WO2015018330A1 - 分水件及设有该分水件结构的花洒 - Google Patents
分水件及设有该分水件结构的花洒 Download PDFInfo
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- WO2015018330A1 WO2015018330A1 PCT/CN2014/083740 CN2014083740W WO2015018330A1 WO 2015018330 A1 WO2015018330 A1 WO 2015018330A1 CN 2014083740 W CN2014083740 W CN 2014083740W WO 2015018330 A1 WO2015018330 A1 WO 2015018330A1
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- WIPO (PCT)
- Prior art keywords
- water
- section
- water dividing
- gas mixing
- hole
- 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.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B1/00—Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
- B05B1/14—Nozzles, 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
- B05B1/18—Roses; Shower heads
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B1/00—Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
- B05B1/14—Nozzles, 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
- B05B1/16—Nozzles, 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 having selectively- effective outlets
- B05B1/1681—Nozzles, 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 having selectively- effective outlets with a selecting mechanism comprising a gate valve, sliding valve or cock and a lift valve
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B7/00—Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
- B05B7/02—Spray pistols; Apparatus for discharge
- B05B7/04—Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge
- B05B7/0416—Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge with arrangements for mixing one gas and one liquid
- B05B7/0425—Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge with arrangements for mixing one gas and one liquid without any source of compressed gas, e.g. the air being sucked by the pressurised liquid
Definitions
- the invention relates to a water dividing member and a shower provided with the water dividing member structure.
- the conventional shower head comprises a body assembly and a face cover assembly, wherein the body assembly is provided with a water supply passage, and the cover assembly comprises a water dividing body and a shower head.
- the water flows from the water supply channel in the body assembly through the water separation body and then flows into the shower head, which is then ejected by the shower head.
- the water dividing body is rotated.
- the shower of this structure the water sprayed from the shower head will have a tingling sensation on the body.
- a water-gas mixing device for integrating air into the water, thereby enhancing the flexibility of the water, avoiding the tingling of the water on the human body, and at the same time saving water.
- the water-gas mixing device is usually connected to the shower handle, which makes the shower have the defects of large volume, many parts, complicated structure and troublesome installation.
- the present invention provides a water dividing member and a shower provided with the water dividing member structure, which overcomes the deficiencies of the prior art.
- the technical solution adopted by the present invention to solve the technical problem thereof is:
- a water dividing member includes at least two water dividing holes for connecting an inflow water passage and an outlet water passage of a water outlet end, the water dividing hole including an acceleration section and a water and gas mixing section, the water and gas mixing The section is connected at the lower end of the acceleration section, and the cross-sectional area of the water-gas mixing section is larger than the cross-sectional area of the section of the acceleration section, and the side wall of the water-gas mixing section is provided with air for the air to be mixed into the water-gas mixture The intake hole of the segment.
- the water dividing hole comprises an acceleration section and a water-gas mixing section, and an air inlet hole for allowing air to pass into the water-gas mixing section is opened on the side wall of the water-gas mixing section, and the water flow enters the acceleration section, due to the area When it becomes smaller, the water flow is increased at this speed, the pressure is lowered, and air is introduced into the water-gas mixing section to be thoroughly mixed with the water flow. Since the water dividing hole can be used not only to connect the water inlet water path and the water outlet water path of the water outlet terminal, but also to mix water and water, the water outlet terminal does not need to additionally provide a water gas mixing device, and has small volume, few parts, and simple structure. The advantage of easy installation.
- each water dividing hole includes an accelerating section and a water-gas mixing section to ensure that the air and the water flow are sufficiently mixed, and each of the plurality of accelerating sections shares a water-gas mixing section, in addition to the inhaling efficiency, each independent
- the diameter of the water-gas mixing section is much smaller than the diameter of a common water-gas mixing section. Therefore, according to the original size ratio, the length of the water-gas mixing section can be greatly shortened, and the water flow and the air can be within a short distance. Good mixing is achieved to reduce the thickness of the entire water distribution.
- the water dividing member is a place where the water passage is switched, and is the place where the water resistance of the entire water outlet terminal is the largest, which is unfavorable to the flow of the water flow, and the water-gas mixed structure is required to accelerate the hole, and the water resistance is also increased, and the present invention is divided into
- the water hole of the water can not only switch the waterway, but also accelerate the water flow and achieve the purpose of water and gas mixing. It will not form a double water resistance to the water flow, the water flow is smooth, and the suction effect is good, especially in Europe. The area can inhale more effectively.
- the water dividing hole further includes a drainage section, and the drainage section is disposed at an upper end of the acceleration section, and the cross-sectional area of the drainage section is larger than the cross-sectional area of the acceleration section.
- the drainage section enables the water flow to smoothly enter the acceleration section and increase the flow rate of the water.
- a water dividing member includes at least two water dividing hole groups for connecting an inflow water path and an outlet water path of a water outlet terminal, each of the water dividing hole groups having at least two water dividing holes, each The water dividing hole comprises an acceleration section and a water-gas mixing section, wherein the water-gas mixing section is connected at a lower end of the acceleration section, and a cross-sectional area of the water-water mixing section is larger than a cross-sectional area of the super-water section of the acceleration section, and the water-gas mixture is mixed
- An air inlet hole for allowing air to pass into the water-gas mixing section is opened on the side wall of the section.
- the water dividing member includes a main member and a sub-piece that are stacked together, the main member is located above the sub-piece, and the acceleration portion is disposed on the main member, and the water and gas is mixed. The segment is placed on the sub-piece.
- the main and secondary parts are combined by welding.
- the water dividing hole further includes a drainage section, and the drainage section is disposed at an upper end of the acceleration section, and the cross-sectional area of the drainage section is larger than the cross-sectional area of the acceleration section.
- a shower head comprising a body, a cover assembly, a sealing plug and a water dividing member, the water dividing member comprising at least two water dividing hole groups, wherein the water dividing hole group is used for connecting the water inlet water path and the water outlet water path of the shower.
- Each water dividing hole group has at least two water dividing holes, each water dividing hole includes an acceleration section and a water-gas mixing section, and the water-gas mixing section is connected at a lower end of the acceleration section, and the water-gas mixing section is over-watered
- the cross-sectional area is larger than the cross-sectional area of the accelerating section, and the inlet wall of the water-gas mixing section is provided with an air inlet for allowing air to pass into the water-gas mixing section, and the water inlet is provided on the body.
- the surface cover assembly is provided with the water outlet water pipe, the cover cover assembly is disposed in the body of the water distribution member and the sealing plug, and the sealing plug abuts on the water dividing member, the sealing plug is opposite to the sealing member
- the water outlet water passage is switched on when the water dividing member rotates.
- a fixing seat is further included, and the sealing plug is connected to the fixing seat, and a through hole is formed in a middle portion of the sealing plug.
- the water dividing member has four water dividing hole groups, wherein the two water dividing hole groups are symmetrically disposed at the center of the water dividing member, and the number of the sealing plugs is two, two The sealing plugs are symmetrically disposed at the center of the water dividing member, and each sealing plug is disposed corresponding to one water dividing hole group.
- FIG. 1 is a cross-sectional view showing a first embodiment of a water dividing member of the present invention.
- FIG. 2 is a perspective exploded view of a second embodiment of a water dividing member of the present invention.
- FIG. 3 is a cross-sectional view showing a portion of the water dividing hole group of the water dividing member shown in FIG. 2.
- FIG. 4 is a perspective exploded view of a shower of the present invention.
- FIG. 5 is a schematic perspective view showing the assembly of the shower shown in FIG. 4.
- FIG. 6 is a cross-sectional view of the showerhead of FIG. 4.
- Embodiment 1 please refer to FIG. 1, a schematic cross-sectional view of a first embodiment of a water dividing member of the present invention.
- the water dividing member 10 can not only switch the water passage of the water outlet terminal, but also water and gas mixing the water flow.
- the water dividing member 10 includes at least two water dividing holes 15, and the number of the water dividing holes 15 shown in the drawing is eight.
- the water dividing hole 15 is used to connect the water inlet water path and the water outlet water path of the water outlet terminal.
- the water dividing hole 15 includes a drainage section 12, an acceleration section 14, and a water-gas mixing section 16.
- the drain section 12 is coupled to the upper end of the acceleration section 14.
- the moisture mixing section 16 is coupled to the lower end of the acceleration section 14.
- the cross-sectional area of the drain section 12 is greater than the cross-sectional area of the accelerating section 14.
- the cross-sectional area of the water-gas mixing section 16 is greater than the cross-sectional area of the cross section of the accelerating section 14.
- the cross-sectional shape of the drainage section 12 is in the shape of a horn, and the small end of the drainage section 12 is connected to the acceleration section 14.
- the side wall of the water-air mixing section 16 is provided with an air inlet hole 18 for allowing air to pass into the water-gas mixing section 16.
- the air inlet hole 18 is disposed near one end of the acceleration section 14. Preferably, the air inlet opening 18 abuts below the acceleration section 14.
- the velocity increases.
- the air is sucked into the water-gas mixing section 16 and thoroughly mixed with the water flow.
- the water dividing member 10 enables the water outlet terminal to switch between different water outlets.
- Embodiment 2 please refer to FIG. 2 and FIG. 3, which are schematic views of a second embodiment of the water dividing member of the present invention.
- the water dividing member 10a is different from the first embodiment in that the water dividing member 10a is provided with a water hole group 15a, a water hole group 15b, a water hole group 15c, and a water dividing portion.
- the four groups of the hole group 15d, the water hole group 15a and the water hole group 15b are symmetrically disposed at the center of the water dividing member 10a, and the water hole group 15c and the water hole group 15d are the water dividing member 10a.
- the center is symmetrically set.
- Each of the water separation holes includes at least two water dividing holes 15.
- each component water hole is not limited.
- the drainage sections 12a of the partial water separation holes 15 included in each of the component water hole groups are connected to each other.
- the draining section 12a of the water dividing hole 15 included in each component water hole group is not connected.
- the water hole group 15a and the water hole group 15b are arranged corresponding to one water outlet of the water outlet terminal, and the water hole group 15c and the water hole group 15d correspond to another water outlet of the water outlet terminal, and are selectively opened.
- the nail water hole group 15a, the water hole group 15b, the water hole group 15c, and the water hole group 15d can realize switching between different water passages.
- each water-dividing hole group 15a, 15b, 15c, and 15d in this embodiment includes a main member 11 and a sub-piece 13 which are stacked together, and the main member 11 is located. Above the sub-piece 13, the main part 11 and the sub-piece 13 are combined by welding.
- the acceleration section 14 and the drainage section 12a are disposed on the main member 11, and the water-gas mixing section 16 is disposed on the sub-piece 13.
- the air inlet hole 18 is disposed near one end of the acceleration section 14.
- water distribution hole group can also be two groups, as long as each water outlet water channel can be connected to at least one water distribution hole group.
- Embodiment 3 is a perspective exploded view of a shower of the present invention.
- the shower 100 includes a water dividing member 10a, a body 20, a side cover assembly 30, two sealing plugs 40, and a fixing base 50.
- the body 20 is provided with a water inlet channel.
- the cover assembly 30 is provided with two water outlets.
- a through hole is provided in the middle of each sealing plug 40.
- the fixing base 50 is received in the body 20.
- the two sealing plugs 40 are connected to the fixing base 50.
- the two sealing plugs 40 are centered on the water dividing member 10a.
- the cover member 30 covers the water dividing member 10a and the sealing plug 40 in the body 20; the sealing plug 40 abuts on the water dividing member 10a, and each sealing plug 40 corresponds to a water dividing portion.
- the water hole group 15a and the water hole group 15b which are symmetrically disposed at the center of the water dividing member 10a are disposed corresponding to one water outlet.
- the other water hole group 15c and the water hole group 15d which are symmetrically disposed at the center of the water dividing member 10a are disposed corresponding to the other water outlet.
- the sealing plug 40 rotates relative to the water dividing member 10a, the water outlet water passage is switched, that is, the water dividing member 10a is rotated, and the water hole group 15a and the water divided by the center of the water dividing member 10a are symmetrically disposed.
- the hole group 15b is respectively aligned with a through hole on one sealing plug 40 to open a water outlet water passage; or the water dividing hole group 15c and the water dividing hole group 15d which are symmetrically disposed at the center of the water dividing member 10a are respectively sealed with one
- the other through holes on the plug 40 are aligned to open another water outlet.
- the water flow sequentially passes through the water inlet path of the body 20, the through hole of the sealing plug 40, the water dividing hole groups 15a and 15b or the water dividing hole groups 15c and 15d, and the water outlet water path of the face cover assembly 30.
- each of the water separation holes 15a, 15b, 15c, and 15d in the water dividing member 10a of the present embodiment is as in Embodiment 1: including a drainage section 12, an acceleration section 14, and a water-gas mixing section 16.
- the drain section 12 is coupled to the upper end of the acceleration section 14.
- the moisture mixing section 16 is coupled to the lower end of the acceleration section 14.
- the cross-sectional area of the drain section 12 is greater than the cross-sectional area of the accelerating section 14.
- the cross-sectional area of the water-gas mixing section 16 is greater than the cross-sectional area of the cross section of the accelerating section 14.
- the cross-sectional shape of the drainage section 12 is in the shape of a horn, and the small end of the drainage section 12 is connected to the acceleration section 14.
- the side wall of the water-air mixing section 16 is provided with an air inlet hole 18 for allowing air to pass into the water-gas mixing section 16.
- the air inlet hole 18 is disposed near one end of the acceleration section 14. Preferably, the air inlet opening 18 abuts below the acceleration section 14.
- the structure of the water dividing member 10a of the present embodiment is as in Embodiment 2.
- the structure of each water dividing hole group 15a, 15b, 15c and 15d is as shown in Fig. 3.
- the water dividing member 10a includes a main member 11 stacked together. And a pair of members 13, the main member 11 is located above the sub-piece 13, and the main member 11 and the sub-piece 13 are combined by welding.
- the acceleration section 14 and the drainage section 12a are disposed on the main member 11, and the water-gas mixing section 16 is disposed on the sub-piece 13.
- the air inlet hole 18 is disposed near one end of the acceleration section 14.
- the water dividing member and the shower provided with the water dividing member structure comprises at least two water dividing holes, wherein the water dividing holes are used for connecting the water inlet water path and the water outlet water path of the shower head.
- the water is mixed with water and gas, and has the advantages of small volume, simple structure, and the like, and can be widely used in shower products, and has good industrial applicability.
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- Bathtubs, Showers, And Their Attachments (AREA)
Abstract
一种分水件(10)及设有该分水件(10)结构的花洒(100),该花洒(100)包括本体(20)、面盖组件(30)、密封塞(40)及分水件(10),该分水件(10)包括至少两个分水孔组(15a、15b、15c、15d),分水孔组(15a、15b、15c、15d)用于连通花洒的进水水路和出水水路,每个分水孔组(15a、15b、15c、15d)均具有至少两个分水孔(15),每个分水孔(15)包括加速段(14)及水气混合段(16),该水气混合段(16)连接在该加速段(14)的下端,该水气混合段(16)的过水截面面积大于该加速段(14)的过水截面面积,该水气混合段(16)的侧壁上开设有用于使空气通入到该水气混合段(16)的进气孔,该面盖组件(30)将该分水件(10)及该密封塞(40)盖设在该本体(100)内,该密封塞(40)抵接在该分水件(10)上,该密封塞(40)在相对该分水件(10)转动时切换接通所述出水水路。分水件(10)用于连通花洒的进水水路和出水水路并对水进行水气混合,具有体积小、结构简单等优点。
Description
本发明涉及一种分水件及设有该分水件结构的花洒。
传统的花洒包括本体组件及面盖组件,本体组件中设有供水通道,面盖组件包括分水体及花洒头。使用时,水流从本体组件内的供水能道流经分水体后流进花洒头,再由花洒头喷出。需要切换水花时,转动该分水体。此结构的花洒,花洒头喷出的水打在身体上会有刺痛感。
因此,有人设计出用于将空气融入到水中的水气混合装置,从而增强水的柔性,避免水花打在人体上出现刺痛感,同时起到节省用水的目的。水气混合装置通常是连接在花洒手柄上,这就使得花洒存在体积大、零件多、结构复杂、安装麻烦等缺陷。
本发明提供了一种分水件及设有该分水件结构的花洒,其克服了背景技术所存在的不足。本发明解决其技术问题所采用的技术方案是:
一种分水件,包括至少两个分水孔,所述分水孔用于连通出水终端的进水水路和出水水路,所述分水孔包括加速段及水气混合段,该水气混合段连接在该加速段的下端,该水气混合段的过水截面面积大于该加速段的过水截面面积,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔。
所述分水孔包括加速段及水气混合段,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔,水流进入到该加速段,由于面积变小,水流在此速度提高,压力降低,空气被引入到该水气混合段中,与水流充分混合。由于所述分水孔不仅能够用于连通出水终端的进水水路和出水水路,又能够对水进行水气混合,出水终端不需要另外设置水气混合装置,具有体积小、零件少、结构简单、安装方便的优点。
另外,每一个分水孔都包括加速段和水气混合段,保证空气与水流充分混合,与多个加速段共用一个水气混合段相比,除了吸气效率更高外,每个独立的水气混合段的直径比共用一个水气混合段的直径小很多,因此,按原有的尺寸比例,水气混合段的长度可以被大大减短,水流与空气在很短的距离内就可以得到很好的混合,从而减短整个分水件的厚度。
另外,分水件是水路切换的场所,是整个出水终端水阻最大的地方,对水流的流动是不利的,而水气混合结构因为需要加速孔,水阻也会变大,本发明的分水件的分水孔不但能够切换水路,还能够对水流进行加速并达到水气混合的目的,不会对水流形成双重水阻,水流通畅,吸气效果好,特别是在欧洲等低水压地区可以更有效地吸气。
一较佳实施例之中:所述分水孔还包括引流段,该引流段设置在该加速段的上端,该引流段的过水截面面积大于该加速段的过水截面面积。
该引流段能够使水流顺畅地进入到该加速段内,提高水的流速。
一种分水件,包括至少两个分水孔组,所述分水孔组用于连通出水终端的进水水路和出水水路,每个分水孔组均具有至少两个分水孔,每个分水孔包括加速段及水气混合段,该水气混合段连接在该加速段的下端,该水气混合段的过水截面面积大于该加速段的过水截面面积,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔。
一较佳实施例之中:所述分水件包括叠置在一起的主件和副件,该主件位于该副件上方,所述加速段设置在该主件上,所述水气混合段设置在该副件上。
一较佳实施例之中:所述主件和副件通过焊接组合在一起。
一较佳实施例之中:所述分水孔还包括引流段,该引流段设置在该加速段的上端,该引流段的过水截面面积大于该加速段的过水截面面积。
一种花洒,包括本体、面盖组件、密封塞及分水件,该分水件包括至少两个分水孔组,所述分水孔组用于连通花洒的进水水路和出水水路,每个分水孔组均具有至少两个分水孔,每个分水孔包括加速段及水气混合段,该水气混合段连接在该加速段的下端,该水气混合段的过水截面面积大于该加速段的过水截面面积,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔,该本体上设有所述进水水路,该面盖组件上设有所述出水水路,该面盖组件将该分水件及该密封塞盖设在该本体内,该密封塞抵接在该分水件上,该密封塞在相对该分水件转动时切换接通所述出水水路。
一较佳实施例之中:还包括固定座,该密封塞连接在该固定座上,该密封塞的中部设有通孔。
一较佳实施例之中:所述分水件具有四个分水孔组,其中两两分水孔组以该分水件的中心对称设置,所述密封塞的数量是两个,两个所述密封塞以该分水件的中心对称设置,每一个密封塞对应一个分水孔组设置。
下面结合附图和实施例对本发明作进一步说明。
图1绘示了本发明一种分水件的第一实施例的剖视示意图。
图2绘示了本发明一种分水件的第二实施例的立体分解示意图
图3绘示了图2所示分水件的分水孔组部位的剖视示意图。
图4绘示了本发明一种花洒的立体分解示意图。
图5绘示了图4所示花洒的立体组装示意图。
图6绘示了图4所示花洒的剖视示意图。
实施例1,请参照图1,本发明的分水件的第一实施例的剖视示意图。该分水件10不但能够对出水终端的水路进行切换,还能够对水流进行水气混合。该分水件10包括至少两个分水孔15,图中所示的分水孔15的数量是八个。
所述分水孔15用于连通出水终端的进水水路和出水水路。所述分水孔15包括一引流段12、一加速段14及一水气混合段16。该引流段12连接在该加速段14的上端。该水气混合段16连接在该加速段14的下端。该引流段12的过水截面面积大于该加速段14的过水截面面积。该水气混合段16的过水截面面积大于该加速段14的过水截面面积。该引流段12的横截面形状呈喇叭形状,该引流段12的小口端与该加速段14连接。该水气混合段16的侧壁上开设有用于使空气通入到该水气混合段16的进气孔18。该进气孔18靠近该加速段14一端设置。最好是,该进气孔18邻接在该加速段14的下方。
水流经过该引流段12与该加速段14后速度增大,进入到该水气混合段16后,空气被吸入到该水气混合段16中,与水流充分混合。
可以理解地,不设置所述引流段12同样能够完成对水流的加速作用。
另外,只要所述分水孔15的数量≥2,该分水件10就能够使出水终端实现不同的出水水路之间的切换。
实施例2,请参照图2和图3,其绘示了本发明分水件的第二实施例的示意图。所述分水件10a与第一实施例的不同之处在于:所述分水件10a上设有甲分水孔组15a、乙分水孔组15b、丙分水孔组15c、丁分水孔组15d四组,甲分水孔组15a、乙分水孔组15b以该分水件10a的中心对称设置,该丙分水孔组15c、丁分水孔组15d以该分水件10a的中心对称设置。每一个分水孔组包含至少两个分水孔15。当然,每一组分水孔中分水孔15的数量并不受限制。每一组分水孔组所包含的部分分水孔15的引流段12a连通设置。当然,每一组分水孔组所包含的分水孔15的引流段12a不连通也是可以的。
该甲分水孔组15a、乙分水孔组15b对应出水终端的一条出水水路设置,该丙分水孔组15c、丁分水孔组15d对应出水终端的另一条出水水路设置,通过选择开启该甲分水孔组15a、乙分水孔组15b或该丙分水孔组15c、丁分水孔组15d,实现不同的出水水路之间的切换。
本实施例中的各分水孔组15a、15b、15c和15d的结构参见图3,所述分水件10a包括叠置在一起的一主件11和一副件13,该主件11位于该副件13上方,所述主件11和副件13通过焊接组合在一起。所述加速段14及所述引流段12a设置在该主件11上,所述水气混合段16设置在该副件13上。该进气孔18靠近该加速段14一端设置。
可以理解的,所述分水孔组也可以是两组,只要每一条出水水路都至少能够与一个分水孔组相连接即可。
实施例3,请参照图4,其绘示了本发明一种花洒的立体分解示意图。该花洒100包括:分水件10a、一本体20、一面盖组件30、两个密封塞40及一固定座50。
该本体20上设有一条进水水路。该面盖组件30上设有两条出水水路。每一个密封塞40的中部设有一个通孔。
请参照图3、图5和图6,该固定座50收容在该本体20内;该两密封塞40连接在该固定座50上,所述两个密封塞40以该分水件10a的中心对称设置;该面盖组件30将该分水件10a及该密封塞40盖设在该本体20内;该密封塞40抵接在该分水件10a上,每一个密封塞40对应一个分水孔组设置。以该分水件10a的中心对称设置的甲分水孔组15a、乙分水孔组15b对应一条出水水路设置。以该分水件10a的中心对称设置的另外丙分水孔组15c、丁分水孔组15d对应另一条出水水路设置。
该密封塞40在相对该分水件10a转动时切换接通所述出水水路,即转动该分水件10a,以该分水件10a的中心对称设置的甲分水孔组15a、乙分水孔组15b分别与一个密封塞40上的一个通孔对齐,开启一条出水水路;或者以该分水件10a的中心对称设置的丙分水孔组15c、丁分水孔组15d分别与一个密封塞40上的另通孔对齐,开启另一条出水水路。
水流依次经过该本体20的进水水路、该密封塞40的通孔、分水孔组15a和15b或者分水孔组15c和15d、该面盖组件30的出水水路。
本实施例分水件10a中各分水孔组15a、15b、15c和15d的结构如实施例1:包括一引流段12、一加速段14及一水气混合段16。该引流段12连接在该加速段14的上端。该水气混合段16连接在该加速段14的下端。该引流段12的过水截面面积大于该加速段14的过水截面面积。该水气混合段16的过水截面面积大于该加速段14的过水截面面积。该引流段12的横截面形状呈喇叭形状,该引流段12的小口端与该加速段14连接。该水气混合段16的侧壁上开设有用于使空气通入到该水气混合段16的进气孔18。该进气孔18靠近该加速段14一端设置。最好是,该进气孔18邻接在该加速段14的下方。
本实施例分水件10a结构如实施例2,各分水孔组15a、15b、15c和15d的结构如附图3所示,所述分水件10a包括叠置在一起的一主件11和一副件13,该主件11位于该副件13上方,所述主件11和副件13通过焊接组合在一起。所述加速段14及所述引流段12a设置在该主件11上,所述水气混合段16设置在该副件13上。该进气孔18靠近该加速段14一端设置。
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。
本发明一种分水件及设有该分水件结构的花洒,其分水件包括至少两个分水孔组,所述分水孔用于连通花洒的进水水路和出水水路并对水进行水气混合,具有体积小、结构简单等优点,可在花洒类产品上广泛使用,具有良好的工业实用性。
Claims (9)
- 一种分水件,包括至少两个分水孔,所述分水孔用于连通出水终端的进水水路和出水水路,其特征在于:所述分水孔包括加速段及水气混合段,该水气混合段连接在该加速段的下端,该水气混合段的过水截面面积大于该加速段的过水截面面积,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔。
- 根据权利要求1所述的一种分水件,其特征在于:所述分水孔还包括引流段,该引流段设置在该加速段的上端,该引流段的过水截面面积大于该加速段的过水截面面积。
- 一种分水件,包括至少两个分水孔组,所述分水孔组用于连通出水终端的进水水路和出水水路,其特征在于:每个分水孔组均具有至少两个分水孔,每个分水孔包括加速段及水气混合段,该水气混合段连接在该加速段的下端,该水气混合段的过水截面面积大于该加速段的过水截面面积,该水气混合段的侧壁上开设有用于使空气通入到该水气混合段的进气孔。
- 根据权利要求3所述的一种分水件,其特征在于:所述分水件包括叠置在一起的主件和副件,该主件位于该副件上方,所述加速段设置在该主件上,所述水气混合段设置在该副件上。
- 根据权利要求4所述的一种分水件,其特征在于:所述主件和副件通过焊接组合在一起。
- 根据权利要求3或4或5所述的一种分水件,其特征在于:所述分水孔还包括引流段,该引流段设置在该加速段的上端,该引流段的过水截面面积大于该加速段的过水截面面积。
- 一种花洒,包括本体、面盖组件及密封塞,其特征在于:还包括权利要求3所述的分水件,该本体上设有所述进水水路,该面盖组件上设有所述出水水路,该面盖组件将该分水件及该密封塞盖设在该本体内,该密封塞抵接在该分水件上,该密封塞在相对该分水件转动时切换接通所述出水水路。
- 根据权利要求7所述的一种花洒,其特征在于:还包括固定座,该密封塞连接在该固定座上,该密封塞的中部设有通孔。
- 根据权利要求8所述的一种花洒,其特征在于:所述分水件具有四个分水孔组,其中两两分水孔组以该分水件的中心对称设置,所述密封塞的数量是两个,两个所述密封塞以该分水件的中心对称设置,每一个密封塞对应一个分水孔组设置。
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| CN201320477207.9U CN203389780U (zh) | 2013-08-06 | 2013-08-06 | 一种分水件及设有该分水件结构的花洒 |
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