WO2018010286A1 - 一种基于球形滚筒旋转的清洗机 - Google Patents

一种基于球形滚筒旋转的清洗机 Download PDF

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Publication number
WO2018010286A1
WO2018010286A1 PCT/CN2016/097931 CN2016097931W WO2018010286A1 WO 2018010286 A1 WO2018010286 A1 WO 2018010286A1 CN 2016097931 W CN2016097931 W CN 2016097931W WO 2018010286 A1 WO2018010286 A1 WO 2018010286A1
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Prior art keywords
spherical
base
water storage
roller
rotating shaft
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PCT/CN2016/097931
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English (en)
French (fr)
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顾祥茂
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顾祥茂
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Publication of WO2018010286A1 publication Critical patent/WO2018010286A1/zh

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    • 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 
    • 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
    • D06F37/02Rotary receptacles, e.g. drums
    • 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
    • D06F37/20Mountings, e.g. resilient mountings, for the rotary receptacle, motor, tub or casing; Preventing or damping vibrations

Definitions

  • the invention belongs to the technical field of washing machines, and in particular relates to a washing machine based on the rotation of a spherical drum.
  • washing machines includes single barrels, double barrels, fully automatic single barrels, drum washing machines, etc.
  • one barrel of double barrel washing machine is used for washing clothes
  • another barrel is used for drying
  • clothes need to be artificially washed from the washing barrel to the drying barrel.
  • Participants Fully automatic single barrel and drum washing machines are fully automatic and do not require human intervention.
  • the drum washing principle makes it easier to wash clothes and prevent clothes from being broken than the vertical laundry principle.
  • people's desire and expectation for the improvement of the washing machine's washing effect and efficiency are constantly strengthening. Designing a more efficient washing machine based on the current drum washing machine will have a strong demand.
  • the present invention contemplates a cleaning machine based on the rotation of a spherical drum to solve the above problems.
  • the present invention discloses a cleaning machine based on the rotation of a spherical drum, which is realized by the following technical solutions.
  • the utility model relates to a cleaning machine based on spherical drum rotation, which is characterized in that it comprises a side shell, a top cover, a spherical roller, a roller stop piece, a roller support, a base bracket, a motor, a base, a water storage cavity, a drive mechanism, a rotating shaft and a motor.
  • the base has a base shaft hole; the water storage chamber is mounted on the base, and the water storage chamber is provided with a water storage chamber shaft hole; the rotating shaft is a motor shaft and passes through the base shaft hole and the water storage chamber shaft hole to be connected with the lower side of the driving mechanism;
  • the eight roller supports are divided into two groups and are respectively mounted on two symmetrical side shells, the spherical roller is installed between the eight roller supports; the spherical roller can rotate at any angle on the eight roller supports; the driving mechanism drives the spherical roller by friction
  • the spherical roller has an opening for taking and receiving clothes, and the roller stopper piece is installed at the opening of the spherical roller.
  • the driving mechanism comprises a friction plate, a telescopic inner rod, a tension spring, a limit ring, a square sleeve, a telescopic sleeve hole, a spring support piece and an inner rod guide piece, wherein the square sleeve has a telescopic sleeve hole on one side of the square sleeve, and the expansion and contraction
  • the sleeve has symmetrically distributed guide grooves;
  • the friction plate is mounted on the spring support piece, the spring support piece is mounted on one end of the telescopic inner rod, and the two inner rod guide pieces are symmetrically mounted on the other end of the telescopic inner rod, and the telescopic inner rod is nested in
  • the telescopic sleeve hole of the square sleeve is slidably engaged with the guide groove in the telescopic sleeve hole;
  • the limit ring is mounted on the telescopic inner rod and is closely attached The surface
  • a plurality of small circular holes are uniformly formed on the above spherical roller.
  • the roller support comprises a ball support, a ball and a ball sleeve, wherein the ball is mounted inside the ball sleeve, the ball sleeve is mounted on the ball support, the ball support is mounted on the side shell, and the surface of the ball rubs against the surface of the spherical roller contact.
  • the use of balls ensures that the spherical drum rotates at any angle.
  • the bottom of the water storage chamber is provided with a drainage hole.
  • the rotation of the spherical drum can both clean the clothes and dry the clothes, the only difference being the opening and closing of the drain.
  • the drain port is closed; when it is dry, the remaining water flows into the water storage chamber through the circular hole in the drum, and the water in the water storage chamber flows out from the open drain port.
  • the rotating shaft and the rotating shaft hole of the water storage chamber and the rotating shaft hole of the base are kept sealed.
  • the seal ensures the use of water in the reservoir.
  • the spherical roller of the present invention is mounted on the side casing by the roller support, and the roller support has balls, which can rotate the spherical roller at an arbitrary angle.
  • a water storage chamber is mounted on the base below the spherical roller, and the water storage chamber can wrap a portion of the lower side of the spherical drum, and the water in the water storage chamber can enter the drum through the small round hole in the spherical roller to wet the clothes in the drum.
  • the driving mechanism is driven by a motor.
  • the driving mechanism is a friction plate with a telescopic rod. The friction plate is mounted on the telescopic rod and away from the center of the circle.
  • the friction plate When the rotating shaft rotates, the friction plate will be oriented due to the combined action of the centrifugal force and the tension spring.
  • the outer cymbal adjusting the rotational speed of the rotating shaft, can control the distance that the friction plate is pulled outward.
  • the rotating friction plate When the rotating shaft rotates to a certain rotational speed, the rotating friction plate will contact the lower side of the spherical roller to friction, thereby driving the spherical roller to rotate.
  • the spherical roller When the gap between the friction plates drives the spherical roller to rotate, because the unbalance of the clothes in the spherical roller, the spherical roller can be rotated at any angle, so that the spherical roller can rotate arbitrarily in the entire space, and the clothes can be fully and quickly performed more than the conventional drum washing machine. Cleaning.
  • the invention has a better use effect.
  • Figure 1 is a schematic view showing the internal structure distribution of the integral part.
  • Figure 2 is a cross-sectional view showing the internal structure of the integral member.
  • Figure 3 is a schematic view of the installation of the drive mechanism.
  • Figure 4 is a schematic view of the internal structure of the water storage chamber.
  • Figure 5 is a schematic view of the roller support installation.
  • Figure 6 is a schematic view of the roller support structure.
  • Figure 7 is a schematic view showing the structure of the drive mechanism.
  • Figure 8 is a schematic view showing the structure and movement principle of the drive mechanism.
  • Figure 9 is a schematic view of the structure of a square sleeve.
  • Figure 10 is a schematic view of the installation of the friction plate.
  • the label name 1, side shell, 2, top cover, 3, spherical roller, 4, roller stop plate, 5, roller support, 6, base bracket, 7, motor, 8, base, 9, water storage chamber 10, drive mechanism, 11, shaft, 12, motor support, 13, water storage shaft shaft hole, 14, drainage hole, 15, base shaft hole, 16, ball support, 17, ball, 18, ball sleeve, 19, Friction plate, 20, telescopic inner rod, 21, tension spring, 22, limit ring, 23, square sleeve, 24, telescopic sleeve hole, 25, spring support, 26, inner rod guide.
  • FIG. 1 it includes side shell, top cover, spherical roller, roller stop plate, roller support, base bracket, motor, base, water storage chamber, drive mechanism, shaft, motor support, water storage chamber shaft Hole and base shaft hole, wherein as shown in Fig. 1, the top cover is mounted on the base through the side shell, and the four base brackets are mounted on the four corners on the lower side of the base; as shown in Fig. 2, the motor is mounted on the motor support.
  • the lower side of the middle of the base as shown in Figure 5, has a base shaft hole in the middle of the base; as shown in Figure 2, the water storage chamber is mounted on the base, and as shown in Figure 4, the water storage chamber is opened with a water storage chamber shaft hole As shown in Fig. 2 and Fig.
  • the rotating shaft is the motor rotating shaft and is connected to the lower side of the driving mechanism through the base rotating shaft hole and the water storage chamber rotating shaft hole; as shown in Fig. 5, the eight roller supporting members are divided into two groups and are respectively installed in two.
  • the spherical roller is installed between the eight roller supports; the spherical roller can rotate at any angle on the eight roller supports; the driving mechanism drives the lower side of the spherical roller by friction; as shown in Fig. 1, the spherical roller has Take the opening of the clothes, the roller stop The opening in the spherical roller.
  • the driving mechanism includes a friction plate, a telescopic inner rod, a tension spring, a limit ring, a square sleeve, a telescopic sleeve hole, a spring support piece, and an inner rod guide piece, wherein as shown in FIG. a telescopic sleeve hole is formed on one side of the square sleeve block, and a symmetrically distributed guide groove is formed in the telescopic sleeve hole; as shown in FIGS. 7 and 10, the friction plate is mounted on the spring support piece, and the spring support piece is mounted on one end of the telescopic inner rod.
  • Two inner rod guide pieces are symmetrically mounted on the other end of the telescopic inner rod, the telescopic inner rod is nested in the telescopic sleeve hole of the square sleeve and the inner rod guide piece is slidingly matched with the guide groove in the telescopic sleeve hole; the limit ring is installed On the telescopic inner rod and close to the square sleeve surface; tension spring nesting Outside the telescopic inner rod, one end is mounted on the spring support piece, and the other end is mounted on the limit ring; the lower side of the square sleeve is mounted on the rotating shaft.
  • a plurality of small round holes are evenly opened on the spherical roller.
  • the roller support comprises a ball support, a ball and a ball sleeve, wherein the ball is mounted inside the ball sleeve, the ball sleeve is mounted on the ball support, the ball support is mounted on the side shell, and the surface of the ball is in frictional contact with the surface of the spherical roller. .
  • the use of balls ensures that the spherical drum rotates at any angle.
  • the bottom of the water storage chamber is provided with a drainage hole.
  • the rotation of the spherical drum can both clean the clothes and dry the clothes, the only difference being the opening and closing of the drain.
  • the drain port is closed; when it is dry, the remaining water flows into the water storage chamber through the circular hole in the drum, and the water in the water storage chamber flows out from the open drain port.
  • the rotating shaft and the rotating shaft hole of the water storage chamber and the rotating shaft hole of the base are kept sealed.
  • the seal ensures the use of water in the reservoir.
  • the spherical roller is mounted on the side casing by the roller support, and the roller support has balls, which can rotate the spherical roller at an arbitrary angle.
  • a water storage chamber is mounted on the base below the spherical roller, and the water storage chamber can wrap a portion of the lower side of the spherical drum, and the water in the water storage chamber can enter the drum through the small round hole in the spherical roller to wet the clothes in the drum.
  • the driving mechanism is driven by a motor.
  • the driving mechanism is a friction plate with a telescopic rod. The friction plate is mounted on the telescopic rod and away from the center of the circle.
  • the friction plate When the rotating shaft rotates, the friction plate will be oriented due to the combined action of the centrifugal force and the tension spring.
  • the outer cymbal adjusting the rotational speed of the rotating shaft, can control the distance that the friction plate is pulled outward.
  • the rotating friction plate When the rotating shaft rotates to a certain rotational speed, the rotating friction plate will contact the lower side of the spherical roller to friction, thereby driving the spherical roller to rotate.
  • the spherical roller When the gap between the friction plates drives the spherical roller to rotate, because the unbalance of the clothes in the spherical roller, the spherical roller can be rotated at any angle, so that the spherical roller can rotate arbitrarily in the entire space, and the clothes can be fully and quickly performed more than the conventional drum washing machine. Cleaning.
  • the invention has a better use effect.

Abstract

一种基于球形滚筒旋转的清洗机,它包括侧壳(1)、顶盖(2)、球形滚筒(3)、滚筒支撑(5)、电机(7)、储水腔(9)、驱动机构(10)、转轴(11),其中球形滚筒(3)通过滚筒支撑(5)安装在侧壳(1)上,能够使球形滚筒(3)任意角度旋转。球形滚筒(3)下方安装有储水腔(9),储水腔(9)能够包裹球形滚筒(3)下侧一部分。清洗时,通过电机(7)带动驱动机构(10),当转轴(11)转动时,因为离心力和拉伸弹簧(21)的共同作用,摩擦片(19)会向外甩,调节转轴(11)转速,能够控制摩擦片(19)向外甩出的距离,当转轴(11)转动到一定转速后,旋转的摩擦片(19)会与球形滚筒(3)下侧接触摩擦,进而带动球形滚筒(3)转动。因为球形滚筒(3)中的衣物的不平衡,会使球形滚筒(3)任意角度旋转,达到球形滚筒(3)在整个空间中任意转动,具有较好的使用效果。

Description

一种基于球形滚筒旋转的清洗机 所属技术领域
本发明属于洗衣机技术领域,尤其涉及一种基于球形滚筒旋转的清洗机。
背景技术
目前洗衣机的发展包括单桶、双桶、全自动单桶、滚筒洗衣机等,其中双桶洗衣机一个桶用于洗衣服,另一个桶用于甩干,衣服从洗衣桶到甩干桶中需要人为的参与。全自动单桶和滚筒洗衣机均是全自动无需人为参与的,滚筒洗衣原理相比于立式洗衣原理更容易洗干净衣服和防止了衣服被卷破。随着洗衣机的发展,人们对洗衣机洗衣效果和效率的提高的渴望和期待在不断的加强,在目前滚筒洗衣机基础上设计一款效率更高的洗衣机将具有很强的需求。
本发明设计一种基于球形滚筒旋转的清洗机解决如上问题。
发明内容
为解决现有技术中的上述缺陷,本发明公开一种基于球形滚筒旋转的清洗机,它是采用以下技术方案来实现的。
一种基于球形滚筒旋转的清洗机,其特征在于:它包括侧壳、顶盖、球形滚筒、滚筒挡口片、滚筒支撑、底座支架、电机、底座、储水腔、驱动机构、转轴、电机支撑、储水腔转轴孔、底座转轴孔,其中顶盖通过侧壳安装在底座上,四根底座支架安装在底座下侧的四个角上;电机通过电机支撑安装在底座中间下侧,底座中间开有底座转轴孔;储水腔安装在底座上,且储水腔开有储水腔转轴孔;转轴为电机转轴且穿过底座转轴孔和储水腔转轴孔与驱动机构下侧连接;8根滚筒支撑分成两组且分别安装在两个对称的侧壳上,球形滚筒安装在8根滚筒支撑之间;球形滚筒能够在8根滚筒支撑上任意角度旋转;驱动机构通过摩擦驱动球形滚筒下侧;球形滚筒具有取放衣服的开口,滚筒挡口片安装在球形滚筒开口处。
上述驱动机构包括摩擦片、伸缩内杆、拉伸弹簧、限位环、方形套块、伸缩套孔、弹簧支片、内杆导片,其中方形套块一侧上方开有伸缩套孔,伸缩套孔中具有对称分布的导槽;摩擦片安装在弹簧支片上,弹簧支片安装在伸缩内杆一端,两个内杆导片对称地安装在伸缩内杆另一端,伸缩内杆嵌套于方形套块的伸缩套孔中且内杆导片与伸缩套孔中的导槽滑动配合;限位环安装在伸缩内杆上且紧贴 方形套块表面;拉伸弹簧嵌套在伸缩内杆外侧,且一端安装在弹簧支片上,另一端安装在限位环上;方形套块下侧安装在转轴上。
作为本技术的进一步改进,上述球形滚筒上还均匀开有许多细小圆孔。
作为本技术的进一步改进,上述滚筒支撑包括滚珠支撑、滚珠、滚珠套,其中滚珠安装在滚珠套内部,滚珠套安装在滚珠支撑上,滚珠支撑安装在侧壳上,滚珠表面与球形滚筒表面摩擦接触。滚珠的使用能够保证球形滚筒任意角度旋转。
作为本技术的进一步改进,上述储水腔底部开有排水孔。球形滚筒旋转既能够清洗衣物也能够对衣服甩干,唯一不同的就是排水口的打开与关闭。清洗时排水口关闭;甩干时,所剩下的水会通过滚筒上的圆孔流入到储水腔中,储水腔中的水从打开的排水口中流出。
作为本技术的进一步改进,上述转轴与储水腔转轴孔、底座转轴孔均保持密封。密封保证了储水腔储水的使用要求。
相对于传统的洗衣机技术,本发明中球形滚筒通过滚筒支撑安装在侧壳上,滚筒支撑具有滚珠,能够使球形滚筒任意角度旋转。球形滚筒下方在底座上安装有储水腔,储水腔能够包裹球形滚筒下侧一部分,储水腔中的水能够通过球形滚筒上细小圆孔进入滚筒中,弄湿滚筒中的衣服。清洗时,通过电机带动驱动机构,驱动机构为带有伸缩杆的摩擦片,摩擦片安装在伸缩杆上且远离圆心,当转轴转动时,因为离心力和拉伸弹簧的共同作用,摩擦片会向外甩,调节转轴转速,能够控制摩擦片向外甩出的距离,当转轴转动到一定转速后,旋转的摩擦片会与球形滚筒下侧接触摩擦,进而带动球形滚筒转动。当摩擦片间隙带动球形滚筒转动时,因为球形滚筒中的衣物的不平衡,会使球形滚筒任意角度旋转,达到球形滚筒在整个空间中任意转动,比常规滚筒洗衣机更能充分快速地对衣服进行清洗。本发明具有较好的使用效果。
附图说明
图1是整体部件内部结构分布示意图。
图2是整体部件内部结构剖视图。
图3是驱动机构安装示意图。
图4是储水腔内部结构示意图。
图5是滚筒支撑安装示意图。
图6是滚筒支撑结构示意图。
图7是驱动机构结构示意图。
图8是驱动机构结构透视及运动原理示意图。
图9是方形套块结构示意图。
图10是摩擦片安装示意图。
图中标号名称:1、侧壳,2、顶盖,3、球形滚筒,4、滚筒挡口片,5、滚筒支撑,6、底座支架,7、电机,8、底座,9、储水腔,10、驱动机构,11、转轴,12、电机支撑,13、储水腔转轴孔,14、排水孔,15、底座转轴孔,16、滚珠支撑,17、滚珠,18、滚珠套,19、摩擦片,20、伸缩内杆,21、拉伸弹簧,22、限位环,23、方形套块,24、伸缩套孔,25、弹簧支片,26、内杆导片。
具体实施方式
如图1、2所示,它包括侧壳、顶盖、球形滚筒、滚筒挡口片、滚筒支撑、底座支架、电机、底座、储水腔、驱动机构、转轴、电机支撑、储水腔转轴孔、底座转轴孔,其中如图1所示,顶盖通过侧壳安装在底座上,四根底座支架安装在底座下侧的四个角上;如图2所示,电机通过电机支撑安装在底座中间下侧,如图5所示,底座中间开有底座转轴孔;如图2所示,储水腔安装在底座上,且如图4所示,储水腔开有储水腔转轴孔;如图2、3所示,转轴为电机转轴且穿过底座转轴孔和储水腔转轴孔与驱动机构下侧连接;如图5所示,8根滚筒支撑分成两组且分别安装在两个对称的侧壳上,球形滚筒安装在8根滚筒支撑之间;球形滚筒能够在8根滚筒支撑上任意角度旋转;驱动机构通过摩擦驱动球形滚筒下侧;如图1所示,球形滚筒具有取放衣服的开口,滚筒挡口片安装在球形滚筒开口处。
如图7、8所示,上述驱动机构包括摩擦片、伸缩内杆、拉伸弹簧、限位环、方形套块、伸缩套孔、弹簧支片、内杆导片,其中如图9所示,方形套块一侧上方开有伸缩套孔,伸缩套孔中具有对称分布的导槽;如图7、10所示,摩擦片安装在弹簧支片上,弹簧支片安装在伸缩内杆一端,两个内杆导片对称地安装在伸缩内杆另一端,伸缩内杆嵌套于方形套块的伸缩套孔中且内杆导片与伸缩套孔中的导槽滑动配合;限位环安装在伸缩内杆上且紧贴方形套块表面;拉伸弹簧嵌套 在伸缩内杆外侧,且一端安装在弹簧支片上,另一端安装在限位环上;方形套块下侧安装在转轴上。
上述球形滚筒上还均匀开有许多细小圆孔。
如图6所示,上述滚筒支撑包括滚珠支撑、滚珠、滚珠套,其中滚珠安装在滚珠套内部,滚珠套安装在滚珠支撑上,滚珠支撑安装在侧壳上,滚珠表面与球形滚筒表面摩擦接触。滚珠的使用能够保证球形滚筒任意角度旋转。
如图4所示,上述储水腔底部开有排水孔。球形滚筒旋转既能够清洗衣物也能够对衣服甩干,唯一不同的就是排水口的打开与关闭。清洗时排水口关闭;甩干时,所剩下的水会通过滚筒上的圆孔流入到储水腔中,储水腔中的水从打开的排水口中流出。
上述转轴与储水腔转轴孔、底座转轴孔均保持密封。密封保证了储水腔储水的使用要求。
综上所述,本发明中球形滚筒通过滚筒支撑安装在侧壳上,滚筒支撑具有滚珠,能够使球形滚筒任意角度旋转。球形滚筒下方在底座上安装有储水腔,储水腔能够包裹球形滚筒下侧一部分,储水腔中的水能够通过球形滚筒上细小圆孔进入滚筒中,弄湿滚筒中的衣服。清洗时,通过电机带动驱动机构,驱动机构为带有伸缩杆的摩擦片,摩擦片安装在伸缩杆上且远离圆心,当转轴转动时,因为离心力和拉伸弹簧的共同作用,摩擦片会向外甩,调节转轴转速,能够控制摩擦片向外甩出的距离,当转轴转动到一定转速后,旋转的摩擦片会与球形滚筒下侧接触摩擦,进而带动球形滚筒转动。当摩擦片间隙带动球形滚筒转动时,因为球形滚筒中的衣物的不平衡,会使球形滚筒任意角度旋转,达到球形滚筒在整个空间中任意转动,比常规滚筒洗衣机更能充分快速地对衣服进行清洗。本发明具有较好的使用效果。

Claims (5)

  1. 一种基于球形滚筒旋转的清洗机,其特征在于:它包括侧壳、顶盖、球形滚筒、滚筒挡口片、滚筒支撑、底座支架、电机、底座、储水腔、驱动机构、转轴、电机支撑、储水腔转轴孔、底座转轴孔,其中顶盖通过侧壳安装在底座上,四根底座支架安装在底座下侧的四个角上;电机通过电机支撑安装在底座中间下侧,底座中间开有底座转轴孔;储水腔安装在底座上,且储水腔开有储水腔转轴孔;转轴为电机转轴且穿过底座转轴孔和储水腔转轴孔与驱动机构下侧连接;8根滚筒支撑分成两组且分别安装在两个对称的侧壳上,球形滚筒安装在8根滚筒支撑之间;球形滚筒能够在8根滚筒支撑上任意角度旋转;驱动机构通过摩擦驱动球形滚筒下侧;球形滚筒具有取放衣服的开口,滚筒挡口片安装在球形滚筒开口处;
    上述驱动机构包括摩擦片、伸缩内杆、拉伸弹簧、限位环、方形套块、伸缩套孔、弹簧支片、内杆导片,其中方形套块一侧上方开有伸缩套孔,伸缩套孔中具有对称分布的导槽;摩擦片安装在弹簧支片上,弹簧支片安装在伸缩内杆一端,两个内杆导片对称地安装在伸缩内杆另一端,伸缩内杆嵌套于方形套块的伸缩套孔中且内杆导片与伸缩套孔中的导槽滑动配合;限位环安装在伸缩内杆上且紧贴方形套块表面;拉伸弹簧嵌套在伸缩内杆外侧,且一端安装在弹簧支片上,另一端安装在限位环上;方形套块下侧安装在转轴上。
  2. 根据权利要求1所述的一种基于球形滚筒旋转的清洗机,其特征在于:上述球形滚筒上还均匀开有许多细小圆孔。
  3. 根据权利要求1所述的一种基于球形滚筒旋转的清洗机,其特征在于:上述滚筒支撑包括滚珠支撑、滚珠、滚珠套,其中滚珠安装在滚珠套内部,滚珠套安装在滚珠支撑上,滚珠支撑安装在侧壳上,滚珠表面与球形滚筒表面摩擦接触。
  4. 根据权利要求1所述的一种基于球形滚筒旋转的清洗机,其特征在于:上述储水腔底部开有排水孔。
  5. 根据权利要求1所述的一种基于球形滚筒旋转的清洗机,其特征在于:上述转轴与储水腔转轴孔、底座转轴孔均保持密封。
PCT/CN2016/097931 2016-07-12 2016-09-02 一种基于球形滚筒旋转的清洗机 WO2018010286A1 (zh)

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