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    • 11. 发明申请
    • Six-legged type piezoelectric vibration gyroscope
    • 六脚式压电振动陀螺仪
    • US20060230828A1
    • 2006-10-19
    • US10548102
    • 2004-03-05
    • Takeshi InoueMitsuru YamamotoAtsushi OchiKenji KuramotoMitsuhiro Nakajima
    • Takeshi InoueMitsuru YamamotoAtsushi OchiKenji KuramotoMitsuhiro Nakajima
    • G01P9/04G01P1/04G01C19/56
    • G01C19/5642
    • A six-legged type piezoelectric vibration gyroscope having a pair of exciting arms extending from a body (2) in a first direction (A1) with a space therebetween, one non-exciting arm (3c) extending in the first direction between the exciting arms from the body, a pair of detecting arms (4a, 4b) extending from the body in a second direction (A2) with a space therebetween, and one non-detecting arm (4c) extending in the second direction between the detecting arms from the body. The exciting arms are coupled with a drive-side electrode. The detecting arms are coupled with a detection-side electrode. The exciting arms, non-exciting arm, detecting arms, and non-detecting arm respectively consist of a piezoelectric. The respective exciting arms differ in width size from the non-exciting arm. The respective exciting arms differ in width size from the respective detecting arms. The respective exciting arms differ in width size from the non-detecting arm.
    • 一种六脚式压电振动陀螺仪,具有一对激励臂,其沿着第一方向(A 1)从主体(2)沿其间具有空间延伸,一对非励磁臂(3c)沿第一方向延伸到 来自身体的激励臂,一对从身体沿第二方向(A 2)延伸并具有空间的检测臂(4a,4b)和一个在第二方向上延伸的非检测臂(4c) 在身体的检测臂之间。 激励臂与驱动侧电极耦合。 检测臂与检测侧电极耦合。 激励臂,非励磁臂,检测臂和非检测臂分别由压电构成。 相应的激光臂的宽度尺寸与非激励臂不同。 各个激励臂的宽度尺寸与相应的检测臂不同。 各个激励臂的宽度尺寸与非检测臂不同。
    • 12. 发明授权
    • Ink jet printer head and piezoelectric actuator for the head
    • 喷墨打印机头和压电执行机构
    • US06719409B2
    • 2004-04-13
    • US10059184
    • 2002-01-31
    • Yasuhiro SasakiHirofumi NakamuraAtsushi Ochi
    • Yasuhiro SasakiHirofumi NakamuraAtsushi Ochi
    • B41J2045
    • B41J2/045B41J2/055B41J2/14B41J2002/14362B41J2202/11
    • An ink jet printer head and a piezoelectric actuator for the head, in which energy conversion efficiency from an electric energy to a mechanical vibration energy is high, and its mechanical displacement of a vibration transferring plate is large, are provided. An ink jet printer head having a piezoelectric actuator provides an upper electrode, a piezoelectric plate, a lower electrode, a vibration transferring plate, and a pressure chamber, whose shape is a rectangle and its length ratio of the short side to the long side is 0.8 or more and 1.0 or less. And the piezoelectric plate having the lower electrode is bonded to the vibration transferring plate at a position within the inside wall of the pressure chamber and the center positions of the piezoelectric plate and the pressure chamber are set to be almost equal. Therefore, the energy conversion efficiency of the piezoelectric plate can be utilized in its maximum, and the piezoelectric actuator whose mechanical displacement is large can be realized. Consequently, the industrial value of the ink jet printer head becomes large by applying the piezoelectric actuator to an ink jet printer.
    • 提供了一种喷墨打印机头和用于头部的压电致动器,其中从电能到机械振动能量的能量转换效率高,并且其振动传递板的机械位移大。 具有压电致动器的喷墨打印头具有矩形形状的上电极,压电板,下电极,振动传递板和压力室,其短边与长边的长度比为 0.8以上且1.0以下。 并且具有下电极的压电板在压力室的内壁内的位置处接合到振动传递板,并且压电板和压力室的中心位置被设定为几乎相等。 因此,能够最大限度地利用压电板的能量转换效率,能够实现机械位移大的压电致动器。 因此,通过将压电致动器施加到喷墨打印机,喷墨打印机头的工业价值变大。
    • 15. 发明授权
    • Multilayer electrostrictive element which withstands repeated
application of pulses
    • 可承受重复施加脉冲的多层电致伸缩元件
    • US4523121A
    • 1985-06-11
    • US493583
    • 1983-05-11
    • Sadayuki TakahashiMasatomo YonezawaAtsushi OchiTakeshi YanoTakeshige HamatsukiIzumu Fukui
    • Sadayuki TakahashiMasatomo YonezawaAtsushi OchiTakeshi YanoTakeshige HamatsukiIzumu Fukui
    • H01L41/083H01L41/18
    • H01L41/0471H01L41/0472H01L41/0474H01L41/0477H01L41/0478
    • A multilayer electrostrictive element has electrostrictive sections (31) defined by internal electrodes (32) in a stack, with a peripheral surface which has a predetermined outline perpendicularly of an axis of the stack, each internal electrode with an outline which is approximately congruent with the predetermined outline (constant cross-section). In order that external electrodes (33, 34) may readily be connected to the internal electrodes grouped by twos, each internal electrode may have a peripheral end which is partly recessed from the predetermined outline, as in FIG. 8. Alternatively, the internal electrodes of each group may be connected together by a conductor rod which passes through the electrostrictive sections, preferably along their edges, contacting alternate electrodes. For a great number of internal electrodes, an element may be manufactured by laminating conductive-paste-printed green sheets transversely of the stack axis and then sintering the lamination. Each internal electrode may include a ceramic material, such as an electrostrictive material of the electrostrictive sections, another electrostrictive material of a lower sintering temperature, or glass.
    • 多层电致伸缩元件具有由叠层中的内部电极(32)限定的电致伸缩部分(31),外周表面具有垂直于堆叠轴线的预定轮廓,每个内部电极具有与 预定轮廓(恒定截面)。 为了使外部电极(33,34)可以容易地连接到由二等分组成的内部电极,每个内部电极可以具有从预定轮廓部分凹进的外周端,如图1所示。 或者,每组的内部电极可以通过导电棒连接在一起,该导体棒穿过电致伸缩部分,优选沿其边缘接触交替电极。 对于大量的内部电极,可以通过将横向于堆叠轴线的导电糊印刷的生片层压然后烧结层压来制造元件。 每个内部电极可以包括陶瓷材料,例如电致伸缩部分的电致伸缩材料,较低烧结温度的另一电致伸缩材料或玻璃。
    • 19. 发明授权
    • Process for forming an electrophotographic photosensitive member with depressed portions by condensing a surface of a surface layer on which a coating liquid is present
    • 通过使表面层的表面冷凝而形成具有凹部的电子照相感光构件的工序,在该表面层上存在涂布液
    • US07413840B1
    • 2008-08-19
    • US11770081
    • 2007-06-28
    • Harunobu OgakiAtsushi Ochi
    • Harunobu OgakiAtsushi Ochi
    • G03G5/147
    • G03G5/14713G03G5/0525G03G5/14756
    • A production method of an electrophotographic photosensitive member which has high productivity when producing a surface layer in which depressed portions which are independent respectively are formed on an electrophotographic photosensitive member surface, and can produce highly uniform depressed portions in a photosensitive member surface, characterized by producing the surface layer by (1) a coating step of producing a coating liquid for a surface layer containing a binder resin and a specific solvent, and coating it on a surface of a cylindrical supporting member, (2) a condensation step of holding the cylindrical supporting member on which the coating liquid for a surface layer is coated, and condensing the surface of the cylindrical supporting member, and (3) a drying step of baking the cylindrical supporting member.
    • 一种电子照相感光构件的制造方法,其在生产表面层时具有高生产率,其中分别独立地分别形成有凹陷部分,形成在电子照相感光构件表面上,并且可以在感光构件表面中产生高度均匀的凹陷部分,其特征在于, 所述表面层通过以下步骤:(1)制备用于含有粘合剂树脂和特定溶剂的表面层的涂布液的涂布步骤,并将其涂布在圆柱形支撑构件的表面上;(2)冷凝步骤, 支撑构件,其上涂覆有用于表面层的涂布液,并且将圆筒形支撑构件的表面冷凝,以及(3)烘烤圆筒形支撑构件的干燥步骤。