Magnetized water generator

The magnetized water generator addresses the challenge of improving water quality from tap water by using a lid and cylinder design with magnets and magnetite to create a zero magnetic field, enhancing water quality through magnetization.

JP7863868B2Active Publication Date: 2026-05-22HARUKOKORO CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
HARUKOKORO CO LTD
Filing Date
2022-04-13
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

Existing water purifiers struggle to meet the high demand for improved water quality from tap water, particularly in areas where water sources are polluted.

Method used

A magnetized water generator with a lid and cylinder configuration, featuring an inlet, discharge port, and an introduction cylinder, utilizing magnets and magnetite to magnetize raw water, creating a zero magnetic field for enhanced water quality.

Benefits of technology

The generator effectively magnetizes water, producing high-quality magnetized water by balancing magnetic fields within the cylinder, addressing the quality demands of polluted tap water.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a water purifier, especially a magnetized water generator, that satisfies a need for high water quality.SOLUTION: A magnetized water generator (1) includes a lid (2) and a cylinder (3), in which the lid (2) is provided with an inlet (4) for taking in raw water and a discharge port (5) for discharging magnetized water, that is, magnetized water, and the lid (2) has an inlet tube (6) extending from the lid (2) into the cylinder (3). In the magnetized water generator (1), a magnet and magnetite ore (9) surrounding the magnet are stored in the cylinder (3), and the raw water led into the inlet (4), the inlet cylinder (6), and the cylinder (3) is magnetized by the action of the magnet and magnetite ore (9) in the cylinder (3), and the raw water is discharged from the discharge port (5).SELECTED DRAWING: Figure 1
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Description

Technical Field

[0001] The present invention relates to a magnetized water generator including a lid portion and a cylinder portion, wherein an inlet for taking in raw water and an outlet for discharging magnetized water, i.e., magnetized water, are provided in the lid portion, and an introduction cylinder extending from the lid portion into the cylinder portion is provided in the lid portion.

Background Art

[0002] Conventionally, there have been high demands for the quality of tap water. For example, the invention described in Patent Document 1 focuses on the fact that in recent years, many tap waters use water from polluted rivers and lakes as raw materials and the water quality is deteriorating, and provides a water purifier that provides multiple water purification tanks to improve the water quality.

[0003] However, it is difficult for such water purifiers to satisfy people's demands for water quality, and there is still a high need for water purifiers that can easily generate higher-quality water from tap water.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] Therefore, an object of the present invention is to provide a water purifier, particularly a magnetized water generator, that satisfies such high demands for water quality.

Means for Solving the Problems

[0006] This problem is solved by a magnetized water generator comprising a lid and a cylinder, wherein the lid is provided with an inlet for taking in raw water and a discharge port for discharging magnetized water, and the lid is provided with an introduction cylinder extending from the lid into the cylinder, and the cylinder contains a magnet and magnetite surrounding the magnet, and the raw water guided into the inlet, introduction cylinder and inside the cylinder is magnetized by the action of the magnet and magnetite inside the cylinder and discharged from the discharge port as magnetized water.

[0007] Advantageously, the inlet tube has multiple small holes.

[0008] In another embodiment, the magnets provided within the cylinder are a pair of magnets, each formed in a cylindrical shape and arranged parallel to the introduction tube, with the polarity of the magnet pair being such that one magnet has its north pole on the side closer to the lid, and the other magnet has its south pole on the side closer to the lid.

[0009] In yet another implementation, the multiple small holes in the introduction tube are provided only in the region near the magnet located within the cylinder. Furthermore, the magnet located within the cylinder can also consist of a stack of multiple magnets. [Brief explanation of the drawing]

[0010] [Figure 1] Overall diagram of the magnetized water generator according to the present invention [Figure 2] A view of the cylinder section of the magnetized water generator according to the present invention, seen from an oblique angle above. [Figure 3] Diagram of an introduction tube extending into the cylinder and a pair of magnets. [Figure 4] Cross-sectional view of a magnetized water generator according to the present invention [Figure 5] A diagram showing a pair of magnets, magnetite, and the magnetic field located inside the cylinder. [Figure 6] This diagram illustrates how a so-called zero magnetic field is created using magnetite ore. [Modes for carrying out the invention]

[0011] Figure 1 shows an overall view of the magnetized water generator 1 according to the present invention. As shown in Figure 1, the magnetized water generator 1 according to the present invention mainly consists of a lid 2 and a cylinder 3. It can be seen that the lid 2 is provided with an inlet 4 and a discharge port 5.

[0012] In this diagram, the cylinder section 3 is depicted transparently for the sake of visibility of the interior. In reality, the cylinder section 3 does not necessarily have to be made of a transparent or translucent material. It can be seen that the introduction tube 6 and the magnet, which will be described later, are located inside the cylinder section 3.

[0013] Figure 2 shows the cylinder section 3 of the magnetized water generator 1 according to the present invention, viewed from diagonally above. The lid section 2 is not shown here; only the inlet tube 6 extending from the lid section 2 is depicted. As can be inferred from this figure, the inlet tube 6 extends from the lid section 2 into the interior of the cylinder section 3.

[0014] Figure 3 shows the introduction tube 6 and a pair of magnets 7 extending into the cylinder section 3. As can be seen in this figure, the introduction tube 6 and the magnet pair 7 are arranged parallel to each other. These magnets can be ferrite magnets. Multiple small holes 8 can be seen in the introduction tube 6.

[0015] Figure 4 shows a cross-sectional view of the magnetized water generator 1 according to the present invention. The figure is a vertical cross-sectional view. It mainly shows a cylinder section 3, an inlet tube 6 extending inside it, a magnet pair 7 provided parallel to the inlet tube 6, and magnetite ore 9 arranged around the magnet pair 7.

[0016] As can be seen from Figure 4, in this embodiment, the magnet pair 7 has a configuration in which multiple magnets are stacked. In this embodiment, five magnets are stacked and arranged on the left and right sides of the introduction tube 6.

[0017] Although not fully shown in Fig. 4, the introduction cylinder of the lid portion 2 of the magnetized water generator 1 according to the present invention extends from the lid portion 2 into the interior of the cylinder portion 3 and is configured to finally reach a protrusion provided at the bottom of the cylinder portion 3. Further, a plurality of small holes 8 are provided in the introduction cylinder 6.

[0018] Magnetite 9 is arranged in the magnet in the cylinder portion 3 and in portions other than the introduction cylinder 6. As can be seen in Fig. 4, the magnetite 9 can be arranged throughout the cylinder. At that time, the size of each particle of the magnetite 9 is arbitrary.

[0019] As shown in Fig. 5, the pair of magnet pairs 7 arranged in the cylinder portion 3 can be configured such that the polarities thereof are different from each other. In the example of Fig. 5, for the magnet shown on the left side, the N pole is arranged on the upper side (the lid portion 2 side) and the S pole is arranged on the bottom side of the cylinder portion 3. On the other hand, for the magnet shown on the right side of the figure, the N pole is arranged on the lower side (the bottom side of the cylinder portion 3) and the S pole is arranged on the lid portion 2 side.

[0020] Finally, based on Fig. 6, "zero magnetic field" will be described. Inside the magnetized water generator 1 according to the present invention, specifically inside the cylinder portion 3, magnetite 9 is arranged so as to surround a magnet pair 7 composed of two ferrite magnets. The S pole and N pole of the ferrite magnet are directed in opposite directions to each other, whereby a magnetic field as shown in Fig. 5 is formed. This magnetic field, as shown in Fig. 6, will be directed in various directions by each particle of the magnetite 9. When magnetic fields directed in various directions are in a state perpendicular to the water flow and the energies of the S pole and N pole are balanced with each other as shown in Fig. 6, a phenomenon called a so-called zero magnetic field occurs.

[0021] Thereby, the water taken in from the inlet 4 and introduced into the cylinder portion 3 by the introduction cylinder 6 is magnetized by the magnetic field in the zero magnetic field state to become magnetized water. The magnetized water can be discharged from the discharge port 5.

[0022] In this embodiment, the present invention was explained using a pair of parallel magnets 7, but the arrangement and number of magnets and magnet pairs are not limited thereto. The present invention can be realized with any number of magnets capable of achieving a so-called zero magnetic field state. [Explanation of Symbols]

[0023] 1 Magnetized water generator 2 Lid 3 Cylinder section 4 Inlet 5 Outlet 6 Introductory tube 7 pairs of magnets 8 small holes 9. Magnetite

Claims

1. A magnetized water generator (1) consisting of a lid (2) and a cylinder (3), The lid (2) is provided with an inlet (4) for taking in raw water and an outlet (5) for discharging magnetized water, i.e., magnetized water. In a magnetized water generator (1), the lid portion (2) is provided with an introduction tube (6) that extends from the lid portion (2) into the cylinder portion (3), A magnet and magnetite ore (9) surrounding the magnet are housed inside the cylinder section (3). Raw water is guided into the inlet (4), the introduction cylinder (6), and the inside of the cylinder section (3), and is discharged from the outlet (5) as magnetized water due to the action of the magnet and magnetite ore (9) inside the cylinder section (3). The magnets provided within the cylinder portion (3) are a pair of magnet pairs (7) each formed in a cylindrical shape and arranged parallel to the introduction tube (6), and the polarity of the magnet pair (7) is such that one magnet has its north pole positioned on the side closer to the lid portion (2), and the other magnet has its south pole positioned on the side closer to the lid portion (2). A magnetized water generator (1) characterized in that the magnet provided inside the cylinder section (3) consists of a stack of multiple directly adjacent magnets.

2. The magnetized water generator (1) according to claim 1, characterized in that a plurality of small holes (8) are provided in the introduction cylinder (6).

3. The magnetized water generator (1) according to claim 1 or 2, characterized in that the plurality of small holes (8) provided in the introduction cylinder (6) are provided only in the region near the magnet provided in the cylinder portion (3).