Geological and mineral sampling device facilitating adjustment of sampling depth
By combining an electric screw jack and an electric slide system with a drilling sleeve and a geared motor, the design solves the problems of depth and stability of the geological sampling device, enabling deep and stable sampling under different geological conditions, and improving the device's usability and versatility.
Patent Information
- Application Number
- CN202511493015.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2045-10-20
AI Technical Summary
Existing geological sampling devices are unable to explore and sample deep layers, have poor stability, and are difficult to sample on hard ground, limiting their application scenarios.
The system employs an electric screw jack and an electric slide table system, combined with a drilling sleeve and a geared motor, to achieve deep and stable sampling. It is equipped with a multi-layer protective structure and a battery power supply system to ensure stable operation of the device under different geological conditions.
This has enabled the geological sampling device to explore deep layers, improved its stability and diversity under different geological conditions, and enhanced the device's operational depth and safety.
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Figure CN120948109B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of geological and mineral sampling technology, and in particular to a geological and mineral sampling device that facilitates adjustment of sampling depth. Background Technology
[0002] Mineral sampling is a specialized work that involves collecting samples from ore bodies, surrounding rocks, and mining products (including raw ore, concentrate, tailings, slag, etc.) according to specific specifications. The samples are then analyzed and identified to study the quality, physicochemical properties, processing technology performance, and mining conditions of the minerals. This provides a basis for deposit evaluation, reserve calculation, and mineral development. The process includes sample collection, processing, and experimental analysis. It is essential to ensure the representativeness, comprehensiveness, and systematic nature of the samples. Based on their purpose, sampling can be divided into four categories: chemical sampling, mineral sampling, technical sampling, and technical processing sampling. These are used to determine ore grades, study mineral composition, measure physical and mechanical properties, and determine processing procedures through beneficiation and metallurgical experiments, respectively. Therefore, a geological and mineral sampling device that facilitates adjustment of sampling depth is proposed.
[0003] However, in the process of developing this invention, the inventors discovered that at least the following problems remain unresolved in the existing technology: 1. It is inconvenient for geological sampling devices to perform deep exploration sampling; the geological sampling devices can only perform shallow sampling, thus reducing the sampling depth within the soil; 2. It is inconvenient to perform stable sampling with the geological sampling devices; the geological sampling devices are prone to bending and damage when sampling within the soil, thus reducing the stability of the devices in use; 3. It is inconvenient for the geological sampling devices to sample hard soil; the geological sampling devices can only sample relatively soft soil, thus reducing the versatility of geological sampling applications. Therefore, this invention designs a geological and mineral sampling device that facilitates adjustment of sampling depth. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies, such as: the inconvenience of using geological sampling devices for deep exploration sampling, limiting them to shallow sampling and thus reducing sampling depth; the inconvenience of stable sampling, as they are prone to bending and damage during sampling, reducing stability; and the inconvenience of sampling in hard soil, limiting their application to softer soil types. Therefore, this invention designs a geological and mineral sampling device with adjustable sampling depth.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A geological and mineral sampling device for easy adjustment of sampling depth includes an adjustable support plate. A depth mounting plate is fixedly installed on the top of each adjustable support plate. An electric screw jack is fixedly installed between each depth mounting plate. A depth connecting block is fixedly installed on the outside of the moving end of each electric screw jack. A depth lifting frame is fixedly installed between the depth connecting blocks. A depth sampling slot is provided through the bottom of the depth lifting frame.
[0007] Adjustable mounting plates are fixedly installed on both sides inside the depth lifting frame. Electric slides are fixedly installed between the adjustable mounting plates. Adjustable connecting blocks are fixedly installed between the telescopic ends of the electric slides. Adjustable fixed side plates are fixedly installed between the adjustable connecting blocks. Adjustable fixed plates are fixedly installed between the adjustable fixed side plates. An adjustable protective frame is fixedly installed on the top of the adjustable fixed side plate. A motor mounting hole is provided through the top of the adjustable protective frame.
[0008] A geared motor is fixedly installed inside the motor mounting hole. A discharge sleeve is fixedly installed at the bottom of the geared motor. A discharge slot is provided through the surface of the discharge sleeve. A discharge frame plate is fixedly installed on the surface of the discharge slot. A drilling sleeve is fixedly installed at the bottom of the discharge sleeve. A drilling cylinder inner layer is fixedly fitted inside the drilling sleeve. A ground insertion cylinder is fixedly installed at the bottom of the drilling sleeve. A threaded sleeve rotating roller is fixedly installed inside the rotating end of the geared motor. A drill bit is fixedly installed at the bottom of the threaded sleeve rotating roller.
[0009] Preferably, push-pull plates are fixedly installed on both sides of the depth mounting plate, and push-pull handles are fixedly installed on both sides of the push-pull plates.
[0010] Preferably, the adjusting support plate has an adjusting support slot through it, a main battery box is fixedly installed on one side of the adjusting support plate, an auxiliary battery box is fixedly installed on the other side of the adjusting support plate, and an equipment support plate is fixedly installed at the bottom of the adjusting support plate.
[0011] Preferably, a main battery buffer pad is fixedly installed inside the main battery box, a main battery is movably installed inside the main battery buffer pad, and a control block is fixedly installed on the surface of the main battery box.
[0012] Preferably, a control button is installed through the inside of the control block, and a power socket is fixedly installed on one side of the control button.
[0013] Preferably, a secondary battery buffer pad is fixedly installed inside the secondary battery box, and a secondary battery is movably installed inside the secondary battery buffer pad.
[0014] Preferably, the equipment support plate has a through-hole for equipment support, front and rear connecting plates are fixedly installed at both ends of the equipment support plate, front and rear protective plates are fixedly installed at both ends of the front and rear connecting plates, bottom connecting plates are fixedly installed at the bottom of the equipment support plate, and side connecting plates are fixedly installed on both sides of the equipment support plate.
[0015] Preferably, a bottom protective plate is fixedly installed on the bottom of each bottom connecting plate, and a movable block is fixedly installed on both sides of each bottom connecting plate.
[0016] Preferably, each of the movable blocks has a movable frame fixedly installed at its bottom, and each movable frame has an off-road tire fixedly installed inside by a rotating roller.
[0017] Preferably, side buffer plates are fixedly installed on both sides of the side connecting plate, and side protective plates are fixedly installed on both sides of the side buffer plates.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] This invention uses a deep mounting plate to stably install multiple electric screw jacks. Then, the moving ends inside the multiple electric screw jacks drive the deep connecting blocks and the deep lifting frame to move up and down. Next, the deep lifting frame is used to stably install the sampling equipment. Then, the sampling equipment passes through the deep sampling slot to take samples, enabling the geological sampling device to conduct deep exploration sampling. The geological sampling device can perform deep sampling of the geology, thereby increasing the sampling depth of the geological sampling device in the land.
[0020] This invention uses an electric slide table to stably install the adjusting mounting plate. Then, the telescopic ends inside multiple electric slide tables drive the adjusting connecting blocks and multiple adjusting fixed side plates to adjust the height. Next, the adjusting fixed plate is used to stably penetrate and install the drilling sleeve. Then, the motor mounting holes inside the adjusting protective frame are used to stably penetrate and install the reduction motor. This allows for stable sampling of the geological sampling device, making it less prone to bending and damage when sampling in the soil, thus improving the stability of the geological sampling device.
[0021] This invention utilizes a drilling sleeve for stable penetration installation on an adjusting and fixing plate. The bottom of the drilling sleeve is then inserted into the ground. The inner layer of the drilling sleeve provides protection. A geared motor drives the rotating roller of the threaded sleeve and the drill bit to drill and sample the ground. A discharge slot and discharge frame plate are then installed on the surface of the discharge sleeve to sample and discharge the soil raised by the spiral drilling of the threaded sleeve. This invention enables the geological sampling device to sample hard soil and different soil materials, thus increasing the versatility of geological sampling applications. Attached Figure Description
[0022] Figure 1 This is a three-dimensional view of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0023] Figure 2 This is a schematic diagram of the overall structure of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0024] Figure 3 This is a partial perspective view of the depth mounting plate of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0025] Figure 4 This is a partial perspective view of the adjustment mounting plate of a geological and mineral sampling device for easy adjustment of sampling depth proposed in this invention;
[0026] Figure 5 This is a partial structural diagram of the reduction motor of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0027] Figure 6 A partial perspective view of the push-pull plate of a geological and mineral sampling device for easy adjustment of sampling depth proposed in this invention;
[0028] Figure 7 This is a partial perspective view of the adjusting support plate of a geological and mineral sampling device that facilitates adjusting the sampling depth, as proposed in this invention.
[0029] Figure 8 This is a partial perspective view of the side connecting plate of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0030] Figure 9 This is a partial perspective view of the equipment support plate of a geological and mineral sampling device that facilitates adjustment of sampling depth, as proposed in this invention.
[0031] In the diagram: 1. Depth mounting plate; 101. Electric screw jack; 102. Depth connecting block; 103. Depth lifting frame; 104. Depth sampling slot; 2. Adjustment mounting plate; 201. Electric slide table; 202. Adjustment connecting block; 203. Adjustment fixing side plate; 204. Adjustment fixing plate; 205. Adjustment protective frame; 206. Motor mounting hole; 3. Gear motor; 301. Threaded sleeve rotating roller; 302. Drill bit; 303. Drilling sleeve; 304. Inner layer of drilling sleeve; 305. Inserting sleeve; 306. Discharge sleeve; 307. Discharge slot; 308. Discharge frame plate; 4. Push-pull plate; 401 1. Push-pull handle; 5. Adjustable support plate; 501. Adjustable support slot; 6. Auxiliary battery box; 601. Auxiliary battery buffer pad; 602. Auxiliary battery; 7. Main battery box; 701. Main battery buffer pad; 702. Main battery; 8. Control block; 801. Control button; 802. Power socket; 9. Front and rear connecting plates; 901. Front and rear protective plates; 10. Equipment support plate; 1001. Equipment support slot; 11. Bottom connecting plate; 1101. Bottom protective plate; 12. Moving block; 1201. Moving frame; 1202. Off-road tire; 13. Side connecting plate; 1301. Side buffer plate; 1302. Side protective plate. Detailed Implementation
[0032] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0033] Reference Figures 1-9 A geological and mineral sampling device for easy adjustment of sampling depth includes an adjustment support plate 5. A depth mounting plate 1 is fixedly installed on the top of the adjustment support plate 5. An electric screw jack 101 is fixedly installed between the depth mounting plates 1. A depth connecting block 102 is fixedly installed on the outside of the moving end of the electric screw jack 101. A depth lifting frame 103 is fixedly installed between the depth connecting blocks 102. A depth sampling slot 104 is provided through the bottom of the depth lifting frame 103.
[0034] An adjustable mounting plate 2 is fixedly installed on both sides inside the depth lifting frame 103. An electric slide table 201 is fixedly installed between the adjustable mounting plates 2. An adjustable connecting block 202 is fixedly installed between the telescopic ends of the electric slide table 201. An adjustable fixed side plate 203 is fixedly installed between the adjustable connecting blocks 202. An adjustable fixed plate 204 is fixedly installed between the adjustable fixed side plates 203. An adjustable protective frame 205 is fixedly installed on the top of the adjustable fixed side plate 203. A motor mounting hole 206 is provided through the top of the adjustable protective frame 205.
[0035] A geared motor 3 is fixedly installed inside the motor mounting hole 206. A discharge sleeve 306 is fixedly installed at the bottom of the geared motor 3. A discharge slot 307 is provided through the surface of the discharge sleeve 306. A discharge frame plate 308 is fixedly installed on the surface of the discharge slot 307. A drilling sleeve 303 is fixedly installed at the bottom of the discharge sleeve 306. A drilling inner layer 304 is fixedly fitted inside the drilling sleeve 303. A ground insertion cylinder 305 is fixedly installed at the bottom of the drilling sleeve 303. A threaded sleeve rotating roller 301 is fixedly installed inside the rotating end of the geared motor 3. A drill bit 302 is fixedly installed at the bottom of the threaded sleeve rotating roller 301.
[0036] When this device is in operation, multiple electric screw jacks 101 are stably installed via the depth mounting plate 1. Then, the moving ends inside the multiple electric screw jacks 101 drive the depth connecting block 102 and the depth lifting frame 103 to move up and down. Next, the sampling equipment is stably installed via the depth lifting frame 103. Then, the sampling equipment passes through the depth sampling slot 104 to take samples, enabling the geological sampling device to perform deep exploration sampling. The geological sampling device can perform deep sampling of the geology, thereby increasing the sampling depth of the geological sampling device in the land. The electric screw jacks 101 are electrically connected to the control button 801 via wires.
[0037] The electric slide 201 is used to stably install the adjustment mounting plate 2. Then, the telescopic ends inside the multiple electric slides 201 drive the adjustment connecting block 202 and multiple adjustment fixing side plates 203 to adjust the height. Then, the adjustment fixing plate 204 is used to stably install the drilling sleeve 303. Then, the motor mounting hole 206 inside the adjustment protective frame 205 is used to stably install the reduction motor 3. This allows the geological sampling device to stably sample, and the geological sampling device is less likely to be bent or damaged when sampling in the soil, thereby improving the stability of the geological sampling device. The electric slide 201 is electrically connected to the control button 801 through the wire.
[0038] The drilling sleeve 303 is stably installed through the adjusting and fixing plate 204. Then, the insertion cylinder 305 at the bottom of the drilling sleeve 303 is inserted into the ground. The inner layer 304 of the drilling cylinder is used to protect the inside of the drilling sleeve 303. Then, the rotating end of the geared motor 3 drives the threaded sleeve rotating roller 301 and the drill bit 302 to drill and sample the ground. Then, the discharge slot 307 and discharge frame plate 308 through the surface of the discharge sleeve 306 are used to sample and discharge the soil raised by the spiral drilling of the threaded sleeve rotating roller 301. This allows the geological sampling device to sample hard soil and sample soil of different materials, thereby improving the versatility of geological sampling scenarios. The geared motor 3 is electrically connected to the control button 801 through the wire.
[0039] Among them, push-pull plates 4 are fixedly installed on both sides of the depth mounting plate 1, and push-pull handles 401 are fixedly installed on both sides of the push-pull plates 4.
[0040] It should be noted that when this device is in operation, the sampling device can be moved by pushing and pulling the push-pull handle 401, thereby improving the convenience of moving the sampling device.
[0041] The adjustable support plate 5 has an adjustable support slot 501 that runs through its interior. A main battery box 7 is fixedly installed on one side of the adjustable support plate 5, an auxiliary battery box 6 is fixedly installed on the other side of the adjustable support plate 5, and an equipment support plate 10 is fixedly installed at the bottom of the adjustable support plate 5.
[0042] It should be noted that by adjusting the support plate 5 to support the depth installation plate 1, and then using the adjustment support slot 501 to pass through the sampling device, the stability of soil sampling is improved.
[0043] The main battery box 7 has a main battery buffer pad 701 fixedly installed inside, a main battery 702 movably installed inside the main battery buffer pad 701, and a control block 8 fixedly installed on the surface of the main battery box 7.
[0044] It should be noted that the main battery 702 is protected by the main battery buffer pad 701 inside the main battery box 7, and then the main battery 702 is used to power the electrical equipment when drilling and sampling, thereby improving the battery life of the sampling equipment. The main battery 702 is electrically connected to the control button 801 through wires.
[0045] Among them, a control button 801 is installed through the inside of the control block 8, and a power socket 802 is fixedly installed on one side of the control button 801;
[0046] It should be noted that the electrical equipment is switched on and off by controlling the control button 801, and then the battery is connected to the power socket 802 for external power storage, thereby improving the stability of the equipment operation.
[0047] Among them, an auxiliary battery buffer pad 601 is fixedly installed inside the auxiliary battery box 6, and an auxiliary battery 602 is movably installed inside the auxiliary battery buffer pad 601.
[0048] It should be noted that the auxiliary battery 602 is protected by the auxiliary battery buffer pad 601 inside the auxiliary battery box 6. The auxiliary battery 602 is then used to provide backup power for electrical equipment when drilling and sampling outdoors, thereby improving the battery life of the sampling equipment. The auxiliary battery 602 is electrically connected to the control button 801 through wires.
[0049] Among them, the equipment support plate 10 has a through-hole equipment support slot 1001, front and rear connecting plates 9 are fixedly installed at both ends of the equipment support plate 10, front and rear protective plates 901 are fixedly installed at both ends of the front and rear connecting plates 9, bottom connecting plates 11 are fixedly installed at the bottom of the equipment support plate 10, and side connecting plates 13 are fixedly installed on both sides of the equipment support plate 10.
[0050] It should be noted that the sampling equipment is supported by the equipment support plate 10, and the sampling component passes through the equipment support slot 1001. Then, the equipment support plate 10 is protected by the front and rear protective plates 901, thereby improving the safety of the drilling and sampling equipment.
[0051] Among them, a bottom protective plate 1101 is fixedly installed on the bottom of the bottom connecting plate 11, and a moving block 12 is fixedly installed on both sides of the bottom connecting plate 11.
[0052] It should be noted that the bottom of the equipment support plate 10 is protected by the bottom protective plate 1101, thereby improving the stability of the geological deposit sampling equipment.
[0053] Among them, the bottom of each movable block 12 is fixedly installed with a movable frame 1201, and the interior of each movable frame 1201 is fixedly installed with an off-road tire 1202 by a rotating roller.
[0054] It should be noted that by fixing the off-road tire 1202 inside the mobile frame 1201 via a rotating roller, the off-road tire 1202 can rotate and move inside the mobile frame 1201, thereby improving the convenience of moving the sampling equipment.
[0055] Among them, side buffer plates 1301 are fixedly installed on both sides of the side connecting plate 13, and side protective plates 1302 are fixedly installed on both sides of the side buffer plate 1301.
[0056] It should be noted that the side buffer plate 1301 and the side protective plate 1302 are used to protect the battery equipment, thereby improving the safety of the electrical equipment.
[0057] In this invention, when using the device, the user should refer to the appendix of the instruction manual. Figure 1 Instruction manual attached Figure 2 Instruction manual attached Figure 6 Instruction manual attached Figure 7 Instruction manual attached Figure 8 Included with instruction manual Figure 9 When this device is in operation, the sampling device is supported by the equipment support plate 10, and the sampling component is passed through the equipment support slot 1001. Then, the depth mounting plate 1 is supported by the adjustment support plate 5, and the sampling device is passed through the adjustment support slot 501. The equipment support plate 10 is protected by the front and rear protective plates 901, and the bottom of the equipment support plate 10 is protected by the bottom protective plate 1101. The off-road tire 1202 is fixedly installed inside the moving frame 1201 by a rotating roller, so that the off-road tire 1202 rotates and moves inside the moving frame 1201. Finally, the sampling device is pushed and pulled by the push-pull handle 401.
[0058] Next, refer to the attached instruction manual. Figure 7 Included with instruction manual Figure 8 The main battery 702 is protected by the main battery buffer pad 701 inside the main battery box 7. The main battery 702 is then used to power the electrical equipment when drilling and sampling. The auxiliary battery 602 is protected by the auxiliary battery buffer pad 601 inside the auxiliary battery box 6. The auxiliary battery 602 is then used to provide backup power for the electrical equipment when drilling and sampling. The battery equipment is then protected by the side buffer plate 1301 and the side protective plate 1302. The electrical equipment is then switched on and off using the control button 801. Finally, the battery is externally charged using the power socket 802.
[0059] Finally, please refer to the attached instruction manual. Figure 1 Instruction manual attached Figure 2 Included with instruction manual Figure 3Multiple electric screw jacks 101 are stably installed via a depth mounting plate 1. Then, the moving ends inside the multiple electric screw jacks 101 drive the depth connecting block 102 and the depth lifting frame 103 to move them up and down. Next, the depth lifting frame 103 is used to stably install the sampling device. Then, the sampling device passes through the depth sampling slot 104 to collect samples. Next, an electric slide table 201 is used to stably install an adjusting mounting plate 2. Then, the telescopic ends inside the multiple electric slide tables 201 drive the adjusting connecting block 202 and multiple adjusting fixed side plates 203 to adjust their height. Finally, the adjusting fixed plate 204 is used to stably penetrate and install the drilling sleeve 303. Then, the geared motor 3 is stably installed through the motor mounting hole 206 inside the adjusting protective frame 205. Next, the drilling sleeve 303 is stably installed through the adjusting fixing plate 204. Then, the insertion cylinder 305 at the bottom of the drilling sleeve 303 is inserted into the ground. Then, the inner layer 304 of the drilling cylinder is used to protect the inside of the drilling sleeve 303. Then, the rotating end of the geared motor 3 drives the threaded sleeve rotating roller 301 and the drill bit 302 to drill and sample the ground. Then, the discharge slot 307 and discharge frame plate 308 through the surface of the discharge sleeve 306 are used to sample and discharge the soil raised by the spiral drilling of the threaded sleeve rotating roller 301.
[0060] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A geological and mineral sampling device for easy adjustment of sampling depth, comprising an adjustable support plate (5), characterized in that, Each of the adjustable support plates (5) is fixedly mounted with a depth mounting plate (1), and each of the depth mounting plates (1) is fixedly mounted with an electric screw jack (101). Each of the moving ends of the electric screw jack (101) is fixedly mounted with a depth connecting block (102). Each of the depth connecting blocks (102) is fixedly mounted with a depth lifting frame (103). The bottom of the depth lifting frame (103) is provided with a depth sampling slot (104). Adjustable mounting plates (2) are fixedly installed on both sides inside the depth lifting frame (103). Electric slides (201) are fixedly installed between the adjustable mounting plates (2). Adjustable connecting blocks (202) are fixedly installed between the telescopic ends of the electric slides (201). Adjustable fixed side plates (203) are fixedly installed between the adjustable connecting blocks (202). Adjustable fixed plates (204) are fixedly installed between the adjustable fixed side plates (203). The top of the adjustable fixed side plates (203) is fixedly installed with... There is an adjustable protective frame (205), and a motor mounting hole (206) is provided through the top of the adjustable protective frame (205). The telescopic ends inside multiple electric slides (201) drive the adjusting connecting block (202) and multiple adjusting fixed side plates (203) to adjust the height. Then, the adjusting fixed plate (204) is used to stably install the drilling sleeve (303). Then, the motor mounting hole (206) provided inside the adjustable protective frame (205) is used to stably install the reduction motor (3). A geared motor (3) is fixedly installed inside the motor mounting hole (206). A discharge sleeve (306) is fixedly installed at the bottom of the geared motor (3). A discharge slot (307) is provided through the surface of the discharge sleeve (306). A discharge frame plate (308) is fixedly installed on the surface of the discharge slot (307). A drilling sleeve (303) is fixedly installed at the bottom of the discharge sleeve (306). A drilling inner layer (304) is fixedly fitted inside the drilling sleeve (303). A ground insertion cylinder (305) is fixedly installed at the bottom of the drilling sleeve (303). A threaded sleeve rotating roller (301) is fixedly installed inside the rotating end of the geared motor (3). A drill bit (302) is fixedly installed at the bottom of the threaded sleeve rotating roller (301).
2. The geological and mineral sampling device for easy adjustment of sampling depth according to claim 1, characterized in that, Push-pull plates (4) are fixedly installed on both sides of the depth mounting plate (1), and push-pull handles (401) are fixedly installed on both sides of the push-pull plates (4).
3. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 1, characterized in that, An adjustment support slot (501) is provided through the interior of the adjustment support plate (5). A main battery box (7) is fixedly installed on one side of the adjustment support plate (5), and a secondary battery box (6) is fixedly installed on the other side of the adjustment support plate (5). An equipment support plate (10) is fixedly installed at the bottom of the adjustment support plate (5).
4. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 3, characterized in that, The main battery box (7) is fixedly installed inside the main battery buffer pad (701), and the main battery (702) is movably installed inside the main battery buffer pad (701). The main battery box (7) is fixedly installed on the surface of the main battery box (7).
5. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 4, characterized in that, A control button (801) is installed inside the control block (8), and a power socket (802) is fixedly installed on one side of the control button (801).
6. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 3, characterized in that, The auxiliary battery box (6) has an auxiliary battery buffer pad (601) fixedly installed inside, and an auxiliary battery (602) is movably installed inside the auxiliary battery buffer pad (601).
7. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 3, characterized in that, The equipment support plate (10) has a through-hole equipment support slot (1001) inside. Both ends of the equipment support plate (10) are fixedly installed with front and rear connecting plates (9). Both ends of the front and rear connecting plates (9) are fixedly installed with front and rear protective plates (901). The bottom of the equipment support plate (10) is fixedly installed with a bottom connecting plate (11). Both sides of the equipment support plate (10) are fixedly installed with side connecting plates (13).
8. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 7, characterized in that, The bottom of the bottom connecting plate (11) is fixedly installed with a bottom protective plate (1101), and the two sides of the bottom connecting plate (11) are fixedly installed with moving blocks (12).
9. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 8, characterized in that, Each of the movable blocks (12) has a movable frame (1201) fixedly installed at its bottom, and each movable frame (1201) has an off-road tire (1202) fixedly installed inside by a rotating roller.
10. A geological and mineral sampling device for easy adjustment of sampling depth according to claim 7, characterized in that, Side buffer plates (1301) are fixedly installed on both sides of the side connecting plate (13), and side protective plates (1302) are fixedly installed on both sides of the side buffer plate (1301).
Citation Information
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