ring 114 is fixedly connected to the surface of the pushing rod 112. By setting the holding tube 101, the first docking inner ring groove 102, and the docking outer ring groove 1 03, anti-pinch protrusion 104, sliding hole 105, constant pressure groove 106, protective tube 107, second docking inner ring groove 108, first blade retaining groove 109, ring knife 110, pushing piston 111, push rod 112, handle 113 and limit ring 114 can provide two pushing modes when in use, ensuring that pushing can be achieved through a simple mechanism, convenient for sampling soil samples with normal texture, and convenient for carrying to narrow places such as caves. Through the setting of the protective tube 107, a second pushing mode and an auxiliary third pushing mode can be formed to ensure that the blade is protected when pushing to avoid easy injury to the hand.
[0067] Among them; the cleaning mechanism includes a water storage bottle 201, a docking cover 202, an air intake check valve 203, a water pump 204, a docking ring 205, a second knife edge retaining groove 206, a drain pipe 207, a water inlet pipe 208, a water guide hose 209, a battery 210 and a misting nozzle 211, the water storage bottle 201 is arranged below the ring knife 110, the docking cover 202 is threadedly connected to the top of the water storage bottle 201, and a sealing ring is provided between the docking cover 202 and the water storage bottle 201, the air intake check valve 203 is fixedly mounted on the top of the docking cover 202, the water pump 204 and the battery 210 are fixedly mounted on the surface of the docking cover 202, the docking ring 205 is fixedly mounted on one side of the water pump 204, the second knife edge retaining groove 206 is opened on the inner wall of the top of the docking ring 205, the drain pipe 207 and The water inlet pipe 208 is fixedly installed on the output end of the water pump 204 and the input end of the water pump 204 respectively, the water guiding hose 209 is fixedly connected to one end of the water inlet pipe 208, the atomizing nozzle 211 is fixedly installed on one end of the drain pipe 207, and the atomizing nozzle 211 is located inside the docking ring 205, and the docking ring 205 is slidingly connected to the ring knife 110 through the second blade retaining groove 206. Through the set water storage bottle 201, docking cover 202, air intake one-way valve 203, water pump 204, docking ring 205, second blade retaining groove 206, drain pipe 207, water inlet pipe 208, water guiding hose 209, battery 210 and atomizing nozzle 211, the ring knife 110 and the pushing piston 111 can be flushed after sampling to ensure that the ring knife 110 can be reused.
[0068] The connecting unit includes a first connecting seat 301, a second connecting seat 302, a bolt 303, a nut 304, an anti-slip pad 305, a support roller 306, a mounting seat 307, a side cover 308, a belt outlet 309 and a cable outlet hole 310. The first connecting seat 301 and the second connecting seat 302 are fixedly mounted on the surface of the holding tube 101 by means of bolts 303 and nuts 304, and the first connecting seat 301 is rotatably connected to the second connecting seat 302. The anti-slip pad 305 is fixedly attached to the inner wall of the first connecting seat 301 and the inner wall of the second connecting seat 302, respectively. The support roller 306 rotates through the rotating shaft. It is connected to the surface of the first connecting seat 301, the mounting seat 307 is fixedly connected to the surface of the second connecting seat 302, and the side covers 308 are respectively fixedly connected to both sides of the mounting seat 307. The belt outlet 309 and the rope outlet hole 310 are both opened through the upper surface of the mounting seat 307. Through the first connecting seat 301, the second connecting seat 302, the bolt 303, the nut 304, the anti-slip pad 305, the support roller 306, the mounting seat 307, the side cover 308, the belt outlet 309 and the rope outlet hole 310, the sample pushing mechanism can be disassembled and assembled at any time to ensure that the sample pushing mechanism can be used as needed.
[0069] Among them, the reversing unit includes a cartridge 401, a deformation groove 402, an anti-slip strip 403, a clamping block 404, a pressure ring 405, a top block 406, a guide roller 407 and a reset spring 408. The cartridge 401 is movably sleeved on the top of the handle 113, the deformation groove 402 is provided on the surface of the cartridge 401, the anti-slip strip 403 is fixedly connected to the inner wall of the cartridge 401, the clamping block 404 is integrally provided on the surface of the cartridge 401, and the pressure ring 405 is clamped on the surface of the cartridge 401 through the clamping block 404. The top block 406 is fixedly connected to the top of the cartridge 401, the guide roller 407 is rotatably connected to the inner wall of the top block 406, the return spring 408 is movably sleeved on the surface of the push rod 112, and the return spring 408 is located between the holding tube 101 and the cartridge 401, through the provided cartridge 401, deformation groove 402, anti-slip strip 403, card block 404, pressure ring 405, top block 406, guide roller 407 and return spring 408, so that it is easy to disassemble and assemble with the handle 113 at any time.
[0070] Among them, the winding and pulling unit includes a transmission cylinder 501, a first driven gear 502, a winding roller 503, a winding belt 504, a rubber diaphragm 505, an extrusion piston 506 and a threaded column 507. The transmission cylinder 501 is rotatably connected to the surface of the mounting seat 307 through a bearing, the first driven gear 502 is fixedly sleeved on the surface of the transmission cylinder 501, the winding roller 503 is movably sleeved on the surface of the transmission cylinder 501, the winding belt 504 is fixedly connected between the winding roller 503 and the support roller 306, and the surface of the winding belt 504 is rollingly connected to the surface of the guide roller 407, and the rubber diaphragm 505 is fixedly connected to the surface of the transmission cylinder 501. The extrusion piston 506 is slidably connected to the inner wall of the transmission cylinder 501, and hydraulic oil is filled between the transmission cylinder 501 and the extrusion piston 506. The threaded column 507 is fixedly inserted into one end of the extrusion piston 506, and the surface of the threaded column 507 is threadedly connected to the inner wall of the transmission cylinder 501. Through the transmission cylinder 501, the first driven gear 502, the winding roller 503, the winding belt 504, the rubber diaphragm 505, the extrusion piston 506 and the threaded column 507, the transmission cylinder 501, the first driven gear 502, the winding roller 503, the winding belt 504, the rubber diaphragm 505, the extrusion piston 506 and the threaded column 507 are arranged, so that the handle 113 can be pulled to move by winding the winding belt 504, thereby ensuring that the movable pulley structure is labor-saving, so that it can be pushed out labor-savingly when sampling hard soil.
[0071] The transmission unit includes a first transmission shaft 601, a second transmission shaft 602, a shifting cylinder 603, a second driven gear 604, a pawl 605, a reed 606, a ratchet 607 and a first driving gear 608. The first transmission shaft 601 and the second transmission shaft 602 are both rotatably connected to the surface of the mounting seat 307 through bearings, and the axis of the first transmission shaft 601 coincides with the axis of the second transmission shaft 602. The shifting cylinder 603 is fixedly sleeved on one end of the first transmission shaft 601, and the second driven gear 604 is fixedly sleeved on the other end of the first transmission shaft 601. End, the pawl 605 is rotatably connected to the inner wall of the driving cylinder 603, the reed 606 is fixedly connected to the inner wall of the driving cylinder 603, and the surface of the reed 606 is slidingly connected to the surface of the pawl 605, the ratchet 607 is fixedly sleeved on one end of the second transmission shaft 602, and the ratchet 607 is meshed with the pawl 605, the first driving gear 608 is fixedly sleeved on the other end of the second transmission shaft 602, and the first driving gear 608 is meshed with the first driven gear 502, and the inner diameter of the first driving gear 608 is smaller than the inner diameter of the first driven gear 502.
[0072] Among them; the rope pulling unit includes a transmission shaft 701, a second second driving gear 702, a cable roller 703, an inner ring 704, a pulling rope 705, a pulling ring 706, an outer ring 707 and a scroll spring 708, the transmission shaft 701 is rotatably connected to the surface of the mounting seat 307 through a bearing, the second second driving gear 702 is fixedly sleeved on one end of the transmission shaft 701, the inner ring 704 is fixedly sleeved on the other end of the transmission shaft 701, the cable roller 703 is fixedly sleeved on the surface of the transmission shaft 701, the pulling rope 705 is fixedly connected to the surface of the cable roller 703, the pulling ring 706 is fixedly connected to one end of the pulling rope 705, and the pulling rope 705 is wound on the surface of the cable roller 703, and the outer ring 707 is fixedly connected to one side of the mounting seat 307, The vortex spring 708 is fixedly connected between the outer ring 707 and the inner ring 704. By setting the first transmission shaft 601, the second transmission shaft 602, the driving cylinder 603, the second driven gear 604, the pawl 605, the spring 606, the ratchet 607, the first driving gear 608, the transmission shaft 701, the second driving gear 702, the cable roller 703, the inner ring 704, the pulling cable 705, the pulling ring 706, the outer ring 707 and the vortex spring 708, a gear labor-saving mechanism can be formed during use to further save labor, and at the same time, the frequent pulling of the pulling cable 705 and the pulling ring 706 can be converted into the winding power of the winding belt 504, and the pulling force of the winding belt 504 can be reduced by increasing the movement length of the pulling cable 705.
[0073] A method for using a soil sampling device, comprising:
[0074] When pushing material:
[0075] The first pushing mode:
[0076] Step S11: inserting the ring cutter 110 with the sample into the first docking inner ring groove 102;
[0077] Step S12: Push the push rod 112 so that the pushing piston 111 pushes out the soil sample;
[0078] The second pushing mode:
[0079] Step S21: inserting the ring knife 110 with the sample into the protective tube 107;
[0080] Step S22: docking the grip tube 101 with the protective tube 107;
[0081] Step S23: Push the push rod 112 so that the pushing piston 111 pushes out the soil sample;
[0082] The third pushing mode:
[0083] Step S31: Install the first connecting seat 301 and the second connecting seat 302 on the surface of the holding tube 101;
[0084] Step S32: Twisting the threaded column 507 to ensure that the tape roller 503 can rotate freely;
[0085] Step S33: sleeve the return spring 408 onto the surface of the push rod 112;
[0086] Step S34: The cartridge 401 is fixedly sleeved on the top of the handle 113 and presses the return spring 408. The return spring 408 pushes the cartridge 401 upward so that the push rod 112 drives the push piston 111 to return to its original position.
[0087] Step S35: Twisting the threaded column 507 to ensure that the tape roller 503 and the transmission cylinder 501 are locked;
[0088] Step S36: inserting the ring knife 110 with the sample into the protective tube 107;
[0089] Step S37: docking the holding tube 101 with the protective tube 107;
[0090] Step S38: repeatedly pulling and releasing the pulling ring 706 to push the material;
[0091] When cleaning:
[0092] Step U1: Connect the water storage bottle 201 filled with purified water to the docking cover 202;
[0093] Step U2: inserting the ring knife 110 after taking out the sample into the second knife edge retaining groove 206;
[0094] Step U3: retract the push rod 112 so that the push piston 111 slides out from the inside of the ring cutter 110;
[0095] Step U4: Start the water pump 204 for flushing.
[0096] Working principle:
[0097] In the first pushing mode, the ring cutter 110 with the sample is inserted into the first docking inner ring groove 102, ensuring that the blade is facing outward, and then the push rod 112 is pushed. The push rod 112 pushes the pushing piston 111, and the pushing piston 111 gradually enters the ring cutter 110 to push out the soil sample;
[0098] In the second pushing mode, the ring cutter 110 with the sample is inserted into the protective tube 107 so that the blade is aligned with the first blade retaining groove 109. The holding tube 101 is then threaded or clamped to the protective tube 107. The protective tube 107 and the holding tube 101 are held in the hands. The push rod 112 is then pushed. The push rod 112 pushes the pushing piston 111. The pushing piston 111 gradually enters the ring cutter 110 and pushes out the soil sample.
[0099] In the third pushing mode, the first connecting seat 301 and the second connecting seat 302 are fixed to the surface of the holding tube 101 by means of bolts 303 and nuts 304, and then the threaded column 507 is twisted to make the extrusion piston 506 slide outward, and the rubber diaphragm 505 shrinks to ensure that the winding roller 503 can rotate freely, and then the return spring 408 is sleeved on the surface of the push rod 112, and then the pressure ring 405 is slid up to relax the bottom end of the cartridge 401, and the cartridge 401 is sleeved on the top of the handle 113 and presses the return spring 408, and then the pressure ring 405 is slid down so that the pressure ring 405 is stuck on the surface of the block 404 to press the cartridge 401 tightly, so that the cartridge 401 fixes the handle 113, and at this time the return spring 408 squeezes the cartridge 401 , thereby driving the push rod 112 to slide up, and then driving the pushing piston 111 to slide up and reset, and then twisting the threaded column 507 to make the squeezing piston 506 slide inward, and the rubber diaphragm 505 expands, thereby squeezing the tape roller 503, ensuring that the tape roller 503 and the transmission cylinder 501 can rotate synchronously, and then insert the ring knife 110 with the sample into the protective cylinder 107 so that the blade and the first blade retaining groove 109 are aligned, and then the holding cylinder 101 is threaded or clamped with the protective cylinder 107, and the protective cylinder 107 and the holding cylinder 101 are held, and the pulling ring 706 is pulled. The pulling ring 706 drives the cable roller 703 to rotate through the pulling cable 705, and when the cable roller 703 rotates, it drives the volute spring 70 through the transmission shaft 701. 8 is tightened, and at the same time, when the cable roller 703 rotates, it drives the second driving gear 702 to rotate through the transmission shaft 701, and the second driving gear 702 drives the second driven gear 604 to rotate and amplify the torque, and then the second driven gear 604 drives the toggle cylinder 603 to rotate through the first transmission shaft 601, and the toggle cylinder 603 toggle the ratchet 607 through the pawl 605 to drive the second transmission shaft 602 to rotate, and then release the pulling ring 706, the spiral spring 708 is released, and drives the cable roller 703 through the transmission shaft 701 to rewind the pulling cable 705, and at the same time, the second driving gear 702, the first transmission shaft 601 and the second driven gear 604 are reversed, and then the pulling ring 706 is pulled again to make the second transmission shaft 602 rotate again. The second transmission shaft 602 rotates again, and the above-mentioned action is repeated to make the second transmission shaft 602 rotate intermittently. The second transmission shaft 602 is driven by the first driving gear 608 to drive the first driven gear 502 to rotate and amplify the torque. Then the first driven gear 502 drives the winding roller 503 to rewind through the transmission cylinder 501. The winding roller 503 rewinds the winding belt 504. The movable pulley structure formed among the winding belt 504, the winding roller 503, the supporting roller 306 and the guide roller 407 further saves effort, thereby pulling the reversing unit down. The reversing unit drives the push rod 112 to descend. The push rod 112 pushes the pushing piston 111. The pushing piston 111 gradually enters the ring knife 110 to push out the soil sample, thereby ensuring that the hard soil sample is pushed out with effort.
[0100] During cleaning, connect the water storage bottle 201 filled with pure water to the docking cover 202, insert the ring knife 110 after taking out the sample into the second blade retaining groove 206, ensure that the blade faces outward, then retract the push rod 112, so that the pushing piston 111 slides out from the inside of the ring knife 110, start the water pump 204, and the water pump 204 pressurizes and pumps the pure water inside the water storage bottle 201 outward. The water flows through the water hose 209, the water inlet pipe 208, the water pump 204 and the drain pipe 207 in turn, and then is atomized and sprayed from the atomizing nozzle 211. The atomized water flow continuously rinses the inside of the ring knife 110 and the lower surface of the pushing piston 111, thereby ensuring that the ring knife 110 can be reused.
[0101] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A soil sampling device, characterized in that: include: A main body and a disassembly part, wherein the main body includes a sample pushing mechanism, and the disassembly part includes a cleaning mechanism and a hard soil pushing auxiliary mechanism, wherein the cleaning mechanism is movably arranged at the bottom of the sample pushing mechanism, and the hard soil pushing auxiliary mechanism is movably arranged at the top of the sample pushing mechanism, and the hard soil pushing auxiliary mechanism includes a connecting unit, a reversing unit, a winding and pulling unit, a transmission unit, and a pull rope unit, wherein the connecting unit is arranged on the surface of the sample pushing mechanism, the reversing unit is arranged on the top of the sample pushing mechanism, and the winding and pulling unit, the transmission unit, and the pull rope unit are all installed inside the connecting unit; The sample ejection mechanism includes a holding tube (101), a first docking inner ring groove (102), a docking outer ring groove (103), an anti-pinch protrusion (104), a sliding hole (105) and a constant pressure groove (106), wherein the first docking inner ring groove (102) is provided on the inner wall of the bottom end of the holding tube (101), the docking outer ring groove (103) is provided on the outer wall of the bottom end of the holding tube (101), the anti-pinch protrusion (104) is integrally provided on the surface of the docking outer ring groove (103), and the number of the anti-pinch protrusions (104) is two, and the two anti-pinch protrusions (104) are relatively distributed, the sliding hole (105) is provided through the middle of the top end of the holding tube (101), and the constant pressure groove (106) is provided on the inner wall of the sliding hole (105); The sample ejection mechanism further includes a protective tube (107), a second docking inner ring groove (108), a first blade retaining groove (109) and a ring knife (110), wherein the second docking inner ring groove (108) is provided on the inner wall of the top end of the protective tube (107), and the protective tube (107) is slidably connected to the holding tube (101) through the second docking inner ring groove (108) and the docking outer ring groove (103), and the first blade retaining groove (109) is provided on the inner wall of the bottom end of the protective tube (107), and the ring knife (110) is slidably connected to the inner wall of the protective tube (107), and the ring knife (110) is slidably connected to the holding tube (101) through the first docking inner ring groove (102); The connecting unit comprises a first connecting seat (301), a second connecting seat (302), a bolt (303), a nut (304), an anti-slip pad (305), a support roller (306), a mounting seat (307), a side cover (308), a belt outlet (309) and a cable outlet hole (310), wherein the first connecting seat (301) and the second connecting seat (302) are fixedly mounted on the surface of the holding tube (101) by means of the bolt (303) and the nut (304), and the first connecting seat (301) and the second connecting seat (302) are fixedly mounted on the surface of the holding tube (101) by means of the bolt (303) and the nut (304). The anti-slip pad (305) is fixedly attached to the inner wall of the first connecting seat (301) and the inner wall of the second connecting seat (302), respectively; the support roller (306) is rotatably connected to the surface of the first connecting seat (301) via a rotating shaft; the mounting seat (307) is fixedly connected to the surface of the second connecting seat (302); the side cover (308) is fixedly connected to both sides of the mounting seat (307), respectively; and the belt outlet (309) and the cable outlet hole (310) are both opened through the upper surface of the mounting seat (307).
2. A soil sampling device according to claim 1, characterized in that: The sample ejection mechanism also includes a pushing piston (111), a push rod (112), a handle (113) and a limiting ring (114). The pushing piston (111) is slidably connected to the inner wall of the holding tube (101), and the inner diameter length of the holding tube (101) is equal to the inner diameter length of the ring knife (110). The pushing rod (112) is threadedly connected to the top of the pushing piston (111), and the surface of the pushing rod (112) is slidably connected to the inner wall of the sliding hole (105). The handle (113) is fixedly sleeved on the top of the pushing rod (112), and the limiting ring (114) is fixedly connected to the surface of the pushing rod (112).
3. A soil sampling device according to claim 2, characterized in that: The cleaning mechanism comprises a water storage bottle (201), a docking cover (202), an air intake check valve (203), a water pump (204), a docking ring (205), a second blade retaining groove (206), a drainage pipe (207), a water inlet pipe (208), a water guide hose (209), a battery (210) and an atomizing nozzle (211). The water storage bottle (201) is arranged below the ring knife (110). The docking cover (202) is threadedly connected to the top of the water storage bottle (201), and a sealing ring is provided between the docking cover (202) and the water storage bottle (201). The air intake check valve (203) is fixedly mounted on the top of the docking cover (202). The water pump (204) and the battery (210) The docking ring (205) is fixedly mounted on a surface of the docking cover (202), the docking ring (205) is fixedly mounted on one side of the water pump (204), the second knife edge retaining groove (206) is provided on the inner wall of the top end of the docking ring (205), the drain pipe (207) and the water inlet pipe (208) are fixedly mounted on the output end of the water pump (204) and the input end of the water pump (204), respectively, the water guide hose (209) is fixedly connected to one end of the water inlet pipe (208), the atomizing nozzle (211) is fixedly mounted on one end of the drain pipe (207), and the atomizing nozzle (211) is located inside the docking ring (205), and the docking ring (205) is slidably connected to the ring knife (110) through the second knife edge retaining groove (206).
4. A soil sampling device according to claim 3, characterized in that: The reversing unit comprises a cartridge (401), a deformation groove (402), an anti-slip strip (403), a clamping block (404), a pressure ring (405), a top block (406), a guide roller (407) and a return spring (408), wherein the cartridge (401) is movably sleeved on the top of the handle (113), the deformation groove (402) is provided on the surface of the cartridge (401), the anti-slip strip (403) is fixedly connected to the inner wall of the cartridge (401), and the clamping block (40 4) It is integrally arranged on the surface of the cartridge (401), the pressure ring (405) is clamped on the surface of the cartridge (401) through the clamping block (404), the top block (406) is fixedly connected to the top of the cartridge (401), the guide roller (407) is rotatably connected to the inner wall of the top block (406), the return spring (408) is movably sleeved on the surface of the push rod (112), and the return spring (408) is located between the holding tube (101) and the cartridge (401).
5. A soil sampling device according to claim 4, characterized in that: The winding and pulling unit comprises a transmission cylinder (501), a first driven gear (502), a winding roller (503), a winding belt (504), a rubber diaphragm (505), an extrusion piston (506) and a threaded column (507), wherein the transmission cylinder (501) is rotatably connected to the surface of the mounting seat (307) via a bearing, the first driven gear (502) is fixedly sleeved on the surface of the transmission cylinder (501), the winding roller (503) is movably sleeved on the surface of the transmission cylinder (501), and the winding belt (504) is fixedly connected to the winding roller ( 503) and the support roller (306), and the surface of the take-up belt (504) is rollingly connected to the surface of the guide roller (407), the rubber diaphragm (505) is fixedly connected to the surface of the transmission cylinder (501), the extrusion piston (506) is slidingly connected to the inner wall of the transmission cylinder (501), and the transmission cylinder (501) and the extrusion piston (506) are filled with hydraulic oil, the threaded column (507) is fixedly inserted into one end of the extrusion piston (506), and the surface of the threaded column (507) is threadedly connected to the inner wall of the transmission cylinder (501).
6. A soil sampling device according to claim 5, characterized in that: The transmission unit comprises a first transmission shaft (601), a second transmission shaft (602), a shifting cylinder (603), a second driven gear (604), a pawl (605), a reed (606), a ratchet (607) and a first driving gear (608). The first transmission shaft (601) and the second transmission shaft (602) are both rotatably connected to the surface of the mounting seat (307) through bearings, and the axis of the first transmission shaft (601) coincides with the axis of the second transmission shaft (602). The shifting cylinder (603) is fixedly sleeved on one end of the first transmission shaft (601), and the second driven gear (604) is fixedly sleeved on the other end of the first transmission shaft (601). At one end, the pawl (605) is rotatably connected to the inner wall of the shifting cylinder (603), the reed (606) is fixedly connected to the inner wall of the shifting cylinder (603), and the surface of the reed (606) is slidably connected to the surface of the pawl (605), the ratchet (607) is fixedly sleeved on one end of the second transmission shaft (602), and the ratchet (607) is meshedly connected to the pawl (605), the first driving gear (608) is fixedly sleeved on the other end of the second transmission shaft (602), and the first driving gear (608) is meshedly connected to the first driven gear (502), and the inner diameter of the first driving gear (608) is smaller than the inner diameter of the first driven gear (502).
7. A soil sampling device according to claim 5, characterized in that: The pulling rope unit comprises a transmission shaft (701), a second driving gear (702), a cable roller (703), an inner ring (704), a pulling rope (705), a pulling ring (706), an outer ring (707) and a volute spring (708); the transmission shaft (701) is rotatably connected to the surface of the mounting seat (307) via a bearing; the second driving gear (702) is fixedly sleeved on one end of the transmission shaft (701); the inner ring (704) is fixedly sleeved on the other end of the transmission shaft (701); At one end, the cable roller (703) is fixedly sleeved on the surface of the transmission shaft (701), the pulling rope (705) is fixedly connected to the surface of the cable roller (703), the pulling ring (706) is fixedly connected to one end of the pulling rope (705), and the pulling rope (705) is wound on the surface of the cable roller (703), the outer ring (707) is fixedly connected to one side of the mounting seat (307), and the volute spring (708) is fixedly connected between the outer ring (707) and the inner ring (704).
8. A method for using the soil sampling device according to claim 7, characterized in that: include: When pushing material: The first pushing mode: Step S11: inserting the ring cutter (110) with the sample into the first docking inner ring groove (102); Step S12: pushing the push rod (112) so that the pushing piston (111) pushes out the soil sample; The second pushing mode: Step S21: inserting the ring knife (110) with the sample into the protective tube (107); Step S22: inserting the holding tube (101) into the protective tube (107); Step S23: pushing the push rod (112) so that the pushing piston (111) pushes out the soil sample; The third pushing mode: Step S31: installing the first connecting seat (301) and the second connecting seat (302) on the surface of the holding tube (101); Step S32: twisting the threaded column (507) to ensure that the tape roller (503) can rotate freely; Step S33: Sleeve the return spring (408) onto the surface of the push rod (112); Step S34: The cartridge (401) is fixedly sleeved on the top of the handle (113) and the return spring (408) is pressed. The return spring (408) pushes the cartridge (401) upward so that the push rod (112) drives the push piston (111) to reset. Step S35: twisting the threaded column (507) to ensure that the tape roller (503) and the transmission cylinder (501) can be locked; Step S36: inserting the ring knife (110) with the sample into the protective tube (107); Step S37: inserting the holding tube (101) into the protective tube (107); Step S38: repeatedly pulling and releasing the pulling ring (706) to push the material; When cleaning: Step U1: Connecting the water storage bottle (201) filled with purified water to the docking cover (202); Step U2: inserting the ring knife (110) after taking out the sample into the second knife edge retaining groove (206); Step U3: retracting the push rod (112) so that the push piston (111) slides out from the inside of the ring knife (110); Step U4: Start the water pump (204) for flushing.
Citation Information
Patent Citations
A rapid soil sampling device for saline-alkali land
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