JPH11270106A - Manufacture of heating thin straw mat - Google Patents
Manufacture of heating thin straw matInfo
- Publication number
- JPH11270106A JPH11270106A JP10076874A JP7687498A JPH11270106A JP H11270106 A JPH11270106 A JP H11270106A JP 10076874 A JP10076874 A JP 10076874A JP 7687498 A JP7687498 A JP 7687498A JP H11270106 A JPH11270106 A JP H11270106A
- Authority
- JP
- Japan
- Prior art keywords
- heating
- tatami mat
- heating element
- layer
- manufacturing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B3/00—Ohmic-resistance heating
- H05B3/20—Heating elements having extended surface area substantially in a two-dimensional [2D] plane, e.g. plate-heater
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B2203/00—Aspects relating to Ohmic resistive heating covered by group H05B3/00
- H05B2203/002—Heaters using a particular layout for the resistive material or resistive elements
- H05B2203/006—Heaters using a particular layout for the resistive material or resistive elements using interdigitated electrodes
Landscapes
- Floor Finish (AREA)
- Surface Heating Bodies (AREA)
- Resistance Heating (AREA)
- Central Heating Systems (AREA)
Abstract
Description
【0001】[0001]
【発明の属する技術分野】本発明は通常の畳の約3〜4
分の1の厚さを有する暖房薄畳の製造方法に関するもの
である。BACKGROUND OF THE INVENTION 1. Field of the Invention
The present invention relates to a method of manufacturing a heated thin tatami mat having a thickness of one-half.
【0002】[0002]
【従来の技術】暖房薄畳を製造するには、薄畳の内部に
ニクロム線を面状に設け、ニクロム線よりも表面側にベ
ニヤ板を設けることが考えられる。2. Description of the Related Art To manufacture a heating thin tatami mat, it is conceivable to provide a nichrome wire in a plane inside the thin tatami mat and provide a plywood plate on the surface side of the nichrome wire.
【0003】[0003]
【発明が解決しようとする課題】しかし、薄畳の内部に
ニクロム線を面状に設けるときには、ニクロム線を面状
に設ける作業が面倒であるから、製造作業を容易に行な
うことができない。However, when a nichrome wire is provided in a planar shape inside a thin tatami mat, the work of providing the nichrome wire in a planar shape is troublesome, so that the manufacturing operation cannot be performed easily.
【0004】本発明は上述の課題を解決するためになさ
れたもので、製造作業を容易に行なうことができる暖房
薄畳の製造方法を提供することを目的とする。SUMMARY OF THE INVENTION The present invention has been made to solve the above-mentioned problems, and has as its object to provide a method of manufacturing a heating thin tatami mat capable of easily performing a manufacturing operation.
【0005】[0005]
【課題を解決するための手段】この目的を達成するた
め、本発明においては、畳床に畳表が取り付けられた暖
房薄畳を製造する方法において、芯材の表面側に自己温
度制御機能を有しかつ発熱層が印刷により設けられしか
も発熱層が設けられない部分を有する面状発熱体を設
け、上記面状発熱体の表面側にベニヤ板を設け、上記芯
材、上記面状発熱体および上記ベニヤ板を縫着糸を上記
面状発熱体の上記発熱層が設けられない部分を貫通させ
て縫着して上記畳床を作製し、上記畳床に上記畳表を取
り付ける。In order to achieve this object, the present invention relates to a method for manufacturing a heated thin tatami mat having a tatami mat attached to a tatami mat floor, wherein a self-temperature control function is provided on the surface side of the core material. A sheet heating element having a portion where the heating layer is provided by printing but not provided with the heating layer, a plywood plate is provided on the surface side of the sheet heating element, the core material, the sheet heating element and A plywood board is sewn with a sewing thread penetrating a portion of the planar heating element where the heating layer is not provided to produce the tatami floor, and the tatami mat is attached to the tatami floor.
【0006】この場合、上記芯材として厚さが5〜8m
mのものを用いる。In this case, the core material has a thickness of 5 to 8 m.
m.
【0007】また、上記面状発熱体として上記発熱層に
遠赤外線発生物質を有するものを用いる。[0007] Further, as the planar heating element, one having a far-infrared ray generating substance in the heating layer is used.
【0008】この場合、上記芯材の表面側に金属層を設
け、上記金属層の表面側に上記面状発熱体を設ける。In this case, a metal layer is provided on the surface side of the core material, and the planar heating element is provided on the surface side of the metal layer.
【0009】[0009]
【発明の実施の形態】図1〜図4により本発明に係る暖
房薄畳の製造方法を説明する。DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A method for manufacturing a heated thin tatami mat according to the present invention will be described with reference to FIGS.
【0010】まず、図1、図2(図1のA−A拡大断面
図)に示すような自己温度制御機能を有しかつ発熱層3
が設けられない部分(発熱層穴部)3aを有する面状発
熱体1を作製する。すなわち、まず可撓性を有する基板
シート2の表面に可撓性を有する発熱層3を印刷により
設ける。この場合、発熱層3部に多数の発熱層3が設け
られない部分3aを設ける。この発熱層3はバインダー
である50%の樹脂ワニスと誘電体物質、導電性カーボ
ン粒子、発熱物質である各種の金属粉、ポリエチレング
リコール、遠赤外線発生物質である石英、絹雲母の粒子
等とからなり、導電性カーボン粒子の間にポリエチレン
グリコールが入り込んだ状態となっており、発熱層3は
PTC(Positive Temperature Coefficient)特性(正
温度特性)を有する。つぎに、発熱層3の表面に銅等の
導体からなる配線4を形成し、配線4上に可撓性を有す
る絶縁膜5を設け、基板シート2、発熱層3、配線4、
絶縁膜5からなりかつ可撓性を有する面状発熱体1を作
製する。そして、面状発熱体1としては、日本特殊工業
株式会社製のフェバーヒーター等を用いることができ
る。First, as shown in FIGS. 1 and 2 (enlarged sectional view taken along the line AA in FIG. 1), the heating layer 3 has a self-temperature control function.
The planar heating element 1 having the portion (heating layer hole portion) 3a where no is provided is manufactured. That is, the flexible heat generating layer 3 is first provided on the surface of the flexible substrate sheet 2 by printing. In this case, a portion 3a where many heat generating layers 3 are not provided is provided in the heat generating layer 3 portion. The heating layer 3 is composed of 50% resin varnish as a binder, dielectric substance, conductive carbon particles, various metal powders as a heating substance, polyethylene glycol, quartz as a far-infrared ray generating substance, sericite particles, and the like. The heating layer 3 has PTC (Positive Temperature Coefficient) characteristics (positive temperature characteristics). Next, a wiring 4 made of a conductor such as copper is formed on the surface of the heating layer 3, a flexible insulating film 5 is provided on the wiring 4, and the substrate sheet 2, the heating layer 3, the wiring 4,
The flexible planar heating element 1 made of the insulating film 5 is manufactured. As the sheet heating element 1, a fiber heater manufactured by Nippon Special Industries Co., Ltd. or the like can be used.
【0011】つぎに、図3に示すような畳床18を作製
する。すなわち、まずインシュレーションボード等から
なりかつ厚さが5〜8mmである芯材11の表面側すな
わち上面にアルミニウム箔12を設け、アルミニウム箔
12の上面に面状発熱体1を設け、面状発熱体1の上面
にベニヤ板13を設け、ベニヤ板13の上面に発泡ウレ
タンシートなどからなる緩衝材14を設け、芯材11の
裏面側すなわち下面に厚紙15を設け、厚紙15の下面
に防湿紙16を設け、芯材11、アルミニウム箔12、
面状発熱体1、ベニヤ板13、緩衝材14、厚紙15お
よび防湿紙16を面状発熱体1の発熱層3が設けられな
い部分3aを貫通させた縫着糸17により縫着し、芯材
11、アルミニウム箔12、面状発熱体1、ベニヤ板1
3、緩衝材14、厚紙15および防湿紙16からなる畳
床18を作製する。Next, a tatami floor 18 as shown in FIG. 3 is manufactured. That is, first, an aluminum foil 12 is provided on the surface side, that is, the upper surface of a core material 11 made of an insulation board or the like and having a thickness of 5 to 8 mm, and the planar heating element 1 is provided on the upper surface of the aluminum foil 12. A veneer plate 13 is provided on the upper surface of the body 1, a cushioning material 14 made of a urethane foam sheet or the like is provided on the upper surface of the veneer plate 13, a thick paper 15 is provided on the back side, that is, a lower surface of the core 11, and a moisture-proof paper 16 is provided on a lower surface of the thick paper 15. Provided, a core material 11, an aluminum foil 12,
The sheet heating element 1, the plywood 13, the cushioning material 14, the cardboard 15 and the moisture-proof paper 16 are sewn with the sewing thread 17 penetrating the portion 3a of the sheet heating element 1 where the heating layer 3 is not provided, and the core material is sewn. 11, aluminum foil 12, sheet heating element 1, plywood 1
3. A tatami floor 18 made of cushioning material 14, cardboard 15 and moisture-proof paper 16 is produced.
【0012】つぎに、図4に示すように、畳床18の裏
面に不織布21を接着によって取り付け、畳床18の裏
面に畳表22の端部を縫着によって取り付け、畳床18
に畳表22が取り付けられた暖房薄畳23を作製する。Next, as shown in FIG. 4, a nonwoven fabric 21 is attached to the back surface of the tatami floor 18 by bonding, and the end of the tatami mat table 22 is attached to the back surface of the tatami floor 18 by sewing.
A heating thin tatami mat 23 having a tatami mat table 22 attached thereto is manufactured.
【0013】図5は本発明に係る製造方法によって製造
された暖房薄畳を敷設した状態を示す概略断面図であ
る。図に示すように、床面31上に発泡ポリスチレン樹
脂等からなる発泡樹脂板32が設けられ、発泡樹脂板3
2上に暖房薄畳23が敷設されている。FIG. 5 is a schematic sectional view showing a state in which a heating thin tatami mat manufactured by the manufacturing method according to the present invention is laid. As shown in the figure, a foamed resin plate 32 made of a foamed polystyrene resin or the like is provided on a floor 31 and the foamed resin plate 3
The heating thin tatami mat 23 is laid on 2.
【0014】この暖房薄畳23においては、配線4に電
流を流すと、発熱層3にも電流が流れて、発熱層3から
熱が発せられるとともに、発熱層3から遠赤外線が放射
される。この場合、発熱層3の温度が上昇すると、ポリ
エチレングリコールが膨張するから、導電性カーボン粒
子の間隔が広がるので、発熱層3の抵抗が増加し、電流
が流れにくくなり、発熱層3の発熱量が減少し、このた
め発熱層3の温度が低下すると、ポリエチレングリコー
ルが収縮するから、導電性カーボン粒子の間隔が狭まる
ので、発熱層3の抵抗が減少し、電流が流れやすくな
り、発熱層3の発熱量が増加し、このような温度ヒュー
ズ機能により面状発熱体1の温度は熱放散量と発熱量と
が釣り合う一定の温度になる。ゆえに、面状発熱体1の
温度はサーモスタットなしで常時ほぼ設定温度たとえば
35〜60℃となり、面状発熱体1は自己温度制御機能
を有する。In the heating tatami mat 23, when an electric current is applied to the wiring 4, an electric current also flows to the heat generating layer 3 to generate heat from the heat generating layer 3 and radiate far infrared rays from the heat generating layer 3. In this case, when the temperature of the heat generating layer 3 rises, the polyethylene glycol expands, so that the distance between the conductive carbon particles increases, so that the resistance of the heat generating layer 3 increases, the current hardly flows, and the heat generation amount of the heat generating layer 3 is increased. When the temperature of the heat generating layer 3 decreases, polyethylene glycol shrinks, so that the distance between the conductive carbon particles is narrowed. Therefore, the resistance of the heat generating layer 3 decreases, and the current easily flows. The temperature of the sheet heating element 1 becomes a constant temperature at which the amount of heat dissipation and the amount of heat generation are balanced by such a temperature fuse function. Therefore, the temperature of the sheet heating element 1 is almost always set at, for example, 35 to 60 ° C. without a thermostat, and the sheet heating element 1 has a self-temperature control function.
【0015】そして、図1〜図4で説明した暖房薄畳の
製造方法においては、ニクロム線を面状に設ける作業を
行なう必要がないから、製造作業を容易に行なうことが
できる。また、発熱層3を印刷により設けるから、発熱
層3部に多数の発熱層3が設けられない部分3aを容易
に設けることができるので、製造作業を容易に行なうこ
とができる。また、芯材11の厚さが5〜8mmである
が、ベニヤ板13が設けられているから、畳床18の裏
面に畳表22の端部を縫着によって取り付けるときに、
畳表22に張力を与えたとしても、芯材11が反ること
がなく、しかも発熱体として面状発熱体1を使用してい
るから、ベニヤ板13が均一に加熱されるので、ベニヤ
板13が熱によって反ることがないので、畳床18が薄
くなりかつ畳床18が反ることがない。したがって、暖
房薄畳を敷設する作業を容易に行なうことができる。ま
た、発熱層3から熱が発せられるとともに、発熱層3か
ら遠赤外線が放射されるから、対流により部屋内を暖房
することができるとともに、放射により部屋内の人に遠
赤外線を照射することができるので、部屋の温度がそれ
程高くなくとも暖かく感じる。また、面状発熱体1の発
熱層3から放射された遠赤外線をアルミニウム箔12に
より効率よく反射することができるから、部屋内の人に
効率よく遠赤外線を照射することができるので、部屋の
温度がそれ程高くなくともより暖かく感じる。また、金
属層としてアルミニウム箔12を用いているから、金属
層を容易に設けることができ、またアルミニウム箔12
に蓄熱されるから、消費電力を少なくすることができ
る。また、面状発熱体1と緩衝材14との間にベニヤ板
13を設けているから、子供等がいたずらして釘等を刺
したときの感電を防止することができる。また、暖房薄
畳23を敷設する場合に、発泡樹脂板32を使用したと
きには、発泡樹脂板32の厚さにより暖房薄畳23の敷
設高さすなわち床面31から暖房薄畳23の表面までの
寸法を調節することができるから、種々の部屋に暖房薄
畳23を敷設する場合に厚さの異なる暖房薄畳23を用
意する必要がなく、また部屋に段差が生じないようにす
ること(バリアフリー)ができる。In the method of manufacturing a heating tatami mat described with reference to FIGS. 1 to 4, there is no need to perform a work of providing a nichrome wire in a planar shape, so that the manufacturing work can be easily performed. In addition, since the heat generating layer 3 is provided by printing, a portion 3a where a large number of heat generating layers 3 are not provided can be easily provided in the heat generating layer 3 portion, so that the manufacturing operation can be easily performed. Although the thickness of the core material 11 is 5 to 8 mm, since the plywood 13 is provided, when attaching the end of the tatami table 22 to the back surface of the tatami floor 18 by sewing,
Even if tension is applied to the tatami mat table 22, the core material 11 does not warp, and since the sheet heating element 1 is used as the heating element, the plywood plate 13 is uniformly heated. Therefore, the tatami floor 18 becomes thin and the tatami floor 18 does not warp. Therefore, the work of laying the heating thin tatami mat can be easily performed. In addition, since heat is generated from the heat generating layer 3 and far infrared rays are radiated from the heat generating layer 3, it is possible to heat the room by convection and irradiate far infrared rays to a person in the room by the radiation. Yes, it feels warm even if the room temperature is not so high. Further, the far infrared rays emitted from the heat generating layer 3 of the sheet heating element 1 can be efficiently reflected by the aluminum foil 12, so that people in the room can be efficiently irradiated with the far infrared rays. Feel warmer even if the temperature is not so high. Further, since the aluminum foil 12 is used as the metal layer, the metal layer can be easily provided.
Since the heat is stored, power consumption can be reduced. In addition, since the plywood 13 is provided between the sheet heating element 1 and the cushioning member 14, electric shock when a child or the like stabs a nail or the like by mischief can be prevented. Further, when the heating tatami mat 23 is laid, when the foamed resin plate 32 is used, the laying height of the heating tatami mat 23, that is, from the floor surface 31 to the surface of the heating tatami mat 23, depends on the thickness of the foamed resin plate 32. Since the dimensions can be adjusted, it is not necessary to prepare the heating thin tatami mats 23 having different thicknesses when laying the heating thin tatami mats 23 in various rooms, and it is necessary to prevent the steps from being generated in the rooms (barriers). Free) can be.
【0016】なお、上述実施の形態においては、金属層
としてアルミニウム箔12を設けたが、金属層としてア
ルミニウム膜、銀膜等の金属膜などを用いてもよい。ま
た、上述実施の形態においては、金属箔としてアルミニ
ウム箔12を用いたが、金属箔として銀箔等を用いても
よい。また、上述実施の形態においては、遠赤外線発生
物質として石英、絹雲母の粒子を用いたが、遠赤外線発
生物質としてアルミナ(Al2O3)、チタニア(TiO
2)、フェライト(Fe2O3)、酸化クロム(Cr
2O3)、シリカ(SiO2)、イットリア(Y2O3)、
マグネシア(MgO)等の粒子を用いることができる。In the above-described embodiment, the aluminum foil 12 is provided as the metal layer, but a metal film such as an aluminum film and a silver film may be used as the metal layer. In the above-described embodiment, the aluminum foil 12 is used as the metal foil, but a silver foil or the like may be used as the metal foil. In the above-described embodiment, quartz and sericite particles are used as far-infrared ray generating substances, but alumina (Al 2 O 3 ) and titania (TiO 2 ) are used as far-infrared ray generating substances.
2 ), ferrite (Fe 2 O 3 ), chromium oxide (Cr
2 O 3 ), silica (SiO 2 ), yttria (Y 2 O 3 ),
Particles such as magnesia (MgO) can be used.
【0017】[0017]
【発明の効果】本発明に係る暖房薄畳の製造方法におい
ては、ニクロム線を面状に設ける作業を行なう必要がな
く、また発熱層を印刷により設けるから、発熱層部に発
熱層が設けられない部分を容易に設けることができるの
で、製造作業を容易に行なうことができる。In the method of manufacturing a heating thin tatami mat according to the present invention, it is not necessary to perform the work of providing the nichrome wire in a plane, and since the heating layer is provided by printing, the heating layer is provided in the heating layer portion. Since the missing portion can be easily provided, the manufacturing operation can be easily performed.
【0018】また、芯材として厚さが5〜8mmのもの
を用いるときには、畳床が薄くなるから、暖房薄畳を敷
設する作業を容易に行なうことができる。When a core material having a thickness of 5 to 8 mm is used, the floor of the tatami mat becomes thin, so that the work of laying a heating thin tatami mat can be easily performed.
【0019】また、面状発熱体として発熱層に遠赤外線
発生物質を有するものを用いたときには、部屋内の人に
遠赤外線を照射することができるから、部屋の温度がそ
れ程高くなくとも暖かく感じる。Also, when a heating element having a far-infrared ray generating substance in the heating layer is used as the sheet heating element, the person in the room can be irradiated with far-infrared rays, so that the person feels warm even if the room temperature is not so high. .
【0020】また、芯材の表面側に金属層を設け、上記
金属層の表面側に上記面状発熱体を設けたときには、部
屋内の人に効率よく遠赤外線を照射することができるか
ら、部屋の温度がそれ程高くなくともより暖かく感じ
る。When a metal layer is provided on the surface side of the core material and the sheet heating element is provided on the surface side of the metal layer, it is possible to efficiently irradiate far-infrared rays to a person in the room. Feel warmer even if the room temperature is not so high.
【図1】本発明に係る暖房薄畳の製造方法の説明図であ
る。FIG. 1 is an explanatory view of a method for manufacturing a heating tatami mat according to the present invention.
【図2】本発明に係る暖房薄畳の製造方法の説明図であ
る。FIG. 2 is an explanatory diagram of a method for manufacturing a heating tatami mat according to the present invention.
【図3】本発明に係る暖房薄畳の製造方法の説明図であ
る。FIG. 3 is an explanatory view of a method for manufacturing a heating thin tatami mat according to the present invention.
【図4】本発明に係る暖房薄畳の製造方法の説明図であ
る。FIG. 4 is an explanatory view of a method for manufacturing a heating tatami mat according to the present invention.
【図5】本発明に係る製造方法によって製造された暖房
薄畳を敷設した状態を示す概略断面図である。FIG. 5 is a schematic sectional view showing a state in which a heating thin tatami mat manufactured by the manufacturing method according to the present invention is laid.
1…面状発熱体 3…発熱層 3a…発熱層が設けられない部分 11…芯材 12…アルミニウム箔 13…ベニヤ板 17…縫着糸 18…畳床 22…畳表 23…暖房薄畳 DESCRIPTION OF SYMBOLS 1 ... Planar heating element 3 ... Heat generation layer 3a ... Part in which a heat generation layer is not provided 11 ... Core material 12 ... Aluminum foil 13 ... Veneer board 17 ... Sewing thread 18 ... Tatami floor 22 ... Tatami table 23 ... Heating thin tatami
【手続補正書】[Procedure amendment]
【提出日】平成11年2月17日[Submission date] February 17, 1999
【手続補正1】[Procedure amendment 1]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】特許請求の範囲[Correction target item name] Claims
【補正方法】変更[Correction method] Change
【補正内容】[Correction contents]
【特許請求の範囲】[Claims]
【請求項3】上記芯材の表面側に金属層を設け、上記金
属層の表面側に上記面状発熱体を設けることを特徴とす
る請求項1に記載の暖房薄畳の製造方法。 3. The method for manufacturing a heating tatami mat according to claim 1 , wherein a metal layer is provided on a surface side of the core material, and the sheet heating element is provided on a surface side of the metal layer.
【手続補正2】[Procedure amendment 2]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】0005[Correction target item name] 0005
【補正方法】変更[Correction method] Change
【補正内容】[Correction contents]
【0005】[0005]
【課題を解決するための手段】この目的を達成するた
め、本発明においては、畳床に畳表が取り付けられた暖
房薄畳を製造する方法において、芯材の表面側に自己温
度制御機能を有しかつ遠赤外線発生物質を有する発熱層
が印刷により設けられしかも発熱層が設けられない部分
を有する面状発熱体を設け、上記面状発熱体の表面側に
ベニヤ板を設け、上記芯材、上記面状発熱体および上記
ベニヤ板を縫着糸を上記面状発熱体の上記発熱層が設け
られない部分を貫通させて縫着して上記畳床を作製し、
上記畳床に上記畳表を取り付ける。In order to achieve this object, the present invention relates to a method for manufacturing a heated thin tatami mat having a tatami mat attached to a tatami mat floor, wherein a self-temperature control function is provided on the surface side of the core material. A heat generating layer having a far-infrared ray generating substance is provided by printing, and a sheet heating element having a portion where the heat emitting layer is not provided is provided, a plywood plate is provided on the surface side of the sheet heating element, and the core material, Sewing the sheet heating element and the plywood through a portion where the heating layer of the sheet heating element is not provided to form a tatami floor by sewing.
Attach the tatami mat to the tatami floor.
【手続補正3】[Procedure amendment 3]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】0007[Correction target item name] 0007
【補正方法】削除[Correction method] Deleted
【手続補正4】[Procedure amendment 4]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】0008[Correction target item name] 0008
【補正方法】変更[Correction method] Change
【補正内容】[Correction contents]
【0008】また、上記芯材の表面側に金属層を設け、
上記金属層の表面側に上記面状発熱体を設ける。 Further, a metal layer provided on the surface side of the core member,
The planar heating element is provided on the surface side of the metal layer.
【手続補正5】[Procedure amendment 5]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】0017[Correction target item name] 0017
【補正方法】変更[Correction method] Change
【補正内容】[Correction contents]
【0017】[0017]
【発明の効果】本発明に係る暖房薄畳の製造方法におい
ては、ニクロム線を面状に設ける作業を行なう必要がな
く、また発熱層を印刷により設けるから、発熱層部に発
熱層が設けられない部分を容易に設けることができるの
で、製造作業を容易に行なうことができ、また面状発熱
体として発熱層に遠赤外線発生物質を有するものを用い
ているから、部屋内の人に遠赤外線を照射することがで
きるので、部屋の温度がそれ程高くなくとも暖かく感じ
る。 In the method of manufacturing a heating thin tatami mat according to the present invention, it is not necessary to perform the work of providing the nichrome wire in a plane, and since the heating layer is provided by printing, the heating layer is provided in the heating layer portion. since the free portions can be easily provided, it is possible to perform the manufacturing operations easily, also planar heating
Use a body that has a far-infrared ray generating substance in the heating layer
Radiating far-infrared rays to people in the room
It feels warm even if the room temperature is not so high
You.
【手続補正6】[Procedure amendment 6]
【補正対象書類名】明細書[Document name to be amended] Statement
【補正対象項目名】0019[Correction target item name] 0019
【補正方法】削除[Correction method] Deleted
Claims (4)
造する方法において、芯材の表面側に自己温度制御機能
を有しかつ発熱層が印刷により設けられしかも発熱層が
設けられない部分を有する面状発熱体を設け、上記面状
発熱体の表面側にベニヤ板を設け、上記芯材、上記面状
発熱体および上記ベニヤ板を縫着糸を上記面状発熱体の
上記発熱層が設けられない部分を貫通させて縫着して上
記畳床を作製し、上記畳床に上記畳表を取り付けること
を特徴とする暖房薄畳の製造方法。1. A method of manufacturing a heating thin tatami mat having a tatami mat on a tatami floor, wherein a self-temperature control function is provided on a surface side of a core material, a heating layer is provided by printing, and no heating layer is provided. A sheet heating element having a portion is provided, a plywood plate is provided on the surface side of the sheet heating element, the core material, the sheet heating element and the veneer plate are sewn with the heating layer of the sheet heating element. A method for manufacturing a heated thin tatami mat, wherein the tatami mat floor is produced by piercing a portion not provided and sewing the tatami mat, and the tatami mat is attached to the tatami mat floor.
用いることを特徴とする請求項1に記載の暖房薄畳の製
造方法。2. The method according to claim 1, wherein the core material has a thickness of 5 to 8 mm.
線発生物質を有するものを用いることを特徴とする請求
項1に記載の暖房薄畳の製造方法。3. The method of manufacturing a heating tatami mat according to claim 1, wherein the heating element having a far-infrared ray generating material in the heating layer is used as the sheet heating element.
属層の表面側に上記面状発熱体を設けることを特徴とす
る請求項3に記載の暖房薄畳の製造方法。4. The method for manufacturing a heating tatami mat according to claim 3, wherein a metal layer is provided on a surface side of the core material, and the sheet heating element is provided on a surface side of the metal layer.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10076874A JPH11270106A (en) | 1998-03-25 | 1998-03-25 | Manufacture of heating thin straw mat |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10076874A JPH11270106A (en) | 1998-03-25 | 1998-03-25 | Manufacture of heating thin straw mat |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JPH11270106A true JPH11270106A (en) | 1999-10-05 |
Family
ID=13617792
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP10076874A Pending JPH11270106A (en) | 1998-03-25 | 1998-03-25 | Manufacture of heating thin straw mat |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPH11270106A (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102837911A (en) * | 2011-06-24 | 2012-12-26 | 吴江热得龙电线电缆有限公司 | Container infusion bag heating pad |
| JP2020153212A (en) * | 2019-03-20 | 2020-09-24 | 芳憲 吉岡 | Heating tatami |
-
1998
- 1998-03-25 JP JP10076874A patent/JPH11270106A/en active Pending
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102837911A (en) * | 2011-06-24 | 2012-12-26 | 吴江热得龙电线电缆有限公司 | Container infusion bag heating pad |
| JP2020153212A (en) * | 2019-03-20 | 2020-09-24 | 芳憲 吉岡 | Heating tatami |
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