WO2024021745A1 - 太赫兹水分子重排智能制作系统及制作方法 - Google Patents

太赫兹水分子重排智能制作系统及制作方法 Download PDF

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Publication number
WO2024021745A1
WO2024021745A1 PCT/CN2023/092482 CN2023092482W WO2024021745A1 WO 2024021745 A1 WO2024021745 A1 WO 2024021745A1 CN 2023092482 W CN2023092482 W CN 2023092482W WO 2024021745 A1 WO2024021745 A1 WO 2024021745A1
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Prior art keywords
plate
production
stable
electromagnetic
frame
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PCT/CN2023/092482
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English (en)
French (fr)
Inventor
刘建聪
余萍
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中山市美力新电子科技有限公司
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Publication of WO2024021745A1 publication Critical patent/WO2024021745A1/zh

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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
    • C02F1/484Treatment of water, waste water, or sewage with magnetic or electric fields using electromagnets
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/25Colour; Spectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
    • G01N21/31Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry
    • G01N21/35Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light
    • G01N21/3581Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light using far infrared light; using Terahertz radiation
    • 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
    • C02F1/005Systems or processes based on supernatural or anthroposophic principles, cosmic or terrestrial radiation, geomancy or rhabdomancy
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2201/00Apparatus for treatment of water, waste water or sewage
    • C02F2201/48Devices for applying magnetic or electric fields
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N15/00Investigating characteristics of particles; Investigating permeability, pore-volume or surface-area of porous materials
    • G01N15/06Investigating concentration of particle suspensions
    • G01N15/0656Investigating concentration of particle suspensions using electric, e.g. electrostatic methods or magnetic methods
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/25Colour; Spectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
    • G01N21/31Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry
    • G01N21/35Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light
    • G01N21/3577Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light for analysing liquids, e.g. polluted water
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N22/00Investigating or analysing materials by the use of microwaves or radio waves, i.e. electromagnetic waves with a wavelength of one millimetre or more
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2223/00Investigating materials by wave or particle radiation
    • G01N2223/10Different kinds of radiation or particles
    • G01N2223/101Different kinds of radiation or particles electromagnetic radiation

Definitions

  • the invention relates to the technical field of terahertz water molecule rearrangement equipment, specifically to an intelligent production system and production method for terahertz water molecule rearrangement.
  • the terahertz water molecule rearrangement intelligent production system facilitates the production of water molecule rearrangement through structural settings, is conducive to the production of low-frequency water, and improves the production capacity of low-frequency water.
  • the assembly setting can facilitate efficient production purposes.
  • a terahertz water molecule rearrangement device is characterized by: a generator cover driving adjustment structure (1) and a generator electromagnetic production structure (2).
  • the generator cover driving adjustment structure (2) 1) is connected to the electromagnetic production structure (2) of the generator through threads.
  • the generator cover driving adjustment structure (1) is equipped with an ultraviolet lamp stable roof rack (5) on the top of the internal top.
  • the generator cover driving adjustment structure (1) There are several cold light lamp support connection blocks (6) on the top of the interior and around the UV lamp stable roof frame (5), and a glass partition is provided in the middle of the generator cover driving adjustment structure (1).
  • Electromagnetic generating mechanism (9), the first electromagnetic generating mechanism (9) of the glass partition is provided with a light source control plate driving gear (7), and the generator cover driving adjustment structure (1) is provided with a USB interface on the side for stability Column plate (8), the interlayer of the generator electromagnetic production structure (2) is provided with a shelving layer coordination and adjustment component (4), and the shelve layer coordination and adjustment component (4) is provided with a shelving hole (4-1) , the said shelving hole (4-1) is equipped with a terahertz chip stable connection component (3), but the existence of this patent cannot realize integrated production work.
  • a terahertz water molecule rearrangement method is characterized by including the following steps: the terahertz water molecule rearrangement method utilizes terahertz electromagnetic waves between 0.1 and 10nm generated by terahertz.
  • the electromagnetic wave resonates with the existing water molecule clusters.
  • the resonance time is 2.5-3.5 minutes.
  • the function of the resonance is to activate the water molecule clusters that the human body cannot directly absorb.
  • the activation is to break up the water molecule clusters. It is then rearranged into linear chain molecules that can be directly absorbed by human cells.
  • this patent is not conducive to multi-directional electromagnetic processing.
  • the currently used terahertz water molecule rearrangement intelligent production system cannot achieve integrated production during use, which is not conducive to integrated production and processing.
  • the terahertz water molecule rearrangement intelligent production system also has disadvantages for many aspects. Azimuth electromagnetic processing works, so a device is urgently needed to solve the above problems.
  • the purpose of the present invention is to provide a terahertz water molecule rearrangement intelligent production system and a production method to solve the problems raised in the above background technology.
  • a terahertz water molecule rearrangement intelligent production system including a driving adjustment structure and an electromagnetic production structure, which is characterized in that: the electromagnetic production structure is fixedly connected to the center of the driving adjustment structure .
  • the drive adjustment structure includes a stable connection component and a matching adjustment component.
  • the matching adjustment component is provided at the center position of the inner end of the driving adjustment structure, and the side ends of the matching adjustment component are engaged and connected with a stable connection component.
  • the stable connection components include a stable roof frame, a supporting connection block seat, a driving tooth plate and a stable column plate.
  • the stable top plate is erected at the top position of the inner end of the stable connection component, and the lower end of the stable top plate frame is fixedly connected to a stable column plate.
  • the side positions of the stable column plate are fixedly connected with support connection block seats, and the center position of the support connection block seats are rotatably connected with drive gears.
  • the present invention installs the drive adjustment structure and the structural arrangement of the drive adjustment structure facilitates contact with the water body and achieves the purpose of internal magnetization.
  • integrated production work can be achieved. It is conducive to integrated production and processing work, and at the same time drives the combined connection of the adjustment structure and the electromagnetic production structure, which is conducive to multi-directional electromagnetic processing work and better achieves the purpose of magnetization processing.
  • the present invention installs an electromagnetic production structure.
  • the electromagnetic production structure is conveniently connected to the outside world through the structure, and realizes the work of inserting water bodies.
  • the settings of the protective top frame and the installation vertical plate frame facilitate the support connection and help the electromagnetic production.
  • the combined function of the production structure makes it easy to cooperate and fix with the drive adjustment structure to achieve efficient production and installation work.
  • the present invention achieves the purpose of side protection of the electromagnetic production structure by installing the protective side protection bracket and the positioning limit guide frame, and the protective side protection bracket and the positioning limit guide frame are fixedly connected, and realizes the all-round driving adjustment structure and electromagnetic production structure. Protection work, helping to separate the inside and outside, better protecting the drive adjustment structure and the inner end components of the electromagnetic production structure, and improving the overall coordination and production capacity.
  • Figure 1 is a schematic structural diagram of the main body of the present invention
  • Figure 2 is a side view of the main body of the present invention.
  • Figure 3 is a schematic structural diagram of the driving adjustment structure of the present invention.
  • Figure 4 is a side view of the driving adjustment structure of the present invention.
  • Figure 5 is a schematic structural diagram of the stable connection component of the present invention.
  • Figure 6 is a schematic structural diagram of the matching adjustment component of the present invention.
  • Figure 7 is a schematic structural diagram of the second electromagnetic generating mechanism of the present invention.
  • Figure 8 is a schematic structural diagram of the electromagnetic production structure of the present invention.
  • Figure 9 is a side view of the electromagnetic production structure of the present invention.
  • Figure 10 is a schematic structural diagram of the second embodiment of the main body of the present invention.
  • Figure 11 is a module diagram of the main body of the present invention.
  • 1-Drive adjustment structure 2-Electromagnetic production structure, 3-Stable connection parts, 4-Cooperating adjustment parts, 5-Stable top plate frame, 6-Support connection block seat, 7-Drive gear plate, 8-Stable column Board, 9-first electromagnetic generating mechanism, 10-second electromagnetic generating mechanism, 11-terahertz piece, 12-electrical connecting disk, 13-sealing connecting disk, 14-protective gasket ring frame, 15-connecting ring shaft frame , 16-fitting adjustment sleeve, 17-driven tooth disc, 18-protection top frame, 19-installation vertical plate frame, 20-fitting connecting pipe, 21-production and processing pipe, 22-conduction storage pipe, 23-protection Side protection bracket, 24-positioning limit guide bracket.
  • a terahertz water molecule rearrangement intelligent production system including a driving adjustment structure 1 and an electromagnetic production structure 2.
  • the center position of the driving adjustment structure 1 is fixedly connected with an electromagnetic Production structure 2;
  • the drive adjustment structure 1 includes a stable connection component 3 and a matching adjustment component 4;
  • the matching adjustment component 4 is located at the center of the inner end of the drive adjustment structure 1.
  • the side ends of the matching adjustment component 4 are engaged and connected with a stable connection component 3.
  • the stable connection component 3 helps to connect the side parts to realize the matching adjustment component 4.
  • the driving purpose is to drive the matching adjustment component 4 for rotational adjustment;
  • the stable connection component 3 includes a stable top plate frame 5, a supporting connection block seat 6, a driving gear plate 7 and a stable column plate 8.
  • the driven gear plate 17 is meshed with the driving gear plate 7, and the driven gear plate 17 is engaged with the driving gear plate 7.
  • the disc 17 is positioned with the outer limit, and the upper end of the driving gear plate 7 is provided with a driving motor.
  • the driving motor drives the driving gear plate 7 to rotate and connect on the supporting connection block seat 6;
  • the stable roof rack 5 is located at the top position of the inner end of the stable connecting component 3.
  • the lower end of the stable roof rack 5 is fixedly connected to a stable column plate 8, and the side position of the stable column plate 8 is fixedly connected to a supporting connection block seat 6.
  • the center position of the supporting connecting block seat 6 is connected with a driving gear piece 7 in a rotational manner.
  • the stable roof frame 5 and the stable column plate 8 are fixed to achieve the purpose of support.
  • the support connecting block seat 6 and the side ends of the stable column plate 8 are fixed to achieve the purpose.
  • the driving sprocket 7 can rotate on the support connection block seat 6 to facilitate the matching driving function;
  • the matching adjustment component 4 includes a first electromagnetic generating mechanism 9 and a second electromagnetic generating mechanism 10;
  • the first electromagnetic generating mechanism 9 is located at the top position of the inner end of the matching adjustment component 4, and the second electromagnetic generating mechanism 10 is symmetrically arranged with the first electromagnetic generating mechanism 9;
  • the second electromagnetic generating mechanism 10 includes a terahertz plate 11, an electrical communication disk 12, a sealing communication disk 13, a protective gasket ring frame 14, a connecting ring shaft frame 15, a matching adjustment sleeve 16 and a driven gear plate.
  • the terahertz piece 11 is electrically connected to the outside world through the electrically connected disk 12, and the driven toothed plate 17 is adjusted by matching.
  • the shaft sleeve 16, the connecting ring shaft frame 15, the protective gasket ring frame 14, the sealing connecting plate 13, and the electrical connecting plate 12 drive the terahertz plate 11 to rotate and connect;
  • the driven toothed disc 17 is located at the inner bottom of the second electromagnetic generating mechanism 10.
  • the upper end of the driven toothed disc 17 is fixedly connected to a matching adjusting sleeve 16, and the upper end of the matching adjusting sleeve 16 is fixedly connected to
  • the connecting ring shaft frame 15 is fixedly connected to the upper end of the connecting ring shaft frame 15 with a protective gasket ring frame 14.
  • the upper end of the protective gasket ring frame 14 is fixedly connected to a sealing connecting plate 13.
  • the upper end of the sealing connecting plate 13 is fixed. It is connected with an electrically connected disk 12, and a terahertz chip 11 is installed at the upper end of the electrically connected disk 12.
  • the terahertz chip 11 and the electrically connected disk 12 are electrically connected and can be magnetized, and the connected disk 13 and the protective pad are sealed.
  • the ring frame 14, the connecting ring shaft frame 15, are fixed with the adjusting sleeve 16 and the driven toothed disc 17. Through the rotation of the driven toothed disc 17, the terahertz plate 11, the electrical connecting disc 12, and the sealed communication can be driven.
  • the disc 13, the protective pad ring frame 14, the connecting ring shaft frame 15, and the adjusting sleeve 16 rotate together as a whole to facilitate adjustment and achieve multi-position magnetization purposes;
  • the electromagnetic production structure 2 includes a protective top frame 18, an installation vertical plate frame 19 and a matching communication pipe 20;
  • the protective top frame 18 is located at the top position of the inner end of the electromagnetic production structure 2.
  • the lower end of the protective top frame 18 is fixedly connected to an installation vertical plate frame 19, and the center position of the installation vertical plate frame 19 is fixedly connected to a matching communication pipe 20;
  • the electromagnetic production structure 2 also includes a production and processing pipe 21 and a conduction storage pipe 22.
  • the stable roof frame 5 is fixedly connected to the protective top frame 18.
  • the production and processing pipe 21 and the conduction storage pipe 22 are connected to the outside world through the matching communication pipe 20.
  • the first electromagnetic generating mechanism 9 and the second electromagnetic generating mechanism 10 are arranged in a symmetrical manner and are respectively connected at the upper and lower ends of the production and processing pipe 21 to cooperate with the first electromagnetic generating mechanism 9 and the second electromagnetic generating mechanism 9 at the inner end of the adjusting component 4.
  • the generating mechanism 10 is connected and arranged with the electromagnetic production structure 2, and the production and processing pipe 21 is made of stainless steel;
  • the conductive storage tube 22 is connected to the side end of the mating communication tube 20, and the side end of the conductive storage tube 22 is connected to the electromagnetic production structure 2;
  • the upper end of the production and processing pipe 21 is provided with a disk body.
  • the disk body is rotationally and sealingly connected to the production and processing pipe 21, and the terahertz chip 11 is in limited contact with the disk body.
  • the driving adjustment structure 1 and the electromagnetic production structure 2 are combined and connected.
  • the first electromagnetic generating mechanism 9, the second electromagnetic generating mechanism 10 and the production and processing pipe 21 are symmetrically combined to perform water supply through the outside world;
  • the driving motor works, driving the driving gear plate 7 to rotate, acting on the driven gear plate 17, driving the matching adjustment sleeve 16, the connecting ring shaft frame 15, the protective gasket ring frame 14, the sealing connecting plate 13,
  • the electrically connected disk 12 and the terahertz chip 11 rotate, and the rotation of the terahertz chip 11 can drive the disk body at the upper end of the production and processing tube 21 to rotate in cooperation, realizing multi-position magnetization processing and achieving high-efficiency magnetization processing.
  • the stable connection component 3 helps to connect the side parts, realizes the driving purpose of the matching adjustment component 4, can drive the matching adjustment component 4 for rotational adjustment, and stabilizes the top plate frame 5 and the column plate 8 for fixation.
  • the support connection block seat 6 is fixed to the side end of the stable column plate 8 to realize the support connection work.
  • the driving gear piece 7 can rotate on the support connection block seat 6 to facilitate the matching driving function.
  • the first electromagnetic generator The mechanism 9 and the second electromagnetic generating mechanism 10 are symmetrically arranged to facilitate multi-position contact production work.
  • the combined setting of the driving adjustment structure 1 and the electromagnetic production structure 2 integrated production work can be achieved, which is conducive to integrated production and processing work.
  • the combined connection of the driving adjustment structure 1 and the electromagnetic production structure 2 is conducive to multi-directional electromagnetic processing work.
  • the terahertz chip 11 and the electrically connected disk 12 are electrically connected and can be used for magnetization.
  • the driven toothed disc 17 is fixed. Through the rotation of the driven toothed disc 17, it can drive the terahertz plate 11, the electrical connecting disc 12, the sealing connecting disc 13, the protective gasket ring frame 14, and the connecting ring shaft frame 15.
  • the protective top frame 18 is fixed with the installation vertical plate frame 19 to realize the support work of the central position of the connecting pipe 20, which is convenient It is connected with the outside world to achieve the purpose of efficient automatic water supply.
  • the connecting pipe 20 is connected with the production and processing pipe 21 and the conduction storage pipe 22 to facilitate the drainage processing purpose and better match the production work. In Figure 11, it can be used internally
  • the detection device performs monitoring tasks, realizes the analysis of water body frequency, and processes water bodies with different frequencies respectively.
  • a positioning guide frame 24 is fixedly connected to the front end of the electromagnetic production structure 2 , and a protective side protection bracket 23 is fixedly connected to the front end of the positioning guide frame 24 .
  • the driving adjustment structure 1 is set through the combination of the stable connection part 3 and the matching adjustment part 4.
  • the stable connection part 3 helps to connect the sides to realize the matching adjustment part 4.
  • the driving purpose can be driven to adjust the rotation of the adjusting part 4.
  • the stable connection part 3 is set through the combination of the stable roof frame 5, the supporting connection block seat 6, the driving tooth plate 7 and the stable column plate 8.
  • the plate 8 is fixed to achieve the purpose of support.
  • the support connection block seat 6 is fixed with the side end of the stable column plate 8 to achieve the support connection work.
  • the driving gear piece 7 can rotate on the support connection block seat 6 to facilitate the matching driving function.
  • the cooperating adjustment component 4 is combined and arranged through the first electromagnetic generating mechanism 9 and the second electromagnetic generating mechanism 10.
  • the first electromagnetic generating mechanism 9 and the second electromagnetic generating mechanism 10 are arranged symmetrically to facilitate multi-position contact production work.
  • the second electromagnetic generating mechanism 9 The generating mechanism 10 is connected through a combination of the terahertz plate 11, the electrical connecting disk 12, the sealing connecting plate 13, the protective gasket ring frame 14, the connecting ring shaft frame 15, the adjusting sleeve 16 and the driven gear plate 17.
  • the electrically connected plate 12 is electrically connected and can be magnetized.
  • the sealed connecting plate 13, the protective gasket ring frame 14, the connecting ring shaft frame 15, the adjusting sleeve 16, and the driven tooth plate 17 are fixed.
  • the rotation of the driven toothed disc 17 can drive the terahertz disc 11, the electrical connecting disc 12, the sealing connecting disc 13, the protective gasket ring frame 14, the connecting ring shaft frame 15, and the matching adjusting sleeve 16 to rotate together, which is convenient Adjust to achieve the purpose of multi-position magnetization.
  • the electromagnetic production structure 2 is connected through the protective top frame 18, the installation vertical plate frame 19 and the matching communication pipe 20.
  • the protective top frame 18 and the installation vertical plate frame 19 are fixed to achieve centering.
  • the position is matched with the support work of the connecting pipe 20 to facilitate connection with the outside world and achieve the purpose of efficient automatic water supply.
  • the connecting pipe 20 is connected with the production and processing pipe 21 and the conduction storage pipe 22 to facilitate the purpose of drainage processing and better implementation.
  • the driving adjustment structure 1 and the electromagnetic production structure 2 are combined and connected.
  • the first electromagnetic generating mechanism 9, the second electromagnetic generating mechanism 10 and the production and processing pipe 21 are symmetrically combined, and the processing is carried out through the outside world.
  • the water supply works, cooperates with the connecting pipe 20 to realize the transmission, and transmits it to the position of the production and processing pipe 21.
  • the electrical connecting disk 12 works to drive the terahertz chip 11 to operate.
  • the terahertz chip 11 completes the magnetization process and then drives the motor.
  • the driving gear plate 7 When working, the driving gear plate 7 is driven to rotate, acting on the driven gear plate 17, driving the adjusting sleeve 16, the connecting ring shaft frame 15, the protective gasket ring frame 14, the sealing connecting plate 13, and the electrical connecting plate 12
  • the terahertz plate 11 rotates, and the rotation of the terahertz plate 11 can drive the disk at the upper end of the production and processing tube 21 to rotate cooperatively to realize multi-position magnetization processing, realize efficient magnetization processing, and complete the work.

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Abstract

本发明提供了一种太赫兹水分子重排智能制作系统及制作方法,本发明涉及太赫兹水分子重排设备技术领域,包括驱动调节结构和电磁生产结构,驱动调节结构的中心位置处固定连接有电磁生产结构,驱动调节结构包括稳固连接部件和配合调节部件,配合调节部件设在驱动调节结构的内端中心位置处,配合调节部件的侧端位置啮合连接有稳固连接部件,稳固连接部件包括稳固顶板架、支撑连接块座、驱动齿片和稳固立柱板,稳固顶板架设在稳固连接部件的内端顶部位置处,稳固顶板架的下端位置固定连接有稳固立柱板,稳固立柱板的侧部位置处固定连接有支撑连接块座,支撑连接块座的中心位置处转动连接有驱动齿片,通过驱动调节结构和电磁生产结构设置,能够实现一体化生产工作。

Description

太赫兹水分子重排智能制作系统及制作方法 技术领域
本发明涉及太赫兹水分子重排设备技术领域,具体为太赫兹水分子重排智能制作系统及制作方法。
背景技术
太赫兹水分子重排智能制作系统通过结构的设置,方便进行水分子重排的生产工作,有利于低频水的生产工作,提高低频水的生产能力,通过太赫兹水分子重排智能制作系统的组装设置,可方便进行高效化生产目的。
技术问题
根据中国专利号CN202010635001.9,一种太赫兹水分子重排装置,其特征包括:发生器盖驱动调节结构(1)和发生器电磁生产结构(2),所述发生器盖驱动调节结构(1)和发生器电磁生产结构(2)之间通过螺纹连接,所述发生器盖驱动调节结构(1)内部顶上设有紫外线灯稳固顶板架(5),所述发生器盖驱动调节结构(1)内部顶上且位于紫外线灯稳固顶板架(5)的周围设有若干冷光灯支撑连接块座(6),所述发生器盖驱动调节结构(1)中部设有玻璃隔板第一电磁发生机构(9),所述玻璃隔板第一电磁发生机构(9)上面设有光源控制板驱动齿片(7),所述发生器盖驱动调节结构(1)侧面设有USB接口稳固立柱板(8),所述发生器电磁生产结构(2)的夹层内设有搁置层配合调节部件(4),所述搁置层配合调节部件(4)上设有搁置孔(4-1),所述搁置孔(4-1)内设有太赫兹片稳固连接部件(3),但是该专利存在不能够实现一体化生产工作。
根据中国专利号CN202010637135.4,一种太赫兹水分子重排方法,其特征在于包括如下步骤:太赫兹水分子重排方法是利用太赫兹产生的0.1到10nm之间的太赫兹电磁波,所述电磁波对现有的水分子团产生共振,所述共振时间为2.5-3.5分钟,所述共振的作用是把人体无法直接吸收的水分子团进行活化,所述活化就是将水分子团进行打散然后重新排列成直线型可直接被人体细胞直接吸收的链状分子,但是该专利存在不利于多方位电磁处理工作。
但是现有使用的太赫兹水分子重排智能制作系统在使用过程中不能够实现一体化生产工作,不利于整体化的生产处理工作,并且太赫兹水分子重排智能制作系统还存在不利于多方位电磁处理工作,因此急需要一种装置来解决上述问题。
技术解决方案
本发明的目的在于提供太赫兹水分子重排智能制作系统及制作方法,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:太赫兹水分子重排智能制作系统,包括驱动调节结构和电磁生产结构,其特征在于:所述驱动调节结构的中心位置处固定连接有电磁生产结构。
优选的,所述驱动调节结构包括稳固连接部件和配合调节部件。
优选的,所述配合调节部件设在驱动调节结构的内端中心位置处,所述配合调节部件的侧端位置啮合连接有稳固连接部件。
优选的,所述稳固连接部件包括稳固顶板架、支撑连接块座、驱动齿片和稳固立柱板。
优选的,所述稳固顶板架设在稳固连接部件的内端顶部位置处,所述稳固顶板架的下端位置固定连接有稳固立柱板。
优选的,所述稳固立柱板的侧部位置处固定连接有支撑连接块座,所述支撑连接块座的中心位置处转动连接有驱动齿片。
有益效果
与现有技术相比,本发明的有益效果如下:
一、本发明通过安装驱动调节结构,驱动调节结构的结构设置,方便进行与水体的接触,实现内部磁化处理的目的,通过驱动调节结构、电磁生产结构的组合设置,能够实现一体化生产工作,利于整体化的生产处理工作,同时驱动调节结构、电磁生产结构的组合连通,利于多方位电磁处理工作,更好的进行磁化处理的目的。
二、本发明通过安装电磁生产结构,电磁生产结构通过结构的设置,方便与外界进行连通,实现水体的置入工作,防护顶部架、安装立板架的设置,方便进行支撑连接,帮助进行电磁生产结构的组合功能,方便与驱动调节结构进行配合固定,实现高效生产安装工作。
三、本发明通过安装防护侧护支架和定位限导架,防护侧护支架和定位限导架相固定连接,实现电磁生产结构的侧部保护目的,实现驱动调节结构、电磁生产结构的全方位保护工作,帮助进行内外分隔工作,更好的进行驱动调节结构、电磁生产结构内端部件的保护目的,提高整体化的配合生产能力。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对实施例描述所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明主体的结构示意图;
图2为本发明主体的侧视图; 
图3为本发明驱动调节结构的结构示意图; 
图4为本发明驱动调节结构的侧视图;
图5为本发明稳固连接部件的结构示意图;
图6为本发明配合调节部件的结构示意图;
图7为本发明第二电磁发生机构的结构示意图;
图8为本发明电磁生产结构的结构示意图;
图9为本发明电磁生产结构的侧视图;
图10为本发明主体的第二实施例结构示意图;
图11为本发明主体的模块图。
图中:1-驱动调节结构、2-电磁生产结构、3-稳固连接部件、4-配合调节部件、5-稳固顶板架、6-支撑连接块座、7-驱动齿片、8-稳固立柱板、9-第一电磁发生机构、10-第二电磁发生机构、11-太赫兹片、12-电性连通盘、13-密封连通盘、14-防护垫环架、15-连接环轴架、16-配合调节轴套、17-从动齿盘片、18-防护顶部架、19-安装立板架、20-配合连通管、21-生产加工管、22-传导存储管、23-防护侧护支架、24-定位限导架。
本发明的最佳实施方式
为了使本技术领域的人员更好地理解本申请方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分的实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都应当属于本申请保护的范围。
需要说明的是,本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本申请的实施例。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
下面结合附图对本发明进一步说明。
实施例1
请参阅图1、图2,本发明提供的一种实施例:太赫兹水分子重排智能制作系统,包括驱动调节结构1和电磁生产结构2,驱动调节结构1的中心位置处固定连接有电磁生产结构2;
请参阅图3、图4,驱动调节结构1包括稳固连接部件3和配合调节部件4;
配合调节部件4设在驱动调节结构1的内端中心位置处,配合调节部件4的侧端位置啮合连接有稳固连接部件3,稳固连接部件3帮助进行侧部的连接,实现配合调节部件4的驱动目的,可带动配合调节部件4进行转动调节目的;
请参阅图5,稳固连接部件3包括稳固顶板架5、支撑连接块座6、驱动齿片7和稳固立柱板8,从动齿盘片17与驱动齿片7相啮合连接,且从动齿盘片17与外界限位设置,驱动齿片7的上端设有驱动马达,驱动马达带动驱动齿片7在支撑连接块座6上转动连接;
稳固顶板架5设在稳固连接部件3的内端顶部位置处,稳固顶板架5的下端位置固定连接有稳固立柱板8,稳固立柱板8的侧部位置处固定连接有支撑连接块座6,支撑连接块座6的中心位置处转动连接有驱动齿片7,稳固顶板架5、稳固立柱板8进行固定,实现支撑目的,支撑连接块座6与稳固立柱板8的侧端进行固定,实现支撑连接工作,驱动齿片7可在支撑连接块座6上进行转动,方便进行配合驱动功能;
请参阅图6,配合调节部件4包括第一电磁发生机构9和第二电磁发生机构10;
第一电磁发生机构9设在配合调节部件4的内端顶部位置,第二电磁发生机构10与第一电磁发生机构9对称设置;
请参阅图7,第二电磁发生机构10包括太赫兹片11、电性连通盘12、密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16和从动齿盘片17,太赫兹片11设有多个,且均与电性连通盘12的上端固定连接,太赫兹片11通过电性连通盘12与外界电性连通,从动齿盘片17通过配合调节轴套16、连接环轴架15、防护垫环架14、密封连通盘13、电性连通盘12带动太赫兹片11相转动连接;
从动齿盘片17设在第二电磁发生机构10的内端底部位置,从动齿盘片17的上端位置固定连接有配合调节轴套16,配合调节轴套16的上端位置处固定连接有连接环轴架15,连接环轴架15的上端位置处固定连接有防护垫环架14,防护垫环架14的上端位置处固定连接有密封连通盘13,密封连通盘13的上端位置处固定连接有电性连通盘12,电性连通盘12的上端位置安装有太赫兹片11,太赫兹片11、电性连通盘12电性连通,可进行磁化处理目的,密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16、从动齿盘片17进行固定,通过从动齿盘片17的转动,可带动太赫兹片11、电性连通盘12、密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16整体进行配合转动,方便进行调节,实现多位置的磁化处理目的;
请参阅图8,电磁生产结构2包括防护顶部架18、安装立板架19和配合连通管20;
防护顶部架18设在电磁生产结构2的内端顶部位置处,防护顶部架18的下端位置固定连接有安装立板架19,安装立板架19的中心位置处固定连接有配合连通管20;
请参阅图9,电磁生产结构2还包括生产加工管21和传导存储管22,稳固顶板架5与防护顶部架18相固定连接,生产加工管21、传导存储管22通过配合连通管20与外界连通设置,第一电磁发生机构9、第二电磁发生机构10采用对称设置,分别连接在生产加工管21的上下两端位置处,配合调节部件4内端的第一电磁发生机构9、第二电磁发生机构10与电磁生产结构2配合连通设置,生产加工管21采用不锈钢材料设置;
传导存储管22与配合连通管20的侧端连通设置,传导存储管22的侧端位置处与电磁生产结构2相连通设置;
生产加工管21的上端设有盘体,盘体与生产加工管21转动密封连接,且太赫兹片11与盘体限位接触设置。
太赫兹水分子重排智能制作系统的使用方法:
S1、将驱动调节结构1、电磁生产结构2组合连接,第一电磁发生机构9、第二电磁发生机构10与生产加工管21进行对称组合,通过外界进行供水工作;
S2、配合连通管20实现水体的传递,传输至生产加工管21位置处,此时的电性连通盘12进行工作,带动太赫兹片11进行运行,太赫兹片11实现磁化处理工作;
S3、之后驱动马达进行工作,带动驱动齿片7进行转动,作用在从动齿盘片17上,带动配合调节轴套16、连接环轴架15、防护垫环架14、密封连通盘13、电性连通盘12、太赫兹片11进行转动,且太赫兹片11的转动可带动生产加工管21上端的盘体进行配合转动,实现多位置的磁化处理工作,实现高效化磁化处理工作。
在实施本实施例时,稳固连接部件3帮助进行侧部的连接,实现配合调节部件4的驱动目的,可带动配合调节部件4进行转动调节目的,稳固顶板架5、稳固立柱板8进行固定,实现支撑目的,支撑连接块座6与稳固立柱板8的侧端进行固定,实现支撑连接工作,驱动齿片7可在支撑连接块座6上进行转动,方便进行配合驱动功能,第一电磁发生机构9、第二电磁发生机构10对称设置,方便进行多位置的接触生产工作,通过安装驱动调节结构1,驱动调节结构1的结构设置,方便进行与水体的接触,实现内部磁化处理的目的,通过驱动调节结构1、电磁生产结构2的组合设置,能够实现一体化生产工作,利于整体化的生产处理工作,同时驱动调节结构1、电磁生产结构2的组合连通,利于多方位电磁处理工作,更好的进行磁化处理的目的,太赫兹片11、电性连通盘12电性连通,可进行磁化处理目的,密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16、从动齿盘片17进行固定,通过从动齿盘片17的转动,可带动太赫兹片11、电性连通盘12、密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16整体进行配合转动,方便进行调节,实现多位置的磁化处理目的,防护顶部架18与安装立板架19进行固定,可实现中心位置的配合连通管20的支撑工作,方便与外界进行连通,实现高效自动化供水目的,配合连通管20与生产加工管21、传导存储管22连通设置,方便进行导排处理目的,更好的进行匹配生产工作,图11中,可通过内部的检测装置进行监测任务,实现水体频率的分析,对不同频率的水体分别进行处理工作。
本发明的实施方式
实施例2
在实施例1的基础上,如图10所示,电磁生产结构2的前端位置处固定连接有定位限导架24,定位限导架24的前端位置处固定连接有防护侧护支架23。
在实施本实施例时,通过安装防护侧护支架23和定位限导架24,防护侧护支架23和定位限导架24相固定连接,实现电磁生产结构2的侧部保护目的,实现驱动调节结构1、电磁生产结构2的全方位保护工作,帮助进行内外分隔工作,更好的进行驱动调节结构1、电磁生产结构2内端部件的保护目的,提高整体化的配合生产能力。
工作原理:首先将驱动调节结构1、电磁生产结构2进行组合,驱动调节结构1通过稳固连接部件3、配合调节部件4组合设置,稳固连接部件3帮助进行侧部的连接,实现配合调节部件4的驱动目的,可带动配合调节部件4进行转动调节目的,稳固连接部件3通过稳固顶板架5、支撑连接块座6、驱动齿片7和稳固立柱板8组合设置,稳固顶板架5、稳固立柱板8进行固定,实现支撑目的,支撑连接块座6与稳固立柱板8的侧端进行固定,实现支撑连接工作,驱动齿片7可在支撑连接块座6上进行转动,方便进行配合驱动功能,配合调节部件4通过第一电磁发生机构9、第二电磁发生机构10组合设置,第一电磁发生机构9、第二电磁发生机构10对称设置,方便进行多位置的接触生产工作,第二电磁发生机构10通过太赫兹片11、电性连通盘12、密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16和从动齿盘片17组合连接,太赫兹片11、电性连通盘12电性连通,可进行磁化处理目的,密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16、从动齿盘片17进行固定,通过从动齿盘片17的转动,可带动太赫兹片11、电性连通盘12、密封连通盘13、防护垫环架14、连接环轴架15、配合调节轴套16整体进行配合转动,方便进行调节,实现多位置的磁化处理目的,电磁生产结构2通过防护顶部架18、安装立板架19和配合连通管20组合连接,防护顶部架18与安装立板架19进行固定,可实现中心位置的配合连通管20的支撑工作,方便与外界进行连通,实现高效自动化供水目的,配合连通管20与生产加工管21、传导存储管22连通设置,方便进行导排处理目的,更好的进行匹配生产工作,当使用者需要进行处理时,将驱动调节结构1、电磁生产结构2组合连接,第一电磁发生机构9、第二电磁发生机构10与生产加工管21进行对称组合,通过外界进行供水工作,配合连通管20实现传递,传输至生产加工管21位置处,此时的电性连通盘12进行工作,带动太赫兹片11进行运行,太赫兹片11实现磁化处理工作,之后驱动马达进行工作,带动驱动齿片7进行转动,作用在从动齿盘片17上,带动配合调节轴套16、连接环轴架15、防护垫环架14、密封连通盘13、电性连通盘12、太赫兹片11进行转动,且太赫兹片11的转动可带动生产加工管21上端的盘体进行配合转动,实现多位置的磁化处理工作,实现高效化磁化处理工作,完成工作。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (1)

  1. 太赫兹水分子重排智能制作系统,其特征在于:包括驱动调节结构(1)和电磁生产结构(2),所述驱动调节结构(1)的中心位置处固定连接有电磁生产结构(2),所述驱动调节结构(1)包括稳固连接部件(3)和配合调节部件(4),所述配合调节部件(4)设在驱动调节结构(1)的内端中心位置处,所述配合调节部件(4)的侧端位置啮合连接有稳固连接部件(3);稳固连接部件(3)用于进行侧部的连接;稳固连接部件包括稳固顶板架、支撑连接块座、驱动齿片和稳固立柱板,从动齿盘片与驱动齿片相啮合连接,且从动齿盘片与外界限位设置,驱动齿片的上端设有驱动马达,驱动马达带动驱动齿片在支撑连接块座上转动连接,稳固顶板架设在稳固连接部件的内端顶部位置处,稳固顶板架的下端位置固定连接有稳固立柱板,稳固立柱板的侧部位置处固定连接有支撑连接块座,支撑连接块座的中心位置处转动连接有驱动齿片,支撑连接块座与稳固立柱板的侧端进行固定,驱动齿片可在支撑连接块座上进行转动;配合调节部件包括第一电磁发生机构和第二电磁发生机构;第一电磁发生机构设在配合调节部件的内端顶部位置,第二电磁发生机构与第一电磁发生机构对称设置,第二电磁发生机构包括太赫兹片、电性连通盘、密封连通盘、防护垫环架、连接环轴架、配合调节轴套和从动齿盘片,太赫兹片设有多个,且均与电性连通盘的上端固定连接,太赫兹片通过电性连通盘与外界电性连通,从动齿盘片通过配合调节轴套、连接环轴架、防护垫环架、密封连通盘、电性连通盘带动太赫兹片相转动连接,从动齿盘片设在第二电磁发生机构的内端底部位置,从动齿盘片的上端位置固定连接有配合调节轴套,配合调节轴套的上端位置处固定连接有连接环轴架,连接环轴架的上端位置处固定连接有防护垫环架,防护垫环架的上端位置处固定连接有密封连通盘,密封连通盘的上端位置处固定连接有电性连通盘,电性连通盘的上端位置安装有太赫兹片,太赫兹片、电性连通盘电性连通,密封连通盘、防护垫环架、连接环轴架、配合调节轴套、从动齿盘片进行固定,通过从动齿盘片的转动,可带动太赫兹片、电性连通盘、密封连通盘、防护垫环架、连接环轴架、配合调节轴套整体进行配合转动;电磁生产结构还包括生产加工管和传导存储管,稳固顶板架与防护顶部架相固定连接,生产加工管、传导存储管通过配合连通管与外界连通设置,第一电磁发生机构、第二电磁发生机构采用对称设置,分别连接在生产加工管的上下两端位置处,配合调节部件内端的第一电磁发生机构、第二电磁发生机构与电磁生产结构配合连通设置,生产加工管采用不锈钢材料设置,传导存储管与配合连通管的侧端连通设置,传导存储管的侧端位置处与电磁生产结构相连通设置,生产加工管的上端设有盘体,盘体与生产加工管转动密封连接,且太赫兹片与盘体限位接触设置。
PCT/CN2023/092482 2022-07-28 2023-05-06 太赫兹水分子重排智能制作系统及制作方法 WO2024021745A1 (zh)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020135717A1 (zh) * 2018-12-28 2020-07-02 深圳市太赫兹科技创新研究院有限公司 太赫兹时域光谱仪
CN113087067A (zh) * 2021-06-08 2021-07-09 深圳新青春科技发展有限公司 太赫兹水重排智能监控系统及智能监控方法
CN113087278A (zh) * 2021-06-08 2021-07-09 深圳新青春科技发展有限公司 智能化的太赫兹水制备装置
CN114570563A (zh) * 2022-03-16 2022-06-03 张琴 一种热力管道的保温中层逐层涂覆设备
CN115072847A (zh) * 2022-07-28 2022-09-20 中山市美力新电子科技有限公司 太赫兹水分子重排智能制作系统及制作方法

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016114523A (ja) * 2014-12-16 2016-06-23 アークレイ株式会社 テラヘルツ波測定装置、測定方法、及び測定用具
CN111747482A (zh) * 2020-07-03 2020-10-09 深圳新青春科技发展有限公司 一种太赫兹水分子重排装置
CN113908624A (zh) * 2021-11-24 2022-01-11 会同广木之乡食品饮料有限公司 一种瓶装饮用水生产线的结晶处理装置
CN114421232B (zh) * 2022-01-27 2023-09-12 连云港联为科技有限公司 一种导线与车架一体式连接器

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020135717A1 (zh) * 2018-12-28 2020-07-02 深圳市太赫兹科技创新研究院有限公司 太赫兹时域光谱仪
CN113087067A (zh) * 2021-06-08 2021-07-09 深圳新青春科技发展有限公司 太赫兹水重排智能监控系统及智能监控方法
CN113087278A (zh) * 2021-06-08 2021-07-09 深圳新青春科技发展有限公司 智能化的太赫兹水制备装置
CN114570563A (zh) * 2022-03-16 2022-06-03 张琴 一种热力管道的保温中层逐层涂覆设备
CN115072847A (zh) * 2022-07-28 2022-09-20 中山市美力新电子科技有限公司 太赫兹水分子重排智能制作系统及制作方法

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