KR20150089417A - Heat Storage Type Fomentation Booth - Google Patents

Heat Storage Type Fomentation Booth Download PDF

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Publication number
KR20150089417A
KR20150089417A KR1020140010009A KR20140010009A KR20150089417A KR 20150089417 A KR20150089417 A KR 20150089417A KR 1020140010009 A KR1020140010009 A KR 1020140010009A KR 20140010009 A KR20140010009 A KR 20140010009A KR 20150089417 A KR20150089417 A KR 20150089417A
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KR
South Korea
Prior art keywords
heat
mineral layer
heat insulating
insulating material
air
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Application number
KR1020140010009A
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Korean (ko)
Inventor
서동수
서동철
Original Assignee
(주)문수토가
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Priority to KR1020140010009A priority Critical patent/KR20150089417A/en
Publication of KR20150089417A publication Critical patent/KR20150089417A/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/06Artificial hot-air or cold-air baths; Steam or gas baths or douches, e.g. sauna or Finnish baths
    • A61H33/066Cabins therefor
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/06Artificial hot-air or cold-air baths; Steam or gas baths or douches, e.g. sauna or Finnish baths
    • A61H2033/061Artificial hot-air baths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/02Characteristics of apparatus not provided for in the preceding codes heated or cooled
    • A61H2201/0207Characteristics of apparatus not provided for in the preceding codes heated or cooled heated
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/02Characteristics of apparatus not provided for in the preceding codes heated or cooled
    • A61H2201/0221Mechanism for heating or cooling
    • A61H2201/025Mechanism for heating or cooling by direct air flow on the patient's body
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used
    • A61N2005/0659Radiation therapy using light characterised by the wavelength of light used infrared
    • A61N2005/066Radiation therapy using light characterised by the wavelength of light used infrared far infrared
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H1/00Buildings or groups of buildings for dwelling or office purposes; General layout, e.g. modular co-ordination or staggered storeys
    • E04H1/12Small buildings or other erections for limited occupation, erected in the open air or arranged in buildings, e.g. kiosks, waiting shelters for bus stops or for filling stations, roofs for railway platforms, watchmen's huts or dressing cubicles
    • E04H2001/1283Small buildings of the ISO containers type

Abstract

More particularly, the present invention relates to a heat storage type fomentation booth, and more particularly, to a heat storage type fomentation booth in which a wall of a fomentation booth, an inner and outer surfaces of a bottom plate and an upper plate are formed, A heat plate is installed on one side of the mineral layer to heat the mineral layer to store heat and the heat is applied by the heat accumulation system to provide the active ingredient of the wood and the minerals and to provide the air purification function in the regenerative fomentation booth .

Description

Heat Storage Type Fomentation Booth

More particularly, the present invention relates to a heat storage type fomentation booth, and more particularly, to a heat storage type fomentation booth in which a wall of a fomentation booth, an inner and outer surfaces of a bottom plate and an upper plate are formed, A heat plate is installed on one side of the mineral layer to heat the mineral layer to store heat and the heat is applied by the heat accumulation system to provide the active ingredient of the wood and the minerals and to provide the air purification function in the regenerative fomentation booth .

Generally, a poultice or a sauna is a hot and dry heat or steam, which circulates the blood circulation through the sweat of the body by exhausting waste products to facilitate metabolism and is widely used in both East and West.

Such pumice efficacy is gradually enhanced by the heat or water vapor, and the heart rate and blood release rate are increased by the increase of the activity of the organ in the human body. As a result, not only the blood circulation is improved but also the blood vessels are expanded, It has been proven that it not only solves or comforts the nervous or muscular fatigue, but also regulates the overall condition of the body by eliminating waste products.

Although the fomenting material providing the beneficial effect is installed and used mostly in a business place due to its structural characteristics, recently, a fomentation booth has been proposed, which is miniaturized and facilitated to be disassembled and assembled.

The general structure of the miniaturized household gymnastic unit is composed of a wall body and a bottom plate and an upper plate which are coupled to a lower portion and an upper portion of the wall in a housing shape in which a person can enter the interior while being opened and closed by a door. A heater for heating the inside of the wall by supplying power to the inside of the wall is installed at a predetermined position, and a cone-roll box for controlling the cone is installed outside the wall.

Such a general domestic feminine warming apparatus includes a wet fomentation apparatus for generating steam and a dry fomentation apparatus for discharging heat by adopting an electric heater system. The dry fomentation apparatus may be a type using a ceramic heater that emits far-infrared rays.

Particularly, the dry thermal massager is provided with a regenerative type in which the wall is filled with minerals such as elvan or loess, heated by a heater, and transferred to the inside through the mineral. Since the far infrared rays emitted from the mineral layer are emitted at a high rate from 300 to 400 ° C, the amount of the far infrared rays emitted at the previous temperature is low, so that it is difficult to sufficiently obtain the effect. Thus, in some cases, molten salt is used as a filling material to emit far-infrared rays even at low temperatures.

Korean Patent Laid-Open No. 10-2004-0052320 (June 23, 2004) presented a personal sauna booth. 1, a personal sauna booth 1 providing a sauna space into which a person can enter by means of a side wall 2, a bottom wall and an upper wall, the side wall comprising: inner and outer plywoods 3,5 ); A heat insulating material (4) installed in a space between the inner plywood and the outer plywood; A heat transfer plate (7) installed on the inner surface of the inner plywood; An adhesive layer (6) applied to the inner surface of the heat transfer plate; Partition bars (8) arranged in a lattice pattern on the adhesive layer; And a molten salt layer (9) installed in the space formed by the partitioning bars to discharge the heat of the salt and the far-infrared rays beneficial to the human body by the heat generated from the heat transfer plate. That is, the conventional open gun exposes the molten salt layer to the inner surface of the sauna booth, thereby emitting a far-infrared ray at a low temperature to increase the far-infrared ray irradiation efficiency.

In addition, in some cases, it is attempted to provide a phytoncide effect on the Japanese white timber while producing a natural-friendly atmosphere by using the white timber as the interior material of the booth or the sauna booth.

Chamaecyparis obtusa, also known as cypress tree, is an evergreen tree belonging to the gymnospermae family, which is originated in Japan, but is widely cultivated as a planting species in the southern part of Korea through development, Due to its unique fragrance, it is used as deodorant, antibacterial agent and so on. Phytoncide is a natural antimicrobial substance which is emitted from wood to protect itself from microorganisms and various microorganisms. It has a unique aroma (fragrance) It has strong air purification ability and neutralizing action of harmful substances, and is known to exert various effects such as cardiopulmonary, vascular, respiratory function enhancement, and skin sterilization. It is known that the amount of phytoncide emitted and the content of the phytoncide are different for each tree, and coniferous trees are known to radiate phytoncide more than twice as compared to the broad-leaved trees. Especially, the phytoncide emission of the perilla trees is superior to other trees and its efficacy is also excellent. .

Thus, although various effects can be selectively provided depending on the interior material to be installed, there is a disadvantage in that the size of the device is increased in order to obtain a plurality of beneficial effects. In particular, The beneficial effects were limited.

Accordingly, the heat storage type feminine booth of the present invention,

As the interior material and exterior material, it is used to provide phytoncide effect by using wood, and the inside is filled with minerals so that the far infrared ray is emitted from the mineral, the heat plate and the insulation are sequentially laminated on the back side of the mineral layer, To provide a regenerative fomentation booth.

Another object of the present invention is to provide a poultice booth in which a mineral material having an air purifying function is mixed with a mineral layer composition to purify air in a space inside the booth space while circulating the mineral material layer to provide optimal air in a narrow space .

According to an aspect of the present invention, there is provided a heat storage type feminine booth,

The sidewall body, the bottom body and the lid are supported by the main body frame, and an opening / closing door is formed at one side of the sidewall body so as to be able to enter and leave the inside feminine space, The body frame being formed of a plurality of layers spaced apart from each other in a circular or polygonal shape by using a metal member, And a vertical frame fixing the horizontal frame vertically; The sidewall body includes an outer softening wood plate fixed by brackets to the outer surface of the main body frame, a heat insulating material provided on the inner surface of the outer softening wood plate to prevent the inner heat from being discharged to the outside, A heat transfer plate which is spaced apart from the heat insulating material by the heat insulating air layer and dissipates heat when power is supplied, and a heat transfer plate formed in contact with the inner surface of the heat transfer plate, A minerals layer for releasing far infrared rays and removing harmful components as heat is transferred through heat transfer, and an inner whitewood board installed in contact with the inner surface of the mineral layer and fixed to the inner surface of the main body frame by brackets.

In the regenerative feminine booth according to the present invention,

It was made compact to be used as a single person, and it was made to be able to make a poultice in the home. It is easy to move because of the wheel installed at the bottom, and the storage property is improved. And providing a psychological sense of stability by producing a naturally friendly atmosphere.

In addition, the mineral layer formed inside and outside of the inner and outer materials formed by the untreated wood accumulates the heat transferred to the heat transfer plate to provide a heat storage function for a long time and a far infrared ray irradiation function irradiated with far infrared rays from the mineral forming the mineral layer do. In particular, the mineral layer has an effect of providing an air purifying function for contacting air inside and outside the feminine booth so as to adsorb or decompose harmful substances to purify the air.

1 is a sectional view showing a conventional sauna booth;
2 is a perspective view showing a heat storage type feminine booth according to an embodiment of the present invention.
FIG. 3A is a perspective view illustrating a body frame according to an embodiment of the present invention; FIG.
FIG. 3B is a sectional view showing a body frame provided with a bracket; FIG.
FIG. 4 is a sectional view showing a regenerative feminine booth according to an embodiment of the present invention; FIG.
FIGS. 5A to 5C are enlarged views of portions A, B and C of FIG. 4;
6 is a cross-sectional view illustrating an external whitening wood board on which an air purifying groove according to the present invention is formed;

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be described in detail with reference to the accompanying drawings. It should be understood, however, that the appended drawings illustrate only the contents and scope of technology of the present invention, and the technical scope of the present invention is not limited thereto. It will be apparent to those skilled in the art that various changes and modifications can be made within the scope of the technical idea of the present invention based on these examples.

FIG. 2 is a perspective view showing a regenerative feminine booth according to an embodiment of the present invention, FIG. 3 (a) is a perspective view showing a main body frame according to an embodiment of the present invention, And FIG. 4 is a sectional view showing the regenerative feminine booth according to the embodiment of the present invention.

The sidewall 30, the bottom body 40 and the lid 50 are supported by the body frame 20 and a high-temperature fomentation space 70 is formed therein .

First, the body frame 20 is composed of a horizontal frame 21 and a vertical frame 22 connecting metal members as shown in FIG. 3A. The metal member may be used as a steel pipe or a strip-shaped steel material.

The horizontal frame 21 determines the width of the feminine booth, and may be formed in a circular or polygonal shape as shown in the figure. The horizontal frame 21 may be formed of three layers of a lower layer and an upper layer, So that the structural strength can be enhanced.

The vertical frame 22 determines the height of the feminine booth and connects the horizontal frames 21 arranged in the respective layers to fix the position of the horizontal frame. Therefore, the vertical frame 22 and the horizontal frame 21 are superimposed on the same vertical line so that the vertical frame is disposed within the thickness range of the inner surface and the outer surface of the horizontal frame so as to be combined by welding or fastening means.

3B, a plurality of brackets 23 are installed along the edges formed by the horizontal frame 21 and the vertical frame 22 in the body frame 20 having such a structure. The bracket 23 may have various types of fixing members that can fix the white wood board in addition to the illustrated form.

The bracket 23 is fixed to the horizontal frame 21 or the vertical frame 22 with one side thereof bent in a "? &Quot; shape, and the other side is arranged in a direction orthogonal to the horizontal frame or the surface fixed to the vertical frame. That is, one surface of the bracket 23 is coupled to the upper surface and the lower surface of the horizontal frame 21 in the drawing, and the other surface of the bracket is disposed on the same vertical surface as the inner surface and the outer surface of the horizontal frame.

In the bracket 23 installed so as to face the inside and the outside of the feminine booth 10, a plain paperboard is additionally attached. That is, the uneded wooden boards are arranged in the vertical direction in the longitudinal direction, and both side ends of the uneded wooden boards are joined to the brackets respectively provided in the upper and lower horizontal frames arranged in the upper and lower layers, and finished with the interior material and the exterior material.

In addition, since the body frame is made of metal, it is difficult to attach the brackets to the upper and lower surfaces of the horizontal frame and the vertical frame constituting the body frame, and the auxiliary wood members are attached to the auxiliary members, So that the joining of the white wood board can be performed.

4, the feminine booth 10 according to the present invention comprises a cylindrical sidewall 30 provided by the above-described main body frame 20, a bottom body 40 And a lid 50 to form a fomenting space 70 therein.

5A, the side wall body 30 includes an outer smooth wood board 31 fixed to the outer surface of the main body frame 20 by a bracket 23, A heat insulating air layer 33 formed on the inner surface of the heat insulating material so as to be spaced vertically or horizontally at regular intervals by bar-shaped spacing adjusting rods 341, A mineral layer 35 formed in contact with the inner surface of the heat transfer plate to receive the heat of the heat transfer plate and discharge the far infrared ray and to remove harmful components through heat storage, And an inner whitewood board 36 disposed in contact with the inner surface of the mineral layer and fixed to the inner surface of the main body frame by a bracket.

The outer and upper articulated wood boards 31 and 36 are arranged in a vertical direction and fixed to a bracket 23 provided on the body frame 20 at both ends in the longitudinal direction. Respectively. At this time, the engaging position with the bracket 23 is such that an inner side portion of a certain length is engaged at the end portion, so that the upper portion of the engaging portion covers a certain portion of the main body frame, thereby preventing the main body frame surface from being exposed to the outside.

It is preferable that the heat insulating material 32 is formed of a non-combustible material, and the heat generated by using the heat reflecting material for reflecting the heat generated from the heat conductive plate can be minimized. Such a heat insulating material is desirably formed to a thickness of at least 8 mm or more in order to sufficiently provide a heat insulating effect.

Preferably, the spacing adjuster 341 for forming the heat insulating air layer 33 is formed of a non-combustible material. The spacing adjusting block 341 is spaced apart from the spacing adjusting block by a predetermined distance to form a heat insulating air layer. As an example of the gap adjusting base 341, a heat conductive film may be wound on an iron plate strip. The heat insulating air layer 33 formed by the gap adjusting bar greatly reduces the heat transfer while preventing the heat insulating plate 34, which radiates high heat, from directly contacting the heat insulating material to prevent the heat insulating material from being burnt.

The heat transfer plate (34) is connected to the power line by an electric wire so that heat is generated when power is supplied. At this time, the wires can be connected to the respective heat transfer plates through the body frame.

The mineral layer 35 is composed of germanium, biotite, loess, and activated carbon. It is a composition to be mixed. Germanium, loess and biotite provide a far-infrared radiation effect. Biotite has an effect of removing carcinogens and releasing anions , The activated carbon has a function of adsorbing and removing harmful substances including sulfur oxides and ammonia. The composition ratio of the mineral layer is 5 to 20% by weight of germanium, 20 to 40% by weight of biotite, 30 to 50% by weight of loess, and 10 to 30% by weight of activated carbon. The germanium is most excellent in far-infrared ray emission amount, so that a far-infrared ray is irradiated in a larger amount than that composed only of pure yellow soil, and the humidity control function is provided in addition to the far-infrared ray emission effect of the yellow loess. It is preferable that the thickness of the mineral layer is at least 20 mm or more so that heat can be accumulated from the heat transfer plate and released for a long time.

The mineral layer 35 may include a first mineral layer 351 formed of germanium, biotite, loess, and activated carbon and formed on the outside; And a second mineral layer 352 formed of germanium, germite, loess, and activated carbon and formed therein. Ge-lite constituting the second mineral layer is called pozzolan, and contains about 2.0 ppm of germanium, and contains a large amount of far-infrared rays and anions. Typically, it includes volcanic ash, silicate clay, . That is, the gelite emits far infrared rays corresponding to about 180 times of the loess, promotes plant growth, has a humidity control function, emits anion and human active energy, has harmful electromagnetic wave shielding function, It also provides heavy metal neutralization effects. Therefore, it is possible to remove harmful components by absorbing germicide, block radionuclides such as radon and electromagnetic waves, remove odor components such as ammonia, and control humidity.

The second mineral layer 352 is composed of 5 to 20% by weight of germanium, 20 to 40% by weight of gelite, 30 to 50% by weight of loess, and 10 to 30% by weight of activated carbon. At this time, the first mineral layer and the second mineral layer are formed at a ratio of 3: 1 to further increase the effect of biotite, or may be formed at a ratio of 1: 1 to uniformly effect the biotite and gelite . For example, when the thickness of the mineral layer is 20 mm, the first mineral layer is formed to 15 mm, the second mineral layer is formed to be 5 mm, and the first mineral layer and the second mineral layer are formed to be 10 mm, Can be formed.

2, a door frame 61 is formed on one side of the side wall body 30 so that the curved surface of the side wall body is formed in a plane, and a sliding door is provided on the front side of the door frame Thereby opening and closing. The door frame 61 and the opening and closing door 60 can be formed into a curved surface having a radius of curvature equal to the radius of curvature of the side wall body to be opened and closed.

Further, a controller may be provided on the inner surface or one side of the outer surface of the side wall body 30 to control power supply to the heat transfer plate provided therein. In other words, the control device can perform various controls such as controlling the heating time of the heat transfer plate, temperature control of the inside of the fomentation space by a sensor installed in the fomentation space, as well as on / off of the power source.

4, the side wall body 30 may be provided with a horizontal chair 80 at a predetermined height from the floor in the internal fomentation space 70 so that the user can sit and relax. The horizontal chair may be formed to have a width within a radius of the feminine space, and may be formed of a plain wood material to further provide a phononchide effect.

5B, the bottom body 40 includes a metal supporting plate 41 which is fixedly mounted on the upper part of the lowermost horizontal frame 21, A lower plywood 43 which is laminated on the upper part of the heat insulating material to block direct contact of high temperature with the heat insulating material and a heat transfer plate 44 which is stacked on the plywood and is heat- A mineral layer 45 which is laminated on the upper surface of the heat transfer plate and receives heat from the heat transfer plate to store heat to remove far-infrared rays and remove harmful components, an upper plywood laminated on the upper surface of the mineral layer, (46), and a bottom sheet wood board (47) laminated on the upper plywood board and exposed to the floor space.

The metal supporting plate 41 serves as a support for preventing the bottom body from sinking due to a load when the user moves into the fomentation space. The metal supporting plate 41 may be formed in various shapes such as a mesh shape in addition to the plate body.

Further, in the bottom body 40, the heat insulating material and the heat transfer plate are separated between the heat insulating material 42 and the heat transfer plate 44 through the lower plywood 43 in place of the heat insulating air layer. This is to prevent the shape of the heat transfer plate from being deformed by the action of the load to come into contact with the heat insulating material.

Also, the mineral layer 45 may be formed of the same material as the sidewall, and may be composed of a first mineral layer and a second mineral layer.

In this structure, the metal supporting plate 41 is firmly connected to the lowermost frame by welding or engaging means, and the laminated layers are sequentially stacked thereon, and only the bottom planking wood board 47 is fixed to the lower horizontal frame by the brackets can do.

At least three wheels 90 may be provided on the edges of the lowermost horizontal frame or the metal support plate to facilitate the movement of the feminine booth 10 and a fixing support may be installed on the lowermost horizontal frame or metal support plate. So that the fuser booth which has been moved can be fixed in position. The fixed support is formed of a screw-type elevating part and a disk-shaped fixing plate formed at the lower end of the elevating part and contacting with a bottom surface of the elevating part, so that the elevating and lowering can be performed in the rotating direction. When the movement of the feminine booth is completed, the fixing plate of the fixed support is lowered to be brought into contact with the floor of the installation so that the feminine booth can be prevented from being easily moved.

5C, the cover 50 includes a lower textured wood board 51 exposed as a fomenting space, and a mineral layer (not shown) that is laminated on the lower textured wood board and emits far-infrared rays and removes harmful components 52), a plywood (53) laminated on the mineral layer, a heat insulating material (54) laminated on the plywood and blocking the discharge of external heat to the outside, And an upper upper whiteboard board 55 as shown in Fig.

In order to form the mineral layer 52 of the lid 50, a laminating operation is performed in a state that the lid is turned upside down, so that the plywood is first installed, and then the mineral layer is plastered to support the mineral layer, Is formed and then turned upside down and placed in the body frame. Thus, in the final installed form, the plywood is located above the mineral layer. It may be provided by the same composition as the mineral layer 52 and the sidewall 30 and the bottom body 40 constituting the lid 50. [

In addition, the lid 50 is formed by stacking a lower textured wood and a mineral layer on a horizontal frame positioned on the upper part of the main body frame, laminating the plywood and the heat insulating material on the upper surface of the horizontal frame, By a horizontal frame and an engaging means which are located on the upper horizontal frame and the upper horizontal frame on the further stacked horizontal frame.

In addition, a plurality of air flow holes 511 may be formed in the lower textured wood board 51 of the cover 50 to increase the contact area between the air and the mineral layer in the pad space 70. The air circulation hole 511 may have a plurality of circular holes or a plurality of straight holes, so that the air in the fomenting space is in contact with the mineral layer so that various noxious gases are adsorbed and removed to purify the air.

In addition to the lid, the air circulation holes may be formed on the inner whirling boards of the side walls to purify the air in the lingering space.

As shown in FIG. 6, the outer whitewood board 31 of the side wall may further include an air purifying groove 311 for filling the mineral. The air purifying groove 311 may be formed on the surface exposed to the outside of the inner and outer surfaces of the outer softening wood plate. The formed air purifying groove 311 is filled with the mineral and is in contact with the outside air provided with the padding booth Let air purification take place. A stopper 313 is further provided in the air purge groove 311 so that the filled mineral layer 312 is exposed to the outside to purify the air only when necessary. Also, when the stopper 313 is formed with a plurality of fine holes, the air is circulated even when the stopper is closed, so that the purifying action of the nearby air can be performed.

When the power is supplied, the heat generated in the heat transfer plates 34 and 44 is transferred to the mineral layers 35 and 45 and the heat is transferred to the internal fomenting space 70 through the mineral layer. To provide a hot pad. At this time, although the feminine booth 10 of the present invention is formed as a single layer, since the thickness of the mineral layer is formed to be 20 mm or more, the heat generated in the heat transfer plate is accumulated to release heat to the fomenting space for a long time, A regenerating fomenting effect can be provided.

In addition, in the mineral layer supplied with heat, far-infrared rays and negative ions are radiated to promote blood circulation and metabolism of the internal user so as to exhaust waste in the human body, and to purify the ambient air. In addition, the inner wood, which is phytoncide, emits phytoncide to help relieve stress.

10: Fomentation Booth
20: Body frame
21: Horizontal frame 22: Vertical frame
23: Bracket
30: side wall
31: Outer textile board 32: Insulation
33: adiabatic air layer 34:
35: Mineral layer 36: Inner textured wood board
311: air purifying groove 312: mineral layer
313: Plug
40:
41: metal support plate 42:
43: lower plywood 44:
45: mineral layer 46: upper plywood
47: wooden floor plank
50: Cover
51: Lower textured wood board 52: Mineral layer
53: plywood 54: insulation
55: upper textured wood board 511: air distribution hole
60: Opening and closing door
61: door frame
70: Fomentation space
80: Horizontal chairs
90: Wheels

Claims (9)

The sidewall body, the bottom body and the lid are supported by the main body frame, and an opening / closing door is formed at one side of the sidewall body so as to be able to enter and leave the inside feminine space, And the temperature of the heat transfer plate provided on the side wall body is regulated to form the fomenting space at a high temperature,
Wherein,
A horizontal frame made of a plurality of layers spaced apart from each other by a metal or a polygon, and a vertical frame fixing the horizontal frame so as to be vertical;
Wherein,
An outer softening wood plate fixed by brackets to an outer surface of the main body frame,
A heat insulating material installed on an inner surface of the outer loofah board to prevent the inner heat from being discharged to the outside,
A heat insulating air layer formed on the inner surface of the heat insulating material by vertically or horizontally arranging bar-shaped gap adjusting bars at regular intervals,
A heat transfer plate spaced apart from the heat insulating material by the heat insulating air layer and radiating heat when power is supplied,
A mineral layer formed in contact with the inner surface of the heat transfer plate and receiving heat of the heat transfer plate to store heat to remove far-infrared rays and remove harmful components,
And an inner whitening board attached to the inner surface of the mineral layer and fixed to the inner surface of the body frame by a bracket.
The method according to claim 1,
Wherein the bottom body comprises:
A metal support plate fixedly seated on an upper portion of the lowermost horizontal frame;
A heat insulating material laminated on the metal support plate to block external heat from being emitted to the outside;
A lower plywood laminated on the heat insulating material to block direct contact of heat with the heat insulating material;
A heat transfer plate laminated on the plywood and radiating heat when power is supplied thereto;
A mineral layer stacked on the heat transfer plate and receiving heat from the heat transfer plate to store heat and remove far-infrared rays and remove harmful components;
An upper plywood laminated on the mineral layer to flatten the upper surface;
And a bottom plastic sheet stacked on top of the upper plywood to be exposed as a fomenting space.
The method according to claim 1,
Wherein the cover comprises:
A lower clam shell board exposed as a fomentation space;
A mineral layer laminated on the lower clay board to remove far-infrared rays and remove harmful components;
A plywood laminated on the mineral layer;
A heat insulating material laminated on the plywood to block external heat from being discharged to the outside;
And an upper softening wood board laminated on the heat insulating material and exposed to the outside.
4. The method according to any one of claims 1 to 3,
Wherein the mineral layer is composed of germanium, biotite, loess, activated carbon.
5. The method of claim 4,
Wherein the mineral layer is composed of 5 to 20 wt% of germanium, 20 to 40 wt% of biotite, 30 to 50 wt% of loess, and 10 to 30 wt% of activated carbon.
5. The method of claim 4,
The mineral layer
A first mineral layer formed of germanium, biotite, loess and activated carbon and formed on the outside;
And a second mineral layer formed of germanium, germite, loess, and activated carbon and formed therein.
The method according to claim 6,
Wherein the second mineral layer comprises:
Wherein the composition is composed of 5 to 20% by weight of germanium, 20 to 40% by weight of gelite, 30 to 50% by weight of loess, and 10 to 30% by weight of activated carbon.
5. The method of claim 4,
The external whitewood board provided on the side wall body
Wherein an air purifying groove is formed in a surface exposed to the outside, and the air purifying groove is filled with a mineral layer, and the cap is further formed to cover the air purifying groove filled with the mineral layer.
5. The method of claim 4,
Wherein a plurality of air flow holes are formed in the lower clam shell board of the cover to increase the contact area between the air and the mineral layer in the fomenting space so as to purify the air.
KR1020140010009A 2014-01-28 2014-01-28 Heat Storage Type Fomentation Booth KR20150089417A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20190027478A (en) * 2017-09-07 2019-03-15 주식회사 천조기술연구원 Thermotherapy using mineral heat and far infrared rays

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20190027478A (en) * 2017-09-07 2019-03-15 주식회사 천조기술연구원 Thermotherapy using mineral heat and far infrared rays

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