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    • 3. 发明授权
    • Hydraulic fan drive system employing binary control strategy
    • 采用二元控制策略的液压风机驱动系统
    • US07047911B2
    • 2006-05-23
    • US10604929
    • 2003-08-27
    • Neil E. RobbJames E. IgnatovichDale M. PickelmanTheodore A. MalottGary E. Hart
    • Neil E. RobbJames E. IgnatovichDale M. PickelmanTheodore A. MalottGary E. Hart
    • F01P7/02
    • F01P7/085F01P7/042F16D43/284
    • A hydraulically controlled fan drive system for controlling the cooling of an engine and having a method of engagement includes a housing assembly containing a hydraulic fluid and an engaging circuit. The engaging circuit includes a pitot tube coupled within the housing assembly that receives at least a portion of the hydraulic fluid as the housing assembly rotates to drive a clutch pack (and coupled fan) via static pressure. A fluid controller having binary control adjusts the static pressure within the pitot tube at a given rotational speed, thereby controlling the engagement of the clutch pack to a fully engaged drive (utilizing friction type engagement), a fully disengaged drive, and at least two partially engaged clutch positions (i.e. partially engaged utilizing a wet viscous type clutch engagement). To control static pressure release, the fluid controller may utilize a dual spool system valving arrangement or a parallel fixed orifice binary control.
    • 一种用于控制发动机冷却并具有接合方法的液压控制风扇驱动系统,包括容纳液压流体和接合回路的壳体组件。 接合电路包括耦合在壳体组件内的皮托管,其随着壳体组件旋转以接收经由静压力驱动离合器组件(和联接的风扇)的至少一部分液压流体。 具有二进制控制器的流体控制器以给定的转速调整皮托管内的静压力,由此控制离合器组件与完全接合的驱动(利用摩擦式接合),完全脱开的驱动器以及至少部分地 接合的离合器位置(即,使用湿粘性离合器接合部分接合)。 为了控制静压释放,流体控制器可以利用双阀芯系统阀装置或平行固定孔二进制控制。
    • 4. 发明授权
    • Magnetorheological fan coupling
    • 磁流变风扇联轴器
    • US07490707B2
    • 2009-02-17
    • US11163629
    • 2005-10-25
    • Neil E. RobbRick L. BoyerGary E. Hart
    • Neil E. RobbRick L. BoyerGary E. Hart
    • F16D37/02F16D35/00
    • F01P7/04F01P7/042F16D37/02F16D2037/002F16D2037/004
    • A magnetorheological fan coupling (10) having a fan-drive subassembly (12), an electromagnet subassembly (14), and a magnetic medium (16). The fan-drive subassembly (12) includes an output member (22) and an input member (20) rotatably mounted around the output member (22) with the magnetic medium (16) therebetween. The magnetic medium (16) has a shear stress that can be adjusted by a magnetic flux (24) for transferring torque between the input member (20) and the output member (22). The electromagnet subassembly (14) includes a stationary electromagnet coil (62) for adjusting the shear stress of the magnetic medium (16) and regulating a torque transferred between the input member (20) and the output member (22).
    • 具有风扇驱动子组件(12),电磁体组件(14)和磁介质(16)的磁流变风扇联轴器(10)。 风扇驱动子组件(12)包括输出构件(22)和输入构件(20),输入构件(20)可旋转地安装在输出构件(22)周围,其间具有介质(16)。 磁介质(16)具有可以通过用于在输入构件(20)和输出构件(22)之间传递扭矩的磁通量(24)来调节的剪切应力。 电磁体组件(14)包括用于调节磁介质(16)的剪切应力并调节在输入构件(20)和输出构件(22)之间传递的扭矩的固定电磁线圈(62)。
    • 5. 发明申请
    • MAGNETORHEOLOGICAL FAN COUPLING
    • 磁电风扇耦合
    • US20090145713A1
    • 2009-06-11
    • US12372668
    • 2009-02-17
    • Neil E. RobbRick L. BoyerGary E. Hart
    • Neil E. RobbRick L. BoyerGary E. Hart
    • F16D37/02
    • F01P7/04F01P7/042F16D37/02F16D2037/002F16D2037/004
    • A magnetorheological fan coupling (10) having a fan-drive subassembly (12), an electromagnet subassembly (14), and a magnetic medium (16). The fan-drive subassembly (12) includes an output member (22) and an input member (20) rotatably mounted around the output member (22) with the magnetic medium (16) therebetween. The magnetic medium (16) has a shear stress that can be adjusted by a magnetic flux (24) for transferring torque between the input member (20) and the output member (22). The electromagnet subassembly (14) includes a stationary electromagnet coil (62) for adjusting the shear stress of the magnetic medium (16) and regulating a torque transferred between the input member (20) and the output member (22).
    • 具有风扇驱动子组件(12),电磁体组件(14)和磁介质(16)的磁流变风扇联轴器(10)。 风扇驱动子组件(12)包括输出构件(22)和输入构件(20),输入构件(20)可旋转地安装在输出构件(22)周围,其间具有介质(16)。 磁介质(16)具有可以通过用于在输入构件(20)和输出构件(22)之间传递扭矩的磁通量(24)来调节的剪切应力。 电磁体组件(14)包括用于调节磁介质(16)的剪切应力并调节在输入构件(20)和输出构件(22)之间传递的扭矩的固定电磁线圈(62)。