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    • 5. 发明专利
    • Heat chamber of oil burning instrument
    • 石油燃烧仪器
    • JP2003336810A
    • 2003-11-28
    • JP2002148646
    • 2002-05-23
    • Corona Corp株式会社コロナ
    • KOYANAGI HITOSHIKUBOTA SHINICHITAKAHASHI TOSHIAKI
    • F23L9/00F23D3/10F23D3/12F24C5/00F24C5/08
    • PROBLEM TO BE SOLVED: To prevent unburned gas from being released in a room, by achieving complete combustion within one simple-structured heat chamber of an oil burning instrument. SOLUTION: The heat chamber comprises an inner cylinder 11 and an intermediate cylinder 12 having at least a large number of small holes 17, 18, 20, an outer glass cylinder 16 covering the intermediate cylinder, and an outer cylinder base 13 on which the outer glass cylinder 16 is placed. The upper end of the outer glass cylinder 16 is supported by an outer cylinder presser 19 connected to the upper end of intermediate cylinder 12. The inner cylinder 11 is shorter than the intermediate cylinder 12. A baffle 24 stands on a cover 22 at the top of the inner cylinder 11 and expands outwardly above the intermediate cylinder 12 and the outer glass cylinder 16 exceeding the diameter of the inner cylinder 11. A large-spaced secondary combustion chamber 21 surrounded by the intermediate cylinder 12 and the baffle 24 is formed over the inner cylinder 11. Therefore, complete combustion can be achieved in one simple-structured heat chamber without enlarging the instrument. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:通过在燃油器具的一个简单结构的加热室内实现完全燃烧来防止未燃气体在室内释放。 解决方案:加热室包括内筒11和具有至少大量小孔17,18,20的中间圆筒12,覆盖中间圆筒的外玻璃圆筒16和外圆筒基座13 外玻璃圆筒16被放置。 外玻璃圆筒16的上端由与中间圆筒12的上端连接的外筒加压件19支撑。内筒11比中间筒12短。挡板24位于顶盖22上 并且在中间圆筒12和外玻璃圆筒16上方向外膨胀超过内筒11的直径。由中间圆筒12和挡板24围绕的大间隔二次燃烧室21形成在 内筒11.因此,可以在一个简单结构的加热室中实现完全燃烧,而不需要放大仪器。 版权所有(C)2004,JPO
    • 6. 发明专利
    • HEATER
    • JP2001263820A
    • 2001-09-26
    • JP2000071800
    • 2000-03-15
    • MATSUSHITA ELECTRIC IND CO LTD
    • KOMENO NORIYUKIOGINO TOSHIROSHIGEOKA TAKEHIKOKITAMURA MOTOHIKOYASUKI SEIICHI
    • F24H3/04F24C5/08F24H9/18
    • PROBLEM TO BE SOLVED: To provide a heater for eliminating the need for heating a heat exchanger directly with a burner and at the same time the need for a convection fan into a room by efficiently radiating the heat of a combustion gas. SOLUTION: The heater is provided with a radiation body 12 having a heat- sampling surface 13 that is heated by a high-temperature gas and a radiation surface 14 that is heated by the high-temperature gas and at the same time generates radiation energy, a radiation surface heating air duct 16 for guiding the high-temperature gas to the radiation surface 14 and the heat-sampling surface 13, a heat-sampling surface heating air duct 15, a high-temperature gas diffusion prevention body 18 for transmitting at least one portion of radiation being generated from the radiation surface 14 and guiding a high- temperature gas that is emitted from the radiation surface heating air duct 16 to the radiation body 12, and a connection air duct 17 for connecting the radiation surface heating air duct 16 and the heat-sampling surface heating air duct 15 to a high-temperature gas generation means, thus increasing the heat transfer area of the radiation body 12 and hence a heat transfer rate. Further, by directing the radiation surface 14 downward, forward blowing can be intensified.
    • 9. 发明专利
    • FAR INFRARED HEATER FITTED WITH EXHAUST PIPE
    • JP2000161673A
    • 2000-06-16
    • JP35690398
    • 1998-11-30
    • TOYOTOMI KOGYO CO LTD
    • OKURA MICHITAKAMIYAJIMA TOMONORI
    • F24C5/08F24H3/06
    • PROBLEM TO BE SOLVED: To put the heating by far infrared radiation to practical use suitable for heating of a relatively wide space in which the warm air is hard to spread. SOLUTION: A combustion chamber 3 having no air vent in the outer wall continuous to a burner 2 provided within a frame 1 is arranged toward upward of the frame 1, and besides a plurality of heat exchange pipes 6 extending upward are attached to the top board 3a of the combustion chamber 3 constituted of a high cylinder, and this heater is provided with a tubular exhaust gas chamber 7 above the plural heat exchange pipes 6. A guard 4 is erected from the frame 1, surrounding the exhaust gas chamber 7 from the combustion chamber 3, and a top plate 5 attached to the end of the guard 4 is provided with an opening 5a at the center, and the roof 7a of the exhaust gas chamber 7 is arranged to face the opening, and also the exhaust gas chamber 7 and the top plate 5 are fixed by a mounting piece 7b. For the exhaust gas chamber 7, an exhaust pipe 9 is erected through a bent tube 9a, and the section from the exhaust pipe 9 to the combustion chamber 2 is integrated, and exhaust power of the combustion fan of the burner 2 is made up by the draft power of the exhaust pipe 9.