Novel IPT ventilation and purification device

By setting multiple single-stage airflow generators and ozone counteractors inside the airflow guide tube, a strong ion airflow is formed, which solves the problems of high fan noise and complex maintenance, and achieves low-cost and high-efficiency air purification and disinfection effects.

CN120907202AInactive Publication Date: 2025-11-07米标科技有限公司
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202511438889.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing fans are noisy and costly to maintain during ventilation, and are complicated to disassemble and assemble, affecting living comfort and efficiency.

Method used

Multiple single-stage airflow generators are spaced apart along the axial direction of the guide tube to form a strong airflow. The air molecules are ionized by the electric field to form an ion wind. Combined with the ozone decomposition device, the airflow intensity and ozone generation are controlled, and the structure is simplified without the need for motors and fan blades.

Benefits of technology

It reduces production and maintenance costs, improves ventilation efficiency, reduces noise, enhances living comfort, and achieves rapid ventilation and disinfection functions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120907202A_ABST
    Figure CN120907202A_ABST
Patent Text Reader

Abstract

The invention belongs to the technical field of ventilation and purification equipment. The invention discloses a novel IPT ventilation and purification device which comprises a plurality of single-stage airflow generators installed in a guide cylinder in the axial direction of the guide cylinder, an air inlet and an air outlet are formed in the two ends of the guide cylinder in the axial direction respectively, an installation base is installed at the air inlet or the air outlet, and a processor is assembled in the installation base; the single-stage airflow generator comprises a high-voltage source electrode and a high-voltage receiving electrode which are fixedly connected with the inner wall of the guide cylinder; the high-voltage source electrode comprises a plurality of source electrode rings, the plurality of source electrode rings are connected with the guide cylinder through a first connecting frame, and electrode teeth are fully distributed at one end, facing the high-voltage receiving electrode, of each source electrode ring and are uniformly arranged along the circumferential direction of the source electrode ring. The production cost and the subsequent maintenance cost can be effectively reduced, the ventilation efficiency is improved, noise generated in the ventilation process is reduced, and the living comfort is improved. The air purifier is suitable for indoor ventilation and purification.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of indoor ventilation and purification equipment, in particular to a novel IPT ventilation and purification device. BACKGROUND

[0002] When the doors and windows are in a closed state, the air circulation in the room is poor, causing the freshness of the indoor air to gradually decrease. Especially in newly renovated rooms or workshops, paint, glue, furniture, etc. will continuously release a large amount of harmful substances, which cannot quickly escape even if the doors and windows are opened. At present, the commonly used means is to replace the air by installing a fan to make the indoor air exhaust to the outside. However, the existing fan mostly uses a motor to drive the fan blade to realize the air flow. In order to realize rapid air exchange, the power of the fan needs to be increased, or a larger fan is used. Moreover, the fan will produce a large noise during the air exchange process, affecting the comfort of the residence. And during the long-time work of the fan, regular maintenance is needed to prevent component damage. However, the disassembly of the fan needs to disassemble the motor, fan blade, bearing and other components, and the tools used for disassembly are also increased accordingly, which not only affects the disassembly efficiency, but also is prone to operation errors, thereby requiring professional personnel to operate, which increases the maintenance cost. SUMMARY

[0003] The present application provides a novel IPT ventilation and purification device to reduce production and subsequent maintenance costs, improve air exchange efficiency, reduce noise generated during air exchange, and improve the comfort of the residence.

[0004] To achieve the above-mentioned purpose, the technical solution adopted by the present application is as follows: A novel IPT ventilation and purification device, comprising a plurality of single-stage air flow generators installed in a guide cylinder along the axial direction of the guide cylinder, an air inlet and an air outlet are formed at the two ends of the guide cylinder in the axial direction, a mounting seat is installed at the air inlet or the air outlet, and a processor is assembled in the mounting seat; the single-stage air flow generator comprises a high-voltage source electrode and a high-voltage sink electrode arranged at intervals along the flow direction of the air flow, both of which are connected and fixed with the inner wall of the guide cylinder; the high-voltage source electrode comprises a plurality of source electrode rings arranged coaxially, a plurality of the source electrode rings are connected with the guide cylinder through a first connecting frame, and the axis of each source electrode ring coincides with the axis of the guide cylinder, and the one end of the source electrode ring towards the high-voltage sink electrode is arranged with a plurality of pole teeth, which are uniformly arranged along the circumferential direction of the source electrode ring.

[0005] Further, a plurality of fixing holes are uniformly arranged on the peripheral wall of each of the source rings along the circumferential direction, the first connecting frame comprises a plurality of first connecting strips extending along the radial direction of the source rings, the plurality of first connecting strips are uniformly arranged along the circumferential direction of the source rings, one end of each of the first connecting strips is fixed to the center of the source ring, and the other end of each of the first connecting strips sequentially passes through the corresponding fixing hole of each source ring and is fixed to the flow guide cylinder.

[0006] Further, the high-voltage anode comprises a plurality of anode rings coaxially arranged, the plurality of anode rings are arranged in one-to-one correspondence with the plurality of source rings, the plurality of anode rings are connected to the flow guide cylinder through the second connecting frame, and the axis of each of the anode rings coincides with the axis of the flow guide cylinder.

[0007] Further, the second connecting frame comprises a plurality of second connecting strips extending along the radial direction of the anode rings, the plurality of second connecting strips are uniformly arranged along the circumferential direction of the anode rings, one end of each of the second connecting strips is fixed to the center of the anode ring, and the other end of each of the second connecting strips is sequentially connected to each of the anode rings and is fixed to the flow guide cylinder.

[0008] Further, an ozone counter-punch is arranged at the end of the high-voltage anode away from the high-voltage source, and the ozone counter-punch is fixed to the inner peripheral wall of the flow guide cylinder.

[0009] Further, the ozone counter-punch comprises a plurality of ultraviolet LED lamp beads, the plurality of ultraviolet LED lamp beads are uniformly arranged along the circumferential direction of the flow guide cylinder, and the ultraviolet LED lamp beads are electrically connected to each other.

[0010] Further, a plurality of adjusting sleeves are arranged in the flow guide cylinder along the axial direction, and each of the single-stage airflow generators is arranged in the corresponding adjusting sleeve.

[0011] Further, a plurality of limiting grooves are uniformly arranged on the outer peripheral surface of the adjusting sleeve along the circumferential direction, each of the limiting grooves extends along the axial direction of the adjusting sleeve, a flow guide rib is arranged at each of the two ends of the adjusting sleeve along the axial direction, a plurality of limiting holes are arranged on the flow guide cylinder and located at the positions of the adjusting sleeves, the plurality of limiting holes are arranged in one-to-one correspondence with the plurality of limiting grooves, a fastening bolt is threadedly connected to each of the limiting holes, and the end of the fastening bolt is locked in the corresponding limiting groove.

[0012] Compared with the prior art, the application has the following technical progress: the application generates airflow by each single-stage airflow generator, and the airflow is multi-stage propelled due to the multiple single-stage airflow generators being arranged along the axial direction of the material guiding cylinder, thereby forming a relatively strong wind beam; that is, the airflow is gradually accelerated through the air inlets and then discharged through the air outlets. The application forms the airflow without the combination of motors and fan blades, can greatly reduce the investment and maintenance costs, and has relatively weak noise. The control screen is installed on the mounting seat and connected with the processor, used for controlling the power of the single-stage airflow generator, thereby controlling the airflow intensity and achieving the purpose of controlling the air outlet air pressure. As can be seen, the application has the simple structure, can effectively reduce the production cost, reduce the subsequent maintenance cost, improve the ventilation efficiency, reduce the noise generated in the ventilation process, and improve the living comfort. BRIEF DESCRIPTION OF DRAWINGS

[0013] The accompanying drawings are used to provide a further understanding of the application, and constitute a part of the specification, used to explain the application together with the embodiments of the application, and do not constitute a limitation on the application.

[0014] In the drawings: Figure 1 is a structural schematic view of the embodiment of the application; Figure 2 is a structural schematic view of the embodiment of the application from another angle; Figure 3 is a structural side view of the embodiment of the application; Figure 4 is a structural schematic view of the single-stage airflow generator of the embodiment of the application; Figure 5 is a structural schematic view of the high-voltage source electrode of the single-stage airflow generator of the embodiment of the application; Figure 6 is a structural schematic view of the high-voltage sink electrode of the single-stage airflow generator of the embodiment of the application; Figure 7 is a structural schematic view of the ozone opposite-pusher of the single-stage airflow generator of the embodiment of the application; Figure 8 is a structural schematic view of the mutual sleeving of the flow guiding cylinder and the adjusting sleeve of the embodiment of the application; Figure 9 is a structural schematic view of the adjusting sleeve of the embodiment of the application.

[0015] Components labeled: 100-Guide tube, 101-Cylindrical body, 102-Restriction hole, 103-Adjusting sleeve, 104-Guide edge, 105-Restriction groove, 106-Fasting bolt, 200-Single-stage airflow generator, 201-High-voltage source electrode, 2011-Source electrode ring, 2012-Electrode teeth, 2013-Fixing hole, 2014-First connecting strip, 202-High-voltage receiving electrode, 2021-Receiving electrode ring, 2022-Second connecting strip, 203-Ozone counteractor, 300-Air inlet, 400-Air outlet, 500-Mounting base, 600-Control panel. Detailed Implementation

[0016] The preferred embodiments of the present invention will now be described with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustrative and explanatory purposes only and are not intended to limit the scope of the invention.

[0017] This invention discloses a novel IPT ventilation and purification device, such as... Figures 1-9 As shown, the invention includes a guide tube, a mounting base, a processor, and multiple single-stage airflow generators. The guide tube comprises a cylindrical body, within which multiple single-stage airflow generators are coaxially mounted, spaced apart along the axial direction of the cylindrical body. An air inlet and an air outlet are formed at opposite ends of the cylindrical body's axial direction. The mounting base is installed at either the air inlet or the air outlet, and the processor is housed within the mounting base. The working principle and advantages of this invention are as follows: This invention generates airflow through each single-stage airflow generator. Because multiple single-stage airflow generators are spaced apart along the axial direction of the guide tube, the airflow is propelled in multiple stages, resulting in a relatively strong airflow; that is, the airflow gradually increases in speed through the air inlet and is then discharged through the air outlet. This invention does not require a combination of motors and fan blades to generate airflow, significantly reducing investment and maintenance costs, and generating minimal noise. A control panel is mounted on the mounting base, connected to the processor, to control the power of the single-stage airflow generators, thereby controlling the airflow intensity and achieving the purpose of controlling the air pressure at the air outlet. In summary, the present invention has a simple structure, effectively reduces production costs, reduces subsequent maintenance costs, improves ventilation efficiency, reduces noise generated during ventilation, and improves living comfort.

[0018] As a preferred embodiment of the present invention, such as Figure 3 , 4As shown in the figure, the single-stage airflow generator comprises a high-voltage source electrode and a high-voltage receiving electrode, which are arranged in series along the flow direction of the airflow and are fixedly connected with the inner wall of the flow guide cylinder. In this embodiment, the high-voltage positive electrode is connected with the high-voltage source electrode, and the high-voltage negative electrode is connected with the high-voltage receiving electrode. Through the action of the electric field, air molecules are ionized to form ions, which collide with air molecules under the driving force of the electric field to generate airflow (ion wind). The ion wind generated by multiple single-stage airflow generators realizes a one-way multi-stage superposition state, thereby improving the air volume and air speed.

[0019] As a preferred embodiment of the present application, as shown in Figure 4 、 5 , the high-voltage source electrode comprises a plurality of source electrode rings arranged coaxially. These source electrode rings are connected with the flow guide cylinder through a first connecting frame, and the axis of each source electrode ring coincides with the axis of the flow guide cylinder. The end of the source electrode ring facing the high-voltage receiving electrode is arranged with a plurality of teeth. These teeth are uniformly arranged along the circumferential direction of the source electrode ring. In this embodiment, due to the arrangement of the teeth, when the source electrode ring is connected with the high-voltage electrode, it can easily break through the air molecules, causing the air molecules to ionize and form ions. In this embodiment, a plurality of fixing holes are uniformly arranged along the circumferential direction of each source electrode ring. The first connecting frame comprises a plurality of first connecting strips. These first connecting strips are uniformly arranged along the circumferential direction of the source electrode ring. Each first connecting strip extends along the radial direction of the source electrode ring. One end of the first connecting strip converges and is fixed at the center of the source electrode ring. The other end of the first connecting strip passes through the corresponding fixing hole of each source electrode ring in sequence and is fixed with the flow guide cylinder.

[0020] As a preferred embodiment of the present application, as shown in Figure 4 、 6 , the high-voltage receiving electrode comprises a plurality of receiving electrode rings arranged coaxially. These receiving electrode rings are arranged one-to-one corresponding to the plurality of source electrode rings. The plurality of receiving electrode rings are connected with the flow guide cylinder through a second connecting frame, and the axis of each receiving electrode ring coincides with the axis of the flow guide cylinder. The second connecting frame of this embodiment comprises a plurality of second connecting strips. These second connecting strips are uniformly arranged along the circumferential direction of the receiving electrode ring. Each second connecting strip extends along the radial direction of the receiving electrode ring. One end of the second connecting strip is fixed at the center of the receiving electrode ring. The other end of the second connecting strip is connected with each receiving electrode ring in sequence and is fixed with the flow guide cylinder. In this embodiment, due to the one-to-one correspondence between the receiving electrode ring and the source electrode ring, the generated ion wind is in the form of direct current, thereby ensuring the effect of multi-stage superposition and avoiding the reduction of wind speed, wind pressure, etc. due to the energy consumption of ion wind. Moreover, the air exchange effect of direct current wind is the best.

[0021] As a preferred embodiment of the present application, as shown in Figure 4 、 7As shown in the high-voltage anode and the high-voltage cathode in the embodiment, an ozone counterflow device is arranged at the end of the high-voltage anode far away from the high-voltage source, the ozone counterflow device is fixed on the inner circumferential wall of the flow guide cylinder, and an ozone detector is arranged at the air outlet. The high-voltage anode and the high-voltage cathode in the embodiment generate ozone in the process of ionizing air molecules, the ozone is decomposed by the ozone counterflow device, and harm to the human body caused by the ozone is avoided. The ozone counterflow device in the embodiment comprises a plurality of ultraviolet LED lamp beads, the ultraviolet LED lamp beads are uniformly arranged along the circumference of the flow guide cylinder, and the ultraviolet LED lamp beads are electrically connected to each other. The ultraviolet LED lamp beads in the embodiment emit ultraviolet rays, the ultraviolet rays directly act on the ozone, and the ozone is decomposed, and the oxygen generated after the ozone is decomposed can improve the freshness of indoor air. The ozone counterflow device in the embodiment can also be started and stopped according to the situation, that is, when disinfection of the indoor environment is needed, the ozone counterflow device is turned off, the ozone generated by ionization of air molecules enters the indoor environment, and disinfection and sterilization work is performed. This mode is mainly used in hospitals, newly decorated indoor environments, large places and the like, and disinfection and sterilization work can be performed when there is no one in the indoor environment.

[0022] As a preferred embodiment of the present application, as shown in Figure 8 、 9 a plurality of adjusting sleeves are arranged in the flow guide cylinder, the adjusting sleeves are arranged at intervals along the axial direction of the flow guide cylinder, and each single-stage airflow generator is arranged in a corresponding adjusting sleeve. The axial position of the adjusting sleeve in the flow guide cylinder is adjusted in the embodiment, the spacing between adjacent single-stage airflow generators is adjusted, and the initial wind force of the entire device is adjusted without power adjustment. The spacing between the high-voltage anode and the high-voltage cathode can also be adjusted in the embodiment, the wind production and the ozone production are adjusted, the purpose of rapid air exchange or high-efficiency disinfection is achieved. The specific connection mode of the flow guide cylinder and the adjusting sleeve in the embodiment is that a plurality of limiting grooves are formed on the outer circumferential surface of the adjusting sleeve, the limiting grooves are uniformly arranged along the circumference of the adjusting sleeve, each limiting groove extends along the axial direction of the adjusting sleeve, a plurality of limiting holes are formed on the flow guide cylinder and located at each adjusting sleeve, the limiting holes are arranged in one-to-one correspondence with the limiting grooves, a fastening bolt is threadedly connected at each limiting hole, and the end of the fastening bolt is locked in the corresponding limiting groove. The flow guide along is arranged at the axial both ends of the adjusting sleeve in the embodiment, and then the ion wind can smoothly enter and exit the adjusting sleeve, the end of the adjusting sleeve is prevented from hindering the ion wind, and the ion wind is prevented from being weakened.

[0023] The micro-current sensor and the weak-current sensor are installed on the processor, and the working process of the present application is as follows: Power-on detection: 1. The insulation degree, breakdown voltage and corresponding voltage and current between each electrode are detected by multiple pulse transient discharge detection.

[0024] 2. Detect the working state of each sensor 3. Detect the working state of each ozone balancer and working current.

[0025] Start working: 1. When the user presses the start key to start working, the system will keep the current voltage and current value as a reference after the parameter distribution operation of the breakdown voltage between the electrodes detected previously, so as to obtain stable air volume output and stable ozone production.

[0026] 2. The ozone balancer is also started during working, and the corresponding ozone production emits corresponding balancer current to offset the ozone.

[0027] At the same time, the through current of the ozone balancer, the high-voltage source and the high-voltage collector is detected in real time to prevent the situation of excessive ozone production or balancer failure.

[0028] 3. System shutdown, when the user presses the shutdown key, the high-voltage source and the collected high-voltage direct current will stop working, and the current of the ozone balancer will be delayed for 5 to 15 seconds to stop working, in order to offset the ozone generated by the end current at the time of shutdown.

[0029] System detectors: 1. Ozone detector, when the customer sets the ozone value in the ozone room, the ozone detector detects the ozone value at the air output end and adjusts the balancer current of the ozone balancer in real time to achieve the customer's requirement of indoor ozone amount.

[0030] 2. Micro-current sensor, the micro-current sensor detects the working current of the internal high-voltage generation circuit, and this sensor is used to detect the low-voltage end current generated by the low-voltage end to control the high-voltage current.

[0031] 3. Weak current sensor, this sensor is used to detect the real-time current of the ozone balancer, which is used to feedback to the central processor for adjusting the working current of the ozone balancer and realizing the function of ozone content control.

[0032] Error detection and control of the control system: 1. When the system detects that the current exceeds the standard, it will stop working immediately and report the corresponding error code.

[0033] 2. When the system detects that the ozone value exceeds the set value, it will immediately detect whether the current value of the ozone balancer is normal, and if it is abnormal, it will alarm and stop working.

[0034] 3. When the system detects that the through current of the high-voltage source and the high-voltage collector is too high or instantaneous, it will instantaneously reduce or close the high-voltage generation channel to reduce the arc phenomenon generated by high current discharge.

[0035] 4. When the system detects that the client presses multiple buttons at the same time, the system judges that it is an error, and the buttons do not execute any command.

[0036] 5. When the system detects that the client presses the same button quickly and frequently, the system immediately executes the shutdown command.

[0037] 6. When the system detects that the client presses multiple buttons quickly and in a short time, the system immediately executes the shutdown command.

[0038] Finally, it should be noted that the above only describes the preferred embodiments of the present application, and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art will still be able to modify the technical solutions described in the foregoing embodiments, or make equivalent replacements to some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the claims of the present application.

Claims

1. A new type of IPT ventilation purifier device characterized by: The application relates to a single-stage airflow generator, which comprises a plurality of single-stage airflow generators arranged in the draft tube at an axial interval, an air inlet and an air outlet are formed at the axial ends of the draft tube, a mounting seat is arranged at the air inlet or the air outlet, and a processor is arranged in the mounting seat; the single-stage airflow generator comprises a high-voltage source electrode and a high-voltage receiving electrode arranged at an interval along the flow direction of the airflow, and both are fixedly connected with the inner wall of the draft tube; the high-voltage source electrode comprises a plurality of source electrode rings arranged coaxially, a plurality of the source electrode rings are connected with the draft tube through a first connecting frame, the axis of each source electrode ring is coincident with the axis of the draft tube, and a plurality of pole teeth are arranged on the end of the source electrode ring facing the high-voltage receiving electrode, and the pole teeth are uniformly arranged along the circumferential direction of the source electrode ring.

2. A novel IPT ventilation purifier device as claimed in claim 1, wherein: A plurality of fixing holes are uniformly arranged on the circumferential wall of each source electrode ring along the circumferential direction, the first connecting frame comprises a plurality of first connecting strips extending along the radial direction of the source electrode ring, a plurality of the first connecting strips are uniformly arranged along the circumferential direction of the source electrode ring, one end of the first connecting strips is fixed at the center of the source electrode ring, the other end of the first connecting strips sequentially passes through the corresponding fixing holes of each source electrode ring, and the first connecting strips are fixed with the draft tube.

3. A new type of IPT ventilation purification device according to claim 1, characterized in that: The high-voltage receiving electrode comprises a plurality of receiving electrode rings arranged coaxially, a plurality of the receiving electrode rings are arranged in one-to-one correspondence with a plurality of the source electrode rings, a plurality of the receiving electrode rings are connected with the draft tube through a second connecting frame, and the axis of each receiving electrode ring is coincident with the axis of the draft tube.

4. A novel IPT ventilation and purification device as claimed in claim 3, characterized in that: The second connecting frame comprises a plurality of second connecting strips extending along the radial direction of the receiving electrode ring, a plurality of the second connecting strips are uniformly arranged along the circumferential direction of the receiving electrode ring, one end of the second connecting strips is fixed at the center of the receiving electrode ring, the other end of the second connecting strips is sequentially connected with each receiving electrode ring, and the second connecting strips are fixed with the draft tube.

5. A novel IPT ventilation purifier device as claimed in claim 1, wherein: An ozone counter-puncher is arranged at the end of the high-voltage receiving electrode away from the high-voltage source electrode, and the ozone counter-puncher is fixed on the inner circumferential wall of the draft tube.

6. A novel IPT ventilation purifier device as claimed in claim 5, characterized in that: The ozone counter-puncher comprises a plurality of ultraviolet LED lamp beads, a plurality of the ultraviolet LED lamp beads are uniformly arranged along the circumferential direction of the draft tube, and the ultraviolet LED lamp beads are electrically connected with each other.

7. A new type of IPT ventilation purification device according to claim 1, characterized by: A plurality of adjusting sleeves are arranged in the draft tube at an axial interval, and each single-stage airflow generator is arranged in the corresponding adjusting sleeve.

8. A novel IPT ventilation purifier device as claimed in claim 7, characterized in that: A plurality of limiting grooves are uniformly arranged on the outer circumferential surface of the adjusting sleeve along the circumferential direction, each limiting groove extends along the axial direction of the adjusting sleeve, draft guides are arranged at the axial ends of the adjusting sleeve, a plurality of limiting holes are arranged on the draft tube at the positions of the adjusting sleeves, a plurality of the limiting holes are arranged in one-to-one correspondence with a plurality of the limiting grooves, a fastening bolt is threadedly connected at each limiting hole, and the end of the fastening bolt is locked in the corresponding limiting groove.

Citation Information

Patent Citations

  • Multi-stage pressurizing bladeless type air propelling method and propelling device

    CN108163213A

  • Light-enhanced plasma air purification device and method

    CN108619869A

  • Integrated group of electrostatic fume purifier pinion rack electric field

    CN206746823U

  • Multifunctional dust removal device for underground plant

    CN212757847U

  • Auto ventilation fan have a airflow controller

    KR1020120119713A