WO2017067184A1 - Fitness equipment, oxygen producing system and oxygen producing running machine - Google Patents

Fitness equipment, oxygen producing system and oxygen producing running machine Download PDF

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Publication number
WO2017067184A1
WO2017067184A1 PCT/CN2016/085235 CN2016085235W WO2017067184A1 WO 2017067184 A1 WO2017067184 A1 WO 2017067184A1 CN 2016085235 W CN2016085235 W CN 2016085235W WO 2017067184 A1 WO2017067184 A1 WO 2017067184A1
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WO
WIPO (PCT)
Prior art keywords
oxygen
air
disposed
frame
treadmill
Prior art date
Application number
PCT/CN2016/085235
Other languages
French (fr)
Chinese (zh)
Inventor
张家祥
张佳兴
卢利伟
刘志刚
Original Assignee
深圳市好家庭实业有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by 深圳市好家庭实业有限公司 filed Critical 深圳市好家庭实业有限公司
Publication of WO2017067184A1 publication Critical patent/WO2017067184A1/en

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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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/02Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography
    • B01D53/04Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography with stationary adsorbents
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/22Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by diffusion
    • 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 field of fitness equipment, in particular to an fitness equipment, an oxygen system and an oxygen treadmill.
  • the invention provides a fitness equipment, an oxygen-making system and an oxygen-making treadmill, which mainly solves the problem that the existing fitness equipment cannot supply oxygen in time, and the exercise has to be terminated, which not only makes the user unable to satisfy the running training purpose. In severe cases, it may cause physical discomfort due to lack of oxygen.
  • an oxygen treadmill including a base for providing a power source, a rear seat laterally connected to the base for exercising by a fitness person, and a longitudinal direction of the base.
  • a coupled armrest control seat the base comprising an activation assembly, an air compression assembly, and an oxygen generation assembly, the activation assembly generating a start signal;
  • the air compression assembly including an integral air compressor for receiving the activation signal to air or having a concentration The oxygen is compressed;
  • the oxygen generating component is configured to suck and filter the air to form the oxygen having a certain concentration; and the oxygen having a certain concentration is drained to the armrest control seat through the air guiding tube for fitness breathing.
  • the base further includes a bottom plate, a front bottom frame, a left bracket and a right bracket.
  • the starting assembly, the air compression assembly and the oxygen generating assembly are respectively disposed on the bottom plate;
  • the front bottom frame is disposed on the outer edge of the bottom plate;
  • the bracket and the right bracket are respectively disposed on two sides of the front bottom frame.
  • the armrest control seat includes a panel frame, an operation panel and an armrest, and is disposed between the left bracket and the right bracket.
  • the operation panel is disposed on the panel bracket to facilitate the fitness person to control the oxygen treadmill; the armrest is disposed on the Both sides of the panel frame.
  • the base further includes an oxygen outlet tube disposed in the right bracket and/or the left bracket and extending toward the panel bracket to deliver the oxygen having a certain concentration to the fitness person.
  • the oxygen-spray end of the oxygen outlet tube is extended by the operation panel and is lifted upward.
  • the oxygen-spraying end of the oxygen outlet tube forms an angle of 45°-70° with the horizontal plane.
  • the oxygen generating component is a molecular sieve fluidly connected to the oxygen outlet pipe, the integrated air compressor sucks air and compresses it for transmission to the molecular sieve for filtration and forms a certain concentration of oxygen.
  • the oxygen generating component is an oxygen-rich membrane
  • the integrated air compressor fluidly connected to the oxygen outlet pipe absorbs the oxygen having a certain concentration in the oxygen-rich membrane and compresses, so that the oxygen-rich membrane is continuously sucked
  • the air is filtered and formed to have a certain concentration of oxygen.
  • the base further comprises a fixing post provided on the bottom plate to match the lug of the integrated air compressor.
  • the base further includes a support assembly disposed on the bottom plate, the support assembly includes a support frame, a fixing frame and a telescopic rod, and the support frame is disposed outside the bottom plate, and the support frame is provided with two front rollers contacting the horizontal surface;
  • the fixing frame is fixed in the bottom plate;
  • the telescopic rod is fixed on the fixing frame and connected to the supporting frame, so that the supporting frame can be raised or lowered.
  • the support assembly further includes a reinforcing frame and a reinforcing rod disposed in the bottom plate and abutting the fixing frame to support the fixing frame; the reinforcing rod is disposed on the left bracket and passes through the fixing frame to Connect the right bracket.
  • the rear seat comprises a rear bottom frame, a running board, a front drum, a rear drum and a running belt
  • the rear bottom frame is connected with the front bottom frame, and two rear supports are arranged in contact with the horizontal plane
  • the running board is arranged in the front a bottom frame
  • the front roller and the rear roller are respectively rotatably disposed at both ends of the running board
  • the running belt wraps the front roller, the running plate and the rear roller, and rotates with the front roller and the rear roller Cycle rotation.
  • an oxygen generation system for a fitness equipment comprising:
  • An air compression assembly comprising an integrated air compressor for receiving the activation signal to compress air or a certain concentration of oxygen;
  • An oxygen generating assembly for drawing and filtering the air to form the oxygen having a certain concentration
  • the oxygen having a certain concentration is drained through the airway for the bodybuilder to breathe.
  • the oxygen generating component is a molecular sieve fluidly connected to the oxygen outlet pipe, the integrated air compressor sucks the air and compresses it for transmission to the molecular sieve for filtration and forms a certain concentration of oxygen.
  • the concentration of oxygen formed by the molecular sieve after filtering the air is greater than 90%.
  • the oxygen generating component is an oxygen-rich membrane
  • the integrated air compressor fluidly connected to the oxygen outlet pipe draws the oxygen having a certain concentration in the oxygen-rich membrane and compresses it to make The oxygen-rich membrane continuously draws the air and filters to form the oxygen having a certain concentration.
  • the oxygen-enriched membrane forms an oxygen concentration of 30% after filtering the air.
  • the present invention also provides an exercise device comprising an exercise device and the oxygen generation system of any of the above embodiments.
  • the fitness device includes, but is not limited to, a rowing machine, an exercise bike, a walking machine, a health rider, a treadmill, a beauty waist machine, a step machine, and an elliptical machine.
  • the beneficial effects of the present invention are: different from the prior art, the fitness equipment, the oxygen treadmill and the oxygen system thereof provided by the invention have changed the needs of the traditional oxygen treadmill due to the integrated air compressor.
  • the motor drives the vacuum pump through the belt to perform a complex and easily damaged structure of air compression.
  • the fitness device of the present invention has a simple and compact structure, is convenient to use, and has sufficient oxygen supply, thereby greatly improving the user experience.
  • Figure 1 is a perspective view showing a part of the structure of the oxygen treadmill of the present invention
  • Figure 2 is a perspective view showing the position setting of an embodiment of the oxygen generating assembly of the oxygen treadmill of Figure 1;
  • Figure 3 is a perspective view showing the positional setting of another embodiment of the oxygen generating assembly of the oxygen treadmill of Figure 1.
  • the fitness equipment of the present invention may be a rowing machine, an exercise bicycle, a walking machine, a treadmill, a beauty waist machine, a health riding machine, a step machine, an elliptical machine and the like provided with an oxygen system, and the like.
  • the treadmill Take the treadmill as an example for explanation.
  • this does not limit the protection of the present invention, and the present invention is directed to protecting an oxygen generation system and an exercise device provided with the oxygen generation system.
  • FIG. 1 is a perspective view showing a part of the structure of the oxygen treadmill of the present invention.
  • the oxygen treadmill 1 provided by the present invention includes a base 10, a rear seat 20, and an armrest control seat 30.
  • the base 10 provides a power source for the movement of the oxygen treadmill 1, and the rear seat 20 is laterally coupled to the base 10 for movement by the exerciser thereon, and the armrest control seat 30 is longitudinally coupled to the base 10.
  • the base 10 includes an activation assembly 11, an air compression assembly, and an oxygen generation assembly 12, the activation assembly 11 generates a start signal, and the activation assembly 11 can be an upper control panel.
  • the air compression assembly includes an integrated air compressor 13 for receiving an activation signal to compress air or a concentration of oxygen, and the integrated air compressor 13 of the present invention may be an oil-free air compressor.
  • Oxygen assembly 12 is used to draw and filter air to form a concentration of oxygen. The oxygen having a certain concentration of the present invention is drained through the air duct to the armrest control seat 30 for fitness breathing.
  • the base 10 of the present invention further includes a bottom plate 14, a front bottom frame 15, a left bracket 16 and a right bracket 17, and the starting assembly 11, the air compressing assembly and the oxygen generating assembly 12 are respectively spaced apart from the bottom plate 14.
  • the front bottom frame 15 is disposed around the outer edge of the bottom plate 14.
  • the left bracket 16 and the right bracket 17 are respectively disposed on both sides of the front bottom frame 15.
  • the armrest control seat 30 includes a panel frame 31, an operation panel 32, and an armrest 33.
  • the panel frame 31 is disposed between the left bracket 16 and the right bracket 17.
  • the operation panel 32 is disposed on the panel frame 31 to facilitate the exerciser to control the oxygen treadmill 1.
  • the armrests 33 are provided on both sides of the panel frame 31.
  • the armrest 33 is parallel to the rear seat 20, and the panel frame 31 forms a certain inclination angle with the armrest 33.
  • the inclination angle may be 30° or 45°, so that the operation panel 32 mounted on the panel frame 31 is also formed with the armrest 33. The angle of inclination allows the bodybuilder to view and operate the operation panel 32.
  • the base 10 of the present invention further includes an oxygen outlet pipe 18 disposed in the right bracket 17 or the left bracket 16 and extending toward the panel frame 31 to deliver a certain concentration of oxygen to the exerciser, of course,
  • An oxygen tube 18 is disposed on both the right bracket 17 and the left bracket 16 and is directed toward the panel frame 31 to deliver a large area of oxygen having a certain concentration to the exerciser.
  • the oxygen-spray end of the oxygen outlet pipe 18 is extended by the operation panel 32 and slightly tilted upward, that is, the oxygen-spray end of the oxygen outlet pipe 18 forms an angle of 45°-70° with the horizontal plane to spray toward the nose of the fitness person. A certain concentration of oxygen is produced.
  • FIG. 2 is a perspective view showing a position setting of an oxygen generating assembly of the oxygen treadmill of FIG. 1
  • FIG. 3 is another embodiment of the oxygen generating assembly of the oxygen treadmill of FIG. The position is set to a perspective view.
  • the oxygen generating assembly 12 of the present invention may be a molecular sieve 121 or an oxygen-rich membrane 122.
  • the oxygen generating assembly 12 is a molecular sieve 121
  • one end of the molecular sieve 121 is fluidly connected to the oxygen outlet tube 18, and the other end is guided to the integrated air compressor 13
  • the trachea is fluidly connected, and the integrated air compressor 13 draws outside air and compresses it for transmission to the molecular sieve 121, and then filters it by the molecular sieve 121 to form a certain concentration of oxygen.
  • the molecular sieve 121 is delivered to the bodybuilder through the oxygen outlet tube 18. Breathe.
  • the integral air compression end is fluidly coupled to the oxygen outlet tube 18 and the other end is fluidly coupled to the oxygen-rich membrane 122.
  • the gas in the integrated air compressor 13 and the oxygen-rich membrane 122 is air, and at this time, the integrated air compressor 13 continuously compresses the air in the chamber to the oxygen outlet tube 18 discharge.
  • the gas in the chamber forms a pressure difference as the integrated air compressor 13 is compressed, and the oxygen-rich membrane 122 is continuously extracted from the gas passage.
  • the oxygen having a certain concentration causes the air pressure at the input end of the oxygen-rich membrane 122 to be greater than the pressure of the oxygen having a certain concentration at the output end, so that the oxygen-rich membrane 122 continuously absorbs the air and filters it to form a more concentrated concentration.
  • Oxygen is extracted for the integrated air compressor 13, and the integrated air compressor 13 compresses the extracted oxygen having a certain concentration and delivers it to the oxygen outlet tube 18 for the bodybuilder to breathe. It is worth noting that the above fluid connection can use an air duct.
  • the concentration of oxygen having a certain concentration formed by the molecular sieve 121 of the present invention after filtering the air is 90% or more.
  • the concentration of oxygen having a certain concentration formed by the oxygen-enriched membrane 122 after filtering the air is about 30%.
  • the base 10 further includes a fixed post 41, an engine 42, and a support assembly 43.
  • the fixed post 41 is mated with the lug of the integrated air compressor 13 to fix the integrated air compressor 13.
  • the engine 42 is used to provide a power source for the movement of the rear seat 20.
  • the support assembly 43 is disposed on the bottom plate 14 to telescopically support the base 10.
  • the support assembly 43 includes a support frame 431, a fixing frame 432, and a telescopic rod 433.
  • the support frame 431 is disposed outside the bottom plate 14.
  • the support frame 431 is provided with two front surfaces in contact with the horizontal surface.
  • the support frame 432 is disposed in the bottom plate 14.
  • the end of the telescopic rod 433 is fixed to the fixed frame 432, and the other end is telescopically coupled to the support frame 431 so that the support frame 431 can be raised or lowered.
  • the support assembly 43 further includes a reinforcing frame 434 and a reinforcing rod (not shown) for improving the stability of the fixing frame 432.
  • the reinforcing frame 434 is disposed in the bottom plate 14 and abuts against the fixing frame 432 to support the fixing frame 432.
  • the reinforcing rod is disposed on the left bracket 16 and passes through the fixing frame 432 to be connected with the right bracket 17.
  • the rear seat 20 of the present invention includes a rear bottom frame 21, a running board (not shown), a front drum 22, a rear drum (not shown), and a running belt 24, and the rear bottom frame 21 is connected to the front bottom frame 15, and is provided with Two rear supports 25 are in contact with the horizontal surface, and the rear support 25 is disposed corresponding to the front rollers to stably support the oxygen treadmill 1.
  • the running board is disposed in the front bottom frame 15.
  • the front drum 22 and the rear drum are respectively rotatably provided at both ends of the running board.
  • the engine 42 is coupled to the front drum 22 to rotate the front drum 22.
  • the running belt 24 wraps the front drum 22, the running board, and the rear drum, and circulates in rotation as the front drum 22 and the rear drum rotate.
  • the oxygen-making treadmill 1 of the present invention is provided with an integrated air compressor 13, which changes the complicated and easily damaged structure of the conventional treadmill that requires the motor to drive the vacuum pump through the belt to perform air compression.
  • the oxygen-making treadmill 1 of the present invention has a simple structure. It is compact and easy to use, which reduces the size of the equipment, reduces the material cost, and provides sufficient oxygen supply, which greatly enhances the user experience.

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  • Chemical & Material Sciences (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Analytical Chemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Inorganic Chemistry (AREA)
  • Cardiology (AREA)
  • Vascular Medicine (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)
  • Rehabilitation Tools (AREA)

Abstract

An oxygen producing running machine (1) comprises a base (10) configured to provide a power source, a rear base (20) horizontally connected to the base (10) for an exercise enthusiast to exercise, and a handrail control (30) vertically connected to the base (10). The base (10) comprises an activation component (11), an air compression component and an oxygen producing component (12). The activation component (11) is configured to generate an activation signal. The compression component comprises an integrated air compressor (13), and configured to receive the activation signal to compress air or an oxygen gas having a fixed concentration. The oxygen producing component (12) is configured to draw and filter the air to produce the oxygen gas having the fixed concentration. Also provided are an oxygen producing system and a fitness equipment containing the same.

Description

健身设备、制氧系统以及制氧跑步机 Fitness equipment, oxygen system and oxygen treadmill
【技术领域】[Technical Field]
本发明涉及健身器材领域,特别是涉及一种健身设备、制氧系统以及制氧跑步机。The invention relates to the field of fitness equipment, in particular to an fitness equipment, an oxygen system and an oxygen treadmill.
【背景技术】 【Background technique】
随着人们生活水平的提高,对健康的关注也变得越来越多。部分人们选择了跑步运动,由于户外运动受天气影响,越来越多人们选择室内的跑步机来进行跑步。而人们在使用跑步机时,对于一些年龄较大或运动量较大的使用者,容易会因运动缺氧而引发头晕目眩,由于现有的跑步机无供氧系统,使用者不能及时吸氧,导致运动不得不终止,此弊端不仅无法满足使用者跑步训练的目的,情况严重的还会因缺氧而导致身体不适。As people's living standards improve, so does the concern for health. Some people choose running, and because outdoor sports are affected by the weather, more and more people choose indoor treadmills to run. When people use treadmills, for some older or more mobile users, it is easy to cause dizziness due to lack of oxygen in exercise. Because the existing treadmill has no oxygen supply system, users can not take oxygen in time. As a result, the movement has to be terminated. This drawback can not only meet the purpose of the user's running training, but also seriously lead to physical discomfort due to lack of oxygen.
【发明内容】 [Summary of the Invention]
本发明提供一种健身设备、制氧系统以及制氧跑步机,主要解决现有技术中由于现有的健身设备不能及时供氧,导致运动不得不终止,不但使使用者无法满足跑步训练的目的,情况严重的还会因缺氧而导致身体不适。The invention provides a fitness equipment, an oxygen-making system and an oxygen-making treadmill, which mainly solves the problem that the existing fitness equipment cannot supply oxygen in time, and the exercise has to be terminated, which not only makes the user unable to satisfy the running training purpose. In severe cases, it may cause physical discomfort due to lack of oxygen.
为解决上述技术问题,本发明采用的一个技术方案是:提供一种制氧跑步机,其包括提供动力源的底座、与该底座横向连接以供健身者进行运动的后座以及与所底座纵向连接的扶手控制座,该底座包括启动组件、空气压缩组件以及制氧组件,启动组件产生启动信号;空气压缩组件包括一体式空气压缩机,用于接收该启动信号以对空气或具有一定浓度的氧气进行压缩;制氧组件用于吸取并过滤空气以形成该具有一定浓度的氧气;该具有一定浓度的氧气经导气管引流至该扶手控制座以供健身呼吸。In order to solve the above technical problem, the present invention adopts a technical solution to provide an oxygen treadmill including a base for providing a power source, a rear seat laterally connected to the base for exercising by a fitness person, and a longitudinal direction of the base. a coupled armrest control seat, the base comprising an activation assembly, an air compression assembly, and an oxygen generation assembly, the activation assembly generating a start signal; the air compression assembly including an integral air compressor for receiving the activation signal to air or having a concentration The oxygen is compressed; the oxygen generating component is configured to suck and filter the air to form the oxygen having a certain concentration; and the oxygen having a certain concentration is drained to the armrest control seat through the air guiding tube for fitness breathing.
其中,该底座还包括底板、前底框、左支架以及右支架,该启动组件、空气压缩组件以及该制氧组件分别间隔设于该底板上;前底框设于该底板的外沿;左支架、右支架分别设于该前底框的两侧。The base further includes a bottom plate, a front bottom frame, a left bracket and a right bracket. The starting assembly, the air compression assembly and the oxygen generating assembly are respectively disposed on the bottom plate; the front bottom frame is disposed on the outer edge of the bottom plate; The bracket and the right bracket are respectively disposed on two sides of the front bottom frame.
其中,该扶手控制座包括面板架、操作面板以及扶手,架设于该左支架与该右支架之间;操作面板设于该面板架上以方便健身者控制该制氧跑步机;扶手设于该面板架两侧。The armrest control seat includes a panel frame, an operation panel and an armrest, and is disposed between the left bracket and the right bracket. The operation panel is disposed on the panel bracket to facilitate the fitness person to control the oxygen treadmill; the armrest is disposed on the Both sides of the panel frame.
其中,该底座还包括出氧管,该出氧管设于该右支架和/或该左支架中,并向该面板架延伸以向该健身者输送该具有一定浓度的氧气。The base further includes an oxygen outlet tube disposed in the right bracket and/or the left bracket and extending toward the panel bracket to deliver the oxygen having a certain concentration to the fitness person.
其中,所述出氧管的喷氧端由操作面板伸出,并向上翘起。Wherein, the oxygen-spray end of the oxygen outlet tube is extended by the operation panel and is lifted upward.
其中,所述出氧管的喷氧端与水平面形成45°-70°的夹角。Wherein, the oxygen-spraying end of the oxygen outlet tube forms an angle of 45°-70° with the horizontal plane.
其中,该制氧组件为与该出氧管流体连接的分子筛,该一体式空气压缩机吸取空气并进行压缩,以传输至该分子筛进行过滤并形成具有一定浓度的氧气。Wherein, the oxygen generating component is a molecular sieve fluidly connected to the oxygen outlet pipe, the integrated air compressor sucks air and compresses it for transmission to the molecular sieve for filtration and forms a certain concentration of oxygen.
其中,该制氧组件为富氧膜,与该出氧管流体连接的该一体式空气压缩机吸取该富氧膜中的该具有一定浓度的氧气并进行压缩,以使该富氧膜不断吸取空气并过滤以形成该具有一定浓度的氧气。Wherein, the oxygen generating component is an oxygen-rich membrane, and the integrated air compressor fluidly connected to the oxygen outlet pipe absorbs the oxygen having a certain concentration in the oxygen-rich membrane and compresses, so that the oxygen-rich membrane is continuously sucked The air is filtered and formed to have a certain concentration of oxygen.
其中,该底座还包括设于该底板上的固定柱,与该一体式空气压缩机的突耳匹配。Wherein, the base further comprises a fixing post provided on the bottom plate to match the lug of the integrated air compressor.
其中,该底座还包括设于该底板上的支撑组件,该支撑组件包括支撑架、固定架以及伸缩杆,支撑架设于该底板外,该支撑架上设有两个与水平面接触的前滚轮;固定架设于该底板内;伸缩杆固定于该固定架上并与该支撑架连接,以使该支撑架可上升或下降运动。The base further includes a support assembly disposed on the bottom plate, the support assembly includes a support frame, a fixing frame and a telescopic rod, and the support frame is disposed outside the bottom plate, and the support frame is provided with two front rollers contacting the horizontal surface; The fixing frame is fixed in the bottom plate; the telescopic rod is fixed on the fixing frame and connected to the supporting frame, so that the supporting frame can be raised or lowered.
其中,该支撑组件还包括加强框和加强杆,加强框设于该底板内并抵靠该固定架以支撑该固定架;加强杆穿设于该左支架上并穿过该固定架以与该右支架连接。The support assembly further includes a reinforcing frame and a reinforcing rod disposed in the bottom plate and abutting the fixing frame to support the fixing frame; the reinforcing rod is disposed on the left bracket and passes through the fixing frame to Connect the right bracket.
其中,该后座包括后底框、跑步板、前滚筒、后滚筒以及跑步带,后底框与该前底框连接,并设有两个与水平面接触的后支撑;跑步板设于该前底框中;前滚筒、后滚筒分别转动地设于该跑步板的两端;跑步带裹覆该前滚筒、该跑步板以及该后滚筒,并随着该前滚筒和该后滚筒的转动而循环转动。Wherein, the rear seat comprises a rear bottom frame, a running board, a front drum, a rear drum and a running belt, the rear bottom frame is connected with the front bottom frame, and two rear supports are arranged in contact with the horizontal plane; the running board is arranged in the front a bottom frame; the front roller and the rear roller are respectively rotatably disposed at both ends of the running board; the running belt wraps the front roller, the running plate and the rear roller, and rotates with the front roller and the rear roller Cycle rotation.
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种用于健身设备的制氧系统,所述制氧系统包括:In order to solve the above technical problem, another technical solution adopted by the present invention is to provide an oxygen generation system for a fitness equipment, the oxygen generation system comprising:
启动组件,用于产生启动信号;a startup component for generating a startup signal;
空气压缩组件,包括一体式空气压缩机,用于接收所述启动信号以对空气或具有一定浓度的氧气进行压缩;An air compression assembly comprising an integrated air compressor for receiving the activation signal to compress air or a certain concentration of oxygen;
制氧组件,用于吸取并过滤所述空气以形成所述具有一定浓度的氧气;An oxygen generating assembly for drawing and filtering the air to form the oxygen having a certain concentration;
所述具有一定浓度的氧气经导气管引流出以供健身者呼吸。The oxygen having a certain concentration is drained through the airway for the bodybuilder to breathe.
其中,所述制氧组件为与所述出氧管流体连接的分子筛,所述一体式空气压缩机吸取所述空气并进行压缩,以传输至所述分子筛进行过滤并形成具有一定浓度的氧气。Wherein the oxygen generating component is a molecular sieve fluidly connected to the oxygen outlet pipe, the integrated air compressor sucks the air and compresses it for transmission to the molecular sieve for filtration and forms a certain concentration of oxygen.
其中,所述分子筛所过滤空气后所形成的氧气浓度大于90%。Wherein, the concentration of oxygen formed by the molecular sieve after filtering the air is greater than 90%.
其中,所述制氧组件为富氧膜,与所述出氧管流体连接的所述一体式空气压缩机吸取所述富氧膜中的所述具有一定浓度的氧气并进行压缩,以使所述富氧膜不断吸取所述空气并过滤以形成所述具有一定浓度的氧气。Wherein the oxygen generating component is an oxygen-rich membrane, and the integrated air compressor fluidly connected to the oxygen outlet pipe draws the oxygen having a certain concentration in the oxygen-rich membrane and compresses it to make The oxygen-rich membrane continuously draws the air and filters to form the oxygen having a certain concentration.
其中,所述富氧膜所过滤空气后所形成的氧气浓度为30%。Wherein, the oxygen-enriched membrane forms an oxygen concentration of 30% after filtering the air.
另外,本发明还提供一种健身设备,所述健身设备包括健身装置以及上述实施例中任一项所述的制氧系统。In addition, the present invention also provides an exercise device comprising an exercise device and the oxygen generation system of any of the above embodiments.
其中,所述健身装置包括但不限于划船器、健身车、健步机、健骑机、跑步机、美腰机、台阶机以及椭圆机。The fitness device includes, but is not limited to, a rowing machine, an exercise bike, a walking machine, a health rider, a treadmill, a beauty waist machine, a step machine, and an elliptical machine.
本发明的有益效果是:区别于现有技术的情况,本发明提供的的健身设备、制氧跑步机及其制氧系统,由于设有一体式空气压缩机,改变了传统制氧跑步机需要马达通过皮带带动真空泵进行空气压缩的复杂且容易损坏的结构,本发明的健身设备结构简单且紧凑,使用方便,供氧充足,极大地提升了用户体验。The beneficial effects of the present invention are: different from the prior art, the fitness equipment, the oxygen treadmill and the oxygen system thereof provided by the invention have changed the needs of the traditional oxygen treadmill due to the integrated air compressor. The motor drives the vacuum pump through the belt to perform a complex and easily damaged structure of air compression. The fitness device of the present invention has a simple and compact structure, is convenient to use, and has sufficient oxygen supply, thereby greatly improving the user experience.
【附图说明】 [Description of the Drawings]
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图,其中:In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below. It is obvious that the drawings in the following description are only some embodiments of the present invention. For those skilled in the art, other drawings may be obtained according to these drawings without any creative work, wherein:
图1是本发明制氧跑步机的部分结构立体图;Figure 1 is a perspective view showing a part of the structure of the oxygen treadmill of the present invention;
图2是图1中制氧跑步机的制氧组件一实施例的位置设置立体图;Figure 2 is a perspective view showing the position setting of an embodiment of the oxygen generating assembly of the oxygen treadmill of Figure 1;
图3是图1中制氧跑步机的制氧组件另一实施例的位置设置立体图。Figure 3 is a perspective view showing the positional setting of another embodiment of the oxygen generating assembly of the oxygen treadmill of Figure 1.
【具体实施方式】【detailed description】
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,均属于本发明保护的范围。The technical solutions in the embodiments of the present invention are clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present invention. It is obvious that the described embodiments are only a part of the embodiments of the present invention, but not all embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts are within the scope of the present invention.
需要说明的是,本发明的健身设备可以为设有制氧系统的划船器、健身车、健步机、跑步机、美腰机、健骑机、台阶机以及椭圆机等等,本实施例仅以跑步机为例进行说明。但这并不限定本发明的保护主旨,本发明旨在保护一种制氧系统以及设置有该制氧系统的健身设备。It should be noted that the fitness equipment of the present invention may be a rowing machine, an exercise bicycle, a walking machine, a treadmill, a beauty waist machine, a health riding machine, a step machine, an elliptical machine and the like provided with an oxygen system, and the like. Take the treadmill as an example for explanation. However, this does not limit the protection of the present invention, and the present invention is directed to protecting an oxygen generation system and an exercise device provided with the oxygen generation system.
请参阅图1,图1是本发明制氧跑步机的部分结构立体图。本发明提供的制氧跑步机1包括底座10、后座20以及扶手控制座30。Please refer to FIG. 1. FIG. 1 is a perspective view showing a part of the structure of the oxygen treadmill of the present invention. The oxygen treadmill 1 provided by the present invention includes a base 10, a rear seat 20, and an armrest control seat 30.
底座10为制氧跑步机1的运动提供动力源,后座20与底座10横向连接以供健身者在其上方进行运动,扶手控制座30与所底座10纵向连接。The base 10 provides a power source for the movement of the oxygen treadmill 1, and the rear seat 20 is laterally coupled to the base 10 for movement by the exerciser thereon, and the armrest control seat 30 is longitudinally coupled to the base 10.
底座10包括启动组件11、空气压缩组件以及制氧组件12,启动组件11产生启动信号,启动组件11可以为上控板。空气压缩组件包括一体式空气压缩机13,其用于接收启动信号以对空气或具有一定浓度的氧气进行压缩,本发明的一体式空气压缩机13可以为无油空气压缩机。制氧组件12用于吸取并过滤空气以形成具有一定浓度的氧气。本发明的具有一定浓度的氧气经导气管引流至扶手控制座30以供健身呼吸。The base 10 includes an activation assembly 11, an air compression assembly, and an oxygen generation assembly 12, the activation assembly 11 generates a start signal, and the activation assembly 11 can be an upper control panel. The air compression assembly includes an integrated air compressor 13 for receiving an activation signal to compress air or a concentration of oxygen, and the integrated air compressor 13 of the present invention may be an oil-free air compressor. Oxygen assembly 12 is used to draw and filter air to form a concentration of oxygen. The oxygen having a certain concentration of the present invention is drained through the air duct to the armrest control seat 30 for fitness breathing.
本发明的底座10还包括底板14、前底框15、左支架16以及右支架17,启动组件11、空气压缩组件以及制氧组件12分别间隔设于底板14上。前底框15围设于底板14的外沿。左支架16、右支架17分别设于前底框15的两侧。The base 10 of the present invention further includes a bottom plate 14, a front bottom frame 15, a left bracket 16 and a right bracket 17, and the starting assembly 11, the air compressing assembly and the oxygen generating assembly 12 are respectively spaced apart from the bottom plate 14. The front bottom frame 15 is disposed around the outer edge of the bottom plate 14. The left bracket 16 and the right bracket 17 are respectively disposed on both sides of the front bottom frame 15.
扶手控制座30包括面板架31、操作面板32以及扶手33,面板架31架设于左支架16与右支架17之间。操作面板32设于面板架31上以方便健身者控制制氧跑步机1。扶手33设于面板架31两侧。扶手33与后座20平行,面板架31与扶手33形成一定的倾斜角度,该倾斜角度可以为30°或45°,以使安装于面板架31上的操作面板32同样与扶手33形成一定的倾斜角度,方便健身者观看与操作操作面板32。The armrest control seat 30 includes a panel frame 31, an operation panel 32, and an armrest 33. The panel frame 31 is disposed between the left bracket 16 and the right bracket 17. The operation panel 32 is disposed on the panel frame 31 to facilitate the exerciser to control the oxygen treadmill 1. The armrests 33 are provided on both sides of the panel frame 31. The armrest 33 is parallel to the rear seat 20, and the panel frame 31 forms a certain inclination angle with the armrest 33. The inclination angle may be 30° or 45°, so that the operation panel 32 mounted on the panel frame 31 is also formed with the armrest 33. The angle of inclination allows the bodybuilder to view and operate the operation panel 32.
进一步地,本发明的底座10还包括出氧管18,出氧管18设于右支架17或左支架16中,并向面板架31延伸以向健身者输送具有一定浓度的氧气,当然也可以在右支架17和左支架16都设置出氧管18并向面板架31以便向健身者输送大面积的具有一定浓度的氧气。出氧管18的喷氧端由操作面板32伸出,并微微向上翘起,即出氧管18的喷氧端与水平面形成45°-70°的夹角,以向健身者的鼻子方向喷出具有一定浓度的氧气。Further, the base 10 of the present invention further includes an oxygen outlet pipe 18 disposed in the right bracket 17 or the left bracket 16 and extending toward the panel frame 31 to deliver a certain concentration of oxygen to the exerciser, of course, An oxygen tube 18 is disposed on both the right bracket 17 and the left bracket 16 and is directed toward the panel frame 31 to deliver a large area of oxygen having a certain concentration to the exerciser. The oxygen-spray end of the oxygen outlet pipe 18 is extended by the operation panel 32 and slightly tilted upward, that is, the oxygen-spray end of the oxygen outlet pipe 18 forms an angle of 45°-70° with the horizontal plane to spray toward the nose of the fitness person. A certain concentration of oxygen is produced.
请一并参阅图2和图3,图2是图1中制氧跑步机的制氧组件一实施例的位置设置立体图,图3是图1中制氧跑步机的制氧组件另一实施例的位置设置立体图。2 and FIG. 3, FIG. 2 is a perspective view showing a position setting of an oxygen generating assembly of the oxygen treadmill of FIG. 1, and FIG. 3 is another embodiment of the oxygen generating assembly of the oxygen treadmill of FIG. The position is set to a perspective view.
本发明的制氧组件12可以为分子筛121或富氧膜122,当制氧组件12为分子筛121时,该分子筛121一端与出氧管18流体连接,另一端与一体式空气压缩机13通过导气管流体连接,一体式空气压缩机13吸取外界的空气并进行压缩,以传输至分子筛121,再由分子筛121进行过滤并形成具有一定浓度的氧气,最后分子筛121通过出氧管18输送给健身者呼吸。The oxygen generating assembly 12 of the present invention may be a molecular sieve 121 or an oxygen-rich membrane 122. When the oxygen generating assembly 12 is a molecular sieve 121, one end of the molecular sieve 121 is fluidly connected to the oxygen outlet tube 18, and the other end is guided to the integrated air compressor 13 The trachea is fluidly connected, and the integrated air compressor 13 draws outside air and compresses it for transmission to the molecular sieve 121, and then filters it by the molecular sieve 121 to form a certain concentration of oxygen. Finally, the molecular sieve 121 is delivered to the bodybuilder through the oxygen outlet tube 18. Breathe.
当制氧组件12为富氧膜122时,一体式空气压缩一端与出氧管18流体连接,另一端与富氧膜122流体连接。启动时,刚开始的时候,一体式空气压缩机13与富氧膜122中的气体为空气,此时一体式空气压缩机13不停地对其腔内的空气进行压缩并往出氧管18排出。当一体式空气压缩机13与富氧膜122中的空气排完后,随着一体式空气压缩机13的压缩,其腔内的气体形成压力差,进而不断地抽取富氧膜122输出气路中的具有一定浓度的氧气,使得富氧膜122输入端的空气压力大于输出端的具有一定浓度的氧气的压力,从而使富氧膜122不断吸取空气并对其进行过滤形成更多的具有一定浓度的氧气以供一体式空气压缩机13抽取,而一体式空气压缩机13对抽取的具有一定浓度的氧气进行压缩向出氧管18输送以供健身者呼吸。值得说明的是,上述的流体连接可使用导气管。When the oxygen generating assembly 12 is an oxygen-rich membrane 122, the integral air compression end is fluidly coupled to the oxygen outlet tube 18 and the other end is fluidly coupled to the oxygen-rich membrane 122. At the time of starting, at the beginning, the gas in the integrated air compressor 13 and the oxygen-rich membrane 122 is air, and at this time, the integrated air compressor 13 continuously compresses the air in the chamber to the oxygen outlet tube 18 discharge. When the air in the integrated air compressor 13 and the oxygen-rich membrane 122 is exhausted, the gas in the chamber forms a pressure difference as the integrated air compressor 13 is compressed, and the oxygen-rich membrane 122 is continuously extracted from the gas passage. The oxygen having a certain concentration causes the air pressure at the input end of the oxygen-rich membrane 122 to be greater than the pressure of the oxygen having a certain concentration at the output end, so that the oxygen-rich membrane 122 continuously absorbs the air and filters it to form a more concentrated concentration. Oxygen is extracted for the integrated air compressor 13, and the integrated air compressor 13 compresses the extracted oxygen having a certain concentration and delivers it to the oxygen outlet tube 18 for the bodybuilder to breathe. It is worth noting that the above fluid connection can use an air duct.
本发明的分子筛121所过滤空气后所形成的具有一定浓度的氧气浓度为90%以上。富氧膜122所过滤空气后所形成的具有一定浓度的氧气浓度为30%左右。The concentration of oxygen having a certain concentration formed by the molecular sieve 121 of the present invention after filtering the air is 90% or more. The concentration of oxygen having a certain concentration formed by the oxygen-enriched membrane 122 after filtering the air is about 30%.
如图2所示,底座10还包括固定柱41、发动机42、支撑组件43。固定柱41与一体式空气压缩机13的突耳匹配以固定一体式空气压缩机13。发动机42用于为后座20的运动提供动力源。支撑组件43设于底板14上以可伸缩地支撑底座10。As shown in FIG. 2, the base 10 further includes a fixed post 41, an engine 42, and a support assembly 43. The fixed post 41 is mated with the lug of the integrated air compressor 13 to fix the integrated air compressor 13. The engine 42 is used to provide a power source for the movement of the rear seat 20. The support assembly 43 is disposed on the bottom plate 14 to telescopically support the base 10.
具体地,如图1和图2所示,支撑组件43包括支撑架431、固定架432、伸缩杆433,支撑架431设于底板14外,支撑架431上设有两个与水平面接触的前滚轮,固定架432设于底板14内,伸缩杆433一端固定于固定架432上,另一端与支撑架431伸缩连接,以使支撑架431可上升或下降运动。Specifically, as shown in FIG. 1 and FIG. 2, the support assembly 43 includes a support frame 431, a fixing frame 432, and a telescopic rod 433. The support frame 431 is disposed outside the bottom plate 14. The support frame 431 is provided with two front surfaces in contact with the horizontal surface. The support frame 432 is disposed in the bottom plate 14. The end of the telescopic rod 433 is fixed to the fixed frame 432, and the other end is telescopically coupled to the support frame 431 so that the support frame 431 can be raised or lowered.
进一步地,支撑组件43还包括加强框434和加强杆(图未示),用以提高固定架432稳固性。加强框434设于底板14内并抵靠固定架432以支撑固定架432,加强杆穿设于左支架16上并穿过固定架432以与右支架17连接。Further, the support assembly 43 further includes a reinforcing frame 434 and a reinforcing rod (not shown) for improving the stability of the fixing frame 432. The reinforcing frame 434 is disposed in the bottom plate 14 and abuts against the fixing frame 432 to support the fixing frame 432. The reinforcing rod is disposed on the left bracket 16 and passes through the fixing frame 432 to be connected with the right bracket 17.
本发明的后座20包括后底框21、跑步板(图未示)、前滚筒22、后滚筒(图未示)以及跑步带24,后底框21与前底框15连接,并设有两个与水平面接触的后支撑25,后支撑25与前滚轮对应设置以稳定地支撑制氧跑步机1。跑步板设于前底框15中。前滚筒22、后滚筒分别转动地设于跑步板的两端。发动机42与前滚筒22皮带连接,以使前滚筒22转动。跑步带24裹覆前滚筒22、跑步板以及后滚筒,并随着前滚筒22和后滚筒的转动而循环转动。The rear seat 20 of the present invention includes a rear bottom frame 21, a running board (not shown), a front drum 22, a rear drum (not shown), and a running belt 24, and the rear bottom frame 21 is connected to the front bottom frame 15, and is provided with Two rear supports 25 are in contact with the horizontal surface, and the rear support 25 is disposed corresponding to the front rollers to stably support the oxygen treadmill 1. The running board is disposed in the front bottom frame 15. The front drum 22 and the rear drum are respectively rotatably provided at both ends of the running board. The engine 42 is coupled to the front drum 22 to rotate the front drum 22. The running belt 24 wraps the front drum 22, the running board, and the rear drum, and circulates in rotation as the front drum 22 and the rear drum rotate.
本发明的制氧跑步机1的设有一体式空气压缩机13,改变了传统跑步机需要马达通过皮带带动真空泵进行空气压缩的复杂且容易损坏的结构,本发明的制氧跑步机1结构简单且紧凑,使用方便,减小了设备的体积,降低了材料成本,供氧充足,极大地提升了用户体验。The oxygen-making treadmill 1 of the present invention is provided with an integrated air compressor 13, which changes the complicated and easily damaged structure of the conventional treadmill that requires the motor to drive the vacuum pump through the belt to perform air compression. The oxygen-making treadmill 1 of the present invention has a simple structure. It is compact and easy to use, which reduces the size of the equipment, reduces the material cost, and provides sufficient oxygen supply, which greatly enhances the user experience.
需要指出的是,在本发明实施例中如果提到“第一”、“第二”、“上”、“下”、“左”、“右”等用语,其仅是根据需要采用的文字符号,在实务中并不限于此,并且该文字符号可以互换使用。It should be noted that, in the embodiment of the present invention, if the terms “first”, “second”, “upper”, “lower”, “left”, “right” are mentioned, it is only the words used according to the need. Symbols are not limited to this in practice, and the text symbols can be used interchangeably.
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。The above is only the embodiment of the present invention, and is not intended to limit the scope of the invention, and the equivalent structure or equivalent process transformation of the present invention and the contents of the drawings may be directly or indirectly applied to other related technologies. The fields are all included in the scope of patent protection of the present invention.

Claims (19)

  1. 一种制氧跑步机,其特征在于,所述制氧跑步机包括提供动力源的底座、与所述底座横向连接以供健身者进行运动的后座以及与所底座纵向连接的扶手控制座,所述底座包括:An oxygen treadmill, characterized in that the oxygen treadmill comprises a base providing a power source, a rear seat laterally connected to the base for exercising by a fitness person, and an armrest control seat longitudinally connected to the base. The base includes:
    启动组件,产生启动信号;Starting the component to generate a start signal;
    空气压缩组件,包括一体式空气压缩机,用于接收所述启动信号以对空气或具有一定浓度的氧气进行压缩;An air compression assembly comprising an integrated air compressor for receiving the activation signal to compress air or a certain concentration of oxygen;
    制氧组件,用于吸取并过滤所述空气以形成所述具有一定浓度的氧气;An oxygen generating assembly for drawing and filtering the air to form the oxygen having a certain concentration;
    所述具有一定浓度的氧气经导气管引流至所述扶手控制座以供健身者呼吸。The oxygen having a certain concentration is drained through the air guiding tube to the armrest control seat for the bodybuilder to breathe.
  2. 根据权利要求1所述的制氧跑步机,其特征在于,所述底座还包括:The oxygen treadmill according to claim 1, wherein the base further comprises:
    底板,所述启动组件、空气压缩组件以及所述制氧组件分别间隔设于所述底板上;a bottom plate, the starting assembly, the air compression assembly and the oxygen generating assembly are respectively disposed on the bottom plate;
    前底框,设于所述底板的外沿;a front bottom frame disposed on an outer edge of the bottom plate;
    左支架、右支架,分别设于所述前底框的两侧。The left bracket and the right bracket are respectively disposed on two sides of the front bottom frame.
  3. 根据权利要求1所述的制氧跑步机,其特征在于,所述扶手控制座包括:The oxygen treadmill according to claim 1, wherein the armrest control seat comprises:
    面板架,架设于所述左支架与所述右支架之间;a panel frame is disposed between the left bracket and the right bracket;
    操作面板,设于所述面板架上以方便健身者操作控制所述制氧跑步机;An operation panel is disposed on the panel frame to facilitate a fitness person to operate and control the oxygen treadmill;
    扶手,设于所述面板架两侧。Handrails are provided on both sides of the panel frame.
  4. 根据权利要求3所述的制氧跑步机,其特征在于,所述底座还包括出氧管,所述出氧管设于所述右支架和/或所述左支架中,并向所述面板架延伸以向所述健身者输送所述具有一定浓度的氧气。The oxygen treadmill according to claim 3, wherein the base further comprises an oxygen outlet tube, the oxygen outlet tube being disposed in the right bracket and/or the left bracket, and facing the panel The shelf extends to deliver the concentration of oxygen to the exerciser.
  5. 根据权利要求4所述的制氧跑步机,其特征在于,所述出氧管的喷氧端由操作面板伸出,并向上翘起。The oxygen treadmill according to claim 4, wherein the oxygen-emitting end of the oxygen outlet tube is extended by the operation panel and is lifted upward.
  6. 根据权利要求5所述的制氧跑步机,其特征在于,所述出氧管的喷氧端与水平面形成45°-70°的夹角。The oxygen-making treadmill according to claim 5, wherein the oxygen-emitting end of the oxygen outlet tube forms an angle of 45 to 70 with the horizontal.
  7. 根据权利要求4所述的制氧跑步机,其特征在于,所述制氧组件为与所述出氧管流体连接的分子筛,所述一体式空气压缩机吸取所述空气并进行压缩,以传输至所述分子筛进行过滤并形成具有一定浓度的氧气。The oxygen treadmill according to claim 4, wherein said oxygen generating assembly is a molecular sieve fluidly connected to said oxygen outlet tube, said integrated air compressor sucking said air and compressing for transmission The molecular sieve is filtered to form a certain concentration of oxygen.
  8. 根据权利要求4所述的制氧跑步机,其特征在于,所述制氧组件为富氧膜,与所述出氧管流体连接的所述一体式空气压缩机吸取所述富氧膜中的所述具有一定浓度的氧气并进行压缩,以使所述富氧膜不断吸取所述空气并过滤以形成所述具有一定浓度的氧气。The oxygen treadmill according to claim 4, wherein said oxygen generating assembly is an oxygen-rich membrane, and said integrated air compressor fluidly coupled to said oxygen outlet tube draws said oxygen-rich membrane The oxygen has a concentration and is compressed such that the oxygen-rich membrane continuously draws the air and filters to form the oxygen having a certain concentration.
  9. 根据权利要求2所述的制氧跑步机,其特征在于,所述底座还包括设于所述底板上的固定柱,与所述一体式空气压缩机的突耳匹配。The oxygen treadmill according to claim 2, wherein said base further comprises a fixing post provided on said bottom plate to match a lug of said integrated air compressor.
  10. 根据权利要求2所述的制氧跑步机,其特征在于,所述底座还包括设于所述底板上的支撑组件,所述支撑组件包括:The oxygen treadmill according to claim 2, wherein the base further comprises a support assembly disposed on the bottom plate, the support assembly comprising:
    支撑架,设于所述底板外,所述支撑架上设有两个与水平面接触的前滚轮;a support frame is disposed outside the bottom plate, and the support frame is provided with two front rollers that are in contact with a horizontal plane;
    固定架,设于所述底板内;a fixing frame disposed in the bottom plate;
    伸缩杆,固定于所述固定架上并与所述支撑架连接,以使所述支撑架可上升或下降运动。A telescopic rod is fixed to the fixing frame and connected to the support frame to enable the support frame to move up or down.
  11. 根据权利要求10所述的制氧跑步机,其特征在于,所述支撑组件还包括:The oxygen treadmill according to claim 10, wherein the support assembly further comprises:
    加强框,设于所述底板内并抵靠所述固定架以支撑所述固定架;a reinforcing frame disposed in the bottom plate and abutting against the fixing frame to support the fixing frame;
    加强杆,穿设于所述左支架上并穿过所述固定架以与所述右支架连接。A reinforcing rod is disposed on the left bracket and passes through the fixing bracket to be connected to the right bracket.
  12. 根据权利要求2所述的制氧跑步机,其特征在于,所述后座包括:The oxygen treadmill according to claim 2, wherein said rear seat comprises:
    后底框,与所述前底框连接,并设有两个与水平面接触的后支撑;a rear bottom frame connected to the front bottom frame and provided with two rear supports in contact with a horizontal plane;
    跑步板,设于所述前底框中;a running board disposed in the front bottom frame;
    前滚筒、后滚筒,分别转动地设于所述跑步板的两端;a front roller and a rear roller are respectively rotatably disposed at two ends of the running board;
    跑步带,裹覆所述前滚筒、所述跑步板以及所述后滚筒,并随着所述前滚筒和所述后滚筒的转动而循环转动。A running belt wraps the front drum, the running board, and the rear drum, and rotates cyclically as the front drum and the rear drum rotate.
  13. 一种用于健身设备的制氧系统,其特征在于,所述制氧系统包括:An oxygen system for an exercise device, characterized in that the oxygen system comprises:
    启动组件,用于产生启动信号;a startup component for generating a startup signal;
    空气压缩组件,包括一体式空气压缩机,用于接收所述启动信号以对空气或具有一定浓度的氧气进行压缩;An air compression assembly comprising an integrated air compressor for receiving the activation signal to compress air or a certain concentration of oxygen;
    制氧组件,用于吸取并过滤所述空气以形成所述具有一定浓度的氧气;An oxygen generating assembly for drawing and filtering the air to form the oxygen having a certain concentration;
    所述具有一定浓度的氧气经导气管引流出以供健身者呼吸。The oxygen having a certain concentration is drained through the airway for the bodybuilder to breathe.
  14. 根据权利要求13所述的制氧系统,其特征在于,所述制氧组件为与所述出氧管流体连接的分子筛,所述一体式空气压缩机吸取所述空气并进行压缩,以传输至所述分子筛进行过滤并形成具有一定浓度的氧气。The oxygen generation system according to claim 13 wherein said oxygen generating assembly is a molecular sieve fluidly coupled to said oxygen outlet conduit, said integrated air compressor drawing said air and compressing for transmission to The molecular sieve is filtered and formed to have a certain concentration of oxygen.
  15. 根据权利要求13所述的制氧系统,其特征在于,所述分子筛所过滤空气后所形成的氧气浓度大于90%。The oxygen generation system according to claim 13, wherein the molecular sieve has a concentration of oxygen formed by filtering air of greater than 90%.
  16. 根据权利要求13所述的制氧系统,其特征在于,所述制氧组件为富氧膜,与所述出氧管流体连接的所述一体式空气压缩机吸取所述富氧膜中的所述具有一定浓度的氧气并进行压缩,以使所述富氧膜不断吸取所述空气并过滤以形成所述具有一定浓度的氧气。The oxygen generation system according to claim 13, wherein said oxygen generating assembly is an oxygen-rich membrane, and said integrated air compressor fluidly connected to said oxygen outlet tube draws said oxygen-rich membrane A certain concentration of oxygen is present and compressed so that the oxygen-rich membrane continuously draws the air and filters to form the oxygen having a certain concentration.
  17. 根据权利要求16所述的制氧系统,其特征在于,所述富氧膜所过滤空气后所形成的氧气浓度为30%。The oxygen generation system according to claim 16, wherein the oxygen-enriched membrane forms an oxygen concentration of 30% after filtering the air.
  18. 一种健身设备,其特征在于,所述健身设备包括健身装置以及权利要求13-17任一项所述的制氧系统。A fitness device, characterized in that the exercise device comprises an exercise device and the oxygen production system according to any one of claims 13-17.
  19. 根据权利要18所述的健身设备,其特征在于,所述健身装置包括但不限于划船器、健身车、健步机、健骑机、跑步机、美腰机、台阶机以及椭圆机。The exercise device according to claim 18, wherein the exercise device includes, but is not limited to, a rowing machine, an exercise bike, a walking machine, a health rider, a treadmill, a beauty waist machine, a step machine, and an elliptical machine.
PCT/CN2016/085235 2015-10-21 2016-06-08 Fitness equipment, oxygen producing system and oxygen producing running machine WO2017067184A1 (en)

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