WO2018014292A1 - Machine de culture physique, et système de production et de vaporisation d'oxygène associé - Google Patents

Machine de culture physique, et système de production et de vaporisation d'oxygène associé Download PDF

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Publication number
WO2018014292A1
WO2018014292A1 PCT/CN2016/090861 CN2016090861W WO2018014292A1 WO 2018014292 A1 WO2018014292 A1 WO 2018014292A1 CN 2016090861 W CN2016090861 W CN 2016090861W WO 2018014292 A1 WO2018014292 A1 WO 2018014292A1
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WO
WIPO (PCT)
Prior art keywords
oxygen
air
gas
air compressor
opening
Prior art date
Application number
PCT/CN2016/090861
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English (en)
Chinese (zh)
Inventor
张家祥
刘志刚
Original Assignee
深圳市好家庭体育用品连锁经营有限公司
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Application filed by 深圳市好家庭体育用品连锁经营有限公司 filed Critical 深圳市好家庭体育用品连锁经营有限公司
Priority to PCT/CN2016/090861 priority Critical patent/WO2018014292A1/fr
Publication of WO2018014292A1 publication Critical patent/WO2018014292A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B22/00Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements
    • A63B22/02Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B13/00Oxygen; Ozone; Oxides or hydroxides in general
    • C01B13/02Preparation of oxygen

Definitions

  • the invention relates to the technical field of fitness equipment, in particular to an fitness equipment and an oxygen atomization system thereof.
  • the embodiment of the invention provides a fitness equipment and an oxygen atomization system thereof, so as to solve the problem that the oxygen generation system in the prior art is difficult to replace and maintain, the fault is difficult to remove, the air pipe connection is not standardized, the heat dissipation effect is poor, and the atomization device is used alone.
  • Technical problems that are prone to lack of oxygen are prone to lack of oxygen.
  • an embodiment of the present invention provides an oxygen generation atomization system including an air intake device, an oxygen generation device, an atomization device, and an exhaust device;
  • the oxygen generating device, the atomizing device, and the exhaust device are sequentially connected;
  • the oxygen generating device includes an outer casing and an air compressor and an oxygen separating machine disposed inside the outer casing, and the outer casing is opposite
  • An opening is provided on the two sides, one side opening is aligned with the air compressor, and the opening is provided with a heat dissipating fan for discharging hot air in the oxygen generator casing; the other side opening is Entering a cooling gas;
  • the air intake end of the air compressor takes in air, and the air outlet end communicates with the oxygen separator, and after the air is compressed by the air compressor, the air enters an oxygen separator, and the oxygen separator passes air.
  • the oxygen in it is separated.
  • the atomizing device is one of a humidifying atomizer, an ultrasonic atomizer, a mesh atomizer or an air compression atomizer.
  • the air inlet cover on the outer casing is provided with a filter membrane.
  • the filter membrane is made of filter cotton.
  • the openings on the outer casing are respectively disposed on the bottom side surface and the top side surface, and the heat dissipation fan is disposed at an opening position of the bottom side surface and disposed at a position directly below the air compressor;
  • the port is placed directly above the air compressor.
  • the heat dissipating fan is disposed outside the opening at the bottom side of the outer casing.
  • the oxygen generating device further includes a flow regulating valve that simultaneously communicates air compressed by the air compressor and oxygen separated by the oxygen separator, The flow regulating valve is used to adjust the ratio of air to oxygen to produce gases with different oxygen concentrations.
  • the oxygen generating device further includes a gas pressure valve, a gas storage tank, and an outlet gas filter, and the gas pressure valve is connected to the oxygen separator, and the oxygen concentration is high through the adjustment of the gas pressure valve.
  • the gas passes through the gas storage tank, passes through the outlet filter, and finally communicates with the flow regulating valve; and the gas having a high nitrogen concentration is discharged as exhaust gas to the oxygen separator.
  • the exhaust device includes an exhaust line and a gas detecting and displaying device, the gas detecting and displaying device is connected in series on the exhaust line, and an outer end of the exhaust line
  • the part is a hose structure.
  • another aspect of the present invention provides a fitness equipment comprising the oxygen generation atomization system according to any one of the above embodiments.
  • the exercise equipment includes, but is not limited to, a rowing machine, an exercise bike, a walking machine, a treadmill, a beauty waist machine, a step machine, and an elliptical machine.
  • the oxygen atomization system combines the atomization device with the oxygen generation device, and the fitness person can ensure sufficient oxygen to be breathed while avoiding the treatment by the atomization of the drug. Hypoxia can also enhance the absorption of drugs to improve the treatment effect.
  • the functional units of the oxygen generating device are neatly arranged inside the casing. When the oxygen generating device fails, the replacement and maintenance of the functional unit components are easy and the troubleshooting is convenient; in addition, the air pipe connection specifications and the functional units of the oxygen generating device are in the outer casing. Under the protection, it is not easy to get dirty. By setting the heat dissipation structure, the oxygen generating device has good heat dissipation effect and the oxygen concentration is stable.
  • the fitness equipment can provide oxygen and atomization liquid for the user of the fitness equipment by setting the oxygen atomization system of the integrated structure, and assist the fitness equipment user to absorb the medicine mist to complete the fitness plan, thereby effectively preventing the fitness equipment.
  • the user's excessive movement and the hypoxia caused by inhalation of the atomized liquid solution occur, and the fitness equipment provided with the oxygen atomization system has a simple and compact structure, and the oxygen supply device is modularized to facilitate the maintenance and maintenance of the oxygen generation device.
  • FIG. 1 is a schematic view showing the overall structure of a preferred embodiment of the exercise equipment of the present invention.
  • Figure 2 is a schematic view showing the overall structure of the oxygen generating device of the embodiment of Figure 1;
  • Figure 3 is a schematic view showing the internal structure of the oxygen generating device of the embodiment of Figure 1;
  • Figure 4 is a side view of the oxygen generating device of Figure 3;
  • FIG. 5 is a partial schematic side view of the exercise equipment of the embodiment of Figure 1;
  • Figure 6 is a partial structural view of the armrest control seat and the atomizing and exhausting device in the embodiment of Figure 1.
  • the fitness equipment in the embodiment of the present invention includes but is not limited to a rowing machine, an exercise bike, a walking machine, a treadmill, In the present embodiment, only the treadmill is taken as an example, but the invention does not limit the protection of the present invention.
  • the present invention aims to protect an oxygen generating device and oxygen atomizing. The system and the fitness equipment provided with the oxygen generating device and the oxygen atomizing system.
  • the exercise equipment includes an exercise device 100 and an oxygen atomization system 200.
  • the oxygen atomization system 200 is coupled to the exercise device 100 for providing fitness equipment to the user of the exercise equipment, and the oxygen atomization system 200 is for providing oxygen to the fitness equipment user.
  • the oxygen generation and atomization system 200 includes an intake device 210, an oxygen generation device 220, an exhaust device 230, and an atomization device 240.
  • the air intake device 210, the oxygen generating device 220, the atomizing device 240, and the exhaust device 230 are sequentially connected; that is, the air path sequentially passes through the air intake device 210, the oxygen generating device 220, the atomizing device 240, and the exhaust device 230.
  • the oxygen generating device 220 is suspended from one side of the exercise device 100, that is, movably connected to the exercise device, and the air intake device 210 and the exhaust device 230 are embedded in the exercise device 100.
  • the treadmill includes a base 110 and an armrest control seat 120.
  • the base 110 and the armrest control seat 120 are fixedly connected by the column 130.
  • the oxygen generating device 220 is suspended from the side of the base 110.
  • the air intake device 210 is embedded in the interior of the exercise device 100. In this embodiment, it may be disposed in the base 110. Of course, in other embodiments, According to the specific structure of the fitness device, it is set at different positions, the same below.
  • the exhaust device 230 is embedded in the column 130 and the armrest control seat 120.
  • FIG. 2 is a schematic view showing the overall structure of the oxygen generating device in the embodiment of FIG. 1.
  • FIG. 3 is a schematic view showing the internal structure of the oxygen generating device in the embodiment of FIG. Side view of the oxygen unit.
  • the oxygen generating device 220 includes a casing 221 and an air compressor 222 and an oxygen separator 223 disposed inside the casing 221, and the oxygen generating device 220 is movably connected to the fitness device 100 through the casing 221, specifically, the oxygen generating device 220 passes through the casing 221 and The bottom of the exercise device 100 is movably connected.
  • the intake end of the air compressor 222 is in communication with the intake device 210, and the outlet end is in communication with the oxygen separator 223.
  • the oxygen separator 223 is internally made of a molecular sieve or an oxygen-rich membrane structure.
  • the molecular sieve When the molecular sieve is used inside the oxygen separator 223, the molecular sieve is fluidly connected to the integrated air compressor 222 through the air guiding tube, and the air compressor 222 absorbs the outside air and compresses it for transmission to the molecular sieve, and then filters and forms by the molecular sieve.
  • the molecular sieve adopts the working principle of pressure adsorption atmospheric pressure desorption (HP) method, and the gas with high oxygen concentration is obtained by utilizing different molecular adsorption forces in the air.
  • HP pressure adsorption atmospheric pressure desorption
  • the air compressor 222 When an oxygen-rich membrane is employed inside the oxygen separator 223, the air compressor 222 is fluidly coupled to the oxygen-rich membrane. Immediately after the air compressor 222 is started, the air in the air compressor 222 and the oxygen-rich membrane are both air. At this time, the air compressor 222 continuously compresses the air in the chamber and discharges it to the outlet end. When the air in the air compressor 222 and the oxygen-rich membrane are exhausted, the gas in the chamber forms a pressure difference as the air compressor 222 is compressed, and the constant concentration of the oxygen-rich membrane output gas passage is continuously extracted.
  • Oxygen makes the air pressure at the input end of the oxygen-rich membrane larger than the pressure of the oxygen having a certain concentration at the output end, so that the oxygen-rich membrane continuously absorbs the air and filters it to form more oxygen having a certain concentration for the air compressor 222 to extract.
  • the air compressor 222 compresses the extracted oxygen having a certain concentration and then discharges it through the exhaust device 230. It is worth noting that the above fluid connection can use an air duct.
  • the molecular sieve formed by the molecular sieve of the present invention has an oxygen concentration of 90% or more.
  • the oxygen concentration formed by the oxygen-enriched membrane is about 30%. Therefore, in the present embodiment, it is preferred to employ a molecular sieve structure as the structure of the oxygen separator.
  • the oxygen generating device further includes a flow regulating valve 224 that simultaneously communicates the air compressed by the air compressor 222 and the oxygen separated by the oxygen separator 223, and the flow regulating valve 224 is used to regulate the air and The ratio of oxygen, in turn, produces gases of different oxygen concentrations.
  • the oxygen generating device 220 further includes a gas pressure valve 225, a gas storage tank 226, and an outlet gas filter 227.
  • the gas pressure valve 225 is connected to the oxygen separator 223, and the gas having a high oxygen concentration is stored through the adjustment of the gas pressure valve 225.
  • the gas tank 226 passes through the outlet filter 227 and finally communicates with the flow regulating valve 224; and the gas having a high nitrogen concentration is exhausted as the exhaust gas to the oxygen separator 223.
  • an exhaust muffler 228 is further provided at the exhaust gas discharge port position of the oxygen separator 223.
  • FIG. 5 is a partial schematic view showing the side of the fitness equipment in the embodiment of FIG. 1.
  • the air intake device 210 includes an intake pipe 211 and an intake muffler 212.
  • the intake pipe 211 is disposed inside the casing of the exercise device 100.
  • the intake muffler 212 is disposed in the outer casing 221 of the oxygen generator 220.
  • the gas line 211 enters the intake muffler 212, and the air passing through the intake muffler 212 communicates to the intake end of the air compressor 222.
  • the air intake device 210 further includes an air intake filter silencer plug 213 disposed at an outer port of the intake duct 211 and connected to the side of the housing of the exercise device 100.
  • the intake filter silencing plug 213 can simultaneously function to filter and silence the gas entering the oxygen atomization system.
  • FIG. 6 is a schematic structural view of the armrest control seat and the atomization and exhaust device in the embodiment of FIG. 1 .
  • the exhaust device 230 includes an exhaust line 231 and gas detection and Display device 232.
  • An exhaust line (not shown in the section of the exhaust line) is disposed along the column 130 and the armrest control seat 120.
  • the atomizing device 240 is embedded in the armrest control seat 120, and the oxygen is produced via the flow regulating valve 224.
  • the high concentration gas is communicated to the atomizing device 240 through the exhaust line 231.
  • the atomizing device 240 may be a humidifying atomizer, an ultrasonic atomizer, a mesh atomizer, an air compression atomizer, or the like.
  • the atomizing device 240 contains a liquid medicine or a drug powder for treating various diseases of the upper and lower respiratory system, such as a cold, fever, cough, asthma, sore throat, pharyngitis, rhinitis, bronchitis, pneumoconiosis, and the like, trachea, bronchi, and the like.
  • Nebulized inhalation therapy is an important and effective treatment method for the treatment of respiratory diseases.
  • the nebulizer is used to atomize the liquid into tiny particles, and the drug enters the respiratory tract and lungs by breathing inhalation, thereby achieving painlessness. The purpose of rapid and effective treatment.
  • the humidifier used to humidify the air is one type of humidifying atomizer (ie, the humidifying bottle is a humidifier).
  • the ultrasonic atomizer uses electronic high frequency oscillation (oscillation frequency is 1.7MHz) Or 2.4MHz, which exceeds the human hearing range, the electronic oscillation does not harm the human body and the animal.
  • the high-frequency resonance of the ceramic atomizing sheet Through the high-frequency resonance of the ceramic atomizing sheet, the liquid water molecular structure is broken up to produce a natural and elegant water mist without heating or Add any chemical reagents. Energy savings of 90% compared to heated atomization.
  • a large amount of negative ions will be released during the atomization process, which reacts with smoke, dust and the like floating in the air to cause precipitation.
  • the principle of the net atomizer is to make the liquid of the nozzle type mesh spray head squeeze the liquid through the vibration of the vibrator, and spray it with a small ultrasonic vibration and a mesh spray head structure. It is a new type of atomizer, which combines the characteristics of a compression atomizer and an ultrasonic atomizer.
  • the spray method uses a small ultrasonic vibration and a mesh spray head structure to spray, which is aimed at children with asthma.
  • the home medical nebulizer used is easy to carry anywhere, anytime.
  • the air-compressed atomizer also called jet-type atomization, is based on the Venturi injection principle, which uses compressed air to form a high-speed airflow through a small nozzle, and the generated negative pressure drives the liquid or other fluid to be sprayed onto the barrier. Splashing around in a high-speed impact causes droplets to become misty particles ejected from the air outlet tube.
  • Small dose Plannerizer is a type of air compression atomizer (jet atomizer), which can be a manual drive structure.
  • Working principle compressed air or oxygen (driving force) passes through the fine nozzle at high speed. According to the Venturi effect, a negative pressure is generated around the nozzle to carry the liquid medicine liquid into the high-speed air stream and pulverize it into droplets of different sizes. More than 99% of the droplets are composed of large particles, and the fine mist particles remaining in the liquid storage tank are sprayed out by the intercepting collision of the nozzle at a certain speed, and the collided particles are re-atomized.
  • the spray nebulizer can be used for aerosol inhalation treatment of drugs such as bronchodilators, hormones, anti-allergic drugs and antibiotics.
  • drugs such as bronchodilators, hormones, anti-allergic drugs and antibiotics.
  • the driving gas flow rate of the jet atomizer is 6L/min-8L/min, and the liquid medicine placed in the liquid storage tank is 4ml-6ml.
  • the driving airflow can be increased, but the highest airflow. Not more than 12L/min.
  • the user can ensure that sufficient oxygen is breathed while avoiding hypoxia while the drug is atomized and absorbed, and the absorption of the drug can be enhanced to improve the treatment. effect.
  • the gas detecting and displaying device 232 is disposed on the armrest control seat 120 and connected in series with the exhaust line 231.
  • the outer end of the exhaust line 231 is a hose structure and extends out of the gas detecting and displaying device 232.
  • the gas detecting and displaying device 232 is configured to detect information such as the oxygen concentration of the gas passing through the exhaust line 231, the degree of atomization of the liquid, the gas flow rate, and the gas supply time, and display the above information for the user to understand the oxygen production.
  • the outer end portion of the exhaust pipe 231 is preferably made of a metal hose and is close to the head position when the user uses the fitness equipment state, and the user can adjust the position and orientation of the air outlet of the air outlet pipe 231 according to the use condition.
  • the air enters the oxygen atomization system 200 and finally produces a gas having a high oxygen concentration and containing the atomized liquid.
  • the process is as follows: the air is initially filtered by the air filter plug 213, and then drawn into the air compressor 222.
  • the oxygen generating device 220 after the oxygen generating device 220 is processed, the gas containing the required oxygen concentration and flow rate is released, and is connected to the atomizing device 240 through the exhaust pipe 231 provided in the column 130 through the gas pipe connection.
  • the atomizing device 240 incorporates the atomizing liquid into the gas, and then the gas detecting and displaying device 232 detects and displays information such as the oxygen concentration flowing through the gas, the degree of atomization of the liquid, the gas flow rate, and the gas supply time, etc., and finally Gas is expelled from the end of the vent line 231 for use by a user of the exercise equipment.
  • the flow of the gas in the oxygen generating device 220 is as follows: after the preliminary filtering of the air through the intake filter silencing plug 213, the air enters the intake muffler tank 212 from the pipe 1, and then enters the air compressor 222 through the air pipe 2. And then discharged from the air compressor 222, and connected to the three-way valve 555 through the air pipe 3, wherein the air pipe 3 is preferably made of a heat-dissipating material such as a copper pipe, because the temperature of the air compressed by the air compressor 222 is high, and the air pipe 3 is preferably The use of a heat-dissipating material such as a copper tube can provide a good heat dissipation effect.
  • a part of the air entering the three-way valve 555 directly enters the flow regulating valve 224 through the air pipe 4, and another part of the air enters the air separating machine 223.
  • the gas having a high oxygen concentration passes through the gas storage tank 226, and then After passing through the air outlet filter 227, finally entering the flow regulating valve 224 through the air pipe 5; and the gas having a high nitrogen concentration is discharged as exhaust gas from the air separating machine 223 (through the exhaust muffler 228 during discharge to reduce exhaust noise), that is,
  • the air directly entering from the air compressor 222 and the gas having a high oxygen concentration are obtained through the air separator 223 through the flow regulating valve 224 and controlled by the flow regulating valve 224, thereby obtaining gases of different oxygen concentrations, through the gas pipe. 6 and the exhaust line 231 is connected to the atomizing device 240.
  • the opposite sides of the oxygen generator housing 221 are provided with an opening 2211, and one opening is disposed in alignment with the air compressor 222, preferably disposed directly below the air compressor 222.
  • a heat dissipating fan 2212 is disposed on the opening, the cooling fan 2212 is configured to discharge hot air in the oxygen generator housing 221; and the other side opening is used to enter the cooling gas, and the position is preferably disposed directly above the air compressor 222.
  • the air inlet cover is provided with a filter film (not shown), and the filter film is used for dustproofing, and the material of the filter film may be a gas permeable material such as filter cotton.
  • the openings on the outer casing 221 are preferably respectively disposed on the bottom surface and the top surface of the outer casing 221.
  • the heat dissipation fan 2212 is disposed at an opening position of the bottom surface of the outer casing 221 and is disposed outside the opening of the bottom surface of the outer casing 221 . It is ensured that the air flow inside the oxygen generating device is smooth, and the cooling fan 2212 discharges the hot air, so that the air compressor 222 dissipates heat well.
  • each functional unit is neatly arranged inside the outer casing.
  • the oxygen generating device fails, the replacement and maintenance of the functional unit components are easy and the troubleshooting is convenient; in addition, the air pipe connection specification and the oxygen generating device are
  • Each functional unit is not easily dirty under the protection of the outer casing, and has good heat dissipation effect and stable oxygen concentration.
  • the base 110 of the treadmill in this embodiment includes a housing 111, a motor, a roller (not shown), and a running belt 112.
  • the motor is disposed inside the housing 111, and the roller and the housing 111 support a rolling connection, and the running belt 112 is wrapped around the outside of the drum, and the motor drives the drum to rotate, so that the running belt 112 wrapped around the outside of the drum rotates cyclically as the drum rotates.
  • the structural features of other parts of the treadmill those skilled in the art will not repeat them here.
  • the fitness equipment provided in the embodiment of the present invention is provided with an integrated structure of an oxygen atomization system, which combines the atomization device with the oxygen generation device, and the fitness person passes the drug mist. While absorbing to achieve therapeutic purposes, it is ensured that enough oxygen is breathed to avoid hypoxia, and that the absorption of the drug can be enhanced to improve the therapeutic effect.
  • the functional units of the oxygen generating device are neatly arranged inside the casing. When the oxygen generating device fails, the replacement and maintenance of the functional unit components are easy and the troubleshooting is convenient; in addition, the air pipe connection specifications and the functional units of the oxygen generating device are in the outer casing. Under the protection, it is not easy to get dirty, and the oxygen concentration is stable.
  • the fitness equipment can provide oxygen and atomization liquid for the user of the fitness equipment, and can assist the fitness equipment user to absorb the medicine mist while performing the fitness plan, thereby effectively preventing the excessive exercise of the fitness equipment user and inhaling the atomized liquid.
  • the anoxic condition occurs, and the fitness equipment with the oxygen atomization system is simple and compact, and the oxygen supply device is modularized to facilitate the maintenance and maintenance of the oxygen generation device.

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  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Cardiology (AREA)
  • Vascular Medicine (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Inorganic Chemistry (AREA)
  • Oxygen, Ozone, And Oxides In General (AREA)

Abstract

L'invention porte sur une machine de culture physique et sur un système de production et de vaporisation d'oxygène associé. Le système de production et de vaporisation d'oxygène comprend : un dispositif d'entrée d'air (210), un générateur d'oxygène (220), un vaporisateur (240) et un dispositif d'évacuation d'air (230). Le générateur d'oxygène (220) comprend : un boîtier (221). Un compresseur d'air (222) et un séparateur d'oxygène (223) sont disposés à l'intérieur du boîtier (221). Une ouverture (2211) est prévue sur deux côtés opposés du boîtier (221). L'ouverture sur un côté est alignée sur le compresseur d'air (222). L'ouverture est également pourvue d'un ventilateur de dissipation thermique (2212). Le ventilateur de dissipation thermique (2212) est utilisé pour évacuer l'air chaud de l'intérieur du boîtier (221) du générateur d'oxygène. L'ouverture de l'autre côté est utilisée pour aspirer l'air en vue du refroidissement. Une entrée d'air du compresseur d'air (222) aspire de l'air. Une sortie d'air communique avec le séparateur d'oxygène (223). L'air passe à travers le compresseur d'air (222) puis est comprimé et pénètre dans le séparateur d'oxygène (223). Le séparateur d'oxygène (223) sépare ensuite l'oxygène de l'air. Le générateur d'oxygène du système de production et de vaporisation d'oxygène présente une excellente dissipation thermique. Un utilisateur faisant de l'exercice physique peut absorber un médicament vaporisé pour obtenir un objectif thérapeutique tout en respirant suffisamment d'oxygène en même temps.
PCT/CN2016/090861 2016-07-21 2016-07-21 Machine de culture physique, et système de production et de vaporisation d'oxygène associé WO2018014292A1 (fr)

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PCT/CN2016/090861 WO2018014292A1 (fr) 2016-07-21 2016-07-21 Machine de culture physique, et système de production et de vaporisation d'oxygène associé

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Cited By (4)

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Publication number Priority date Publication date Assignee Title
CN110304607A (zh) * 2019-08-02 2019-10-08 哈尔滨理工大学 一种新型高分子富氧膜式便携制氧机
CN113178597A (zh) * 2021-04-20 2021-07-27 内蒙古民族大学 一种以氢能源作为驱动的燃料电池及其固定结构
CN113526468A (zh) * 2021-08-10 2021-10-22 江苏苏沪智能科技有限责任公司 一种便携式噪音小的制氧机
CN113952698A (zh) * 2021-11-23 2022-01-21 孙迎杰 一种康复医学科用平板运动装置

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