Movable thermal therapy cabin and using method thereof
By using anti-acidification bio-bricks made from deep-sea volcanic rock and passive terahertz wave technology, combined with carbon fiber heating tubes, a 43°C environment is created, solving the problem that existing thermotherapy oxygen chambers cannot accurately inhibit skin oxidation and aging, achieving precise anti-oxidation and cell repair, and improving skin health.
Patent Information
- Application Number
- CN202511663188.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-01-02
AI Technical Summary
Existing hyperthermic oxygen chambers cannot accurately inhibit the expression of degradation enzymes such as MMP-2 and MMP-9, and without combining antioxidant ingredients or photoprotective mechanisms, they are unable to prevent skin oxidative aging. The parameter settings are not tailored to the tolerance and needs of different skin layers, which leads to hyperthermia causing moisture loss in the stratum corneum or differences in sensitivity in the dermis, and thus fails to effectively improve skin aging and pigmentation abnormalities.
Made from deep-sea volcanic rock, the acid-resistant bio-brick is transformed into highly active nanoparticles through amorphization treatment. This releases passive terahertz waves that combine with carbon fiber heating tubes to create a 43°C environment. Combined with antioxidant elements such as selenium, zinc, cerium, and lanthanum, it achieves precise anti-oxidation and cell repair.
It achieves precise antioxidant protection, reduces free radicals that cause skin aging, promotes cell repair, enhances immune system activity, strengthens anti-fatigue capabilities, and provides comprehensive skin health care.
Smart Images

Figure CN121242875A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of heat therapy cabin, in particular to a mobile heat therapy cabin and a use method thereof. BACKGROUND
[0002] As a device for achieving health conditioning through a controllable thermal environment, the core of the heat therapy cabin is to stimulate the human body with warm stimulation, to adjust the temperature, blood circulation and metabolic state of the whole body or part of the body, and to achieve the effects of relaxing muscles, improving circulation and relieving fatigue. The core mechanism of skin oxidative aging is that factors such as ultraviolet exposure and age growth cause the breaking of dermal elastic fibers, the loss of collagen, and the degradation of extracellular matrix caused by the excessive generation of oxidative free radicals (such as excessive activation of matrix metalloproteinase MMPs). Although the existing heat therapy oxygen cabin can improve local blood circulation and tissue oxygen supply through "heat therapy warming (41-45℃) + high-pressure oxygen supply", it does not design a targeted intervention scheme for the above-mentioned core link: heat therapy can only promote the activity of fibroblasts through mild heat stimulation, but cannot accurately inhibit the expression of degradation enzymes such as MMP-2 and MMP-9, nor can it combine with antioxidant components (such as vitamin C and glutathione) or photoprotective mechanisms to prevent further breaking of elastic fibers; high-pressure oxygen can relieve tissue hypoxia, but it is insufficient to intervene in the vicious cycle of "oxidative stress-inflammation-fiber network destruction" in skin oxidative aging, especially for ultraviolet-induced photoaging (such as solar lentigo and seborrheic keratosis), it does not solve the problem of abnormal activation of HIF1-α and VEGF caused by ultraviolet, and cannot reduce the vascular proliferation and pigment abnormalities related to photoaging from the root.
[0003] Skin oxidative aging involves multiple layers of structure such as epidermis (keratin layer barrier damage), dermis (collagen / elastin loss), and subcutaneous fat (support force decrease), and the parameter settings (such as temperature, oxygen pressure, and action time) of the existing heat therapy oxygen cabin are mostly general standards, which are not optimized for the tolerance and needs of different skin layers: if the heat therapy temperature focuses on the surface layer (such as 43-45℃), although it can improve the blood circulation of the epidermis, it may cause excessive loss of water in the keratin layer, aggravate skin dryness and itching (common symptoms of skin aging), and even cause superficial burns; if the heat therapy time is prolonged or the oxygen pressure is increased to consider the deep dermis layer, redness, stinging may occur due to the low tolerance threshold of the epidermis, and the sensitivity of fibroblasts in the dermis layer to heat / oxygen varies from person to person, so a general scheme cannot guarantee the uniformity of collagen synthesis and elastic fiber repair, which may lead to inconsistent improvement of local skin relaxation. For pigment abnormalities (such as chloasma and solar lentigo) associated with skin aging, without combining light therapy, chemical exfoliation and other means to lighten pigments, heat therapy and oxygen supply alone cannot improve pigmentation, and the moisturizing and barrier repair needs of aged skin are not met, and oxidative aging may be induced again after conditioning due to environmental stimuli (such as dryness and ultraviolet light). SUMMARY
[0004] In view of the deficiencies of the prior art, the present application aims to provide a mobile heat therapy cabin and a use method thereof to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the present application is realized by the following technical scheme: a mobile heat therapy cabin, comprising: a cabin body, one side of which is provided with an entrance and exit, and a door plate is hingedly connected in the entrance and exit; a bed plate installed at the bottom of the cabin body, and a plurality of acid-resistant biological bricks are laid on the surface of the bed plate.
[0006] Specifically, the cabin body is provided with a top cover at the upper end, a frame is installed on the lower surface of the top cover, the frame is clamped on the upper end of the cabin body, the lower surface of the top cover is recessed upward to form a groove, and a plurality of equidistantly arranged carbon fiber heating pipes are installed in the groove.
[0007] Specifically, a cushion seat is installed at the bottom of the cabin body, and the bottom area of the cushion seat is smaller than the bottom area of the cabin body.
[0008] Specifically, the acid-resistant biological bricks adopt deep-sea volcanic rocks, which are special mineral carriers derived from submarine volcanic activities, contain natural active ingredients enriched by geological action for hundreds of millions of years, and are unique in that not only the mineral essence formed in the deep-sea extreme environment is sealed in the internal pore structure of the rock, but also a large amount of trace elements and rare earth elements derived from volcanic eruptions are adsorbed, laying a material foundation for subsequent extraction of active substances.
[0009] Specifically, the traditional crystal structure of the volcanic rock is broken by amorphization treatment, the mineral components in the rock are converted into high-activity amorphous nanoparticles, and the dissolution efficiency of trace elements is improved; in combination with a multi-stage separation and purification process, impurity components in the rock are removed, and finally a core stock solution rich in trace elements and rare earth elements is obtained. These elements exist in the form of ions or small molecular complexes, have excellent biological activity and absorption utilization rate, provide core material support for the efficacy of the acid-resistant mother liquor, and the acid-resistant mother liquor has a spontaneous electricity function to generate a passive terahertz wave.
[0010] Specifically, the trace elements include selenium, zinc, manganese and strontium, and the rare earth elements include cerium and lanthanum.
[0011] Specifically, selenium in the trace elements is the core component of glutathione peroxidase, zinc is involved in the synthesis of superoxide dismutase, can directly participate in the construction of the body's antioxidant enzyme system, and enhance its ability to scavenge free radicals; rare earth elements can inhibit lipid peroxidation reaction by regulating intracellular signaling pathways, reduce the damage of active oxygen to cell membranes, proteins and nucleic acids, and the synergistic effect of the two can effectively neutralize excess free radicals in the body, alleviate the damage of oxidative stress to cells, and thus delay the aging process of cells, providing natural help for maintaining the health of the body. Whether it is used in the field of skin care products to improve skin oxidative aging problems, or as a functional raw material to assist in regulating body metabolism, its natural source and multi-dimensional antioxidant mechanism make it have unique advantages that distinguish it from chemically synthesized antioxidants.
[0012] Specifically, the carbon fiber heating pipe generates an environmental temperature of 43 DEG C.
[0013] A method for using a mobile thermal health cabin, comprising: Step 1: Equipment assembly and preliminary preparation Place the cabin on a flat ground, and stabilize the support through the cushion seat at the bottom of the cabin to avoid the inclination of the cabin affecting the health experience and equipment operation; open the hinged door plate at the entrance and exit of one side of the cabin, check whether the entrance and exit channel is unobstructed, and at the same time confirm that the air vent on the upper part of one side of the cabin is not blocked, so as to ensure the normal function of the air vent in the future; Take the top cover, align the frame on the lower surface of the top cover with the upper end of the cabin for clamping and fixing, ensure that the top cover is connected closely with the cabin without looseness or gap; check the multiple equidistantly arranged carbon fiber heating pipes installed in the groove on the lower surface of the top cover, and confirm that the heating pipes are stably installed and wired normally, so as to prepare for the subsequent construction of 43 DEG C health environment; On the surface of the bed plate at the bottom of the cabin, evenly lay multiple acid-resistant biological bricks: the acid-resistant biological bricks are made of deep-sea volcanic stones, the internal pore structure of the deep-sea volcanic stones stores deep-sea mineral essence and adsorbs trace elements and rare earth elements generated by volcanic eruption, and is converted into high-activity amorphous nanoparticles after amorphous treatment, and after removing impurities, the trace elements of selenium, zinc, manganese and strontium and the rare earth elements of cerium and lanthanum are rich, and when laying, ensure that the biological bricks completely cover the effective area of the bed plate without vacancy or stacking; Step 2: Health environment presetting and equipment debugging Start the carbon fiber heating pipe, gradually increase the temperature in the cabin through the heat release of the carbon fiber heating pipe, monitor the temperature in the cabin in real time, and until the temperature is stably maintained at 43 DEG C, a golden temperature field meeting the needs of human cells is constructed; under this temperature environment, the activity of trace elements and rare earth elements in the acid-resistant biological bricks is improved, and the biological effect is more easily exerted; Check the cabin body related structure state: confirm whether the initial state of the air port is normal, ensure that the subsequent can be opened and closed according to the situation in the cabin; At the same time, observe the stability of the anti-acid biological brick in the 43 DEG C environment, avoid the displacement or damage of the biological brick due to temperature change, and ensure the continuous release of beneficial elements in the recuperation process; Step 3: Operation and monitoring during recuperation After the temperature in the cabin is stabilized at 43 DEG C, the user enters the cabin through the entrance and exit, lies on the bed plate laid with anti-acid biological bricks, and closes the door plate to form a relatively closed recuperation space; During the recuperation process, selenium and zinc in the anti-acid biological brick can participate in the construction of the body's antioxidant enzyme system, enhance the free radical scavenging ability, and cerium, lanthanum and other elements can inhibit lipid peroxidation reaction by adjusting intracellular signal pathways, reduce the damage of active oxygen to cell structure, and synergistically play the role of anti-acidification and delaying cell aging; Step 4: Recuperation completion and equipment reset After the recuperation is completed, the carbon fiber heating pipe is first closed, and then the user leaves the cabin through the entrance and exit after the temperature in the cabin is naturally reduced to room temperature; Open the door plate, keep the cabin ventilated, and avoid excessive accumulation of residual moisture or beneficial elements in the cabin.
[0014] Clean and check the equipment: clean the anti-acid biological bricks on the surface of the bed plate, remove the impurities that may be attached to the surface, check whether the biological bricks are intact, and replace them in time if they are damaged; Check the state of the carbon fiber heating pipe and the air port to ensure that there is no hidden trouble; Finally, close the door plate, cover the cabin with dustproof cover, and complete the equipment reset for the next use.
[0015] Advantages of the present application: The essence of passive terahertz technology is to convert the energy stored in the material into electromagnetic waves in the terahertz frequency band by using the physical and chemical properties of the anti-acid biological brick, which is different from the "active terahertz technology" that needs a large power supply. Passive technology relies on the "self-excitation" characteristics of the material: when the anti-acid biological brick is at room temperature, the atoms and molecules inside will naturally undergo quantum energy level transition. When the electrons move between different energy levels, they will release photons with a frequency in the terahertz frequency band, forming a continuous and stable terahertz wave. This process does not require external power input, but relies on environmental temperature or the energy reserve of the material itself to maintain "zero energy consumption" wave radiation. The terahertz wave released by the passive terahertz material has the characteristics of "low energy and high penetration". Its photon energy is only about one thousandth of that of visible light, which will not cause ionizing damage to biological tissues. At the same time, the wavelength of this frequency band wave can penetrate the surface tissues of the human body, and is highly compatible with the vibration frequency of biological macromolecules such as DNA, RNA and proteins in cells, which can accurately transfer energy to the molecular level through "resonance effect" to activate biological molecules.
[0016] Passive terahertz technology provides an "energy boost" to the anti-acidification efficacy of anti-acid bio-bricks, achieving a profound upgrade from "environmental regulation" to "cell repair." This passive terahertz technology requires no external power source and continuously releases terahertz waves in the 0.3-3 THz frequency band. This frequency band highly resonates with the molecular vibration frequencies of DNA, RNA, and proteins within cells. On one hand, the quantum energy of terahertz waves can stimulate the molecular activity of active ingredients in the anti-acid bio-bricks, such as accelerating the ionization process of alkaline minerals, enabling them to participate more quickly in the regulation of extracellular fluid acid-base balance. Simultaneously, terahertz waves can promote the penetration of anti-acidification active ingredients into cells, enhancing their efficiency in scavenging reactive oxygen species (ROS)—the core causes of cell acidification, accelerated aging, and disease induction. Through the synergistic effect of these two factors, the free radical scavenging rate is significantly improved, and the level of intracellular oxidative stress is significantly reduced, fundamentally blocking the chain of cell acidification and aging.
[0017] The simultaneous advancement of "anti-acid protection" and "cell repair" creates a closed-loop health maintenance effect. The weakly alkaline environment constructed by the anti-acid bio-bricks provides the "first line of defense" for cells against external acidic damage, reducing the probability of cell damage. Meanwhile, passive terahertz waves can penetrate into the cell interior to repair the three-dimensional structure of DNA and RNA that has been slightly damaged by acidification. By stimulating the vibration and rotation of nucleic acid molecules, it helps repair problems such as base pair misalignment and chain breaks, restoring the normal replication and expression of genetic information. At the same time, it promotes the efficiency of intracellular enzymatic reactions, accelerates the regeneration of damaged organelles and the excretion of metabolic waste. When cells are not only protected from the acidic environment but also continuously repaired and revitalized under the energy empowerment of terahertz waves, the activity and proliferation capacity of the cell population are significantly enhanced, thereby driving the optimization of tissue and organ functions: the activity of immune cells in the immune system is enhanced, which can more effectively resist the invasion of pathogens; the energy metabolism pathway is unblocked, and the efficiency of ATP (adenosine triphosphate) production by cells is improved, resulting in a state of "full of vitality" with increased energy and enhanced anti-fatigue ability. Attached Figure Description
[0018] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the structure of a mobile thermotherapy chamber according to the present invention; Figure 2 for Figure 1 Enlarged view of point A in the middle; Figure 3 This is a front view of a mobile thermotherapy chamber according to the present invention; Figure 4 for Figure 3 BB section view; Figure 5 It is an assembly schematic diagram of carbon fiber heating pipe and top cover in a mobile heat therapy cabin of the present application; Figure 6 It is an assembly schematic diagram of water storage box and cabin body in a mobile heat therapy cabin of the present application; Figure 7 It is an assembly schematic diagram of floating ball, blocking plate and cross plate in a mobile heat therapy cabin of the present application; Figure 8 It is an assembly schematic diagram of blocking plate and cross plate in a mobile heat therapy cabin of the present application; Figure 9 It is an assembly schematic diagram of cotton tape and cabin body in a mobile heat therapy cabin of the present application; Figure 10 It is an assembly schematic diagram of connecting rod, support ring and cotton tape in a mobile heat therapy cabin of the present application; Figure 11 It is an assembly schematic diagram of bed plate and cabin body in a mobile heat therapy cabin of the present application; In the figure: 1, cabin body; 101, top cover; 1011, frame; 1012, carbon fiber heating pipe; 1013, groove; 102, door plate; 103, ventilation opening; 104, flat opening; 105, bed plate; 200, water storage box; 201, support; 202, drain pipe; 2021, screw cap; 203, supporting plate; 300, cotton tape; 301, horn part; 3011, support ring; 30111, connecting rod; 400, blocking plate; 401, guide plate; 402, guide sleeve; 403, pressing plate; 500, cross plate; 501, connecting plate; 502, screw rod; 5021, nut; 5022, floating ball; 50221, internal thread sleeve; 503, compression spring; 5031, inner rod; 5032, straight pipe; 504, L-shaped plate; 5041, connecting plate. DETAILED DESCRIPTION
[0019] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application is further described below in combination with specific embodiments.
[0020] Please refer to Figure 1 , Figures 3-6 , Figure 11The application provides a technical scheme: a mobile heat therapy cabin, which comprises a cabin body 1, a top cover 101 is arranged at the upper end of the cabin body 1, a frame 1011 is arranged on the lower surface of the top cover 101, the frame 1011 is clamped at the upper end of the cabin body 1, a groove 1013 is formed by the upward concave of the lower surface of the top cover 101, a plurality of equidistantly arranged carbon fiber heating pipes 1012 are arranged in the groove 1013, an entrance and exit is arranged on one side of the cabin body 1, a door plate 102 is hinged in the entrance and exit, a cushion seat is arranged at the bottom of the cabin body 1, and the area of the bottom of the cushion seat is smaller than the area of the bottom of the cabin body 1. The design of the cushion seat facilitates the extension of the lifting rope to the lower side of the cabin body 1, and facilitates the movement of the equipment; the carbon fiber heating pipe 1012 emits life light waves with a wavelength of 4-14 mu m after being electrified, the far infrared rays of this kind do not directly heat the air, but penetrate the skin surface layer of the human body, are absorbed by the subcutaneous tissue and are converted into heat energy, so that the heating is realized from inside to outside, the heating speed is gentle, the human tolerance is high, the long-term recuperation requirement is met, and another heating mode is that the heating is generated from the ground, the heating sheet generates heat from the bottom of the floor tile, the temperature in the cabin body 1 is kept stable by using the residual heat of the tile, the equipment is hidden under the bottom of the bed plate 105 and is subjected to heat preservation treatment, and the equipment can also be hidden at the left side and the right side of the cabin body 1 or the back of the cabin body 1.
[0021] The bed plate 105 is installed on the bottom of the cabin 1, and the surface of the bed plate 105 is paved with a plurality of acid-resistant biological bricks. The acid-resistant biological bricks are made of deep-sea volcanic rocks. The deep-sea volcanic rocks are special mineral carriers derived from submarine volcanic activities, and contain natural active ingredients enriched by geological action for hundreds of millions of years. The unique feature is that the pore structure inside the rock not only stores the mineral essence formed in the deep-sea extreme environment, but also adsorbs a large amount of trace elements and rare earth elements derived from volcanic eruptions, laying a material foundation for subsequent extraction of active substances. Through amorphous treatment, the traditional crystal structure of the volcanic rock is broken, and the mineral components inside the rock are converted into high-activity amorphous nanoparticles, improving the dissolution efficiency of trace elements. Combined with a multi-stage separation and purification process, impurities in the rock are removed, and finally a core stock solution rich in trace elements such as selenium, zinc, manganese, strontium, and rare earth elements such as cerium and lanthanum is obtained. These elements exist in the form of ions or small molecule complexes, have excellent biological activity and absorption efficiency, and provide core material support for the efficacy of the "acid-resistant mother liquor". The acid-resistant mother liquor has a self-generating function to generate passive terahertz waves. Selenium in trace elements is the core component of glutathione peroxidase, and zinc participates in the synthesis of superoxide dismutase and can directly participate in the construction of the body's antioxidant enzyme system to enhance its ability to scavenge free radicals. Rare earth elements can inhibit lipid peroxidation reactions by regulating intracellular signaling pathways, reduce damage to cell membranes, proteins, and nucleic acids caused by reactive oxygen species, and the synergistic effect of the two can effectively neutralize excess free radicals in the body, alleviate the damage of oxidative stress to cells, and thus delay the process of cell aging, providing natural assistance to maintain the health of the body. Whether used in the field of skin care products to improve skin oxidation and aging problems, or as a functional raw material to assist in regulating body metabolism, its natural source and multi-dimensional antioxidant mechanism make it have unique advantages that distinguish it from chemically synthesized antioxidants.
[0022] The essence of passive terahertz technology is to convert the energy stored in the material into electromagnetic waves in the terahertz frequency band by using the physical and chemical properties of the anti-acid biological bricks. Unlike active terahertz technology that requires a high-power power supply, passive technology relies on the self-excitation characteristics of the material: when the anti-acid biological bricks are at room temperature, the atoms and molecules inside will naturally undergo quantum energy level transitions. When the electrons move between different energy levels, they will release photons in the terahertz frequency band, forming a continuous and stable terahertz wave. This process does not require external power input and can be maintained by environmental temperature or the material's own energy reserves, achieving "zero-energy" wave radiation. The terahertz wave released by the passive terahertz material has the characteristics of "low energy and high penetration". Its photon energy is only about one thousandth of that of visible light, which will not cause ionizing damage to biological tissues. At the same time, the wavelength of this frequency band wave can penetrate the surface tissues of the human body and is highly compatible with the vibration frequency of biological macromolecules such as DNA, RNA, and proteins in cells. It can accurately transfer energy to the molecular level through the "resonance effect" and activate biological molecules.
[0023] Passive terahertz technology provides "energy support" for the anti-acidification effect of anti-acid biological bricks, realizing a deep upgrade from "environmental regulation" to "cell repair". Passive terahertz technology does not require external power supply and can continuously release terahertz waves in the 0.3-3THz frequency band. This frequency band is highly resonant with the molecular vibration frequency of DNA, RNA, and proteins in cells. On the one hand, the quantum energy of terahertz waves can stimulate the molecular activity of active ingredients in anti-acid biological bricks, such as accelerating the ionization process of alkaline minerals, allowing them to participate more quickly in the regulation of extracellular fluid acid-base balance. At the same time, terahertz waves can promote the penetration of anti-acidification active ingredients into cells, enhancing their efficiency in removing reactive oxygen free radicals (reactive oxygen species). These free radicals are the core triggers of cell acidification, accelerated aging, and induced diseases. Under the synergistic action of the two, the free radical removal rate is greatly improved, and the intracellular oxidative stress level is significantly reduced, thereby breaking the chain of cell acidification and aging from the root.
[0024] The synchronous promotion of "acid resistance protection" and "cell repair" forms a closed-loop health care effect. The weak alkaline environment constructed by the acid-resistant biological bricks provides the "first line of defense" for cells to resist external acid invasion, reducing the probability of cell damage. The passive terahertz wave can penetrate into the cell interior and repair the DNA and RNA three-dimensional structure that has been slightly damaged due to acidification. By exciting the vibration and rotation of nucleic acid molecules, it helps to repair base pair misalignment, chain breakage and other problems, restores the normal replication and expression of genetic information, and promotes the efficiency of enzymatic reactions in cells, accelerating the regeneration of damaged organelles and the discharge of metabolic waste. When cells can not only resist acid environment invasion but also continuously repair and activate under the energy empowerment of terahertz waves, the activity and proliferation capacity of cell populations are significantly enhanced, which in turn drives the optimization of tissue and organ function: the activity of immune cells in the immune system is improved, which can more efficiently resist pathogen invasion; the energy metabolism pathway is unobstructed, and the efficiency of ATP (adenosine triphosphate) production by cells is improved, and the human body shows a "vitality" state of energetic and fatigue-resistant.
[0025] Referring to Figures 1-10 The cabin body 1 is provided with a flat port 104 on one side, and a ventilation port 103 is provided at the upper position of one side of the cabin body 1. A water storage box 200 is arranged below the flat port 104, and the upper end of the water storage box 200 is open. The water storage box 200 is connected with the cabin body 1. A drain pipe 202 is installed at the lower position of one side of the water storage box 200. The end of the drain pipe 202 away from the water storage box 200 is threadedly connected with a threaded cover 2021. A support 201 is installed at the bottom of the water storage box 200. The support 201 supports the water storage box 200 and reduces the load of the connection part between the water storage box 200 and the cabin body 1. After the threaded cover 2021 is opened, the residual water in the water storage box 200 can be easily drained through the drain pipe 202, which facilitates equipment cleaning and maintenance.
[0026] The cotton tape 300 is folded through the flat opening 104, one end of the cotton tape 300 extends into the cabin 1, and the other end of the cotton tape 300 extends to the lower part of the water storage box 200. The outer side of the end of the cotton tape 300 away from the water storage box 200 is provided with a support ring 3011 connected with the cotton tape 300, and the end of the cotton tape 300 close to the support ring 3011 is provided with a horn part 301 integrally formed with the cotton tape 300, the horn part 301 is connected with the support ring 3011, and a plurality of connecting rods 30111 are installed on one side of the support ring 3011 at equal intervals, and the ends of the connecting rods 30111 away from the support ring 3011 are connected and fixed with the cabin 1. The cotton tape 300 can actively draw water from the water storage box 200 and diffuse to the cabin 1 direction by the capillary action generated by the porous fiber structure of the cotton tape 300, without the need for additional power driving. The capillary action can continuously and stably transport water to the cabin 1, avoiding the water supply interruption caused by power failure or element aging of the traditional humidification module, ensuring that the humidity in the cabin 1 remains in the appropriate interval during the whole recuperation process, and preventing skin dehydration and respiratory discomfort caused by dry environment. The horn part 301 at the end of the cotton tape 300 close to the cabin 1 is designed to strengthen the capillary water absorption effect from the structure: first, the horn part 301 is flared, which enlarges the contact area between the cotton tape 300 and the air in the cabin 1, not only speeding up the evaporation and diffusion speed of water, but also allowing the water vapor to be more evenly distributed in the cabin 1; second, the horn part 301 is fixed through the support ring 3011, so that the water absorption end of the cotton tape 300 remains in an expanded state, ensuring that the capillary channel is unobstructed and does not affect the water transmission efficiency; at the same time, the horn part 301 is integrally formed with the cotton tape 300 without splicing gaps, preventing water leakage during transmission and further ensuring the stability of the capillary action, allowing water to be efficiently and directionally diffused from the water storage box 200 to the cabin, providing reliable structural support for humidity regulation.
[0027] The air vent 103 is provided with a blocking plate 400 outside the air vent 103 in an initial state, a guide plate 401 is installed at the middle position of the lower surface of the blocking plate 400, a guide sleeve 402 is sleeved at the end of the guide plate 401 away from the blocking plate 400, both ends of the guide sleeve 402 are connected and fixed with the cabin body 1, the guide plate 401 and the guide sleeve 402 jointly act on each other to limit the moving track of the blocking plate 400, so as to avoid the blocking plate 400 from deviating to cause the air vent 103 to be not tightly blocked or not easily opened. The lower end of the guide plate 401 is provided with a pressing plate 403 for extruding the cotton belt 300, the lower surface of the pressing plate 403 is connected with the folded cotton belt 300 through a magic tape, the cotton belt 300 is vertically folded, the lower side of the cotton belt 300 is provided with a supporting plate 203, the supporting plate 203 is connected and fixed with the water storage box 200, and the supporting plate 203 is adhered with the cotton belt 300 through a magic tape. The supporting plate 203 and the pressing plate 403 jointly act on each other to extrude and control the cotton belt 300; when the pressing plate 403 moves upward, the distance between the pressing plate 403 and the supporting plate 203 increases, the compressed cotton belt 300 can be unfolded into a folded shape under the adhesion of the magic tape, and the water absorption and evaporation area is increased; when the pressing plate 403 moves downward, the cotton belt 300 is extruded, the water diffusion capacity is weakened, and the humidity is adjusted.
[0028] Referring to Figures 1-10 , one side of the pressing plate 403 is provided with a supporting plate 501 at the middle position, the end of the supporting plate 501 away from the pressing plate 403 is provided with a horizontal plate 500, both ends of the horizontal plate 500 are provided with a floating ball 5022 through a connecting piece, the floating ball 5022 is arranged in the water storage box 200, the upper side of the horizontal plate 500 is provided with an L-shaped plate 504, the vertical part of the L-shaped plate 504 is connected and fixed with the guide sleeve 402 through a connecting plate 5041, and the horizontal part of the L-shaped plate 504 is provided with a vertical compression spring 503 between the horizontal plate 500. The middle position of the upper surface of the horizontal plate 500 is provided with a straight pipe 5032, the straight pipe 5032 is vertically arranged, an inner rod 5031 is inserted in the straight pipe 5032, the upper end of the inner rod 5031 is connected and fixed with the horizontal part of the L-shaped plate 504, so that the structure formed by the straight pipe 5032 and the inner rod 5031 is inserted in the compression spring 503, the compression spring 503 is supported and limited, transverse deformation of the compression spring 503 is prevented, the compression spring 503 is ensured to only stretch and contract in the vertical direction, and linkage stability is ensured.
[0029] The floating ball 5022 in the water storage box 200 rises and falls in real time with the change of the liquid level, and the buoyancy generated thereby and the resilience of the compression spring 503 between the L-shaped plate 504 and the horizontal plate 500 form a dynamic balance. In the initial state, the water storage box 200 has a relatively high liquid level, the floating ball 5022 has the maximum buoyancy and overcomes the resilience of the compression spring 503 to drive the horizontal plate 500 to move upwards, thereby pulling the pressing plate 403 and the guide plate 401 upwards through the support plate 501. At this time, the degree of compression of the pressing plate 403 on the cotton tape 300 is reduced, the water absorption and moisture diffusion capacity of the cotton tape 300 is enhanced, more moisture is evaporated into the cabin 1 through the cotton tape 300, and the humidity is quickly supplemented; at the same time, the sealing plate 400 moves upwards with the guide plate 401 to keep the sealing of the air vent 103, reducing the loss of heat and water vapor in the cabin 1, and ensuring the humidification efficiency.
[0030] When the humidity in the cabin 1 rises to the maximum threshold value, the water storage box 200 continuously evaporates water due to the cotton tape 300, and the liquid level drops to the set value. The buoyancy of the floating ball 5022 is reduced, and the resilience of the compression spring 503 dominates to drive the horizontal plate 500 to move downwards, thereby driving the pressing plate 403 and the guide plate 401 to move downwards. On the one hand, the degree of compression of the pressing plate 403 on the cotton tape 300 reaches the maximum, and the moisture diffusion capacity of the compressed cotton tape 300 is greatly reduced, reducing the supply of water vapor to the cabin 1, preventing the humidity from being too high; on the other hand, the guide plate 401 drives the sealing plate 400 to move downwards and away from the air vent 103, and the outside air enters the cabin 1 to form a flow, which not only carries away part of the excess water vapor, but also balances the air pressure in the cabin 1, avoiding stuffiness and preventing the humidity from being too high. The automatic switching of humidification, humidity limiting and ventilation is realized without manual or electronic sensor intervention, avoiding the risk of humidity out of control caused by traditional sensor failure.
[0031] The whole humidity adjustment process relies on the mechanical cooperation of the buoyancy of the floating ball 5022 and the resilience of the compression spring 503, without precise electronic components such as humidity sensors and control chips, and is not affected by the temperature and humidity environment in the heat therapy cabin. It will not have problems such as circuit aging and data distortion, and has a simple structure and strong durability. The adjustment function is stable and reliable during long-term use, reducing equipment maintenance frequency and cost. Through the linkage of the degree of compression of the pressing plate 403 and the opening and closing of the air vent 103, the humidity in the cabin 1 is always controlled in the appropriate range, avoiding the risk of dehydration of the skin and irritation of the respiratory tract caused by low humidity, and preventing the risk of stuffiness and equipment damp caused by high humidity. At the same time, the air flow when the air vent 103 is opened can assist in adjusting the temperature in the cabin 1, avoiding the discomfort of the user in a single high-temperature environment, especially for special groups such as the elderly and people with sensitive respiratory tracts, which meets the core needs of comfort and safety of the heat therapy cabin.
[0032] Referring to Figures 1-4 , Figures 7-8Both ends of the horizontal plate 500 are provided with vertical holes, and a screw 502 is inserted into the vertical hole. The lower end of the screw 502 is threadedly connected to an internal threaded sleeve 50221, which is connected and fixed to the float 5022. Nuts 5021 are provided on the upper and lower sides of the vertical hole, and the nuts 5021 are threadedly connected to the screw 502. By adjusting the relative position of the screw 502 and the horizontal plate 500, the immersion depth of the float 5022 in the water storage box 200 in the initial state can be controlled: if the initial humidity in the chamber 1 needs to be higher, the screw 502 can be lowered to increase the initial immersion depth of the float 5022, and the initial buoyancy of the float 5022 will increase. With the spring force of the compression spring 503 remaining unchanged, the initial position of the horizontal plate 500 will move upward, causing the pressure plate 403 to reduce the initial pressure on the cotton strip 300. The cotton strip 300 will have a stronger water absorption and moisture diffusion capacity in the initial state, and can replenish water vapor in the chamber 1 more quickly, and quickly establish a suitable humidity environment; if the initial humidity in the chamber 1 needs to be lower, the screw 502 can be raised to reduce the initial immersion depth of the float 5022, reduce the initial buoyancy, and the initial position of the horizontal plate 500 will move downward to increase the initial pressure on the cotton strip 300 by the pressure plate 403, reduce the initial water vapor supply, and meet the differentiated humidity requirements.
[0033] A method of using a mobile thermotherapy chamber includes: Step 1: Equipment Assembly and Preliminary Preparation. Place the chamber 1 on a flat surface, using the base at the bottom of chamber 1 for stable support to prevent tilting and ensure a comfortable treatment experience and proper equipment operation. Open the hinged door 102 at one side of chamber 1 to check for unobstructed access. Also, ensure the ventilation opening 103 on the upper side of chamber 1 is unobstructed to guarantee proper ventilation. Remove the top cover 101 and align its lower edge frame 1011 with the upper part of chamber 1 for secure fastening. Ensure a tight connection between the top cover 101 and chamber 1, without any looseness or gaps. Check the multiple equidistant supports installed in the groove 1013 on the lower surface of the top cover 101. The carbon fiber heating tubes 1012 were installed and confirmed to be securely installed and properly wired, in preparation for the subsequent construction of a 43°C therapeutic environment. On the surface of the bed board 105 at the bottom of the cabin 1, multiple acid-resistant bio-bricks were evenly laid: the acid-resistant bio-bricks were made from deep-sea volcanic rock. The internal pore structure of the deep-sea volcanic rock sealed the essence of deep-sea minerals and adsorbed trace elements and rare earth elements produced by volcanic eruptions. After amorphization treatment, they were transformed into highly active amorphous nanoparticles. After removing impurities, they were rich in trace elements such as selenium, zinc, manganese, and strontium, as well as rare earth elements such as cerium and lanthanum. When laying them, it was ensured that the bio-bricks completely covered the effective area of the bed board 105 without any gaps or stacking. Step 2: Sanatorium environment preset and equipment debugging Start the carbon fiber heating pipe 1012, gradually increase the temperature in the cabin through the heat release of the carbon fiber heating pipe 1012, monitor the temperature in the cabin in real time, and maintain the temperature at 43℃ until the temperature is stable, so as to build a golden temperature field meeting the needs of human cells; Under this temperature environment, the activity of trace elements and rare earth elements in the anti-acidification biological brick is improved, and the biological effect is more easily exerted; Check the state of the cabin body 1 related structure: confirm whether the initial state of the air vent 103 is normal, ensure that the subsequent opening and closing adjustment can be realized according to the situation in the cabin; At the same time, observe the stability of the anti-acidification biological brick under the environment of 43℃, avoid the displacement or damage of the biological brick due to temperature change, and ensure the continuous release of beneficial elements during the recuperation process; Step 3: Sanatorium process operation and monitoring After the temperature in the cabin is stabilized at 43℃, the user enters the cabin body 1 through the entrance and exit, lies on the bed plate 105 paved with anti-acidification biological bricks, and closes the door plate 102 to form a relatively closed recuperation space in the cabin body 1; During the recuperation process, selenium and zinc in the anti-acidification biological brick can participate in the construction of the body's antioxidant enzyme system, enhance the free radical scavenging capacity, cerium and lanthanum can inhibit lipid peroxidation reaction by adjusting the intracellular signal pathway, reduce the damage of active oxygen to cell structure, and synergistically play the role of anti-acidification and delaying cell aging; Step 4: Sanatorium completion and equipment reset After the recuperation is completed, the carbon fiber heating pipe 1012 is turned off, and the user leaves the cabin body 1 after the temperature in the cabin body 1 naturally decreases to room temperature; Open the door plate 102 to maintain ventilation in the cabin body 1 to avoid excessive accumulation of residual moisture or beneficial elements in the cabin body 1; Clean and check the equipment: clean the anti-acidification biological bricks on the surface of the bed plate 105, remove the impurities that may be attached to the surface, check whether the biological bricks are intact, and replace them in time if they are damaged; Check the state of the carbon fiber heating pipe 1012 and the air vent 103 to ensure that there is no fault hidden danger; Finally, close the door plate 102, cover the cabin body 1 with dust, and complete the equipment reset for the next use.
[0034] Although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A mobile hyperthermia chamber, characterized in that, It comprises: The cabin (1) is provided with an inlet and outlet on one side, and the door plate (102) is hinged in the inlet and outlet; The bed plate (105) is installed on the bottom of the cabin (1), and the surface of the bed plate (105) is paved with a plurality of acid-resistant biological bricks.
2. The mobile hyperthermia chamber according to claim 1, characterized in that: The top cover (101) is provided with a frame (1011) on the lower surface, the frame (1011) is clamped on the upper end of the cabin (1), the recess (1013) is formed by the upward recess of the lower surface of the top cover (101), and a plurality of equidistant carbon fiber heating pipes (1012) are installed in the recess (1013).
3. The mobile hyperthermia chamber according to claim 2, characterized in that: The bottom of the cabin (1) is provided with a pad, and the area of the bottom of the pad is smaller than the area of the bottom of the cabin (1).
4. The mobile hyperthermia chamber of claim 1, wherein: The acid-resistant biological brick adopts deep-sea volcanic rock, which is a special mineral carrier derived from submarine volcanic activity, contains natural active ingredients enriched by geological action for hundreds of millions of years, and has the unique feature that the internal pore structure of the rock not only stores mineral essence formed in the deep-sea extreme environment, but also adsorbs a large amount of trace elements and rare earth elements derived from volcanic eruption, which lays a material foundation for subsequent extraction of active substances.
5. The mobile hyperthermia chamber according to claim 4, characterized in that: Through amorphous treatment, the traditional crystal structure of the volcanic rock is broken, the mineral components in the rock are converted into high-activity amorphous nanoparticles, and the dissolution efficiency of trace elements is improved; combined with multi-stage separation and purification process, the impurity components in the rock are removed, and finally the core liquid rich in trace elements and rare earth elements is obtained. These elements exist in the form of ions or small molecule complexes, have excellent biological activity and absorption efficiency, provide core material support for the effect of the "acid-resistant mother liquor", and the acid-resistant mother liquor has a self-powered function to generate passive terahertz waves.
6. The mobile hyperthermia chamber according to claim 5, characterized in that: The trace elements include selenium, zinc, manganese and strontium, and the rare earth elements include cerium and lanthanum.
7. The mobile hyperthermia chamber according to claim 6, characterized in that: The selenium in the trace elements is the core component of glutathione peroxidase, zinc participates in the synthesis of superoxide dismutase, can directly participate in the construction of the body's antioxidant enzyme system, and enhance the ability to scavenge free radicals; the rare earth elements can inhibit lipid peroxidation reaction by regulating intracellular signal pathways, reduce the damage of active oxygen to cell membrane, protein and nucleic acid, and the synergistic effect of the two can effectively neutralize excess free radicals in the body, relieve the damage of oxidative stress reaction to cells, and further delay the cell aging process, providing natural help for maintaining the health of the body. Whether it is used in the field of skin care products to improve skin oxidation and aging problems, or as a functional raw material to assist in regulating body metabolism, its natural source and multi-dimensional antioxidant mechanism make it have unique advantages different from chemical synthetic antioxidants.
8. The mobile hyperthermia chamber according to claim 2, wherein: The carbon fiber heating pipe (1012) generates an environment temperature of 43℃.
9. A method of using a mobile hyperthermia chamber, characterized by, It comprises: Step 1: equipment assembly and preliminary preparation Place the cabin (1) on a flat ground, and use the cushion on the bottom of the cabin (1) to achieve stable support, so as to avoid the inclination of the cabin (1) affecting the recuperation experience and equipment operation; open the hinged door plate (102) at the entrance and exit of one side of the cabin (1), check whether the entrance and exit channel is unobstructed, and at the same time confirm that the air vent (103) on the upper part of one side of the cabin (1) is not blocked, so as to ensure the normal function of the subsequent ventilation; Take the top cover (101), and fix the frame (1011) on the lower surface of the top cover (101) to the upper end of the cabin (1) by clamping, so as to ensure that the top cover (101) is connected tightly with the cabin (1) without looseness or gap; check the multiple equidistantly arranged carbon fiber heating pipes (1012) installed in the groove (1013) on the lower surface of the top cover (101), and confirm that the heating pipes are stably installed and wired normally, so as to prepare for the subsequent construction of a 43℃ recuperation environment; On the surface of the bed plate (105) at the bottom of the cabin (1), evenly lay multiple acid-resistant biological bricks: the acid-resistant biological bricks are made of deep-sea volcanic stones, the internal pore structure of the deep-sea volcanic stones stores deep-sea mineral essence and adsorbs trace elements and rare earth elements generated by volcanic eruption, and is converted into high-activity non-crystalline nanoparticles after non-crystallization treatment, and after removing impurities, the trace elements of selenium, zinc, manganese and strontium and the rare earth elements of cerium and lanthanum are rich, and when laying, ensure that the biological bricks completely cover the effective area of the bed plate (105) without vacancy or stacking; Step 2: Recuperation environment presetting and equipment debugging Start the carbon fiber heating pipe (1012), gradually increase the temperature in the cabin by releasing heat of the carbon fiber heating pipe (1012), and monitor the temperature in the cabin in real time until the temperature is stably maintained at 43℃, so as to construct a golden temperature field meeting the needs of human cells; under this temperature environment, the activity of trace elements and rare earth elements in the acid-resistant biological bricks is improved, and it is easier to exert its biological effect; Check the state of the relevant structure of the cabin (1): confirm whether the initial state of the air vent (103) is normal, so as to ensure that the subsequent opening and closing adjustment can be realized according to the situation in the cabin; at the same time, observe the stability of the acid-resistant biological bricks under the 43℃ environment, so as to avoid displacement or damage of the biological bricks due to temperature change, and ensure that they continuously release beneficial elements during the recuperation process; Step 3: Recuperation process operation and monitoring After the temperature in the cabin is stably maintained at 43℃, the user enters the cabin (1) through the entrance and exit, lies on the bed plate (105) laid with acid-resistant biological bricks, and closes the door plate (102) to form a relatively closed recuperation space in the cabin (1); during the recuperation process, selenium and zinc in the acid-resistant biological bricks can participate in the construction of the body's antioxidant enzyme system, enhance the free radical scavenging ability, and cerium, lanthanum and other elements can adjust the intracellular signal pathway, inhibit the lipid peroxidation reaction, and reduce the damage of active oxygen to the cell structure, so as to synergistically exert the effects of anti-acidification and delaying cell aging; Step 4: Recuperation completion and equipment reset After the recuperation is completed, first close the carbon fiber heating pipe (1012), and then the user leaves the cabin (1) through the entrance and exit after the temperature in the cabin (1) naturally decreases to room temperature; open the door plate (102) to keep the cabin (1) ventilated, so as to avoid the accumulation of residual moisture or beneficial elements in the cabin (1). Cleaning and inspection of the equipment: clean the surface of the acid-resistant biological bricks on the bed plate (105), remove the impurities that may be attached to the surface, check whether the biological bricks are intact, and replace them in time if they are damaged; check the state of the carbon fiber heating pipe (1012) and the air vent (103) to ensure that there are no hidden troubles; finally, close the door plate (102) and cover the cabin (1) with dustproof cover to complete the equipment reset and prepare for the next use.
Citation Information
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