WO2018205047A1 - Multistage magnetized water maker - Google Patents

Multistage magnetized water maker Download PDF

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Publication number
WO2018205047A1
WO2018205047A1 PCT/CN2017/000350 CN2017000350W WO2018205047A1 WO 2018205047 A1 WO2018205047 A1 WO 2018205047A1 CN 2017000350 W CN2017000350 W CN 2017000350W WO 2018205047 A1 WO2018205047 A1 WO 2018205047A1
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Prior art keywords
water
water outlet
spoiler
magnetization module
magnetization
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PCT/CN2017/000350
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French (fr)
Chinese (zh)
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朱柯明
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朱柯明
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Priority to PCT/CN2017/000350 priority Critical patent/WO2018205047A1/en
Publication of WO2018205047A1 publication Critical patent/WO2018205047A1/en

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/48Treatment of water, waste water, or sewage with magnetic or electric fields

Definitions

  • the present invention is a multi-stage magnetized water maker, and more particularly to a multi-stage magnetized water maker that can be incorporated into a domestic or factory water supply system.
  • Magnetized water is a kind of water that is magnetized by a magnetic field and is divided into natural magnetized water and artificial magnetized water.
  • the natural magnetized water or the place of origin is relatively strong in geomagnetism or iron ore.
  • the magnetized water produced by geomagnetism has a short period of use and is not suitable for long-term commercial use. When the magnetic field strength of iron ore exceeds 6000 Gauss, the life of natural magnetized water can reach 25 years.
  • the invention is a multi-stage magnetized water maker, which mainly solves the problem of water efficiency in the magnetization process.
  • the present invention provides a multi-stage magnetized water maker structure, comprising: a body having a water inlet and a water outlet; and a first magnetization module, the two permanent magnets are coated in pairs in the body and formed with a first The first channel, the inlet side of the first channel is connected to the inlet by the first inlet, and the outlet side of the first channel is connected to the first outlet; and the second magnetization module is formed by two permanent magnets.
  • the second flow channel is connected to the first flow channel by the second water channel, and the second water channel is connected to the first water channel, and the second channel water outlet side is the second water channel. Connected to each other, and the second water outlet is connected to the water outlet.
  • the aforementioned manufacturer structure wherein the first water inlet has a first spoiler.
  • the aforementioned manufacturer structure wherein the first water outlet end is formed with a second spoiler; or the third spoiler; or the second spoiler third spoiler.
  • the second water outlet further includes a third magnetization module between the water outlet and the second permanent magnet, and the two permanent magnets are wrapped in the body and formed with a third flow path.
  • the inlet side of the three-channel is connected to the second outlet, and the outlet side of the third passage is by The third water outlet is in communication with the water outlet.
  • the second water outlet has a fifth spoiler; or a sixth spoiler; or a seventh spoiler; or any combination of the fifth, sixth, and seventh spoilers.
  • any one of the permanent magnets is provided with a leakage preventing cover at a non-corresponding first flow path or the second flow path.
  • the magnetic flux of the third magnetization module is greater than the magnetic flux of the second magnetization module by more than the magnetic flux of the first magnetization module.
  • the magnetic flux of the third magnetization module is 9000 ⁇ 1500 Gauss
  • the magnetic flux of the second magnetization module is 7000 ⁇ 1500 Gauss
  • the magnetic flux of the first magnetization module is 5000 ⁇ 1500 Gauss.
  • any of the permanent magnets is a neodymium iron boron magnet.
  • the magnetic effect of water can be improved by multi-polar magnetization and gradually increasing the magnetic flux of magnetization.
  • the multi-polar magnetization and the magnetic flux that gradually increases the magnetization can keep the magnetized water and magnetization effect longer.
  • the electromagnetic molecule can be cut and magnetized to achieve a bactericidal effect.
  • FIG. 1 is a perspective view showing an embodiment of a multi-stage magnetized water maker of the present invention.
  • Fig. 2A is a cross-sectional view taken along line A-A of Fig. 1;
  • 2B is a first embodiment of a magnetization module of a multi-stage magnetized water maker of the present invention.
  • FIG. 2C is a first perspective view of the interior of a multi-stage magnetized water maker of the present invention.
  • Fig. 3A is a cross-sectional view taken along line A-A of Fig. 1; Fig. 3;
  • 3B is a second embodiment of a magnetization module of a multi-stage magnetized water maker of the present invention.
  • Figure 3C is a second perspective view of the interior of the maker of multi-stage magnetized water of the present invention.
  • first flow channel 30 second magnetization module
  • the embodiment is a multi-stage magnetized water maker 100 structure comprising: a body 10 ; a first magnetization module 20 ; and a second magnetization module 30 .
  • the body 10 is mainly made of a plastic material for covering the first magnetization module 20 and the second magnetization module 30, and forms a flow channel therein.
  • the body 10 has a water inlet 110 and a water outlet 120, and the water inlet 110 It can be combined with a home or industrial water supply system, and the water outlet 120 can conveniently provide water after magnetization.
  • the water inlet 110 or the outside of the water outlet 120 may further have an external thread 130.
  • the first magnetization module 20 is covered in the body 10 by two permanent magnets 50 and is formed with a first flow channel 210. In order to allow water to smoothly enter the first flow channel 210 for magnetization, the first flow channel 210 is advanced.
  • the water side is connected to the water inlet 110 by the first water inlet f11.
  • the shape of the first water inlet f11 may be such that the diameter of the intermediate section is wider than that of the front and rear ports, and the first water inlet f11 has the first spoiler c01.
  • the water outlet side of the first flow path 210 is in communication with the first water discharge channel f12.
  • the shape of the first water outlet f12 may be that the diameter of the middle section is wider than that of the front and rear ports, and the second spoiler c02 is formed at the end of the first water outlet f12, or the second spoiler c02, A third spoiler c03 may be formed at the end of the water outlet f12.
  • the second magnetization module 30 is covered by the two permanent magnets 50 in pairs in the body 10 and formed with the second flow channel 310. Similarly, in order to facilitate the water to enter the second flow channel 310 for magnetization, the second flow The water inlet side of the channel 310 is connected to the first water outlet f12 by the second water inlet f21.
  • the shape of the second water inlet f21 may be such that the diameter of the intermediate section is wider than that of the front and rear ports, and the second water inlet f21 may be formed with the fourth spoiler c04.
  • the second flow channel 310 is connected to the second water outlet f22, and the second water outlet f22 is connected to the water outlet 120, and the second water outlet f22 is connected to the first water outlet f12 or the second water inlet f21. They are intertwined but not interconnected, so that the magnetized water can be smoothly exported.
  • the shape of the second water outlet f22 may be such that the diameter of the middle section is wider than that of the front and rear ports.
  • the third magnetization module 40 in addition to the first magnetization module 20 and the second magnetization module 30 , between the second water outlet f22 and the water outlet 120 , the third magnetization module 40 can be further connected in series.
  • the third magnetization module 40 is also wrapped in the body 10 in pairs by two permanent magnets 50 and is formed with a third flow path 410.
  • the water inlet side of the third flow path 410 is in communication with the second water discharge channel f22, and the water discharge side of the third flow path 410 is the third water discharge channel.
  • F32 is in communication with the water outlet 120, and the third water outlet f32 is interlaced with the first water outlet f12 or the second water inlet channel f21 but is not in communication with each other.
  • the second water outlet f22 may be designed to have the fifth spoiler c05, or to have the sixth spoiler c06, or to increase the seventh spoiler c07 again.
  • the above first and second water inlets f11, f21 and the first, second and third water outlets f12, f22, f32 are designed such that the diameter of the middle section is wider than that of the front and rear ports, and is also in the first and second directions.
  • the water passages f11, f21 and the first, second and third water outlets f12, f22, f32 are provided with one or more spoilers, the main purpose of which is to make the water molecules change from macromolecules to small molecules, and the water molecules are overturned. It is broken up, relieved and relaxed, and then multi-faceted and multi-directional overturning extrusion to increase the magnetization effect.
  • the two permanent electrodes 20 or the second magnetization module 30 or the third magnetization module 40 are permanently disposed.
  • the magnet 50 is disposed by magnetic attraction, and the width of the first flow channel 210, the second flow channel 310 or the third flow channel 410 may be 0.5 mm to 5 mm; in order to be able to respond to different flow rates, the first magnetization
  • the module 20 or the second magnetization module 30 or the third magnetization module 40 may be formed by connecting at least two sets of magnetization modules in series and parallel to each other to form a unit module, and may further connect other N unit modules in parallel to satisfy each A demand for traffic, where N is a positive integer.
  • any of the above-described permanent magnets 50 may optionally use a neodymium iron boron magnet as the magnetized permanent magnet 50.
  • a leakage prevention cover 60 is provided.
  • the anti-bleed cover 60 can be made of stainless steel.
  • the magnetic flux design of the second magnetization module 30 is greater than the magnetic flux of the first magnetization module 20, and the magnetic flux design of the third magnetization module 40 is greater than the second magnetization module 30.
  • Magnetic flux so when water enters the water stream, multi-stage magnetized water After the generator 100, it will be magnetized by a higher magnetic flux in one stage and one stage to optimize the magnetization efficiency.
  • the magnetic flux of the third magnetization module 40 of the present embodiment is designed to be 9000 ⁇ 1500 Gauss
  • the magnetic flux of the second magnetization module 30 is designed to be 7000 ⁇ 1500 Gauss
  • the magnetic flux of the first magnetization module 20 is designed to be 5000 ⁇ 1500 Gauss.

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  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)

Abstract

A multistage magnetized water maker structure, comprising: a body (10) having a water inlet (110) and a water outlet (120); and a first magnetization module (20) and the second magnetization module (30) which are cladded in the body (10) by two permanent magnets (50) in pairs respectively and are respectively formed with a first flow channel (210) and a second flow channel (310). The first flow channel (210) is communicated with the water inlet (110); an inflow side of the second flow channel (310) is communicated with the first flow channel (210), and an outflow side of the second flow channel (310) is communicated with the water outlet (120). By implementing the maker structure, water molecules can be effectively magnetized.

Description

多级磁化水的制造器Multi-stage magnetized water maker 技术领域Technical field
本发明是一种多级磁化水的制造器,特别为一种可结合于家庭或工厂供水系统的多级磁化水的制造器。The present invention is a multi-stage magnetized water maker, and more particularly to a multi-stage magnetized water maker that can be incorporated into a domestic or factory water supply system.
背景技术Background technique
磁化水是一种被磁场磁化了的水,又区分为天然磁化水和人工磁化水。天然磁化水或产地相对地磁较强或铁矿较多,地磁产生的磁化水使用周期较短,不宜长周期商用,铁矿磁场强度超过6000高斯时,天然磁化水的使用周期可达25年。Magnetized water is a kind of water that is magnetized by a magnetic field and is divided into natural magnetized water and artificial magnetized water. The natural magnetized water or the place of origin is relatively strong in geomagnetism or iron ore. The magnetized water produced by geomagnetism has a short period of use and is not suitable for long-term commercial use. When the magnetic field strength of iron ore exceeds 6000 Gauss, the life of natural magnetized water can reach 25 years.
人工磁化水是通过磁化器产生的,在工业、农业、医保等领域有广泛的应用。但是水是一种弱磁质,从水离开磁场的那一刻起,就不易长期带磁了,因为地球就是最大的磁场。自来水必须以一定的流速垂直切割永磁(钕铁硼)磁力线,进而产生电能和动能,即活化能改变。Artificial magnetized water is produced by a magnetizer and has a wide range of applications in industries, agriculture, medical insurance, and the like. But water is a weak magnetic material. From the moment the water leaves the magnetic field, it is not easy to magnetize for a long time, because the earth is the largest magnetic field. Tap water must cut the magnetic field lines of permanent magnets (NdFeB) vertically at a certain flow rate to generate electric energy and kinetic energy, that is, the activation energy changes.
发明内容Summary of the invention
本发明为一种多级磁化水的制造器,其主要是要解决水在磁化过程的效率问题。The invention is a multi-stage magnetized water maker, which mainly solves the problem of water efficiency in the magnetization process.
本发明是提供一种多级磁化水的制造器结构,其包括:本体,具有进水口及出水口;第一磁化模块,是由两个永久磁铁成对被包覆于本体内并形成有第一流道,第一流道进水侧是借由第一进水道与进水口相连通,又第一流道出水侧是与第一出水道相连通;以及第二磁化模块,是由两个永久磁铁成对被包覆于本体内并形成有第二流道,第二流道进水侧是借由第二进水道与第一出水道相连通,又第二流道出水侧是与第二出水道相连通,又第二出水道是与出水口相连通。The present invention provides a multi-stage magnetized water maker structure, comprising: a body having a water inlet and a water outlet; and a first magnetization module, the two permanent magnets are coated in pairs in the body and formed with a first The first channel, the inlet side of the first channel is connected to the inlet by the first inlet, and the outlet side of the first channel is connected to the first outlet; and the second magnetization module is formed by two permanent magnets. The second flow channel is connected to the first flow channel by the second water channel, and the second water channel is connected to the first water channel, and the second channel water outlet side is the second water channel. Connected to each other, and the second water outlet is connected to the water outlet.
本发明的目的及解决其技术问题还可采用以下技术措施进一步实现。The object of the present invention and solving the technical problems thereof can be further achieved by the following technical measures.
前述的制造器结构,其中该进水口或该出水口具有外螺牙。The aforementioned manufacturer structure, wherein the water inlet or the water outlet has an external thread.
前述的制造器结构,其中该第一进水道具有第一扰流部。The aforementioned manufacturer structure, wherein the first water inlet has a first spoiler.
前述的制造器结构,其中该第一出水道末端形成有第二扰流部;或第三扰流部;或第二扰流部第三扰流部。The aforementioned manufacturer structure, wherein the first water outlet end is formed with a second spoiler; or the third spoiler; or the second spoiler third spoiler.
前述的制造器结构,其中该第二进水道具有第四扰流部。The aforementioned manufacturer structure, wherein the second water inlet has a fourth spoiler.
前述的制造器结构,其中该第二出水道是与该出水口间进一步包括第三磁化模块,其由两个永久磁铁成对被包覆于该本体内并形成有第三流道,该第三流道进水侧是与该第二出水道相连通,又该第三流道出水侧是借由 第三出水道与该出水口相连通。In the foregoing manufacturer structure, the second water outlet further includes a third magnetization module between the water outlet and the second permanent magnet, and the two permanent magnets are wrapped in the body and formed with a third flow path. The inlet side of the three-channel is connected to the second outlet, and the outlet side of the third passage is by The third water outlet is in communication with the water outlet.
前述的制造器结构,其中该第二出水道具有第五扰流部;或第六扰流部;或第七扰流部;或第五、第六及第七扰流部其任一组合。The aforementioned manufacturer structure, wherein the second water outlet has a fifth spoiler; or a sixth spoiler; or a seventh spoiler; or any combination of the fifth, sixth, and seventh spoilers.
前述的制造器结构,其中该第一磁化模块或该第二磁化模块或该第三磁化模块的两个永久磁铁是相吸设置。The aforementioned fabric structure, wherein the first magnetization module or the second magnetization module or the two permanent magnets of the third magnetization module are in a suction arrangement.
前述的制造器结构,其中该任一永久磁铁于非对应该第一流道或该第二流道处设有防泄磁罩。In the foregoing manufacturer structure, any one of the permanent magnets is provided with a leakage preventing cover at a non-corresponding first flow path or the second flow path.
前述的制造器结构,其中该第三磁化模块的磁通量大于该第二磁化模块的磁通量大于该第一磁化模块的磁通量。In the foregoing manufacturer structure, the magnetic flux of the third magnetization module is greater than the magnetic flux of the second magnetization module by more than the magnetic flux of the first magnetization module.
前述的制造器结构,其中该第三磁化模块的磁通量为9000±1500高斯,该第二磁化模块的磁通量为7000±1500高斯,该第一磁化模块的磁通量为5000±1500高斯。In the foregoing manufacturer structure, the magnetic flux of the third magnetization module is 9000±1500 Gauss, the magnetic flux of the second magnetization module is 7000±1500 Gauss, and the magnetic flux of the first magnetization module is 5000±1500 Gauss.
前述的制造器结构,其中任一该永久磁铁为钕铁硼磁铁。In the foregoing manufacturer structure, any of the permanent magnets is a neodymium iron boron magnet.
借由本发明的实施,可达到下列进步功效:By the implementation of the present invention, the following advancements can be achieved:
一、可以提供更大的接触面积以提升磁化效率。First, it can provide a larger contact area to improve the magnetization efficiency.
二、借由多极磁化及逐渐拉高磁化的磁通量,能使水的磁化效果提升。Second, the magnetic effect of water can be improved by multi-polar magnetization and gradually increasing the magnetic flux of magnetization.
三、借由多极磁化及逐渐拉高磁化的磁通量,能使被磁化的水,磁化效应保持更久。Third, the multi-polar magnetization and the magnetic flux that gradually increases the magnetization can keep the magnetized water and magnetization effect longer.
四、可借由电磁场的切割及磁化共振,使水分子团达到杀菌效果。Fourth, the electromagnetic molecule can be cut and magnetized to achieve a bactericidal effect.
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段,而可依照说明书的内容予以实施,并且为了让本发明的上述和其他目的、特征和优点能够更明显易懂,以下特举较佳实施例,并配合附图,详细说明如下。The above description is only an overview of the technical solutions of the present invention, and the above-described and other objects, features and advantages of the present invention can be more clearly understood. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, preferred embodiments will be described in detail with reference to the accompanying drawings.
附图的简要说明BRIEF DESCRIPTION OF THE DRAWINGS
图1是本发明一种多级磁化水的制造器立体解实施例图。BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a perspective view showing an embodiment of a multi-stage magnetized water maker of the present invention.
图2A是图1的A-A剖线剖视实施例图一。Fig. 2A is a cross-sectional view taken along line A-A of Fig. 1;
图2B是本发明一种多级磁化水的制造器的磁化模块实施例图一。2B is a first embodiment of a magnetization module of a multi-stage magnetized water maker of the present invention.
图2C是本发明一种多级磁化水的制造器内部透视实施例图一。2C is a first perspective view of the interior of a multi-stage magnetized water maker of the present invention.
图3A是图1的A-A剖线剖视实施例图二。Fig. 3A is a cross-sectional view taken along line A-A of Fig. 1; Fig. 3;
图3B是本发明一种多级磁化水的制造器的磁化模块实施例图二。3B is a second embodiment of a magnetization module of a multi-stage magnetized water maker of the present invention.
图3C是本发明一种多级磁化水的制造器内部透视实施例图二。Figure 3C is a second perspective view of the interior of the maker of multi-stage magnetized water of the present invention.
【主要元件符号说明】[Main component symbol description]
100:多级磁化水的制造器结构      10:本体100: Manufacturer structure of multi-stage magnetized water 10: Ontology
110:进水口                      120:出水口 110: water inlet 120: water outlet
130:外螺牙                      20:第一磁化模块130: external thread 20: first magnetization module
210:第一流道                    30:第二磁化模块210: first flow channel 30: second magnetization module
310:第二流道                    40:第三磁化模块310: second flow channel 40: third magnetization module
410:第三流道                    50:永久磁铁410: third flow channel 50: permanent magnet
60:防泄磁罩                     f11:第一进水道60: anti-discharge cover f11: first water intake
f12:第一出水道                  f21:第二进水道F12: the first water channel f21: the second water channel
f22:第二出水道                  f32:第三出水道F22: second water outlet f32: third water outlet
c01:第一扰流部                  c02:第二扰流部C01: first spoiler c02: second spoiler
c03:第三扰流部                  c04:第四扰流部C03: third spoiler c04: fourth spoiler
c05:第五扰流部                  c06:第六扰流部C05: fifth spoiler c06: sixth spoiler
c07:第七扰流部C07: seventh spoiler
实现发明的最佳方式The best way to achieve your invention
为便于审查员能对本发明的技术手段及运作过程有更进一步的认识与了解,兹举实施例配合图式,详细说明如下。In order to facilitate the examiner to have a further understanding and understanding of the technical means and operation process of the present invention, the embodiments are combined with the drawings, and the details are as follows.
如图1、图2A、图2B及图2C所示,本实施例为一种多级磁化水的制造器100结构,其包括:本体10;第一磁化模块20;以及第二磁化模块30。As shown in FIG. 1 , FIG. 2A , FIG. 2B and FIG. 2C , the embodiment is a multi-stage magnetized water maker 100 structure comprising: a body 10 ; a first magnetization module 20 ; and a second magnetization module 30 .
本体10,主要是以塑胶材料制作而成,用以包覆第一磁化模块20及第二磁化模块30,并在其内部形成流道,本体10具有进水口110及出水口120,进水口110可以与家庭或工业供水系统结合,出水口120可方便提供磁化后用水。为了方便结合,进水口110或出水口120外侧,可以进一步具有外螺牙130。The body 10 is mainly made of a plastic material for covering the first magnetization module 20 and the second magnetization module 30, and forms a flow channel therein. The body 10 has a water inlet 110 and a water outlet 120, and the water inlet 110 It can be combined with a home or industrial water supply system, and the water outlet 120 can conveniently provide water after magnetization. In order to facilitate the combination, the water inlet 110 or the outside of the water outlet 120 may further have an external thread 130.
第一磁化模块20,是由两个永久磁铁50成对被包覆于本体10内并形成有第一流道210,为了让水能顺利进入第一流道210以进行磁化,因此第一流道210进水侧是借由第一进水道f11与进水口110相连通。第一进水道f11的形状,可以是中间段口径较前、后两端口径为宽,又第一进水道f11具有第一扰流部c01。The first magnetization module 20 is covered in the body 10 by two permanent magnets 50 and is formed with a first flow channel 210. In order to allow water to smoothly enter the first flow channel 210 for magnetization, the first flow channel 210 is advanced. The water side is connected to the water inlet 110 by the first water inlet f11. The shape of the first water inlet f11 may be such that the diameter of the intermediate section is wider than that of the front and rear ports, and the first water inlet f11 has the first spoiler c01.
又第一流道210出水侧是与第一出水道f12相连通。第一出水道f12的形状,也可以是中间段口径较前、后两端口径为宽,又第一出水道f12末端形成有第二扰流部c02,或者除了第二扰流部c02,第一出水道f12末端可再形成有第三扰流部c03。Further, the water outlet side of the first flow path 210 is in communication with the first water discharge channel f12. The shape of the first water outlet f12 may be that the diameter of the middle section is wider than that of the front and rear ports, and the second spoiler c02 is formed at the end of the first water outlet f12, or the second spoiler c02, A third spoiler c03 may be formed at the end of the water outlet f12.
第二磁化模块30,是由两个永久磁铁50成对被包覆于本体10内并形成有第二流道310,同样的为了方便让水进入第二流道310以进行磁化,第二流道310进水侧是借由第二进水道f21与第一出水道f12相连通。第二进水道f21的形状可以是中间段口径较前、后两端口径为宽,第二进水道f21可以形成具有第四扰流部c04。 The second magnetization module 30 is covered by the two permanent magnets 50 in pairs in the body 10 and formed with the second flow channel 310. Similarly, in order to facilitate the water to enter the second flow channel 310 for magnetization, the second flow The water inlet side of the channel 310 is connected to the first water outlet f12 by the second water inlet f21. The shape of the second water inlet f21 may be such that the diameter of the intermediate section is wider than that of the front and rear ports, and the second water inlet f21 may be formed with the fourth spoiler c04.
又第二流道310出水侧是与第二出水道f22相连通,又第二出水道f22是与出水口120相连通,且第二出水道f22与第一出水道f12或第二进水道f21是相互交错但不互相连通,如此可以让磁化后的水顺利导出。第二出水道f22的形状也可以是中间段口径较前、后两端口径为宽。The second flow channel 310 is connected to the second water outlet f22, and the second water outlet f22 is connected to the water outlet 120, and the second water outlet f22 is connected to the first water outlet f12 or the second water inlet f21. They are intertwined but not interconnected, so that the magnetized water can be smoothly exported. The shape of the second water outlet f22 may be such that the diameter of the middle section is wider than that of the front and rear ports.
如图1、图3A、图3B及图3C所示,除了第一磁化模块20及第二磁化模块30,于第二出水道f22是与出水口120间,可以进一步串接第三磁化模块40,第三磁化模块40同样也是由两个永久磁铁50成对被包覆于本体10内并形成有第三流道410。As shown in FIG. 1 , FIG. 3A , FIG. 3B and FIG. 3C , in addition to the first magnetization module 20 and the second magnetization module 30 , between the second water outlet f22 and the water outlet 120 , the third magnetization module 40 can be further connected in series. The third magnetization module 40 is also wrapped in the body 10 in pairs by two permanent magnets 50 and is formed with a third flow path 410.
同样的,为了让水顺利进入第三流道410以进行磁化,第三流道410进水侧是与第二出水道f22相连通,又第三流道410出水侧是借由第三出水道f32与出水口120相连通,且第三出水道f32与第一出水道f12或第二进水道f21是相互交错但不互相连通。Similarly, in order to allow water to smoothly enter the third flow path 410 for magnetization, the water inlet side of the third flow path 410 is in communication with the second water discharge channel f22, and the water discharge side of the third flow path 410 is the third water discharge channel. F32 is in communication with the water outlet 120, and the third water outlet f32 is interlaced with the first water outlet f12 or the second water inlet channel f21 but is not in communication with each other.
当增加第三磁化模块40的设置后,第二出水道f22可以设计成具有第五扰流部c05,或者再增加具有第六扰流部c06,更或者再次增加具有第七扰流部c07。When the setting of the third magnetization module 40 is increased, the second water outlet f22 may be designed to have the fifth spoiler c05, or to have the sixth spoiler c06, or to increase the seventh spoiler c07 again.
以上将第一、二进水道f11,f21与第一、二、三出水道f12,f22,f32设计成中间段口径是较前、后两端口径为宽的形状,又在第一、二进水道f11,f21与第一、二、三出水道f12,f22,f32内设置一到多个扰流部,其主要的目的是要让水分子由大分子变成小分子,并且让水分子翻覆的被打散、缓解及放松,然后再次多面向及多方向的翻覆挤压,以增加磁化效果。The above first and second water inlets f11, f21 and the first, second and third water outlets f12, f22, f32 are designed such that the diameter of the middle section is wider than that of the front and rear ports, and is also in the first and second directions. The water passages f11, f21 and the first, second and third water outlets f12, f22, f32 are provided with one or more spoilers, the main purpose of which is to make the water molecules change from macromolecules to small molecules, and the water molecules are overturned. It is broken up, relieved and relaxed, and then multi-faceted and multi-directional overturning extrusion to increase the magnetization effect.
为了让经过第一流道210、第二流道310或第三流道410的水被有效的磁化,因此设置于第一磁化模块20或第二磁化模块30或第三磁化模块40的两个永久磁铁50,是以磁性相吸的方式进行设置,又第一流道210、第二流道310或第三流道410的宽度可以是0.5mm-5mm;为了能因应不同流量的使用,第一磁化模块20或第二磁化模块30或第三磁化模块40,除了可以由至少两组磁化模块相互串接且彼此平行设置而形成一单元模块外,也可以再并联其他N个单元模块,以满足各种流量的需求,其中N为正整数。In order to allow the water passing through the first flow path 210, the second flow path 310 or the third flow path 410 to be effectively magnetized, the two permanent electrodes 20 or the second magnetization module 30 or the third magnetization module 40 are permanently disposed. The magnet 50 is disposed by magnetic attraction, and the width of the first flow channel 210, the second flow channel 310 or the third flow channel 410 may be 0.5 mm to 5 mm; in order to be able to respond to different flow rates, the first magnetization The module 20 or the second magnetization module 30 or the third magnetization module 40 may be formed by connecting at least two sets of magnetization modules in series and parallel to each other to form a unit module, and may further connect other N unit modules in parallel to satisfy each A demand for traffic, where N is a positive integer.
上述的任一个永久磁铁50可以选择使用钕铁硼磁铁作为磁化的永久磁铁50。Any of the above-described permanent magnets 50 may optionally use a neodymium iron boron magnet as the magnetized permanent magnet 50.
为了让每一组永久磁铁50能有效的对其对应的流道进行磁化,并使每一组永久磁铁50间不会互相磁力干扰,因此于任一永久磁铁50于非对应第一流道210或第二流道310或第三流道410处,设有防泄磁罩60。防泄磁罩60可以使用不锈钢钢材加以制作。In order to allow each set of permanent magnets 50 to effectively magnetize their corresponding flow paths, and to prevent magnetic interference between each set of permanent magnets 50, any permanent magnet 50 is not corresponding to the first flow path 210 or At the second flow path 310 or the third flow path 410, a leakage prevention cover 60 is provided. The anti-bleed cover 60 can be made of stainless steel.
为了能在过程中,使通过流道的水被有效磁化,因此将第二磁化模块30的磁通量设计大于第一磁化模块20的磁通量,又第三磁化模块40的磁通量设计大于第二磁化模块30的磁通量,如此当水进入水流多级磁化水的制 造器100后,将被一阶段一阶段借由更高的磁通量进行磁化,以使磁化效率最佳化。本实施例的第三磁化模块40的磁通量是设计为9000±1500高斯,第二磁化模块30的磁通量是设计为7000±1500高斯,第一磁化模块20的磁通量是设计为5000±1500高斯。In order to enable the water passing through the flow path to be effectively magnetized in the process, the magnetic flux design of the second magnetization module 30 is greater than the magnetic flux of the first magnetization module 20, and the magnetic flux design of the third magnetization module 40 is greater than the second magnetization module 30. Magnetic flux, so when water enters the water stream, multi-stage magnetized water After the generator 100, it will be magnetized by a higher magnetic flux in one stage and one stage to optimize the magnetization efficiency. The magnetic flux of the third magnetization module 40 of the present embodiment is designed to be 9000±1500 Gauss, the magnetic flux of the second magnetization module 30 is designed to be 7000±1500 Gauss, and the magnetic flux of the first magnetization module 20 is designed to be 5000±1500 Gauss.
以上所述,仅是本发明的较佳实施例而已,并非对本发明做任何形式上的限制,虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专业的技术人员,在不脱离本发明技术方案范围内,当可利用上述揭示的技术内容做出些许更动或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所做的任何简单修改、等同变化与修饰,均仍属于本发明技术方案的范围内。 The above is only a preferred embodiment of the present invention, and is not intended to limit the scope of the present invention. Although the present invention has been disclosed in the above preferred embodiments, it is not intended to limit the present invention. The skilled person can make some modifications or modifications to the equivalent embodiments by using the above-disclosed technical contents without departing from the technical scope of the present invention. The invention is not limited to any simple modifications, equivalent changes and modifications of the above embodiments.

Claims (12)

  1. 一种多级磁化水的制造器结构,其包括:A multi-stage magnetized water maker structure comprising:
    本体,具有进水口及出水口;The body has a water inlet and a water outlet;
    第一磁化模块,是由两个永久磁铁成对被包覆于该本体内并形成有第一流道,该第一流道进水侧是借由第一进水道与该进水口相连通,又该第一流道出水侧是与第一出水道相连通;以及The first magnetization module is formed by pairing two permanent magnets in the body and forming a first flow channel, and the water inlet side of the first flow channel is connected to the water inlet through the first water inlet, and The outlet side of the first flow passage is in communication with the first outlet; and
    第二磁化模块,是由两个永久磁铁成对被包覆于该本体内并形成有第二流道,该第二流道进水侧是借由第二进水道与该第一出水道相连通,又该第二流道出水侧是与第二出水道相连通,又该第二出水道是与该出水口相连通。The second magnetization module is formed by pairing two permanent magnets in the body and forming a second flow path, and the water inlet side of the second flow path is connected to the first water outlet by the second water inlet And the second water outlet side is connected to the second water outlet, and the second water outlet is connected to the water outlet.
  2. 根据权利要求1所述的制造器结构,其中该进水口或该出水口具有外螺牙。The maker structure of claim 1 wherein the water inlet or the water outlet has an external thread.
  3. 根据权利要求1所述的制造器结构,其中该第一进水道具有第一扰流部。The maker structure of claim 1 wherein the first water inlet has a first spoiler.
  4. 根据权利要求1所述的制造器结构,其中该第一出水道末端形成有第二扰流部;或第三扰流部;或第二扰流部第三扰流部。The fabric structure according to claim 1, wherein the first water outlet end is formed with a second spoiler; or the third spoiler; or the second spoiler third spoiler.
  5. 根据权利要求1所述的制造器结构,其中该第二进水道具有第四扰流部。The maker structure of claim 1 wherein the second water inlet has a fourth spoiler.
  6. 根据权利要求1所述的制造器结构,其中该第二出水道是与该出水口间进一步包括第三磁化模块,其由两个永久磁铁成对被包覆于该本体内并形成有第三流道,该第三流道进水侧是与该第二出水道相连通,又该第三流道出水侧是借由第三出水道与该出水口相连通。The fabric structure of claim 1 , wherein the second water outlet further comprises a third magnetization module between the water outlet, the two permanent magnets being wrapped in the body in pairs and formed with a third The flow channel, the water inlet side of the third flow channel is in communication with the second water outlet, and the water outlet side of the third flow channel is connected to the water outlet by a third water outlet.
  7. 根据权利要求6所述的制造器结构,其中该第二出水道具有第五扰流部;或第六扰流部;或第七扰流部;或第五、第六及第七扰流部其任一组合。The fabric structure according to claim 6, wherein the second water outlet has a fifth spoiler; or a sixth spoiler; or a seventh spoiler; or fifth, sixth, and seventh spoilers Any combination of them.
  8. 根据权利要求6所述的制造器结构,其中该第一磁化模块或该第二磁化模块或该第三磁化模块的两个永久磁铁是相吸设置。The fabric structure of claim 6 wherein the first magnetization module or the second magnetization module or the two permanent magnets of the third magnetization module are in a suction arrangement.
  9. 根据权利要求1或6所述的制造器结构,其中该任一永久磁铁于非对应该第一流道或该第二流道处设有防泄磁罩。The fabric structure according to claim 1 or 6, wherein any of the permanent magnets is provided with a leakage preventing cover at a non-corresponding first flow path or the second flow path.
  10. 根据权利要求9所述的制造器结构,其中该第三磁化模块的磁通量大于该第二磁化模块的磁通量大于该第一磁化模块的磁通量。The fabric structure of claim 9 wherein the magnetic flux of the third magnetization module is greater than the magnetic flux of the second magnetization module.
  11. 根据权利要求9所述的制造器结构,其中该第三磁化模块的磁通量为9000±1500高斯,该第二磁化模块的磁通量为7000±1500高斯,该第一磁化模块的磁通量为5000±1500高斯。The fabric structure according to claim 9, wherein the magnetic flux of the third magnetization module is 9000±1500 Gauss, the magnetic flux of the second magnetization module is 7000±1500 Gauss, and the magnetic flux of the first magnetization module is 5000±1500 Gauss. .
  12. 根据权利要求9所述的制造器结构,其中任一该永久磁铁为钕铁 硼磁铁。 The maker structure according to claim 9, wherein any of the permanent magnets is ferroniobium Boron magnet.
PCT/CN2017/000350 2017-05-11 2017-05-11 Multistage magnetized water maker WO2018205047A1 (en)

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CN2197110Y (en) * 1993-10-18 1995-05-17 殷富昌 Combined water purifier
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CN201245479Y (en) * 2008-05-10 2009-05-27 孙侠 Magnetizing scaler
CN102001781A (en) * 2010-12-25 2011-04-06 福建金源泉科技发展有限公司 Multistage high-energy water magnetization machine
CN204607659U (en) * 2015-04-21 2015-09-02 骏材(深圳)科技工程有限公司 A kind of multistage magnetic water treatment device
CN205442938U (en) * 2016-01-29 2016-08-10 具万顺 Water purifier

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2197110Y (en) * 1993-10-18 1995-05-17 殷富昌 Combined water purifier
TW200825027A (en) * 2006-12-13 2008-06-16 Metal Ind Res & Dev Ct Recycling system of pulverulent body in waste liquor and the method thereof
CN201245479Y (en) * 2008-05-10 2009-05-27 孙侠 Magnetizing scaler
CN102001781A (en) * 2010-12-25 2011-04-06 福建金源泉科技发展有限公司 Multistage high-energy water magnetization machine
CN204607659U (en) * 2015-04-21 2015-09-02 骏材(深圳)科技工程有限公司 A kind of multistage magnetic water treatment device
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