Abstract:
PROBLEM TO BE SOLVED: To provide a device for heating keratin fibers, and a corresponding method and a corresponding kit. SOLUTION: The method used for treating keratin fibers includes the following stages: a stage of applying tension to the keratin fibers; a stage of applying a reducing composition to the keratin fibers in order to reduce the disulfide bond of keratin; a stage of heating the keratin fibers by exposing the keratin fibers to infrared radiation light including light with a wavelength in a wavelength region of 700-1,400 nm, possibly after a rinse operation; and a stage of oxidizing and fixing the keratin fibers by applying an oxidizing composition in order to regenerate the disulfide bond. A heating device of the keratin fibers for practicing the method and a kit which includes the heating device of the keratin fibers and a treatment composition of the keratin fibers, are also provided. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a gas hair dryer which has resolved a sense of uneasiness or misunderstanding of a user by having an operation knob not stop between ON and OFF. SOLUTION: In the gas hair dryer 1 including a case 2 having an air suction and exhaust port, a motor 8 for turning a fan 9, an opening/closing valve 21 for opening/closing a gas flow path connected to a gas cylinder 26, a burner 5 for firing a gas, an igniter 6 for igniting the burner, and a freely slidable operation knob 39, series of ON/OFF control over the motor, the opening/closing valve, and the igniter are performed via an operation mechanism by operating the operation knob. A spring member 46 for forcibly returning the operation knob to return to an OFF position when the operation knob is located in the middle of the ON/OFF positions is connected to the operation mechanism. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a small-sized, easy-to-carry and handleable portable hair drier with excellent design. SOLUTION: The portable hair drier is provided with an outer case 10 whose transverse section is elliptic and for which the basic shape of a longitudinal section is roughly a right triangle whose hypotenuse has gentle swelling, and a hot air generation chamber 11 and a gas cylinder chamber 12 are connected at one end and disposed in a chevron shape inside the outer case 10. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To facilitate operation of an operation knob by enabling an ignition without increasing the operation stroke of the knob, reducing the outer dimension of a handle having the knob attached thereon, in a gas drier in which a series of operations of the operation knob are executed to energize a motor, open a gas passage and execute an ignition. SOLUTION: This gas-type drier comprises a case housing a blow-off port, an air intake port, a burner, an igniter, a motor, and a fan; a handle arranged next to this case; an operating switch 22 which turns on or off the power to a gas bomb as well as a motor provided within the handle; an open/close valve 21 which opens or closes the gas passage to the burner; an arm lever 32 which mechanically actuates the open/close valve; an ignition device which applies a high voltage to the igniter; and an operating knob 39 which is made slidable on the handle. The arm lever is turnably pivoted on one end, with leaving the other end facing the open/close valve as a free end, while the pivot part shaped in a slot hole 38 is to open or close the open/close valve. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To improve the gas ignition performance and the gas combustion performance, and to reduce the concentration of CO. SOLUTION: This combustion equipment 1 comprises a combustor 7 for burning the supplied combustion gas, an ejector 3 having a primary air hole part for sucking the primary air to the combustor 7 by ejector effect, and an ignition device 5 for igniting a mixture gas ejected from a wick 25 mounted in front of the ejector 3. The combustor 7 is composed of a primary combustion chamber 11 for igniting and burning the mixture gas ejected from the wick 25, a secondary air hole part 33 for supplying the secondary air to the burning gas after the ignition in the primary combustion chamber 11, a secondary combustion chamber 13 for further burning the gas burning in the primary combustion chamber 11, and a tertiary air hole part 35 for supplying the tertiary air to the gas burning in the secondary combustion chamber 13. The gas combustion performance can be improved, as the secondary air is supplied to the gas after ignition in the primary combustion chamber 11, even when the amount of primary air is reduced to improve the ignition performance of the mixture gas. COPYRIGHT: (C)2004,JPO&NCIPI