WO2019052204A1 - 一种振动型运动装置 - Google Patents

一种振动型运动装置 Download PDF

Info

Publication number
WO2019052204A1
WO2019052204A1 PCT/CN2018/086416 CN2018086416W WO2019052204A1 WO 2019052204 A1 WO2019052204 A1 WO 2019052204A1 CN 2018086416 W CN2018086416 W CN 2018086416W WO 2019052204 A1 WO2019052204 A1 WO 2019052204A1
Authority
WO
WIPO (PCT)
Prior art keywords
detecting
carrier
base
notch
processing mechanism
Prior art date
Application number
PCT/CN2018/086416
Other languages
English (en)
French (fr)
Inventor
陈明瞿
王荣河
冯时
邹剑寒
Original Assignee
邹剑寒
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
Publication date
Application filed by 邹剑寒 filed Critical 邹剑寒
Publication of WO2019052204A1 publication Critical patent/WO2019052204A1/zh

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H1/00Apparatus for passive exercising; Vibrating apparatus; Chiropractic devices, e.g. body impacting devices, external devices for briefly extending or aligning unbroken bones

Definitions

  • the utility model relates to a motion device, in particular to a vibration type motion device.
  • Patent application CN201010176638.2 discloses a vibrating motion device that does not require motion to actively perform activities, but only needs to step on the motion device to perform passive activities.
  • the vibration type motion device lacks a detection mechanism for identifying a specific user, and a younger child can directly activate the exercise device for use, and there is a certain safety hazard. How to effectively detect the user's vital sign information to control the working state of the exercise device is a problem that needs to be solved. In view of this, the present application is specifically proposed.
  • the technical problem to be solved by the present invention is to provide a vibration type motion device for controlling the working state of the motion device according to the physical sign information of the user.
  • the present invention provides a vibrating motion device having a base, a carrier seat above the base for carrying a user, and a base between the base and the carrier for driving the carrier to vibrate relative to the base.
  • the vibration type moving device further comprising a weight detecting mechanism for detecting user weight information, electrically connected to the processing mechanism, so that the processing mechanism can be The user weight information detected by the weight detecting mechanism controls the operating state of the driving mechanism.
  • the weight detecting mechanism is a photoelectric detecting mechanism, and includes: a detecting portion electrically connected to the processing mechanism, and disposed on one of the base and the carrier; the scale portion is The detecting portion is relatively movable, and is disposed on the other of the base and the carrier to enable the scale portion and the detecting portion to move relative to each other when the carrier is vibrated relative to the base .
  • the detecting portion is disposed on the base by a support member, and the scale portion is disposed on the carrier; the weight detecting mechanism further includes a limiting portion disposed on the support member and located at the The outer circumference of the scale portion is used to define an active path of the scale portion.
  • the vibration type motion device further includes an armrest mechanism located in front of the carrier; the armrest mechanism is configured with a first target detecting mechanism for detecting whether the user is carried on the carrier, and is electrically connected
  • the processing mechanism is configured to enable the processing mechanism to control an operating state of the driving mechanism according to detection information of the first target detecting mechanism.
  • the armrest mechanism is further configured with a second target detecting mechanism for detecting whether the user is carried on the carrier, the second target detecting mechanism is located above the first target detecting mechanism;
  • the vertical distance between the target detecting mechanism and the carrier is 50 cm-100 cm, and the vertical distance between the second target detecting mechanism and the carrier is 120 cm to 150 cm.
  • the scale portion has a first notch; and when the detecting portion is located at a position of the first notch of the scale portion, the processing mechanism is a processing mechanism that can control the driving mechanism to be in an operating state in which the carrier cannot be driven to vibrate When the detecting portion is located at a position above the first notch of the scale portion, the processing mechanism is a processing mechanism that controls the driving mechanism to be in an operating state in which the driving base can be driven to vibrate.
  • the scale portion has a first notch and a second notch located above the first notch; and the processing is performed when the detecting portion is located at a position above the first notch, the second notch and the second notch of the scale portion
  • the mechanism is a processing mechanism for controlling the driving mechanism to be in an operating state in which the bearing seat cannot be driven to vibrate; when the detecting portion is located between the first notch and the second notch of the scale portion, the processing mechanism is the control driving mechanism is in the drivable bearing The processing mechanism for the working state of the vibration.
  • the first target detecting means and the second target detecting means are infrared detecting means capable of detecting whether or not an obstacle exists in a range of 1 cm to 65 cm in front of the object.
  • the utility model can achieve the following technical effects:
  • the processing mechanism can control the working state of the driving mechanism according to the weight information of the user, and when the weight of the user meets the preset working threshold range, the processing mechanism controls the driving mechanism to be in the driveable bearing seat. When the user's weight does not meet the preset working threshold range, the processing mechanism controls the driving mechanism to be in an operating state in which the non-driving carrier is vibrated, and the vibration type moving device of the present invention can avoid the weight loss. Children use the device to reduce safety risks;
  • the advantage is that: on the one hand, when the user is short, the first target detecting mechanism can detect whether the bearing seat exists. On the other hand, when the user is tall and the user is supported on the carrier, the legs are opened and there is a gap, so that the first target detecting mechanism cannot accurately detect whether the bearer exists or not, the second target detecting mechanism can accurately detect the bearer. Whether there is a user in the seat.
  • FIG. 1 is a schematic view of a vibration type motion device of the present invention
  • FIG. 3 is a schematic view of the vibrating motion device of the present invention after omitting the housing;
  • FIG. 5 is a diagram showing changes in the working state of the weight detecting mechanism of the present invention.
  • Figure 6 is a schematic view showing the lower surface of the carrier
  • Figure 7 is an exploded view of the carrier and the mechanism disposed on the lower surface of the carrier;
  • Figure 8 is a cross-sectional view showing a portion of a drive mechanism of the vibratory motion device of the present invention.
  • Figure 9 is an exploded view of another embodiment of the weight detecting mechanism.
  • FIG. 10 is a diagram showing electrical relationships between mechanisms of the vibratory motion device of the present invention.
  • FIG. 11 is a flow chart showing the operation of an embodiment of the vibrating motion device of the present invention.
  • the vibrating motion device of the present invention has a base 20, a carrier 7 above the base 20 for carrying a user, and a base between the base 20 and the carrier 7 for driving the carrier.
  • the vibrating type moving device further comprising a weight detecting mechanism 19 for detecting user weight information, electrically connected to the processing mechanism, so that the processing mechanism can The operating state of the drive mechanism is controlled based on the user's weight information detected by the weight detecting mechanism 19.
  • the vibrating motion device of the present invention includes a vibrating portion 1 and an armrest portion 2 for supporting a user.
  • the armrest portion 2 has armrests for the user to hold on both sides, and the upper end is provided with a mobile phone and the like.
  • the accommodating slot 2A and the operation panel for displaying the motion device and the operation panel for the user to operate, the control panel can be a touch panel type operation panel.
  • the armrest portion 2 may not be disposed, and the control portion may be provided on the vibrating portion 1, which may further reduce the size of the vibratory motion device.
  • the vibrating portion 1 includes a housing including an upper case portion 5 detachably coupled to the carrier seat 7 and a lower case portion 6 detachably coupled to the base 20.
  • the base 20 and the carrier 7 are disposed opposite to each other, and a plurality of first guiding rods 11 are disposed on the lower surface of the bearing base 7.
  • the base 20 is correspondingly disposed with a plurality of linear bearings 12, and the first guiding rods 11 are respectively movably movable up and down.
  • a plurality of elastic members 13 (which may be springs) are also disposed between the carrier 7 and the base 20 to provide a cushioning effect when the carrier 7 is vibrated relative to the base 20.
  • the drive mechanism that drives the carrier 7 to vibrate includes a first component 8 disposed on a lower surface of the carrier 7 and a second component 26 disposed on the base 20.
  • the first assembly 8 includes a first yoke 21, a permanent magnet 22, a bearing 23, and a second yoke 24.
  • the first yoke 21 includes a first yoke portion 21A that is substantially cylindrical and is disposed on the carrier 7.
  • the second yoke portion 21B of the lower surface, the bearing 23 is located at the center of the first yoke portion 21A and extends from the top to the bottom.
  • the permanent magnet 22 includes a plurality of magnet units, and is disposed in the first yoke portion 21A and distributed along the outer circumference of the bearing 23.
  • the second yoke 24 is substantially cylindrical and is located in the first yoke 21 and sleeved on the bearing 23.
  • the first yoke 21, the permanent magnet 22, and the second yoke 24 are sequentially connected, and the second yoke 24 and the first yoke portion 21A maintain a certain gap S in the radial direction, and a permanent magnetic field is formed in the gap S.
  • the second assembly 26 includes a winding portion 9 having a substantially hollow cylindrical shape, a conductive coil 10 wound around the outer circumference of the winding portion 9, a second guiding rod 25 located at the center of the winding portion 9, and a bearing 23 sleeved at the second portion. The outer circumference of the guide bar 25.
  • the winding portion 9 is sleeved on the outer circumference of the second magnetic track 24, and the first yoke portion 21A is sleeved on the outer circumference of the winding portion 9. Since the magnetic field exists in the gap S, the conductive coil 10 will be electromagnetic after being connected to the alternating current. The force acting, and thus the first component 8 and the second component 26, will generate a relative force. Since the base 20 is disposed on the support surface, the carrier 7 will vibrate in a manner of reciprocating close to and away from the base 20. In turn, the user supported on the carrier 7 can vibrate accordingly to achieve the purpose of passive motion. The vibration frequency and amplitude of the carrier 7 can be controlled by adjusting the frequency and magnitude of the power supply of the conductive coil 10. In another embodiment, the first component 8 can be disposed on the base 20 and the second component 26 can be disposed on the lower surface of the carrier 7.
  • the weight detecting mechanism 19 is a photodetecting mechanism, and includes a detecting unit 18 electrically connected to the processing mechanism and disposed on the susceptor 20; the scale portion 15 is movable relative to the detecting unit 18, and is disposed
  • the carrier 7 is configured to move the scale portion 15 and the detecting portion 18 relative to each other when the carrier 7 is vibrated relative to the base 20 (as shown in FIG. 5).
  • the detecting unit 18 is disposed on the base 20 via the support 16 .
  • the weight detecting mechanism 19 further includes a limiting portion 17 disposed on the support member 16 and located on the outer circumference of the scale portion 15 for defining an active path of the scale portion 15.
  • the scale portion 15 has a first notch 15A.
  • the processing mechanism is a processing mechanism that controls the driving mechanism to be in an operating state in which the carrier 7 cannot be driven to vibrate.
  • the processing mechanism is a processing mechanism that controls the driving mechanism to be in an operating state in which the carrier 7 can be driven to vibrate.
  • the limiting portion 17 may not be configured.
  • the detecting portion may be disposed on the carrier 7, and the scale portion 15 may be disposed on the base 20. In another embodiment, in conjunction with FIG.
  • the scale portion 15 may have a first notch and a second notch 15B located above the first notch 15A; and the first notch 15A and the second notch of the detecting portion 18 at the scale portion 15
  • the processing mechanism is a processing mechanism that controls the driving mechanism to be in an operating state in which the carrier 7 cannot be driven to vibrate; and the detecting portion 18 is located at the first notch 15A and the second notch 15B of the scale portion 15.
  • the processing mechanism is a processing mechanism that controls the driving mechanism to be in an operating state in which the carrier 7 can be driven to vibrate.
  • the processing mechanism can control the driving mechanism to be in an operating state in which the bearing 7 cannot be driven to vibrate.
  • the armrest mechanism 2 is provided with a first target detecting mechanism 3 for detecting whether the user is carried on the carrier 7, and is electrically connected to the processing mechanism, so that the processing mechanism can detect the information according to the first target detecting mechanism 3. Controlling the operating state of the drive mechanism.
  • the armrest mechanism 2 is further provided with a second target detecting mechanism 4 for detecting whether the user is carried on the carrier 7, and the second target detecting mechanism 4 is located above the first target detecting mechanism 3; the first target detecting mechanism 3 and the carrying base 7
  • the vertical distance may be from 50 cm to 100 cm, for example 60 cm; the vertical distance between the second target detecting mechanism 4 and the carrier 7 may be from 120 cm to 150 cm, for example 140 cm.
  • the two groups of target detecting mechanisms are configured.
  • the first target detecting mechanism 3 can detect whether there is a user in the carrying seat, so that the moving device intelligently adjusts the motion state; on the other hand, when the user is higher and the user
  • the second target detecting mechanism 4 can accurately detect the bearing seat when the two legs are supported by the carrier and there is a gap or a gap occurs during various motions, so that the first target detecting mechanism 3 cannot accurately detect whether the user is present in the bearing. 7 Whether there is a user.
  • only the first target detection mechanism 3 may be configured.
  • the first target detecting mechanism and the second target detecting mechanism may be infrared detecting mechanisms that detect whether an obstacle (ie, a user) exists in the range of 1 cm to 65 cm in front of the front.
  • the vibration type motion device of the present invention can work as follows: when the motion device is activated, the processing mechanism first determines whether there is a user on the carrier 7 according to the detection information of the target detection mechanism, and the determination can be based on The continuous detection result in the preset duration (such as within 3S), to avoid the user may not be on the carrier 7 when starting the motion device, but may be supported on the carrier 7 after a short period of time, and also avoid When the user suddenly leaves the device during use without suspending the device, the device is always in motion. Further, the processing mechanism determines whether the weight of the user on the carrier 7 is within a predetermined working threshold range according to the detection information of the weight detecting mechanism, so as to control the working state of the driving mechanism.
  • the processing mechanism can control the driving mechanism to be in an operating state in which the driving base can be driven to vibrate or in an operating state in which the non-driven bearing seat is vibrated.

Landscapes

  • Health & Medical Sciences (AREA)
  • Epidemiology (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Rehabilitation Therapy (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Apparatuses For Generation Of Mechanical Vibrations (AREA)

Abstract

一种振动型运动装置,具有基座(20)、位于基座(20)上方用以承载用户的承载座(7)、位于基座(20)与承载座(7)之间用以驱动承载座(7)相对基座(20)振动的驱动机构、以及控制驱动机构的工作状态的处理机构;振动型运动装置还包含有用以检测用户体重信息的体重检测机构(19),电连接于处理机构,以使处理机构可根据体重检测机构(19)检测的用户体重信息控制驱动机构的工作状态。振动型运动装置可根据用户体重信息控制驱动机构的工作状态,避免体重较轻的儿童使用时存在安全隐患。

Description

一种振动型运动装置 技术领域
本实用新型涉及运动装置,具体地,涉及一种振动型运动装置。
背景技术
随着生活节奏的加快,人们对健康的重视程度增强,各式各样的运动装置亦进入用户生活中。现有的运动装置通常需要用户主动进行活动以配合运动装置的工作。专利申请CN201010176638.2公开了一种振动型运动装置,该种运动装置不需要运动主动进行活动,而仅需踩在运动装置上即可被动的进行活动。目前该种振动型运动装置缺少识别特定用户的检测机构,年龄较小的儿童亦可直接启动该运动装置进行使用,存在一定的安全隐患。如何有效地检测用户的体征信息以控制该运动装置的工作状态是需要解决的问题有鉴于此,特提出本申请。
实用新型内容
本实用新型所要解决的技术问题是提供一种振动型运动装置以根据用户的体征信息控制运动装置的工作状态。
为解决上述技术问题,本实用新型提供一种振动型运动装置,具有基座、位于基座上方用以承载用户的承载座、位于基座与承载座之间用以驱动承载座相对基座振动的驱动机构、以及控制驱动机构的工作状态的处理机构;所述振动型运动装置还包含有用以检测用户体重信息的体重检测机构,电连接于所述处理机构,以使所述处理机构可根据所述体重检测机构检测的用户体重信息控制所述驱动机构的工作状态。
较佳地,所述体重检测机构为光电检测机构,包含有:检测部,电连接于所述处理机构,且配置于所述基座和所述承载座其中之一上;标尺部,可与所述检测部相对活动,且配置于所述基座和所述承载座其中另一上,以使所述承载座相对所述基座振动时可带动所述标尺部和所述检测部相对活动。
较佳地,所述检测部通过支撑件配置于所述基座上,所述标尺部配置于所述承载座上;所述体重检测机构还包含有限位部,配置于支撑件上且位于所述标尺部的外周,用以限定所述标尺部的活动路径。
较佳地,所述振动型运动装置还包含有位于所述承载座前方的扶手机构;所述扶手机构上配置有用以检测所述承载座上是否承载用户的第一目标检测机构,电连接于所述处理机构,以使所述处理机构可根据所述第一目标检测机构的检测信息控制所述驱动机构的工作状态。
较佳地,所述扶手机构上还配置有用以检测所述承载座上是否承载用户的第二目标检测机构,所述第二目标检测机构位于所述第一目标检测机构上方;所述第一目标检测机构与所述承载座的竖直距离为50cm-100cm,所述第二目标检测机构与所述承载座的竖直距离为120cm至150cm。
较佳地,所述标尺部上具有第一缺口;在检测部位于标尺部的第一缺口的位置时,所述处理机构为可控制驱动机构处于不能驱动承载座进行振动的工作状态的处理机构;在检测部位于标尺部的第一缺口的以上位置时,所述处理机构为控制驱动机构处于可驱动承载座进行振动的工作状态的处理机构。
较佳地,所述标尺部上具有第一缺口和位于第一缺口上方的第二缺口;在检测部位于标尺部的第一缺口、第二缺口及第二缺口以上的位置时,所述处理机构为控制驱动机构处于不能驱动承载座进行振动的工作状态的处理机构;在检测部位于标尺部的第一缺口和第二缺口之间位置时,所述处理机构为控制驱动机构处于可驱动承载座进行振动的工作状态的处理机构。
较佳地,所述第一目标检测机构和所述第二目标检测机构为可检测其前方1cm-65cm范围内是否存在障碍物的红外线检测机构。
通过采用上述技术方案,本实用新型可取得以下技术效果:
1、本实用新型的振动型运动装置,处理机构可结合用户的体重信息控制驱动机构的工作状态,当用户的体重符合预设的工作阈值范围内时,处理机构控制驱动机构处于可驱动承载座进行振动的工作状态,当用户的体重不符合预设的工作阈值范围时,处理机构控制驱动机构处于不可驱动承载座进行振动的工作状态,本实用新型的振动型运动装置可避免体重较小的儿童使用该装置,以降低安全隐患;
2、通过配置第一目标检测机构和第二目标检测机构,且使两者保持一定的间距,其优点在于:一方面当用户较矮时,第一目标检测机构即可检测出承载座是否存在用户;另一方面,当用户较高且用户支撑于承载座后两腿张开而存在间隙,使得第一目标检测机构不能准确检测承载是否存在用户时,第二目标检测机构可准确检测出承载座是否存在用户。
附图说明
图1绘示了本实用新型振动型运动装置的示意图;
图2绘示了本实用新型振动型运动装置的分解图;
图3绘示了本实用新型振动型运动装置省略壳体后的示意图;
图4绘示了本实用新型的体重检测机构的分解图;
图5绘示了本实用新型的体重检测机构的工作状态变化图;
图6绘示了承载座下表面的示意图;
图7绘示了承载座及配置于承载座下表面的机构的分解图;
图8绘示了本实用新型振动型运动装置的驱动机构部分的剖视图;
图9绘示了另一实施例体重检测机构的分解图;
图10绘示了本实用新型振动型运动装置的各机构之间的电性关系图;
图11绘示了本实用新型振动型运动装置一实施例的工作流程图。
具体实施方式
结合图1至图11,本实用新型的振动型运动装置,具有基座20、位于基座20上方用以承载用户的承载座7、位于基座20与承载座7之间用以驱动承载座7相对基座20振动 的驱动机构、以及控制驱动机构的工作状态的处理机构;振动型运动装置还包含有用以检测用户体重信息的体重检测机构19,电连接于处理机构,以使处理机构可根据体重检测机构19检测的用户体重信息控制驱动机构的工作状态。
请查阅图1,本实用新型的振动型运动装置包含有用以支撑用户的振动部分1和扶手部分2,扶手部分2的两侧具有供用户握持的扶手,其上端配置有容放手机等物件的容置槽2A及显示运动装置工作状态和供用户进行操作的操控面板,操控面板可为触摸屏式的操作面板。但容易理解,在其它实施方案中,可不配置有扶手部分2,而在振动部分1上设置控制装置,其可使振动型运动装置更加小型化。
振动部分1包含有壳体,其包含可拆卸地连接于承载座7的上壳部5和可拆卸地连接于基座20的下壳体6。基座20和承载座7相对设置,承载座7下表面间隔配置有多个第一导向杆11,基座20对应配置有多个线性轴承12,第一导向杆11分别可上下活动地套设于线性轴承12内。承载座7和基座20之间还配置有多个弹性件13(可为弹簧),以在承载座7相对基座20振动时起到缓冲作用。
在本实施例中,驱动承载座7进行振动的驱动机构包含有配置于承载座7的下表面的第一组件8和位于基座20上的第二组件26。第一组件8包含有第一磁轭21、永磁铁22、轴承23、第二磁轭24,第一磁轭21包含位于大致呈圆筒状的第一磁轭部21A和配置于承载座7的下表面的第二磁轭部21B,轴承23位于第一磁轭部21A的中部且自上往下延伸。永磁铁22包含多个磁铁单元,配置于第一磁轭部21A内且沿轴承23的外周分布。第二磁轭24大致呈圆柱状,其位于第一磁轭21内且套设于轴承23上。第一磁轭21、永磁铁22和第二磁轭24依次连接,且第二磁轭24与第一磁轭部21A沿径向保持一定的间隙S,该间隙S内形成有永久磁场。第二组件26包含有大致呈中空筒状的绕线部9、绕设于绕线部9外周的导电线圈10、位于绕线部9中部的第二导向杆25,轴承23套设于第二导向杆25的外周。绕线部9套设于第二磁轨24的外周,第一磁轭部21A套设于绕线部9的外周,由于间隙S存在磁场, 导电线圈10在通上交变电流后将受电磁力作用,进而第一组件8和第二组件26将产生相对的作用力,由于基座20配置于支撑面不可动,此时承载座7将相对基座20以往复靠近和远离的方式进行振动,进而使支撑于承载座7上的用户可相应振动,达到被动运动的目的。承载座7的振动频率和幅度可通过调节导电线圈10的电源频率和大小进行控制。在另一实施例中,可使第一组件8配置于基座20上,而使第二组件26配置于承载座7的下表面上。
在本实施例中,体重检测机构19为光电检测机构,包含有:检测部18,电连接于处理机构,且配置于基座20上;标尺部15,可与检测部18相对活动,且配置于承载座7上,以使承载座7相对基座20振动时可带动标尺部15和检测部18相对活动(如图5所示)。具体而言,检测部18通过支撑件16配置于基座20上。在本实施例中,体重检测机构19还包含限位部17,配置于支撑件16上且位于标尺部15的外周,用以限定标尺部15的活动路径。标尺部15上具有第一缺口15A,在检测部18位于标尺部15的第一缺口15A的位置时,处理机构为控制驱动机构处于不能驱动承载座7进行振动的工作状态的处理机构。在检测部18位于标尺部15的第一缺口15A的以上位置时,处理机构为控制驱动机构处于可驱动承载座7进行振动的工作状态的处理机构。在另一实施例中,可不配置限位部17。在另一实施例中,可将检测部配置于承载座7上,而将标尺部15配置于基座20上。在另一实施例中,结合图9,标尺部15上可具有第一缺口和位于第一缺口15A上方的第二缺口15B;在检测部18位于标尺部15的第一缺口15A、第二缺口15B及第二缺口15B以上的位置时,处理机构为控制驱动机构处于不能驱动承载座7进行振动的工作状态的处理机构;在检测部18位于标尺部15的第一缺口15A和第二缺口15B之间位置时,处理机构为控制驱动机构处于可驱动承载座7进行振动的工作状态的处理机构。通过配置两组缺口,可当用户体重低于一定体重(如15KG)或高于一定体重(150KG)时,处理机构可控制驱动机构处于不能驱动承载座7进行振动的工作状态。
在本实施例中,扶手机构2上配置有用以检测承载座7上是否承载用户的第一目标检测机构3,电连接于处理机构,以使处理机构可根据第一目标检测机构3的检测信息控制所述驱动机构的工作状态。扶手机构2上还配置有用以检测承载座7上是否承载用户的第二目标检测机构4,第二目标检测机构4位于第一目标检测机构3上方;第一目标检测机构3与承载座7的竖直距离可为50cm-100cm,例如为60cm;第二目标检测机构4与承载座7的竖直距离可为120cm至150cm,例如140cm。配置两组目标检测机构,一方面当用户较矮时,第一目标检测机构3构即可检测出承载座是否存在用户,使运动装置智能调整运动状态;另一方面,当用户较高且用户支撑于承载座后两腿张开而存在间隙或做各种运动动作时出现间隙,使得第一目标检测机构3不能准确检测承载是否存在用户时,第二目标检测机构4可准确检测出承载座7是否存在用户。在另一实施例中,可仅配置第一目标检测机构3。第一目标检测机构和第二目标检测机构可为可检测其前方1cm-65cm范围内是否存在障碍物(即用户)的红外线检测机构。
结合图11,本实用新型的振动型运动装置的可按如下方式进行工作:当运动装置被启动时,处理机构首先根据目标检测机构的检测信息判断承载座7上是否存在用户,该判断可基于预设的持续时间内(如3S内)的连续检测结果,以避免用户启动运动装置时可能并未处于承载座7上而是延缓一小段时间后再支撑于承载座7上,另还可以避免用户使用过程中突然离开装置而未对装置进行暂停操作时,装置一直处于运动状态。进一步地,处理机构根据体重检测机构的检测信息判断承载座7上的用户的体重是否处于预定的工作阈值范围,以便控制驱动机构的工作状态,同理,为避免检测误差,如体重较小的儿童跳跃的方式支撑于承载座7上,处理机构亦可基于体重检测机构预设的持续时间内(如3S内)的连续检测结果进行判断。通过以上流程,处理机构可控制驱动机构处于可驱动承载座进行振动的工作状态或处于不可驱动承载座进行振动的工作状态。
以上即为本实用新型的具体实施方式。对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进。这些都属于本发明的保护范围。因此,本发明的保护范围应以所附权利要求为准。

Claims (8)

  1. 一种振动型运动装置,具有基座(20)、位于基座(20)上方用以承载用户的承载座(7)、位于基座(20)与承载座(7)之间用以驱动承载座(7)相对基座(20)振动的驱动机构、以及控制驱动机构工作状态的处理机构;其特征在于,所述振动型运动装置还包含有用以检测用户体重信息的体重检测机构(19),电连接于所述处理机构,以使所述处理机构可根据所述体重检测机构(19)检测的用户体重信息控制所述驱动机构的工作状态。
  2. 根据权利要求1所述的振动型运动装置,其特征在于,所述体重检测机构(19)为光电检测机构,包含有:
    检测部(18),电连接于所述处理机构,且配置于所述基座(20)和所述承载座(7)其中之一上;
    标尺部(15),可与所述检测部(18)相对活动,且配置于所述基座(20)和所述承载座(7)其中另一上,以使所述承载座(7)相对所述基座(20)振动时可带动所述标尺部(15)和所述检测部(18)相对活动。
  3. 根据权利要求2所述的振动型运动装置,其特征在于,所述检测部(18)通过支撑件(16)配置于所述基座(20)上,所述标尺部(15)配置于所述承载座(7)上;所述体重检测机构(19)还包含限位部(17),配置于支撑件(16)上且位于所述标尺部(15)的外周,用以限定所述标尺部(15)的活动路径。
  4. 根据权利要求1所述的振动型运动装置,其特征在于,所述振动型运动装置还包含有位于所述承载座(7)前方的扶手机构(2);所述扶手机构(2)上配置有用以检测所述承载座(7)上是否承载用户的第一目标检测机构(3),电连接于所述处理机构,以使所述处理机构可根据所述第一目标检测机构(3)的检测信息控制所述驱动机构的工作状态。
  5. 根据权利要求4所述的振动型运动装置,其特征在于,所述扶手机构(2)上还配置有用以检测所述承载座(7)上是否承载用户的第二目标检测机构(4),所述第二目标检测机构(4)位于 所述第一目标检测机构(3)上方;所述第一目标检测机构(3)与所述承载座(7)的竖直距离为50cm-100cm,所述第二目标检测机构(4)与所述承载座(7)的竖直距离为120cm至150cm。
  6. 根据权利要求2所述的振动型运动装置,其特征在于,所述标尺部(15)上具有第一缺口(15A);在检测部(18)位于标尺部(15)的第一缺口(15A)的位置时,所述处理机构为可控制驱动机构处于不能驱动承载座(7)进行振动的工作状态的处理机构;在检测部(18)位于标尺部(15)的第一缺口(15A)的以上位置时,所述处理机构为控制驱动机构处于可驱动承载座(7)进行振动的工作状态的处理机构。
  7. 根据权利要求2所述的振动型运动装置,其特征在于,所述标尺部(15)上具有第一缺口(15A)和位于第一缺口(15A)上方的第二缺口(15B);在检测部(18)位于标尺部(15)的第一缺口(15A)、第二缺口(15B)及第二缺口(15B)以上的位置时,所述处理机构为控制驱动机构处于不能驱动承载座(7)进行振动的工作状态的处理机构;在检测部(18)位于标尺部(15)的第一缺口(15A)和第二缺口(15B)之间位置时,所述处理机构为控制驱动机构处于可驱动承载座(7)进行振动的工作状态的处理机构。
  8. 根据权利要求5所述的振动型运动装置,其特征在于,所述第一目标检测机构(3)和所述第二目标检测机构(4)为可检测其前方1cm-65cm范围内是否存在障碍物的红外线检测机构。
PCT/CN2018/086416 2017-09-17 2018-05-11 一种振动型运动装置 WO2019052204A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201721156337.7 2017-09-17
CN201721156337 2017-09-17

Publications (1)

Publication Number Publication Date
WO2019052204A1 true WO2019052204A1 (zh) 2019-03-21

Family

ID=65723511

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/086416 WO2019052204A1 (zh) 2017-09-17 2018-05-11 一种振动型运动装置

Country Status (1)

Country Link
WO (1) WO2019052204A1 (zh)

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040068211A1 (en) * 2001-01-04 2004-04-08 Gunnar Leivseth Device for vibratory stimulation on the human body
CN101155570A (zh) * 2004-10-25 2008-04-02 普拉提力量设备(国际)有限公司 振动健身装置
CN101257880A (zh) * 2005-09-06 2008-09-03 力量普拉特国际有限公司 具有振动吸收支架的健身器械
CN201676132U (zh) * 2010-06-02 2010-12-22 王秀康 减肥健身机
CN102036639A (zh) * 2008-03-31 2011-04-27 松下电工株式会社 运动辅助设备
CN102065818A (zh) * 2007-10-23 2011-05-18 安德鲁·马克·休伊森 具有后部运动引发器和无摩擦连接件的振动设备以及用于补偿载荷和控制波形的方法
CN103611269A (zh) * 2013-11-20 2014-03-05 厦门蒙发利科技(集团)股份有限公司 一种摇摆健身机
CN205286850U (zh) * 2015-12-25 2016-06-08 宓胜杰 一种具有自动按摩功能的新型单人床
CN206491984U (zh) * 2016-11-15 2017-09-15 松研科技(杭州)有限公司 一种塑身震动机

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040068211A1 (en) * 2001-01-04 2004-04-08 Gunnar Leivseth Device for vibratory stimulation on the human body
CN101155570A (zh) * 2004-10-25 2008-04-02 普拉提力量设备(国际)有限公司 振动健身装置
CN101257880A (zh) * 2005-09-06 2008-09-03 力量普拉特国际有限公司 具有振动吸收支架的健身器械
CN102065818A (zh) * 2007-10-23 2011-05-18 安德鲁·马克·休伊森 具有后部运动引发器和无摩擦连接件的振动设备以及用于补偿载荷和控制波形的方法
CN102036639A (zh) * 2008-03-31 2011-04-27 松下电工株式会社 运动辅助设备
CN201676132U (zh) * 2010-06-02 2010-12-22 王秀康 减肥健身机
CN103611269A (zh) * 2013-11-20 2014-03-05 厦门蒙发利科技(集团)股份有限公司 一种摇摆健身机
CN205286850U (zh) * 2015-12-25 2016-06-08 宓胜杰 一种具有自动按摩功能的新型单人床
CN206491984U (zh) * 2016-11-15 2017-09-15 松研科技(杭州)有限公司 一种塑身震动机

Similar Documents

Publication Publication Date Title
US8757716B2 (en) Control device for a children's bouncer and infant support
US20120066833A1 (en) Motion device for children
EP1725145B1 (en) Rocking apparatus for an infant enclosure
CN102223825B (zh) 电磁式儿童摇椅
US10016069B2 (en) Control device for a children's bouncer and infant support
JP2007330790A (ja) 線型のモータを具えた線型のモータを具えた振動トレーニング装置
US20140321022A1 (en) Magnetic Levitation Apparatus
CN109907410A (zh) 按摩振子及其控制方法和按摩腰带
JP2009274184A (ja) 顔表情表出ロボットの表情可変構造
US7628672B2 (en) Figurine stand with vibrating action
WO2019052204A1 (zh) 一种振动型运动装置
PH12013000167A1 (en) Vibratory exercise apparatus having electricity generating function
JP5898774B2 (ja) 力覚提示装置
CN210124351U (zh) 按摩振子和按摩腰带
KR20130115538A (ko) 진동퍼프
CN103565144B (zh) 摇动装置及使用该装置的摇椅、摇床、摇动木马
CN207385886U (zh) 一种振动器
KR101603846B1 (ko) 교통안내 마네킹 로봇장치
AU2014402000A1 (en) Device for generating a rocking movement in supports for babies
CN104106947A (zh) 一种应用于摇椅的震动器
WO2018154770A1 (ja) 安眠誘導装置
CN204071398U (zh) 一种应用于摇椅的震动器
EP2648572A1 (en) Mattress arrangement
KR200300395Y1 (ko) 전동 침대 요람
CN206313542U (zh) 磁悬浮补水仪

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18855426

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18855426

Country of ref document: EP

Kind code of ref document: A1