A remote blasting vibration monitoring device
By designing a sliding frame and driving mechanism in the remote blasting vibration monitoring equipment, the movement of the waterproof and breathable membrane is driven by combining the design of the collection frame and cleaning board, the automatic cleaning of the waterproof and breathable membrane is achieved, solving the performance degradation caused by dust and water vapor accumulation, and extending the service life of the equipment.
Patent Information
- Application Number
- CN202410539730.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2044-04-30
AI Technical Summary
In existing remote blasting vibration monitoring equipment, the waterproof and breathable membrane is easily accumulated by dust and water vapor under low temperature or high dust conditions, resulting in a degradation of its waterproof and breathable performance and a lack of an effective cleaning mechanism.
A remote blasting vibration monitoring device is designed, using a sliding frame and a driving mechanism to drive the movement of the waterproof and breathable membrane. Combined with the design of the collection frame and cleaning plate, the automatic cleaning of the waterproof and breathable membrane is achieved.
Through the automatic cleaning mechanism, dust and water vapor on the waterproof and breathable membrane are effectively removed, which extends its service life, improves waterproof and breathable performance, and solves the problem of degradation in the performance of the equipment under low temperature or high dust conditions.
Smart Images

Figure CN118491215B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of blasting vibration monitoring, and in particular to a remote blasting vibration monitoring device. Background Art
[0002] Blasting vibration monitoring is a technical means for real-time monitoring and evaluation of vibrations generated by blasting activities. This monitoring method is based on vibration sensing technology. By installing sensors or accelerometers on the ground or other structures, it measures the vibrations generated by blasting activities. These sensors can capture parameters such as the amplitude, frequency, and duration of the vibrations, and transmit the collected data to a data collector, which is then used for analyzing and evaluating the impact of the vibrations.
[0003] In the prior art, a remote blasting vibration monitoring device includes a device body. A ventilation opening is provided on the side wall of the device body, and a waterproof and breathable membrane is fixedly connected in the ventilation opening, which can prevent moisture and dust from entering the interior of the device, while ensuring the air circulation inside the device body to prevent overheating. A vibration sensor, a data collector, a communication module, and a battery pack are installed in the device body. The vibration sensor is used to measure the vibration signals generated by blasting activities. The data collector is responsible for receiving the original vibration data transmitted by the sensor and performing preliminary processing and storage. The communication module realizes data transmission between the device and a remote monitoring center. The battery pack provides power for the vibration sensor, the data collector, and the communication module. The bottom of the device body is fixedly connected with a mounting seat for connecting to the ground.
[0004] However, when the device body is under low-temperature or high-dust conditions, external dust and water vapor can accumulate on the waterproof and breathable membrane in the ventilation opening faster. At this time, it is necessary to replace and clean the waterproof and breathable membrane in a timely manner. Since the waterproof and breathable membrane is fixedly connected in the ventilation opening and no cleaning mechanism is provided, the replacement and cleaning effect of the waterproof and breathable membrane is low, which will affect the waterproof and breathable performance of the waterproof and breathable membrane. Summary of the Invention
[0005] In order to solve the problem of affecting the waterproof and breathable performance of the waterproof and breathable membrane, this application provides a remote blasting vibration monitoring device.
[0006] The remote blasting vibration monitoring device provided by this application adopts the following technical solutions:
[0007] A remote blasting vibration monitoring device comprises a device body, wherein the device body is provided with a vibration sensor, a data collector, a communication module and a battery pack, a vent is provided on the side wall of the device body, a first installation cavity and a second installation cavity are formed in the inner wall of the device body, sliding grooves are provided on the inner top surface and the inner bottom surface of the vent, and the two sliding grooves are respectively connected with the first installation cavity and the second installation cavity, a sliding frame is vertically placed in the vent, and the side walls on both sides of the sliding frame are in contact with the inner wall of the vent, and the side walls of the sliding frame are covered with a waterproof and breathable membrane, the top of the sliding frame extends to the first installation cavity through the sliding groove, and the bottom of the sliding frame extends to the second installation cavity through the sliding groove, a driving mechanism for driving the sliding frame to move is installed in the device body, a collection frame with an open top is fixedly connected to the inner bottom surface of the vent, and the side walls of the collection frame are in contact with the waterproof and breathable membrane.
[0008] Preferably, the driving mechanism includes a motor fixedly connected to the top surface of the first mounting cavity, a first reciprocating screw fixedly connected to the output shaft of the motor, a driving guide rod fixedly connected to the inner wall of the first mounting cavity, and a driving block sleeved on the first reciprocating screw and the driving guide rod; the driving block is threadedly connected to the first reciprocating screw, and the driving block is fixedly connected to the sliding frame.
[0009] Preferably, a cleaning mechanism is installed in the vent, and the cleaning mechanism includes a second reciprocating screw rotatably installed on the inner bottom surface of the vent, a cleaning guide rod fixedly connected to the inner bottom surface of the vent, and a placement plate sleeved on the second reciprocating screw and the cleaning guide rod; the placement plate is threadedly connected to the second reciprocating screw, the second reciprocating screw extends into the first installation cavity, the first reciprocating screw is fixedly connected to the first gear, the second reciprocating screw is fixedly connected to the second gear meshing with the first gear, a placement groove is provided on the side wall of the placement plate facing the waterproof and breathable membrane, a first spring is fixedly connected to the inner wall of the placement groove, a cleaning plate is placed in the placement groove, one side of the cleaning plate is fixedly connected to the first spring, and the other side of the cleaning plate can contact the waterproof and breathable membrane, and a locking component for locking the cleaning plate is installed on the placement plate.
[0010] Preferably, a guide plate is fixedly connected to one side of the top of the collection frame close to the waterproof breathable membrane, and a guide slope is formed on the top of the guide plate, and the guide slope is inclined toward the side away from the waterproof breathable membrane.
[0011] Preferably, the cleaning plate can contact the guiding inclined surface. An installation groove is vertically formed on the inner top surface of the placement groove. The locking component includes a second spring fixedly connected to the inner top surface of the installation groove and a locking block placed in the installation groove. The second spring is fixedly connected to the locking block. A locking groove for the insertion of the locking block is formed at the top of the cleaning plate. A first connection groove is formed at the top of the placement plate. A second connection groove communicating with the installation groove is formed on the inner wall of the first connection groove. A first connecting rod is vertically placed in the first connection groove, and a second connecting rod is horizontally placed in the second connection groove. The top of the first connecting rod extends to the outside of the placement plate. A connecting inclined surface is formed at one end of the second connecting rod facing the first connecting rod. The connecting inclined surface contacts the first connecting rod. An unlocking groove for the insertion of the second connecting rod is formed on the side wall of the locking block. An unlocking inclined surface is formed on the inner top surface of the unlocking groove. The unlocking inclined surface contacts the second connecting rod.
[0012] Preferably, adhesion components are installed in both the first installation cavity and the second installation cavity. The adhesion component includes a first rotating shaft rotatably installed in the first installation cavity and an adhesion roller fixedly connected to the first rotating shaft. A sticky cloth is arranged on the adhesion roller. The adhesion roller contacts the waterproof and breathable film. A second rotating shaft is rotatably installed in the first installation cavity. A first bevel gear is fixedly connected to the second reciprocating screw. A second bevel gear meshing with the first bevel gear is fixedly connected to the second rotating shaft. A third bevel gear is fixedly connected to the second rotating shaft. A fourth bevel gear meshing with the third bevel gear is fixedly connected to the first rotating shaft.
[0013] Preferably, a hot air blower is fixedly connected to the equipment body. Hot air pipes are fixedly connected to the inner walls of both the first installation cavity and the second installation cavity. The air outlet end of the hot air blower is connected to the hot air pipe through a ventilation pipe. A plurality of air blowing nozzles are fixedly connected to the hot air pipe.
[0014] Preferably, a control component is installed in the collection box. The control component includes a control board horizontally placed in the collection box. The side walls around the control board are all attached to the inner wall of the collection box. A plug rod is fixedly connected to the bottom of the control board. A plugging groove for the sliding of the plug rod is formed on the inner bottom surface of the collection box. A third spring is fixedly connected to the bottom of the control board. The third spring is fixedly connected to the inner bottom surface of the collection box. A first contact is arranged on the plug rod. A second contact cooperating with the first contact is arranged on the inner wall of the plugging groove. The battery pack is electrically connected to the hot air blower and the motor through wires. The first contact is electrically connected to the hot air blower through a wire. The second contact is electrically connected to the motor through a wire. A pushing component for cleaning the collection box is installed in the collection box.
[0015] Preferably, a pushing groove is formed in the inner wall of the collection box. The pushing member includes a third reciprocating screw rotatably installed on the inner wall of the pushing groove, a pushing guide rod fixedly connected to the inner wall of the pushing groove, and a pushing plate placed in the pushing groove. Both the third reciprocating screw and the pushing guide rod pass through the pushing plate. The third reciprocating screw is threadedly connected to the pushing plate. The third reciprocating screw extends to the outside of the collection box. A fifth bevel gear is fixedly connected to the second reciprocating screw. A sixth bevel gear meshing with the fifth bevel gear is fixedly connected to the third reciprocating screw. The length of the pushing plate is the same as that of the control plate. When the control plate moves to the bottom of the collection box, the top of the control plate can contact the bottom of the pushing plate. An outlet is formed in the side wall of the collection box. A discharge pipe communicating with the outlet is fixedly connected to the side wall of the collection box. A blocking member for closing the outlet is installed in the collection box.
[0016] Preferably, a pushing groove is formed in the inner wall of the collection box. The pushing member includes a third reciprocating screw rotatably installed on the inner wall of the pushing groove, a pushing guide rod fixedly connected to the inner wall of the pushing groove, and a pushing plate placed in the pushing groove. Both the third reciprocating screw and the pushing guide rod pass through the pushing plate. The third reciprocating screw is threadedly connected to the pushing plate. The third reciprocating screw extends to the outside of the collection box. A fifth bevel gear is fixedly connected to the second reciprocating screw. A sixth bevel gear meshing with the fifth bevel gear is fixedly connected to the third reciprocating screw. The length of the pushing plate is the same as that of the control plate. When the control plate moves to the bottom of the collection box, the top of the control plate can contact the bottom of the pushing plate. An outlet is formed in the side wall of the collection box. A discharge pipe communicating with the outlet is fixedly connected to the side wall of the collection box. A blocking member for closing the outlet is installed in the collection box.
[0017] In summary, the present application includes at least one of the following beneficial technical effects:
[0018] Start the driving mechanism. The driving mechanism drives the sliding frame to move. The sliding frame drives the waterproof and breathable membrane to move. The dust and water vapor on the waterproof and breathable membrane can be scraped off into the collection box, thereby cleaning the waterproof and breathable membrane, facilitating the operation of the staff, and solving the problem of affecting the waterproof and breathable performance of the waterproof and breathable membrane.
[0019] During the downward movement of the waterproof and breathable membrane, the collection frame cleans the waterproof and breathable membrane. At the same time, the locking component locks the cleaning plate, creating a gap between the cleaning plate and the waterproof and breathable membrane. The first reciprocating screw drives the cleaning plate to move upward. When the waterproof and breathable membrane stops moving, the cleaning plate moves to the top of the ventilation opening. At the same time, the locking component releases the lock on the cleaning plate, and the first spring pushes the cleaning plate to fit against the waterproof and breathable membrane. When the waterproof and breathable membrane moves upward, the cleaning plate moves downward and cleans the waterproof and breathable membrane.
[0020] During the upward movement of the waterproof and breathable membrane, the cleaning plate moves downward. When the cleaning plate contacts the guiding inclined surface, the cleaning plate slides along the guiding inclined surface and contracts into the placement groove. When the locking block aligns with the locking groove, the second spring pushes the locking block into the locking groove to lock the cleaning plate. During the downward movement of the waterproof and breathable membrane, the cleaning plate moves upward. When the first connecting rod contacts the inner top surface of the ventilation opening, the first connecting rod moves relative to the cleaning plate, and the first connecting rod pushes the locking block out of the locking groove, allowing the cleaning plate to contact the waterproof and breathable membrane, facilitating the cleaning of the waterproof and breathable membrane. Description of the Drawings
[0021] Figure 1 is a schematic structural diagram of a remote blasting vibration monitoring device according to an embodiment of the present application.
[0022] Figure 2 is a schematic cross-sectional structural diagram of the device body according to an embodiment of the present application.
[0023] Figure 3 is a schematic structural diagram of the driving mechanism according to an embodiment of the present application.
[0024] Figure 4 is a schematic structural diagram of the adhesion component according to an embodiment of the present application.
[0025] Figure 5 is a schematic structural diagram of the cleaning mechanism according to an embodiment of the present application.
[0026] Figure 6 is a schematic structural diagram of the locking component according to an embodiment of the present application.
[0027] Figure 7 is a schematic structural diagram of the plugging component according to an embodiment of the present application.
[0028] Figure 8 is a schematic structural diagram of the control component according to an embodiment of the present application.
[0029] Description of the Reference Numerals:
[0030] 1. Equipment body; 11. Vent; 12. First installation cavity; 13. Second installation cavity; 14. Sliding groove; 15. Sliding frame; 16. Waterproof breathable film; 17. Collection box; 171. Insertion groove; 172. Pushing groove; 173. Discharge port; 174. Discharge pipe; 175. Sealing groove; 18. Guide plate; 181. Guide inclined surface; 2. Driving mechanism; 21. Motor; 22. First reciprocating screw; 221. First gear; 23. Driving guide rod; 24. Driving block; 3. Cleaning mechanism; 31. Second reciprocating screw; 311. Second gear; 312. First bevel gear; 313. Fifth bevel gear; 32. Cleaning guide rod; 33. Placing plate; 331. Placing groove; 332. Installation groove; 333. First connection groove; 334. Second connection groove; 34. First spring; 35. Cleaning plate; 351. Locking groove; 4. Locking component; 41. Second spring; 42. Locking block; 421. Unlocking groove; 422. Unlocking inclined surface; 43. First connecting rod; 44. Second connecting rod; 441. Connecting inclined surface; 5. Adhesion component; 51. First rotating shaft; 511. Fourth bevel gear; 52. Adhesion roller; 53. Second rotating shaft; 531. Second bevel gear; 532. Third bevel gear; 6. Hot air blower; 61. Hot air pipe; 62. Ventilation pipe; 63. Blowing nozzle; 7. Control component; 71. Control board; 72. Insertion rod; 73. Third spring; 74. First contact; 75. Second contact; 8. Pushing component; 81. Third reciprocating screw; 811. Sixth bevel gear; 82. Pushing guide rod; 83. Pushing plate; 9. Sealing component; 91. Sealing plate; 92. Fourth spring; 93. Moving plate; 931. Moving inclined surface. Detailed implementation manners
[0031] The following further elaborates on this application in conjunction with the attached Figure 1-8 drawings.
[0032] An embodiment of this application discloses a remote blasting vibration monitoring device. Referring to Figure 1 and Figure 2 , a remote blasting vibration monitoring device includes an equipment body 1. A vibration sensor, a data collector, a communication module, and a battery pack are arranged in the equipment body 1. A base is provided at the bottom of the equipment body 1. A vent 11 is formed on the side wall of the equipment body 1. A first installation cavity 12 and a second installation cavity 13 are formed in the inner wall of the equipment body 1. The first installation cavity 12 and the second installation cavity 13 are respectively located on the upper and lower sides of the vent 11. Sliding grooves 14 are formed on the inner top surface and the inner bottom surface of the vent 11. The two sliding grooves 14 are respectively communicated with the first installation cavity 12 and the second installation cavity 13.
[0033] A sliding frame 15 is vertically arranged in the ventilation opening 11. The side walls on both sides of the sliding frame 15 are in contact with the inner wall of the ventilation opening 11. A waterproof and breathable membrane 16 is covered on the side wall of the sliding frame 15. The waterproof and breathable membrane 16 can filter the air entering the equipment body 1. The top of the sliding frame 15 extends into the first installation cavity 12 through the sliding groove 14, and the bottom of the sliding frame 15 extends into the second installation cavity 13 through the sliding groove 14. A driving mechanism 2 is installed in the equipment body 1. The driving mechanism 2 is connected to the sliding frame 15. When the driving mechanism 2 is started, the driving mechanism 2 drives the sliding frame 15 to move, and the sliding frame 15 drives the waterproof and breathable membrane 16 to move. A collecting frame 17 with an open top is fixedly connected to the inner bottom surface of the ventilation opening 11. The side wall of the collecting frame 17 is in contact with the waterproof and breathable membrane 16. The dust and water vapor on the waterproof and breathable membrane 16 can be scraped into the collecting frame 17 to clean the waterproof and breathable membrane 16, which is convenient for the staff to operate and solves the problem of affecting the waterproof and breathable performance of the waterproof and breathable membrane 16.
[0034] Referring to Figure 3 , the driving mechanism 2 includes a motor 21, a first reciprocating screw 22, a driving guide rod 23 and a driving block 24; the motor 21 is fixedly connected to the inner top surface of the first installation cavity 12, and the output shaft of the motor 21 is arranged vertically downward; the first reciprocating screw 22 is fixedly connected to the output shaft of the motor 21 and is arranged vertically; the driving guide rod 23 is fixedly connected to the inner top surface of the first installation cavity 12 and is arranged vertically; the driving block 24 is horizontally placed in the first installation cavity 12. Both the first reciprocating screw 22 and the driving guide rod 23 pass through the driving block 24. The first reciprocating screw 22 is threadedly connected to the driving block 24, and the driving block 24 is fixedly connected to the sliding frame 15; when the motor 21 is started, the motor 21 drives the first reciprocating screw 22 to rotate, the first reciprocating screw 22 drives the driving block 24 to move, and the driving block 24 drives the sliding frame 15 to move, so as to realize the cleaning of the waterproof and breathable membrane 16.
[0035] Referring to Figures 3 to 5, a cleaning mechanism 3 is installed in the vent 11. The cleaning mechanism 3 includes a second reciprocating screw 31, a cleaning guide rod 32, a placement plate 33, a first spring 34, and a cleaning plate 35. The second reciprocating screw 31 is rotatably installed on the inner bottom surface of the vent 11 and is vertically arranged. The top of the second reciprocating screw 31 extends into the first installation cavity 12. A first gear 221 is fixedly connected to the first reciprocating screw 22, and a second gear 311 meshing with the first gear 221 is fixedly connected to the second reciprocating screw 31. The first reciprocating screw 22 drives the first gear 221 to rotate, the first gear 221 drives the second gear 311 to rotate, and the second gear 311 drives the second reciprocating screw 31 to rotate. The cleaning guide rod 32 is fixedly connected to the inner bottom surface of the vent 11 and is vertically arranged. The placement plate 33 is horizontally placed in the vent 11. Both the second reciprocating screw 31 and the cleaning guide rod 32 pass through the placement plate 33. The placement plate 33 is threadedly connected to the second reciprocating screw 31. The second reciprocating screw 31 drives the placement plate 33 to move. A placement groove 331 is horizontally formed on the side wall of the placement plate 33 facing the waterproof and breathable membrane 16. The first spring 34 is fixedly connected to the inner wall of the placement groove 331. The cleaning plate 35 is horizontally placed in the placement groove 331 and is fixedly connected to the first spring 34. The cleaning plate 35 extends to the outside of the placement groove 331 and can contact the waterproof and breathable membrane 16. A locking component 4 is installed on the placement plate 33. During the downward movement of the waterproof and breathable membrane 16, the collection frame 17 cleans the waterproof and breathable membrane 16. At the same time, the locking component 4 locks the cleaning plate 35. There is a gap between the cleaning plate 35 and the waterproof and breathable membrane 16. The first reciprocating screw 22 drives the cleaning plate 35 to move upward. When the waterproof and breathable membrane 16 stops moving, the cleaning plate 35 moves to the top of the vent 11. At the same time, the locking component 4 releases the lock on the cleaning plate 35. The first spring 34 pushes the cleaning plate 35 to fit with the waterproof and breathable membrane 16. When the waterproof and breathable membrane 16 moves upward, the cleaning plate 35 moves downward to clean the waterproof and breathable membrane 16.
[0036] Refer to Figure 5 and Figure 6A guide plate 18 is fixedly connected to one side of the top of the collection frame 17 near the waterproof breathable membrane 16, and a guide slope 181 is formed on the top of the guide plate 18. The guide slope 181 is inclined toward the side away from the waterproof breathable membrane 16, and the guide plate 18 contacts the waterproof breathable membrane 16. Dust and water vapor on the waterproof breathable membrane 16 fall into the collection frame 17 along the guide slope 181, and the cleaning plate 35 contacts the guide slope 181; a mounting groove 332 is vertically opened on the inner top surface of the placement groove 331, a first connecting groove 333 is vertically opened on the top of the placement plate 33, and a second connecting groove 334 that penetrates the mounting groove 332 is horizontally opened on the inner wall of the first connecting groove 333; the locking component 4 includes a second spring 41, a locking block 42, and a first spring 43; A connecting rod 43 and a second connecting rod 44, and a second spring 41 are fixedly connected to the inner top surface of the mounting groove 332, and the locking block 42 is vertically placed in the mounting groove 332 and fixedly connected to the second spring 41, and a locking groove 351 is provided on the top of the cleaning plate 35; in the process of the waterproof breathable membrane 16 moving upward, the cleaning plate 35 moves downward to clean the waterproof breathable membrane 16, and the scraped dust and water vapor fall into the collecting frame 17. When the cleaning plate 35 contacts the guide slope 181, the cleaning plate 35 slides along the guide slope 181 and shrinks into the placement groove 331. When the locking block 42 is opposite to the locking groove 351, the second spring 41 pushes the locking block 42 to be inserted into the locking groove 351 to lock the cleaning plate 35.
[0037] The first connecting rod 43 is vertically placed in the first connecting groove 333 and can slide along the first connecting groove 333. The top of the first connecting rod 43 extends to the outside of the first connecting groove 333. The second connecting rod 44 is horizontally placed in the second connecting groove 334. The end of the second connecting rod 44 facing the first connecting rod 43 is formed with a connecting inclined surface 441, and the connecting inclined surface 441 contacts the first connecting rod 43. An unlocking groove 421 for the second connecting rod 44 to be inserted is formed on the side wall of the locking block 42. An unlocking inclined surface 422 is formed on the inner top surface of the unlocking groove 421. The unlocking inclined surface 421 is formed with a locking inclined surface 422. 22 contacts with the second connecting rod 44; in the process of the waterproof breathable membrane 16 moving downward, the cleaning plate 35 moves upward, and when the first connecting rod 43 contacts with the inner top surface of the vent 11, the first connecting rod 43 moves relative to the cleaning plate 35, and the first connecting rod 43 pushes the second connecting rod 44 to move through the connecting inclined surface 441, and the second connecting rod 44 pushes the locking block 42 to move through the unlocking inclined surface 422, so that the locking block 42 is pulled out of the locking groove 351, and the cleaning plate 35 can contact with the waterproof breathable membrane 16, so as to facilitate the cleaning of the waterproof breathable membrane 16.
[0038] Reference Figure 3 and Figure 4, an adhesion component 5 is installed in both the first installation cavity 12 and the second installation cavity 13. The bottom of the second reciprocating screw 31 extends into the second installation cavity 13. Taking the adhesion component 5 installed in the first installation cavity 12 as an example, the adhesion component 5 includes a second rotating shaft 53, a first rotating shaft 51, and an adhesion roller 52; a fixed block is fixedly connected to the inner wall of the first installation cavity 12, and the second rotating shaft 53 is rotatably installed on the fixed block and is horizontally arranged. Two ends of the second rotating shaft 53 are respectively fixedly connected with a second bevel gear 531 and a third bevel gear 532. A first bevel gear 312 is fixedly connected to the second reciprocating screw 31, and the first bevel gear 312 meshes with the second bevel gear 531. The second reciprocating screw 31 drives the first bevel gear 312 to rotate, the first bevel gear 312 drives the second bevel gear 531 to rotate, the second bevel gear 531 drives the second rotating shaft 53 to rotate, and the second rotating shaft 53 drives the third bevel gear 532 to rotate; the first rotating shaft 51 is rotatably installed on the inner wall of the first installation cavity 12 and is horizontally arranged. The first rotating shaft 51 is perpendicular to the second rotating shaft 53. A fourth bevel gear 511 meshing with the third bevel gear 532 is fixedly connected to the first rotating shaft 51. The third bevel gear 532 drives the fourth bevel gear 511 to rotate, and the fourth bevel gear 511 drives the first rotating shaft 51 to rotate; the adhesion roller 52 is fixedly connected to the first rotating shaft 51, a sticky cloth is arranged on the adhesion roller 52, the adhesion roller 52 contacts the waterproof breathable film 16, the first rotating shaft 51 drives the adhesion roller 52 to rotate, and the adhesion roller 52 can pick up the dust on the waterproof breathable film 16, making the waterproof breathable film 16 cleaner.
[0039] Refer to Figures 2 to 4 , a hot air blower 6 is fixedly connected to the equipment body 1. Hot air pipes 61 are fixedly connected to the inner walls of both the first installation cavity 12 and the second installation cavity 13. The air outlet end of the hot air blower 6 is connected to the hot air pipe 61 through a ventilation pipe 62. A plurality of blowing nozzles 63 are fixedly connected to the hot air pipe 61. All the plurality of blowing nozzles 63 face between the adhesion roller 52 and the waterproof breathable film 16. When the hot air blower 6 is started, the hot air blower 6 conveys hot air into the hot air pipe 61 through the ventilation pipe 62, and finally sprays it onto the waterproof breathable film 16 through the blowing nozzles 63 to dry the waterproof breathable film 16, extending the service life of the waterproof breathable film 16.
[0040] Refer to Figure 7 and Figure 8, a control component 7 is installed in the collection box 17. The control component 7 includes a control board 71, a plug rod 72, a third spring 73, a first contact 74, and a second contact 75. The control board 71 is horizontally placed in the collection box 17, and the side walls around the control board 71 are all in contact with the inner wall of the collection box 17. The plug rod 72 is fixedly connected to the bottom of the control board 71 and is vertically arranged. A plugging groove 171 for the plug rod 72 to slide is vertically opened on the inner bottom surface of the collection box 17. The third spring 73 is fixedly connected to the bottom of the control board 71, and the bottom of the third spring 73 is fixedly connected to the inner bottom surface of the collection box 17. The first contact 74 is arranged at the bottom of the plug rod 72, and the second contact 75 is arranged on the inner wall of the plugging groove 171. The second contact 75 is used in cooperation with the first contact 74. The battery pack is electrically connected to the hot air blower 6 and the motor 21 through wires. The first contact 74 is electrically connected to the hot air blower 6 through a wire, and the second contact 75 is electrically connected to the motor 21 through a wire. During the process of dust and water vapor accumulating in the collection box 17, the control board 71 gradually moves downward under the action of gravity. The control board 71 drives the plug rod 72 to move downward, and the plug rod 72 drives the first contact 74 to move downward. When the first contact 74 contacts the second contact 75, the battery pack can power on the hot air blower 6 and the motor 21, so that the hot air blower 6 and the motor 21 are started, without manual operation by the staff, making the cleaning of the waterproof and breathable membrane 16 more timely.
[0041] Refer to Figure 7 and Figure 8, a discharge port 173 is formed on the side wall of the collection box 17, and a discharge pipe 174 communicating with the discharge port 173 is fixedly connected to the side wall of the collection box 17. A plugging member 9 for closing the discharge port 173 is installed in the collection box 17; a pushing member 8 is installed in the collection box 17. A pushing groove 172 is vertically formed on the inner wall of the collection box 17. The pushing member 8 includes a third reciprocating screw 81, a pushing guide rod 82 and a pushing plate 83; the third reciprocating screw 81 is rotatably installed on the inner wall of the pushing groove 172 and is horizontally arranged. The third reciprocating screw 81 extends to the outside of the collection box 17. A fifth bevel gear 313 is fixedly connected to the second reciprocating screw 31. A sixth bevel gear 811 meshing with the fifth bevel gear 313 is fixedly connected to the third reciprocating screw 81. The second reciprocating screw 31 drives the fifth bevel gear 313 to rotate. The fifth bevel gear 313 drives the sixth bevel gear 811 to rotate. The sixth bevel gear 811 drives the third reciprocating screw 81 to rotate; the pushing guide rod 82 is fixedly connected to the inner wall of the pushing groove 172 and is parallel to the third reciprocating screw 81; the pushing plate 83 is vertically placed in the pushing groove 172. Both the third reciprocating screw 81 and the pushing guide rod 82 pass through the pushing plate 83. The third reciprocating screw 81 is threadedly connected to the pushing plate 83. The length of the pushing plate 83 is the same as the length of the control plate 71. When the control plate 71 moves to the bottom of the collection box 17, the top of the control plate 71 can contact the bottom of the pushing plate 83; the third reciprocating screw 81 drives the pushing plate 83 to move. The pushing plate 83 can push the dust and water vapor in the collection box 17 out through the discharge port 173. At the same time, the pushing plate 83 can limit the control plate 71, so that the first contact 74 and the second contact 75 are in continuous contact. When the pushing plate 83 returns to the pushing groove 172, the one-way movement process of the waterproof breathable membrane 16 is completed.
[0042] Refer to Figure 7 , a plugging groove 175 communicating with the discharge port 173 is vertically formed on the inner wall of the collection box 17. The plugging member 9 includes a plugging plate 91, a fourth spring 92 and a moving plate 93; the plugging plate 91 is slidably installed in the plugging groove 175; the fourth spring 92 is fixedly connected to the top of the plugging plate 91. The top of the fourth spring 92 is fixedly connected to the inner top surface of the plugging groove 175. The fourth spring 92 provides a force for the plugging plate 91, so that the plugging plate 91 plugs the discharge port 173; the moving plate 93 is fixedly connected to the side wall of the plugging plate 91. A moving inclined surface 931 is formed on the side of the moving plate 93 away from the plugging plate 91. The moving inclined surface 931 slopes downward and can contact the pushing plate 83; during the movement of the pushing plate 83, when the pushing plate 83 contacts the moving inclined surface 931, the pushing plate 83 pushes the moving plate 93 to move through the moving inclined surface 931. The moving plate 93 drives the plugging plate 91 to move, so that the discharge port 173 is opened.
[0043] The implementation principle of a remote blasting vibration monitoring device in an embodiment of the present application is as follows: After the waterproof breathable membrane 16 is used for a long time, the dust and water vapor on the waterproof breathable membrane 16 will slide along the waterproof breathable membrane 16 and fall into the collection box 17. After a period of time, the control board 71 gradually moves downward under gravity. The control board 71 drives the insertion rod 72 to move downward, and the insertion rod 72 drives the first contact 74 to move downward. When the first contact 74 contacts the second contact 75, the battery pack powers on the hot air blower 6 and the motor 21. The hot air blower 6 and the motor 21 start. The motor 21 drives the waterproof breathable membrane 16 to move downward, and the dust and water vapor on the waterproof breathable membrane 16 are scraped into the collection box 17 to clean the waterproof breathable membrane 16. At the same time, the first reciprocating screw rod 22 drives the second reciprocating screw rod 31 to rotate, and the second reciprocating screw rod 31 drives the cleaning plate 35 to move upward. When the first connecting rod 43 contacts the inner top surface of the ventilation opening 11, the first connecting rod 43 moves relative to the cleaning plate 35, and the first connecting rod 43 pushes the locking block 42 out of the locking groove 351. The first spring 34 pushes the cleaning plate 35 to fit with the waterproof breathable membrane 16. At the same time, the second reciprocating screw rod 31 drives the adhesion roller 52 to rotate to pick up the dust on the waterproof breathable membrane 16. The hot air blower 6 conveys hot air into the hot air pipe 61 through the ventilation pipe 62 to dry the waterproof breathable membrane 16. And the second reciprocating screw rod 31 drives the pushing plate 83 to move, and pushes the dust and water vapor in the collection box 17 out through the discharge port 173. When the pushing plate 83 returns to the pushing groove 172, the downward movement process of the waterproof breathable membrane 16 is completed.
[0044] When the waterproof breathable membrane 16 moves upward, the cleaning plate 35 moves downward. When the cleaning plate 35 contacts the guiding inclined surface 181, the cleaning plate 35 slides along the guiding inclined surface 181 and contracts into the placement groove 331. When the locking block 42 is opposite to the locking groove 351, the second spring 41 pushes the locking block 42 into the locking groove 351 to lock the cleaning plate 35.
[0045] The above are all the preferred embodiments of the present application, and do not limit the protection scope of the present application accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A remote blasting vibration monitoring device, characterized in that: The device comprises a device body (1), wherein the device body (1) is provided with a vibration sensor, a data acquisition device, a communication module and a battery pack, a vent (11) is provided on a side wall of the device body (1), a first installation cavity (12) and a second installation cavity (13) are formed in the inner wall of the device body (1), a sliding groove (14) is provided on the inner top surface and the inner bottom surface of the vent (11), the two sliding grooves (14) are respectively connected to the first installation cavity (12) and the second installation cavity (13), a sliding frame (15) is vertically placed in the vent (11), the side walls of the sliding frame (15) are in contact with the inner wall of the vent (11), the side walls of the sliding frame (15) are covered with a waterproof breathable membrane (16), and the The top of the sliding frame (15) extends to the first installation cavity (12) through the sliding groove (14), and the bottom of the sliding frame (15) extends to the second installation cavity (13) through the sliding groove (14). A driving mechanism (2) for driving the sliding frame (15) to move is installed in the device body (1). A collecting frame (17) with an open top is fixedly connected to the inner bottom surface of the vent (11), and the side wall of the collecting frame (17) is in contact with the waterproof breathable membrane (16). The driving mechanism (2) comprises a motor (21) fixedly connected to the inner top surface of the first installation cavity (12), a first reciprocating screw (22) fixedly connected to the output shaft of the motor (21), and a driving guide rod fixedly connected to the inner wall of the first installation cavity (12). (23) and a driving block (24) sleeved on the first reciprocating screw (22) and the driving guide rod (23); the driving block (24) is threadedly connected to the first reciprocating screw (22), and the driving block (24) is fixedly connected to the sliding frame (15); a cleaning mechanism (3) is installed in the vent (11), and the cleaning mechanism (3) comprises a second reciprocating screw (31) rotatably installed on the inner bottom surface of the vent (11), a cleaning guide rod (32) fixedly connected to the inner bottom surface of the vent (11), and a placement plate (33) sleeved on the second reciprocating screw (31) and the cleaning guide rod (32); the placement plate (33) is threadedly connected to the second reciprocating screw (31), and the second reciprocating screw (31) extends to the first installation cavity ( 12), a first gear (221) is fixedly connected to the first reciprocating screw (22), a second gear (311) meshing with the first gear (221) is fixedly connected to the second reciprocating screw (31), a placement groove (331) is provided on the side wall of the placement plate (33) facing the waterproof breathable membrane (16), a first spring (34) is fixedly connected to the inner wall of the placement groove (331), a cleaning plate (35) is placed in the placement groove (331), one side of the cleaning plate (35) is fixedly connected to the first spring (34), and the other side of the cleaning plate (35) can contact the waterproof breathable membrane (16), and a locking component (4) for locking the cleaning plate (35) is installed on the placement plate (33).
2. A remote blasting vibration monitoring device according to claim 1, characterized in that: A guide plate (18) is fixedly connected to a side of the top of the collection frame (17) close to the waterproof breathable membrane (16), and a guide slope (181) is formed on the top of the guide plate (18), and the guide slope (181) is inclined toward a side away from the waterproof breathable membrane (16).
3. A remote blasting vibration monitoring device according to claim 2, characterized in that: The cleaning plate (35) is capable of contacting the guiding inclined surface (181); a mounting groove (332) is vertically provided on the inner top surface of the placement groove (331); the locking component (4) comprises a second spring (41) fixedly connected to the inner top surface of the mounting groove (332) and a locking block (42) placed in the mounting groove (332); the second spring (41) is fixedly connected to the locking block (42); a locking groove (351) is provided on the top of the cleaning plate (35) for inserting the locking block (42); a first connecting groove (333) is provided on the top of the placement plate (33); a second connecting groove (351) is provided on the inner wall of the first connecting groove (333) and is connected to the mounting groove (332); 334), a first connecting rod (43) is vertically placed in the first connecting groove (333), a second connecting rod (44) is horizontally placed in the second connecting groove (334), the top of the first connecting rod (43) extends to the outside of the placement plate (33), and a connecting inclined surface (441) is formed on one end of the second connecting rod (44) facing the first connecting rod (43), and the connecting inclined surface (441) contacts the first connecting rod (43), and an unlocking groove (421) for inserting the second connecting rod (44) is formed on the side wall of the locking block (42), and an unlocking inclined surface (422) is formed on the inner top surface of the unlocking groove (421), and the unlocking inclined surface (422) contacts the second connecting rod (44).
4. A remote blasting vibration monitoring device according to claim 1, characterized in that: An adhesive component (5) is installed in both the first installation cavity (12) and the second installation cavity (13), the adhesive component (5) comprising a first rotating shaft (51) rotatably installed in the first installation cavity (12) and an adhesive roller (52) fixedly connected to the first rotating shaft (51), the adhesive roller (52) being provided with an adhesive cloth, the adhesive roller (52) being in contact with the waterproof breathable membrane (16), a second rotating shaft (53) rotatably installed in the first installation cavity (12), a first bevel gear (312) being fixedly connected to the second reciprocating screw (31), a second bevel gear (531) meshing with the first bevel gear (312) being fixedly connected to the second rotating shaft (53), a third bevel gear (532) being fixedly connected to the second rotating shaft (53), and a fourth bevel gear (511) meshing with the third bevel gear (532) being fixedly connected to the first rotating shaft (51).
5. A remote blasting vibration monitoring device according to claim 4, characterized in that: A hot air blower (6) is fixedly connected to the device body (1); hot air pipes (61) are fixedly connected to the inner walls of the first installation cavity (12) and the second installation cavity (13); an air outlet end of the hot air blower (6) is connected to the hot air pipe (61) via a ventilation pipe (62); and a plurality of blowing nozzles (63) are fixedly connected to the hot air pipe (61).
6. A remote blasting vibration monitoring device according to claim 5, characterized in that: A control component (7) is installed in the collection frame (17), and the control component (7) comprises a control panel (71) placed horizontally in the collection frame (17), side walls around the control panel (71) are in contact with the inner wall of the collection frame (17), a plug rod (72) is fixedly connected to the bottom of the control panel (71), a plug slot (171) for the plug rod (72) to slide is provided on the inner bottom surface of the collection frame (17), and a third spring (73) is fixedly connected to the bottom of the control panel (71), and the third spring (73) is connected to the collection frame (17). ), the insertion rod (72) is provided with a first contact (74), the inner wall of the insertion slot (171) is provided with a second contact (75) for use with the first contact (74), the battery pack is electrically connected to the hot air blower (6) and the motor (21) respectively through wires, the first contact (74) is electrically connected to the hot air blower (6) through a wire, the second contact (75) is electrically connected to the motor (21) through a wire, and a pushing component (8) for cleaning the collection frame (17) is installed in the collection frame (17).
7. A remote blasting vibration monitoring device according to claim 6, characterized in that: The inner wall of the collection frame (17) is provided with a pushing groove (172); the pushing component (8) comprises a third reciprocating screw (81) rotatably mounted on the inner wall of the pushing groove (172), a pushing guide rod (82) fixedly connected to the inner wall of the pushing groove (172), and a pushing plate (83) placed in the pushing groove (172); the third reciprocating screw (81) and the pushing guide rod (82) are both inserted into the pushing plate (83); the third reciprocating screw (81) is threadedly connected to the pushing plate (83); the third reciprocating screw (81) extends to the outside of the collection frame (17); and the second reciprocating screw (31) is fixedly connected to a fifth bevel gear (313). The third reciprocating screw (81) is fixedly connected to a sixth bevel gear (811) meshing with the fifth bevel gear (313); the length of the push plate (83) is the same as the length of the control plate (71); when the control plate (71) moves to the bottom of the collection frame (17), the top of the control plate (71) can contact the bottom of the push plate (83); a discharge port (173) is provided on the side wall of the collection frame (17); a discharge pipe (174) in communication with the discharge port (173) is fixedly connected to the side wall of the collection frame (17); and a blocking component (9) for closing the discharge port (173) is installed in the collection frame (17).
8. A remote blasting vibration monitoring device according to claim 7, characterized in that: The inner wall of the collecting frame (17) is provided with a blocking groove (175) which is connected to the discharge port (173); the blocking component (9) comprises a blocking plate (91) slidably mounted in the blocking groove (175) and a fourth spring (92) fixedly connected to the top of the blocking plate (91); the top of the fourth spring (92) is fixedly connected to the inner top surface of the blocking groove (175); a moving plate (93) is fixedly connected to the blocking plate (91); a moving inclined surface (931) is formed on a side of the moving plate (93) away from the blocking plate (91); the moving inclined surface (931) is inclined downward and can contact the pushing plate (83).
Citation Information
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