会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Cooling water circuit system
    • 冷却水回路系统
    • US6082626A
    • 2000-07-04
    • US288748
    • 1999-04-08
    • Toshio MorikawaYoshimitsu InoueHajime ItoHikaru Sugi
    • Toshio MorikawaYoshimitsu InoueHajime ItoHikaru Sugi
    • F01P7/16B60H1/02B60H1/12F01P5/10F01P5/12F01P7/08
    • B60H1/02B60H1/12F01P5/10F01P2005/105F01P2005/125F01P2023/08F01P2025/32F01P2050/24F01P2060/08F01P7/08F01P7/162
    • In a cooling water circuit system, cooling water pumped by a mechanically-driven first water pump circulates in a cooling water circuit, and flows through a radiator and a heater core in parallel in the cooling water circuit. An electrically-driven second water pump is disposed in the cooling water circuit at a position where cooling water to be supplied to the radiator from the first water pump and cooling water to be supplied to the heater core from the first water pump flow together. A check valve is provided in the cooling water circuit in parallel with the second water pump so that cooling water flows in one way from a water suction side of the second water pump toward a discharge side thereof. Thus, when the second water pump is operated, a total amount of cooling water pumped by the first water pump and the second water pump can flow through the radiator and the heater core. As a result, the cooling water circuit system can improve engine-cooling effect in the summer, while improving heating effect of a passenger compartment in the summer.
    • 在冷却水回路系统中,由机械驱动的第一水泵泵送的冷却水在冷却水回路中循环,并且在冷却水回路中流过散热器和加热器芯。 电驱动的第二水泵设置在冷却水回路中,从第一水泵向散热器供给的冷却水和从第一水泵供给到加热器芯的冷却水一起流动。 在与第二水泵并联的冷却水回路中设置止回阀,使得冷却水从第二水泵的吸水侧向排出侧单向流动。 因此,当第二水泵操作时,由第一水泵和第二水泵泵送的冷却水的总量可以流过散热器和加热器芯。 结果,冷却水回路系统可以在夏季提高发动机冷却效果,同时提高夏季乘客车厢的加热效果。
    • 6. 发明授权
    • Vehicle air-conditioning system with heat exchanger having integrated
electric heaters and temperature control system
    • 具有集成电加热器和温度控制系统的换热器的车辆空调系统
    • US6037567A
    • 2000-03-14
    • US235182
    • 1999-01-22
    • Yoshimitsu InoueKoji TakahashiHajime Ito
    • Yoshimitsu InoueKoji TakahashiHajime Ito
    • B60H1/03B60H1/22
    • B60H1/2225B60H2001/2296
    • A vehicle air-conditioning system includes electric heating devices to accelerate a rise in temperature of air for heating a passenger compartment by accelerating a rise in temperature of warm water used to heat the air and by directly heating the air. Electric heating devices are built into a heat exchanger for heating so that the devices can release heat into surrounding air through radiating fins. When the system is in a heating operation region and the temperature of warm water available to flow through the heat exchanger is below a set temperature T.sub.2, the electric heating devices are turned on. A blower for blowing heating air into a passenger compartment through the heat exchanger is stopped, and a warm water valve is opened to allow the warm water to flow through the heat exchanger, whereupon heat from the electric heating devices is released through the radiating fins into the warm water inside the heat exchanger. When the temperature of the warm water rises above the set temperature T.sub.2, the blower is started, and heat from the electric heating devices is released through the radiating fins into the air blown by the blower.
    • 车辆空调系统包括电加热装置,用于通过加速用于加热空气的温水的升高和直接加热空气来加速用于加热乘客舱的空气的温度升高。 电加热装置内置在用于加热的热交换器中,使得装置可以通过散热片将热量释放到周围的空气中。 当系统处于加热操作区域并且可用于流过热交换器的温水的温度低于设定温度T2时,电加热装置被接通。 停止通过热交换器将加热空气吹入乘客室的鼓风机,打开温水阀,使温水流过热交换器,由此通过散热片将来自电加热装置的热量释放到 热交换器内的温水。 当温水的温度升高到设定温度T2以上时,鼓风机启动,来自电加热装置的热量通过散热片释放到由鼓风机吹送的空气中。