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    • 4. 发明专利
    • Drier
    • 干燥机
    • JP2005083619A
    • 2005-03-31
    • JP2003314045
    • 2003-09-05
    • Sanyo Electric Co Ltd三洋電機株式会社
    • MASUDA TETSUYAMUKOYAMA HIROSHIONO KIMITOTADANO MASAYATOMOCHIKA KAZUYOSHINAGAE ETSUSHINAKAMURA TAKAHIROMORISHIGE MASAKATSUTAKEUCHI HARUMIFUJIKAWA KIYOKAZUKAWAMURA TAMOTSUOSANO MOTOHIKOAKIYAMA SHINICHIKOUMOTO NOBUHISA
    • F25B1/00D06F58/02D06F58/20F25B9/00F25B39/04F26B11/02F26B21/04F26B21/08F28D1/047F28F1/32
    • D06F58/206D06F58/02F25B9/008F25B2309/061F26B11/028F26B21/086F28D1/0477F28D2021/0073F28F1/32
    • PROBLEM TO BE SOLVED: To shorten drying time of a drying object, by improving heat exchange capacity in a radiator and an evaporator, by shortening time required for washing operation, in a washing drier. SOLUTION: This washing drier 100 has a storage chamber 10 for storing a wash (the drying object), and performs drying operation of the wash in the storage chamber 10. The washing drier is formed by successively annularly connecting a compressor 21, a gas cooler 22 as the radiator, an expansion valve 23 (a decompression device) and the evaporator 24 by a pipe, and has a coolant circuit 20 using carbon dioxide as a coolant, and having the high pressure side becoming supercritical pressure, and an air blower 75 as an air blowing means for exchanging heat of air passing through into the storage chamber 10 with the evaporator 24, by delivering the air of exchanging heat with the gas cooler 22 in the storage chamber 10. The washing drier is constituted so as to become an opposed flow in the flowing direction of air ventilated in the gas cooler 22 by the air blower 75, and the flowing direction of the coolant flowing in the gas cooler 22; and to become an opposed flow in the flowing direction of air ventilated in the evaporator 24, and the flowing direction of the coolant flowing in the evaporator 24. COPYRIGHT: (C)2005,JPO&NCIPI
    • 待解决的问题:为了缩短干燥物的干燥时间,通过在洗涤干燥机中缩短洗涤操作所需的时间,通过提高散热器和蒸发器的热交换能力来缩短干燥时间。 解决方案:该洗涤干燥机100具有用于存储洗涤物(干燥物体)的储存室10,并且在储存室10中进行洗涤的干燥操作。洗涤干燥器通过将压缩机21, 作为散热器的气体冷却器22,通过管道的膨胀阀23(减压装置)和蒸发器24,并且具有使用二氧化碳作为冷却剂并且使高压侧成为超临界压力的冷却剂回路20,并且 作为用于与通过蒸发器24通过进入储存室10的空气的热量的空气鼓风机75,通过将与储气室10中的气体冷却器22进行热交换的空气传送到储存室10中。洗涤干燥器构成为 在气体冷却器22中通过鼓风机75和在气体冷却器22中流动的冷却剂的流动方向在流动方向成为相反的流动; 并且成为在蒸发器24中通风的空气流动方向上的相反流动,以及在蒸发器24中流动的冷却剂的流动方向。(C)2005年,JPO&NCIPI
    • 9. 发明专利
    • Hot air supply device and hot air supply method
    • 热空气供应装置和热空气供应方法
    • JP2010185649A
    • 2010-08-26
    • JP2009237212
    • 2009-10-14
    • Omron Corpオムロン株式会社
    • MISUMI SHUICHI
    • F26B21/00
    • F26B21/10F26B21/086Y02P80/156
    • PROBLEM TO BE SOLVED: To supply hot air required for work processing in a factory for manufacturing and assembling at low cost while being minimized in the loss of energy, while enhancing the temperature accuracy of the hot air.
      SOLUTION: The hot air supply method includes steps for: generating hot air having a temperature lower than a desired set temperature of hot air by a heat pump 31, and heating the hot air generated by the heat pump 31 by a heater 41 while controlling the heater by a temperature adjustment means 51 to adjust the temperature of the generated hot air to the set temperature.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了在工厂中以低成本提供制造和组装所需的工作加工所需的热空气,同时在减少能量的同时最小化同时提高热空气的温度精度。 解决方案:热风供应方法包括以下步骤:通过热泵31产生温度低于期望的热空气设定温度的热空气,并且通过加热器41加热由热泵31产生的热空气 同时通过温度调节装置51控制加热器,以将所产生的热空气的温度调节到设定温度。 版权所有(C)2010,JPO&INPIT