Terahertz wave energy conversion processing device

The terahertz wave energy conversion processing device addresses the need for manufacturing bioenergy articles by using a terahertz wave energy conversion processing device with an energy addition unit, control unit, and placement unit to convert objects into bioenergy articles with high terahertz wave emissivity.

JP3251682UActive Publication Date: 2025-06-18李明宗
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Patent Information

Application Number
JP2025001178U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-06-18
Estimated Expiration
2035-04-15

AI Technical Summary

Technical Problem

There is a lack of manufacturing devices capable of easily performing energy conversion or energy application processing on articles using terahertz waves to obtain bioenergy articles.

Method used

A terahertz wave energy conversion processing device is designed with an energy addition unit, a control unit, and a placement unit, which includes an energy supply unit with terahertz wave and/or far-infrared ray generators, and an energy conversion unit to focus and implant these waves into objects for energy conversion processing.

Benefits of technology

The device effectively converts objects into bioenergy articles with high terahertz wave emissivity, enabling efficient and long-term terahertz wave emission.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided is a terahertz wave energy conversion processing apparatus used for performing energy conversion processing on an object to be processed. 【Solution means】The terahertz wave energy conversion processing apparatus includes an energy addition unit, a control unit 20, and a placement unit 30. The energy addition unit has an energy addition channel 11, an energy supply unit, and an energy conversion unit. The inside of the energy addition channel presents a hollow accommodation space 111. The energy supply unit is used for emitting terahertz waves with a wavelength of 4 to 14 μm or far-infrared rays with a wavelength of 4 to 20 μm. The energy conversion unit is arranged to focus the terahertz waves generated by the energy supply unit and project them into the accommodation space. The control unit is used for controlling the terahertz wave energy conversion processing apparatus, and the placement unit places the object to be processed so that the energy supply unit irradiates the object to be processed WP.
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Description

Technical Field

[0001] The present invention relates to an energy conversion processing device, and more particularly to a terahertz wave energy conversion processing device capable of manufacturing an article having a characteristic of maintaining terahertz wave emission for a long time at high speed and easily.

Background Art

[0002] However, up to now, a manufacturing device that can easily obtain bioenergy articles has not yet been developed. In particular, there has been no device capable of performing energy conversion or energy application processing on an article.

Summary of the Invention

Problems to be Solved by the Invention

[0003] Therefore, there has been an urgent desire to research and develop a manufacturing device capable of easily performing energy conversion or energy application processing on an article by terahertz waves to obtain bioenergy articles.

Means for Solving the Problems

[0004] Therefore, the present inventor considered that the above-mentioned drawbacks could be improved, and as a result of intensive studies, proposed the terahertz wave energy conversion processing device of the present invention that effectively improves the above-mentioned problems by a reasonable design.

[0005] To achieve the above object, a terahertz wave energy conversion processing device according to an aspect of the present invention includes an energy addition unit, a control unit, and a placement unit. The energy addition unit has an energy addition channel, an energy supply unit, and an energy conversion unit. The inside of the energy addition channel presents a hollow accommodation space for placing an object to be processed, and the object to be processed is passed through to perform energy conversion processing.

[0006] The energy supply unit is installed inside the energy addition channel and encloses the accommodation space. The energy supply unit includes a terahertz wave generator and / or a far-infrared ray generator for emitting terahertz waves in the range of wavelengths between 4 and 14 μm and / or far-infrared rays in the range of wavelengths between 4 and 20 μm, respectively. Further, terahertz waves and / or far-infrared rays are implanted into the object to be processed so that the object to be processed has terahertz wave and / or far-infrared ray energy.

[0007] The energy conversion unit is installed in the accommodation space and is arranged to focus the terahertz wave and / or far-infrared ray beam emitted from the energy supply unit and irradiate the accommodation space.

[0008] The control unit controls the terahertz wave energy conversion processing device to perform energy conversion processing on the object to be processed, and is used to convert the object to be processed into a bioenergy article having bioenergy waves.

[0009] The placement unit is used to place the object to be processed and pass the object to be processed through the energy addition channel. The energy supply unit irradiates the object to be processed in the energy addition channel with terahertz waves and / or far-infrared rays.

[0010] According to one aspect of the present invention, the energy conversion unit is arranged to surround the periphery of the accommodation space and includes a plurality of terahertz wave generators for emitting terahertz waves in the range of wavelengths between 4 and 14 μm toward the center direction of the accommodation space, and implants terahertz waves into the object to be processed so that the object to be processed has terahertz wave energy.

[0011] According to one aspect of the present invention, the energy conversion unit is arranged to surround the periphery of the accommodation space, and includes a plurality of far-infrared ray generators for emitting far-infrared rays in the wavelength range of 4 to 20 μm toward the center direction of the accommodation space, and implants far-infrared rays into the object to be processed so that the object to be processed has far-infrared energy.

[0012] According to one aspect of the present invention, the energy supply unit surrounds the periphery of the accommodation space and has a plurality of terahertz wave generators for emitting the terahertz waves in a specific wavelength range toward the center direction of the accommodation space.

[0013] According to one aspect of the present invention, the control unit includes at least an electric control board and a power supply assembly member. The power supply assembly member is electrically connected to supply power to the electric control board, the energy supply unit, and the energy conversion unit, and the electric control board is used to adjust the wavelength, propagation speed, and power of the terahertz waves output from the energy supply unit.

[0014] According to one aspect of the present invention, the control unit further includes a display screen for displaying the operating status of the terahertz wave energy conversion processing device.

[0015] According to one aspect of the present invention, the display screen is a touch screen serving as an operation interface of the terahertz wave energy conversion processing device.

[0016] According to one aspect of the present invention, the energy addition channel is made of a metal material, a resin material, or a plastic material, and a plurality of reflectors are installed on the inner wall surface of the energy addition channel.

[0017] According to one aspect of the present invention, the placement unit further includes a transport platform and two guard rails. The transport platform is arranged to pass through the energy addition channel, and the object to be processed is allowed to enter the energy addition channel for energy conversion and processing. The two guard rails are respectively installed on opposite sides of the transport platform, and the height of the two guard rails is higher than the height of the transport platform.

[0018] According to one aspect of the present invention, the energy conversion unit includes those selected from diamond, quartz, and combinations thereof.

[0019] According to one aspect of the present invention, the object to be processed is selected from textile products, ceramic material chips, fiber-reinforced polymer composites, toughened glass, ceramic materials, fiber materials, and combinations thereof.

[0020] Other objects, configurations, and effects of the present invention will become apparent from the following sections on the embodiments of the invention.

Brief Description of the Drawings

[0021]

Figure 1A

Figure 1B

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Mode for Carrying Out the Invention

[0022] Hereinafter, embodiments of the present invention will be described in detail. However, the present invention is not limited to this, and various modifications are possible within the described range, and embodiments obtained by appropriately combining technical means disclosed in different embodiments are also included in the technical scope of the present invention.

[0023] First, an embodiment of a terahertz wave energy conversion processing apparatus of the present invention will be described in detail with reference to FIGS. 1A to 7.

[0024] A terahertz wave energy conversion processing apparatus 1 according to an embodiment of the present invention includes at least an energy addition unit 10, a control unit 20, and a placement unit 30 (see FIGS. 1A and 2). The terahertz wave energy conversion processing apparatus 1 performs energy conversion processing on a processing target object WP so as to convert the processing target object WP into a biological energy article having a biological energy wave. The terahertz wave emissivity of the biological energy article is at least more than 70%.

[0025] As shown in FIGS. 1A and 2, the energy addition unit 10 of the terahertz wave energy conversion processing apparatus 1 includes an energy addition channel 11, an energy supply unit 12, a terahertz wave generator 121, and an energy conversion unit 13. The interior of the energy addition channel 11 presents a hollow accommodation space 111, and the energy addition channel 11 is used to perform energy conversion processing on the object to be processed WP. The terahertz wave generator 121 of the energy supply unit 12 is installed inside the energy addition channel 11 and surrounds the accommodation space 111. The terahertz wave generator 121 of the energy supply unit 12 emits terahertz waves in the range of wavelengths between 4 and 14 μm and is used to implant terahertz waves into the object to be processed WP so that the object to be processed WP has terahertz wave energy.

[0026] The energy conversion unit 13 is installed in the accommodation space 111 and is arranged to focus the beam of terahertz waves emitted from the energy supply unit 12 and irradiate it into the accommodation space 111. The control unit 20 is used to control the terahertz wave energy conversion processing apparatus 1 to perform energy conversion processing on the object to be processed WP in order to convert the object to be processed WP into a bioenergy article having bioenergy waves. The placement unit 30 is arranged to place the object to be processed WP and pass it through the energy addition channel 11 so that the energy supply unit 12 irradiates the object to be processed WP in the energy addition channel 11.

[0027] FIG. 1B is a schematic diagram showing a terahertz wave energy conversion processing apparatus according to another embodiment of the present invention. As shown in the figure, the energy supply unit 12 is installed in the accommodation space and further includes a far-infrared ray generating device 122 for emitting far-infrared rays in the wavelength range of 4 to 20 μm. The energy conversion unit 13 is used to focus the far-infrared rays generated by the far-infrared ray generating device 122 and project them into the energy addition channel 11. The far-infrared ray generating device 122 includes a plurality of far-infrared ray light sources.

[0028] Also, the far-infrared ray generating device 122 may be any device that can generate far-infrared rays in the wavelength range of 4 to 20 μm, and the present invention is not particularly limited. For example, a conventional high-intensity heat-resistant ceramic far-infrared radiation plate or any other type of far-infrared ray generating device may be used. Also, the far-infrared ray generating device 122 may utilize a far-infrared diode or other far-infrared irradiation device.

[0029] According to the present invention, the energy conversion unit 13 may be a laser energy conversion material or device that can further focus the far-infrared rays in the wavelength range of 4 to 20 μm generated by the far-infrared ray generating device 122 and emit them at an ultra-high speed, and the present invention is not particularly limited. For example, it may be composed of an oscillation material such as quartz or diamond.

[0030] According to the present invention, the control unit 20 may be appropriately controllable to operate under predetermined processing conditions to convert the object to be processed WP into a bioenergy article that generates far-infrared rays in the wavelength range of 4 to 20 μm, such as the terahertz wave generating device 121 and / or the far-infrared ray generating device 122, the energy conversion unit 13, etc., and the present invention is not particularly limited.

[0031] The control unit 20 controls to emit high-density far-infrared rays at ultra-high speed (high-frequency oscillation of terahertz waves) so as to transmit the workpiece based on the principle of light wave refraction radiation resonance, generates the quantum state photoelectric effect by the energy level transition stacking method, further generates regenerated light (Raman effect) in the workpiece, and stores the wave energy particles in the range of 4 to 14 μm in the workpiece (i.e., product or material molecules) in the physical condensate method for a long time, thereby converting the object to be processed into an article having biological energy. According to the present invention, the control unit 20 may further include other accessory devices. For example, a solar energy collection panel or other safety protection devices may be attached.

[0032] FIG. 3 is a schematic cross-sectional view taken along the line A-A of the energy addition unit 10 shown in FIG. 1. As shown in FIG. 3, in the energy addition unit 10, the terahertz wave and / or far-infrared ray generated by the energy supply unit 12 is focused by the energy conversion unit 13 and projected into the accommodation space 111, and the energy addition channel 11, the energy supply unit 12, and the energy conversion unit 13 are arranged.

[0033] In the example of FIG. 3, the energy supply unit 12 has a plurality of terahertz wave generators 121 and / or the far-infrared ray generator 122 (shown in a circular shape) for surrounding the periphery of the accommodation space 111 and emitting the terahertz wave and / or far-infrared ray in the specific wavelength range toward the center direction of the accommodation space 111. Further, the energy conversion unit 13 has a plurality of energy conversion units 131 (shown in a square shape) surrounding the periphery of the accommodation space 111, and the quantity and position thereof correspond to those of the terahertz wave generators 121, and are used to focus the terahertz wave and / or the far-infrared ray generated by the terahertz wave generators 121 and / or the far-infrared ray generator 122 and irradiate them into the accommodation space 111.

[0034] Note that the drawings of the plurality of diamonds of the terahertz wave generator 121 and the energy conversion unit 131 shown in FIG. 3 are merely illustrative of the arrangement of their positions and do not represent their external shapes, and it should be noted that the present invention is not limited thereto. Further, the terahertz wave generator 121 and the energy conversion unit 131 have a corresponding arrangement relationship with each other. Further, the energy conversion unit 13 may be realized by quartz.

[0035] Further, in such a case, as shown in FIG. 2, the control unit 20 further includes a display screen 21 for displaying the operating status of the terahertz wave energy conversion processing apparatus 1. For example, it displays the time and progress status of energy conversion processing. Further, it displays the set values of processing conditions such as at least one of the magnitude of the terahertz wavelength, the power range, the processing time, and the processing steps.

[0036] In a certain embodiment, the display screen 21 is a touch screen for serving as an operation interface of the terahertz wave energy conversion processing apparatus 1. The display screen 21 is a touch screen for serving as an operation interface of the terahertz wave energy conversion processing apparatus 1. Further, the control unit 20 includes at least an electric control board 22 and a power supply assembly member 23. The power supply assembly member 23 is electrically connected to supply power to the electric control board 22, the energy supply unit 12, and the energy conversion unit 13. The electric control board 22 adjusts the wavelength, propagation speed, and power of the terahertz wave output from the energy supply unit 12.

[0037] FIG. 4 is a schematic view showing another embodiment of a cross-sectional view of the energy addition unit of the present invention. The energy supply unit 12 and the energy conversion unit 13 in FIG. 4 are in an annular shape and surround the energy addition channel 11.

[0038] FIG. 5 is a schematic diagram showing another embodiment of the terahertz wave energy conversion processing apparatus according to the present invention. As shown in FIG. 5, the terahertz wave energy conversion processing apparatus 1 has different shapes. The energy addition channel 11 may be modified into a rectangle. Also, the control unit 20 is supported by a support structure 24 and can be adjusted to different angles for easy operation by the user. The control unit 20 may be realized by a notebook computer or a tablet terminal. For easy operation, the control unit 20 and the support structure 24 may be further arranged on different sides of the energy addition unit 10.

[0039] Inside the energy addition unit 10 of the terahertz wave energy conversion processing apparatus 1 according to each of the above-described embodiments, the arrangement method shown in FIG. 3 or FIG. 4 is adopted to realize the energy supply unit 12 and the energy conversion unit 13. However, the present invention does not limit the implementation methods of the energy supply unit 12 and the energy conversion unit 13, and other arrangement methods may be adopted, and the present invention is not limited thereto.

[0040] FIG. 6 is a schematic diagram showing another embodiment of the energy addition channel according to the present invention. The energy addition channel 11 is made of a metal material, a resin material, or a plastic material, and a plurality of reflecting plates 112 are installed on the inner wall surface of the energy addition channel 11. The metal material may be an aluminum alloy, copper, stainless steel, or a titanium alloy. The aluminum alloy is often adopted because it is lightweight, has excellent thermal conductivity, and has good permeability to terahertz waves, and the aluminum alloy has sufficient strength to fit the outer case.

[0041] In such a case, as shown in FIG. 7, the placement unit 30 further has a transport platform 31 and two guard rails 32. The transport platform 31 is arranged to pass through the energy addition channel 11, and allows the object to be processed WP to enter the energy addition channel 11 for energy conversion processing. The two guard rails 32 are respectively installed on opposite sides of the transport platform, and the height of the two guard rails is higher than the height of the transport platform.

[0042] The above embodiments are for facilitating the understanding of the present invention and are not for limiting and interpreting the present invention. It goes without saying that the present invention can be changed and improved without departing from its spirit, and equivalents thereof are included in the present invention.

Explanation of Reference Numerals

[0043] 1 Terahertz Wave Energy Conversion Processing Apparatus 10 Energy Addition Unit 11 Energy Addition Channel 111 Accommodation Space 112 Reflector 12 Energy Supply Unit 121 Terahertz Wave Generator 122 Far-Infrared Ray Generator 13 Energy Conversion Unit 131 Energy Conversion Unit 20 Control Unit 21 Display Screen 22 Electric Control Board 23 Power Supply Assembly Member 24 Support Structure 30 Placement Unit 31 Transport Platform 32 Guard Rail WP Object to be Processed

Claims

1. A terahertz wave energy conversion processing device for converting a processing object into a bioenergy product having biological wavelength energy, 1. An energy adding unit, comprising: an energy addition channel having a hollow receiving space therein for processing the object to be processed; an energy supply unit including at least a terahertz wave generator, the energy supply unit being disposed inside the energy-adding channel, surrounding the storage space, and used to emit terahertz waves having a wavelength in the range of 4 to 14 um; an energy adding unit that is installed in the storage space, is disposed at a downstream end of the energy supply unit, is used to focus a beam of terahertz waves emitted from the terahertz wave generating device, and irradiates the object to be treated in the storage space with terahertz waves so as to implant the terahertz waves into the object to be treated, so that the object has terahertz wave energy; A control unit is disposed at the front end or rear end of the energy-adding unit, and controls the energy conversion process of the energy-adding unit on the object to be treated so as to form electrical communication and obtain a bioenergy product having biological wavelength energy; A terahertz wave energy conversion processing device characterized by at least comprising a mounting unit arranged on one side of the energy addition channel and used to place the object to be processed and pass the object through the energy addition channel.

2. The terahertz wave energy conversion processing device according to claim 1, characterized in that the energy supply unit further comprises a far-infrared generating device used to emit far-infrared rays of a specific wavelength range toward the center of the storage space.

3. The terahertz wave energy conversion processing device according to claim 2, characterized in that the energy supply unit is arranged to surround the periphery of the storage space and further has a plurality of far-infrared light sources used to emit far-infrared rays of the specific wavelength range toward the center of the storage space.

4. The terahertz wave energy conversion processing device described in claim 1, characterized in that the energy supply unit is arranged to surround the periphery of the storage space and has a plurality of terahertz wave generating devices used to emit the terahertz waves having a wavelength in the range of 4 to 14 um toward the center of the storage space.

5. The terahertz wave energy conversion processing device described in claim 4, characterized in that the energy conversion unit has at least a plurality of energy conversion units arranged to surround the storage space, the number and positions of which correspond to each of the terahertz wave generating devices, and are used to focus the terahertz waves generated by the terahertz wave generating devices and irradiate the terahertz waves onto the object to be processed in the storage space.

6. The terahertz wave energy conversion processing device of claim 1, characterized in that the control unit at least comprises an electrical control plate and a power supply assembly, the power supply assembly being electrically connected to supply power to the electrical control plate, and the energy supply unit, the energy conversion unit, and the electrical control plate are used to adjust the wavelength, propagation speed, and power of the terahertz wave output from the energy supply unit.

7. 2. The terahertz wave energy conversion processing apparatus according to claim 1, wherein the control unit further comprises a display screen for displaying an operating status of the terahertz wave energy conversion processing apparatus.

8. The terahertz wave energy conversion processing device according to claim 7 , wherein the display screen is a touch screen that serves as an operation interface for the terahertz wave energy conversion processing device.

9. The terahertz wave energy conversion processing device according to claim 1 , wherein the energy-adding channel is made of a metal material, a resin material, or a plastic material, and a plurality of reflectors are installed on the inner wall surface of the energy-adding channel.

10. The terahertz wave energy conversion processing apparatus of claim 1, characterized in that the mounting unit further comprises a transport platform and two guard rails, the transport platform is arranged to pass through an energy addition channel, and the processing object is caused to enter the energy addition channel for energy conversion processing, the two guard rails are installed on opposite sides of the transport platform, and the height of the two guard rails is higher than the height of the transport platform.