Protection equipment of ozone generator
By setting up multiple sensors and actuators within the ozone generator's protective frame, combined with the equipment program, multi-level protection of the ozone generator is achieved, solving vibration and heat dissipation problems, improving equipment lifespan, and reducing maintenance costs.
Patent Information
- Application Number
- CN202511494383.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2026-03-13
AI Technical Summary
Existing ozone generator protection devices have limited functionality and cannot effectively protect ozone generators from vibration and heat dissipation during operation.
An ozone generator protection frame is adopted, which contains first and second protection components, including an air compressor, electric and pneumatic telescopic rods, temperature and pressure sensors, electric fan assembly, air duct, etc. Through the coordinated operation of the equipment program, multi-level protection of the ozone generator is achieved, including clamping and fixing, heat dissipation and noise reduction.
It effectively prevents vibration deviation and heat accumulation in ozone generators during operation, extends equipment life, and reduces maintenance costs.
Smart Images

Figure CN121651279A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of ozone generator technology, and specifically relates to a protection device for an ozone generator. Background Technology
[0002] An ozone generator is a device used to produce ozone gas (O3). Ozone is easily decomposed and cannot be stored, so it must be produced and used on-site (short-term storage is possible under special circumstances). Therefore, ozone generators are required wherever ozone can be used. Ozone generators are widely used in drinking water, sewage, industrial oxidation, food processing and preservation, pharmaceutical synthesis, and space sterilization. The ozone gas produced by the ozone generator can be used directly or mixed with liquids through a mixing device to participate in the reaction.
[0003] An existing patent publication, CN 213865374 U, discloses an ozone generator with protective functions, including a fixed base plate. An mounting plate is provided on the upper surface of the fixed base plate. A protective cover is fixedly installed at the middle position of the upper surface of the mounting plate. The ozone generator body is placed inside the protective cover. A fixed seat is fixedly installed on the outside of the ozone generator body. A telescopic rod is fixedly installed on one side of the fixed seat. A spring sleeve is fitted onto the telescopic rod. The top end of the telescopic rod is fixedly installed inside the protective cover. The lower surface of the ozone generator body is located on the upper surface of the fixed base plate. A pad is provided below the fixed base plate. An electric push rod is fixedly installed at the middle position of the upper surface of the pad. The end of the electric push rod is fixedly installed at the middle position of the lower surface of the fixed base plate. Connecting rods are fixedly installed on both sides of the pad. The connecting rods are fixedly installed on one side of the support rod. This design only provides protection during the movement of the ozone generator, has a limited function, and requires improvement.
[0004] Therefore, it is essential to design a practical protective device for ozone generators. Summary of the Invention
[0005] The purpose of this invention is to provide a protection device for an ozone generator in existing devices, so as to solve the problems mentioned in the background art.
[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a protection device for an ozone generator, including an ozone generator protection frame, two sets of first exhaust pipes are symmetrically arranged at both ends of the inside of the ozone generator protection frame, two sets of first temperature sensors are also symmetrically installed at both ends of the inside of the ozone generator protection frame, an ozone generator is placed inside the ozone generator protection frame, and a camera is fixedly installed on one side of the outside of the ozone generator protection frame; The ozone generator protective frame is also equipped with a first protective component and a second protective component; The first protection component includes a first air compressor, a first electric telescopic rod, a first mounting base, a first pneumatic telescopic rod, a first tank protection plate, a second temperature sensor, a first pressure sensor, a second air compressor, a second electric telescopic rod, a second mounting base, a second pneumatic telescopic rod, a second tank protection plate, a third temperature sensor, and a second pressure sensor. The first air compressor is detachably installed on one end of the ozone generator protection frame. The first electric telescopic rod is located on one side of the ozone generator protection frame. The first mounting base is fixedly installed on one end of the first electric telescopic rod. One end of the first pneumatic telescopic rod is fixedly installed on the first mounting base. The first tank protection plate is fixedly installed on the other end of the first pneumatic telescopic rod. The first pneumatic telescopic rod is connected to the first air compressor by an external ventilation hose. The second temperature sensor is fixedly installed on one side of the first tank protection plate, and the first pressure sensor is fixedly installed on the other side of the first tank protection plate.
[0007] The present invention further illustrates that the second air compressor is detachably installed on the other side of the ozone generator protective frame, the second electric telescopic rod is set on the other side of the ozone generator protective frame, the second mounting base is fixedly installed on one end of the second electric telescopic rod, one end of the second pneumatic telescopic rod is fixedly installed on the second mounting base, the second tank protection plate is fixedly installed on the other end of the second pneumatic telescopic rod, and the second pneumatic telescopic rod is connected to a ventilation hose that is connected to the second air compressor. The third temperature sensor is fixedly installed on one side of the second tank protection plate, and the second pressure sensor is fixedly installed on the other side of the second tank protection plate.
[0008] The present invention further illustrates that the second protection component includes a first electric fan assembly, a second electric fan assembly, a second exhaust duct, a third exhaust duct, a first electric air guide plate, a second electric air guide plate, a first air guide duct, and a second air guide duct. The first electric fan assembly and the second electric fan assembly are installed alternately on one side inside the ozone generator protection frame, and the second exhaust duct and the third exhaust duct are arranged alternately on the other side inside the ozone generator protection frame. The positions of the second exhaust duct and the third exhaust duct correspond to the positions of the two sets of electric fan assemblies.
[0009] The present invention further illustrates that the first electric air guide plate is disposed in the second exhaust duct, and the second electric air guide plate is disposed in the third exhaust duct; The first air duct is fixedly installed on the ozone generator protective frame and located on one side of the second exhaust duct. The first air duct and the second exhaust duct are interconnected. The second air duct is fixedly installed on the ozone generator protective frame and located on one side of the third exhaust duct. The second air duct and the third exhaust duct are interconnected.
[0010] The present invention further illustrates that both sets of tank protection plates are provided with several sets of heat dissipation holes.
[0011] The present invention further illustrates that four sets of shock-absorbing support seats are detachably installed around the bottom perimeter of the ozone generator protective frame.
[0012] The present invention further illustrates that the interior of the ozone generator protective frame is hollow.
[0013] The present invention further illustrates that the ozone generator protective frame is placed on the floor of the production workshop.
[0014] Compared with the prior art, the beneficial effects achieved by the present invention are as follows: The present invention, through the combined use of a camera, two sets of electric telescopic rods, two sets of tank protection plates, and the equipment program, can change the clamping and protection position according to the different sizes of the ozone generator, and perform clamping and fixing protection operation on the middle part of the ozone generator to prevent the ozone generator from shifting due to vibration during operation. At the same time, it can dissipate the heat generated by the ozone generator to perform heat dissipation protection operation. Through the combined use of two sets of pneumatic telescopic rods, two sets of air compressors, two sets of pressure sensors, and the equipment program, the clamping value of the clamping and protection can be changed according to the different sizes of the ozone generator, so that the two sets of tank protection plates are attached to the surface of the ozone generator tank, avoiding excessive clamping force that affects heat dissipation, and also preventing damage to the surface of the ozone generator tank, thereby improving the service life of the equipment and reducing daily maintenance costs. By using three sets of temperature sensors, two sets of electric fans, two sets of air ducts, and the equipment program in conjunction with these components, the heat dissipation protection method can be changed according to the different operating temperatures of the ozone generator. When the operating temperature is low, simply maintaining air circulation is sufficient to dissipate the hot air accumulated at the bottom of the ozone generator. When the operating temperature is high, the airflow direction is changed to simultaneously perform air cooling on the bottom of the ozone generator and the tank, preventing heat from accumulating at the bottom of the ozone generator and affecting its normal operation. At the same time, the air is diverted to the two sets of tank protection plates by the two sets of air cooling protection to prevent high temperature damage to the two sets of tank protection plates and reduce the factory's maintenance costs. Attached Figure Description
[0015] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the overall structure of the present invention from another perspective; Figure 3 This is a schematic diagram of the ozone generator protective frame structure of the present invention; Figure 4 This is a schematic diagram of the structure of the first protective component of the present invention; Figure 5 This is a schematic diagram of the first protective component structure from another perspective of the present invention; Figure 6 This is a schematic diagram of the structure of the second protective component of the present invention; Figure 7 This is a schematic diagram of the electric air guide plate of the present invention in the closed state; Figure 8 This is a schematic diagram of the electric air guide plate of the present invention in the open state.
[0016] In the diagram: 1. Ozone generator protective frame; 11. Vibration damping support; 12. First exhaust duct; 13. First temperature sensor; 14. Camera; 2. Ozone generator; 3. First protection component; 31. First air compressor; 311. First electric telescopic rod; 312. First mounting base; 313. First pneumatic telescopic rod; 314. First tank protection plate; 315. Second temperature sensor; 316. First pressure sensor; 32. Second air compressor; 321. Second electric telescopic rod; 322. Second mounting base; 323. Second pneumatic telescopic rod; 324. Second tank protection plate; 325. Third temperature sensor; 326. Second pressure sensor; 4. Second protective component; 41. First electric fan assembly; 411. Second electric fan assembly; 42. Second exhaust duct; 421. Third exhaust duct; 43. First electric air guide plate; 431. Second electric air guide plate; 44. First air guide duct; 441. Second air guide duct. Detailed Implementation
[0017] The following detailed, non-limiting description of the technical solution of the present invention, in conjunction with preferred embodiments and accompanying drawings, is provided. Obviously, the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0018] Please see Figure 1-8The present invention provides a technical solution: a protective device for an ozone generator, including an ozone generator protective frame 1, which is placed on the floor of the production workshop. The interior of the ozone generator protective frame 1 is hollow. Four sets of shock-absorbing support seats 11 are detachably installed around the bottom of the ozone generator protective frame 1 to reduce vibration and noise generated during operation. Two sets of first exhaust pipes 12 are symmetrically arranged at both ends of the interior of the ozone generator protective frame 1 to help exhaust the hot air inside the ozone generator protective frame 1. Two sets of first temperature sensors 13 are also symmetrically installed at both ends of the interior of the ozone generator protective frame 1 to help detect the temperature of different areas. An ozone generator 2 is also placed inside the ozone generator protective frame 1. A camera 14 is also fixedly installed on one side of the exterior of the ozone generator protective frame 1. The ozone generator protective frame 1 is also equipped with a first protective component 3 and a second protective component 4. The first protection component 3 includes a first air compressor 31, a first electric telescopic rod 311, a first mounting base 312, a first pneumatic telescopic rod 313, a first tank protection plate 314, a second temperature sensor 315, a first pressure sensor 316, a second air compressor 32, a second electric telescopic rod 321, a second mounting base 322, a second pneumatic telescopic rod 323, a second tank protection plate 324, a third temperature sensor 325, and a second pressure sensor 326. The first air compressor 31 is detachably mounted on the outside of the ozone generator protection frame 1. One end of the first electric telescopic rod 311 is set on the outside of the ozone generator protection frame 1 for use in lifting and lowering protection operations. The first mounting base 312 is fixedly installed on one end of the first electric telescopic rod 311, and one end of the first pneumatic telescopic rod 313 is fixedly installed on the first mounting base 312. The first tank protection plate 314 is fixedly installed on the other end of the first pneumatic telescopic rod 313 for use in heat dissipation protection operations. The first pneumatic telescopic rod 313 is connected to a ventilation hose and connected to the first air compressor 31. The second temperature sensor 315 is fixedly installed on one side of the first tank protection plate 314 to detect the temperature of the ozone generator 2 during operation, and the first pressure sensor 316 is fixedly installed on the other side of the first tank protection plate 314. The second air compressor 32 is detachably installed on the other side of the ozone generator protective frame 1 for use in protective operation. The second electric telescopic rod 321 is set on the other side of the ozone generator protective frame 1 for use in lifting and lowering protective operation. The second mounting base 322 is fixedly installed on one end of the second electric telescopic rod 321. One end of the second pneumatic telescopic rod 323 is fixedly installed on the second mounting base 322. The second tank protection plate 324 is fixedly installed on the other end of the second pneumatic telescopic rod 323 for use in heat dissipation protection operation. The second pneumatic telescopic rod 323 is connected to the second air compressor 32 by an external ventilation hose. Both sets of tank protection plates are equipped with several sets of heat dissipation holes to facilitate heat dissipation; The third temperature sensor 325 is fixedly installed on one side of the second tank protection plate 324 to detect the temperature of the ozone generator 2 during operation, and the second pressure sensor 326 is fixedly installed on the other side of the second tank protection plate 324. The second protection component 4 includes a first electric fan assembly 41, a second electric fan assembly 411, a second exhaust duct 42, a third exhaust duct 421, a first electric air guide plate 43, a second electric air guide plate 431, a first air guide duct 44, and a second air guide duct 441. The first electric fan assembly 41 and the second electric fan assembly 411 are installed at intervals on one side inside the ozone generator protection frame 1. The second exhaust duct 42 and the third exhaust duct 421 are arranged at intervals on the other side inside the ozone generator protection frame 1. The positions of the second exhaust duct 42 and the third exhaust duct 421 correspond to the positions of the two sets of electric fan assemblies and are used to control the gas flow. The first electric air guide plate 43 is installed in the second air duct 42, and the second electric air guide plate 431 is installed in the third air duct 421 to help change the direction of gas flow. The first air duct 44 is fixedly installed on the ozone generator protective frame 1, located on one side of the second exhaust duct 42, and the first air duct 44 and the second exhaust duct 42 are connected to each other. The second air duct 441 is fixedly installed on the ozone generator protective frame 1, located on one side of the third exhaust duct 421, and the second air duct 441 and the third exhaust duct 421 are interconnected. The ozone generator protective frame 1 is powered by an external workshop power supply to drive the internal components. The ozone generator protection frame 1 is also equipped with an equipment program, which can control the opening and closing of two sets of air compressors, the operation of two sets of electric telescopic rods, the operation of two sets of electric fan sets, and the operation of two sets of electric air guide plates. Two sets of air compressors, two sets of electric telescopic rods, two sets of electric fan sets, two sets of electric air guides, three sets of temperature sensors, and two sets of pressure sensors are all connected to the equipment program signals.
[0019] Tank protection operation: During the operation of ozone generator 2, vibration and noise are generated, requiring protective measures. Workers first use hoisting tools to transport the ozone generator protective frame 1 to the production workshop, then place the ozone generator 2 inside the protective frame 1. Next, workers turn on the workshop power, at which point the ozone generator protective frame 1 starts, and the equipment program begins. The equipment program sets dimension values A1, A2, and A3, with A1 being the minimum and A3 the maximum, which can be adjusted according to specific needs. The equipment program also sets the extension values of the two sets of electric telescopic rods to B1, B2, and B3, with B1 being the minimum and B3 the maximum, which can also be adjusted according to specific needs. The equipment program detects the size of ozone generator 2 through camera 14 and compares it with the set values. When the equipment program detects a dimension value of A1 for ozone generator 2, it determines that the size of ozone generator 2 is small. The equipment program then controls the two sets of electric telescopic rods to extend upwards to an extension value of B1. The two sets of electric telescopic rods move the two sets of mounting bases upwards to the middle of ozone generator 2, facilitating tank protection operations for ozone generator 2. When the device program detects that the size of ozone generator 2 is A2, the device program determines that the size of ozone generator 2 has increased. The device program controls the two sets of electric telescopic rods to extend upwards, with an extension value of B2. The two sets of electric telescopic rods drive the two sets of mounting seats to move upwards to the middle of ozone generator 2, which facilitates tank protection operation of ozone generator 2. When the equipment program detects that the size of ozone generator 2 is A3, the equipment program determines that the size of ozone generator 2 is too large. The equipment program controls the two sets of electric telescopic rods to extend upwards with an extension value of B3. The two sets of electric telescopic rods drive the two sets of mounting bases to move upwards to the middle of ozone generator 2, which facilitates the tank protection operation of ozone generator 2. After completing the above operations, the equipment program controls the clamping protection operation. The equipment program sets the pumping values of the two air compressors to X1, X2, and X3, where X1 is the minimum value and X3 is the maximum value. These values can be adjusted according to specific needs. The clamping values of the two pressure sensors are Y1, Y2, and Y3, with a clamping value range of ±10, where Y1 is the minimum value and Y3 is the maximum value. These values can also be adjusted according to specific needs. When the equipment program detects that the size of ozone generator 2 is A1, the equipment program controls the two air compressors to start, with the pumping value set to X1. The compressor pumps compressed air into two sets of pneumatic telescopic rods. The two sets of pneumatic telescopic rods extend outward and drive the two sets of tank protection plates to move outward until they are in contact with the tank surface of ozone generator 2. This performs a tank stabilization and protection operation on ozone generator 2 to prevent the ozone generator 2 from shifting due to vibration during operation. At the same time, it can dissipate the heat generated by ozone generator 2 to perform heat dissipation protection operation. Then, the equipment program detects whether the clamping value is within the Y1 range through two sets of pressure sensors. At this time, all values are at the minimum value, and there will be no over-clamping. When the device program detects that the size of ozone generator 2 is A2, the device program controls the pumping value of the two sets of air compressors to be adjusted to X2. The two sets of air compressors pump compressed air into the two sets of pneumatic telescopic rods. The two sets of pneumatic telescopic rods extend outward and drive the two sets of tank protection plates to move outward until they are attached to the tank surface of ozone generator 2. This performs a tank stabilization protection operation for ozone generator 2, preventing the ozone generator 2 from shifting due to vibration during operation. At the same time, it can dissipate the heat generated by ozone generator 2, which is a heat dissipation protection operation. Then, the device program detects whether the clamping value is within the Y2 range through two sets of pressure sensors. If it is greater than the Y2 range, the device program controls the pumping value of the two sets of air compressors to be adjusted to X1. At this time, the situation of being less than the Y2 range will not occur. When the equipment program detects that the size of ozone generator 2 is A3, the equipment program controls the pumping value of the two sets of air compressors to be adjusted to X3. The two sets of air compressors pump compressed air into the two sets of pneumatic telescopic rods. The two sets of pneumatic telescopic rods extend outward and drive the two sets of tank protection plates to move outward until they are attached to the surface of the tank of ozone generator 2. This performs a tank stabilization protection operation for ozone generator 2, preventing the ozone generator 2 from shifting due to vibration during operation. At the same time, it can dissipate the heat generated by ozone generator 2, and perform heat dissipation protection operation. Then, the equipment program detects whether the clamping value is within the Y3 range through two sets of pressure sensors. If it is greater than the Y3 range, the equipment program controls the pumping value of the two sets of air compressors to be adjusted to X2. At this time, the situation of being less than the Y3 range will not occur. After completing the above operations, the equipment program control will proceed to the next operation; By using camera 14, two sets of electric telescopic rods, two sets of tank protection plates, and the equipment program in conjunction with these components, the clamping and protection positions can be adjusted according to the size of the ozone generator 2. This clamps and secures the middle of the ozone generator 2, preventing it from shifting due to vibration during operation. Simultaneously, it dissipates the heat generated by the ozone generator 2, providing heat dissipation protection. Furthermore, by using two sets of pneumatic telescopic rods, two sets of air compressors, two sets of pressure sensors, and the equipment program in conjunction with these components, the clamping value can be adjusted according to the size of the ozone generator 2. This ensures that the two sets of tank protection plates adhere to the surface of the ozone generator 2's tank, preventing excessive clamping force from affecting heat dissipation and avoiding damage to the surface of the ozone generator 2's tank. This extends the equipment's lifespan and reduces daily maintenance costs.
[0020] Heat dissipation protection operation: During the above operations, the equipment program controls the heat dissipation protection operation. The equipment program detects the temperature value of ozone generator 2 through three sets of temperature sensors and compares it with the set value. The equipment program sets the temperature values to T1, T2, and T3, where T1 is the minimum value and T3 is the maximum value, which can be adjusted according to specific needs. The rotation values of the two sets of electric air guides are H1 and H2, where H1 is the minimum value and H2 is the maximum value, which can be adjusted according to specific needs. The rotation speeds of the two sets of electric fans are V1 and V2, where V1 is the minimum value and V2 is the maximum value, which can be adjusted according to specific needs. When the equipment program detects that the temperature value of the three sets of temperature sensors is T1, the equipment program controls the two sets of electric fans to turn on at a speed of V1. The rotation value of the two sets of electric air guides is H2, and the two sets of electric air guides are fully open. At this time, the two sets of electric fans blow air into the ozone generator protection frame 1 and then blow it out from the three sets of exhaust pipes to perform air cooling operation on ozone generator 2. When the equipment program detects that the temperature values of the three sets of temperature sensors are T2 and T3, the equipment program controls the speed of the two sets of electric fans to be adjusted to V2, the rotation value of the two sets of electric air guides to be H2, and the two sets of electric air guides to be fully opened. At this time, the two sets of electric fans blow air into the ozone generator protection frame 1, and then blow it out from the three sets of exhaust pipes to perform air cooling operation on the ozone generator 2. When the device program detects that only the temperature values of the second temperature sensor 315 and the third temperature sensor 325 are not T1, the device program determines that the tank temperature of the ozone generator 2 is high and requires separate heat dissipation protection. The device program controls the speed of the two sets of electric fans to V2 and the rotation value of the two sets of electric air guides to H1. The two sets of electric air guides are opened at an angle. At this time, the two sets of electric fans blow air into the ozone generator protective frame 1, and then flow from the two sets of electric air guides into the two sets of air guide pipes, and finally blow it onto the surface of the ozone generator 2, performing air cooling heat dissipation on the bottom and tank of the ozone generator 2 simultaneously to prevent heat from escalating. The buildup at the bottom of ozone generator 2 affects its normal operation. At this time, the equipment program controls the pumping value of the two sets of air compressors to be adjusted to X1. The two sets of pneumatic telescopic rods retract inward and drive the two sets of tank protection plates to separate from ozone generator 2. The air is diverted to the two sets of tank protection plates by the two sets of air ducts for air cooling and heat dissipation protection to avoid high temperature damage to the two sets of tank protection plates and reduce the factory's maintenance costs. At this time, the equipment program checks again whether the temperature values of the second temperature sensor 315 and the third temperature sensor 325 have dropped to T1. If they are not T1, there is no operation. If they drop to T1, the equipment program controls the two sets of electric air ducts and the two sets of air compressors to reset. By using three sets of temperature sensors, two sets of electric fans, two sets of air ducts, and the equipment program in conjunction with these components, the heat dissipation protection method can be changed according to the different operating temperatures of the ozone generator 2. When the operating temperature is low, it is only necessary to maintain air circulation to dissipate the hot air accumulated at the bottom of the ozone generator 2. When the operating temperature is high, the airflow direction is changed to simultaneously perform air cooling on the bottom and tank of the ozone generator 2, preventing heat from accumulating at the bottom of the ozone generator 2 and affecting its normal operation. At the same time, the air is diverted to the two sets of tank protection plates by the two sets of air cooling protection to prevent high temperature damage to the two sets of tank protection plates and reduce the factory's maintenance costs.
[0021] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this invention, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0022] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features, and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A protective device for an ozone generator, comprising an ozone generator protective frame (1), characterized in that, Two sets of first exhaust pipes (12) are symmetrically arranged at both ends of the ozone generator protective frame (1). Two sets of first temperature sensors (13) are also symmetrically installed at both ends of the ozone generator protective frame (1). An ozone generator (2) is also placed inside the ozone generator protective frame (1). A camera (14) is also fixedly installed on one side of the outside of the ozone generator protective frame (1). The ozone generator protective frame (1) is also provided with a first protective component (3) and a second protective component (4). The first protection component (3) includes a first air compressor (31), a first electric telescopic rod (311), a first mounting base (312), a first pneumatic telescopic rod (313), a first tank protection plate (314), a second temperature sensor (315), a first pressure sensor (316), a second air compressor (32), a second electric telescopic rod (321), a second mounting base (322), a second pneumatic telescopic rod (323), a second tank protection plate (324), a third temperature sensor (325), and a second pressure sensor (326). 31) The first electric telescopic rod (311) is detachably installed on one side of the ozone generator protective frame (1). The first mounting base (312) is fixedly installed on one end of the first electric telescopic rod (311). One end of the first pneumatic telescopic rod (313) is fixedly installed on the first mounting base (312). The first tank protection plate (314) is fixedly installed on the other end of the first pneumatic telescopic rod (313). The first pneumatic telescopic rod (313) is connected to a ventilation hose and connected to the first air compressor (31). The second temperature sensor (315) is fixedly installed on one side of the first tank protection plate (314), and the first pressure sensor (316) is fixedly installed on the other side of the first tank protection plate (314).
2. The protection device for an ozone generator according to claim 1, characterized in that, The second air compressor (32) is detachably installed on the other side of the ozone generator protective frame (1). The second electric telescopic rod (321) is set on the other side of the ozone generator protective frame (1). The second mounting base (322) is fixedly installed on one end of the second electric telescopic rod (321). One end of the second pneumatic telescopic rod (323) is fixedly installed on the second mounting base (322). The second tank protection plate (324) is fixedly installed on the other end of the second pneumatic telescopic rod (323). The second pneumatic telescopic rod (323) is connected to the second air compressor (32) by a ventilation hose. The third temperature sensor (325) is fixedly installed on one side of the second tank protection plate (324), and the second pressure sensor (326) is fixedly installed on the other side of the second tank protection plate (324).
3. The protection device for an ozone generator according to claim 2, characterized in that, The second protection component (4) includes a first electric fan group (41), a second electric fan group (411), a second exhaust duct (42), a third exhaust duct (421), a first electric air guide plate (43), a second electric air guide plate (431), a first air guide duct (44), and a second air guide duct (441). The first electric fan group (41) and the second electric fan group (411) are installed at intervals on one side inside the ozone generator protection frame (1). The second exhaust duct (42) and the third exhaust duct (421) are arranged at intervals on the other side inside the ozone generator protection frame (1). The positions of the second exhaust duct (42) and the third exhaust duct (421) correspond to the positions of the two electric fan groups.
4. The protection device for an ozone generator according to claim 3, characterized in that, The first electric air guide plate (43) is installed in the second exhaust pipe (42), and the second electric air guide plate (431) is installed in the third exhaust pipe (421); The first air duct (44) is fixedly installed on the ozone generator protective frame (1) and located on one side of the second exhaust duct (42). The first air duct (44) and the second exhaust duct (42) are interconnected. The second air duct (441) is fixedly installed on the ozone generator protective frame (1) and located on one side of the third exhaust duct (421). The second air duct (441) and the third exhaust duct (421) are interconnected.
5. The protection device for an ozone generator according to claim 4, characterized in that, Both sets of tank protection plates are provided with several sets of heat dissipation holes.
6. The protection device for an ozone generator according to claim 5, characterized in that, The bottom of the ozone generator protective frame (1) is detachably equipped with four sets of shock-absorbing support seats (11).
7. The protection device for an ozone generator according to claim 6, characterized in that, The interior of the ozone generator protective frame (1) is hollow.
8. The protection device for an ozone generator according to claim 7, characterized in that, The ozone generator protective frame (1) is placed on the floor of the production workshop.
Citation Information
Patent Citations
Ozone generator with protection function
CN213865374U