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
    • 1. 发明申请
    • EXPANSION TANK FOR VEHICLE COOLING SYSTEM
    • 汽车冷却系统膨胀罐
    • US20110048345A1
    • 2011-03-03
    • US12552808
    • 2009-09-02
    • Peter PopadiucMartin R. ZielkeLuis Carlos CattaniRobert L. RowellsGeorge L. Banta, IIIErnst Duerr
    • Peter PopadiucMartin R. ZielkeLuis Carlos CattaniRobert L. RowellsGeorge L. Banta, IIIErnst Duerr
    • F01P7/02F01P11/20
    • F01P11/029
    • An expansion tank (10) for a vehicle cooling system (18) of an engine using a liquid coolant (16) includes a tank body (12) defining a first volume (V1) containing coolant (16), wherein the coolant defines a variable coolant elevation level (CEL) within the tank body. The tank body (12) also defines an upper volume (20) containing air. A bladder (14) is disposed in the tank body (12) and defines a second volume (V2) containing air. The bladder (14) includes a flexible membrane (36) actuated by an actuator (46). When the engine is stopped or is below a predetermined temperature, the flexible membrane (36) is moveable to a first position (FP) which lowers the coolant elevation level (CEL), and when the engine is started or reaches a predetermined temperature, the flexible membrane (36) is moveable to a second position (SP) which raises the coolant elevation level. A communicating line (38) is in fluid communication between the upper volume (20) and the second volume (V2) to fluidly communicate air therebetween.
    • 一种用于使用液体冷却剂(16)的发动机的车辆冷却系统(18)的膨胀箱(10)包括限定含有冷却剂(16)的第一容积(V1)的罐体(12),其中冷却剂限定了可变 罐体内的冷却液升高高度(CEL)。 罐体(12)还限定容纳空气的上部容积(20)。 气囊(14)设置在罐体(12)中并且限定容纳空气的第二容积(V2)。 囊(14)包括由致动器(46)致动的柔性膜(36)。 当发动机停止或低于预定温度时,柔性膜(36)可移动到降低冷却剂高度水平(CEL)的第一位置(FP),并且当发动机起动或达到预定温度时, 柔性膜(36)可移动到提高冷却剂升高水平的第二位置(SP)。 连通管线(38)在上部容积(20)和第二容积(V2)之间流体连通,以在其间流体地连通空气。
    • 2. 发明授权
    • Expansion tank for vehicle cooling system
    • 车辆冷却系统扩容槽
    • US08397681B2
    • 2013-03-19
    • US12552808
    • 2009-09-02
    • Peter PopadiucMartin R. ZielkeLuis Carlos CattaniRobert L. RowellsGeorge L. Banta, IIIErnst Duerr
    • Peter PopadiucMartin R. ZielkeLuis Carlos CattaniRobert L. RowellsGeorge L. Banta, IIIErnst Duerr
    • F01P11/18F01P11/04
    • F01P11/029
    • An expansion tank (10) for a vehicle cooling system (18) of an engine using a liquid coolant (16) includes a tank body (12) defining a first volume (V1) containing coolant (16), wherein the coolant defines a variable coolant elevation level (CEL) within the tank body. The tank body (12) also defines an upper volume (20) containing air. A bladder (14) is disposed in the tank body (12) and defines a second volume (V2) containing air. The bladder (14) includes a flexible membrane (36) actuated by an actuator (46). When the engine is stopped or is below a predetermined temperature, the flexible membrane (36) is moveable to a first position (FP) which lowers the coolant elevation level (CEL), and when the engine is started or reaches a predetermined temperature, the flexible membrane (36) is moveable to a second position (SP) which raises the coolant elevation level. A communicating line (38) is in fluid communication between the upper volume (20) and the second volume (V2) to fluidly communicate air therebetween.
    • 一种用于使用液体冷却剂(16)的发动机的车辆冷却系统(18)的膨胀箱(10)包括限定含有冷却剂(16)的第一容积(V1)的罐体(12),其中冷却剂限定了可变 罐体内的冷却液升高高度(CEL)。 罐体(12)还限定容纳空气的上部容积(20)。 气囊(14)设置在罐体(12)中并且限定容纳空气的第二容积(V2)。 囊(14)包括由致动器(46)致动的柔性膜(36)。 当发动机停止或低于预定温度时,柔性膜(36)可移动到降低冷却剂高度水平(CEL)的第一位置(FP),并且当发动机起动或达到预定温度时, 柔性膜(36)可移动到提高冷却剂升高水平的第二位置(SP)。 连通管线(38)在上部容积(20)和第二容积(V2)之间流体连通,以在其间流体地连通空气。
    • 4. 发明申请
    • FLEX Dual Stage EGR Cooling
    • FLEX双级EGR冷却
    • US20110083648A1
    • 2011-04-14
    • US12577522
    • 2009-10-12
    • Luis Carlos CattaniRobert L. RowellsBashar Y. MelhemMartin R. Zielke
    • Luis Carlos CattaniRobert L. RowellsBashar Y. MelhemMartin R. Zielke
    • F02M25/07F02B47/08
    • F01P7/165F02B29/0406F02M26/05F02M26/24F02M26/32Y02T10/146
    • A circuit for cooling exhaust gas being recirculated through an EGR system (36) of an engine (10) from an exhaust system (20) successively through first and second heat exchangers (38, 40) to an intake system (16) for entrainment with intake air. Each heat exchanger has a respective coolant inlet through which liquid coolant enters and a respective coolant outlet through which liquid coolant exits after having absorbed heat from recirculated exhaust gas. The circuit has a third heat exchanger (32) to which coolant coming from the outlet of one of the first and second heat exchangers rejects heat, and parallel branches (84, 86) through which coolant enters the inlet of the other of the first and second heat exchangers. One of the parallel branches has a fourth heat exchanger (34) to which coolant flowing through that branch rejects heat, and one or more devices (50, 50A) for controlling the quantity of coolant flowing through each branch.
    • 一种用于冷却废气的回路,其通过来自排气系统(20)的发动机(10)的EGR系统(36)循环通过第一和第二热交换器(38,40)连续地进入到进气系统(16),用于夹带 进气。 每个热交换器具有相应的冷却剂入口,液体冷却剂通过该入口和相应的冷却剂出口,液体冷却剂在从再循环废气吸收热量后通过该冷却剂出口离开。 电路具有第三热交换器(32),来自第一和第二热交换器中的一个的出口的冷却剂从其中排出热量,以及平行的分支(84,86),冷却剂通过该分支(84,86)进入第一和第二热交换器中的另一个的入口, 第二热交换器。 一个并联分支具有第四热交换器(34),流经该分支的冷却剂流向该热交换器排出热量,以及用于控制流过每个分支的冷却剂量的一个或多个装置(50,50A)。
    • 10. 发明申请
    • Compressed Air Intake Engine Inlet Booster
    • 压缩进气引擎进气增压器
    • US20110083646A1
    • 2011-04-14
    • US12703546
    • 2010-02-10
    • Grzegorz SiuchtaRobert L. Rowells
    • Grzegorz SiuchtaRobert L. Rowells
    • F02B33/00F02B33/44
    • F02B33/32F02B33/44F02M23/003F02M26/05F02M29/06Y02T10/146
    • An inlet air booster system for increasing turbocharger response time by utilizing compressed air from an engine driven compressor. Compressed air used to supply air for air braking system is channeled into an air tank to provide a boost of compressed air into the intake manifold. The inlet air booster system comprises an air booster ring disposed around a manifold inlet supply pipe, an air supply source, and a control valve. Compressed air from the air tank flows along a compressed air supply pipe regulated by a control valve, which in its open position allows air flow to the air booster ring. The air booster ring comprises an air chamber and a plurality of nozzles angled towards the direction of intake gas flow to provide a burst of compressed air into the intake manifold. The angled flow of compressed air enhances the flow of intake air into the intake manifold.
    • 一种用于通过利用来自发动机驱动的压缩机的压缩空气来增加涡轮增压器响应时间的进气增压系统。 用于为空气制动系统供应空气的压缩空气被引导到空气罐中,以将压缩空气提升到进气歧管中。 入口空气增压系统包括设置在歧管入口供应管,空气供应源和控制阀周围的增压环。 来自空气罐的压缩空气沿着由控制阀调节的压缩空气供给管流动,该控制阀在其打开位置允许空气流到增压环。 空气增压环包括空气室和朝向进气流动方向成角度的多个喷嘴,以向进气歧管提供压缩空气的爆发。 压缩空气的倾斜流动增强了进入进气歧管的进气流。