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    • 54. 发明申请
    • METHOD AND APPARATUS FOR OPERATING A TANK VENTILATION SYSTEM
    • 用于操作油箱通风系统的方法和装置
    • US20130213366A1
    • 2013-08-22
    • US13879585
    • 2011-10-12
    • Manfred Weigl
    • Manfred Weigl
    • F02M25/08
    • F02M25/0836F02D29/02F02D41/0042F02D41/0045F02M25/089
    • The tank ventilation system has an adsorption vessel, a regeneration duct and a pump. The adsorption vessel captures and temporarily stores fuel vapors emerging from a fuel tank. A purge air flow can flow through the adsorption vessel. The regeneration duct connects the adsorption vessel to an intake duct. In the regeneration duct there is arranged a pump designed to draw the purge air out of the adsorption vessel and admix the purge air to intake air in the intake duct. A density of the purge air which that flows in the regeneration duct is determined. Furthermore, a purge air mass flow flowing in the regeneration duct is determined as a function of the density of the purge air and a predefined pump characteristic of the pump.
    • 油箱通风系统具有吸附容器,再生管道和泵。 吸附容器捕获并临时储存从燃料箱排出的燃料蒸气。 吹扫空气流可以流过吸附容器。 再生管道将吸附容器连接到进气管道。 在再生管道中设置有用于将净化空气抽出吸附容器并将净化空气与进气管道中的进气混合的泵。 确定在再生管道中流动的吹扫空气的密度。 此外,在再生管道中流动的吹扫空气质量流被确定为吹扫空气的密度和泵的预定泵特性的函数。
    • 55. 发明申请
    • PIEZOELECTRIC ACTUATOR AND METHOD FOR PRODUCING THE SAME
    • 压电致动器及其制造方法
    • US20110062830A1
    • 2011-03-17
    • US12954245
    • 2010-11-24
    • Martin SchröderManfred Weigl
    • Martin SchröderManfred Weigl
    • H01L41/083H01L41/22
    • H01L41/0838H01L41/273Y10T29/42Y10T29/49126Y10T29/49155Y10T29/49163
    • A method for producing a piezoelectric actuator has the following steps: providing a plurality of piezoelectric material layers (2) which can be assembled into a stack; applying electrode layers (3) each having a recess (4, 4′) to the plurality of piezoelectric material layers, such that an alternating sequence of piezoelectric material layers and electrode layers is formed in the stack, wherein electrode layers with a recess (4) in a first recess zone and electrode layers with a recess (4′) in a second recess zone which differs from the first recess zone are alternatingly formed in the stack; and providing a stress-relieving material (5) in the first and second recesses, the stress-relieving material exhibiting electrically insulating properties after the stack is sintered, and preventing the individual material layers from adhering to one another.
    • 一种压电致动器的制造方法,具有以下步骤:提供可组装成叠层的多个压电体层(2) 将各个具有凹部(4,4')的电极层(3)施加到多个压电材料层,使得在堆叠中形成压电材料层和电极层的交替序列,其中具有凹部(4 ),并且在所述堆叠中交替地形成在与所述第一凹部区别的第二凹陷区域中具有凹部(4')的电极层; 并且在第一和第二凹部中设置应力消除材料(5),在堆叠烧结后表现出电绝缘性的应力释放材料,并且防止各个材料层彼此粘附。
    • 56. 发明申请
    • Piezoelectric Actuator and Method for Producing the Same
    • 压电致动器及其制造方法
    • US20080315717A1
    • 2008-12-25
    • US12091415
    • 2006-10-20
    • Martin SchroderManfred Weigl
    • Martin SchroderManfred Weigl
    • H01L41/083H01L41/22
    • H01L41/0838H01L41/273Y10T29/42Y10T29/49126Y10T29/49155Y10T29/49163
    • A method for producing a piezoelectric actuator has the following steps: providing a plurality of piezoelectric material layers (2) which can be assembled into a stack; applying electrode layers (3) each having a recess (4, 4′) to the plurality of piezoelectric material layers, such that an alternating sequence of piezoelectric material layers and electrode layers is formed in the stack, wherein electrode layers with a recess (4) in a first recess zone and electrode layers with a recess (4′) in a second recess zone which differs from the first recess zone are alternatingly formed in the stack; and providing a stress-relieving material (5) in the first and second recesses, the stress-relieving material exhibiting electrically insulating properties after the stack is sintered, and preventing the individual material layers from adhering to one another.
    • 一种压电致动器的制造方法,具有以下步骤:提供可组装成叠层的多个压电体层(2) 将各个具有凹部(4,4')的电极层(3)施加到多个压电材料层,使得在堆叠中形成压电材料层和电极层的交替序列,其中具有凹部(4 ),并且在所述堆叠中交替地形成在与所述第一凹部区别的第二凹陷区域中具有凹部(4')的电极层; 并且在第一和第二凹部中设置应力消除材料(5),在堆叠烧结后表现出电绝缘性的应力释放材料,并且防止各个材料层彼此粘附。
    • 59. 发明授权
    • Pressure sensor for detecting the pressure of a liquid
    • 用于检测液体压力的压力传感器
    • US06684708B2
    • 2004-02-03
    • US10182756
    • 2002-12-09
    • Manfred Weigl
    • Manfred Weigl
    • G01L700
    • G01L19/0672G01L19/0023G01L19/0618
    • A pressure sensor includes a pressure sensor element that is provided with a pressure sensor membrane. The pressure sensor element is held in a receiving part in a defined position during operation within a permissible operating pressure range by a spring element. When the permissible range is exceeded, a relative movement, acting against the spring force, between the pressure sensor element and the receiving part takes place, thereby increasing the volume of the space immediately upstream of the pressure sensor membrane. The design allows for a limitation of the pressure and for an effective protection of the pressure sensor membrane when the liquid is frozen.
    • 压力传感器包括设置有压力传感器膜的压力传感器元件。 压力传感器元件通过弹簧元件在允许的操作压力范围内在操作期间保持在接收部分中的限定位置。 当超过允许范围时,发生压力传感器元件和接收部件之间的抵抗弹簧力的相对运动,从而增加紧邻压力传感器膜上游的空间的体积。 该设计允许限制压力并且当液体被冷冻时有效地保护压力传感器膜。