JPH05137613A - Portable hair dryer - Google Patents

Portable hair dryer

Info

Publication number
JPH05137613A
JPH05137613A JP30314291A JP30314291A JPH05137613A JP H05137613 A JPH05137613 A JP H05137613A JP 30314291 A JP30314291 A JP 30314291A JP 30314291 A JP30314291 A JP 30314291A JP H05137613 A JPH05137613 A JP H05137613A
Authority
JP
Japan
Prior art keywords
unit
combustion
catalytic combustion
gas
nozzle
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
Application number
JP30314291A
Other languages
Japanese (ja)
Inventor
Shoichi Yamaguchi
彰一 山口
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP30314291A priority Critical patent/JPH05137613A/en
Publication of JPH05137613A publication Critical patent/JPH05137613A/en
Pending legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D20/00Hair drying devices; Accessories therefor
    • A45D20/04Hot-air producers
    • A45D20/06Hot-air producers heated otherwise than electrically; ventilated by muscle power
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D20/00Hair drying devices; Accessories therefor
    • A45D20/04Hot-air producers
    • A45D20/06Hot-air producers heated otherwise than electrically; ventilated by muscle power
    • A45D2020/065Hot-air producers heated otherwise than electrically; ventilated by muscle power heated by gas or fuel

Landscapes

  • Control Of Combustion (AREA)
  • Gas Burners (AREA)
  • Lighters Containing Fuel (AREA)

Abstract

PURPOSE:To provide the title hair dryer, in which a detecting part for combustion temperature can be simply composed and catalytic combustion can be done under the stable control of a fuel. CONSTITUTION:A detecting part 11 for combustion temperature at a catalytic combustion part 10 is composed as follows, that is to say, a bimetal 22 made of two kinds of alloy metals, each of which has a thermal expansion coefficient differing each other and is stuck together, is spirally arranged around the catalytic combustion part 10. One end of the bimetal is fixed on a dryer main body 2 and the other end is mechanically shifted by heating due to the combustion of the catalytic combustion part 10. In relation thereto, a control part 12, which controls the amount of a fuel gas supplied from a gas bottle by controlling a control valve 17 for a nozzle 4 corresponding to the detection by the detecting part 11, is composed of a valve-opening and closing mechanism 23. The mechanism 23 controls the opening of the control valve 17 by a mechanical movement caused to the detecting part 11.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】この発明は、ブタンガス等の液化
石油ガスの触媒燃焼を熱源とした小型で使いやすいコー
ドレスのヘアードライヤに関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a compact and easy-to-use cordless hair dryer which uses catalytic combustion of liquefied petroleum gas such as butane gas as a heat source.

【0002】[0002]

【従来の技術】携帯用ヘアードライヤやヘアーカーラ等
は、触媒等のガスヒーティング装置を熱源としている
が、その燃焼部の燃焼温度を検知する手段として例え
ば、特公平3−21167号公報に開示されたものがあ
る。図5は、上記従来の燃焼温度の検出部の構成を示す
図で、触媒担体101に対して平行に配置されたバーナ
ー管102は、感熱機能に優れた高膨張材料で構成され
ており、その管内には、低膨張材料で構成され調節装置
となるロッド103が内裝されている。このロッド10
3は、バーナー管102の基部102Fで固着結合さ
れ、両者は内外管式熱検知部材として構成されている。
ロッド103の一方端は、レバー104に取り付けられ
ている。レバー104は、触媒担体101に燃料ガスを
噴出するノズル105の燃料供給路に設けられた弁部の
開閉を行なうもので、ロッド103が伸縮することによ
って、レバー104が作動して弁部の開閉が行なわれ
る。
2. Description of the Related Art Portable hair dryers, hair curlers and the like use a gas heating device such as a catalyst as a heat source, and as a means for detecting the combustion temperature of the combustion part, for example, it is disclosed in Japanese Patent Publication No. 3-21167. There was something that was done. FIG. 5 is a diagram showing the structure of the conventional combustion temperature detecting section. The burner tube 102 arranged in parallel to the catalyst carrier 101 is made of a high expansion material having an excellent heat-sensitive function. A rod 103, which is made of a low expansion material and serves as an adjusting device, is fitted inside the tube. This rod 10
3 is fixedly coupled to the base portion 102F of the burner tube 102, and both are configured as an inner and outer tube type heat detecting member.
One end of the rod 103 is attached to the lever 104. The lever 104 opens and closes the valve portion provided in the fuel supply passage of the nozzle 105 that ejects the fuel gas to the catalyst carrier 101. When the rod 103 expands and contracts, the lever 104 operates to open and close the valve portion. Is performed.

【0003】このように構成された燃焼温度の検出部
は、触媒担体101が燃焼して周辺温度が上昇すると内
外管式熱検知部材が作動し、ロッド103が伸長してレ
バー104をノズル105の弁部を閉じる方向に揺動し
て燃料の供給量を絞る。また、燃焼が充分でない場合
は、ロッド103が短縮してノズル105の弁部を開く
方向に揺動して燃料の供給量を増やし燃焼温度を上昇さ
せる。
In the combustion temperature detector thus constructed, when the catalyst carrier 101 burns and the ambient temperature rises, the inner and outer tube type heat detecting members are activated, the rod 103 extends and the lever 104 moves to the nozzle 105. It swings in the direction of closing the valve to throttle the fuel supply. If the combustion is not sufficient, the rod 103 is shortened and swings in the direction to open the valve portion of the nozzle 105 to increase the fuel supply amount and raise the combustion temperature.

【0004】[0004]

【発明が解決しようとする課題】上記したように従来の
ものは、触媒等のガスヒーティング装置の温度に感応し
てガス流量を制御できるので、燃焼効率の良い携帯用ヘ
アードライヤ等を提供できるものであるが、触媒担体部
の外周部の一部で温度検出を行なうため、担体断面でみ
て不均一な燃焼が起こった場合には適切な温度制御がで
きないという問題点があった。また、内外管式熱検知部
材の機能によって弁部の開閉を行なわせているので、構
造が複雑になるという問題点もあった。
As described above, the conventional device can control the gas flow rate in response to the temperature of the gas heating device such as a catalyst, and thus can provide a portable hair dryer having good combustion efficiency. However, since the temperature is detected in a part of the outer peripheral portion of the catalyst carrier, there is a problem that proper temperature control cannot be performed when uneven combustion occurs in the carrier cross section. Further, since the valve section is opened and closed by the function of the inner and outer tube type heat detection member, there is a problem that the structure becomes complicated.

【0005】したがって、この発明の目的は、簡単な機
構で精度良く温度制御を行なうことができ、安定した触
媒燃焼を行なえる携帯用ヘアードライヤを提供すること
である。
SUMMARY OF THE INVENTION Therefore, an object of the present invention is to provide a portable hair dryer which can perform temperature control with high accuracy by a simple mechanism and can perform stable catalytic combustion.

【0006】[0006]

【課題を解決するための手段】この発明の携帯用ヘアー
ドライヤは、触媒燃焼部での燃焼温度を検知する検知部
を、熱膨張率の異なる合金を張り合わせたバイメタルを
触媒燃焼部の周囲に螺旋状に配設し、その一端部をドラ
イヤ本体に固着し、他端部が触媒燃焼部の燃焼による加
熱で機械的に変位するようにして構成するとともに、ノ
ズルの制御弁の開度を制御してガスボンベからの燃料ガ
ス供給量を制御する制御部を、検知部に生じる機械的変
位によって制御弁の開度制御を行なう弁開閉機構で構成
したものである。
A portable hair dryer according to the present invention has a detection unit for detecting a combustion temperature in a catalytic combustion unit, in which a bimetal made by laminating alloys having different coefficients of thermal expansion is spiraled around the catalytic combustion unit. It is arranged in a circular shape, one end of which is fixed to the dryer main body, and the other end is mechanically displaced by heating by the combustion of the catalytic combustion part, and the opening of the control valve of the nozzle is controlled. The control unit that controls the amount of fuel gas supplied from the gas cylinder is configured by a valve opening / closing mechanism that controls the opening degree of the control valve by the mechanical displacement generated in the detection unit.

【0007】[0007]

【作用】この発明の構成によれば、触媒燃焼部の周囲に
螺旋状に配設されたバイメタルによって温度検知を行な
うので、触媒燃焼部の内部で不均一な燃焼が生じた場合
にも一部に偏した温度検知はされない。また、バイメタ
ルは螺旋状に配設されているので、燃焼部によって加熱
される面積が広くなり、触媒燃焼部周囲の温度変化をバ
イメタルの機械的な変位として検知する際に、機械的な
変位が大きくなって検知精度が向上する。
According to the structure of the present invention, since the temperature is detected by the bimetal spirally arranged around the catalytic combustion portion, even if non-uniform combustion occurs inside the catalytic combustion portion The temperature detection biased to is not detected. In addition, since the bimetal is arranged in a spiral shape, the area heated by the combustion part becomes large, and when detecting the temperature change around the catalytic combustion part as the mechanical displacement of the bimetal, the mechanical displacement does not occur. The detection accuracy increases as the size increases.

【0008】[0008]

【実施例】以下、この発明の実施例について図1から図
4に基づいて説明する。図1は、この発明の実施例であ
るヘアードライヤ1の構成を示す図で、ヘアードライヤ
本体2のハウジングは、耐熱性の成形品により構成され
ており、本体2の内部には、燃料ガスを収容するガスボ
ンベ3と、このガスボンベ3からのガス供給路の出口に
位置するノズル4と、ノズル4の後方から温風吹き出し
口5に向けて空気を供給する送風部6と、この送風部6
によって送風される空気と燃料ガスをあらかじめ混合し
て混合気体をつくる予混合部7と、この予混合部7によ
って混合された混合気体を所定の温度まで加熱する予熱
部8と、この予熱部8で混合気体に点火する着火部9
と、予熱部8によって加熱された混合気体を触媒燃焼さ
せる触媒燃焼部10と、この触媒燃焼部10での温度変
化を検知する検知部11と、この検知部11での検知に
応じて前記ノズル4の弁部の開閉を制御してガスボンベ
3からの燃料ガス供給量を制御する制御部12とが設け
られている。
Embodiments of the present invention will be described below with reference to FIGS. FIG. 1 is a diagram showing a configuration of a hair dryer 1 according to an embodiment of the present invention. A housing of a hair dryer main body 2 is made of a heat resistant molded product, and a fuel gas is provided inside the main body 2. The gas cylinder 3 to be housed, the nozzle 4 located at the outlet of the gas supply path from the gas cylinder 3, the air blower 6 for supplying air from the rear of the nozzle 4 to the warm air outlet 5, and the air blower 6
Pre-mixing section 7 for pre-mixing air and fuel gas blown by to form a mixed gas, pre-heating section 8 for heating the mixed gas mixed by this pre-mixing section 7 to a predetermined temperature, and this pre-heating section 8 Ignition unit 9 for igniting mixed gas with
A catalytic combustion part 10 for catalytically burning the mixed gas heated by the preheating part 8, a detection part 11 for detecting a temperature change in the catalytic combustion part 10, and the nozzle according to the detection by the detection part 11. The control unit 12 controls the opening / closing of the valve unit 4 to control the amount of fuel gas supplied from the gas cylinder 3.

【0009】ガスボンベ3は、、プロパン、ブタン等の
液化石油ガスを貯蔵する容器で、本体2に固定あるいは
着脱自在に設けられている。ノズル4は、ガスボンベ3
内の液化ガスが供給される中継パイプ16の端部に設け
られ、中継パイプ16中で気化しガス化した燃料ガスを
燃料ガス噴出孔4aから予混合部7へ適正な速度で噴射
させる。燃料ガスの供給量は、ノズル4の中央部に設け
られた制御弁17によって制御される。また、小孔4a
から噴出される燃料ガスに対して、これを連携する形で
炎燃焼筒18が設置されており、炎燃焼筒18の外周部
には複数個の小孔18aが設けられている。
The gas cylinder 3 is a container for storing liquefied petroleum gas such as propane and butane, and is fixed to or detachable from the main body 2. Nozzle 4 is gas cylinder 3
The fuel gas, which is provided at the end of the relay pipe 16 to which the liquefied gas therein is supplied and vaporized and gasified in the relay pipe 16, is injected from the fuel gas ejection holes 4 a to the premixing unit 7 at an appropriate speed. The supply amount of the fuel gas is controlled by the control valve 17 provided in the central portion of the nozzle 4. Also, the small hole 4a
A flame combustion cylinder 18 is installed in association with the fuel gas ejected from the flame combustion cylinder 18, and a plurality of small holes 18a are provided in the outer peripheral portion of the flame combustion cylinder 18.

【0010】送風部6は、ファン6aとファン駆動用モ
ータ6bとからなり予混合部7へ所要の空気量を送る。
予混合部7は、ガスと空気を一定の割合の混合気体に混
合する部分である。予熱部8は、触媒燃焼を促進するた
めに、混合気体を所定の温度にまで加熱する部分であ
り、上記炎燃焼筒18の出口を覆う通気性のある熱伝導
体からなる網目状ネット19とで構成されている。
The blower unit 6 comprises a fan 6a and a fan driving motor 6b and sends a required amount of air to the premixing unit 7.
The premixing unit 7 is a unit that mixes gas and air into a mixed gas having a constant ratio. The preheating portion 8 is a portion that heats the mixed gas to a predetermined temperature in order to promote catalytic combustion, and a mesh net 19 made of a breathable heat conductor that covers the outlet of the flame combustion cylinder 18. It is composed of.

【0011】着火部9は、圧電装置9aと電極9bとか
らなる。電極9bのもう一方の電極(火花放電の相手)
は炎燃焼筒18の外周部がこれに相当する。触媒燃焼部
10は、ハニカムや発泡体のような多孔質性のセラミッ
クまたは金属を担体とし、白金やパラジウム等を担持し
た触媒部20からなる。検知部11は、一端部が本体2
の一部に接着またはかしめ等の手段により固着された、
例えば36%Ni−Fe材等の合金からなる低膨張感熱
部材と100%Cu材等の高膨張感熱部材とを張り合わ
せ、触媒部20の周囲に螺旋状に配設されたバイメタル
22を感熱部材として構成されている。図2は、この検
知部11と触媒部20との配置状態を示す斜視図であ
り、低膨張感熱部材を触媒部20側とし、高膨張感熱部
材を本体2側としている。
The ignition section 9 comprises a piezoelectric device 9a and an electrode 9b. The other electrode of the electrode 9b (a partner of spark discharge)
Corresponds to the outer peripheral portion of the flame combustion cylinder 18. The catalytic combustion unit 10 is composed of a catalytic unit 20 in which a porous ceramic or metal such as a honeycomb or a foam is used as a carrier and platinum, palladium, or the like is carried. One end of the detection unit 11 is the main body 2
Fixed to a part of, by means such as adhesion or caulking,
For example, a low-expansion heat-sensitive member made of an alloy such as a 36% Ni-Fe material and a high-expansion heat-sensitive member such as a 100% Cu material are bonded together, and the bimetal 22 spirally arranged around the catalyst portion 20 is used as a heat-sensitive member. It is configured. FIG. 2 is a perspective view showing an arrangement state of the detection unit 11 and the catalyst unit 20, with the low expansion heat sensitive member on the catalyst unit 20 side and the high expansion heat sensitive member on the main body 2 side.

【0012】制御部12は、検知部11を構成するバイ
メタル22の他端部に取り付けられ、バイメタル22の
伸縮に応じてノズル4の制御弁17を回動し、弁開閉機
構として作動するレバー23で構成されている。13は
送風部6に給電する蓄電池であり、14はモータ6bの
回転制御および充電用の電気回路である。
The control unit 12 is attached to the other end of the bimetal 22 constituting the detection unit 11, rotates the control valve 17 of the nozzle 4 according to the expansion and contraction of the bimetal 22, and operates the lever 23 as a valve opening / closing mechanism. It is composed of. Reference numeral 13 is a storage battery that supplies power to the blower unit 6, and 14 is an electric circuit for controlling rotation of the motor 6b and charging.

【0013】25はヘアードライヤの操作スイッチであ
る。26は触媒燃焼部10の輻射熱から本体2を保護す
る遮蔽板である。次に上記のように構成された実施例の
動作を説明する。まず、操作スイッチ25を押し始める
と、燃料ガスがガスボンベ3から中継パイプ16に流入
される。ノズル4の制御弁17は開状態であり、ノズル
4の燃料ガガス噴出小孔4aから燃料ガスが噴出され
る。このとき、モータ6bは制御用電気回路14の指令
により微速回転を行い予混合部7の外周部へ微風を送
る。炎燃焼筒18はモータ6bの風裏に位置するので、
炎燃焼筒18内にはほとんど風は送られない。操作スイ
ッチ25をさらに押すと、圧電装置9aが動作し、電極
9bと炎燃焼筒18の外周部との間に火花放電が生じ、
炎燃焼筒18の内部で炎燃焼が始まる。予混合部7では
ある程度の空気流速があるので炎燃焼には到らない。2
8は火種となる炎を示したものである。
Reference numeral 25 is an operation switch of the hair dryer. A shield plate 26 protects the main body 2 from the radiant heat of the catalytic combustion unit 10. Next, the operation of the embodiment configured as described above will be described. First, when the operation switch 25 is started to be pressed, the fuel gas flows from the gas cylinder 3 into the relay pipe 16. The control valve 17 of the nozzle 4 is in an open state, and the fuel gas is ejected from the fuel gas ejection small hole 4a of the nozzle 4. At this time, the motor 6b rotates at a low speed according to a command from the control electric circuit 14 and sends a small amount of wind to the outer peripheral portion of the premixing unit 7. Since the flame combustion cylinder 18 is located on the windward side of the motor 6b,
Almost no wind is blown into the flame burning cylinder 18. When the operation switch 25 is further pressed, the piezoelectric device 9a operates, and spark discharge is generated between the electrode 9b and the outer peripheral portion of the flame combustion cylinder 18,
Flame combustion starts inside the flame combustion cylinder 18. In the premixing section 7, there is a certain amount of air velocity, so flame combustion does not occur. Two
Reference numeral 8 indicates a flame that becomes a fire source.

【0014】この炎燃焼による熱エネルギーは予熱ネッ
ト19に熱伝達され、予混合部7にさしかかった混合空
気を加熱する。摂氏約200度以上に加熱された混合気
体は触媒燃焼部10で触媒燃焼を開始する。この頃に
は、モータ6bは制御用電気回路14の指令により徐々
に全速回転へ移行し、予混合部7の外周部へ定常風を送
り始める。触媒燃焼による熱エネルギーは本体2外部へ
の送風空気を加熱することに使われる。
The thermal energy generated by the flame combustion is transferred to the preheating net 19 and heats the mixed air approaching the premixing section 7. The mixed gas heated to about 200 degrees Celsius or higher starts catalytic combustion in the catalytic combustion unit 10. At this time, the motor 6b gradually shifts to full speed rotation according to a command from the control electric circuit 14, and starts to send a steady wind to the outer peripheral portion of the premixing unit 7. The thermal energy generated by the catalytic combustion is used to heat the air blown to the outside of the main body 2.

【0015】検知部11を構成するバイメタル22は、
この触媒燃焼部10からの輻射熱により、図3に示すよ
うに矢印Q方向に伸長する。この実施例の場合、厚み
0.5mm、径35mmで3回巻きで170℃の温度上
昇とすると、約15度回転伸長する。例えば、触媒部温
度、燃料噴出量、バイメタル変位量の各時間経過に対す
る変化を示す図4において、触媒燃焼部10の温度がT
1℃まで上昇して所定の温度を上回ると、それに対応し
てバイメタル22が、図3の実線で示す位置から想像線
の状態まで伸長する。このとき、レバー23も想像線の
状態まで変位し、ノズル4の制御弁17を絞る方向に回
転させて燃料噴出量を減少させる。また、触媒燃焼部1
0の温度が所定の温度を下回ると、バイメタル22が短
縮して逆動作により燃料噴出量を増加させるので、図4
に示すような安定した燃焼状態を実現することができ
る。
The bimetal 22 which constitutes the detector 11 is
The radiant heat from the catalytic combustion unit 10 expands in the direction of arrow Q as shown in FIG. In the case of this embodiment, when the temperature is increased to 170 ° C. by winding three times with a thickness of 0.5 mm and a diameter of 35 mm, it is rotationally extended by about 15 degrees. For example, in FIG. 4, which shows changes in the catalyst portion temperature, the fuel injection amount, and the bimetal displacement amount over time, the temperature of the catalyst combustion portion 10 is T
When the temperature rises to 1 ° C. and exceeds a predetermined temperature, the bimetal 22 correspondingly extends from the position shown by the solid line in FIG. 3 to the state of the imaginary line. At this time, the lever 23 is also displaced to the state of the imaginary line, and the control valve 17 of the nozzle 4 is rotated in the direction of squeezing to reduce the fuel injection amount. In addition, the catalytic combustion unit 1
When the temperature of 0 falls below a predetermined temperature, the bimetal 22 shortens and the amount of fuel injection increases due to the reverse operation.
It is possible to realize a stable combustion state as shown in.

【0016】運転停止時は、操作スイッチ25を再度押
し込むと燃料ガスおよび電流の供給が停止する。このよ
うに上記した実施例では、触媒燃焼部10の周囲に螺旋
状に配設されたバイメタル22を感熱部材として検知部
11を構成するので、構造が簡単になるとともに、触媒
燃焼部10の周囲を螺旋状に取り巻いた感熱部材によっ
て温度検知を行なうので、触媒燃焼部10の内部で不均
一な燃焼が生じた場合でも一部に偏した温度検知がされ
ず、安定した燃料調節のもとに触媒燃焼を行なわせるこ
とができる。また、バイメタル22は螺旋状に配設され
ているので、触媒燃焼部10によって加熱される面積が
広くなり、触媒燃焼部10周囲の温度変化をバイメタル
の機械的な変位として検知する際に、機械的な変位が大
きくなって検知精度を向上させることができる。また、
バイメタル22自体が熱遮蔽板の役割を果たすこともで
きる。
When the operation is stopped, the operation switch 25 is pushed again to stop the supply of the fuel gas and the electric current. As described above, in the above-described embodiment, since the detection unit 11 is configured by using the bimetal 22 spirally arranged around the catalytic combustion unit 10 as the heat-sensitive member, the structure is simplified and the surroundings of the catalytic combustion unit 10 are provided. Since the temperature is detected by the heat-sensitive member that surrounds the spiral shape, even if uneven combustion occurs inside the catalytic combustion unit 10, partial temperature detection is not performed and stable fuel adjustment is performed. Catalytic combustion can be performed. Further, since the bimetal 22 is arranged in a spiral shape, the area heated by the catalytic combustion unit 10 becomes large, and when detecting a temperature change around the catalytic combustion unit 10 as a mechanical displacement of the bimetal, The displacement is increased and the detection accuracy can be improved. Also,
The bimetal 22 itself can also serve as a heat shield.

【0017】上記した実施例において、予熱ネット19
の網目表面に白金やパラジウム等の触媒を担持した場合
には、混合気体の予熱段階において触媒酸化反応が一部
始まり、混合気体の加熱が促進されるので、触媒燃焼部
10での触媒燃焼をより速く、効率よく行なわせること
ができる。また、この実施例では予熱部8の熱源を炎燃
焼の火種28としたが、この火種は従来例のように触媒
燃焼に移行する段階で消すようにしてもよく、その場合
の混合気体の加熱は触媒を担持した予熱ネット19によ
って行なわれる。
In the above embodiment, the preheating net 19 is used.
When a catalyst such as platinum or palladium is carried on the mesh surface of, the catalytic oxidation reaction partially starts in the preheating stage of the mixed gas and the heating of the mixed gas is promoted. It can be done faster and more efficiently. Further, in this embodiment, the heat source of the preheating section 8 is the flame combustion flame 28, but this flame may be extinguished at the stage of transition to catalytic combustion as in the conventional example, and heating of the mixed gas in that case. Is carried out by a preheating net 19 carrying a catalyst.

【0018】[0018]

【発明の効果】この発明の携帯用ヘアードライヤによれ
ば、触媒燃焼部の周囲を螺旋状に取り巻くバイメタルに
よって温度検知を行なうので、燃焼温度の検知部を簡単
に構成でき、触媒燃焼部の内部で不均一な燃焼が生じた
場合でも、一部に偏した温度検知がされず、安定した燃
料調節のもとに触媒燃焼を行なわせることができる。
According to the portable hair dryer of the present invention, since the temperature is detected by the bimetal spirally surrounding the catalytic combustion portion, the combustion temperature detecting portion can be simply constructed, and the inside of the catalytic combustion portion can be easily constructed. Even if non-uniform combustion occurs, partial temperature detection is not performed, and catalytic combustion can be performed under stable fuel adjustment.

【図面の簡単な説明】[Brief description of drawings]

【図1】この発明の実施例の構成を示す断面図である。FIG. 1 is a sectional view showing a configuration of an embodiment of the present invention.

【図2】実施例の要部の構成を示す斜視図である。FIG. 2 is a perspective view showing a configuration of a main part of the embodiment.

【図3】図2において正面から見た場合を示す断面図で
ある。
FIG. 3 is a cross-sectional view showing a case when viewed from the front side in FIG.

【図4】触媒部温度等の時間経過に対する変化を示すグ
ラフである。
FIG. 4 is a graph showing changes in the temperature of the catalyst portion with time.

【図5】従来例の構成を示す一部断面図である。FIG. 5 is a partial cross-sectional view showing a configuration of a conventional example.

【符号の説明】[Explanation of symbols]

1 ヘアードライヤ 2 本体 3 ガスボンベ 4 ノズル 6 送風部 7 予混合部 8 予熱部 9 着火部 1 0 触媒燃焼部 1 1 検知部 1 2 制御部 1 7 制御弁 2 2 バイメタル 2 3 レバー(弁開閉機構) 1 Hair Dryer 2 Main Body 3 Gas Cylinder 4 Nozzle 6 Blower Part 7 Premixing Part 8 Preheating Part 9 Ignition Part 1 0 Catalytic Combustion Part 1 1 Detection Part 1 2 Control Part 1 7 Control Valve 2 2 Bimetal 2 3 Lever (valve opening / closing mechanism)

─────────────────────────────────────────────────────
─────────────────────────────────────────────────── ───

【手続補正書】[Procedure amendment]

【提出日】平成4年2月7日[Submission date] February 7, 1992

【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】0003[Name of item to be corrected] 0003

【補正方法】変更[Correction method] Change

【補正内容】[Correction content]

【0003】 このように構成された燃焼温度の検出部
は、触媒担体101が燃焼して周辺温度が上昇すると内
外管式熱検知部材が作動し、バーナー管102が伸長し
てレバー104をノズル105の弁部を閉じる方向(矢
印Xで示す方向)に揺動して燃料の供給量を絞る。ま
た、燃焼が充分でない場合は、バーナー管102が短縮
してノズル105の弁部を開く方向(矢印X’で示す方
向)に揺動して燃料の供給量を増やし燃焼温度を上昇さ
せる。
In the combustion temperature detecting portion configured as described above, when the catalyst carrier 101 burns and the ambient temperature rises, the inner and outer tube type heat detecting members operate, the burner tube 102 extends, and the lever 104 and the nozzle 105. Direction of closing valve part of (arrow
The fuel supply amount is reduced by rocking in the direction indicated by the mark X) . When the combustion is not sufficient, the burner tube 102 is shortened to open the valve portion of the nozzle 105 (the direction indicated by the arrow X ′).
Swings direction) to increase the combustion temperature to increase the supply amount of the fuel.

【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】0015[Correction target item name] 0015

【補正方法】変更[Correction method] Change

【補正内容】[Correction content]

【0015】 検知部11を構成するバイメタル22
は、この触媒燃焼部10からの輻射熱により、図3に示
すように矢印Q方向に伸長する。この実施例の場合、厚
み0.5mm、径35mmで3回巻きで170℃の温度
上昇とすると、約15度回転伸長する。例えば、触媒部
温度、燃料噴出量、バイメタル変位量の各時間経過に対
する変化を示す図4において、触媒燃焼部10の温度が
T1℃まで上昇して所定の温度を上回ると、それに対応
してバイメタル22が、図3の実線で示す位置から想像
線の状態までわん曲する。このとき、レバー23も想像
線の状態まで変位し、ノズル4の制御弁17を絞る方向
に回転させて燃料噴出量を減少させる。また、触媒燃焼
部10の温度が所定の温度を下回ると、バイメタル22
の逆方向のわん曲動作により燃料噴出量を増加させるの
で、図4に示すような安定した燃焼状態を実現すること
ができる。
Bimetal 22 that constitutes the detection unit 11
Is expanded in the direction of arrow Q as shown in FIG. 3 by the radiant heat from the catalytic combustion unit 10. In the case of this embodiment, when the temperature is increased to 170 ° C. by winding three times with a thickness of 0.5 mm and a diameter of 35 mm, it is rotationally extended by about 15 degrees. For example, in FIG. 4, which shows changes in the catalyst portion temperature, the fuel injection amount, and the bimetal displacement amount with the passage of time, when the temperature of the catalytic combustion portion 10 rises to T1 ° C. and exceeds a predetermined temperature, the bimetal is correspondingly changed. 22 bends from the position shown by the solid line in FIG. 3 to the state of the imaginary line. At this time, the lever 23 is also displaced to the state of the imaginary line, and the control valve 17 of the nozzle 4 is rotated in the direction of squeezing to reduce the fuel injection amount. Further, when the temperature of the catalytic combustion unit 10 falls below a predetermined temperature, the bimetal 22
Since the amount of fuel injection is increased by the bending motion in the opposite direction, a stable combustion state as shown in FIG. 4 can be realized.

【手続補正3】[Procedure 3]

【補正対象書類名】図面[Document name to be corrected] Drawing

【補正対象項目名】図5[Name of item to be corrected] Figure 5

【補正方法】変更[Correction method] Change

【補正内容】[Correction content]

【図5】 [Figure 5]

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 燃料ガスを収容するガスボンベと、この
ガスボンベから供給される燃料ガスを制御弁の開閉によ
って流量調整しながら噴出するノズルと、このノズルの
後方から空気を送風する送風部と、この送風部によって
送風される空気と燃料ガスをあらかじめ混合して混合気
体をつくる予混合部と、この予混合部によって混合され
た混合気体を所定の温度まで加熱する予熱部と、この予
熱部によって加熱された混合気体を触媒燃焼させる触媒
燃焼部と、この触媒燃焼部での燃焼温度を検知する検知
部と、この検知部での検知に応じて前記ノズルの制御弁
の開閉を制御してガスボンベからの燃料ガス供給量を制
御する制御部とからなる携帯用ヘアードライヤであっ
て、 前記検知部を、熱膨張率の異なる合金を張り合わせたバ
イメタルを前記触媒燃焼部の周囲に螺旋状に配設し、そ
の一端部をドライヤ本体に固着し、他端部が前記触媒燃
焼部の燃焼による加熱で機械的に変位するようにして構
成するとともに、前記制御部を、前記検知部に生じる機
械的変位によって前記制御弁の開度制御を行なう弁開閉
機構で構成した携帯用ヘアードライヤ。
1. A gas cylinder containing a fuel gas, a nozzle for ejecting the fuel gas supplied from the gas cylinder while adjusting the flow rate by opening and closing a control valve, a blower section for blowing air from the rear of the nozzle, A premixing unit that mixes the air blown by the blower unit and the fuel gas in advance to form a mixed gas, a preheating unit that heats the mixed gas mixed by the premixing unit to a predetermined temperature, and a heating unit that heats the preheating unit. From the gas cylinder by controlling the opening and closing of the control valve of the nozzle in response to the detection by the catalytic combustion unit that catalytically burns the mixed gas, the combustion temperature in this catalytic combustion unit, and the detection in this detecting unit. A portable hair dryer comprising a control unit for controlling the fuel gas supply amount of, wherein the detection unit is a bimetal formed by laminating alloys having different thermal expansion coefficients. A spiral arrangement is provided around the medium combustion section, one end of which is fixed to the dryer main body, and the other end is mechanically displaced by heating by combustion of the catalytic combustion section. A portable hair dryer having a valve opening / closing mechanism that controls the opening of the control valve by a mechanical displacement of the detection unit.
JP30314291A 1991-11-19 1991-11-19 Portable hair dryer Pending JPH05137613A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP30314291A JPH05137613A (en) 1991-11-19 1991-11-19 Portable hair dryer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP30314291A JPH05137613A (en) 1991-11-19 1991-11-19 Portable hair dryer

Publications (1)

Publication Number Publication Date
JPH05137613A true JPH05137613A (en) 1993-06-01

Family

ID=17917387

Family Applications (1)

Application Number Title Priority Date Filing Date
JP30314291A Pending JPH05137613A (en) 1991-11-19 1991-11-19 Portable hair dryer

Country Status (1)

Country Link
JP (1) JPH05137613A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1985197A1 (en) 2007-04-24 2008-10-29 Matsushita Electric Works, Ltd. Hair dryer with nozzle divided in two individual ducts
CN103292463A (en) * 2012-03-02 2013-09-11 爱烙达股份有限公司 Hot air gun

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1985197A1 (en) 2007-04-24 2008-10-29 Matsushita Electric Works, Ltd. Hair dryer with nozzle divided in two individual ducts
CN103292463A (en) * 2012-03-02 2013-09-11 爱烙达股份有限公司 Hot air gun

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