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    • 4. 发明授权
    • Fuel injection system for internal combustion engines, in particular diesel engines
    • 用于内燃机,特别是柴油发动机的燃油喷射系统
    • US06675774B2
    • 2004-01-13
    • US10147075
    • 2002-05-17
    • Kurt FrankFriedrich Boecking
    • Kurt FrankFriedrich Boecking
    • F02M5502
    • F02M63/004F02M55/025F02M63/0043F02M63/005F02M63/0225F02M63/028F02M2200/18
    • A fuel injection system for internal combustion engines, in particular Diesel engines, having a fuel reservoir which is supplied from a high-pressure pump and supplies fuel to a number of injectors corresponding to the number of cylinders of the engine, and has a pressure limiting valve, which is connected sealingly to the fuel reservoir, the pressure limiting valve having a valve housing, a high-pressure region, a low-pressure region, a valve seat oriented toward the inlet, an axially displaceable valve body, and a valve spring urging the valve body in the direction of the valve seat. The pressure limiting valve is integrated—at least partially—with the fuel reservoir, in such a way that at least the valve seat and the valve body are spatially associated with the fuel reservoir, and the seal sealing off the pressure limiting valve from the fuel reservoir is associated with the low-pressure region of the pressure limiting valve.
    • 一种用于内燃机,特别是柴油发动机的燃料喷射系统,具有从高压泵供应的燃料储存器,并向与发动机的气缸数相对应的多个喷射器供应燃料,并具有压力限制 阀,其密封地连接到燃料储存器,限压阀具有阀壳体,高压区域,低压区域,朝向入口定向的阀座,可轴向移动的阀体和阀弹簧 沿阀座的方向推动阀体。 压力限制阀至少部分地与燃料储存器集成,使得至少阀座和阀体与燃料储存器在空间上相关联,并且密封件将压力限制阀与燃料密封 储存器与压力限制阀的低压区域相关联。
    • 7. 发明授权
    • Device for damping vibrations on fuel injection systems having a high-pressure accumulating space
    • 用于在具有高压积聚空间的燃料喷射系统上阻尼振动的装置
    • US07040292B2
    • 2006-05-09
    • US10508552
    • 2002-12-13
    • Werner BruehmannKurt Frank
    • Werner BruehmannKurt Frank
    • F02M37/04
    • F02M55/025F02M55/005F02M2200/315F02M2200/50
    • The invention relates to a high-pressure accumulator for fuel injection systems, having a number of line connections corresponding to the number of chambers of an internal combustion engine. The accumulator has an essentially circular cross section delimited by an inner wall. The individual line connections each have a fuel-conveying longitudinal bore and, with the aid of a screw element, are held in a fitting fastened to the outside of the high-pressure accumulator. The screw element presses the respective high-pressure line connection into a seat. The high-pressure accumulator has an oscillation-damping valve integrated into it that includes a closing element, which is acted on by a spring body supported against a shaft connected to the closing element and is optionally supported against the inside of the high-pressure accumulator.
    • 本发明涉及一种用于燃料喷射系统的高压蓄能器,其具有对应于内燃机的腔室数量的多个线路连接。 蓄能器具有由内壁限定的基本圆形横截面。 单独的线路连接件各自具有燃料输送纵向孔,并且借助于螺钉元件将其保持在紧固到高压蓄能器外部的配件中。 螺杆元件将相应的高压线连接件压入座椅。 高压蓄能器具有集成在其中的振荡阻尼阀,其包括闭合元件,该闭合元件由支撑在与闭合元件连接的轴上的弹簧体作用,并且可选地支撑在高压蓄能器的内部 。
    • 9. 发明授权
    • Machine for manufacturing and packaging formed bodies of a mouldable substance
    • 用于制造和包装成型体的成型体
    • US06799409B2
    • 2004-10-05
    • US10360980
    • 2003-02-07
    • Frank AltvaterKurt Frank
    • Frank AltvaterKurt Frank
    • B65B6302
    • A01J21/02B65B1/385B65B3/323B65B9/067B65B25/06
    • Disposed above a loading section (16), on which horizontally arranged strip-shaped packaging material (P) is longitudinally movable, is a shaping wheel (20), which has an, in relation to the loading section (16), transverse central axis (22) and is rotatable about the latter. The shaping wheel (20) has a cylindrical peripheral surface (24) and contains a plurality of moulds (32) which are disposed at angular intervals, starting from the cylindrical peripheral surface (24), radially in relation to the central axis (22). The peripheral speed of the shaping wheel (20) corresponds to a slip-free rolling of its peripheral surface (24) on the packaging material (P). Each of the moulds (32) contains a piston (50) which is movable back and forth between a retracted position for filling the mould (32) with substance (M) and an advanced position for ejecting the consolidated formed body (F) in a radially outward direction onto the packaging material (P). The shaping wheel (20) travels successively through a filling area (34), in which the moulds (32) are filled with substance (M), a dwell area (36), after travelling through which the substance (M) contained in the mould (32) is a packageable formed body (F), and a deposit area (38), in which each formed body (F) may be deposited from its mould (32) directly on the packaging material (P).
    • 在水平布置的条形包装材料(P)纵向可移动的装载部分(16)上方设置有成形轮(20),其与装载部分(16)相对于横向中心轴线 (22)并且可围绕其旋转。 成型轮(20)具有圆柱形的外周表面(24)并且包含多个从圆柱形周向表面(24)以相对于中心轴线(22)径向延伸的角度间隔设置的模具(32) 。 成形轮(20)的圆周速度对应于其包装材料(P)上的周边表面(24)的无滑动滚动。 每个模具(32)都包含活塞(50),该活塞可以在用于将模具(32)填充到物料(M)的缩回位置和用于将固结的成形体(F)弹出的前进位置之间来回移动 朝向包装材料(P)的径向向外的方向。 成型轮(20)依次通过填充区域(34),在填充区域(34)中,模具(32)中填充有物质(M),停留区域(36) 模具(32)是可包装的成形体(F)和沉积区域(38),其中每个成型体(F)可以从其模具(32)直接沉积在包装材料(P)上。
    • 10. 发明授权
    • Method for detecting failure of a pump assembly in a pump module
    • 用于检测泵组件中泵组件故障的方法
    • US06601573B1
    • 2003-08-05
    • US09786539
    • 2001-07-06
    • Kurt Frank
    • Kurt Frank
    • F02D4122
    • F02D41/221F02D31/009
    • The invention relates to a method for detecting selection of a pump assembly (25, 32), for instance a fuel pump assembly, in which at least two pump assemblies are provided. By means of a control unit (12), the lambda signal is scanned continuously by means of lambda probes (21). As a function of the lambda signal ascertained, the maximum fuel injection quantity is limited to the supply quantity of a fuel pump assembly (25, 32), and simultaneously a limitation of the air quantity to the air quantity corresponding to the maximum fuel injection quantity is effected. The limitation of the maximum fuel injection quantity and of the associated air quantity is effected via a throttle valve element (13.1), which is triggered by the control unit (12).
    • 本发明涉及一种用于检测泵组件(25,32)的选择的方法,所述泵组件(例如燃料泵组件)设置有至少两个泵组件。 通过控制单元(12),通过λ探针(21)连续扫描λ信号。 作为确定的λ信号的函数,最大燃料喷射量被限制为燃料泵组件(25,32)的供给量,并且同时限制与最大燃料喷射量对应的空气量的空气量 受到影响 最大燃料喷射量和相关空气量的限制通过由控制单元(12)触发的节流阀元件(13.1)来实现。