WO2012072018A1 - 一种出脉动喷溅水的机构 - Google Patents

一种出脉动喷溅水的机构 Download PDF

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Publication number
WO2012072018A1
WO2012072018A1 PCT/CN2011/083098 CN2011083098W WO2012072018A1 WO 2012072018 A1 WO2012072018 A1 WO 2012072018A1 CN 2011083098 W CN2011083098 W CN 2011083098W WO 2012072018 A1 WO2012072018 A1 WO 2012072018A1
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water
waterway
way
inlet
water inlet
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PCT/CN2011/083098
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English (en)
French (fr)
Inventor
周华松
江力
杨玉蓉
邹贤国
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厦门松霖科技有限公司
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Priority to US13/990,607 priority Critical patent/US9168540B2/en
Publication of WO2012072018A1 publication Critical patent/WO2012072018A1/zh

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    • 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
    • B05B1/08Nozzles, 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 of pulsating nature, e.g. delivering liquid in successive separate quantities ; Fluidic oscillators

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  • the present invention relates to a mechanism for pulsating splash water.
  • the utility model has a pulsating water splashing mechanism, which comprises a water body and a moving component disposed in the water body, and the water moving water flow is generated by the moving component to generate a left and right swinging effect, so that the water flowing out. Produces a pulsating splash effect. Since the mechanism adopts the water discharge body and the moving component to achieve the water discharge effect, the following disadvantages are as follows: 1. The structure is complicated, the occupied space is large, the materials are used, the precision is high, the manufacturing cost is high, and the wear life of the moving parts is reduced. The water is unstable.
  • the present invention provides a mechanism for pulsating splash water that overcomes the deficiencies of the pulsating water splashing mechanism of the prior art.
  • a mechanism for pulsating splash water comprising a total waterway, wherein the total waterway comprises a water inlet (100), a two-way waterway (200) and two return waterways (300); and the two-way waterway (200) is connected
  • the water outlets of the water inlet (100) are arranged symmetrically with respect to the water inlet (100), and the water outlets of the two water passages (200) intersect with each other; the two return water passages (300) are symmetrically arranged with respect to the water inlet (100).
  • one end of the return water passage (300) is connected to the water dividing path (200), and the other end is connected to the water inlet end of the water path (100).
  • the swirl chamber (400) is respectively disposed on the left and right sides of the water inlet (100) for forming a vortex to enhance the fluid attachment capability.
  • the angle between the two walls of the water inlet (100) is 10-40 degrees.
  • the water dividing path (200) is divided into a first water channel (210) and a second water channel (220) with respect to one end of the return water channel (300), and the first water channel (210) is provided.
  • the swirl chamber (400) is disposed in the water inlet (100) and adjacent to the water outlet.
  • the scroll chamber (400) is a recess recessed in the side of the water inlet (100), the groove is formed in a spherical shape and the groove opening is smaller than the spherical diameter.
  • the portion of the water inlet end of the water inlet (100) located between the two water passages (200) is formed as an arcuate groove (110).
  • the water discharge area of the first water passage (210) gradually becomes larger, and one end of the return water passage (300) is smoothly connected to the first water passage (210).
  • the extension lines of the water outlet end of the two-way water passage (200) intersect to form a catchment section (500), and an arcuate groove (510) is formed at the top end of the catchment section (500).
  • it further includes a body (A) and a wall (B); the body (A) is provided with a water inlet hole (A1) and a cavity (A2); The side of (B) is provided with a water tank (B1) adapted to the total water path; the wall (B) is attached to the cavity (A2) of the body (A), and the wall (B) The side seal abuts against the side of the cavity (A2) such that the water tank (B1) is formed as a total water passage, and the water inlet passage (100) is connected to the water inlet hole (A1).
  • it further comprises a water outlet (C) adapted to be attached to the cavity (A2) of the body (A), and wherein the water outlet (C)
  • the water outlet (C1) is connected to the water outlet of the two-way water passage (200).
  • the two-way waterway is connected to the waterway.
  • the return waterway returns part of the water flow from the water-distributing road to the inlet end of the water-inflow path to impact the water flow into the waterway.
  • the other part of the water-distributing water flows out to intersect the water, so that the water flow forms a left-right swing effect and produces a pulsating splash effect.
  • the water discharge area of the water inlet gradually becomes larger, increasing the flow capacity of the water flow, improving the left and right swing effect, and improving the pulsation splash effect;
  • the main water route body and the attached wall are fixedly formed, the processing is simple, and the manufacturing cost is low.
  • FIG. 1 is a perspective view of a mechanism of a preferred embodiment.
  • FIG. 2 is a schematic perspective view of a mechanism of a preferred embodiment.
  • FIG 3 is a cross-sectional view of a preferred embodiment.
  • a mechanism for pulsating splash water which comprises a body A, a wall B and a water outlet C.
  • the body A and the wall B cooperate to form a total water path.
  • the total water channel includes a water inlet path 100, a two-way water path 200, and two return water channels 300.
  • the two-way water path 200 is connected to the water outlet end of the water inlet channel 100 and symmetrically arranged with respect to the water inlet channel 100.
  • the water outlet of the two-way water channel 200 is discharged.
  • the two intersecting water passages 300 are symmetrically arranged with respect to the water inlet passage 100, and one end of the return water passage 300 is connected to the water dividing passage 200, and the other end is connected to the water inlet end of the water passage 100.
  • the left and right sides of the water inlet 100 are symmetrically arranged and arranged as an inclined surface, and the angle B2 is 10-40 degrees, so that the water discharge area gradually becomes larger.
  • the portion of the water inlet end of the water inlet path 100 between the two water dividing channels 200 is formed as an arc groove 110 to increase the vortex capacity of the scroll chamber 400.
  • the swirl chambers 400 are respectively disposed on the left and right sides of the water inlet 100 for forming a vortex to enhance the fluid flow capability.
  • the scroll chamber 400 is provided in the water inlet passage 100 and close to the water outlet end, for example, at the end of the inclined surface on the left and right sides of the water inlet passage 100.
  • the scroll chamber 400 is a recess recessed in the side of the water inlet path 100, and the groove is formed in a spherical shape and the groove opening is smaller than the spherical diameter.
  • the water dividing path 200 is divided into a first water channel 210 and a second water channel 220 with respect to one end of the return water channel 300, and the first water channel 210 is configured as a smooth water channel.
  • the first water channel 210 of the two water dividing circuit 200 is connected to the left and right of the water outlet end of the water inlet pipe 100, and the first water channel 210 and the water inlet channel 100 are smoothly transitioned.
  • the second section of the water path 220 is disposed as a linear water path, and the water discharge direction of the water outlet end of the two-way water path 200 intersects.
  • a water receiving section 500 is further included, and an extension line of the water outlet end of the two-way waterway 200 intersects at the water receiving section 500.
  • the top of the catchment section 500 is provided with an arcuate groove 510.
  • the water discharge area of the first water passage 210 is gradually increased, and one end of the return water passage 300 is smoothly connected to the first water passage 210.
  • the body A is provided with a water inlet hole A1 and a cavity A2; another joint A3 is provided, and the joint A3 is connected to the water inlet hole A1, and the outer peripheral surface of the joint A3 is externally threaded for connection; the water inlet hole A1 turns on the cavity A2.
  • the side of the wall B is provided with a water tank B1 adapted to the total water path; the wall B is attached to the cavity A2 of the body A, and the side of the wall B is sealed against the side of the cavity A2.
  • the water tank B1 is formed as a total water passage such that the total water passage is connected to the water inlet hole A1 such that the water inlet passage 100 is connected to the water inlet hole A1.
  • the water outlet nozzle C is adapted to be attached to the cavity A2 of the body A. Moreover, the water outlet nozzle C has a water outlet hole C1, and the water outlet hole C1 is connected to the water receiving section 500.
  • the mechanism for pulsating splash water of the present invention can be used in the sanitary field to provide different water discharge modes.
  • the utility model relates to a mechanism for pulsating water splashing, wherein the total waterway comprises a water inlet two-way waterway and two return waterway; the return waterway returns part of the water flow of the water-dividing road to the inlet end of the water inlet road to impact the water flow of the inlet waterway, and the waterway of the waterway The rest of the water flows out of the water to make the water flow form a left-right swing effect, resulting in a pulsating splash effect, which has a simple structure and low manufacturing cost; b, no wear, long service life, and stable water discharge frequency.

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  • Sewage (AREA)
  • Domestic Plumbing Installations (AREA)
  • Nozzles (AREA)

Description

一种出脉动喷溅水的机构 技术领域
本发明涉及一种出脉动喷溅水的机构。
背景技术
现有出脉动喷溅水的机构,它包括一出水体和一活动设在出水体之内的运动组件,通过运动组件相对出水体活动,使出水体的出水水流产生左右摆动效果,使出水水流产生脉动喷溅效果。由于该机构采用出水体和运动组件配合实现出水效果,因此存在有如下不足:1、结构复杂、占用空间大、用料多、精度要求高、制造成本高;2、运动件容易磨损寿命降低,出水不稳定。
发明内容
本发明提供了一种出脉动喷溅水的机构,其克服了背景技术中的出脉动喷溅水的机构所存在的不足。
本发明解决其技术问题的所采用的技术方案是:
一种出脉动喷溅水的机构,它内设总水路,所述总水路包括一进水路(100)、二分水路(200)和二回流水路(300);所述二分水路(200)都接通在进水路(100)出水端且相对进水路(100)左右对称布置,所述二分水路(200)出水端出水方向相交;所述二回流水路(300)相对进水路(100)左右对称布置,而且,所述回流水路(300)一端接分水路(200),另一端接进水路(100)进水端。
一较佳实施例之中:所述进水路(100)中左右二侧分别设涡旋腔(400)用于形成涡旋以加强流体附壁能力。
一较佳实施例之中:所述进水路(100)的两壁面夹角为10-40度。
一较佳实施例之中:所述分水路(200)相对回流水路(300)一端分为第一段水路(210)和第二段水路(220),所述第一段水路(210)设成圆滑水路;所述二分水路(200)的第一段水路(210)连接在进水路(100)之出水端之左右,而且,所述第一段水路(210)和进水路(210)圆滑过渡。
一较佳实施例之中:所述涡旋腔(400)设在进水路(100)且靠近出水端。
一较佳实施例之中:所述涡旋腔(400)为凹设在进水路(100)侧面的凹槽,所述凹槽设成球状且凹槽开口小于球状直径。
一较佳实施例之中:所述进水路(100)的出水端的位于二分水路(200)之间的部分设成弧形凹槽(110)。
一较佳实施例之中:所述第一段水路(210)出水面积逐渐变大,而且,所述回流水路(300)一端圆滑过渡连接第一段水路(210)。
一较佳实施例之中:所述二分水路(200)出水端的延长线相交形成一汇水段(500),在汇水段(500)顶端设成弧形槽(510)。
一较佳实施例之中:它还包括一本体(A)和一附壁(B);所述本体(A)设一进水孔(A1)和一凹腔(A2);所述附壁(B)之侧面设有适配总水路的水槽(B1);所述附壁(B)装接在本体(A)的凹腔(A2)之内,而且,所述附壁(B)之侧面密封靠接在凹腔(A2)侧面,使得所述水槽(B1)形成为总水路,所述进水路(100)接通进水孔(A1)。
一较佳实施例之中:它还包括一出水嘴(C),所述出水嘴(C)适配装接在本体(A)的凹腔(A2),而且,所述出水嘴(C)的出水孔(C1)接通二分水路(200)的出水端。
本技术方案与背景技术相比,它具有如下优点:
1、二分水路接进水路,回流水路将分水路的部分水流回流至进水路进水端以冲击进水路水流,二分水路的其余部分水流出水相交,使水流形成左右摆动效果,产生脉动喷溅效果,克服背景技术所存在不足,产生如下效果:a、未设运动组件,结构简单、制造成本低;b、无磨损,使用寿命长,出水频率稳定;c、具有很好的节水和淋浴效果;
2、流体从进水路进入出水路时,在涡旋腔中形成涡旋,以加强流体流动能力,将水流从进水路进水端吸附进入分水路;
3、进水路的出水面积逐渐变大,增大水流流动能力,提高左右摆动效果,提高脉动喷溅效果;
4、第一段水路设成圆滑水路,第一段水路和进水路圆滑过渡,提高左右摆动效果,提高脉动喷溅效果;
5、总水路由本体和附壁固接形成,加工简单,制造成本低。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1绘示了一较佳实施例的机构的立体示意图。
图2绘示了一较佳实施例的机构的立体结构示意图。
图3绘示了一较佳实施例的剖面示意图。
具体实施方式
请查阅图1、图2和图3,一种出脉动喷溅水的机构,它包括本体A、附壁B和出水嘴C。所述本体A和附壁B配合形成总水路。
所述总水路包括一进水路100、二分水路200和二回流水路300;所述二分水路200都接通在进水路100出水端且相对进水路100左右对称布置,所述二分水路200出水端出水方向相交;所述二回流水路300相对进水路100左右对称布置,而且,所述回流水路300一端接分水路200,另一端接进水路100进水端。
本实施例之中:所述进水路100的左右侧面对称布置且设成倾斜面,其夹角B2为10-40度,以使得出水面积逐渐变大。
本实施例之中:所述进水路100的出水端的位于二分水路200之间的部分设成弧形凹槽110,以增加涡旋腔400产生涡流能力。
本实施例之中:所述进水路100中左右二侧分别设涡旋腔400用于形成涡旋以加强流体流动能力。所述涡旋腔400设在进水路100且靠近出水端,例如设在进水路100左右侧面的倾斜面末端。所述涡旋腔400为凹设在进水路100侧面的凹槽,所述凹槽设成球状且凹槽开口小于球状直径。
所述分水路200相对回流水路300一端分为第一段水路210和第二段水路220,所述第一段水路210设成圆滑水路。所述二分水回路200的第一段水路210连接在进水路100之出水端之左右,而且,所述第一段水路210和进水路100圆滑过渡。所述第二段水路220设置成直线形水路,而且,使得所述二分水路200出水端出水方向相交。
最好,还包括一汇水段500,所述二分水路200出水端的延长线相交在汇水段500。最好在汇水段500顶端设成弧形槽510。
本实施例之中:所述第一段水路210出水面积逐渐变大,而且,所述回流水路300一端圆滑过渡连接第一段水路210。
所述本体A设一进水孔A1和一凹腔A2;另在设接头A3,接头A3接通进水孔A1,所述接头A3外周面设成外螺纹,以便连接;所述进水孔A1接通凹腔A2。所述附壁B之侧面设适配总水路的水槽B1;所述附壁B装接在本体A的凹腔A2之内,而且,所述附壁B之侧面密封靠接在凹腔A2侧面,使得所述水槽B1形成为总水路,使得所述总水路接通进水孔A1,使得所述进水路100接通进水孔A1。所述出水嘴C适配装接在本体A的凹腔A2,而且,所述出水嘴C具有一出水孔C1,所述出水孔C1接通汇水段500。
本发明出脉动喷溅水的机构可以用于卫浴领域,以提供不同的出水方式。
以上所述,仅为本发明较佳实施例而已,故不能依此限定本发明实施的范围,即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。
工业实用性
本发明一种出脉动喷溅水的机构,其总水路包括一进水路二分水路和二回流水路;回流水路将分水路的部分水流回流至进水路进水端以冲击进水路水流,二分水路的其余部分水流出水相交,使水流形成左右摆动效果,产生脉动喷溅效果,其结构简单、制造成本低;b、无磨损,使用寿命长,出水频率稳定。

Claims (11)

  1. 一种出脉动喷溅水的机构,它内设总水路,其特征在于:所述总水路包括一进水路(100)、二分水路(200)和二回流水路(300);所述二分水路(200)都接通在进水路(100)出水端且相对进水路(100)左右对称布置,所述二分水路(200)出水端出水方向相交;所述二回流水路(300)相对进水路(100)左右对称布置,而且,所述回流水路(300)一端接分水路(200),另一端接进水路(100)进水端。
  2. 根据权利要求1所述的一种出脉动喷溅水的机构,其特征在于:所述进水路(100)中左右二侧分别设涡旋腔(400)用于形成涡旋以加强流体附壁能力。
  3. 根据权利要求1所述的一种出脉动喷溅水的机构,其特征在于:所述进水路(100)的两壁面设置成倾斜面,其夹角为10-40度。
  4. 根据权利要求1或2或3所述的一种出脉动喷溅水的机构,其特征在于:所述分水路(200)相对回流水路(300)一端分为第一段水路(210)和第二段水路(220),所述第一段水路(210)设成圆滑水路;所述二分水路(200)的第一段水路(210)连接在进水路(100)之出水端之左右,而且,所述第一段水路(210)和进水路(210)圆滑过渡。
  5. 根据权利要求2所述的一种出脉动喷溅水的机构,其特征在于:所述涡旋腔(400)设在进水路(100)且靠近出水端。
  6. 根据权利要求5所述的一种出脉动喷溅水的机构,其特征在于:所述涡旋腔(400)为凹设在进水路(100)侧面的凹槽,所述凹槽设成球状且凹槽开口小于球状直径。
  7. 根据权利要求4所述的一种出脉动喷溅水的机构,其特征在于:所述进水路(100)的出水端的位于二分水路(200)之间的部分设成弧形凹槽(110)。
  8. 根据权利要求4所述的一种出脉动喷溅水的机构,其特征在于:所述第一段水路(210)出水面积逐渐变大,而且,所述回流水路(300)一端圆滑过渡连接第一段水路(210)。
  9. 根据权利要求4所述的一种出脉动喷溅水的机构,其特征在于:所述二分水路(200)出水端的延长线相交形成可一汇水段(500),在汇水段(500)顶端设成弧形槽(510)。
  10. 根据权利要求1或2或3所述的一种出脉动喷溅水的机构,其特征在于:它还包括一本体(A)和一附壁(B);所述本体(A)设一进水孔(A1)和一凹腔(A2);所述附壁(B)之侧面设有适配总水路的水槽(B1);所述附壁(B)装接在本体(A)的凹腔(A2)之内,而且,所述附壁(B)之侧面密封靠接在凹腔(A2)侧面,使得所述水槽(B1)形成为总水路,所述进水路(100)接通进水孔(A1)。
  11. 根据权利要求10所述的一种出脉动喷溅水的机构,其特征在于:它还包括一出水嘴(C),所述出水嘴(C)适配装接在本体(A)的凹腔(A2),而且,所述出水嘴(C)的出水孔(C1)接通二分水路(200)的出水端。
PCT/CN2011/083098 2010-12-02 2011-11-29 一种出脉动喷溅水的机构 WO2012072018A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US13/990,607 US9168540B2 (en) 2010-12-02 2011-11-29 Outlet mechanism with pulsatile splash

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CN 201010570813 CN102059178B (zh) 2010-12-02 2010-12-02 一种出脉动喷溅水的机构
CN201010570813.6 2010-12-02

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