Secure communication device based on block chain

By introducing waterproof and cooling components into the blockchain communication device, and utilizing a floating plate and gear system to automatically switch between closed states, combined with a water flow and heat dissipation system, the problem of waterproofing and heat dissipation in flood environments is solved, achieving rapid and efficient heat dissipation and stability.

CN121368094APending Publication Date: 2026-01-20THE INST OF AUTOMATION HEILONGJIANG ACADEMY OF SCI
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Patent Information

Application Number
CN202410000057.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-01
Publication Date
2026-01-20

AI Technical Summary

Technical Problem

Existing blockchain-based secure communication devices are prone to overheating due to high energy consumption and lack sufficient waterproofing, making them particularly vulnerable to damage in flood environments.

Method used

A safe communication device incorporating waterproof and cooling components was designed. It automatically switches between closed states using a float and gear system, and achieves automatic adjustment of waterproofing and heat dissipation by combining water flow and a heat dissipation system.

Benefits of technology

It effectively prevents water immersion damage in flood environments, while achieving rapid and efficient heat dissipation through water circulation and air flow, thus improving the applicability and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a safety communication device based on a block chain, and relates to the technical field of communication. The secure communication device based on the block chain comprises a base, and a waterproof assembly used for automatically switching a closed state is arranged in the base; a fixing assembly used for improving the plugging effect is arranged on the surface of the waterproof assembly. A cooling assembly used for conducting rapid heat dissipation on the communication machine body is arranged above the waterproof assembly. A sliding rod is controlled to drive a gear to rotate through buoyancy of flood on a floating plate, the gear drives a magnetic block and a convex block to rotate to control a blocking plate and a protection box to be closed, so that water is blocked, and the waterproof performance of the device is improved; meanwhile, an air control plate is controlled to be opened, heat in the communication machine body is dissipated, and cooling of the communication machine body is accelerated; according to the device, automatic switching of the waterproof function and the heat dissipation function is controlled in real time according to the driving state of flood on the floating plate, the communication machine body can be fully protected, and the applicability of the device is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of communication equipment, in particular to a safe communication device based on a blockchain. BACKGROUND

[0002] Blockchain communication is a communication technology based on a decentralized network protocol (P2P), which uses encryption algorithms and consensus mechanisms to ensure the security and integrity of data. Each node has the same copy in the network, and anyone needs to be verified to add new data to the network. This technology provides a decentralized way to achieve point-to-point communication, avoiding system collapse caused by single point failure or attack.

[0003] Because each node needs to maintain the state of the entire chain, the energy consumption is very high in a highly decentralized system. This is because each node needs to perform a large number of computing tasks to verify and maintain data. Excessive energy consumption leads to serious device heating. On the one hand, the device itself may heat up due to excessive workload; on the other hand, since the blockchain network may require a large amount of power, this may cause tension on the power grid.

[0004] In order to solve the problem of device heating, the existing solution is to improve the problem by optimizing the structure of the communication device on the basis of reducing manufacturing costs, such as opening multiple ventilation openings on the surface of the communication device to speed up the heat dissipation effect; but this improvement does not consider the waterproof performance of the device in the case of water running, water immersion in the office, or in the case of using in the water-affected area, so once the above risks occur, the communication device with ventilation openings is also prone to risks such as being soaked and damaged by water. Therefore, how to design a safe communication device with high heat dissipation, strong waterproof performance, low cost, and the ability to automatically adjust the state of heat dissipation and waterproof according to the changes in the external environment during operation has become the direction of exploration in this technical field. SUMMARY

[0005] The purpose of the present application is to provide a safe communication device based on a blockchain to solve the problems raised in the background.

[0006] To achieve the above purpose, the present application provides the following technical scheme: a safe communication device based on a blockchain, comprising a base, a protective box is fixedly installed on the surface of the base, a ventilation opening is formed on the surface of the protective box, a water storage tank is fixedly installed above the protective box, and a communication body is placed inside the protective box; a waterproof assembly for automatically switching to a closed state is arranged inside the base; a fixing assembly for improving the plugging effect is arranged on the surface of the waterproof assembly; and a cooling assembly for quickly dissipating heat from the communication body is arranged above the waterproof assembly.

[0007] Preferably, the waterproof assembly includes a floating plate, an adjusting block, a protruding block, a blocking plate, and a wind control plate; the fixing assembly includes a connecting seat and a pressing plate; the cooling assembly includes a moving waterwheel, a fixed cylinder, and a regulating frame; the waterproof assembly adjusts the movement state of the pressing plate through the protruding block, so as to realize the clamping work of the fixing assembly on the blocking plate; the waterproof assembly adjusts the movement of the adjusting block, so as to realize the flow state of the water source in the water storage tank, thereby controlling the cooling assembly to perform the heat dissipation work on the communication machine body through the water source; the cooling assembly controls the wind control plate to swing through the regulating frame, thereby further improving the heat dissipation work of the heat in the communication machine body.

[0008] Preferably, the floating plate is slidably connected with the base, the surface of the floating plate is fixedly connected with a sliding rod and a control rod, the surfaces of the sliding rod and the control rod are provided with racks, the surface of the control rod is fixedly connected with a regulating shaft, the regulating shaft is slidably connected with the adjusting block, and the adjusting block is rotatably connected with the water storage tank.

[0009] Preferably, the surfaces of the sliding rod and the control rod are engagedly connected with gears, the surface of each gear is fixedly connected with a movement shaft, the surface of each movement shaft is fixedly connected with a fixed groove, the fixed groove is provided with a plurality of groups, and the inside of each fixed groove is fixedly connected with a magnetic block; the movement shaft is fixedly connected with the protruding block, and the protruding block is provided with a plurality of groups; the blocking plate is rotatably connected with the protective box, the blocking plate is magnetically connected with the magnetic block; the wind control plate is rotatably connected with the communication machine body, and the wind control plate is magnetically connected with the magnetic block.

[0010] Preferably, the connecting seat is fixedly connected with the protective box, and the inside of the connecting seat is slidably connected with a clamping block.

[0011] Preferably, the surface of the wedge-shaped groove is slidably connected with a clamping plate, one end of the clamping plate is rotatably connected with a connecting piece, the other end of the connecting piece is rotatably connected with the pressing plate, the surface of the pressing plate is fixedly connected with a pin shaft, one end of the pin shaft is rotatably connected with a fixing frame, and the other end of the fixing frame is fixedly connected with the protective box.

[0012] Preferably, the moving waterwheel is rotatably connected with the water storage tank, the surface of the moving waterwheel is fixedly connected with a cooling fan, the surface of the cooling fan is drivingly connected with a belt, the surface of the belt is drivingly connected with a first cylindrical cam block, and the first cylindrical cam block is rotatably connected with the fixed cylinder.

[0013] Preferably, the surface of the first cylindrical cam block is slidably connected with a second cylindrical cam block, the second cylindrical cam block is slidably connected with a fixed cylinder, the surface of the second cylindrical cam block is fixedly connected with a regulating frame; the inside of the fixed cylinder is provided with a return spring, the surface of the fixed cylinder is fixedly connected with an air inlet pipe, the fixed cylinder is fixedly connected with a communication body, and the fixed cylinder and the magnetic block are both provided with a one-way valve.

[0014] Preferably, the surface of the protection box is fixedly provided with a transparent observation window; the inside of the water storage tank is provided with a drainage groove, and the adjusting block is rotatably connected with the drainage groove; one end of a drainage pipe is fixedly and communicatively connected below the drainage groove, and the other end of the drainage pipe is fixedly and communicatively connected with a liquid cooling disc.

[0015] Preferably, one end of a liquid cooling circulation pipe is fixedly and communicatively connected with the surface of the liquid cooling disc, the other end of the liquid cooling circulation pipe is fixedly and communicatively connected with one end of a cooling pipe, the other end of the cooling pipe is fixedly and communicatively connected with a water pump, the water pump is fixedly and sealingly connected with a base, the surface of the water pump is fixedly and communicatively connected with a liquid return pipe, and the liquid return pipe is fixedly and communicatively connected with the water storage tank.

[0016] Compared with the prior art, the technical improvement of the safety communication device based on the blockchain is carried out on the basis of cooling the communication device by using the set ventilation opening, and the technical improvement is carried out by taking into account the problems of strengthening heat dissipation and preventing water immersion, and the specific technical effects are embodied as follows: 1. The sliding rod drives the gear to rotate by the buoyancy of the floating plate in flood, and the magnetic block and the convex block are driven to rotate by the gear to control the closure of the sealing plate and the protection box, so as to block the water and improve the waterproof performance of the device; at the same time, the air control plate is opened to dissipate the heat in the communication body and accelerate the cooling of the communication body; the device automatically switches the waterproof and heat dissipation functions in real time by the driving state of the floating plate in flood, can fully protect the communication body, and improves the applicability of the device; 2. The position of the clamping plate is adjusted by the extrusion plate controlled by the convex block, so as to control the clamping state of the clamping block on the sealing plate; after the sealing plate is adsorbed with the protection box, the sealing plate and the protection box are clamped and fixed by the clamping block, so as to prevent the sealing plate from being opened under the influence of water pressure, thereby further improving the waterproof and protection effect of the device on the communication body; 3. The application controls the flow state of the water source in the water storage tank through the adjusting block, the water source flows into the liquid cooling disc through the drain groove, the gravity center of the device is lowered, and the stability of the device is improved; the water source flows into the liquid cooling flow pipe through the liquid cooling disc, so that it can quickly absorb the heat in the communication body, and improve the cooling effect on the communication body; the water source flows into the cooling pipe through the liquid cooling flow pipe, and since the cooling pipe is immersed in the flood, the heat of the water source in the cooling pipe can be quickly consumed by the flood, and then it is transported to the water storage tank again through the water pump, so that the communication body is cooled by flowing circulation, thereby further realizing more rapid and efficient heat dissipation of the communication body; 4. The application causes the cooling fan to rotate by impacting the water wheel when the water source flows, the rotation of the cooling fan can keep the air around the communication body in a flowing state, thereby quickly taking away the heat generated by the communication body, and also promoting the liquid cooling flow pipe to better absorb heat; when the second cylindrical cam block slides to the right to inject cold air into the communication body, since the air control plate is in a closed state and the air pressure in the communication body increases after the cold air is injected, the air pressure in the communication body will push the air control plate open during the process of the regulating frame releasing the limiting of the air control plate, under the condition of pressure, the heat in the communication body quickly flows out, and is dispersed and flowed again through the cooling fan, so that the device can still realize more rapid and efficient heat dissipation of the communication equipment in a closed condition in the flood area. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a whole structure schematic diagram of a safe communication device based on block chain; Figure 2 It is a whole structure schematic diagram of a safe communication device based on block chain; Figure 3 It is a schematic diagram of the movement relationship between the floating plate and the gear; Figure 4 It is a schematic diagram of the movement relationship between the clamping block and the clamping plate; Figure 5 It is a schematic diagram of the transmission relationship of the internal structure of the fixed cylinder; Figure 6 It is a schematic diagram of the position relationship of the water wheel; Figure 7 It is a schematic diagram of the air flow state of the surface of the communication body; In the figure: 1, base; 2, protection box; 3, ventilation opening; 4, water storage tank; 5, transparent observation window; 6, drainage groove; 7, drainage pipe; 8, liquid cooling disc; 9, liquid cooling flow pipe; 10, cooling pipe; 11, water pump; 12, liquid return pipe; 13, communication body; 100, waterproof assembly; 101, floating plate; 102, sliding rod; 103, control rod; 104, regulating shaft; 105, adjusting block; 106, gear; 107, movement shaft; 108, fixed groove; 109, magnetic block; 110, protruding block; 111, blocking plate; 112, air control plate; 200, fixing assembly; 201, connecting seat; 202, clamping block; 203, wedge-shaped groove; 204, clamping plate; 205, connecting piece; 206, extrusion plate; 207, pin shaft; 208, fixing frame; 300, cooling assembly; 301, moving waterwheel; 302, cooling fan; 303, belt; 304, first cylindrical cam block; 305, second cylindrical cam block; 306, return spring; 307, fixed cylinder; 308, regulating frame; 309, air inlet pipe. Embodiment

[0018] Because existing communication equipment is mostly optimized in structure to improve heat dissipation in order to reduce manufacturing cost, such as opening multiple sets of ventilation openings on the surface of the communication device to accelerate the heat dissipation effect; in cities prone to flooding, the communication device provided with the ventilation openings is prone to the risk of being soaked by water; therefore, the application provides a safe communication device based on a blockchain, which comprises a base 1, the surface of the base 1 is fixedly installed with a protection box 2, the surface of the protection box 2 is provided with ventilation openings 3, the upper portion of the protection box 2 is fixedly installed with a water storage tank 4, and the inside of the protection box 2 is placed with a communication body 13; the inside of the base 1 is provided with a waterproof assembly 100 for automatically switching the closed state; the surface of the waterproof assembly 100 is provided with a fixing assembly 200 for improving the blocking effect; and the upper portion of the waterproof assembly 100 is provided with a cooling assembly 300 for quickly dissipating heat of the communication body 13.

[0019] The waterproof assembly 100 comprises a floating plate 101, an adjusting block 105, a protruding block 110, a blocking plate 111 and an air control plate 112; the fixing assembly 200 comprises a connecting seat 201 and an extrusion plate 206; and the cooling assembly 300 comprises a moving waterwheel 301, a fixed cylinder 307 and a regulating frame 308; the waterproof assembly 100 adjusts the movement state of the extrusion plate 206 through the protruding block 110, so as to realize the clamping work of the fixing assembly 200 on the blocking plate 111; the waterproof assembly 100 adjusts the movement of the adjusting block 105 to realize the flow state of the water source inside the water storage tank 4, so as to control the cooling work of the cooling assembly 300 on the communication body 13 through the water source; and the cooling assembly 300 controls the swinging of the air control plate 112 through the regulating frame 308, so as to further improve the heat dissipation work inside the communication body 13.

[0020] The floating plate 101 is in sliding connection with the base 1, the surface of the floating plate 101 is fixedly connected with a sliding rod 102 and a control rod 103, the surfaces of the sliding rod 102 and the control rod 103 are provided with racks; the surface of the control rod 103 is fixedly connected with a regulating shaft 104, the regulating shaft 104 is in sliding connection with a regulating block 105, the regulating block 105 is in rotary connection with the water storage tank 4.

[0021] The surfaces of the sliding rod 102 and the control rod 103 are in meshing connection with a gear 106, the surface of the gear 106 is fixedly connected with a movement shaft 107, the surface of the movement shaft 107 is fixedly connected with a fixed groove 108, the fixed groove 108 is provided with a plurality of groups, the inside of the fixed groove 108 is fixedly connected with a magnetic block 109; the movement shaft 107 is fixedly connected with a protruding block 110, the protruding block 110 is provided with a plurality of groups; a blocking plate 111 is in rotary connection with the protective box 2, the blocking plate 111 is in magnetic connection with the magnetic block 109; a wind control plate 112 is in rotary connection with the communication body 13, the wind control plate 112 is in magnetic connection with the magnetic block 109.

[0022] The connecting seat 201 is fixedly connected with the protective box 2, the inside of the connecting seat 201 is in sliding connection with a clamping block 202, the inside of the clamping block 202 is provided with a wedge-shaped groove 203.

[0023] The surface of the wedge-shaped groove 203 is in sliding connection with a clamping plate 204, one end of the clamping plate 204 is in rotary connection with a connecting piece 205, one end of the connecting piece 205 is in rotary connection with an extrusion plate 206, the surface of the extrusion plate 206 is fixedly connected with a pin shaft 207, the surface of the pin shaft 207 is in rotary connection with one end of a fixing frame 208, the other end of the fixing frame 208 is fixedly connected with the protective box 2.

[0024] The movement waterwheel 301 is in rotary connection with the water storage tank 4, the surface of the movement waterwheel 301 is fixedly connected with a cooling fan 302, the surface of the cooling fan 302 is in transmission connection with a belt 303, the surface of the belt 303 is in transmission connection with a first cylindrical cam block 304, the first cylindrical cam block 304 is in rotary connection with a fixed cylinder 307.

[0025] The surface of the first cylindrical cam block 304 is in sliding connection with a second cylindrical cam block 305, the second cylindrical cam block 305 is in sliding connection with the fixed cylinder 307, the surface of the second cylindrical cam block 305 is fixedly connected with a regulating frame 308; the inside of the fixed cylinder 307 is provided with a return spring 306, the surface of the fixed cylinder 307 is fixedly connected with an air inlet pipe 309, the fixed cylinder 307 is fixedly connected with the communication body 13, the inside of the fixed cylinder 307 and the magnetic block 109 are both provided with a one-way valve.

[0026] The surface of the protection box 2 is fixedly provided with a transparent observation window 5; the inside of the water storage tank 4 is provided with a drainage groove 6, and the adjusting block 105 is rotationally connected with the drainage groove 6; one end of a drainage pipe 7 is fixedly communicated with the lower portion of the drainage groove 6, and the other end of the drainage pipe 7 is fixedly communicated with one end of a liquid cooling disc 8.

[0027] One end of a liquid cooling circulation pipe 9 is fixedly communicated with the surface of the liquid cooling disc 8, the other end of the liquid cooling circulation pipe 9 is fixedly communicated with one end of a cooling pipe 10, the other end of the cooling pipe 10 is fixedly communicated with a water pump 11, the water pump 11 is fixedly and sealingly connected with the base 1, the surface of the water pump 11 is fixedly communicated with a liquid return pipe 12, and the liquid return pipe 12 is fixedly communicated with the water storage tank 4.

[0028] Working principle: after the safety communication device is installed, the communication body 13 is placed in the protection box 2, water is added in the inside of the water storage tank 4, and the water storage tank 4 has the functions of collecting and storing rainwater; since floods mostly occur in summer, the amount of rainwater is sufficient, so it is not necessary to repeatedly add water into the inside of the water storage tank 4 by manual; on one hand, adding water in the inside of the water storage tank 4 is to avoid that the communication device directly contacts with sunlight, so as to cause the heat of the equipment to be intensified; on the other hand, the weight of the water-filled water storage tank 4 can improve the stability of the communication equipment, so as to prevent the communication equipment from collapsing; The device can improve the heat dissipation effect of the communication body 13 by opening the ventilation opening 3 on the surface of the protection box 2, and the surface of the communication body 13 is provided with a heat dissipation opening, and the surface of the heat dissipation opening is provided with a filter screen; the surface of the protection box 2 is provided with a blocking plate 111, and the blocking plate 111 is arranged in the inside of the ventilation opening 3; on one hand, the blocking plate 111 can close the ventilation opening 3 when the flood comes, so as to prevent the flood from entering the inside of the communication body 13 and causing the communication body 13 to be damaged; on the other hand, the inclination angle of the blocking plate 111 can guide the wind to enter the bottom of the communication body 13, so as to accelerate the circulation of the hot air in the inside of the communication body 13 and improve the heat dissipation effect, as shown in Figure 7 The device can meet the heat dissipation demand of the daily communication equipment; When the water immersion occurs or the flood comes, the ventilation opening 3 can be closed by the waterproof assembly 100, so as to avoid the flood from flowing into the inside of the communication body 13; specifically as follows: when the flood enters the inside of the base 1, the floating plate 101 is floated, the sliding rod 102 and the control rod 103 are driven to move upwardly by the floating plate 101, and the surface of the sliding rod 102 and the control rod 103 is provided with a rack; then the rack can drive the gear 106 to rotate counterclockwise by the movement of the sliding rod 102 and the control rod 103; Further, the gear 106 is rotated to drive the movement shaft 107 to rotate, thereby synchronously driving the magnetic block 109 and the convex block 110 to rotate; at this time, the magnetic block 109 and the blocking plate 111 are switched from the opposite sex attraction state to the same sex repulsion state, causing the blocking plate 111 to be adsorbed with the protective box 2, thereby closing the ventilation opening 3, effectively preventing the flood from entering the communication body 13 inside, causing the communication equipment to be damaged; the rotation of the convex block 110 can also control the adsorption of the blocking plate 111 and the protective box 2; at the same time, the magnetic block 109 and the air control plate 112 are switched from the same sex repulsion state to the opposite sex attraction state, causing the air control plate 112 and the communication body 13 to switch from the closed state to the open state, accelerating the circulation of hot air inside the communication body 13; and the air control plate 112 is normally closed to reduce the entry of too much dust into the communication body 13, causing poor heat dissipation of the communication body 13 and improving the protection of the communication equipment; the waterproof assembly 100 is provided with two groups of up and down and four groups of left and right symmetrical; Further, the gear 106 of the upper and lower two groups of waterproof assemblies 100 is provided with a difference in the number of teeth, and the number of teeth of the upper gear 106 is more than that of the lower gear 106, so that when the water level is shallow, the lower gear 106 first controls the lower blocking plate 111 to be closed, and the upper blocking plate 111 is still in the open state, continuously providing ventilation conditions for the communication body 13, further enhancing the heat dissipation effect of the communication equipment; when the water level continues to rise to the top surface of the lower blocking plate 111, the upper blocking plate 111 is closed at this time, so that the device is completely in a closed state, further improving the waterproof effect; In order to prevent the blocking plate 111 from being opened by water pressure, the fixed assembly 200 is arranged on the surface of the blocking plate 111; when the convex block 110 rotates, the convex block 110 presses the right end of the pressing plate 206 downward, at this time the left end of the pressing plate 206 swings upward around the pin shaft 207, the left end of the pressing plate 206 swings upward to pull the clamping plate 204 upward through the connecting piece 205, at this time, the clamping plate 204 releases the limiting of the wedge-shaped slot 203 opened on the surface of the clamping block 202, and the spring is arranged between the two groups of clamping blocks 202, so that the two groups of clamping blocks 202 are respectively expanded to the two sides by the rising of the clamping plate 204, the blocking plate 111 adsorbed on the surface of the protective box 2 is clamped and fixed, the stability of the blocking plate 111 is strengthened, and the waterproof effect is further improved; The control lever 103 drives the adjustment shaft 104 to move upward. This upward movement of the adjustment shaft 104 releases the limit on the adjustment block 105, causing the adjustment block 105 to rotate around the inner surface of the water tank 4. This controls the water inside the water tank 4 to flow into the liquid cooling plate 8 through the drain trough 6 and drain pipe 7, and then through the liquid cooling plate 8 to the liquid cooling circulation pipe 9, cooling the communication unit 13. The flowing water attracts heat from inside the communication unit 13, achieving faster and more efficient heat dissipation. Further... When the water source inside the water tank 4 flows into the liquid cooling plate 8, the center of gravity of the device shifts downward, improving the stability of the device. Furthermore, when the water source inside the liquid cooling flow pipe 9 flows into the cooling pipe 10, since the cooling pipe 10 is in a flood, the heat absorbed by the water source inside the cooling pipe 10 is removed more quickly by the flood. Then, the cooled water source is transported back to the water tank 4 by the water pump 11 and the return pipe 12, thereby circulating and cooling the communication device 13. This further improves the practicality of the device. When the water flows inside the drainage trough 6, the cooling fan 302 is driven to rotate by the water wheel 301. The rotation of the cooling fan 302 can keep the air around the communication body 13 in a constant state of flow, thereby quickly removing the heat generated by the communication body 13. At the same time, it also promotes better heat absorption by the liquid cooling circulation pipe 9. Furthermore, the rotation of the cooling fan 302 drives the first cylindrical cam block 304 to rotate via the belt 303. The rotation of the first cylindrical cam block 304, through its cooperation with the second cylindrical cam block 305, causes the second cylindrical cam block 305 to slide inside the fixed cylinder 307. Then, through the return spring 306, the second cylindrical cam block 305 oscillates back and forth. When the second cylindrical cam block 305 slides to the left, it draws air into the fixed cylinder 307 through the air inlet pipe 309. The air inlet of the air inlet pipe 309 is located at the bottom of the device. Since the outer bottom of the device is submerged in floodwater at this time, the temperature at this location will be lower than other areas of the device. When the second cylindrical cam block 305 slides to the right, it delivers the air inside the fixed cylinder 307 to the inside of the communication body 13, allowing the cold air to merge with the heat inside the communication body 13, further accelerating the cooling effect of the communication body 13. Further, by controlling the synchronous movement of the regulating frame 308 through the left and right reciprocating sliding of the second cylindrical cam block 305, the regulating frame 308 controls the air control plate 112 to reciprocate around the surface of the communication body 13 when reciprocating; when the second cylindrical cam block 305 slides to the right to inject cold air into the inside of the communication body 13, the regulating frame 308 controls the air control plate 112 to close, because the air control plate 112 is in a closed state and the air pressure in the inside of the communication body 13 increases after the cold air is injected into the inside of the communication body 13; at this time, the air pressure in the inside of the communication body 13 pushes the air control plate 112 open during the process that the second cylindrical cam block 305 slides to the left and the regulating frame 308 releases the limiting of the air control plate 112, under the condition of the air pressure, the heat in the inside of the communication body 13 flows out quickly, is dispersed through the cooling fan 302, and is absorbed and dissipated by the liquid cooling flow pipe 9, so that the device can still achieve the effect of more quickly and efficiently cooling the communication equipment in the closed state in the flood area. When the water immersion condition disappears or the flood recedes, the floating plate 101 slides downward under the floating of the flood, causing the gear 106 to reverse, the gear 106 reverses to control the magnetic block 109 to rotate to exchange the force acting on the blocking plate 111 and the air control plate 112, and at this time, the protrusion 110 releases the reset of the pressing plate 206, a spring is arranged between the pressing plate 206 and the connecting seat 201, so that the pressing plate 206 swings downward on the left side under the action of the spring, the pressing plate 206 swings downward to control the clamping block 202 to shrink into the inside of the connecting seat 201 through the clamping plate 204, so as to release the limiting of the blocking plate 111, and at the same time, the blocking plate 111 opens under the magnetic adsorption of the magnetic block 109, so as to continue the heat dissipation work of the communication body 13.

[0029] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the spirit and scope of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A blockchain-based secure communication device comprising a base (1), characterized in that: The surface of the base (1) is fixedly installed with a protection box (2), the surface of the protection box (2) is provided with a ventilation opening (3), the upper portion of the protection box (2) is fixedly installed with a water storage tank (4), and the inside of the protection box (2) is placed with a communication body (13); the inside of the base (1) is provided with a waterproof assembly (100) for automatically switching a closed state; the surface of the waterproof assembly (100) is provided with a fixing assembly (200) for improving the plugging effect; the upper portion of the waterproof assembly (100) is provided with a cooling assembly (300) for quickly cooling the communication body (13).

2. The blockchain-based secure communication device of claim 1, wherein: The waterproof assembly (100) comprises a floating plate (101), an adjusting block (105), a protruding block (110), a plugging plate (111) and a wind control plate (112); the fixing assembly (200) comprises a connecting seat (201) and an extrusion plate (206); the cooling assembly (300) comprises a moving waterwheel (301), a fixing cylinder (307) and a regulating frame (308); the waterproof assembly (100) adjusts the movement state of the extrusion plate (206) through the protruding block (110), so as to realize the clamping work of the fixing assembly (200) on the plugging plate (111); the waterproof assembly (100) realizes the flow state of the water source inside the water storage tank (4) by adjusting the movement of the adjusting block (105), so as to control the cooling work of the cooling assembly (300) on the communication body (13) through the water source; the cooling assembly (300) controls the swing of the wind control plate (112) through the regulating frame (308), so as to further improve the heat dissipation work of the heat inside the communication body (13). 3.The blockchain-based secure communication apparatus according to claim 2, wherein: The floating plate (101) is in sliding connection with the base (1), the surface of the floating plate (101) is fixedly connected with a sliding rod (102) and a control rod (103), the surfaces of the sliding rod (102) and the control rod (103) are provided with racks; the surface of the control rod (103) is fixedly connected with a regulating shaft (104), the regulating shaft (104) is in sliding connection with the adjusting block (105), and the adjusting block (105) is in rotary connection with the water storage tank (4).

4. The blockchain-based secure communication device of claim 3, wherein: The surfaces of the sliding rod (102) and the control rod (103) are in meshing connection with gears (106), the surface of the gear (106) is fixedly connected with a movement shaft (107), the surface of the movement shaft (107) is fixedly connected with a fixed groove (108), a plurality of groups of the fixed groove (108) are arranged, and the inside of the fixed groove (108) is fixedly connected with a magnetic block (109); the movement shaft (107) is fixedly connected with the protruding block (110), and a plurality of groups of the protruding block (110) are arranged; the plugging plate (111) is in rotary connection with the protection box (2), the plugging plate (111) is in magnetic connection with the magnetic block (109); the wind control plate (112) is in rotary connection with the communication body (13), and the wind control plate (112) is in magnetic connection with the magnetic block (109).

5. The blockchain-based secure communication device of claim 4, wherein: The connecting seat (201) is fixedly connected with the protection box (2), the inside of the connecting seat (201) is slidably connected with the clamping block (202), and the inside of the clamping block (202) is provided with a wedge-shaped groove (203).

6. The blockchain-based secure communication device of claim 5, wherein: The surface of the wedge-shaped groove (203) is slidably connected with the clamping plate (204), one end of the clamping plate (204) is rotatably connected with the connecting piece (205), one end of the connecting piece (205) is rotatably connected with the extrusion plate (206), the surface of the extrusion plate (206) is fixedly connected with the pin shaft (207), one end of the pin shaft (207) is rotatably connected with the fixing frame (208), and the other end of the fixing frame (208) is fixedly connected with the protection box (2). 7.The blockchain-based secure communication apparatus according to claim 6, wherein: The motion waterwheel (301) is rotatably connected with the water storage tank (4), the surface of the motion waterwheel (301) is fixedly connected with the cooling fan (302), the surface of the cooling fan (302) is drivingly connected with the belt (303), the surface of the belt (303) is drivingly connected with the first cylindrical cam block (304), and the first cylindrical cam block (304) is rotatably connected with the fixed cylinder (307). 8.The blockchain-based secure communication apparatus according to claim 7, wherein: The surface of the first cylindrical cam block (304) is slidably connected with the second cylindrical cam block (305), the second cylindrical cam block (305) is slidably connected with the fixed cylinder (307), and the surface of the second cylindrical cam block (305) is fixedly connected with the regulation frame (308); the inside of the fixed cylinder (307) is provided with the reset spring (306), the surface of the fixed cylinder (307) is fixedly connected with the air inlet pipe (309), the fixed cylinder (307) is fixedly connected with the communication body (13), and the fixed cylinder (307) and the magnetic block (109) are both provided with the one-way valve. 9.The blockchain-based secure communication apparatus according to claim 8, wherein: The surface of the protection box (2) is fixedly provided with the transparent observation window (5), the inside of the water storage tank (4) is provided with the drainage groove (6), the regulation block (105) is rotatably connected with the drainage groove (6), and the lower portion of the drainage groove (6) is fixedly connected with one end of the drainage pipe (7). 10.The blockchain-based secure communication apparatus according to claim 9, wherein: The surface of the liquid cooling disc (8) is fixedly connected with one end of the liquid cooling circulation pipe (9), the other end of the liquid cooling circulation pipe (9) is fixedly connected with one end of the cooling pipe (10), the other end of the cooling pipe (10) is fixedly connected with the water pump (11), the water pump (11) is fixedly and sealingly connected with the base (1), the surface of the water pump (11) is fixedly connected with the liquid return pipe (12), and the liquid return pipe (12) is fixedly connected with the water storage tank (4).