A space capsule capable of all-round body irradiation

By designing a space capsule with rotatable upper and lower chambers and adjustable infrared panels, the problem of existing space capsules being unable to provide all-round illumination has been solved, achieving all-round infrared light illumination and enhancing the hydrogen-carrying capacity and health benefits of cells.

CN119097849BActive Publication Date: 2025-11-18GUANGZHOU MINGYANG INTELLIGENT INNOVATION TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202411387790.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-07
Publication Date
2025-11-18
Estimated Expiration
2044-10-07

AI Technical Summary

Technical Problem

Existing spacecraft cannot provide all-around infrared light irradiation to the human body, resulting in insufficient enhancement of the cell's hydrogen-carrying capacity.

Method used

Design a space capsule comprising an upper and lower compartment connected by a rotating mechanism. The inner wall is equipped with infrared panels in multiple areas, the direction of which can be adjusted. The headrest is movable to accommodate the needs of different people, ensuring all-round illumination.

Benefits of technology

It achieves all-round infrared light irradiation, enhances the hydrogen-carrying capacity of cells, improves cell survival and metabolic capacity, enhances the ability to adapt to environmental stress, and has a therapeutic effect on diseases.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of space cabin, and specifically discloses a kind of space cabin capable of all-around body irradiation, including upper cabin body and lower cabin body, upper cabin body is rotatably connected with the one end of lower cabin body, the other end of lower cabin body is provided with headrest, headrest can move along lower cabin body, the inner wall of upper cabin body is equipped with multiple infrared plates, the light emitted by infrared plate can cover on the front side of human body.The upper cabin body and lower cabin body of the present application are rotatably connected, therefore, after rotating upper cabin body, upper cabin body can be opened, user can lie on lower cabin body, the head of user can be placed on headrest, since headrest can move on lower cabin body, therefore, the position of headrest is adjusted according to the height of user and the length of neck, meet the use demand of different users.
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Description

Technical Field

[0001] This invention relates to a space capsule, and more particularly to a space capsule capable of omnidirectional body illumination. Background Technology

[0002] A space capsule is a device that emits infrared light. When infrared light shines on the human body, it can relax cells, enhancing the cells' ability to carry hydrogen and oxygen. The following example, using hydrogen-carrying capacity, illustrates the positive effects of this enhanced capacity on human health:

[0003] 1. Cellular survival and metabolism: Cells participate in biochemical reactions through their hydrogen-carrying capacity. These reactions are catalyzed by enzymes and maintain normal cellular metabolic activities. The direct interaction of hydrogen with biological macromolecules can affect the activity of these macromolecules, indicating that organisms possess hydrogen metabolism capabilities.

[0004] 2. Coping with environmental pressures: In extreme environments, such as drought, high temperature, and extreme cold, some microorganisms can use extremely small amounts of hydrogen in the air to survive.

[0005] 3. Disease treatment: Hydrogen has a very strong protective effect against damage to animal cells, can improve mitochondrial function and ATP production, and has therapeutic effects on many diseases.

[0006] In conclusion, the ability of cells to carry hydrogen is not only fundamental to cellular survival and metabolism, but also a key factor in coping with environmental stress, disease treatment, and the evolution of life.

[0007] Existing spacecraft typically only illuminate a portion of the human body, failing to provide comprehensive irradiation. Given that infrared light, when applied to the human body, can relax cells and enhance their hydrogen-carrying capacity, it is necessary to develop a novel spacecraft capable of providing comprehensive body irradiation. Summary of the Invention

[0008] The purpose of this invention is to provide a space capsule that can provide all-around body illumination, so as to solve the drawback of existing space capsules that cannot provide all-around illumination to the human body.

[0009] According to one aspect of the present invention, a space capsule capable of omnidirectional body illumination includes an upper capsule and a lower capsule, one end of which is rotatably connected to the lower capsule, and the other end of the lower capsule is provided with a headrest that can move along the lower capsule. The inner wall of the upper capsule is provided with a plurality of infrared plates, and the light emitted by the infrared plates covers the front side of the user.

[0010] In some embodiments, the upper chamber is divided into five regions, including a first region, two second regions, and two third regions. The first region can be horizontally positioned on the upper side of the upper chamber, the second regions are arc-shaped, and the two third regions can be vertically positioned on the left and right sides of the upper chamber. Thus, by setting multiple regions, an infrared plate can be installed in each region, and an infrared lamp can be installed on the infrared plate. The infrared light emitted by the lamp can illuminate the user's front, relaxing the user's cells and enhancing their hydrogen-carrying capacity.

[0011] In some implementations, an infrared panel is provided in each of the five zones, with the third zone being an adjustable zone where the direction of illumination from the infrared panel can be adjusted. Therefore, since the direction of illumination from the infrared panel in the third zone can be adjusted, the direction can be tailored to the user's specific needs, thus meeting the requirements of different user groups.

[0012] In some embodiments, the infrared plate in the third region is rotatably connected to the inner wall of the upper cabin. Multiple first springs are provided on the upper and lower sides of the back of the infrared plate in the third region. Adjusting bolts are also provided on the upper and lower sides of the infrared plate in the third region. The upper adjusting bolt can adjust the infrared plate to irradiate downwards, and the lower adjusting bolt can adjust the infrared plate to irradiate upwards.

[0013] In some embodiments, a rotating shaft is provided at the middle position of the infrared plate in the third region, and the infrared plate in the third region is rotatably connected to the inner wall through the rotating shaft. There are four adjusting bolts and eight first springs.

[0014] In some embodiments, an opening is provided at one end of the upper chamber, through which the user's head can protrude and rest on a headrest. This opening allows the user's head to extend, making the infrared irradiation process more comfortable.

[0015] In some embodiments, the lower compartment is provided with a sliding groove containing a support plate, and the headrest has a through cavity through which the support plate can pass. The headrest can move along the support plate or be held in place by the support plate. Thus, the support plate serves two purposes: firstly, it supports the headrest, and secondly, it allows the position of the headrest to be adjusted according to actual needs, making it more comfortable for the user.

[0016] In some embodiments, a recess is provided above the through cavity of the headrest, and a protrusion is provided on the upper end surface of the support plate. The protrusion can be engaged in or disengaged from the recess. Thus, when the protrusion is engaged in the recess, the headrest cannot move; when the protrusion disengages from the recess, the headrest can move.

[0017] In some embodiments, a second spring is provided on the lower end face of the headrest. The second spring is in a compressed state. When no external force is applied to the headrest, the second spring can push the headrest to move upward, causing the protrusion to disengage from the concave hole. When a downward external force is applied to the headrest, the protrusion disengages from the concave hole.

[0018] The beneficial effects of the present invention are as follows: The upper and lower compartments of the present invention are rotatably connected. Therefore, after rotating the upper compartment, the upper compartment can be opened, and the user can lie on the lower compartment. The user's head can be placed on the headrest. Since the headrest can be moved on the lower compartment, the position of the headrest can be adjusted according to the user's height and neck length to meet the usage needs of different users.

[0019] Furthermore, the inner wall of the upper chamber is divided into five zones: one first zone, two second zones, and two third zones. Each zone emits infrared light, which can illuminate various areas in front of the user. The infrared panel in the third zone can also rotate, adjusting its angle according to the user's body width. This ensures that all areas in front of the user receive ample infrared light. When the infrared light shines on the user, it relaxes cells, enhancing their hydrogen-carrying capacity. This enhanced hydrogen-carrying capacity can improve cell survival and metabolism, help cope with environmental stress, and even have a therapeutic effect. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of a space capsule capable of omnidirectional body illumination according to one embodiment of the present invention.

[0021] Figure 2 for Figure 1 A schematic diagram showing the hidden structure of the space capsule that allows for all-around body illumination.

[0022] Figure 3 for Figure 1 A schematic diagram of the upper part of the spacecraft that can be illuminated from all directions.

[0023] Figure 4 for Figure 1 A schematic diagram of the cross-section of the upper cabin of the spacecraft, which is capable of omnidirectional body illumination.

[0024] Figure 5 for Figure 1 A schematic diagram of the structure of the infrared panel in the third region of the spacecraft shown;

[0025] Figure 6 for Figure 5 A schematic diagram of the structure of the infrared plate in the third region shown from another direction;

[0026] Figure 7 for Figure 1 A schematic diagram of the headrest and support plate of the space capsule that provides all-around body illumination.

[0027] Figure 8 for Figure 1 A schematic diagram of another configuration of the headrest and support plate of the space capsule, which provides all-around body illumination.

[0028] In the diagram, 1-upper cabin; 11-first area; 12-second area; 13-third area; 130-infrared plate; 131-first spring; 132-adjusting bolt; 133-rotating shaft; 14-opening; 15-control panel; 2-lower cabin; 21-slide groove; 22-support plate; 221-protrusion; 3-headrest; 31-through cavity; 32-recess; 33-second spring. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] Figures 1 to 8 The diagram illustrates the structure of a space capsule capable of omnidirectional body illumination according to one embodiment of the present invention.

[0032] like Figures 1 to 8 As shown, a space capsule capable of omnidirectional body illumination includes an upper capsule 1 and a lower capsule 2.

[0033] like Figure 1 As shown, in this embodiment, the left end of the upper chamber 1 is rotatably connected to the left end of the lower chamber 2. A headrest 3 can be installed on the right end of the lower chamber 2, and the headrest 3 can move along the lower chamber 2 to meet the needs of different users. Multiple infrared plates 130 can be installed on the inner wall of the upper chamber 1. The light emitted by the infrared plates 130 covers the front side of the user. Therefore, because the light covers the front side of the user, it can irradiate all the blood vessels on the user's face, thereby dilating the user's cells and enhancing the hydrogen-carrying capacity of the user's cells.

[0034] like Figure 3 and Figure 4 As shown, the upper chamber 1 is divided into five regions: a first region 11, two second regions 12, and two third regions 13. The first region 11 is horizontally positioned on the upper side of the upper chamber 1, with the infrared plate on the first region 11 emitting light downwards. The second region 12 is arc-shaped, with the infrared plate on the second region 12 emitting light obliquely downwards. The two third regions 13 can be vertically positioned on the left and right sides of the upper chamber 1. By setting multiple regions and installing an infrared plate 130 in each region, and mounting a lamp that emits infrared light on the infrared plate 130, the emitted infrared light can illuminate the user's front, thereby relaxing the user's cells and enhancing the hydrogen-carrying capacity of the user's cells. Of course, in other embodiments, the first region 11 and the two second regions 12 can be combined to form a single region.

[0035] In this embodiment, an infrared plate 130 is provided in each of the five regions. Multiple infrared lamps can be installed on the infrared plate 130, emitting infrared light (infrared lamps are an existing device that emits infrared light). Furthermore, the third region 13 is an adjustable region, and the illumination direction of the infrared plate 130 in the third region 13 can be adjusted according to the user's actual situation. For example, a person with a thicker build can have the infrared plate 130 rotated at a certain angle to face the user's front and top; conversely, a person with a thinner build can have the infrared plate 130 rotated at a certain angle to face the user's front and bottom.

[0036] In this embodiment, the infrared plate 130 on the third region 13 is rotatably connected to the inner wall of the upper cabin 1. Multiple first springs 131 are provided on the upper and lower sides of the back of the infrared plate 130 in the third region 13. The first springs 131 are always in a compressed state. Adjusting bolts 132 are also provided on the upper and lower sides of the infrared plate 130 in the third region 13. The upper adjusting bolt 132 can adjust the infrared plate 130 to illuminate downwards, and the lower adjusting bolt 132 can adjust the infrared plate 130 to illuminate upwards. Specific adjustments are as follows: Figure 5 As shown, in order to adjust the infrared plate 130 to irradiate downwards, that is, to move the upper side of the infrared plate 130 away from the third region 13 and the lower side of the infrared plate 130 closer to the third region 13, simply tighten the upper adjusting bolt 132, the screw of the upper adjusting bolt 132 will turn inwards, and at the same time loosen the lower adjusting bolt 132, the lower adjusting bolt 132 will loosen outwards. At this time, the infrared plate 130 will rotate downwards, adjusting the direction of the infrared light irradiation on the infrared plate 130. Since the first spring 131 is always in a compressed state, the first spring 131 will prevent the infrared plate 130 from rotating on its own and affecting its use.

[0037] like Figure 5 As shown, a rotating shaft 133 is provided at the middle position of the infrared plate 130 in the third region 13. The infrared plate 130 in the third region 13 is rotatably connected to the inner wall through the rotating shaft 133. There are four adjusting bolts 132 and eight springs. In other embodiments, there are two adjusting bolts 132 and four springs.

[0038] like Figure 1 and Figure 2 As shown, an opening 14 is provided at the right end of the upper cabin 1, through which the user's head can be extended and placed on the headrest 3. The opening 14 allows the user's head to protrude, making the user more comfortable during infrared light irradiation. Furthermore, from... Figure 1 As can be seen, a control panel 15 is also installed on the upper cabin 1. When the user is lying on the lower cabin, they can operate the control panel 15 to control the activation time and the intensity of the light, etc. In addition, the control panel 15 can also be rotated for easy use.

[0039] like Figure 1 , Figure 2 , Figure 7 and Figure 8 As shown, a sliding groove 21 is integrally formed on the lower hull 2, and a support plate 22 is disposed in the sliding groove 21. Figure 7 and Figure 8 As can be seen, a through cavity 31 can be formed on the headrest 3, and the support plate 22 can pass through the through cavity 31. The headrest 3 can move along the support plate 22 or the headrest 3 can be stuck by the support plate 22. The support plate 22 can support the headrest 3 on the one hand, and on the other hand, the position of the headrest 3 can be adjusted according to the actual situation to make the user more comfortable.

[0040] like Figure 7 and Figure 8 As shown, a recessed hole 32 is provided above the through cavity 31 of the headrest 3, and a protrusion 221 can be formed on the upper end surface of the support plate 22. The protrusion 221 can be stuck in the recessed hole 32 or detached from the recessed hole 32. When the protrusion 221 is stuck in the recessed hole 32, the headrest 3 cannot move. When the protrusion 221 detaches from the recessed hole 32, the headrest 3 can move.

[0041] like Figure 8As shown, a second spring 33 is also provided on the lower end surface of the headrest 3. The upper end of the second spring 33 is fixed to the lower end surface of the headrest 3, and the lower end of the second spring 33 is a free end. Since the headrest 3 can move (the second spring 33 can move in the slide groove 21), the second spring 33 can also move with the headrest 3. To make the movement of the second spring 33 smoother, a ball bearing can be provided at the lower end of the second spring 33. When the second spring 33 is in a compressed state, when no external force is applied to the headrest 3, the restoring force of the second spring 33 can push the headrest 3 to tend to move upward, causing the protrusion 221 to disengage from the concave hole 32. When a downward external force is applied to the headrest 3, the protrusion 221 disengages from the concave hole 32.

[0042] In this invention, the upper compartment 1 and the lower compartment 2 are rotatably connected. After rotating the upper compartment 1, the upper compartment 1 can be opened, and the user can lie on the lower compartment 2. The user's head can be placed on the headrest 3. Since the headrest 3 can move on the lower compartment 2, the position of the headrest 3 can be adjusted according to the user's height and neck length to meet the usage needs of different users.

[0043] In addition, the inner wall of the upper cabin 1 is divided into five areas, including a first area 11, two second areas 12 and two third areas 13. Each area can emit infrared light, and the infrared light of each area can illuminate various positions in front of the user. Furthermore, the infrared plate 130 on the third area 13 can also rotate to adjust the angle of illumination of the infrared plate 130 on the third area 13 according to the width of the user's body.

[0044] The infrared light fully irradiates all areas of the user's face. This light relaxes cells, enhancing their hydrogen-carrying capacity. This increased hydrogen-carrying capacity improves cell survival and metabolism, helps cells cope with environmental stresses, and may even have therapeutic effects.

[0045] This invention is not limited to the above-described optional embodiments. Anyone can derive other various forms of products under the guidance of this invention. However, regardless of any changes made in their shape or structure, any technical solution that falls within the scope of the claims of this invention shall be protected by this invention.

Claims

1. A space capsule capable of omnidirectional body illumination, characterized in that, It includes an upper cabin (1) and a lower cabin (2). The upper cabin (1) is rotatably connected to one end of the lower cabin (2). The other end of the lower cabin (2) is provided with a headrest (3). The headrest (3) can move along the lower cabin (2). The inner wall of the upper cabin (1) is provided with multiple infrared plates. The light emitted by the infrared plates can cover the front side of the human body. The upper cabin (1) is divided into five areas, including a first area (11), two second areas (12), and two third areas (13). The first area (11) is horizontally located on the upper side of the upper cabin (1), the second areas (12) are arc-shaped, and the two third areas (13) are vertically located on the left and right sides of the upper cabin (1). An infrared plate (130) is provided in each of the five regions. The third region (13) is an adjustable region, and the infrared plate (130) in the third region (13) can adjust the direction of illumination. The infrared plate (130) on the third region (13) is rotatably connected to the inner wall of the upper cabin (1). Multiple first springs (131) are provided on the upper and lower sides of the back of the infrared plate (130) in the third region (13). Adjusting bolts (132) are also provided on the upper and lower sides of the infrared plate (130) in the third region (13). The upper adjusting bolt (132) can adjust the infrared plate (130) to illuminate downwards, and the lower adjusting bolt (132) can adjust the infrared plate (130) to illuminate upwards. A rotating shaft (133) is provided at the middle position of the infrared plate (130) on the third region (13). The infrared plate (130) on the third region (13) is rotatably connected to the inner wall through the rotating shaft (133). There are four adjusting bolts (132) and eight first springs (131). The lower compartment (2) is provided with a sliding groove (21), and a support plate (22) is provided in the sliding groove (21). The headrest (3) is provided with a through cavity (31). The support plate (22) can pass through the through cavity (31). The headrest (3) can move along the support plate (22) or be stuck by the support plate (22). The headrest (3) has a recess (32) above the through cavity (31), and the upper end face of the support plate (22) has a protrusion (221). The protrusion (221) can be locked in the recess (32) or disengaged from the recess (32). The lower end face of the headrest (3) is also provided with a second spring (33). The second spring (33) is in a compressed state. When no external force is applied to the headrest (3), the second spring (33) can push the headrest (3) to move upward, so that the protrusion (221) disengages from the concave hole (32). When a downward external force is applied to the headrest (3), the protrusion (221) disengages from the concave hole (32).

2. The space capsule capable of omnidirectional body illumination according to claim 1, characterized in that, The upper cabin (1) has an opening (14) at one end, through which the human head can extend and be placed on the headrest (3).

Citation Information

Patent Citations

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