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    • 1. 发明授权
    • Exhaust gas turbocharger for an internal combustion engine
    • 用于内燃机的废气涡轮增压器
    • US5855117A
    • 1999-01-05
    • US988275
    • 1997-12-10
    • Siegfried SumserErwin SchmidtMarco Schade
    • Siegfried SumserErwin SchmidtMarco Schade
    • F01D17/14F01D17/16F02B37/18F02B37/22F02C9/18F02B37/12
    • F01D17/143F01D17/167F02B37/025F02C9/18F02B37/22F05D2220/40Y02T10/144
    • In an exhaust gas turbocharger turbine for an internal combustion engine including a turbine housing with a turbine wheel disposed therein, an axially movable slide member having a front end with a vane structure is disposed in an annular gap formed in the turbine housing adjacent a radial flow passage leading to the turbine wheel such that the annular slide member is movable between a first position in which its vane structure is disposed in the radial flow passage and a second position in which the vane structure is received within the annular gap and blow off passages which extend through the turbine housing from the radial flow passage through the annular gap to the discharge side of the turbine are opened when the annular slide member is further retracted for discharging gas from the radial flow passage to the turbine discharge side while by-passing the turbine.
    • 在包括具有设置在其中的涡轮机叶轮的涡轮壳体的用于内燃机的排气涡轮增压器涡轮机中,具有叶片结构的前端的可轴向移动的滑动构件设置在涡轮机壳体中邻近径向流动的环形间隙 通道通向涡轮机叶轮,使得环形滑动构件可在其叶片结构设置在径向流动通道中的第一位置和叶片结构容纳在环形间隙内的第二位置之间移动,并且吹出通道, 当环形滑动构件进一步缩回以将气体从径向流动通道排放到涡轮机排放侧时,通过涡轮机壳体从径向流动通道通过环形间隙延伸到涡轮机的排放侧,同时旁通涡轮机 。
    • 5. 发明授权
    • Exhaust gas turbocharger for an internal combustion engine
    • 用于内燃机的废气涡轮增压器
    • US06854272B2
    • 2005-02-15
    • US10283682
    • 2002-10-30
    • Helmut FingerLothar LenkeErwin SchmidtSiegfried Sumser
    • Helmut FingerLothar LenkeErwin SchmidtSiegfried Sumser
    • F01D17/16F02C6/12F02D23/00F01B25/02
    • F01D17/165F02C6/12
    • An exhaust gas turbocharger for an internal combustion engine, which has an exhaust gas turbine in the exhaust system and a compressor in the induction system, comprises a variable turbine geometry, associated with the turbine, for adjustably setting a radial inlet cross section for the flow to the turbine rotor. The variable turbine geometry is configured as a guide cascade ring, which has guide vanes distributed over the periphery and encompasses the turbine rotor. The minimum distance between two adjacent guide vanes obeys a specified relationship with respect to the diameter of the turbine rotor and the number of guide vanes of the guide cascade ring. In addition, a flow edge is provided on the radially inner surface of each guide vane.
    • 一种用于内燃机的排气涡轮增压器,其在排气系统中具有排气涡轮机和在该感应系统中的压缩机,包括与该涡轮相关联的可变涡轮几何形状,用于可调节地设定该流量的径向入口横截面 到涡轮转子。 可变涡轮机几何形状被构造为引导级联环,引导级联环具有分布在周边上并包围涡轮转子的导向叶片。 两个相邻的导向叶片之间的最小距离相对于涡轮机转子的直径和引导级联环的导向叶片的数量达到规定的关系。 此外,在每个导叶的径向内表面上设置流动边缘。
    • 6. 发明授权
    • Turbocharged engine having engine compression braking control
    • 涡轮增压发动机具有发动机压缩制动控制
    • US06497097B2
    • 2002-12-24
    • US10100038
    • 2002-03-19
    • Erwin SchmidtSiegfried Sumser
    • Erwin SchmidtSiegfried Sumser
    • F02B3712
    • F02D41/0005B60T13/585F02D9/06Y02T10/42
    • An engine brake for a supercharged internal combustion engine for driving a motor vehicle is operated such that the working gas compressed during engine braking, prior to the end of the expansion cycle, is drawn at least partially from the working chambers of the engine through at least one throttle valve, with an exhaust turbocharger of the engine having an exhaust turbine with variable turbine geometry. The engine braking power is regulated based upon the travel of the throttle valve and/or an intake cross section of the exhaust turbine as a function of the operating parameters of the internal combustion engine and the vehicle driving speed. Upon issuance of a signal indicating a braking performance requirement from the driver, the required braking power is applied at least preferably through the engine brake.
    • 用于驱动机动车辆的增压内燃机的发动机制动器被操作,使得在发动机制动之前在膨胀循环结束之前压缩的工作气体至少部分地从发动机的工作室抽出 一个节气门,其中发动机的排气涡轮增压器具有具有可变涡轮几何形状的排气涡轮机。 作为内燃机的运行参数和车辆行驶速度的函数,基于节气门的行程和/或排气涡轮的进气截面来调节发动机制动功率。 当发出指示来自驾驶员的制动性能要求的信号时,至少优选地通过发动机制动器施加所需的制动功率。
    • 8. 发明授权
    • Motor braking arrangement
    • 电机制动布置
    • US5839281A
    • 1998-11-24
    • US736030
    • 1996-10-23
    • Siegfried SumserErwin Schmidt
    • Siegfried SumserErwin Schmidt
    • F02D9/06F02B37/12
    • F02B37/025F02D9/06Y02T10/144
    • In a motor braking arrangement for an internal combustion engine including a turbocharger having a charger connected to the engine by an air intake duct and a turbine connected to the engine by an exhaust gas pipe including an exhaust gas shut-off valve arranged upstream of the turbine, a by-pass line extends from the exhaust gas pipe upstream of the shut-off valve to a gas admission passage of the turbine adjacent the turbine wheel to drive the turbine wheel by the gases discharged from the exhaust gas pipe when the shut-off valve is closed for engine braking purposes.
    • 在一种用于内燃机的电动机制动装置中,所述内燃机包括涡轮增压器,所述涡轮增压器具有通过进气管连接到发动机的充电器,以及通过排气管连接到所述发动机的涡轮,所述排气管包括布置在所述涡轮机上游的废气截止阀 旁路线路从截止阀上游的废气管道延伸到与涡轮机叶轮相邻的涡轮的气体进入通道,以便在关闭时从排气管排出的气体驱动涡轮机叶轮 阀门关闭以用于发动机制动目的。
    • 10. 发明授权
    • Turbocharger system for internal combustion engine
    • 内燃机用涡轮增压器系统
    • US06256991B1
    • 2001-07-10
    • US09446526
    • 1999-12-27
    • Erwin SchmidtSiegfried Sumser
    • Erwin SchmidtSiegfried Sumser
    • F02D2300
    • F02B37/24F02D9/06F02D41/0005F02D41/0007F05B2200/11Y02T10/144Y02T10/42
    • In a turbocharger system for internal combustion engines, the internal combustion engine has at least one combustion chamber with a variable volume and a swept volume determined by the sum of the differential volumes between the smallest and largest volumes of the combustion chambers of the internal combustion engine. The turbocharger system associated to the internal combustion engine has at least one turbine arranged in the exhaust gas pipe of the internal combustion engine and provided with a flow channel which opens via an annular jet-shaped region onto a turbine wheel. A guiding apparatus arranged in the opening region of the flow channel has a variable guiding grid with adjustable guiding blades which make it possible to obtain free flow sections of different sizes and which acts as a throttle during braking in an adjustable manner, depending on the operational parameters of the internal combustion engine, for determining the narrowest flow section in the exhaust gas pipe that leads to the turbine. The system is characterized in that at maximum braking power the relation between the free flow section A in the exhaust gas pipe that leads to the turbine, the inlet diameter D of the turbine wheel and the swept volume VH of the internal combustion engine is described by the equation (I) when the braking power supplied by the internal combustion engine during braking is at its maximum, the turbo-braking factor (TBF) being smaller than 0.0005 (5%). The internal combustion engine and the turbocharger are matched so as to supply maximum braking power with low thermal stress.
    • 在用于内燃机的涡轮增压器系统中,内燃机具有至少一个具有可变体积的燃烧室和由内燃机的燃烧室的最小和最大容积之间的不同体积之和的总和确定的扫掠容积 。 与内燃机相关联的涡轮增压器系统具有布置在内燃机的排气管中的至少一个涡轮机,并且设置有经由环形喷射区域在涡轮机轮上打开的流动通道。 布置在流动通道的开口区域中的引导装置具有带可调引导叶片的可变引导格栅,其可以获得不同尺寸的自由流动部分,并且可以以可调整的方式在制动期间用作节流阀,这取决于操作 用于确定通向涡轮机的排气管中最窄的流动部分的内燃机的参数。 该系统的特征在于,在最大制动力下,通向涡轮机的废气管道中的自由流动部分A与涡轮机叶轮的入口直径D和内燃机的扫掠体积V H之间的关系由 在制动时由内燃机供给的制动功率处于其最大值时,涡轮制动系数(TBF)小于0.0005(5%)的公式(I)。 内燃机和涡轮增压器匹配,以提供具有低热应力的最大制动功率。