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    • 2. 发明授权
    • Independent defroster outlet temperature and air flow control system
    • 独立除霜器出口温度和气流控制系统
    • US08939822B2
    • 2015-01-27
    • US12372090
    • 2009-02-17
    • Shinji KakizakiJunichi Kanemaru
    • Shinji KakizakiJunichi Kanemaru
    • B60H1/22B60H1/00
    • B60H1/00842B60H1/00064B60H2001/00092B60H2001/00107
    • An HVAC system is provided and includes an evaporator for providing cold air and a heater core for providing hot air. A heater airflow path directs an airflow through a heater air outlet where a heater damper door controls the volume of the airflow through the heater air outlet. A defroster airflow path directs an airflow through a defroster air outlet and a defroster damper door controls the volume of the airflow through the defroster air outlet. The defroster damper door operates independently from the heater damper door. A separation channel is located between the heater airflow path and the defroster airflow path to separate the airflow of the heater airflow path from the airflow of the defroster airflow path.
    • 提供HVAC系统,并且包括用于提供冷空气的蒸发器和用于提供热空气的加热器芯。 加热器气流路径引导气流通过加热器空气出口,加热器风门通过加热器空气出口控制气流的体积。 除霜器气流路径引导气流通过除霜器出风口,除霜器阻尼器门控制通过除霜器出风口的空气流量。 除霜器阻尼器门独立于加热器阻尼器门操作。 分离通道位于加热器气流路径和除霜器气流路径之间,以将加热器气流路径的气流与除霜器气流路径的气流分开。
    • 4. 发明申请
    • VEHICLE HVAC SYSTEM WITH RAM PRESSURE CONTROL
    • 具有RAM压力控制的车辆HVAC系统
    • US20120214394A1
    • 2012-08-23
    • US13031403
    • 2011-02-21
    • Junichi KanemaruShinji Kakizaki
    • Junichi KanemaruShinji Kakizaki
    • B60H1/26
    • B60H1/00471B60H1/00678B60H1/00764B60H1/00849B60H2001/00085
    • A blower unit for a vehicle HVAC system, which is operable in one of a fresh air mode, a recirculation air mode and a mixture mode, comprises a housing defining an exterior fresh air intake aperture and an interior recirculation air intake aperture. A suction passage is in communication with both the exterior and interior air intake apertures. A first door is operably associated with the exterior air intake aperture for selectively opening and closing the exterior air intake aperture. A second door operably associated with the interior air intake aperture for selectively opening and closing the interior air intake aperture. The first and second doors are movable independent of each other. A partition is located in the suction passage for at least partially dividing the suction passage. The partition is selectively engaged by at least one of the first and second doors depending on the mode of the HVAC system. In the mixture mode, the first door is configured to control ram pressure as vehicle speed increases to maintain a predetermined airflow ratio between fresh air flowing into the housing via the exterior air intake aperture and recirculation air flowing into the housing via the interior air intake aperture.
    • 用于车辆HVAC系统的鼓风机单元,其可以在新鲜空气模式,再循环空气模式和混合模式之一中操作,包括限定外部新鲜空气吸入孔和内部再循环空气进气孔的壳体。 吸入通道与外部和内部空气进气口两者连通。 第一门可操作地与外部空气进气孔相关联,用于选择性地打开和关闭外部空气进气孔。 可操作地与内部空气入口孔相关联的第二门,用于选择性地打开和关闭内部进气孔。 第一和第二门彼此独立地移动。 分隔件位于吸入通道中,用于至少部分地分开吸入通道。 根据HVAC系统的模式,该隔板由第一和第二门中的至少一个选择性地接合。 在混合模式中,第一门构造成在车辆速度增加时控制压头压力,以便经由外部空气进气孔流入壳体的新鲜空气和经由内部进气孔流入壳体的再循环空气之间保持预定的气流比 。