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    • 5. 发明申请
    • HEAT PUMP
    • 热泵
    • US20150096314A1
    • 2015-04-09
    • US14500573
    • 2014-09-29
    • Carrier Corporation
    • Mark ShoemakerAllen C. Kirkwood
    • F25B41/04F16K11/085F25B30/02
    • F25B41/046F16K11/0655F16K11/0743F25B13/00Y10T137/86839
    • A heat pump is provided including a plurality of lines having refrigerant flowing therethrough. A reversing valve is provided including a selector mechanism having a plurality of cavities formed therein and extending therethrough. A source of motion is coupled to the selector mechanism for movement of the selector mechanism. Each one of the plurality of cavities fluidly couples at least two of the plurality of lines. The selector mechanism is movable between a cooling mode and a heating mode so that the cavities fluidly couple different ones of the plurality of lines in each of the cooling mode and the heating mode. The selector mechanism will maintain its position with respect to the plurality of lines when the source of motion is de-energized, regardless of a pressure differential between different ones of the plurality of lines.
    • 提供一种热泵,其包括多个具有流过其中的制冷剂的管线。 提供了一种换向阀,其包括选择器机构,其具有形成在其中并延伸穿过其中的多个空腔。 运动源联接到选择器机构以用于选择器机构的移动。 多个空腔中的每一个流体地耦合多条线中的至少两条线。 选择器机构可以在冷却模式和加热模式之间移动,使得空腔在冷却模式和加热模式中的每一个中流体耦合多条管线中的不同管线。 当运动源被断电时,选择器机构将保持其相对于多条线的位置,而与多条线中的不同线之间的压力差无关。
    • 6. 发明授权
    • Multi-port valve
    • 多口阀
    • US08943801B2
    • 2015-02-03
    • US12933890
    • 2009-03-12
    • Todd R. Peterson
    • Todd R. Peterson
    • F02M25/06F02M25/07F16K1/22F16K11/052
    • F02M25/0729F02M26/21F02M26/26F02M26/54F02M26/70F02M26/71F16K1/22F16K11/0525Y10T137/86839Y10T137/86863
    • A valve (10) may be used with an internal combustion engine exhaust breathing system (12) and may include a body (60), a partition (62), and a plate (66). The body (60) may define a first port (70) that has a first interior surface (76), and may also define a second port (82) that has a second interior surface (84). The partition (62) may be located within the body (60), may at least partially separate the first port (70) and the second port (82) from each other, and may define an opening (104). The plate (66) may be dimensioned to seat and seal against the opening (104) and against the first and second interior surfaces (76, 84). The plate (66) may rotate, depending on predetermined factors, between a first position and a second position.
    • 阀(10)可以与内燃机排气呼吸系统(12)一起使用,并且可以包括主体(60),隔板(62)和板(66)。 主体(60)可以限定具有第一内表面(76)的第一端口(70),并且还可以限定具有第二内表面(84)的第二端口(82)。 分隔件62可以位于主体60内,可以将第一端口70和第二端口82彼此至少部分地分开,并且可限定开口104。 板(66)的尺寸可以被安置和密封抵靠开口(104)并抵靠第一和第二内表面(76,84)。 根据预定因素,板(66)可以在第一位置和第二位置之间旋转。
    • 8. 发明授权
    • Flow path switching valve
    • 流路切换阀
    • US08813784B2
    • 2014-08-26
    • US12993357
    • 2009-05-13
    • Hideki MinamizawaNaoki Kusaka
    • Hideki MinamizawaNaoki Kusaka
    • F16K15/18F16K25/02F25B13/00
    • F16K11/0743F25B41/046Y10T137/86839Y10T137/86863
    • A flow path switching valve arranged to rotate a main valve with an auxiliary valve to switch a cooling state and a heating state, which provides a reliable operation of the main valve by simplifying the rotation movement of the auxiliary valve and the main valve and provides reduced switching time. An outdoor heat exchanger-side pressure equalizing hole and an indoor heat exchanger-side pressure equalizing hole are formed at the main valve. An occluding portion for opening and closing of the pressure equalizing holes is formed at the auxiliary valve. The main valve is rotated 90 degrees by merely operating the auxiliary valve along one direction in forward or reverse direction to switch between the cooling state and the heating state.
    • 一种流路切换阀,其配置为使主阀与辅助阀旋转以切换冷却状态和加热状态,其通过简化辅助阀和主阀的旋转运动来提供主阀的可靠操作,并且减小 切换时间。 在主阀处形成有室外热交换器侧均压孔和室内热交换器侧均压孔。 在辅助阀上形成有用于打开和关闭均压孔的闭塞部分。 主阀通过仅在正向或反向的一个方向上操作辅助阀来旋转90度,以在冷却状态和加热状态之间切换。