Intelligent wireless alarm device for network machine room
By introducing fixed decoration parts and approval mechanisms into the smoke alarm, insect and dust prevention and wireless control are achieved, the problem of false alarms and inconvenient maintenance of smoke alarms is solved, and the practicality and safety of the device are improved.
Patent Information
- Application Number
- CN202510625854.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-07-08
AI Technical Summary
Existing smoke alarms are susceptible to dust and insects, causing false alarms, and maintenance requires the use of ladders, which poses safety hazards and time-consuming problems.
An intelligent wireless alarm device in the network computer room is designed, using fixed decorations and approval mechanisms, and the smoke sensor is isolated through insect-proof and dust-proof mechanisms, which realizes wireless control and high-position fixtures, allowing wireless remote control and manual accumulator to reduce the position of the smoke sensor and simplify the maintenance process.
Effectively prevent false alarms, improve the practicality and safety of the device, simplify the maintenance process, and avoid the safety risks and labor intensity caused by the use of ladders.
Smart Images

Figure CN120279653A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of network computer rooms, and more specifically, to an intelligent wireless alarm device for network computer rooms. Background Art
[0002] A computer network computer room is a place for telecommunications, power, government or enterprises, etc., to store servers and provide IT services for users and employees. It can be as small as dozens of square meters, usually with twenty or thirty cabinets, or as large as tens of thousands of square meters with thousands of cabinets or even more. Various servers and minicomputers are usually placed in the computer room, such as IBM minicomputers, HP minicomputers, SUN minicomputers, etc. There are strict requirements for the temperature, humidity and anti-static measures in the computer room, and non-professional project personnel generally cannot enter. The servers in the computer room run many services, such as mobile MMS, short messages, call services, etc. The computer room is very important. Without the computer room, work and life will be greatly affected. Therefore, each computer room needs to be managed by professional personnel to ensure the normal operation of the services. Since the network computer room needs to run continuously without interruption, it is easy to have a fire hazard due to overheating. For this reason, people install smoke alarms on the roof to monitor the fire situation.
[0003] During the use of existing smoke alarms, dust and bugs will enter. The dust and bugs will cause the smoke alarms to give false alarms, which will affect people's judgment, waste money and manpower. Moreover, smoke alarms are usually fixed on the roof with bolts. For later maintenance work, ladders are needed. During the maintenance work, the ladders need to be moved around, which is time-consuming and laborious. At the same time, it is extremely inconvenient to climb the ladder for maintenance work, and there is a risk of staff and tools falling. Therefore, there is an urgent need to design an intelligent wireless alarm device for network computer rooms. Summary of the Invention
[0004] 1. Technical Problems to be Solved
[0005] Aiming at the problems existing in the prior art that during the use of existing smoke alarms, dust and bugs will enter, the dust and bugs will cause the smoke alarms to give false alarms, which will affect people's judgment, waste money and manpower, and moreover, smoke alarms are usually fixed on the roof with bolts. For later maintenance work, ladders are needed. During the maintenance work, the ladders need to be moved around, which is time-consuming and laborious. At the same time, it is extremely inconvenient to climb the ladder for maintenance work, and there is a risk of staff and tools falling, the purpose of the present invention is to provide an intelligent wireless alarm device for network computer rooms, which can well solve the problems raised in the background art.
[0006] 2. Technical Solutions
[0007] To solve the above problems, the present invention adopts the following technical solutions.
[0008] An intelligent wireless alarm device for a network computer room, including a fixed decorative member, the fixed decorative member includes a fixed decorative block, a fixed cavity is opened inside the fixed decorative block, a receiving flat cavity is opened inside the fixed decorative block above the fixed cavity, an inlet wire hole is opened on the top surface of the fixed decorative block, the inlet wire hole communicates with the receiving flat cavity, two insertion wire holes are opened on the top surface of the inner cavity of the fixed cavity, the two insertion wire holes are respectively located at the left and right ends of the fixed cavity, the top ends of the insertion wire holes communicate with the receiving flat cavity, a field alarm light is fixedly installed on the bottom surface of the fixed decorative block, two installation through holes are opened on the bottom surface of the fixed decorative block, the two installation through holes are respectively located on the left and right sides of the field alarm light, two smoke sensor bodies are installed on the top surface of the inner cavity of the fixed cavity, the two smoke sensor bodies are respectively located directly above the two installation through holes, a smoke sensor sealing plate is installed on the bottom surface of the smoke sensor body through bolts, the bolts are recessed inside the smoke sensor sealing plate, a smoke sensor protective housing is fixedly inserted on the bottom surface of the smoke sensor sealing plate, the bottom end of the smoke sensor protective housing passes through the installation through hole, a smoke passage hole is opened on the smoke sensor protective housing, an approval mechanism is installed on the top surface of the inner cavity of the fixed cavity at the middle thereof, the approval mechanism includes an approval main body, the approval main body is fixedly connected to the top surface of the inner cavity of the fixed cavity, an insect and dust prevention mechanism is provided on the smoke sensor protective housing, the insect and dust prevention mechanism includes an insect and dust prevention cover, the insect and dust prevention cover is movably sleeved outside the smoke sensor protective housing and movably inserted inside the installation through hole, the top end of the insect and dust prevention cover is slidably connected to the bottom surface of the smoke sensor sealing plate, the insect and dust prevention cover can rotate relative to the smoke sensor protective housing and cannot move up and down, a high-position fixer is provided inside the fixed decorative block, the high-position fixer includes a fixed groove, the fixed groove is opened on the bottom surface of the inner cavity of the receiving flat cavity, a transfer platform is provided inside the fixed decorative block, the transfer platform includes transfer cylinders, the number of transfer cylinders is two, both transfer cylinders are located inside the fixed cavity, a manual energy storage device is provided on the top surface of the transfer cylinder, the manual energy storage device includes an inner ratchet ring, the inner ratchet ring is fixedly connected to the top surface of the transfer cylinder, a conduction mechanism is provided on the bottom surface of the inner cavity of the transfer cylinder, the conduction mechanism includes an installation vertical plate, the installation vertical plate is fixedly connected to the bottom surface of the inner cavity of the transfer cylinder.
[0009] Preferably, the approval mechanism further includes an approval chamber, the approval chamber is opened inside the approval main body, a wireless control module is fixedly installed on the bottom surface of the inner cavity of the approval chamber, the approval mechanism further includes a power servo motor, the power servo motor is fixedly inserted on the bottom surface of the approval main body, and the bottom end of the output shaft of the power servo motor is fixedly sleeved with an approval bevel gear.
[0010] Preferably, the insect-proof and dust-proof mechanism also includes a smoke circulation hole, which is provided on the surface of the insect-proof and dust-proof cover, and the smoke circulation hole is adapted to the smoke through hole, and the outside of the insect-proof and dust-proof cover is fixedly sleeved with an enlarged diameter circle, and the enlarged diameter circle is movably inserted into the inside of the mounting through hole, and the bottom surface of the enlarged diameter circle is flush with the bottom surface of the fixed decorative block, and a transmission bevel gear ring is fixedly connected to the top surface of the enlarged diameter circle, and the transmission bevel gear ring is fixedly sleeved on the outside of the insect-proof and dust-proof cover, and the top surface of the transmission bevel gear ring is slidably connected to the bottom surface of the smoke sensor sealing plate, and an arc-shaped sliding hole is provided on the bottom surface of the enlarged diameter circle, and the arc-shaped sliding hole passes through the transmission bevel gear ring, and the arc-shaped sliding hole is adapted to the bolts on the smoke sensor sealing plate, and the transmission bevel gear ring is meshed with the approved bevel gear.
[0011] Preferably, the high-position fixer also includes a power electromagnet, which is fixedly mounted on the bottom surface of the inner cavity of the fixing groove, and the high-position fixer also includes two high-position fixing cavities, the two high-position fixing cavities are both opened in the interior of the fixed decorative block and are respectively located at the left and right sides of the fixing groove, the inner wall of the high-position fixing cavity is connected with a high-position guide sliding plug through a high-position fixing spring transmission, the high-position guide sliding plug is slidably inserted in the interior of the high-position fixing cavity, and a chamfered fixing head is fixedly connected on the other surface of the high-position guide sliding plug, a linkage sliding rod is fixedly connected on the surface of the high-position guide sliding plug, the other end of the linkage sliding rod passes through the high-position fixing spring and extends to the interior of the fixing groove and is fixedly connected with a strong magnetic slider, the linkage sliding rod is slidably inserted in the interior of the fixed decorative block, the strong magnetic slider is slidably inserted in the interior of the fixing groove, and the strong magnetic slider is adapted to the power electromagnet, and the high-position fixer also includes two high-position fixing slots, the two high-position fixing slots are both opened on the top surface of the inner cavity of the fixed cavity, the two high-position fixing slots are respectively connected with the two interlaced wire holes, and the end of the chamfered fixing head extends to the interior of the high-position fixing slot.
[0012] Preferably, the two transfer cylinders are respectively located directly below the two high-position fixing slots. The transfer platform further includes arc-shaped sliding holes opened on the bottom surfaces of the transfer cylinders. An L-shaped clamping member is slidably inserted into the arc-shaped sliding holes. The L-shaped clamping member is buckled on the bottom surface of the inner cavity of the transfer cylinder. The bottom end of the L-shaped clamping member is fixedly connected to the top surface of the smoke detector body. A transmission center column is movably sleeved on the bottom surface of the inner cavity of the transfer cylinder at its middle part. The top end of the transmission center column extends out from the top surface of the transfer cylinder and is slidably inserted into the high-position fixing slot. A lifting cylinder is movably sleeved outside the transmission center column. The lifting cylinder can rotate relative to the transmission center column and cannot move up and down. A wire winding groove is opened on the outside of the lifting cylinder. A lifting lead wire is wound in the wire winding groove. The other end of the lifting lead wire extends out from the top surface of the transfer cylinder and is fixedly connected to the top surface of the inner cavity of the fixed cavity. A deflection guide wheel is fixedly installed on the inner wall of the transfer cylinder. The lifting lead wire bypasses the deflection guide wheel. An energy storage chamber is opened inside the lifting cylinder. The transmission center column penetrates through the energy storage chamber. A lifting spring is arranged inside the energy storage chamber. The lifting spring is movably sleeved outside the transmission center column. One end of the lifting spring is fixedly connected to the surface of the transmission center column. The other end of the lifting spring is fixedly connected to the inner wall of the energy storage chamber. A potential energy weakening device is arranged on the top surface of the transmission center column. The potential energy weakening device includes a potential energy weakening column groove opened on the top surface of the transmission center column.
[0013] Preferably, the inner ratchet ring is movably sleeved outside the transmission center column. The manual energy storage device further includes a manual energy storage cap movably sleeved outside the inner ratchet ring. The bottom surface of the manual energy storage cap is slidably connected to the top surface of the transfer cylinder. The manual energy storage cap is fixedly sleeved outside the transmission center column. A limit ring groove is opened on the surface of the manual energy storage cap and is adapted to the chamfered fixing head. A rotating disc is movably inserted into the inner part of the inner ratchet ring. The rotating disc is fixedly sleeved outside the transmission center column. A non-return cavity is opened inside the rotating disc. A guide piston is drivenly connected to the inner wall of the non-return cavity through a compression spring. The guide piston is slidably inserted into the non-return cavity. A non-return ratchet head is fixedly connected to the guide piston. The other end of the non-return ratchet head extends out from the side surface of the rotating disc and is adapted to the inner ratchet ring.
[0014] Preferably, the potential energy weakening device further includes a potential energy weakening column movably inserted into the potential energy weakening column groove. Expansion slit holes are opened on the inner wall of the potential energy weakening column groove and are communicated with the non-return cavity. A potential energy weakening wire is movably inserted through the bottom end of the potential energy weakening column. One end of the potential energy weakening wire is fixedly connected to the inner wall of the potential energy weakening column groove. The other end of the potential energy weakening wire passes through the expansion slit hole and is fixedly connected to the surface of the guide piston.
[0015] Preferably, the conduction mechanism further includes a receiving opening groove which is opened on the bottom surface of the transmission central column. The mounting vertical plate is located inside the receiving opening groove. A wire threading guiding hole is opened on the top surface of the inner cavity of the receiving opening groove. The top end of the wire threading guiding hole is open and is opened on the top surface of the transmission central column. An insulating column body is movably inserted on the mounting vertical plate. A hairspring is movably sleeved outside the insulating column body. One end of the hairspring is fixedly connected to the surface of the insulating column body. The other end of the hairspring is fixedly connected to the bottom surface of the inner cavity of the intermediate column body. A transmission wire harness is wound outside the insulating column body. The number of the mounting vertical plates is two. A bearing insulating plate is fixedly connected to the left side surface of one mounting vertical plate. A transmission elastic sheet is fixedly connected to the top surface of the bearing insulating plate. An isolation ring groove is opened on the outside of the insulating column body. A conduction ring is fixedly embedded inside the isolation ring groove. The transmission elastic sheet is movably inserted inside the isolation ring groove and is in sliding connection with the surface of the conduction ring. The sub-wires inside the transmission wire harness are electrically connected to the conduction ring. The conduction mechanism further includes a conduction plug which is fixedly connected to the bottom surface of the intermediate column body. The conduction plug is electrically connected to the transmission elastic sheet. The conduction mechanism further includes an embedded groove which is opened on the top surface of the smoke detector main body. A socket base is fixedly inserted inside the embedded groove. The socket base is electrically connected to the smoke detector main body. The bottom end of the conduction plug extends into the embedded groove and is inserted inside the socket base.
[0016] 3. Beneficial effects
[0017] Compared with the prior art, the advantages of the present invention are as follows:
[0018] ① By means of the fixing decorative member, people can fix the intelligent wireless alarm device for the network computer room on the roof. Two smoke detector main bodies are installed inside the fixing decorative member. The smoke detector main bodies can be isolated by means of the insect and dust prevention mechanism. One smoke detector main body is used to monitor the smoke in the computer room in real time. The other smoke detector main body is not in contact with the air in the computer room, playing a role in preventing dust and insects. The approval mechanism can drive the insect and dust prevention mechanism to act, so as to change the isolated smoke detector main body. When the smoke detector main body that is monitoring the smoke in the computer room in real time gives an alarm, the approval mechanism drives the insect and dust prevention mechanism to act, so that the alarmed smoke detector main body is isolated. The previously isolated smoke detector main body is in contact with the air and detects the smoke in the computer room. If this smoke detector main body gives an alarm, it indicates that there is indeed a fire. People can carry out fire extinguishing work according to the information sent by the approval mechanism. If this smoke detector main body does not give an alarm, it indicates that there is a false alarm situation. People can carry out maintenance work according to the information sent by the approval mechanism, avoiding the problem that false alarms affect people's judgment and cause waste of manpower and resources, and improving the practicability of the intelligent wireless alarm device for the network computer room.
[0019] ②The high-position fixator can be controlled by the approval mechanism, enabling people to remotely control the high-position fixator wirelessly. Through the high-position fixator, the manual energy accumulator can be released, and then the transfer platform can be released. Under the action of gravity, the transfer platform drives the smoke detector main body to move downward, reducing the position height of the smoke detector main body so that people can stand on the ground to perform maintenance work on the smoke detector main body. Through the manual energy accumulator, people can increase the potential energy of the transfer platform, enabling the transfer platform to carry the smoke detector main body back to its original position. The potential energy attenuator can release the residual potential energy on the transfer platform, ensuring that the transfer platform can drive the smoke detector main body to move downward under the action of gravity. Through the conduction mechanism, the smoke detector main body is always electrically connected, enabling people to calibrate the smoke detector main body at a low position. This intelligent wireless alarm device for network computer rooms does not require the use of ladders for maintenance work once installed, avoiding various problems caused by using ladders for maintenance work, saving time and effort, having better safety performance, and improving the practicality of this intelligent wireless alarm device for network computer rooms. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a structural schematic diagram of the present invention;
[0021] Figure 2 For the present invention Figure 1 is an internal structural schematic diagram of the fixed decorative part in the present invention;
[0022] Figure 3 For the present invention Figure 2 is a structural schematic diagram of the fixed decorative part in the present invention;
[0023] Figure 4 For the present invention Figure 2 is a structural schematic diagram of the transfer platform in the present invention;
[0024] Figure 5 For the present invention Figure 4 is a right view of the L-shaped clamping part in the present invention;
[0025] Figure 6 For the present invention Figure 4 is an internal structural schematic diagram of the lifting column in the present invention;
[0026] Figure 7 For the present invention Figure 4 is an internal structural schematic diagram of the manual energy accumulator in the present invention;
[0027] Figure 8 For the present invention Figure 4 is an internal structural schematic diagram of the transmission center column in the present invention;
[0028] Figure 9 For the present invention Figure 8 is an enlarged schematic diagram of the structure at position A in the present invention.
[0029] Description of reference numerals in the figure:
[0030] 1. Fixed decoration; 101. Fixed decoration block; 102. Fixed cavity; 103. Accommodating flat cavity; 104. Lead-in hole; 105. Interpenetrating wire hole; 106. On-site alarm light; 107. Installation through-hole; 108. Smoke detector main body; 109. Smoke detector sealing plate; 110. Smoke detector protective housing; 111. Flue gas through-hole; 2. Approval mechanism; 21. Approval main body; 22. Approval chamber; 23. Wireless control module; 24. Power servo motor; 25. Approval bevel gear; 3. Insect and dust prevention mechanism; 31. Insect and dust prevention cover; 32. Flue gas circulation hole; 33. Enlarged diameter circle; 34. Driving bevel gear ring; 35. Arc-shaped sliding hole; 4. High-position fixator; 41. Fixed groove; 42. Power electromagnet; 43. High-position fixed cavity; 44. High-position fixed spring; 45. High-position guiding sliding plug; 46. Chamfered fixing head; 47. Linkage sliding rod; 48. Strong magnetic slider; 49. High-position fixed slot; 5. Transfer platform; 50. Lifting spring; 51. Transfer cylinder; 52. Arc-shaped sliding hole; 53. L-shaped clamping part; 54. Driving center column; 55. Lifting cylinder; 56. Winding ring groove; 57. Lifting lead; 58. Variable guide pulley; 59. Energy storage chamber; 6. Manual energy accumulator; 61. Inner ratchet ring; 62. Manual energy storage cap; 63. Limit ring groove; 64. Rotating disc; 65. Anti-reverse cavity; 66. Compression spring; 67. Guide piston; 68. Anti-reverse ratchet head; 7. Potential energy weakener; 71. Potential energy weakening column groove; 72. Potential energy weakening column body; 73. Extended slit hole; 74. Potential energy weakening line; 8. Conduction mechanism; 801. Accommodating opening groove; 802. Threading guiding hole; 803. Installation vertical plate; 804. Insulating column body; 805. Winding and unwinding spring; 806. Conducting wire harness; 807. Bearing insulating plate; 808. Conducting chip; 809. Isolation ring groove; 810. Conducting ring; 811. Conducting plug; 812. Embedding groove; 813. Socket base. Detailed implementation manners
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0032] An intelligent wireless alarm device for a network computer room includes a fixed decoration 1. Please refer to Figure 3, the fixed decorative member 1 includes a fixed decorative block 101. A fixed cavity 102 is formed inside the fixed decorative block 101. An accommodating flat cavity 103 is formed inside the fixed decorative block 101 above the fixed cavity 102. An introduction wire hole 104 is formed on the top surface of the fixed decorative block 101. The introduction wire hole 104 communicates with the accommodating flat cavity 103. Two insertion wire holes 105 are formed on the top surface of the inner cavity of the fixed cavity 102. The two insertion wire holes 105 are respectively located at the left and right ends of the fixed cavity 102. The top end of the insertion wire hole 105 communicates with the accommodating flat cavity 103. A on-site alarm lamp 106 is fixedly installed on the bottom surface of the fixed decorative block 101. Two installation through holes 107 are formed on the bottom surface of the fixed decorative block 101. The two installation through holes 107 are respectively located on the left and right sides of the on-site alarm lamp 106. Please refer to Figure 2 , two smoke detector main bodies 108 are installed on the top surface of the inner cavity of the fixed cavity 102. The smoke detector main body 108 at the left end of the fixed cavity 102 is ranked first, and the smoke detector main body 108 at the right end of the fixed cavity 102 is ranked second. The two smoke detector main bodies 108 are respectively located directly above the two installation through holes 107. A smoke detector sealing plate 109 is installed on the bottom surface of the smoke detector main body 108 through bolts. The bolts are recessed inside the smoke detector sealing plate 109. A smoke detector protective housing 110 is fixedly inserted on the bottom surface of the smoke detector sealing plate 109. The bottom end of the smoke detector protective housing 110 passes through the installation through hole 107. A flue gas through hole 111 is formed on the smoke detector protective housing 110. Please refer to Figure 3 , an approval mechanism 2 is installed on the top surface of the inner cavity of the fixed cavity 102 at the middle part. The approval mechanism 2 includes an approval main body 21. The approval main body 21 is fixedly connected to the top surface of the inner cavity of the fixed cavity 102. Please refer to Figure 2 , an insect and dust prevention mechanism 3 is provided on the smoke detector protective housing 110. The insect and dust prevention mechanism 3 includes an insect and dust prevention cover 31. The insect and dust prevention cover 31 is movably sleeved outside the smoke detector protective housing 110 and movably inserted inside the installation through hole 107. The top end of the insect and dust prevention cover 31 is slidably connected to the bottom surface of the smoke detector sealing plate 109. The insect and dust prevention cover 31 can rotate relative to the smoke detector protective housing 110 and cannot move up and down. Please refer to Figure 3 , a high-position fixator 4 is provided inside the fixed decorative block 101. The high-position fixator 4 includes a fixed groove 41. The fixed groove 41 is formed on the bottom surface of the inner cavity of the accommodating flat cavity 103. Please refer to Figure 2 , a transfer platform 5 is provided inside the fixed decorative block 101. Please refer to Figure 4 , the transfer platform 5 includes transfer cylinders 51. The number of transfer cylinders 51 is two. The two transfer cylinders 51 are both located inside the fixed cavity 102. A manual energy accumulator 6 is provided on the top surface of the transfer cylinder 51. Please refer to Figure 7, the manual accumulator 6 includes an inner ratchet ring 61, and the inner ratchet ring 61 is fixedly connected to the top surface of the transfer cylinder 51. Please refer to Figure 8 , a conduction mechanism 8 is provided on the bottom surface of the inner cavity of the transfer cylinder 51. The conduction mechanism 8 includes a mounting vertical plate 803, and the mounting vertical plate 803 is fixedly connected to the bottom surface of the inner cavity of the transfer cylinder 51, enabling people to fix the intelligent wireless alarm device for the network computer room on the roof.
[0033] Please refer to Figure 3 , the approval mechanism 2 further includes an approval chamber 22, the approval chamber 22 is opened inside the approval main body 21, a wireless control module 23 is fixedly installed on the bottom surface of the inner cavity of the approval chamber 22, the approval mechanism 2 further includes a power servo motor 24, the power servo motor 24 is fixedly inserted into the bottom surface of the approval main body 21, and a bottom end of an output shaft of the power servo motor 24 is fixedly sleeved with an approval bevel gear 25, which is used to drive the insect and dust prevention mechanism 3 to act, and is used to change the isolated smoke detector main body 108. When the smoke detector main body 108 that is monitoring the smoke in the computer room in real time gives an alarm, the approval mechanism 2 drives the insect and dust prevention mechanism 3 to act, so that the alarmed smoke detector main body 108 is isolated, and the previously isolated smoke detector main body 108 contacts the air and detects the flue gas in the computer room. If this smoke detector main body 108 alarms, it indicates that there is indeed a fire, and people can carry out fire extinguishing work according to the information sent by the approval mechanism 2. If this smoke detector main body 108 does not alarm, it indicates that there is a false alarm situation, and people can carry out maintenance work according to the information sent by the approval mechanism 2, avoiding the problem that false alarms affect people's judgment and cause waste of manpower and resources, improving the practicability of the intelligent wireless alarm device for the network computer room. The approval mechanism 2 can control the high-position fixator 4, enabling people to remotely control the high-position fixator 4 wirelessly.
[0034] Please refer to Figure 2The insect-proof and dust-proof mechanism 3 also includes a smoke circulation hole 32, which is provided on the surface of the insect-proof and dust-proof cover 31, and the smoke circulation hole 32 is adapted to the smoke through hole 111. The outside of the insect-proof and dust-proof cover 31 is fixedly sleeved with an enlarged diameter circle 33, and the enlarged diameter circle 33 is movably inserted into the inside of the installation through hole 107. The bottom surface of the enlarged diameter circle 33 is flush with the bottom surface of the fixed decorative block 101, and the top surface of the enlarged diameter circle 33 is fixedly connected with a transmission bevel gear ring 34, which is fixedly sleeved on the outside of the insect-proof and dust-proof cover 31. The top surface of the gear ring 34 is slidably connected to the bottom surface of the smoke sensor blocking plate 109. An arc-shaped sliding hole 35 is provided on the bottom surface of the expanded circle 33. The arc-shaped sliding hole 35 penetrates the transmission bevel gear ring 34. The arc-shaped sliding hole 35 is adapted to the bolts on the smoke sensor blocking plate 109. The transmission bevel gear ring 34 is meshed with the approved bevel gear 25 to isolate the smoke sensor body 108, so that one smoke sensor body 108 can monitor the smoke in the machine room in real time, and the other smoke sensor body 108 does not come into contact with the air in the machine room, thereby playing a role in dust and insect prevention.
[0035] See also Figure 3 The high-position fixer 4 also includes a power electromagnet 42, and the power-on time of the power electromagnet 42 is controlled by the wireless control module 23. The power electromagnet 42 is fixedly installed on the bottom surface of the inner cavity of the fixed groove 41. The high-position fixer 4 also includes two high-position fixed cavities 43. The two high-position fixed cavities 43 are both opened inside the fixed decorative block 101 and are respectively located on the left and right sides of the fixed groove 41. The inner wall of the high-position fixed cavity 43 is connected with a high-position guide slide 45 through a high-position fixed spring 44. The high-position guide slide 45 is slidably inserted into the interior of the high-position fixed cavity 43. A chamfered fixing head 46 is fixedly connected to the other surface of the high-position guide slide 45. A linkage slide rod 47 is fixedly connected to the surface of the high-position guide slide 45. The other end of the linkage slide rod 47 passes through the high-position fixed spring 44 and extends to the interior of the fixed groove 41 and is fixedly connected with a strong magnetic slider 48. The linkage slide The rod 47 is slidably inserted into the interior of the fixed decorative block 101, and the strong magnetic slider 48 is slidably inserted into the interior of the fixed groove 41. The strong magnetic slider 48 is adapted to the power electromagnet 42. The high-position fixer 4 also includes two high-position fixed slots 49. The two high-position fixed slots 49 are both opened on the top surface of the inner cavity of the fixed cavity 102. The two high-position fixed slots 49 are respectively connected to the two wire insertion holes 105. The end of the chamfered fixing head 46 extends to the interior of the high-position fixed slots 49, and the manual accumulator 6 is clamped to fix the smoke sensor body 108 on the roof. The manual accumulator 6 is released, and then the transfer platform 5 is released, so that the transfer platform 5 moves downward with the smoke sensor body 108 under the action of gravity, which is used to lower the position height of the smoke sensor body 108 so that people can stand on the ground to perform maintenance work on the smoke sensor body 108.
[0036] See alsoFigure 2 , two transfer cylinders 51 are respectively located directly below the two high-position fixed slots 49. Please refer to Figure 4 , the transfer platform 5 further includes an arc-shaped sliding hole 52. The arc-shaped sliding hole 52 is opened on the bottom surface of the transfer cylinder 51. An L-shaped clamping member 53 is slidably inserted into the arc-shaped sliding hole 52. Please refer to Figure 5 , the L-shaped clamping member 53 is buckled on the bottom surface of the inner cavity of the transfer cylinder 51. Please refer to Figure 2 , the bottom end of the L-shaped clamping member 53 is fixedly connected to the top surface of the smoke detector main body 108. Please refer to Figure 4 , a transmission center column 54 is movably sleeved on the bottom surface of the inner cavity of the transfer cylinder 51 at its middle part. The top end of the transmission center column 54 extends out from the top surface of the transfer cylinder 51 and is movably inserted into the high-position fixed slot 49. A lifting cylinder 55 is movably sleeved on the outside of the transmission center column 54. The lifting cylinder 55 can rotate relative to the transmission center column 54 and cannot move up and down. A wire winding groove 56 is opened on the outside of the lifting cylinder 55. A lifting lead 57 is wound in the wire winding groove 56. The other end of the lifting lead 57 extends out from the top surface of the transfer cylinder 51 and is fixedly connected to the top surface of the inner cavity of the fixed cavity 102. A deflection guide wheel 58 is fixedly installed on the inner wall of the transfer cylinder 51. The lifting lead 57 bypasses the deflection guide wheel 58. The number of the lifting leads 57 is four. Two lifting leads 57 are wound in each wire winding groove 56 to make the transfer cylinder 51 in a horizontal state. Please refer to Figure 6 , an energy storage chamber 59 is opened in the lifting cylinder 55. The transmission center column 54 penetrates through the energy storage chamber 59. A lifting spring 50 is arranged in the energy storage chamber 59. The lifting spring 50 is movably sleeved on the outside of the transmission center column 54. One end of the lifting spring 50 is fixedly connected to the surface of the transmission center column 54, and the other end of the lifting spring 50 is fixedly connected to the inner wall of the energy storage chamber 59. Please refer to Figure 7 , a potential energy weakening device 7 is arranged on the top surface of the transmission center column 54. Please refer to Figure 9 , the potential energy weakening device 7 includes a potential energy weakening column groove 71. The potential energy weakening column groove 71 is opened on the top surface of the transmission center column 54, which plays a role in energy storage so that the transfer platform 5 can carry the smoke detector main body 108 back to its original position.
[0037] Please refer to Figure 7, the inner ratchet ring 61 is movably sleeved outside the transmission center column 54. The manual energy accumulator 6 further includes a manual energy accumulator cap 62. The manual energy accumulator cap 62 is movably sleeved outside the inner ratchet ring 61. The bottom surface of the manual energy accumulator cap 62 is slidably connected to the top surface of the transfer column body 51. The manual energy accumulator cap 62 is fixedly sleeved outside the transmission center column 54. A limiting ring groove 63 is formed on the surface of the manual energy accumulator cap 62. The limiting ring groove 63 is adapted to the chamfered fixed head 46. A rotating disc 64 is movably inserted inside the inner ratchet ring 61. The rotating disc 64 is fixedly sleeved outside the transmission center column 54. Please refer to Figure 9 , a check valve cavity 65 is formed inside the rotating disc 64. A guide piston 67 is connected to the inner wall of the check valve cavity 65 through a compression spring 66. The guide piston 67 is slidably inserted inside the check valve cavity 65. A check valve ratchet head 68 is fixedly connected to the guide piston 67. The other end of the check valve ratchet head 68 extends out from the side surface of the rotating disc 64 and is adapted to the inner ratchet ring 61, enabling people to increase the potential energy of the transfer platform 5.
[0038] Please refer to Figure 9 , the potential energy weakener 7 further includes a potential energy weakening column body 72. The potential energy weakening column body 72 is movably inserted inside the potential energy weakening column groove 71. An extended slit hole 73 is formed on the inner wall of the potential energy weakening column groove 71. The extended slit hole 73 is communicated with the check valve cavity 65. A potential energy weakening wire 74 is movably inserted through the potential energy weakening column body 72 at its bottom end. One end of the potential energy weakening wire 74 is fixedly connected to the inner wall of the potential energy weakening column groove 71. The other end of the potential energy weakening wire 74 passes through the extended slit hole 73 and is fixedly connected to the surface of the guide piston 67, for releasing the residual potential energy on the transfer platform 5 to ensure that the transfer platform 5 can move downward with the smoke detector main body 108 under the action of gravity.
[0039] Please refer to Figure 8, the conduction mechanism 8 further includes a receiving opening groove 801. The receiving opening groove 801 is opened on the bottom surface of the transmission center column 54. The mounting vertical plate 803 is located inside the receiving opening groove 801. A wire threading guiding hole 802 is opened on the top surface of the inner cavity of the receiving opening groove 801. The top end of the wire threading guiding hole 802 is open and the opening is on the top surface of the transmission center column 54. An insulating column 804 is movably inserted into the mounting vertical plate 803. A retractable spring 805 is movably sleeved outside the insulating column 804. One end of the retractable spring 805 is fixedly connected to the surface of the insulating column 804. The other end of the retractable spring 805 is fixedly connected to the bottom surface of the inner cavity of the intermediate column 51. A conductive wire bundle 806 is wound around the outside of the insulating column 804. One end of the conductive wire bundle 806 passes through the wire threading guiding hole 802, the wire inserting hole 105 and extends into the receiving flat cavity 103 and passes out through the lead-in wire hole 104 and then is connected to an external power grid. The number of the mounting vertical plates 803 is two. A bearing insulating plate 807 is fixedly connected to the left side surface of one mounting vertical plate 803. A conductive elastic piece 808 is fixedly connected to the top surface of the bearing insulating plate 807. An isolation ring groove 809 is opened on the outside of the insulating column 804. A conductive ring 810 is fixedly embedded in the isolation ring groove 809. The conductive elastic piece 808 is movably inserted into the isolation ring groove 809 and is in sliding connection with the surface of the conductive ring 810. The sub-wires inside the conductive wire bundle 806 are electrically connected to the conductive ring 810. The conduction mechanism 8 further includes a conduction plug 811. The conduction plug 811 is fixedly connected to the bottom surface of the intermediate column 51. The conduction plug 811 is electrically connected to the conductive elastic piece 808. Please refer to Figure 2 , the conduction mechanism 8 further includes an embedded groove 812. The embedded groove 812 is opened on the top surface of the smoke detector main body 108. A socket base 813 is fixedly inserted into the embedded groove 812. The socket base 813 is electrically connected to the smoke detector main body 108. The bottom end of the conduction plug 811 extends into the embedded groove 812 and is inserted into the socket base 813, so that the smoke detector main body 108 is always electrically connected, so that people can calibrate the smoke detector main body 108 at a low position, so that the intelligent wireless alarm device in this network computer room does not need to use a ladder for maintenance work once installed, avoiding various problems caused by using a ladder for maintenance work, saving time and effort, having better safety performance, and improving the practicability of the intelligent wireless alarm device in this network computer room.
[0040] Working principle:
[0041] First, the air in the machine room enters the second smoke sensor body 108 through the corresponding smoke circulation holes 32, the smoke through holes 111, and the smoke sensor protective shell 110. The smoke through holes 111 corresponding to the first smoke sensor body 108 are blocked by the corresponding insect-proof and dust-proof cover 31. Then the second smoke sensor body 108 detects the smoke in the air in real time. Then the second smoke sensor body 108 issues an alarm and sends the information to the wireless control module 23. Then the wireless control module 23 controls the power servo motor 24 to operate. Then the power servo motor 24 rotates with the approval bevel gear 25. Then the approval bevel gear 25 rotates with the enlarged diameter circle 33 through the meshing action between the approval bevel gear 25 and the transmission bevel gear ring 34. Then the enlarged diameter circle 33 rotates with the insect-proof and dust-proof cover 31. Then the insect-proof and dust-proof cover 31 rotates with the smoke circulation hole 32, and then the smoke circulation hole 32 corresponding to the first smoke sensor body 108 is connected with the smoke through hole 111, and the smoke circulation hole 32 corresponding to the second smoke sensor body 108 is staggered with the corresponding smoke through hole 111, so that the second smoke sensor body 108 is isolated, and then the air in the machine room enters the first smoke sensor body 108 through the corresponding smoke circulation hole 32, the smoke through hole 111, and the smoke sensor protective shell 110, and then the first smoke sensor body 108 detects the smoke in the air in the machine room in real time. When there is smoke in the air, the first smoke sensor body 108 sends an alarm and transmits the information to the wireless control module 23, and then the wireless control module 23 sends an alarm to the remote control terminal controlled by people. The first smoke sensor 108 will not alarm when there is no smoke in the air. Then the wireless control module 23 sends maintenance information to the remote control terminal controlled by people. Then people reach the target location according to the maintenance information and use the remote control terminal to send instructions to the wireless control module 23. The remote control terminal can control the current direction inside the power electromagnet 42, and then control the magnetic field. Then the wireless control module 23 connects the circuit of the power electromagnet 42 and makes the current flow in the positive direction inside the power electromagnet 42. Then the power electromagnet 42 generates a magnetic attraction to the strong magnetic slider 48 on its right side, and at the same time, the power electromagnet 42 generates a magnetic repulsion to the strong magnetic slider 48 on its left side. The strong magnetic slider 48 on the right side of the power electromagnet 42 moves toward the inside of the high-position fixed cavity 43 through the linkage slide rod 47 and the high-position guide slide plug 45 under the action of the magnetic attraction, and at the same time, the strong magnetic slider 48 on the left side of the power electromagnet 42 does not move, and then the high-position guide slide plug 45 applies pressure to the corresponding high-position fixed spring 44, and then the high-position fixed spring 44 is elastically compressed, the elastic potential energy increases, and then the chamfered fixed head 46 is pulled out from the inside of the limiting ring groove 63, and then the manual accumulator 6 is released, and then the manual accumulator 6, the transfer platform 5, the second smoke sensor body 108, the smoke sensor blocking plate 109, the smoke sensor protective shell 110, and the insect and dust prevention mechanism 3 move downward under the action of gravity, and then the lifting lead 57 is pulled,Then the lifting lead 57 is released from the inside of the winding ring groove 56 and drives the lifting column 55 to rotate. Then the lifting column 55 rotates with the transmission center column 54 through the lifting spring 50, and then the transmission center column 54 rotates with the rotating disk 64. Then the potential energy weakening column 72 is separated from the top surface of the inner cavity of the high-position fixed slot 49. Then the guide piston 67 moves outward with the non-return ratchet head 68 under the action of the elastic force of the compression spring 66. At the same time, the guide piston 67 pulls the potential energy weakening line 74, and the potential energy weakening line 74 is straightened and applies an upward lifting force to the potential energy weakening column 72. Then the potential energy weakening column 72 moves upward, and then the non-return ratchet head 68 that moves out is unidirectionally meshed with the inner ratchet ring 61, and the inner ratchet ring 61 has a resistance to the non-return ratchet head 68 After that, as the manual accumulator 6, the transfer platform 5, the second smoke sensor body 108, the smoke sensor blocking plate 109, the smoke sensor protective shell 110, and the insect and dust proof mechanism 3 descend, more and more of the lifting lead 57 is released from the winding ring groove 56, and then the lifting column 55 does more and more work on the lifting spring 50, which increases the torsional potential energy of the lifting spring 50, and then the manual accumulator 6, the transfer platform 5, the second smoke sensor body 108, the smoke sensor blocking plate 109, the smoke sensor protective shell 110, and the insect and dust proof mechanism 3 gradually descend, playing a buffering role, avoiding the manual accumulator 6, the transfer platform 5, the second smoke sensor body 108, the smoke sensor blocking plate 109, the smoke sensor protective shell 110, and the insect and dust proof mechanism 3. The dust mechanism 3 jumps up and down repeatedly with a large amplitude, and then the lifting lead 57 is completely released from the inside of the winding ring groove 56, and then the manual accumulator 6, the transfer platform 5, the second smoke sensor body 108, the smoke sensor blocking plate 109, the smoke sensor protective shell 110, and the insect and dust prevention mechanism 3 are grasped to make them immobile, and then the transfer column 51 is held with one hand, and the smoke sensor body 108 is held with the other hand and they are relatively rotated, and then the second smoke sensor body 108 moves inside the arc sliding hole 52 with the L-shaped clamp 53, and then the L-shaped clamp 53 slides off the bottom surface of the inner cavity of the transfer column 51, and then the L-shaped clamp 53 is completely aligned with the arc sliding hole 52, and then the transfer column 51 and the second smoke sensor body 108 are moved away from each other, and then the second smoke sensor body 108 moves with The L-shaped clamp 53 is pulled out from the arc sliding hole 52, and the smoke sensor body 108 is disassembled. Then, a screwdriver is used to pass through the arc sliding hole 35 and the bolts on the smoke sensor blocking plate 109 are disassembled, and then the smoke sensor blocking plate 109 is disassembled, and then the foreign matter inside the smoke sensor body 108 is cleaned. After the cleaning is completed, the smoke sensor blocking plate 109 is installed back on the smoke sensor body 108, and then the L-shaped clamp 53 is inserted into the arc sliding hole 52 and the smoke sensor body 108 and the transfer column 51 are rotated relative to each other. Then, the L-shaped clamp 53 is stuck on the bottom surface of the inner cavity of the transfer column 51, and the smoke sensor body 108 is fixed on the transfer column 51. Then, the transfer column 51 is held to make the transfer column 51 immovable, and then the manual energy storage cap 62 is rotated.Then the manual energy storage cap 62 rotates with the transmission center column 54, and then the transmission center column 54 works on the lifting spring 50 to increase the torsional potential energy of the lifting spring 50, and then the non-return ratchet head 68 is unidirectionally meshed with the inner ratchet ring 61 to fix the transmission center column 54 and save the potential energy of the lifting spring 50. Then, when the potential energy of the lifting spring 50 is large enough, it is released, and then the lifting column 55 rotates in the opposite direction under the action of the torsional potential energy of the lifting spring 50, and then the lifting lead 57 is wound into the inside of the winding ring groove 56, and then the lifting lead 57 is pulled upward by the lifting column 55 and the transmission center column 54 to pull the transfer platform 5, the manual energy accumulator 6, and the second smoke detector body 108, and then the manual energy storage The cap 62 is inserted into the high-position fixed slot 49 and applies a thrust to the inclined surface of the chamfered fixed head 46, causing the chamfered fixed head 46 to move slightly, and then the chamfered fixed head 46 slides onto the surface of the manual energy storage cap 62, and then the chamfered fixed head 46 is aligned with the limiting ring groove 63, and then the high-position guide slide 45 is inserted into the limiting ring groove 63 with the chamfered fixed head 46 under the action of the elastic force of the high-position fixed spring 44, restricting the manual energy storage cap 62 inside the high-position fixed slot 49, and then the manual energy storage cap 62 continues to move upward for a distance inside the high-position fixed slot 49, and then the top of the potential energy weakening column 72 contacts the top surface of the inner cavity of the high-position fixed slot 49, and the top surface of the inner cavity of the high-position fixed slot 49 faces the potential energy weakening column. 72 applies pressure, and then the potential energy weakening column 72 moves downward inside the potential energy weakening column groove 71 and bends the potential energy weakening line 74, and then the potential energy weakening line 74 pulls the guide piston 67, and then the guide piston 67 enters the non-return cavity 65 with the non-return ratchet head 68 and separates from the inner ratchet ring 61, and then the transmission center column 54 rotates under the action of the torsion of the lifting spring 50 to release the torsion potential energy of the lifting spring 50, and then the manual accumulator 6 moves slightly downward, and then the top surface of the inner cavity of the limiting ring groove 63 is pressed on the top surface of the chamfered fixing head 46, and then the second smoke detector body 108 is installed back to its original position, and the approval bevel gear 25 is engaged with the transmission bevel gear ring 34. At this time, the first smoke detector body 108 plays a role in When the smoke in the air is detected, the second smoke sensor body 108 is isolated, and the second smoke sensor body 108 is dust and insect proof. When the first smoke sensor body 108 sounds an alarm, the wireless control module 23 controls the power servo motor 24 to run again, so that the first smoke sensor body 108 is isolated, and the second smoke sensor body 108 detects the air and achieves the approved effect. When there is smoke, the wireless control module 23 sends out fire extinguishing information. When there is no smoke, the wireless control module 23 sends out maintenance information. Then the wireless control module 23 reverses the internal current of the power electromagnet 42 under human control, and the first smoke sensor body 108 is lowered and maintenance work is performed according to the above principle.
[0042] The above are only the preferred specific embodiments of the present invention; however, the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, making equivalent substitutions or changes according to the technical solution of the present invention and its improved conceptions, shall be covered by the protection scope of the present invention.
Claims
1. An intelligent wireless alarm device for a network computer room, comprising a fixed decorative member (1), characterized in that: The fixed decorative member (1) includes a fixed decorative block (101). A fixed cavity (102) is formed inside the fixed decorative block (101). An accommodation flat cavity (103) is formed inside the fixed decorative block (101) above the fixed cavity (102). An introduction wire hole (104) is formed on the top surface of the fixed decorative block (101), and the introduction wire hole (104) communicates with the accommodation flat cavity (103). Two insertion wire holes (105) are formed on the top surface of the inner cavity of the fixed cavity (102), and the two insertion wire holes (105) are respectively located at the left and right ends of the fixed cavity (102). The top end of the insertion wire hole (105) communicates with the accommodation flat cavity (103). A on-site alarm lamp (106) is fixedly installed on the bottom surface of the fixed decorative block (101). Two installation through holes (107) are formed on the bottom surface of the fixed decorative block (101), and the two installation through holes (107) are respectively located on the left and right sides of the on-site alarm lamp (106). Two smoke detector main bodies (108) are installed on the top surface of the inner cavity of the fixed cavity (102), and the two smoke detector main bodies (108) are respectively located directly above the two installation through holes (107). A smoke detector sealing plate (109) is installed on the bottom surface of the smoke detector main body (108) by bolts, and the bolts are recessed inside the smoke detector sealing plate (109). A smoke detector protection housing (110) is fixedly inserted on the bottom surface of the smoke detector sealing plate (109). The bottom end of the smoke detector protection housing (110) passes through the installation through hole (107). A flue gas through hole (111) is formed on the smoke detector protection housing (110). An approval mechanism (2) is installed on the top surface of the inner cavity of the fixed cavity (102) at the middle part thereof. The approval mechanism (2) includes an approval main body (21), and the approval main body (21) is fixedly connected to the top surface of the inner cavity of the fixed cavity (102). An insect and dust prevention mechanism (3) is provided on the smoke detector protection housing (110). The insect and dust prevention mechanism (3) includes an insect and dust prevention cover (31). The insect and dust prevention cover (31) is movably sleeved outside the smoke detector protection housing (110) and movably inserted inside the installation through hole (107). The top end of the insect and dust prevention cover (31) is slidably connected to the bottom surface of the smoke detector sealing plate (109). The insect and dust prevention cover (31) can rotate relative to the smoke detector protection housing (110) and cannot move up and down. A high-position fixator (4) is provided inside the fixed decorative block (101). The high-position fixator (4) includes a fixed groove (41), and the fixed groove (41) is formed on the bottom surface of the inner cavity of the accommodation flat cavity (103). A transfer platform (5) is provided inside the fixed decorative block (101). The transfer platform (5) includes transfer cylinders (51). The number of transfer cylinders (51) is two, and the two transfer cylinders (51) are both located inside the fixed cavity (102). A manual energy accumulator (6) is provided on the top surface of the transfer cylinder (51). The manual energy accumulator (6) includes an inner ratchet ring (61), and the inner ratchet ring (61) is fixedly connected to the top surface of the transfer cylinder (51).The conduction mechanism (8) on the bottom surface of the inner cavity of the transfer cylinder (51), the conduction mechanism (8) includes a mounting vertical plate (803), and the mounting vertical plate (803) is fixedly connected to the bottom surface of the inner cavity of the transfer cylinder (51).
2. The intelligent wireless alarm device for a network computer room according to claim 1, wherein: The approval mechanism (2) further comprises an approval chamber (22), the approval chamber (22) being arranged inside the approval body (21), a wireless control module (23) being fixedly mounted on the bottom surface of the inner cavity of the approval chamber (22), and the approval mechanism (2) further comprises a power servo motor (24), the power servo motor (24) being fixedly plugged into the bottom surface of the approval body (21), and an approval bevel gear (25) being fixedly sleeved on the bottom end of the output shaft on the power servo motor (24).
3. The intelligent wireless alarm device for a network computer room according to claim 2, wherein: The insect-proof and dust-proof mechanism (3) further comprises a smoke circulation hole (32), the smoke circulation hole (32) being arranged on the surface of the insect-proof and dust-proof cover (31), the smoke circulation hole (32) being adapted to the smoke through hole (111), the outer part of the insect-proof and dust-proof cover (31) being fixedly sleeved with an enlarged diameter circle (33), the enlarged diameter circle (33) being movably plugged into the interior of the mounting through hole (107), the bottom surface of the enlarged diameter circle (33) being flush with the bottom surface of the fixed decorative block (101), and the top surface of the enlarged diameter circle (33) being fixedly connected to the smoke through hole (111). A transmission bevel gear ring (34) is connected, the transmission bevel gear ring (34) is fixedly sleeved on the outside of the insect-proof and dust-proof cover (31), the top surface of the transmission bevel gear ring (34) is slidably connected with the bottom surface of the smoke sensor blocking plate (109), an arc-shaped sliding hole (35) is opened on the bottom surface of the expanded circle (33), the arc-shaped sliding hole (35) penetrates the transmission bevel gear ring (34), the arc-shaped sliding hole (35) is adapted to the bolt on the smoke sensor blocking plate (109), and the transmission bevel gear ring (34) is meshed with the approval bevel gear (25).
4. A network computer room intelligent wireless alarm device according to any one of claims 1-3, characterized in that: The high-position fixer (4) further comprises a power electromagnet (42), which is fixedly mounted on the bottom surface of the inner cavity of the fixing groove (41). The high-position fixer (4) further comprises two high-position fixing cavities (43), which are both arranged inside the fixing decorative block (101) and are respectively located on the left and right sides of the fixing groove (41). The inner wall of the high-position fixing cavity (43) is connected to a high-position guide slide plug (45) through a high-position fixing spring (44). The high-position guide slide plug (45) is slidably inserted into the interior of the high-position fixing cavity (43). A chamfered fixing head (46) is fixedly connected to the other surface of the high-position guide slide plug (45). A linkage slide rod (46) is fixedly connected to the surface of the high-position guide slide plug (45). 7), the other end of the linkage slide rod (47) passes through the high-position fixing spring (44) and extends to the inside of the fixing groove (41) and is fixedly connected with a strong magnetic slider (48), the linkage slide rod (47) is slidably inserted into the inside of the fixing decorative block (101), the strong magnetic slider (48) is slidably inserted into the inside of the fixing groove (41), the strong magnetic slider (48) is adapted to the power electromagnet (42), the high-position fixer (4) also includes two high-position fixing slots (49), the two high-position fixing slots (49) are both opened on the top surface of the inner cavity of the fixing cavity (102), the two high-position fixing slots (49) are respectively connected to the two wire insertion holes (105), and the end of the chamfered fixing head (46) extends to the inside of the high-position fixing slot (49).
5. The intelligent wireless alarm device for a network computer room according to claim 4, characterized in that: Two transfer cylinders (51) are respectively located directly below two high-position fixed slots (49). The transfer platform (5) further includes an arc-shaped sliding hole (52). The arc-shaped sliding hole (52) is opened on the bottom surface of the transfer cylinder (51). An L-shaped clamping member (53) is slidably inserted into the arc-shaped sliding hole (52). The L-shaped clamping member (53) is buckled on the bottom surface of the inner cavity of the transfer cylinder (51). The bottom end of the L-shaped clamping member (53) is fixedly connected to the top surface of the smoke detector main body (108). A transmission center column (54) is movably sleeved on the bottom surface of the inner cavity of the transfer cylinder (51) at its middle part. The top end of the transmission center column (54) extends out from the top surface of the transfer cylinder (51) and is slidably inserted into the high-position fixed slot (49). A lifting cylinder (55) is movably sleeved on the outside of the transmission center column (54). The lifting cylinder (55) can rotate relative to the transmission center column (54) and cannot move up and down. A wire winding groove (56) is opened on the outside of the lifting cylinder (55). A lifting lead wire (57) is wound in the wire winding groove (56). The other end of the lifting lead wire (57) extends out from the top surface of the transfer cylinder (51) and is fixedly connected to the top surface of the inner cavity of the fixed cavity (102). A deflection guide wheel (58) is fixedly installed on the inner wall of the transfer cylinder (51). The lifting lead wire (57) bypasses the deflection guide wheel (58). An energy storage chamber (59) is opened in the lifting cylinder (55). The transmission center column (54) penetrates through the energy storage chamber (59). A lifting spring (50) is arranged in the energy storage chamber (59). The lifting spring (50) is movably sleeved on the outside of the transmission center column (54). One end of the lifting spring (50) is fixedly connected to the surface of the transmission center column (54). The other end of the lifting spring (50) is fixedly connected to the inner wall of the energy storage chamber (59). A potential energy weakener (7) is arranged on the top surface of the transmission center column (54). The potential energy weakener (7) includes a potential energy weakening column groove (71). The potential energy weakening column groove (71) is opened on the top surface of the transmission center column (54).
6. The intelligent wireless alarm device for a network computer room according to claim 5, characterized in that: The inner ratchet ring (61) is movably sleeved outside the transmission center column (54). The manual energy accumulator (6) further includes a manual energy accumulator cap (62). The manual energy accumulator cap (62) is movably sleeved outside the inner ratchet ring (61). The bottom surface of the manual energy accumulator cap (62) is slidably connected to the top surface of the transfer column body (51). The manual energy accumulator cap (62) is fixedly sleeved outside the transmission center column (54). A limit ring groove (63) is formed on the surface of the manual energy accumulator cap (62). The limit ring groove (63) is adapted to the chamfered fixed head (46). A rotary disc (64) is movably inserted inside the inner ratchet ring (61). The rotary disc (64) is fixedly sleeved outside the transmission center column (54). A check cavity (65) is formed inside the rotary disc (64). A guide piston (67) is driven and connected to the inner wall of the check cavity (65) through a compression spring (66). The guide piston (67) is slidably inserted inside the check cavity (65). A check ratchet head (68) is fixedly connected to the guide piston (67). The other end of the check ratchet head (68) extends out from the side surface of the rotary disc (64) and is adapted to the inner ratchet ring (61).
7. An intelligent wireless alarm device for a network computer room according to claim 5 or 6, characterized in that: The potential energy weakener (7) further includes a potential energy weakening column body (72). The potential energy weakening column body (72) is movably inserted inside the potential energy weakening column groove (71). An extended slit hole (73) is formed on the inner wall of the potential energy weakening column groove (71). The extended slit hole (73) is communicated with the check cavity (65). A potential energy weakening wire (74) is movably inserted through the potential energy weakening column body (72) at its bottom end. One end of the potential energy weakening wire (74) is fixedly connected to the inner wall of the potential energy weakening column groove (71). The other end of the potential energy weakening wire (74) passes through the extended slit hole (73) and is fixedly connected to the surface of the guide piston (67).
8. The intelligent wireless alarm device for a network computer room according to claim 5, wherein: The conduction mechanism (8) further includes a receiving opening groove (801) which is formed on the bottom surface of the transmission center column (54). The mounting vertical plate (803) is located inside the receiving opening groove (801). A wire threading guiding hole (802) is formed on the top surface of the inner cavity of the receiving opening groove (801). The top end of the wire threading guiding hole (802) is open and is formed on the top surface of the transmission center column (54). An insulating column body (804) is movably inserted into the mounting vertical plate (803). A retractable hairspring (805) is movably sleeved outside the insulating column body (804). One end of the retractable hairspring (805) is fixedly connected to the surface of the insulating column body (804), and the other end of the retractable hairspring (805) is fixedly connected to the bottom surface of the inner cavity of the transfer column body (51). A conductive wire bundle (806) is wound around the outside of the insulating column body (804). The number of the mounting vertical plates (803) is two. A bearing insulating plate (807) is fixedly connected to the left side surface of one mounting vertical plate (803). A conductive elastic piece (808) is fixedly connected to the top surface of the bearing insulating plate (807). An isolation ring groove (809) is formed on the outside of the insulating column body (804). A conductive ring (810) is fixedly embedded in the isolation ring groove (809). The conductive elastic piece (808) is movably inserted into the isolation ring groove (809) and is in sliding connection with the surface of the conductive ring (810). The sub-wires inside the conductive wire bundle (806) are electrically connected to the conductive ring (810). The conduction mechanism (8) further includes a conduction plug (811) which is fixedly connected to the bottom surface of the transfer column body (51). The conduction plug (811) is electrically connected to the conductive elastic piece (808). The conduction mechanism (8) further includes an embedding groove (812) which is formed on the top surface of the smoke detector main body (108). A socket base (813) is fixedly inserted into the embedding groove (812). The socket base (813) is electrically connected to the smoke detector main body (108). The bottom end of the conduction plug (811) extends into the embedding groove (812) and is inserted into the socket base (813).