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    • 2. 发明授权
    • Additional contacting for an electrical component and piezoelectric component in the form of a multilayer structure
    • 多层结构形式的电气部件和压电部件的附加接触
    • US07015629B2
    • 2006-03-21
    • US10696690
    • 2003-10-29
    • Karl LubitzCarsten SchuhThorsten SteinkopffAndreas Wolff
    • Karl LubitzCarsten SchuhThorsten SteinkopffAndreas Wolff
    • H01L41/04
    • H01L41/0475H01L41/083
    • An additional contacting (30) for a piezoelectric component (10) is formed as a multilayer structure, wherein the piezoelectric component (10) is formed by a stack (16) of alternatingly arranged piezoelectric ceramic layers (11) and electrode layers (12, 13). The additional contacting (30) has a series of connecting elements (31) for connecting a metallization (15) of the electric component (10) to an electrical connecting element (19). In order to minimize mechanical loads during dynamic operation of the piezoelectric component (10), the additional contacting (30) is configured as an individual, structured component (32), especially in the form of a structured foil. Said structured foil (32) advantageously has a current conduction path (33) which is common to the connecting elements (31) and a contacting zone formed in the area of static base plate (17), wherein the additional contacting (30) is connected to the electrical connecting element in the area of said contacting zone.
    • 形成压电元件(10)的附加接触(30)作为多层结构,其中压电元件(10)由交替排列的压电陶瓷层(11)和电极层(12, 13)。 附加接触件(30)具有用于将电气部件(10)的金属化层(15)连接到电连接元件(19)的一系列连接元件(31)。 为了最小化压电部件(10)的动态操作期间的机械载荷,附加接触件(30)被构造为单独的结构部件(32),特别是结构化箔片形式。 所述结构化箔(32)有利地具有电流传导路径(33),其对于连接元件(31)是常见的,以及形成在静态基板(17)的区域中的接触区域,其中附加接触件(30)被连接 到所述接触区域中的电连接元件。
    • 3. 发明申请
    • Method for establishing a correlation between a first state of a piezoelectric component and a second state of the component and use of said correlation
    • 用于建立压电部件的第一状态和部件的第二状态与所述相关性的使用之间的相关性的方法
    • US20070151320A1
    • 2007-07-05
    • US10597104
    • 2005-01-12
    • Karl LubitzCarsten SchuhAndreas Wolff
    • Karl LubitzCarsten SchuhAndreas Wolff
    • G01L25/00
    • H01L41/257H01L41/083
    • A method for producing a correlation between a first state of a piezoelectric component (1, 20) comprising a piezoceramic element and a second state of the component comprises the following steps: a) a first group of components respectively in the first state is prepared (101), b) at least one defined characteristic of each component of the first group is determined (102), c) the piezoceramic element of the components of the first group is polarised, and a corresponding component of a second group in the second state is thus created from each component of the first group (103), d) at least one defined characteristic of each component of the second group is determined (104), and e) the correlation is produced by comparing the defined characteristics of each component of the first group with the defined characteristic of the corresponding component of the second group (105).
    • 一种用于产生包括压电陶瓷元件的压电元件(1,20)的第一状态与该部件的第二状态之间的相关性的方法包括以下步骤:a)分别在第一状态下的第一组分量 101),b)确定第一组的每个部件的至少一个限定的特性(102),c)第一组的部件的压电陶瓷元件被极化,并且第二组的相应部件处于第二状态 因此,由第一组(103)的每个组件创建,d)确定第二组的每个组件的至少一个定义的特征(104),以及e)通过将每个组件的定义特征 具有第二组(105)的对应部件的定义特性的第一组。
    • 4. 发明授权
    • Method for establishing a correlation between a first state of a piezoelectric component and a second state of the component and use of said correlation
    • 用于建立压电部件的第一状态和部件的第二状态与所述相关性的使用之间的相关性的方法
    • US07654126B2
    • 2010-02-02
    • US10597104
    • 2005-01-12
    • Karl LubitzCarsten SchuhAndreas Wolff
    • Karl LubitzCarsten SchuhAndreas Wolff
    • G01L25/00H01L41/24
    • H01L41/257H01L41/083
    • A method for producing a correlation between a first state of a piezoelectric component (1, 20) comprising a piezoceramic element and a second state of the component comprises the following steps: a) a first group of components respectively in the first state is prepared (101), b) at least one defined characteristic of each component of the first group is determined (102), c) the piezoceramic element of the components of the first group is polarised, and a corresponding component of a second group in the second state is thus created from each component of the first group (103), d) at least one defined characteristic of each component of the second group is determined (104), and e) the correlation is produced by comparing the defined characteristics of each component of the first group with the defined characteristic of the corresponding component of the second group (105).
    • 一种用于产生包括压电陶瓷元件的压电元件(1,20)的第一状态与该部件的第二状态之间的相关性的方法包括以下步骤:a)分别在第一状态下的第一组分量 101),b)确定第一组的每个部件的至少一个限定的特性(102),c)第一组的部件的压电陶瓷元件被极化,并且第二组的相应部件处于第二状态 因此,由第一组(103)的每个组件创建,d)确定第二组的每个组件的至少一个定义的特征(104),以及e)通过将每个组件的定义特征 具有第二组(105)的对应部件的定义特性的第一组。
    • 8. 发明授权
    • Piezoactuator and a method for producing a piezoactuator
    • 压电致动器和压电致动器的制造方法
    • US06998762B2
    • 2006-02-14
    • US10362936
    • 2001-07-06
    • Karl LubitzCarsten Schuh
    • Karl LubitzCarsten Schuh
    • H01L41/053H01L41/083
    • H01L41/0835H01L41/0536H01L41/273H01L41/335H02N2/02
    • The invention relates to a piezoactuator (1) comprising a piezoelectric body (4) and elements for pre-tensioning the piezoelectric body, consisting of a first (2) and a second (3) connecting element for transferring forces to the piezoelectric body (4). The actuator is provided with an element (6) for transferring tensile/pressure forces between the connecting elements (2, 3), said element being at least partially located in a gap (5) in the form of a bore in the piezoelectric body (4). According to the invention, the piezoactuator (1) is set to a defined working curve using the pre-tensioning elements (2, 3, 6). The piezoelectric body (4) is preferably produced by the lamination of piezoelectric layers, into which a gap is drilled after lamination and the component is subsequently sintered.
    • 本发明涉及一种包括压电体(4)的压电致动器(1)和用于预压缩压电体的元件,其由用于将力传递到压电体(4)的第一(2)和第二(3)连接元件 )。 致动器设置有用于在连接元件(2,3)之间传递拉伸/压力的元件(6),所述元件至少部分地位于压电体中的孔形式的间隙(5)中(5) 4)。 根据本发明,使用预张紧元件(2,3,6)将压电致动器(1)设定为限定的工作曲线。 压电体(4)优选通过层叠压电层而制成,压电层在层压之后在其中钻出间隙,随后烧结该组件。
    • 9. 发明申请
    • Piezoceramic composition, piezoceramic body comprising said composition and a method for producing said composition and said body
    • 压电陶瓷组合物,包含所述组合物的压电陶瓷体及其制备方法
    • US20050258718A1
    • 2005-11-24
    • US10516078
    • 2003-05-05
    • Hermann BodingerKarl LubitzCarsten Schuh
    • Hermann BodingerKarl LubitzCarsten Schuh
    • C01G23/00C01G25/00C04B35/491H01L41/083H01L41/187H01L41/273H01L41/43
    • C04B35/491C01G23/003C01G25/006C01P2004/61H01L41/083H01L41/1876H01L41/273H01L41/43
    • The invention relates to a piezoceramic composition with the general empirical formula Pb1-aREbZrxTiyTRzO3, in which RE represents a rare-earth element, selected from a group comprising europium, gadolinium, lanthanum, neodymium, praseodymium, promethium and/or samarium, with a rare-earth element fraction b, TR represents at least one transition metal, selected from the group comprising chromium, iron and/or manganese, with a transition metal valency W TR and a transition metal fraction z and whereby the following interrelation is valid: z>b/(4−W TR ). Homogenous PZT crystals with a maximum particle size are obtained even at low sintering temperatures by a non-stoichiometric dosing ratio of transition metal dosage to rare-earth element dosage. By varying the dosages, the piezoelectric characteristics of a PZT ceramic with said composition can be modified from those of a classic soft PZT to those of a classic hard PZT. The piezoceramic body is for example a monolithic, multi-layer piezoactuator, which can be used for multiple injections in the engine of a motor vehicle, as a result of a high d33 coefficient and low internal dissipation in the high-level signal range.
    • 本发明涉及一种具有一般经验公式的压电陶瓷组合物,其具有如下通式:Pb 1-a / b B x Ti x Ti 其中RE表示选自铕,钆,镧,钕,镨,ium and和/或钐的稀土元素, 使用稀土元素级分b,TR表示选自过渡金属化合价W SB SB和过渡金属馏分z的至少一种过渡金属(选自铬,铁和/或锰) 并且由此以下相关性有效:z> b /(4-W TR )。 即使在低烧结温度下,过渡金属剂量与稀土元素用量的非化学计量剂量比也可获得具有最大粒度的均匀PZT晶体。 通过改变剂量,可以将具有所述组合物的PZT陶瓷的压电特性从经典的软PZT改变为经典的硬PZT的压电特性。 压电陶瓷体是例如单片多层压电致动器,其可用于机动车辆的发动机中的多次注射,这是由于高的系数和低的内部耗散 高电平信号范围。