Energy-saving and environment-friendly anode carbon block slotting device
By introducing a contact ring to block powder and dust in the anode carbon block grooving device, a water spray ring to spray water for cooling, and a heat-conducting arc plate for rapid cooling, the problem of powder and dust splashing is solved, and an environmentally friendly and efficient grooving process is achieved.
Patent Information
- Application Number
- CN202422667675.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-01
AI Technical Summary
Existing anode carbon block grooving devices are prone to dust and powder splashing during the grooving process, leading to environmental pollution and health risks, and the drill bit is also prone to wear.
A slotting device for anode carbon blocks was designed, comprising a lifting structure, an adjusting structure, a water spray ring, and a heat-conducting arc plate. The device uses an abutment ring to block powder and dust, a water spray ring to spray water for cooling, and a heat-conducting arc plate for rapid cooling, thus preventing powder and dust from splashing and drill bit wear.
It effectively prevents dust and debris from splashing, reduces environmental pollution, protects the health of workers, reduces drill bit wear, and improves trenching efficiency and safety.
Smart Images

Figure CN223519944U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of anode carbon block grooving technology, and specifically discloses an energy-saving and environmentally friendly anode carbon block grooving device. Background Technology
[0002] During the production of anode carbon blocks, slots need to be drilled into them. Drilling these slots improves current efficiency and reduces energy consumption. However, a slotting device is required. Commercially available slotting devices often lack adequate shielding structures. When the drill bit cuts into the surface of the anode carbon block, dust from the pulverized material floats in the air, and the powder fragments are prone to splashing. This can harm the health of workers and pollute the environment around the drilled holes, increasing their workload.
[0003] Therefore, the existing anode carbon block grooving device cannot meet the needs of actual use, so there is an urgent need for improved technology to solve the above problems. Utility Model Content
[0004] In view of this, the purpose of this utility model is to propose an energy-saving and environmentally friendly anode carbon block grooving device to solve the problems mentioned above.
[0005] To achieve the above objectives, this utility model provides an energy-saving and environmentally friendly anode carbon block grooving device, including a lifting structure. An adjusting structure is fixedly connected to the upper part of the lifting structure. A drill pipe is connected to the adjusting structure. An installation plate is sleeved on the drill pipe. A through hole is opened on the installation plate. A receiving ring is fixedly connected to the installation plate. An abutment ring is slidably connected to the receiving ring. A connecting ring passes through the through hole on the installation plate. A water spraying ring is fixedly connected to one end of the connecting ring near the receiving ring. The water spraying ring is sleeved with the drill pipe. A water spray nozzle is opened on the edge of the water spraying ring. A water spray head is fixedly connected to the lower part of the water spraying ring.
[0006] In the above technical solution, further, a fixing rib ring is fixedly connected to one end of the abutting ring and the receiving ring at the outer edge, a sliding rod is passed through the fixing rib ring, a compression spring is sleeved on the sliding rod, and the compression spring is connected between the fixing rib ring and the receiving ring.
[0007] In the above technical solution, the adjustment structure further includes a mounting bracket fixedly connected to the upper part of the lifting structure, a mounting frame detachably connected to the mounting bracket, a controller detachably connected to the mounting frame, and a sliding platform detachably connected to the top surface of the mounting frame.
[0008] Further, the first distance measuring sensor is detachably connected to the lower part of the side of the mounting bracket away from the mounting rack body, the upper part of the mounting bracket is fixedly connected with a fixed plate through a mounting screw rod, and the fixed plate is fixedly connected with the storage ring through an inclined fixed rod.
[0009] Further, the upper part of the mounting bracket is detachably connected with a mounting bottom plate through a mounting bolt, the top surface of the mounting bottom plate is detachably connected with a water collecting seat, the inner cavity of the water collecting seat is connected with a water conveying pipe and a water receiving pipe, and the water conveying pipe is connected with the water spraying ring at one end away from the water collecting seat.
[0010] Further, the water collecting seat is embedded with heat-conducting arc pieces, the heat-conducting arc pieces can abut against the outer wall of the drill pipe, the side of the heat-conducting arc pieces away from the drill pipe is fixedly connected with heat dissipation rods at equal intervals, and the heat dissipation rods are distributed in the inner part of the water collecting seat.
[0011] Further, the side of the water collecting seat away from the water receiving pipe is detachably connected with a detector, the inner wall of the connecting ring is fixedly connected with a wiping ring, the outer wall of the connecting ring is provided with a rectangular connecting groove, the inner wall of the rectangular connecting groove is detachably connected with a mounting piece, the mounting piece can be fixedly connected with the mounting plate, and the inner wall of the wiping ring abuts against the inner wall of the drill pipe.
[0012] Further, the output end of the sliding platform is detachably connected with a support rack body, the part of the support rack body away from the drill pipe is detachably connected with a transmission motor, the output shaft of the transmission motor penetrates through the support rack body and is fixedly connected with the drill pipe, and the part of the support rack body close to the water collecting seat is connected with a second distance measuring sensor.
[0013] Compared with the prior art, the utility model has the following beneficial effects:
[0014] 1. The abutting ring in the anode carbon block slotting device can shield the part of the anode carbon block being slotted, can avoid the flying of dust and powder generated when the anode carbon block is slotted, and can also avoid the floating of dust in the air when the anode carbon block is slotted.
[0015] 2. When the abutting ring in the anode carbon block slotting device shields the part of the anode carbon block being slotted, the water in the water spraying ring can be sprayed to the part of the anode carbon block being slotted through the water spraying port and the water spraying head, so that dust and powder can be discharged.
[0016] 3. When the water spraying ring in the anode carbon block slotting device sprays water to the part of the anode carbon block being slotted, the drill pipe can quickly cool the part of the anode carbon block being slotted, so that the phenomenon of rapid wear of the drill pipe can be avoided.
[0017] 4. The drill pipe in the anode carbon block slotting device can be quickly cooled by the heat-conducting arc piece when slotting the anode carbon block, and the heat-conducting arc piece can support the drill pipe, so that the phenomenon of the drill pipe being twisted and broken can be avoided. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a structural schematic view of the utility model;
[0019] Figure 2 It is a penetrating structure view of the drill pipe and the mounting plate in the utility model;
[0020] Figure 3 It is a penetrating structure view of the water spraying ring and the mounting plate in the utility model;
[0021] Figure 4 It is a distribution structure view of the connecting ring, the water spraying ring and the heat-conducting arc piece in the utility model;
[0022] Figure 5 It is a distribution structure view of the fixed plate and the mounting plate in the utility model;
[0023] Figure 6 It is a connecting structure view of the abutting ring and the storage ring in the utility model;
[0024] Figure 7 It is a connecting structure view of the heat dissipation rod and the water collecting seat in the utility model;
[0025] Figure 8 It is a connecting structure view of the wiping ring and the water spraying ring in the utility model;
[0026] Figure 9 It is a connecting structure view of the fixed rib ring and the sliding rod in the utility model.
[0027] 1, abutting ring; 2, storage ring; 3, mounting support; 4, first distance measuring sensor; 5, drill pipe; 6, sliding platform; 7, support frame; 8, transmission motor; 9, controller; 10, mounting frame; 11, fixed plate; 12, mounting screw; 13, mounting plate; 14, water spraying ring; 15, heat-conducting arc piece; 16, mounting bottom plate; 17, water spraying port; 18, connecting ring; 19, water collecting seat; 20, detector; 21, rectangular connecting groove; 22, water delivery pipe; 23, mounting bolt; 24, mounting piece; 25, water spraying head; 26, penetrating hole; 27, inclined fixed rod; 28, fixed rib ring; 29, water receiving pipe; 30, heat dissipation rod; 31, wiping ring; 32, sliding rod; 33, extrusion spring; 34, second distance measuring sensor; 35, lifting structure. DETAILED DESCRIPTION
[0028] In order to enable the above objects, features and advantages of the present application to be more clearly understood, further detailed description will be made in conjunction with the accompanying drawings and specific embodiments.
[0029] In the following description, a number of specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced without the specific details. In other instances, well-known methods, structures and techniques have not been described in detail in order to avoid obscuring the present application.
[0030] Please refer to Figures 1-9 The utility model discloses an energy -conserving environmental protection's anode carbon block grooving device, including the lifting structure 35, the upper portion fixed connection of lifting structure 35 has the adjusting structure, is connected with the drill pipe 5 on adjusting structure, is connected with the mounting plate 13 on the drill pipe 5, is set up in the through -hole 26 on the mounting plate 13, is fixedly connected with the receiving ring 2 on the mounting plate 13, the abutment ring 1 of sliding connection has on the receiving ring 2, the inside through -hole 26 on the mounting plate 13 is penetrated with the connecting ring 18, the one end fixed connection of connecting ring 18 is close to the receiving ring 2 has the water spraying ring 14, and the water spraying ring 14 is connected with the drill pipe 5, and the edge of water spraying ring 14 is set up with the water jet 17, and the lower part fixed connection of water spraying ring 14 has the water jet head 25;
[0031] The device in actual use, lifting structure 35 can drive the use position adjustment of drill pipe 5, lifting structure 35 can be selected as the structure on the market, lifting structure 35 can drive the use position movement of drill pipe 5, the mounting plate 13 can drive the abutment ring 1 fixed connection on the mounting support 3, when the mounting support 3 drives the abutment ring 1 and abuts on the anode carbon block, the dust and the chaff that drill pipe 5 is slotted to the anode carbon block can be sheltered, at this time, the water liquid that water spraying ring 14 is ejected through water jet 17 can wash the dust and the chaff, can avoid the damage of dust and the chaff to the staff, also can realize the surface cooling treatment of drill pipe 5, and the water liquid can be sprayed to the inside of the slotting, at this time, the anode carbon block material in the inside of the slotting can be wetted by the water liquid, can facilitate the fast slotting of drill pipe 5 on the surface of the anode carbon block, also can realize the cooling treatment of drill pipe 5, can avoid the damage of drill pipe 5.
[0032] The one end of the abutment ring 1 and the receiving ring 2 penetration is located in the fixed connection of fixed rib ring 28, and the sliding rod 32 is penetrated on the fixed rib ring 28, and the extrusion spring 33 is connected between the fixed rib ring 28 and the receiving ring 2.
[0033] The abutting ring 1 can slide on the sliding rod 32, and the abutting ring 1 can be prevented from shaking. When the abutting ring 1 abuts against the surface of the anode carbon block, the fixing rib ring 28 can extrude the extrusion spring 33, at this time, the extrusion spring 33 can work in a force storage mode, and the repulsive force generated by the extrusion spring 33 can drive the abutting ring 1 to stably abut against the surface of the anode carbon block. It needs to be supplemented that the abutting ring 1 and the receiving ring 2 are both semi-ring structures. When the abutting ring 1 and the receiving ring 2 receive the dust and powder generated by the opening of the anode carbon block, the dust and powder can fall under the action of gravity.
[0034] The adjusting structure comprises a mounting bracket 3 fixedly connected to the upper part of the lifting structure 35, a mounting frame body 10 detachably connected to the mounting bracket 3, and a controller 9 detachably connected to the mounting frame body 10. The top surface of the mounting frame body 10 is detachably connected to a sliding platform 6.
[0035] The lifting structure 35 can drive the use position of the drill pipe 5 to be adjusted through the mounting frame body 10, so that the drill pipe 5 can groove different parts of the surface of the anode carbon block. The controller 9 is a controller on the market. When a control program is placed in the controller 9, the controller 9 can control the working mode of the sliding platform 6 and the transmission motor 8, so that the drill pipe 5 can stably groove the surface of the anode carbon block.
[0036] The side of the mounting bracket 3 away from the mounting frame body 10 is detachably connected to a first distance measuring sensor 4 at the lower part. The upper part of the mounting bracket 3 is fixedly connected to a fixed plate 11 through a mounting screw 12. The fixed plate 11 is fixedly connected to the receiving ring 2 through an inclined fixed rod 27.
[0037] The first distance measuring sensor 4 can detect the distance between the mounting bracket 3 and the surface of the anode carbon block in real time, so as to infer whether the abutting ring 1 abuts against the surface of the anode carbon block. When the abutting ring 1 abuts against the surface of the anode carbon block, the drill pipe 5 can stably groove the surface of the anode carbon block. When the mounting screw 12 penetrates through the fixed plate 11 and is connected to the mounting bracket 3, the abutting ring 1 and the receiving ring 2 can protect the grooving part of the anode carbon block.
[0038] The upper part of the mounting bracket 3 is detachably connected to a mounting bottom plate 16 through a mounting bolt 23. The top surface of the mounting bottom plate 16 is detachably connected to a water collecting seat 19. The inner cavity of the water collecting seat 19 is connected to a water conveying pipe 22 and a water receiving pipe 29. One end of the water conveying pipe 22 away from the water collecting seat 19 is connected to the water spraying ring 14.
[0039] The receiving end of the water inlet pipe 29 is connected with an external pump, which can transport external water to the inside of the water collecting seat 19 through the water inlet pipe 29. When the water in the water collecting seat 19 reaches a suitable water amount, the water in the water collecting seat 19 can be transported to the inside of the water spraying ring 14 through the water inlet pipe 22. Then the water in the water spraying ring 14 can be sprayed to the inside of the abutting ring 1 and the receiving ring 2 through the water outlet 17. The water sprayed by the water outlet 25 can be sprayed to the inside of the groove. When the water contacts dust and powder, the dust and powder can be prevented from floating in the air. Meanwhile, the water can also cool the surface of the drill pipe 5.
[0040] The heat-conducting arc piece 15 is embedded on the water collecting seat 19. The heat-conducting arc piece 15 can abut against the outer wall of the drill pipe 5. The heat-conducting arc piece 15 is fixedly connected with the heat dissipation rods 30 at equal intervals on the side away from the drill pipe 5. The heat dissipation rods 30 are distributed in the inside of the water collecting seat 19.
[0041] When the heat-conducting arc piece 15 contacts the drill pipe 5, the heat-conducting arc piece 15 can transfer the heat on the drill pipe 5 to the heat dissipation rods 30. Meanwhile, the heat dissipation rods 30 can transfer the heat to the water in the inside of the water collecting seat 19. At this time, the drill pipe 5 can be quickly cooled through the heat-conducting arc piece 15, so that the drill pipe 5 can be prevented from being damaged due to high temperature.
[0042] The water collecting seat 19 is detachably connected with the detector 20 on the side away from the water inlet pipe 29. The inner wall of the connecting ring 18 is fixedly connected with the wiping ring 31. The outer wall of the connecting ring 18 is provided with the rectangular connecting groove 21. The inner wall of the rectangular connecting groove 21 is detachably connected with the mounting piece 24. The mounting piece 24 can be fixedly connected with the mounting plate 13. The inner wall of the wiping ring 31 abuts against the inner wall of the drill pipe 5.
[0043] The detector 20 includes a temperature detector and a water flow detector. The temperature detector can detect the water temperature in the inside of the water collecting seat 19 in real time, so that the staff can know the temperature of the drill pipe 5. The water flow detector can detect the water flow in the inside of the water collecting seat 19 in real time, so as to infer the cooling condition of the drill pipe 5. The wiping ring 31 can wipe the dust on the surface of the drill pipe 5, so that the surface of the drill pipe 5 can contact the heat-conducting arc piece 15. The drill pipe 5 can be quickly cooled through the heat-conducting arc piece 15, so that the drill pipe 5 can be prevented from being damaged due to high temperature.
[0044] The output end of the sliding platform 6 is detachably connected with the support frame 7. The part of the support frame 7 away from the drill pipe 5 is detachably connected with the transmission motor 8. The output shaft of the transmission motor 8 penetrates through the support frame 7 and is fixedly connected with the drill pipe 5. The part of the support frame 7 close to the water collecting seat 19 is connected with the second distance measuring sensor 34.
[0045] The output end of the sliding platform 6 can drive the transmission motor 8 and the use position of the drill pipe 5 to adjust through the support frame body 7, when the drill pipe 5 abuts against the surface of the anode carbon block, the drill pipe 5 can open a slot hole on the surface of the anode carbon block, the second distance measuring sensor 34 can detect the distance between the support frame body 7 and the water collecting seat 19 in real time, so that the worker can infer the slotting depth of the drill pipe 5, and the controller 9 can control the transmission motor 8 to work in real time when the transmission motor 8 works, so that the transmission motor 8 can stably drive the drill pipe 5 to open a slot on the surface of the anode carbon block;
[0046] When the anode carbon block slotting device is in actual use, the staff pre-loads the control program in the controller 9, the controller 9 can control the transmission motor 8 and the sliding platform 6 to work in real time, the lifting structure 35 can control the use position of the drill pipe 5 through the installation support 3, so that the staff can conveniently slot the different positions on the surface of the anode carbon block, when the lifting structure 35 drives the drill pipe 5 to move, the first distance measuring sensor 4 can detect the use position of the drill pipe 5 in real time, and at the same time, it is convenient for the staff to infer whether the abutting ring 1 abuts on the surface of the anode carbon block, when the abutting ring 1 abuts on the surface of the anode carbon block, the receiving end of the water pipe 29 is connected with the external pump, the external pump can transport the external water to the inside of the water collecting seat 19 through the water pipe 29, when the water in the inside of the water collecting seat 19 reaches the appropriate water amount, the water in the inside of the water collecting seat 19 can be transported to the inside of the water spraying ring 14 through the water conveying pipe 22, then the water in the inside of the water spraying ring 14 can be sprayed to the inside of the abutting ring 1 and the receiving ring 2 through the water spraying port 17, the water sprayed by the water spraying head 25 can be sprayed to the inside of the slot, when the water contacts the dust and the powder, the dust and the powder can be prevented from floating in the air, and at the same time, the water can also cool the surface of the drill pipe 5, when the heat conduction arc piece 15 contacts the drill pipe 5, the heat conduction arc piece 15 can transmit the heat on the drill pipe 5 to the heat dissipation rod 30, and at the same time, the heat dissipation rod 30 can transmit the heat to the water in the inside of the water collecting seat 19, at this time, the drill pipe 5 can be quickly cooled through the heat conduction arc piece 15, and the drill pipe 5 can be prevented from being damaged due to high temperature, the detector 20 includes a temperature detector and a water flow detector, the temperature detector can detect the water temperature in the inside of the water collecting seat 19 in real time, so that the staff can know the temperature of the drill pipe 5, and the water flow detector can detect the water flow in the inside of the water collecting seat 19 in real time, so as to infer the cooling condition of the drill pipe 5, the wiping ring 31 can wipe the dust on the surface of the drill pipe 5, the surface of the drill pipe 5 can be contacted with the heat conduction arc piece 15, the drill pipe 5 can be quickly cooled through the heat conduction arc piece 15, and the drill pipe 5 can be prevented from being damaged due to high temperature, the abutting ring 1 can slide on the sliding rod 32, and the abutting ring 1 can be prevented from shaking, when the abutting ring 1 abuts on the surface of the anode carbon block, the fixed rib ring 28 can extrude the compression spring 33, at this time, the compression spring 33 can work in force storage mode, the repulsive force generated by the compression spring 33 can drive the abutting ring 1 to stably abut on the surface of the anode carbon block, it should be noted that the abutting ring 1 and the receiving ring 2 are both semi-ring structures, when the abutting ring 1 and the receiving ring 2 receive the dust and the powder generated by the anode carbon block hole, the dust and the powder can fall under the action of gravity, so that the staff can clean the mixture of the water and the dust and the powder, when the abutting ring 1 abuts on the surface of the anode carbon block, the drill pipe 5 can stably slot the surface of the anode carbon block, at the same time, when the installation screw 12 penetrates the fixed plate 11 and is connected with the installation support 3, the abutting ring 1 and the receiving ring 2 can protect the hole part of the anode carbon block, and the drill pipe 5 can be prevented from being affected by external objects to slot the surface of the anode carbon block.Meanwhile, external objects can also be prevented from entering the inside of the slot, and the output end of the sliding platform 6 can drive the transmission motor 8 and the use position of the drill pipe 5 to be adjusted through the support frame body 7, when the drill pipe 5 abuts against the surface of the anode carbon block, the drill pipe 5 can groove the surface of the anode carbon block, the second distance measuring sensor 34 can detect the distance between the support frame body 7 and the water collecting seat 19 in real time, so that the staff can infer the grooving depth of the drill pipe 5, and when the transmission motor 8 is working, the controller 9 can control the transmission motor 8 to work in real time, so that the transmission motor 8 can stably drive the drill pipe 5 to groove the surface of the anode carbon block.
[0047] The basic principle, main characteristics and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. An energy-saving and environment-friendly anode carbon block grooving device, comprising a lifting structure (35), the upper part of the lifting structure (35) is fixedly connected with an adjusting structure, and a drill pipe (5) is connected to the adjusting structure, characterized in that: The drill pipe (5) is sleeved with a mounting plate (13), the mounting plate (13) is provided with a through hole (26), the mounting plate (13) is fixedly connected with a receiving ring (2), the receiving ring (2) is slidably connected with an abutting ring (1), the mounting plate (13) is penetrated by a connecting ring (18) inside the through hole (26), one end of the connecting ring (18) close to the receiving ring (2) is fixedly connected with a water spraying ring (14), the water spraying ring (14) is sleeved with the drill pipe (5), the edge of the water spraying ring (14) is provided with a water spraying port (17), and the lower part of the water spraying ring (14) is fixedly connected with a water spraying head (25).
2. The energy-saving and environment-friendly anode carbon block grooving device according to claim 1, characterized in that, One end of the abutting ring (1) and the receiving ring (2) penetrated is fixedly connected with a fixed rib ring (28) on the outer edge, the fixed rib ring (28) is penetrated by a sliding rod (32), the sliding rod (32) is sleeved with a extrusion spring (33), and the extrusion spring (33) is connected between the fixed rib ring (28) and the receiving ring (2).
3. The energy-saving and environment-friendly anode carbon block grooving device according to claim 1, characterized in that, The adjusting structure comprises a mounting bracket (3) fixedly connected to the upper part of the lifting structure (35), the mounting bracket (3) is detachably connected with a mounting frame body (10), the mounting frame body (10) is detachably connected with a controller (9), and the top surface of the mounting frame body (10) is detachably connected with a sliding platform (6).
4. The energy-saving and environment-friendly anode carbon block grooving device according to claim 3, characterized in that, The side of the mounting bracket (3) away from the mounting frame body (10) is detachably connected with a first distance measuring sensor (4) at the lower part, the upper part of the mounting bracket (3) is fixedly connected with a fixed plate (11) through a mounting screw (12), and the fixed plate (11) is fixedly connected with the receiving ring (2) through an inclined fixed rod (27).
5. The energy-saving and environment-friendly anode carbon block grooving device according to claim 3, characterized in that, The upper part of the mounting bracket (3) is detachably connected with a mounting bottom plate (16) through a mounting bolt (23), the top surface of the mounting bottom plate (16) is detachably connected with a water collecting seat (19), the inner cavity of the water collecting seat (19) is connected with a water conveying pipe (22) and a water receiving pipe (29), and one end of the water conveying pipe (22) away from the water collecting seat (19) is connected with the water spraying ring (14).
6. The energy-saving and environment-friendly anode block slotting device according to claim 5, characterized in that, The water collecting seat (19) is embedded with a heat conducting arc piece (15), the heat conducting arc piece (15) can abut against the outer wall of the drill pipe (5), and the side of the heat conducting arc piece (15) away from the drill pipe (5) is fixedly connected with heat dissipation rods (30) at equal intervals, and the heat dissipation rods (30) are distributed inside the water collecting seat (19).
7. The energy-saving and environment-friendly anode block slotting device according to claim 5, characterized in that, The side of the water collecting seat (19) away from the water receiving pipe (29) is detachably connected with a detector (20), the inner wall of the connecting ring (18) is fixedly connected with a wiping ring (31), the outer wall of the connecting ring (18) is provided with a rectangular connecting groove (21), the inner wall of the rectangular connecting groove (21) is detachably connected with a mounting piece (24), and the mounting piece (24) can be fixedly connected with the mounting plate (13). The inner wall of the wiping ring (31) abuts against the inner wall of the drill pipe (5).
8. The energy-saving and environment-friendly anode block slotting device according to claim 5, characterized in that, The output end of the sliding platform (6) is detachably connected with a support frame body (7), the part of the support frame body (7) away from the drill pipe (5) is detachably connected with a transmission motor (8), the output shaft of the transmission motor (8) penetrates the support frame body (7) and is fixedly connected with the drill pipe (5), and the part of the support frame body (7) close to the water collecting seat (19) is connected with a second distance measuring sensor (34).