WO2014101829A1 - 洗衣机及洗衣机驱动方法 - Google Patents

洗衣机及洗衣机驱动方法 Download PDF

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Publication number
WO2014101829A1
WO2014101829A1 PCT/CN2013/090670 CN2013090670W WO2014101829A1 WO 2014101829 A1 WO2014101829 A1 WO 2014101829A1 CN 2013090670 W CN2013090670 W CN 2013090670W WO 2014101829 A1 WO2014101829 A1 WO 2014101829A1
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WIPO (PCT)
Prior art keywords
clutch
inner cylinder
pulsator
washing machine
primary coil
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2013/090670
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English (en)
French (fr)
Inventor
尹翔
劳春峰
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Haier Group Corp
Haier Group Technology Research and Development Center
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Haier Group Corp
Haier Group Technology Research and Development Center
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Publication of WO2014101829A1 publication Critical patent/WO2014101829A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/30Driving arrangements 
    • D06F37/40Driving arrangements  for driving the receptacle and an agitator or impeller, e.g. alternatively
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/30Driving arrangements 

Definitions

  • the invention relates to the field of washing machines, in particular to a washing machine and a washing machine driving method.
  • the traditional washing machine structure is composed of an inner cylinder, an outer cylinder, a pulsator, a transmission system, a control system, etc.
  • the inner cylinder does not rotate, and the wave rotates in the forward and reverse directions, and the water in the inner cylinder and the clothes are rotated to realize washing.
  • such a washing method has the following problems: Low washing degree, weak water flow intensity, and entanglement of clothes.
  • the present invention provides a washing machine and a washing control method which can effectively enhance the water flow intensity and improve the washing degree.
  • a washing machine comprising an inner cylinder, an outer cylinder, a pulsator and a clutch, wherein the inner cylinder is connected to an input end of the clutch, the pulsator is connected to an output end of the clutch, and the pulsator passes through the clutch Rotate in the same direction or in the opposite direction.
  • a washing machine driving method as described above comprising: connecting an input end of the clutch to the inner cylinder, connecting the output end of the clutch to the pulsator, and the pulsator is rotated in the same direction or in the opposite direction by the clutch under the action of the inner cylinder.
  • the washing machine provided by the invention adopts a washing machine driving method, and controls the inner cylinder and the pulsator to rotate in the same direction or in the opposite direction through the clutch, thereby effectively improving the water flow intensity during the washing process, thereby improving the washing degree and effectively improving the problem of the clothing entanglement.
  • FIG. 1 is a schematic structural view of an embodiment of a washing machine provided by the present invention.
  • FIG. 2 is a top plan view of an embodiment of a washing machine provided by the present invention.
  • FIG. 3 is a schematic structural view of an embodiment of a clutch in a washing machine provided by the present invention.
  • 4 is a schematic structural view of a second embodiment of a clutch in a washing machine provided by the present invention.
  • the washing machine provided in this embodiment includes:
  • the outer cylinder 101 is provided with a primary coil ⁇ in the circumferential direction thereof, and the inner cylinder 102 is correspondingly provided with a secondary sensing portion, and the primary coil ⁇ generates a magnetic force with the secondary sensing portion to drive the inner cylinder 102 to rotate when energized.
  • the primary coil ⁇ includes a first primary coil 105 and a second primary coil 106, and the first primary coil 105 and the second primary coil 106 are symmetrically disposed on the outer cylinder with the axis of the outer cylinder 101, and the first primary coil 105 And the second primary coil 106 may be disposed on the inner or outer wall of the outer cylinder 101.
  • the first primary coil 105 and the second primary coil 105 are disposed on the inner wall of the outer cylinder 101; the secondary sensing portion corresponds to the first primary
  • the annular magnetic conductive portion 107 of the coil 105 and the second primary coil 106, the annular magnetic conductive portion 107 is an aluminum ring sleeved on the inner cylinder 102.
  • the annular magnetic conductive portion 107 and the A primary coil 105 and a second primary coil are disposed correspondingly to the open ends of the inner cylinder 102 and the outer cylinder 101.
  • the clutch 104 in the washing machine includes: an internal spur 108, a sun gear 109 disposed in the internal spur 108, and a planetary gear 110.
  • the planetary gear 110 is at least two, and the sun gear 109 The planetary gears 110 mesh with each other, and the planetary gears 110 and the internal gears 108 are engaged with each other.
  • the internal gears 108 are connected to the inner cylinder 102 as input ends of the clutch, and the sun gear 109 is connected to the pulsator 103 as an output end of the clutch.
  • the bottom of the inner cylinder 102 is fixedly provided with a connecting shaft 116, and the connecting shaft 116 is hollow.
  • the inner cylinder 102 is coupled with the inner dam 108 via a connecting shaft 116, and the pulsator 103 is connected to the pulsator shaft 115, and the pulsator shaft 115 is disposed.
  • the pulsator 103 is coupled to the sun gear 109 via a pulsator shaft, that is, the inner spur 108 of the clutch is used as a power input end, and the sun gear 109 is used as a power output end.
  • the clutch 104 further includes a brake wheel 111.
  • the brake wheel 111 is coupled with the planetary gear 110.
  • the brake wheel 111 is coupled to the carrier for controlling the state of the planetary gear 110. .
  • the working state of the washing machine includes a washing state and a spin state.
  • the brake wheel 111 is in a braking state, so that the planetary gear 110 can only rotate and cannot revolve around the sun gear 109, and the inner cylinder 102 is
  • the magnetic force of the primary coil and the secondary sensing portion rotates to drive the internal spur 108 to rotate, and the internal spur 108 drives the planetary gear 110 to rotate when rotating, thereby driving the sun gear 109 to rotate, and the rotation direction of the sun gear 109 is
  • the rotation direction of the planetary gears 110 is reversed, so that the pulsator 103 to which the sun gear 109 is connected rotates in the opposite direction to the inner cylinder 102.
  • the clutch 104 further includes a clutch block.
  • the clutch block includes a first clutch block 112 and a second clutch block 113 that cooperate with each other.
  • the first clutch block 112 and the second clutch block 113 are coupled to the internal spurs 108 and the planetary gears. 110 and the brake wheel 111 are cooperatively disposed.
  • the brake wheel 111 is in a free state, and the first clutch block 113 protrudes into contact with the second clutch block 114, thereby causing the brake wheel 111 and the planet.
  • the wheel 110, the sun gear 109 and the internal gear 108 are locked to form an integral body.
  • the planetary gear 110 can rotate with the internal gear 108 but cannot rotate.
  • the inner cylinder 102 drives the internal gear 108 and the planetary gear 110 and the sun gear 109. Rotating together, in turn, causes the pulsator 103 to rotate, and the direction of rotation is the same as that of the inner cylinder 102.
  • the clutch 104 further includes a clutch device 114.
  • the clutch device 114 includes a first clutch member 117 and a second clutch member 118, and the clutch device 114 and the internal gear 108 and the sun gear. 109 and the brake wheel 111 are cooperatively disposed, wherein the second clutch member 118 is coupled to the brake wheel 111, the first clutch member 117 is coupled with the sun gear, and when the washing machine is in the washing state, the first clutch member 117 and the second clutch The component 118 is separated, and the brake wheel is in the braking state.
  • the planetary gear 110 can only rotate and cannot revolve the sun gear 109.
  • the planetary gear 110 drives the sun gear 109 to rotate in the reverse direction, thereby making the pulsator Rotating in reverse with the inner cylinder;
  • the washing IL is in the dry state, the brake wheel ill is in a free state, at this time, the first clutch member 117 is engaged with the second clutch member 118 upward, so that the planetary gear 110 and the sun gear 109 There is no relative displacement between them, so that the brake wheel 111, the planetary gear 110 and the sun gear 109 are locked, and integrated with the clutch device 114, the planetary gear 110 can rotate together with the sun gear but cannot rotate
  • the rings of teeth 102 to drive the inner cylinder 108 is rotated when driven by the planetary gear and the sun gear 110 rotates together 109-, so as to drive the pulsator 103 rotates, the same rotation direction of the inner cylinder 102.
  • the washing machine controls the reverse rotation of the inner cylinder and the pulsator during the washing process by the clutch, thereby effectively improving the strength of the water flow impact, thereby improving the cleaning degree, and effectively improving the problem of the entanglement of the clothes, and controlling during the drying process.
  • the inner cylinder and the pulsator rotate in the same direction to improve the drying efficiency.
  • the motor for driving the inner cylinder is disposed at the open end of the inner cylinder and the outer cylinder, and the lower end of the inner cylinder is not provided with a motor, which can effectively reduce the overall volume of the washing machine.
  • the washing machine driving method provided by the embodiment further includes: using an outer cylinder of the washing machine as a primary coil of the induction motor, and using an inner cylinder of the washing machine as a secondary sensing portion of the induction motor, the primary coil is energized and the time The stage sensing portion generates a magnetic force to drive the inner cylinder to rotate.
  • the inner ring of the clutch Connect the inner ring of the clutch to the inner cylinder, connect the sun gear of the clutch to the pulsator, that is, the internal gear as the power input end, the sun gear as the power output end, and the clutch under the control of the brake wheel, the clutch or the clutch device
  • the inner cylinder rotates in the same direction or in the opposite direction as the pulsator.
  • the working state of the washing machine includes a washing state, and the primary wire is energized in the washing state, so that a magnetic force is generated between the primary wire and the secondary sensing portion to drive the inner cylinder to rotate, the brake wheel controls the planetary wheel to rotate, and the inner cylinder
  • the connected internal gears rotate the planetary wheel when rotating, so that the sun wheel drives the pulsator and the inner cylinder to rotate in the opposite direction.
  • the working state of the washing machine also includes a dry state, in which the brake wheel is in a free state, and the brake wheel, the planetary gear and the internal gear are locked by the clutch block to form a whole, and the planetary gear can be connected with the internal gear.
  • the inner cylinder drives the inner gear and the planetary wheel to rotate together to drive the sun wheel to rotate, and then the pulsator rotates, and the rotation direction is the same as the inner cylinder.
  • the brake wheel is in a free state in the dry state, and the brake wheel, the planetary gear and the sun gear are locked by the clutch device to form a whole, and the planetary gear can rotate together with the sun gear.
  • the inner cylinder drives the inner gear to rotate, and the planetary gear and the sun wheel rotate together, thereby driving the pulsator to rotate, rotating direction and the inner cylinder.
  • washing machine embodiment for the specific structure of the washing machine.
  • the washing machine driving method provided by the embodiment controls the inner cylinder and the washing process through the clutch
  • the reverse rotation of the pulsator effectively increases the strength of the water flow impact, thereby improving the cleaning degree, and can effectively improve the problem of the entanglement of the clothes.
  • the inner cylinder and the pulsator are controlled to rotate in the same direction to improve the drying efficiency.
  • the motor that drives the inner cylinder to rotate is disposed at the open end of the inner cylinder and the outer cylinder, and the lower end of the inner cylinder is not provided with a motor, which can effectively reduce the overall volume of the washing machine.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Main Body Construction Of Washing Machines And Laundry Dryers (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

本发明提供一种洗衣机及洗衣机驱动方法,其中洗衣机包括:内筒、外筒、波轮及离合器,内筒连接离合器的输入端,波轮连接离合器的输出端,波轮通过离合器在内筒作用下同向或反向旋转,通过离合器控制内筒和波轮同向或反向旋转,在洗涤过程中可以有效地提高水流强度,进而提高洗净度,有效地改善衣物缠绕的问题。

Description

洗衣机及洗衣机驱动方法
技术领域
本发明涉及洗衣机领域, 尤其涉及一种洗衣机及洗衣机驱动方法,
背景技术
传统的洗衣机结构是由内筒、 外筒、 波轮、 传动系统、 控制系统等构 成, 洗衣时, 内筒不转动, 波^ t正反方向旋转, 带动内筒内的水和衣物 转动实现洗涤, 但是这样的洗涤方式存在以下问题: 洗净度低, 水流强度 弱, 衣物易产生缠绕。
发明内容
为解决上述问题, 本发明提供一种洗衣机及洗涤控制方法, 能有效的 加强水流强度, 提高洗净度。
一种洗衣机, 包括内筒、 外筒、 波轮及离合器, 所述内筒连接所述离 合器的输入端, 所述波轮连接所述离合器的输出端, 所述波轮通过所述离 合器在内筒作用下同向或反向旋转。
一种上述的洗衣机驱动方法, 包括: 将离合器的输入端连接内筒, 将 离合器的输出端连接波轮, 波轮通过所述离合器在内筒作用下同向或反向 旋转。
本发明提供的洗衣机以洗衣机驱动方法, 通过离合器控制内筒和波轮 同向或反向旋转, 在洗涤过程中可以有效地提高水流强度, 进而提高洗净 度, 有效地改善衣物缠绕的问题。 附图说明
图 1 为本发明提供的洗衣机一种实施例的结构示意图。
图 2为本发明提供的洗衣机一种实施例的俯视图。
图 3为本发明提供的洗衣机中的离合器一种实施例的结构示意图。 图 4为本发明提供的洗衣机中的离合器第二种实施例的结构示意图。 具体实施方式
下面参照附图来说明本发明的实施例。 在本发明的一个附图或一种实 施方式中描述的元素和特征可以与一个或者更多个其他附图或实施方式 中示出的元素和特征相结合。 应当注意, 为了清楚目的, 附图和说明中省 略了与本发明无关的、 本领域普通技术人员已知的部件和处理的表示和描 述。
洗 rti实施例:
如图 1所示, 本实施例提供的洗衣机包括:
内筒 102、 外筒 101、 波轮 103以及离合器 104, 内筒 102连接离合器 104的输入端, 波轮 103连接离合器 104的输出端, 波轮 103通过离合器 104在内筒作用下同向或反向旋转。
如图 2所示, 外筒 101沿其周向设置有初级线圏, 内筒 102对应设置 有次级感应部, 初级线圏在通电时与次级感应部产生磁作用力驱动内筒 102旋转;初级线圏包括第一初级线圏 105和第二初级线圏 106,第一初级 线圏 105和第二初级线圏 106以外筒 101的轴线对称设置于外筒上, 第一 初级线圏 105和第二初级线圏 106可设置在外筒 101的内壁或外壁, 优选 地, 将第一初级线圏 105和第二初级线圏 105设置在外筒 101的内壁; 次 级感应部为对应第一初级线圏 105和第二初级线圏 106的环形导磁部 107, 环形导磁部 107为套设在内筒 102上的铝环, 作为一种可选的实施方式, 环形导磁部 107 以及第一初级线圏 105 和第二初级线圏对应设置在内筒 102和外筒 101的开口端。
如图 3所示,本实施例提供的洗衣机中的离合器 104包括:内齿圏 108、 设置在内齿圏 108内的太阳轮 109以及行星轮 110, 行星轮 110至少为两 个, 太阳轮 109、 行星轮 110相互啮合, 行星轮 110与内齿圏 108相互啮 合, 其中内齿圏 108作为离合器的输入端与内筒 102连接, 太阳轮 109作 为离合器的输出端与波轮 103连接。
具体地, 内筒 102的底部圆心固定设置有连接轴 116, 连接轴 116为 中空, 内筒 102通过连接轴 116与内齿圏 108配合连接, 波轮 103与波轮 轴 115连接, 波轮轴 115设置在连接轴 116内, 波轮 103通过波轮轴与太 阳轮 109配合连接, 即, 将离合器的内齿圏 108作为动力输入端, 太阳轮 109作为动力输出端。 作为一种可选的实施方式, 离合器 104还包括制动轮 111, 制动轮 111 与行星轮 110配合连接, 具体地, 制动轮 111是与行星架相连, 用于控制 行星轮 110的状态。
本实施例提供的洗衣机的工作状态包括洗涤状态和甩干状态, 在洗涤 状态下, 制动轮 111处于制动状态, 使得行星轮 110只能自转而不能绕太 阳轮 109公转, 内筒 102在初级线圏以及次级感应部的磁作用力下旋转, 从而带动内齿圏 108旋转, 内齿圏 108在旋转时带动行星轮 110自转, 从 而带动太阳轮 109转动, 太阳轮 109的转动方向与行星轮 110的自转方向 相反, 使得太阳轮 109连接的波轮 103与内筒 102反向旋转。
离合器 104还包括离合块, 如图 3所示, 离合块包括相互配合的第一 离合块 112和第二离合块 113, 第一离合块 112和第二离合块 113与内齿 圏 108、 行星轮 110以及制动轮 111配合设置, 当洗 IL处于甩干状态时, 制动轮 111处于自由状态, 第一离合块 113伸入并与第二离合块 114接触, 从而使制动轮 111、行星轮 110、 太阳轮 109以及内齿圏 108锁住, 形成一 个整体, 行星轮 110可与内齿圏 108—起转动但不能自转, 内筒 102带动 内齿圏 108和行星轮 110以及太阳轮 109一起转动, 进而带动波轮 103旋 转, 旋转方向与内筒 102相同。
在甩干状态下内筒 102与波轮 103同向旋转, 可以有效地提高甩干效 率。
作为一种可选的实施方式, 如图 4所示, 离合器 104还包括离合装置 114, 离合装置 114包括第一离合部件 117和第二离合部件 118, 离合装置 114与内齿圏 108、太阳轮 109以及制动轮 111配合设置, 其中第二离合部 件 118与制动轮 111 合连接, 第一离合部件 117与太阳轮配合连接, 当 洗衣机处于洗涤状态时, 第一离合部件 117和第二离合部件 118分离, 此 时制动轮处于制动状态, 行星轮 110只可自转而不能饶太阳轮 109公转, 内齿圏 108旋转时经行星轮 110带动太阳轮 109反向旋转, 从而使波轮和 内筒反向旋转; 当洗 IL处于甩干状态时, 制动轮 i l l处于自由状态, 此 时第一离合部件 117向上与第二离合部件 118卡合, 使得行星轮 110与太 阳轮 109之间没有相对位移, 从而使制动轮 111、 行星轮 110以及太阳轮 109锁住, 与离合装置 114形成一个整体, 行星轮 110可与太阳轮一起转 动但不能自转, 内筒 102带动内齿圏 108转动时带动行星轮 110和太阳轮 109—起旋转, 进而带动波轮 103旋转, 旋转方向与内筒 102相同。 本实施例提供的洗衣机, 通过离合器控制洗涤过程中内筒与波轮反向 旋转, 有效提高水流冲击的强度, 进而提高洗净度, 并能够有效改善衣物 缠绕的问题, 在甩干过程中控制内筒与波轮同向旋转, 提高甩干效率, 此 外, 驱动内筒旋转的电机设置在内筒和外筒的开口端, 内筒下端不设置电 机, 能有效减小洗衣机的整体体积。
洗衣机驱动方法实施例:
本实施例提供的洗衣机驱动方法包括:
将离合器的输入端连接内筒, 将离合器的输出端连接波轮, 波轮通过 离合器在内筒作用下同向或反向旋转。
此外, 本实施例提供的洗衣机驱动方法还包括: 将洗衣机的外筒作为 感应电机的初级线圏, 将洗衣机的内筒作为感应电机的次级感应部, 初级 线圏在通电时与所述次级感应部产生磁作用力驱动内筒旋转。
将离合器的内齿圏连接内筒, 将离合器的太阳轮连接波轮, 即将内齿 圏作为动力输入端, 太阳轮作为动力输出端, 离合器在制动轮、 离合块或 离合装置的控制下使内筒与波轮同向或反向旋转。
洗衣机的工作状态包括洗涤状态, 在洗涤状态下为初级线圏通电, 以 使初级线圏与次级感应部之间产生磁作用力驱动内筒旋转, 制动轮控制行 星轮自转, 与内筒相连的内齿圏在旋转时带动行星轮自转, 以使太阳轮带 动波轮与内筒反向旋转。
洗衣机的工作状态还包括 干状态, 在甩干状态下使制动轮处于自由 状态, 通过离合块使制动轮、 行星轮以及内齿圏锁住, 形成一个整体, 行 星轮可与内齿圏一起转动但不能自转, 内筒带动内齿圏和行星轮一起转动 时带动太阳轮旋转, 进而带动波轮旋转, 旋转方向与内筒相同。
作为一种可选的实施方式, 在甩干状态下制动轮处于自由状态, 通过 离合装置控制制动轮、 行星轮以及太阳轮锁住, 形成一个整体, 行星轮可 与太阳轮一起转动但不能自转, 内筒带动内齿圏转动时带动行星轮和太阳 轮一起旋转, 进而带动波轮旋转, 旋转方向与内筒。
洗衣机具体结构请参考洗衣机实施例。
本实施例提供的洗衣机驱动方法, 通过离合器控制洗涤过程中内筒与 波轮反向旋转, 有效提高水流冲击的强度, 进而提高洗净度, 并能够有效 改善衣物缠绕的问题, 在甩干过程中控制内筒与波轮同向旋转, 提高甩干 效率, 此外, 驱动内筒旋转的电机设置在内筒和外筒的开口端, 内筒下端 不设置电机, 能有效减小洗衣机的整体体积。
虽然已经详细说明了本发明及其优点, 但是应当理解在不超出由所附 的权利要求所限定的本发明的精神和范围的情况下可以进行各种改变、 替 代和变换。 而且, 本申请的范围不仅限于说明书所描述的过程、 设备、 手 段、 方法和步骤的具体实施例。 本领域内的普通技术人员从本发明的公开 内容将容易理解, 根据本发明可以使用执行与在此所述的相应实施例基本 相同的功能或者获得与其基本相同的结果的、 现有和将来要被开发的过 程、 设备、 手段、 方法或者步骤。 因此, 所附的权利要求旨在它们的范围 内包括这样的过程、 设备、 手段、 方法或者步骤。

Claims

权利要求
1、 一种洗衣机, 包括内筒、 外筒、 波轮及离合器, 其特征在于, 所述 内筒连接所述离合器的输入端, 所述波轮连接所述离合器的输出端, 所述 波轮通过所述离合器在内筒作用下同向或反向旋转。
2、根据权利要求 1所述的洗衣机, 其特征在于, 所述外筒沿其周向设 置有初级线圏, 所述内筒对应设置有次级感应部, 所述初级线圏在通电时 与所述次级感应部产生磁作用力驱动内筒旋转。
3、根据权利要求 2所述的洗衣机, 其特征在于, 所述初级线圏包括第 一初级线圏和第二初级线圏, 所述第一初级线圏和第二初级线圏以外筒的 轴线对称设置于外筒上, 所述次级感应部为对应所述第一初级线圏和第二 初级线圏的环形导磁部。
4、根据权利要求 2所述的洗衣机, 其特征在于, 所述离合器包括: 内 齿圏、 设置在所述内齿圏内相互啮合的太阳轮和至少两个行星轮, 所述内 齿圏作为离合器的输入端与内筒连接, 所述太阳^ f 为离合器的输出端与 波轮连接。
5、根据权利要求 4所述的洗衣机, 其特征在于, 所述内筒底部圆心固 定设置有中空的连接轴, 所述内筒通过所述连接轴与所述内齿圏配合连 接, 所述波轮连接波轮轴, 所述波轮轴设置在所述连接轴内, 所述波轮通 过所述波轮轴连接所述太阳轮。
6、根据权利要求 5所述的洗衣机, 其特征在于, 所述离合器还包括制 动轮, 所述制动轮与所述行星轮配合连接。
7、根据权利要求 5所述的洗衣机, 其特征在于, 所述离合器还包括离 合块, 所述离合块与所述内齿圏、 行星轮以及制动轮配合设置。
8、根据权利要求 5所述的洗衣机, 其特征在于, 所述离合器还包括离 合装置, 所述离合装置与所述内齿圏、 太阳轮以及制动轮配合连接。
9、 一种洗衣机驱动方法, 其特征在于, 包括: 将离合器的输入端连接 内筒, 将离合器的输出端连接波轮, 波轮通过所述离合器在内筒作用下同 向或反向旋转。
10、 根据权利要求 9所述的洗衣机驱动方法, 其特征在于, 所述方法 还包括: 通电时, 通过设置在外筒上的初级线圏和内筒上的次级感应部之 间产生的磁作用力驱动内筒旋转。
11、 根据权利要求 9所述的洗衣机驱动方法, 其特征在于, 将离合器 的内齿圏连接内筒, 将离合器的太阳轮连接波轮, 所述离合器在制动轮、 离合块或离合装置的控制下使所述内筒与波轮同向或反向旋转。
12、根据权利要求 11所述的洗衣机驱动方法, 其特征在于, 在所洗涤 状态下所述内筒通过离合器带动波轮转动, 且所述波轮与所述内筒反向旋 转。
13、根据权利要求 11所述的洗衣机驱动方法, 其特征在于, 在甩干状 态下所述内筒通过离合器带动波轮转动, 且所述波轮与所述内筒同向旋 转。
PCT/CN2013/090670 2012-12-29 2013-12-27 洗衣机及洗衣机驱动方法 Ceased WO2014101829A1 (zh)

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