Magnetic field line generator

The magnetic field line generator addresses the limitation of existing devices by controlling magnetic field line flow, enhancing beverage quality and electrical appliance performance through electromagnetic property modifications.

JP7852127B1Active Publication Date: 2026-04-27山本 隆
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
山本 隆
Filing Date
2025-07-03
Publication Date
2026-04-27

AI Technical Summary

Technical Problem

Existing magnetic processing devices do not modify electromagnetic properties by controlling the flow of magnetic field lines, limiting their effectiveness in enhancing beverage quality and electrical appliance performance.

Method used

A magnetic field line generator with laminated magnetic materials and a magnetic field line penetration member, composed of silicon oxide and other oxides, controls the distribution of magnetic field lines to achieve desired electromagnetic modifications.

Benefits of technology

The generator improves beverage quality by enhancing drinkability and electrical appliance performance by modifying electromagnetic properties through controlled magnetic field line distribution.

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Abstract

To provide a magnetic field generator that modifies the electromagnetic properties of magnetic field lines by interposing a magnetic field line-penetrating material between each layer of stacked magnets, thereby controlling the distribution state of magnetic field lines, i.e., controlling their flow, and obtaining an effect due to the reduction action caused by the magnetic field lines (generated from the magnetic field generator). [Solution] A magnetic field line generator 10 for modifying electromagnetic properties by controlling the flow of magnetic field lines and obtaining an effect due to the reduction action caused by the magnetic field lines, characterized in that a plurality of stacked magnetic materials 20 are interposed between the stacked magnetic materials 20 and a magnetic field line penetration member 30 is interposed between the stacked magnetic materials 20, and the plurality of magnetic materials 20 are covered with the magnetic field line penetration member 30.
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Description

Technical Field

[0001] The present invention relates to a magnetic force line generator that modifies electromagnetic properties by controlling the distribution state (flow) of magnetic force lines by coating a magnet with a magnetic force line penetrating substance or interposing a magnetic force line penetrating substance between each layer of laminated magnets.

Background Art

[0002] Water has polarity (dipole moment) at the molecular level and forms a hydrogen bond network. This structure may be affected by an external magnetic field, although weakly. As an assumed mechanism of action when affected by an external magnetic field, there is rearrangement of hydrogen bonds (changes in cluster size and stability), etc. In short, although water molecules form a complex structure through hydrogen bonds, it is known that by applying an external magnetic field (magnetic force: about several hundred millitesla to tesla), they are affected by rearrangement of hydrogen bonds, changes in cluster size, etc.

[0003] On the other hand, as the influence of minerals on magnetic force lines, the magnetic field concentrates as if it were a magnet itself, that is, the magnetic force lines are drawn inwards (in the case of ferromagnetism), and near a strong magnet, the magnetic force lines are slightly attracted and weak bending occurs (in the case of paramagnetism), and it is known that the magnetic force lines bend to avoid quartz (such as diamagnetic substances) (in the case of diamagnetism). The inventors obtained knowledge through simple experiments that by controlling the flow of individual magnetic force lines as the influence of diamagnetic minerals, various effects can be brought out in, for example, beverages, electric circuits, etc., and thus have intensively developed and arrived at the present invention.

[0004] Patent Document 1 discloses a portable magnetic processing device (Patent Document 1: Title of Invention) that aims to "provide a low-cost portable magnetic processing device that can effectively perform magnetic processing with a simple configuration and can also be easily repaired and maintained." The device comprises "a magnetic processing body with a built-in magnetic processing unit for applying magnetic processing to beverages such as drinking water or coffee, and a covering that can cover the outer part of the magnetic processing body. The magnetic processing body is molded from a resin material having high rigidity, high impact resistance, and heat resistance, and the magnetic processing unit is provided with multiple permanent magnets. The covering is provided with a magnetic leakage prevention function. By positioning the covering in a part that avoids the magnetic processing unit, and immersing the magnetic processing body containing the magnetic processing unit into the beverage, it is possible to subdivide the water molecule clusters that make up the beverage, thereby producing a beverage with a smooth taste and a pleasant finish." [Prior art documents] [Patent Documents]

[0005] [Patent Document 1] Japanese Patent Publication No. 2006-821 [Overview of the project] [Problems that the invention aims to solve]

[0006] According to the portable magnetic processing device described in Patent Document 1 (Patent Document 1: Title of Invention), it is indeed possible to produce a smooth-tasting and easy-to-swallow beverage by applying magnetic treatment to beverages such as drinking water, coffee, tea, alcoholic beverages, juices, and dairy beverages, thereby subdividing the water molecule clusters contained in the beverage. However, as is clear from the description in Figure 3 of Patent Document 1, the portable magnetic processing device applies magnetic treatment to the beverage (specifically, by stirring it), and there is no concept of modifying the electromagnetic properties by controlling the flow of magnetic field lines emitted from the portable magnetic processing device.

[0007] The object of the present invention is to provide a magnetic field line generator that modifies electromagnetic properties by controlling the distribution state (flow) of magnetic field lines and obtains effects due to the reduction action caused by said magnetic field lines. [Means for solving the problem]

[0010] To solve the above problems, the invention described in claim 1 is a magnetic field line generator for modifying electromagnetic properties by controlling the flow of magnetic field lines and obtaining an effect due to the reduction action caused by said magnetic field lines, Multiple stacked magnetic materials, Between the laminated magnetic materials are 70% to 80% by weight of silicon oxide, and at least one particle selected from aluminum oxide, potassium oxide, and iron oxide as other components. A dispersion of particles in which 50% to 80% of the total particle size fall within a particle size range of ±25% of a given average particle size. The magnetic field line generating device is characterized by having a resin field line penetration member interposed between the magnetic field lines and covering the plurality of magnetic materials with the field line penetration member.

[0012] Claim 2 The invention described herein is characterized in that, in the invention described in claim 1, the magnetic field generator is installed such that the north pole of the magnetic field generator and the south pole of the magnetic field generator are opposite each other.

[0013] Claim 3 The invention described herein is characterized in that, in the invention described in claim 1, the magnetic field generator is installed such that the north poles of the magnetic field generator face each other, or the south poles of the magnetic field generator face each other. [Effects of the Invention]

[0014] The present invention is a magnetic field line generator for modifying electromagnetic properties by controlling the flow (distribution state) of magnetic field lines and obtaining effects due to reduction actions caused by these magnetic field lines. The device has a configuration in which a magnetic material and a magnetic field line penetration member are laminated on the magnetic material, or the magnetic material is covered with a magnetic field line penetration member, or multiple laminated magnetic materials are arranged with a magnetic field line penetration member interposed between the laminated magnetic materials, and the multiple magnetic materials are covered with the magnetic field line penetration member. The flow of magnetic field lines can be controlled by the magnetic field line penetration member (by controlling the distribution state of the magnetic field lines). By controlling the flow of magnetic field lines, the magnetic properties of the generated magnetic field lines can be modified, and various effects due to reduction actions caused by these magnetic field lines can be obtained.

[0015] Furthermore, by arranging the magnetic field generators so that their north poles and south poles face each other, or by arranging them so that their north poles face each other, or their south poles face each other, it is possible to control the distribution of magnetic field lines generated from the magnetic field generators on the portion sandwiched between them (e.g., an electrical cord), that is, by controlling the flow of magnetic field lines (generated from the magnetic field generators), various effects due to the reduction action can be obtained in electrical products installed at the end of the portion sandwiched between the magnetic field generators (e.g., an electrical cord) caused by the modified magnetic field lines. [Brief explanation of the drawing]

[0016] [Figure 1] This is a diagram illustrating the magnetic field line generator according to the present invention. [Figure 2] This is a diagram illustrating a method for modifying drinking water and other substances using a magnetic field generator. [Figure 3] This is a diagram illustrating how to improve the quality of electricity flowing through electrical appliances. [Modes for carrying out the invention]

[0017] <Structure of a magnetic field line generator> Hereinafter, one embodiment of the magnetic field line generator 10 according to the present invention will be described in detail with reference to Figures 1 to 3. Figure 1 is a diagram illustrating the magnetic field line generator 10 according to the present invention.

[0018] The magnetic field line generator 10 modifies electromagnetic properties by controlling the distribution (flow) of magnetic field lines (by the magnetic field line penetrating member 30), and obtains effects due to the reduction action caused by these magnetic field lines (direct effects on drinking water, etc., or effects on vegetables stored in a refrigerator via an electrical appliance (a device that operates using electricity via an electrical outlet) such as a refrigerator). Note that the refrigerator is just one example, and it is assumed that the effects (due to the reduction action) of the magnetic field line generator 10 will extend to all electrical appliances.

[0019] As shown in Figure 1, the magnetic field line generator 10 consists of a plurality of stacked magnetic materials 20, with a field line penetration member 30 interposed between the stacked magnetic materials 20, and the plurality of magnetic materials 20 covered by the field line penetration member 30. In other words, a plurality of magnetic materials 20 interposed by the field line penetration member 30 (a stacked body 40 in which magnetic materials 20 and field line penetration members 30 are alternately stacked: see Figure 1) are embedded within the field line penetration member 30.

[0020] The magnetic material 20 used in the magnetic field generator 10 is a so-called button-shaped magnet (however, it is not limited to button-shaped magnets), and its shape is a diameter of 20 mm to 30 mm and a thickness of 2 mm to 3 mm. From the standpoint of usability, the magnetic field generator 10 is preferably large enough to stack multiple layers of this magnetic material 20 (5 to 10 layers), but the number of layers can range from one to several dozen or more.

[0021] That is, in the magnetic body 20, the diameter, thickness (or rather, the shape), and the number of laminated layers are not particularly limited, and it can be configured in any way according to the requirements such as the application. The magnetic force of the magnetic body 20 used in the magnetic flux generating tool 10 is quantified by a unit (surface magnetic field density tesla (SI unit) or gauss (cgs unit)) that represents how much magnetic flux (bundle of magnetic force lines) is within a certain range, and it may be about ~200 millitesla. However, the magnetic force of the magnetic body 20 is not limited to about ~200 millitesla and can be freely set according to the requirements such as the application.

[0022] The magnetic flux penetrating member 30 is a resin in which at least one or more powders selected from 75 wt% to 85 wt% silicon oxide, and aluminum oxide, potassium oxide, sodium oxide, and iron oxide as other components are dispersed. To describe it in more detail, the magnetic flux penetrating member 30 is a resin in which a powder containing 80 wt% silicon oxide, 10 wt% aluminum oxide, 5 wt% potassium oxide, 2 wt% sodium oxide, and 1.5 wt% iron oxide (all weight percentages are included in the range of ±2%; for example, if it is 80 wt% silicon oxide, it is in the range of 78.4 wt% to 81.6 wt%) is dispersed.

[0023] The resin for dispersing the powders of silicon oxide, aluminum oxide, potassium oxide, sodium oxide, and iron oxide may employ a UV curable resin, but it is not particularly limited as long as these powders can be dispersed. Incidentally, the magnetic flux penetrating member 30 may have a shape in which a mineral containing 75 wt% to 85 wt% silicon oxide is sliced to a thickness of about 1 mm to 2 mm, in addition to the resin-containing type.

[0024] As described above, a mineral slice can also be used as the magnetic flux penetrating member 30. When using a mineral slice as the magnetic flux penetrating member 30, in the composition analysis value of the mineral surface, it is necessary to have a composition of 75% to 85% by weight of silicon oxide and at least one or more compositions selected from aluminum oxide, potassium oxide, sodium oxide, and iron oxide as other components. To describe it in more detail, it is necessary to have a composition of 80% by weight of silicon oxide, 10% by weight of aluminum oxide, 5% by weight of potassium oxide, 2% by weight of sodium oxide, and 1.5% by weight of iron oxide (all weight percentages are included in the range of ±2%).

[0025] From the perspective of the function as the magnetic flux generating tool 10 (modifying the electromagnetic characteristics and obtaining the effect by the reduction action caused by the magnetic flux), it is necessary to focus on the particle size distribution of the powder other than the resin constituting the magnetic flux penetrating member 30. The particle size distribution of the powder other than the resin was changed in various ways, and a plurality of magnetic flux generating tools 10 were prototyped, and their action effects were evaluated through simple experiments. As a result of the evaluation, in order to exhibit an excellent function as the magnetic flux generating tool 10, that is, to modify the electromagnetic characteristics by controlling the distribution state (flow) of the magnetic flux and obtain the effect by the reduction action caused by the magnetic flux, the particle size distribution of the powder other than the resin was found out.

[0026] That is, it was found through simple experiments that for a predetermined average particle size, it is sufficient if the particles in the particle size range within ±25% of the average particle size are 50% to 80% of the total number of particles. To show specific numerical values, for example, when the average particle size of the powder other than the resin constituting the magnetic flux penetrating member 30 is 1 μm, it means that the powder (particles) having a particle size between 0.75 μm and 1.25 μm (±25% with respect to the average particle size of 1 μm) should be 50% to 80% of the total number of powders (particles) in terms of the number. Incidentally, the average particle size of the powder constituting the magnetic flux penetrating member 30 according to the present invention is 1 μm (~1.2 μm).

[0027] <Method of using the magnetic flux generating tool><0000Figure 2 is a diagram illustrating a method for modifying drinking water, etc., using a magnetic field generator 10. Specifically, it is a diagram illustrating a method for improving the drinkability (mouthfeel, throat feel, smoothness, etc.) of drinking water (coffee, orange juice, etc.) using a magnetic field generator 10.

[0028] As shown in Figure 2, a glass filled with beverage (coffee, orange juice, etc.) is placed on top of the magnetic field generator 10. (Alternatively, the magnetic field generator 10 may be placed on either side of the glass.) To improve the drinkability (mouthfeel, throat feel, smoothness, etc.) of the beverage (coffee, orange juice, etc.), stir the beverage in the glass with a spoon or similar utensil for about 10 seconds in the state shown in Figure 2. Thus, the method of improving the drinkability (mouthfeel, throat feel, smoothness, etc.) of beverage (coffee, orange juice, etc.) using the magnetic field generator 10 is very simple.

[0029] Figure 3 is a diagram illustrating a method for improving the quality of electricity flowing through an electrical appliance using a magnetic field line generator 10. In other words, it is a diagram illustrating a method for improving the quality of electricity flowing into the electrical appliance connected to the electrical cord (by the magnetic field line generator 10).

[0030] As shown in Figure 3, two magnetic field generators 10 are installed so as to sandwich the electrical cord near an electrical outlet (it does not necessarily have to be near an electrical outlet; it can also be installed on a household circuit breaker). The method of improving the quality of electricity flowing to the electrical appliance connected to the electrical cord (the end of the cord) using the magnetic field generators 10 is also very simple.

[0031] Regarding the orientation of the magnetic field generator 10, it should be installed so that its north pole and south pole face each other. However, it may also be installed so that the north poles of the magnetic field generator 10 face each other, or the south poles face each other. Furthermore, the magnetic field generator 10 has a very wide range of applications, not only in electrical products, but also in places where there is water flow (broadly speaking, where liquids are flowing), such as water pipes, to improve water quality (liquid quality), and it can even be used as a magnetic component in generators.

[0032] <Effects of magnetic field line generators> The magnetic field line generator 10 according to the present invention can control the flow of magnetic field lines by having the magnetic field lines generated from the magnetic material 20 pass through the magnetic field line penetration member 30 (by controlling the distribution state of the magnetic field lines). By controlling the flow of magnetic field lines, the electromagnetic properties of the generated magnetic field lines can be modified, and various effects due to the reduction action (on drinking water, etc.) caused by these magnetic field lines can be obtained.

[0033] Specific examples of the effects of various reducing processes (obtained from the simple experiment shown in Figure 2) show that the palatability (mouthfeel, throat feel, smoothness, etc.) of drinking water (coffee, orange juice, etc.) can be improved. The results of the simple experiment are shown in Table 1.

[0034] [Table 1]

[0035] The magnetic field line generator 10 can modify the electromagnetic properties of the generated magnetic field lines by controlling the distribution of magnetic field lines generated from the magnetic field line generator 10 with respect to the portion sandwiched between the magnetic field line generator 10 (for example, an electrical cord), that is, by controlling the flow of magnetic field lines (generated from the magnetic field line generator 10), thereby providing various reducing effects (in electrical products at the end of the electrical cord) caused by these magnetic field lines.

[0036] Specific examples of the effects of various reduction processes (obtained from the simple experiments shown in Figure 3) show that the performance of electrical appliances improved in televisions (evaluated by the degree to which the picture quality improved, even for televisions with poor picture quality), refrigerators (evaluated by the resistance to spoilage of stored vegetables), and washing machines (evaluated by the resistance to mold growth in the bathtub). The results of the simple experiments are shown in Table 2.

[0037] [Table 2]

[0038] <Examples of changes to magnetic field line generators> The magnetic field line generator according to the present invention is not limited in any way to the embodiments described above, and the configuration of the magnetic material, the member through which the magnetic field lines penetrate, etc., can be appropriately changed as necessary without departing from the spirit of the present invention. [Industrial applicability]

[0039] As the magnetic field line generator according to the present invention exhibits the excellent effects described above, it can be suitably used as a magnetic field line generator that modifies electromagnetic properties by controlling the distribution state (flow) of magnetic field lines through the interposed magnetic field line penetrating material. [Explanation of Symbols]

[0040] 10. Magnetic field generator 20...Magnetic material 30. Magnetic field line penetration member 40. A laminate in which magnetic material and magnetic field line penetration members are alternately stacked.

Claims

1. A magnetic field line generator for modifying electromagnetic properties by controlling the flow of magnetic field lines and obtaining effects due to the reduction action caused by said magnetic field lines, Multiple stacked magnetic materials, A magnetic field line generating device characterized by interposing a field line penetrating member, which is a resin in which particles are dispersed between the laminated magnetic materials, comprising 70% to 80% by weight of silicon oxide and at least one particle selected from aluminum oxide, potassium oxide, and iron oxide as other components, wherein 50% to 80% of the total number of particles are within a particle size range of ±25% of a predetermined average particle size, and covering the plurality of magnetic materials with the field line penetrating member.

2. The magnetic field generator according to claim 1, characterized in that the N pole of the magnetic field generator and the S pole of the magnetic field generator are installed opposite each other.

3. The magnetic field generator according to claim 1, characterized in that the north poles of the magnetic field generators are positioned opposite each other, or the south poles of the magnetic field generators are positioned opposite each other.

Citation Information

Patent Citations

  • JP1988131673U

  • Magnetic treatment device for reforming liquid

    JP1995000809A

  • Water quality regulator and its production

    JP1997024371A

  • Magnetic cup

    JP1997098873A

  • Mineral water generating tool, and sprayer and water-bottle equipped with it

    JP2006026465A