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    • 4. 发明授权
    • Variable swash plate compressor
    • 可变斜盘压缩机
    • US06210124B1
    • 2001-04-03
    • US09492431
    • 2000-01-27
    • Bjoern FagerliLavlesh SudShane A. HarteVipen Khetarpal
    • Bjoern FagerliLavlesh SudShane A. HarteVipen Khetarpal
    • F04B128
    • F04B1/295
    • A variable swash plate compressor (10), including a housing (12), a top inlet (14A), a bottom inlet (14B) , a pumping chamber (16), a compression piston (18), a top outlet (20A), a bottom outlet (20B) , a drive shaft (22) , a control surface element (24), a pinnacle element (26), a swash plate (28), a bore (30) and a pocket (32) formed in the swash plate (28), a pivot element tip (38) and fulcrum piston assembly (40). Wherein the angle of the swash plate (28) relative to the drive shaft (22) is varied to bring about a larger or smaller travel path of the compression piston (18) and thereby increasing or decreasing the output capacity of the variable swash plate compressor (10).
    • 一种可变斜盘压缩机(10),包括壳体(12),顶部入口(14A),底部入口(14B),泵送室(16),压缩活塞(18),顶部出口(20A) ,底部出口(20B),驱动轴(22),控制表面元件(24),顶点元件(26),斜盘(28),孔(30)和形成在其中的凹穴 旋转斜盘(28),枢轴元件尖端(38)和支点活塞组件(40)。 其中斜盘(28)相对于驱动轴(22)的角度改变以产生压缩活塞(18)的更大或更小的行进路径,从而增加或减小可变斜盘压缩机(28)的输出容量 (10)。
    • 8. 发明授权
    • Soft start compressor clutch
    • 软启动压缩机离合器
    • US06290043B1
    • 2001-09-18
    • US09474623
    • 1999-12-29
    • John M. GinderLarry D. ElieShane A. HarteVipen KhetarpalAlex David Cohen
    • John M. GinderLarry D. ElieShane A. HarteVipen KhetarpalAlex David Cohen
    • F16D3500
    • F16D37/02F16D2037/002
    • An electromagnetic clutch (10) for an air conditioning compressor includes a generally cylindrical pulley (11) rotatably mounted on a compressor housing (16) and having an annular friction surface (21b), a driven member (12) mounted on a compressor shaft (13) and having an annular friction surface (21a) positioned radially adjacent the first friction surface to form an annular space (21c) therebetween. A quantity of flowable magnetic material (27) is provided in the annular space (21c) and a magnetic coil (34) is fixed on the housing adjacent thereto. A control (40,46,46′) connected to the magnetic coil (34) supplies electrical power from a power supply (47) to energize the magnetic coil and create magnetic flux in the annular space (21c) polarizing the magnetic material and frictionally coupling the first and second friction surfaces (21a,21b) to cause the pulley (11) to rotate the driven member (12). The control (40,46,46′) can pulse width modulate or ramp the supplied power for “soft” starting and/or stopping of the compressor.
    • 一种用于空调压缩机的电磁离合器(10)包括可旋转地安装在压缩机壳体(16)上并具有环形摩擦表面(21b)的大致圆柱形的滑轮(11),安装在压缩机轴上的从动构件(12) 并且具有径向相邻于第一摩擦表面的环形摩擦表面(21a),以在它们之间形成环形空间(21c)。 一定量的可流动的磁性材料(27)设置在环形空间(21c)中,并且电磁线圈(34)固定在与其相邻的壳体上。 连接到电磁线圈(34)的控制器(40,46,46')从电源(47)提供电力,以激励电磁线圈并在环形空间(21c)中产生磁通,使磁性材料和摩擦极化 联接第一和第二摩擦表面(21a,21b)以使滑轮(11)旋转从动构件(12)。 控制(40,46,46')可以对压缩机的“软”启动和/或停止进行脉宽调制或斜坡提供的功率。
    • 10. 发明授权
    • Electronic control strategy for A/C compressor
    • A / C压缩机的电子控制策略
    • US06675592B2
    • 2004-01-13
    • US10062946
    • 2002-02-02
    • Yong HuangRodney J. CallahanShane A. HarteLawrence William Smith
    • Yong HuangRodney J. CallahanShane A. HarteLawrence William Smith
    • F25B4900
    • B60H1/3207B60H2001/3245B60H2001/3255B60H2001/3263B60H2001/327F25B49/022F25B2600/023F25B2700/02F25B2700/2104F25B2700/2106F25B2700/21173
    • A method for controlling a vehicle air-conditioning system for cooling an interior of a vehicle is disclosed. The vehicle air conditioning system has a compressor coupled to an electronic control valve. The method includes reading a user manipulatable switch, determining a desired vehicle interior temperature based on the read user manipulatable switch, reading a plurality of sensors indicative of an interior and an exterior climate of the vehicle, determining a heat load on the vehicle air conditioning system, determining a desired evaporator discharge temperature, evaluating a humidity level inside the vehicle by determining a humidity ratio, filtering the updated electronic control valve duty cycle to obtain a new electronic control valve duty cycle based on the desired evaporator discharge temperature, and sending the new electronic control valve duty cycle to a compressor controller, wherein the controller is in communication with the electronic control valve and commands the valve to operate at the new duty cycle.
    • 公开了一种用于控制用于冷却车辆内部的车辆空调系统的方法。 车辆空调系统具有联接到电子控制阀的压缩机。 该方法包括读取用户可操纵开关,基于读取的用户可操纵开关来确定期望的车辆内部温度,读取指示车辆的内部和外部气候的多个传感器,确定车辆空调系统上的热负荷 ,确定所需的蒸发器排出温度,通过确定湿度比来评估车辆内的湿度水平,过滤更新的电子控制阀占空比,以基于期望的蒸发器排放温度获得新的电子控制阀占空比,并发送新的 电子控制阀工作循环到压缩机控制器,其中控制器与电子控制阀连通并且命令阀在新的占空比下操作。