WO2010081409A1 - 旋转瀑布花洒 - Google Patents

旋转瀑布花洒 Download PDF

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Publication number
WO2010081409A1
WO2010081409A1 PCT/CN2010/070136 CN2010070136W WO2010081409A1 WO 2010081409 A1 WO2010081409 A1 WO 2010081409A1 CN 2010070136 W CN2010070136 W CN 2010070136W WO 2010081409 A1 WO2010081409 A1 WO 2010081409A1
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WIPO (PCT)
Prior art keywords
water
rotating
cover
impeller
water outlet
Prior art date
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Ceased
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PCT/CN2010/070136
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English (en)
French (fr)
Inventor
陈添育
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Xiamen Solex High Tech Industries Co Ltd
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Xiamen Solex High Tech Industries Co Ltd
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Application filed by Xiamen Solex High Tech Industries Co Ltd filed Critical Xiamen Solex High Tech Industries Co Ltd
Priority to DE112010002348.4T priority Critical patent/DE112010002348B4/de
Priority to US13/128,128 priority patent/US8403240B2/en
Publication of WO2010081409A1 publication Critical patent/WO2010081409A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B3/00Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements
    • B05B3/02Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements with rotating elements
    • B05B3/04Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements with rotating elements driven by the liquid or other fluent material discharged, e.g. the liquid actuating a motor before passing to the outlet
    • B05B3/0417Spraying or sprinkling apparatus with moving outlet elements or moving deflecting elements with rotating elements driven by the liquid or other fluent material discharged, e.g. the liquid actuating a motor before passing to the outlet comprising a liquid driven rotor, e.g. a turbine
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/18Roses; Shower heads
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/02Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means designed to produce a jet, spray, or other discharge of particular shape or nature, e.g. in single drops, or having an outlet of particular shape
    • B05B1/04Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means designed to produce a jet, spray, or other discharge of particular shape or nature, e.g. in single drops, or having an outlet of particular shape in flat form, e.g. fan-like, sheet-like
    • B05B1/044Slits, e.g. narrow openings defined by two straight and parallel lips; Elongated outlets for producing very wide discharges, e.g. fluid curtains

Definitions

  • the invention relates to a shower head, in particular to a rotating waterfall shower head with a water outlet which can be rotated.
  • the shower opening of the shower showers on the market is a plurality of small holes, which are generally only used to disperse the water flow of the water outlet.
  • the water flow is sprayed through the small holes, often forming a water column with a large pressure to directly hit the body, resulting in Consumer discomfort.
  • consumers can only reduce the pressure of the water column by adjusting the water output of the shower.
  • the water output is also greatly reduced, and finally the bathing effect is affected.
  • a single-function shower can no longer meet the growing consumer demand of consumers.
  • the water from the spout of the rotating waterfall can be dynamically rotated to form a graceful spiral waterfall, with a gentle massage effect.
  • the rotating waterfall showerhead comprises a hollow body, a laterally disposed impeller, a cover that is disposed at a front end of the body, and a water-discharging plate that is disposed inside the body and can rotate the impeller, and a pinion is axially fixed at the front end of the impeller
  • the pinion meshes with the output gears symmetrically distributed in the center, and each of the output gears can drive a horizontal rotation of the rotating water outlet component disposed at the front end of the cover.
  • the water flows from the inclined injection hole on the water distribution tray, and impinges on the impeller to make the impeller rotate rapidly, thereby driving the pinion fixed at the front end of the impeller to rotate, and then the pinion gear drives the output gear that meshes with it to rotate, and then the output is output.
  • the gear drives the rotating water outlet to rotate.
  • each output gear is axially fixed to the pivoting rotary water outlet assembly.
  • the impeller can also be arranged longitudinally, and then the worm gear can be used to drive the rotating water outlet assembly to rotate horizontally at the front end of the cover.
  • the structure is relatively complicated and is relatively easy to damage during use.
  • the two ends of the impeller are provided with a rotating shaft, and the center position of the water dividing plate and the surface cover is provided with a shaft seat matched with the shaft, and the impeller and the shaft disposed on the water dividing plate and the surface cover The seat is matched and placed between the water dividing plate and the cover.
  • the rotating water outlet rotating water assembly comprises a front cover and a rear cover fixedly pivoted to each other, two rectifying sheets and a ejector pin; the two rectifying pieces are oppositely disposed on the front cover and the rear cover which are fixedly pivotally connected to each other.
  • the top rod is integrally formed at the rear end of the back cover; the outer upper portion of the top rod is a cylindrical limit portion; the center hole of the output gear is a stepped hole, and the stepped hole small hole is closely related to the outer wall of the limiting portion of the ejector rod Cooperating; the front end of the water dividing disc is fixed with the same number of rotating shafts as the output gear, and the top end of the rotating water outlet assembly is sleeved on the rotating shaft to form a clearance fit, so that the output gear can drive the rotating water outlet assembly to rotate around the rotating shaft.
  • a water outlet hole is arranged at a position below the limiting portion of the ejector pin, and the water outlet hole extends from the pipe wall of the ejector pin to the bottom of the ejector pin, and extends through the back cover of the rotating water component, and the inner side of the rear cover corresponds to the water outlet hole.
  • Two rectifying sheets are fixed opposite to the position below the outlet, and a filtering membrane is fixed at the front end of the water outlet end, and the front cover of the rotating water outlet assembly is provided with a strip-shaped water outlet corresponding to the shape of the rectifying sheet. The water flowing into the rotating water outlet assembly is evenly distributed through the flow regulating piece, and then flows through the filter mesh and then flows out through the strip-shaped water outlet to obtain a sheet-like waterfall effect.
  • the water dividing tray is provided with at least one inclined injection hole.
  • the water dividing tray may be inclined in the clockwise direction or the counterclockwise direction to provide at least two inclined injection holes, the water outlet end of the inclined injection hole is arranged with the impeller to push the impeller to rotate; or in the water distribution tray
  • An inclined injection hole is disposed on the upper side, and the water outlet end of the inclined injection hole is disposed in cooperation with the impeller.
  • the front end of the output gear is arranged at a position corresponding to the circumference of the central hole, and the water flows through the gap between the small protrusions into the water outlet of the rotating water assembly to achieve a better flushing effect.
  • the water dividing disc is fixed inside the body with a sealing ring; the cover is fixed at a front end of the body with a sealing ring.
  • the diameter of the output gear is larger than the diameter of the pinion fixed at the front end of the impeller to reduce the rotational speed of the rotating water outlet assembly.
  • the number of output gears is 2-8.
  • the "front end” and “rear end” mentioned in the present invention are based on the direction in which the shower is used, that is, the shower water outlet end is the front end, and the shower water inlet is the rear end.
  • the "lateral setting" referred to in the present invention means parallel to the shower outlet end face.
  • the present invention provides a rotating waterfall shower having a simple structure, which uses the impact force of the water flow itself to drive the impeller and the pinion gear under the impeller to rotate, and then drives the plurality of meshing gears thereof.
  • the output gear rotates, and then the output gear drives the rotating water outlet assembly that is pivoted thereto; at the same time, the water flows from the inclined injection hole on the water distribution tray into the inner space of the water distribution tray, and then flows into the rotation through the gap between the small protrusions.
  • the water outlet assembly and finally follows the rotary motion of the rotating water outlet assembly, and the water flow is dispersed by the flow regulating plate to rotate the water out of the strip outlet to form a plurality of groups of graceful dynamic rotating spiral waterfall water bloom groups.
  • FIG. 1 is a schematic exploded perspective view of a shower of an embodiment
  • Figure 2 is a cross-sectional view of the shower of the embodiment
  • FIG. 3 is a schematic perspective view of a shower of an embodiment
  • Fig. 4 is a schematic view showing the working state of the embodiment.
  • the rotating waterfall shower head comprises a hollow body 1, a cover 2, a rotating water outlet assembly 3, a ball head 4, a water dividing plate 6, an impeller 7, a pinion 8 and an output gear 9.
  • the cover 2 is fixedly disposed on the body by a sealing ring. 1 front end.
  • the water dividing plate 6 with the inclined injection holes 61 is fixed inside the body 1 with a sealing ring 5, and a pinion 8 is axially fixed at the front end of the impeller 7, and the rotating shafts 81 and 82 are arranged at both ends thereof, and the water dividing plate 6 and the surface are provided.
  • the central position of the cover 2 is provided with shaft seats 63, 22, and the impeller 7 is matched with the shaft seat provided on the water dividing plate 6 and the cover 2 by means of its rotating shaft, and is mounted on the water dividing plate 6 and the cover Between 2.
  • the water distribution tray 6 is in the shape of a cover, defining an impeller 7 accommodating space 64.
  • Two inclined injection holes 61 are obliquely disposed in the horizontal direction on the side wall of the water distribution tray 6, and the water outlet end of the inclined injection hole 61 is arranged with the impeller 7. To push the impeller 7 to rotate.
  • the pinion gear 8 meshes with three centrally symmetrically distributed output gears 9, and the central bore 92 of each of the output gears 9 is axially fixedly pivotally coupled to a rotary water outlet assembly 3 disposed at the front end of the face cover 2.
  • the rotating water outlet assembly 3 includes a front cover 34 and a rear cover 33 fixed to each other, two rectifying sheets 32, and a top rod 31.
  • the inner side surfaces of the rectifying sheets 32 are provided with protrusions 321 which are arranged in a semi-circular arrangement with five rows.
  • the two fins 32 are disposed oppositely between the front cover 34 and the rear cover 33 which are fixedly pivoted to each other, and the jack 31 is integrally formed at the rear end of the rear cover 33.
  • a cylindrical limiting portion 311 is formed on the outer upper end of the jack 31; the center hole 92 of the output gear 9 is a stepped hole, and the stepped hole small hole 921 is closely matched with the limiting portion 311 of the jack 31 (threading, welding, etc.)
  • the front end of the water distribution tray 6 is fixed with three rotating shafts 62, and the top limiting portion 311 of the ejector rod 31 of the rotating water outlet assembly is sleeved on the rotating shaft 62 to form a clearance fit; that is, the outer wall of the limiting portion 311 of the ejector rod 31 is
  • the small hole 921 of the center hole 92 of the output gear 9 is tightly fitted, and the inner hole of the limiting portion 311 of the ejector pin 31 is matched with the rotating shaft 62 of the water dividing plate 6, so that the output gear 9 can drive the rotating water outlet assembly 3 around the rotating shaft 62. Rotate.
  • the diameter of the output gear 9 is larger than the diameter of the
  • a small protrusion 91 symmetrically disposed at a position of a periphery of a corresponding center hole of the front end of the output gear 9 is disposed at a position below the ejector limit portion 311 of the rotating water outlet member 3, and a water outlet hole 312 is defined.
  • the water outlet hole 312 extends from the pipe wall of the ejector pin 31. To the bottom of the ejector pin 31 and through the rear cover 33, the water flows into the water outlet hole 312 of the rotating water outlet assembly 3 through the gap between the small protrusions 91, and the height of the small protrusion 91 is matched with the water inlet end of the water outlet hole 312.
  • the inner side of the rear cover 33 is opposite to the outlet below the outlet of the water outlet hole 312, and two rectifying sheets 32 are fixed oppositely.
  • the front side of the water outlet end is fixed with a filter film 35, and the front cover 34 is provided with a strip shape corresponding to the shape of the commutator piece 32. Nozzle 36.
  • the water flowing into the rotary water discharge unit 3 distributes the water flow uniformly through the projections 321 in the flow regulating piece 32, and then flows through the filter mesh 35 to discharge water through the strip-shaped water outlet 36.
  • the water flowing out of the ball head 4 flows from the inclined injection hole 61 on the water dividing tray 6, and then impinges on the impeller 7, causing the impeller 7 to rotate at a high speed, thereby driving the pinion 8 fixed to the front end of the impeller 7 to rotate, and then The pinion gear 8 drives the output gear 9 meshed therewith to rotate, and then the output gear 9 drives the rotary water outlet assembly 3 to rotate; at the same time, the water flows from the inclined injection hole 61 on the water distribution tray 6 into the inner cavity of the water distribution tray 6, and then The water outlet hole 312 provided in the top rod 31 of the rotating water outlet assembly 3 flows into the gap of the small rod 91 provided at the front end of the output gear, and then flows through the flow regulating plate 32 of the rotating water outlet assembly and the filter net 35, and then from the strip water outlet 36. Outflow, three groups of beautifully shaped spiral waterfalls are obtained.
  • the invention discloses a rotating waterfall shower head with ingenious design and simple structure, and uses the impact force of the shower water flow to drive the impeller to rotate, thereby driving the rotary motion of the rotating water outlet assembly, so that the water flow is dispersed by the strip-shaped water outlet and then rotated out by the strip-shaped water outlet. It forms a group of dynamic rotating spiral waterfalls with beautiful posture, which has good industrial and practical.

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  • Nozzles (AREA)
  • Bathtubs, Showers, And Their Attachments (AREA)
  • Hydraulic Turbines (AREA)

Description

旋转瀑布花洒 技术领域
本发明涉及一种花洒,特别地涉及一种出水口可以旋转的旋转瀑布花洒。
背景技术
目前市场上出售的淋浴用花洒的出水口为若干个小孔,一般仅用于分散出水口的水流,使用时,水流通过小孔喷出,往往形成压力很大的水柱直接打击身体,造成消费者的不适感。为降低水柱压力,消费者只能通过调整花洒的出水量来降低水柱的压力,然而,由于在水柱压力减少的同时,出水量也会大幅度减少,并最终影响到沐浴效果,因此,上述功能单一的花洒已不能满足消费者日益增长的消费需求。
因此,如何在不减少花洒出水量的基础上,改变现有花洒的出水效果,使之形成片状、瀑布状、甚至形成旋转水流,并使从出水口喷射出来的水花不再形成强大的压力直接打击人体,是业者研究的重点。现已有生产厂家生产出一些带有按摩效果的花洒,然而这类花洒往往带有密封设置在花洒腔体内的电机,使用时存在一定的安全隐患。
发明内容
本发明的目的是提供一种出水口可以旋转的旋转瀑布花洒,以解决现有技术中存在的上述问题。从该旋转瀑布花洒出水口出来的水可以动态旋转,形成姿态优美的螺旋瀑布水花群,并具有轻柔按摩效果。
本发明提供的技术方案如下:
旋转瀑布花洒,包括中空本体、横向设置的叶轮、密封设置在该本体前端的面盖,和密封设置在本体内部、可使叶轮产生旋转的分水盘,叶轮前端轴向固设一小齿轮,该小齿轮啮合呈中心对称分布的输出齿轮,每个输出齿轮均可带动一设置在面盖前端的旋转出水组件水平旋转。
使用时,水流从分水盘上的倾斜喷射孔流入后,冲击叶轮,使叶轮飞速旋转,从而带动固定在叶轮前端的小齿轮旋转,而后由小齿轮带动与其啮合的输出齿轮旋转,再由输出齿轮带动旋转出水组件旋转。
前述旋转瀑布花洒中,每个输出齿轮的中心孔均轴向固定枢接旋转出水组件。当然,也可以纵向设置叶轮,而后可以采用蜗轮蜗杆的方式带动旋转出水组件在面盖前端水平旋转。但是,该结构比较复杂,在使用过程中比较容易损坏。
前述旋转瀑布花洒中,叶轮的两端设有转轴,分水盘和面盖的中心位置则设有与之配合的轴座,叶轮借助其转轴与设置在分水盘和面盖上的轴座相配合,架设在分水盘和面盖之间。
前述旋转瀑布花洒中,旋转出水组件旋转出水组件包括相互固定枢接的前盖和后盖、两片整流片、顶杆;两片整流片相对设置在相互固定枢接的前盖与后盖之间,顶杆一体成型在后盖的后端;顶杆的外侧上部为圆筒形限位部;输出齿轮的中心孔为阶梯孔,阶梯孔小孔与顶杆的限位部外壁相紧密配合;分水盘前端固设与输出齿轮数量相同的转轴,旋转出水组件的顶杆顶部限位部套接在转轴上,形成间隙配合,使输出齿轮可带动旋转出水组件绕该转轴旋转。
前述旋转瀑布花洒中,顶杆限位部下方的位置设置一出水孔,出水孔从前述顶杆的管壁延伸至顶杆底部,并贯穿旋转出水组件后盖,后盖内侧对应该出水孔出口下方的位置对向固设两片整流片,并在其出水端的前端固设过滤膜,旋转出水组件前盖设置与整流片形状相配合的条状出水口。流入旋转出水组件内的水经整流片分布均匀后,流经过滤网再通过条状出水口出水,获得片状瀑布效果。
前述旋转瀑布花洒中,分水盘设置有至少一个的倾斜喷射孔。举例来说,分水盘可在顺时针方向或逆时针方向上同向倾斜设置至少两个的倾斜喷射孔,该倾斜喷射孔的出水端配合叶轮设置,以推动叶轮旋转;或者在分水盘上倾斜设置一倾斜喷射孔,该倾斜喷射孔的出水端配合叶轮设置。
前述旋转瀑布花洒中,输出齿轮的前端相应中心孔周缘的位置间隔排列对称设置的小凸柱,水流通过小凸柱之间的间隙流入旋转出水组件的出水孔,以达到更好的冲刷效果。
前述旋转瀑布花洒中,分水盘间隔一密封圈固定在本体内部;面盖间隔一密封圈固定在本体前端。
前述旋转瀑布花洒中,输出齿轮的直径大于固设在叶轮前端的小齿轮直径,以降低旋转出水组件的旋转速度。
前述旋转瀑布花洒中,输出齿轮的数量为2~8个。
除非特别指名,这里所使用的所有技术和科学术语的含义与本发明所属技术领域一般技术人员通常所理解的含义相同。同样,所有在此提及的出版物、专利申请、专利及其他参考资料均可以引入本发明作为参考。
本发明中提及的“前端”、“后端”以花洒使用时的方向为准,即以花洒出水端为前端,花洒进水口为后端。另外,本发明中提及的“横向设置”是指平行于花洒出水端面。
由上述描述可知,本发明创造性提供了提供一种结构简单的旋转瀑布花洒,该旋转瀑布花洒利用水流自身的冲击力带动叶轮和叶轮下方的小齿轮旋转,而后再带动与其啮合的多个输出齿轮旋转,而后由输出齿轮带动与其枢接的旋转出水组件旋转;与此同时,水流从分水盘上的倾斜喷射孔流入分水盘内腔,而后通过小凸柱之间的间隙流入旋转出水组件,并最终跟随旋转出水组件的旋转运动,通过整流片将水流分散由条状出水口旋转出水,形成多组姿态优美的动态旋转螺旋瀑布水花群。
附图说明
图1为实施例的花洒立体分解示意图;
图2为实施例的花洒的剖视图;
图3为实施例的花洒的立体结构示意图;
图4为实施例的工作状态示意图。
其中,本体1、面盖2、旋转出水组件3、球头4、分水盘6、叶轮7、小齿轮8、输出齿轮9、顶杆31、限位部311、出水孔312、整流片32、旋转出水组件后盖33、旋转出水组件前盖34、过滤网35、条状出水口36、转轴51、倾斜喷射孔61和小凸柱91
具体实施方式
实施例1
为进一步说明本发明,现结合附图说明较佳实施例的具体实施方式:
旋转瀑布花洒,包括中空本体1、面盖2、旋转出水组件3、球头4、分水盘6、叶轮7、小齿轮8和输出齿轮9,面盖2间隔一密封圈固定设置在本体1前端。
带有倾斜喷射孔61的分水盘6间隔一密封圈5固定在本体1内部,叶轮7前端轴向固设一小齿轮8,其两端设有转轴81、82,分水盘6和面盖2的中心位置则设有与之配合的轴座63、22,叶轮7借助其转轴与设置在分水盘6和面盖2上的轴座相配合,架设在分水盘6和面盖2之间。分水盘6为套盖状,界定一叶轮7容置空间64,分水盘6侧壁上水平方向同向倾斜设置两个倾斜喷射孔61,该倾斜喷射孔61的出水端配合叶轮7设置,以推动叶轮7旋转。
小齿轮8啮合3个呈中心对称分布的输出齿轮9,每个输出齿轮9的中心孔92均轴向固定枢接一设置在面盖2前端的旋转出水组件3。
旋转出水组件3包括相互固定枢接的前盖34和后盖33、两片整流片32、顶杆31;整流片32内侧面均设有由少至多呈现半圆状排列五排的凸起321,两片整流片32相对设置在相互固定枢接的前盖34与后盖33之间,顶杆31一体成型在后盖33的后端。顶杆31的外侧上端形成圆筒形限位部311;输出齿轮9的中心孔92为阶梯孔,阶梯孔小孔921与顶杆31的限位部311相紧密配合(螺接、焊接等),同时,分水盘6前端固设3个转轴62,旋转出水组件的顶杆31顶部限位部311套接在转轴62上,形成间隙配合;即:顶杆31的限位部311外壁与输出齿轮9的中心孔92的小孔921紧密配合,顶杆31的限位部311内孔与分水盘6上的转轴62间隙配合,使输出齿轮9可带动旋转出水组件3绕前述转轴62旋转。输出齿轮9的直径大于固设在叶轮7前端的小齿轮8直径,以降低旋转出水组件3的旋转速度。
输出齿轮9前端相应中心孔周缘的位置间隔排列对称设置的小凸柱91,旋转出水组件3顶杆限位部311下方的位置设置一出水孔312,出水孔312从顶杆31的管壁延伸至顶杆31底部,并贯穿后盖33,水流通过小凸柱91之间的间隙流入旋转出水组件3的出水孔312,小凸柱91的高度配合出水孔312的进水端设置。后盖33内侧对应该出水孔312出口下方的位置对向固设两片整流片32,其出水端的前侧固设过滤膜35,前盖34上设置与整流片32形状相配合的条状出水口36。流入旋转出水组件3内的水经整流片32内凸起321将水流分布均匀后,流经过滤网35再通过条状出水口36出水。
使用时,从球头4出来的的水流从分水盘6上的倾斜喷射孔61流入后,冲击叶轮7,使叶轮7飞速旋转,从而带动固定在叶轮7前端的小齿轮8旋转,而后由小齿轮8带动与其啮合的输出齿轮9旋转,再由输出齿轮9带动旋转出水组件3旋转;与此同时,水流从分水盘6上的倾斜喷射孔61流入分水盘6的内腔,而后通过设置在输出齿轮前端的小凸柱91间隙流入设置在旋转出水组件3顶杆31上的出水孔312,而后流经旋转出水组件的整流片32和过滤网35,再从条状出水口36流出,获得三组姿态优美的片状螺旋瀑布水花群。
上述实施例为本发明较佳的实施方式,但本发明的实施方式并不受上述实施例的限制,其他的任何未背离本发明的精神实质与原理下所作的改变、修饰、替代、组合、简化,均应为等效的置换方式,都包含在本发明的保护范围之内。
工业实用性
本发明一种旋转瀑布花洒,构思巧妙、结构简单,利用花洒水流自身的冲击力带动叶轮旋转,进而带动旋转出水组件的旋转运动,使水流通过整流片分散后由条状出水口旋转出水,形成多组姿态优美的动态旋转螺旋瀑,具有良好的工业实用。

Claims (10)

  1. 旋转瀑布花洒,包括中空本体、横向设置的叶轮、密封设置在该本体前端的面盖,和密封设置在本体内部、可使叶轮产生旋转的分水盘,叶轮前端轴向固设一小齿轮,该小齿轮啮合呈中心对称分布有输出齿轮,每个输出齿轮均可带动一设置在面盖前端的旋转出水组件水平旋转。
  2. 根据权利要求1中所述的旋转瀑布花洒,其特征在于:每个输出齿轮的中心孔均轴向固定联接旋转出水组件。
  3. 根据权利要求2中所述的旋转瀑布花洒,其特征在于:叶轮的两端设有转轴,分水盘和面盖的中心位置则设有与之配合的轴座,叶轮借助其转轴与设置在分水盘和面盖上的轴座相配合,架设在分水盘和面盖之间。
  4. 根据权利要求3中所述的旋转瀑布花洒,其特征在于:旋转出水组件包括相互固定枢接的前盖和后盖、两片整流片、顶杆;两片整流片相对设置在相互固定枢接的前盖与后盖之间,顶杆一体成型在后盖的后端;顶杆的外侧上部为圆筒形限位部;输出齿轮的中心孔为阶梯孔,阶梯孔小孔与顶杆的限位部外壁相紧密配合;分水盘前端固设与输出齿轮数量相同的转轴,旋转出水组件的顶杆顶部限位部套接在转轴上,形成间隙配合,使输出齿轮可带动旋转出水组件绕该转轴旋转。
  5. 根据权利要求4中所述的旋转瀑布花洒,其特征在于:顶杆限位部下方的位置设置一出水孔,出水孔从所述顶杆的管壁延伸至顶杆底部,并贯穿旋转出水组件后盖,后盖内侧对应该出水孔出口下方的位置对向固设两片整流片,并在其出水端的前端固设过滤膜,旋转出水组件前盖设置与整流片形状相配合的条状出水口。
  6. 根据权利要求4中所述的旋转瀑布花洒,其特征在于:所述两片整流片的内侧面均设有由少至多若干排的凸起,所述的凸起呈现半圆状排列,调整出水的水流方向。
  7. 根据权利要求5中所述的旋转瀑布花洒,其特征在于:所述的分水盘为套盖状,界定一叶轮容置空间,其侧壁上设置有至少一个的倾斜喷射孔;分水盘倾斜喷射孔喷出的水直接驱动叶轮转动。
  8. 根据权利要求5或6中所述的旋转瀑布花洒,其特征在于:输出齿轮的前端相应中心孔周缘的位置间隔排列对称设置的小凸柱。
  9. 根据权利要求7中所述的旋转瀑布花洒,其特征在于:分水盘间隔一密封圈固定在本体内部;面盖间隔一密封圈固定在本体前端。
  10. 根据权利要求7中所述的旋转瀑布花洒,其特征在于:所述的输出齿轮为2~8个,相应的旋转出水组件也为2~8组。
PCT/CN2010/070136 2009-01-14 2010-01-12 旋转瀑布花洒 Ceased WO2010081409A1 (zh)

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