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    • 71. 发明授权
    • Piezoelectric/electrostrictive device
    • 压电/电致伸缩器件
    • US06452309B1
    • 2002-09-17
    • US09627260
    • 2000-07-28
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • H01L4108
    • H01L41/0946H01L41/27
    • A piezoelectric/electrostrictive device is disclosed comprising a driving portion to be driven by a displacement of a piezoelectric/electrostrictive element, a movable portion to be operated by a drive of the driving portion, a fixing portion for holding the driving portion and the movable portion, the movable portion being coupled with the fixing portion via the driving portion, and a hole formed by inner walls of the driving portion, an inner wall of the movable portion, and an inner wall of the fixing portion. The driving portion comprises a pair of mutually opposing thin plate portions, and a piezoelectric/electrostrictive element including a piezoelectric/electrostrictive operating portion comprising at least a pair or more of electrodes and a piezoelectric/electrostrictive layer formed on at least a part of the outer surface of at least one thin plate portion out of the thin plate portions, one end of the piezoelectric/electrostrictive operating portion in a direction in which the fixing portion is connected with the movable portion exists on the fixing portion or the movable portion, and the other end of the piezoelectric/electrostrictive operating portion is arranged on the thin plate portion, and at least a piezoelectric/electrostrictive layer of the piezoelectric/electrostrictive element exists extending over the movable portion and the fixing portion. The device of the present invention, having high rigidity in the width direction of the thin plate portions, namely in the Y-axis direction, enables rigid joining when functional parts such as sensors, magnetic heads, or the like are fixed to the present device, and further when the present device per se is fixed to another structure.
    • 公开了一种压电/电致伸缩器件,其包括驱动部分,该驱动部分由压电/电致伸缩元件的位移驱动,通过驱动部分的驱动而操作的可动部分,用于保持驱动部分和可动部分的固定部分 所述可移动部分经由所述驱动部分与所述固定部分联接,以及由所述驱动部分的内壁,所述可移动部分的内壁和所述固定部分的内壁形成的孔。 驱动部分包括一对相互相对的薄板部分,以及包括压电/电致伸缩操作部分的压电/电致伸缩元件,所述压电/电致伸缩操作部分包括至少一对或多个电极和形成在外部的至少一部分上的压电/电致伸缩层 至少一个薄板部分的表面在薄板部分之外,压电/电致伸缩操作部分的固定部分与可动部分连接的方向的一端存在于固定部分或可移动部分上,并且 压电/电致伸缩操作部分的另一端设置在薄板部分上,至少压电/电致伸缩元件的压电/电致伸缩层存在于可移动部分和固定部分上方延伸。 本发明的薄板部的宽度方向的刚性即Y轴方向的本发明的装置能够在诸如传感器,磁头等功能部件被固定在本装置上时进行刚性接合 并且当本装置本身固定到另一结构时。
    • 73. 发明授权
    • Piezoelectric/electrostrictive device having convexly curved diaphragm
    • 具有凸形弯曲隔膜的压电/电致伸缩器件
    • US06407481B1
    • 2002-06-18
    • US09516947
    • 2000-03-01
    • Yukihisa TakeuchiKazuhiro YamamotoKoji Kimura
    • Yukihisa TakeuchiKazuhiro YamamotoKoji Kimura
    • H01L4104
    • H01L41/0926Y10S310/80
    • A piezoelectric/electrostrictive device is formed with a connecting plate, a diaphragm, and a substrate which are mutually joined. A joining direction of the connecting plate with the substrate and a joining direction of the connecting plate with the diaphragm are mutually intersected to form a cross. The diaphragm is straddled between the connecting plate and the substrate. A piezoelectric element is arranged on a surface of the diaphragm, and the diaphragm is convexly curved in a direction perpendicular to the two directions forming the cross. The piezoelectric/electrostrictive device is an element for converting electrical energy into mechanical energy such as a mechanical displacement, force or vibrations. Conversely, the piezoelectric/electrostrictive device may be employed to convert mechanical energy into electrical energy, as well as improve the operational characteristics thereof.
    • 压电/电致伸缩器件形成有相互连接的连接板,隔膜和基板。 连接板与基板的接合方向和连接板与隔膜的接合方向相互交叉形成十字形。 隔膜横跨连接板和基板之间。 压电元件布置在隔膜的表面上,并且隔膜在垂直于形成十字的两个方向的方向上凸起地弯曲。 压电/电致伸缩器件是用于将电能转换成诸如机械位移,力或振动的机械能的元件。 相反,可以使用压电/电致伸缩器件将机械能转换成电能,以及改善其操作特性。
    • 74. 发明授权
    • Double-headed mass sensor and mass detection method
    • 双头质量传感器和质量检测方法
    • US06389877B1
    • 2002-05-21
    • US09367294
    • 1999-08-10
    • Yukihisa TakeuchiTakao OhnishiKoji Kimura
    • Yukihisa TakeuchiTakao OhnishiKoji Kimura
    • G01N1100
    • G01G3/16
    • There is provided a double-headed mass sensor (25) in which between a first connecting plate (22A) joined to a first diaphragm (21A) at respective sides and a second connecting plate (22B) joined to a second diaphragm (21B) at respective sides, a first sensing plate (41A), on which a main element (44) is provided on at least one plane surface, is bridged, and a resonating portion comprising the diaphragms (21A), (21B), the connecting plates (22A), (22B), the first sensing plate (41A) and the main element (44) is joined to a sensor substrate (27). Change in the mass of each of the diaphragms (21A), (21B) is measured by measuring change in the resonant frequency of the resonating portion accompanying the change in the mass of the diaphragms (21A), (21B). The mass sensor of the present invention enables the easy and highly accurate measurement of a minute mass of a nanogram order including microorganisms such as bacteria and viruses, chemical substances, and the thickness of vapor-deposited films.
    • 提供了一种双头质量传感器(25),其中在与第二隔膜(21B)接合的第一连接板(22A)和与第二隔膜(21B)接合的第二连接板(22B)之间 相互的侧面,在至少一个平面上设置有主要元件(44)的第一传感板(41A)被桥接,并且包括隔膜(21A),(21B),连接板 22A),(22B),第一感测板(41A)和主要元件(44)接合到传感器基板(27)。 (21A),(21B)的质量的变化通过测量伴随着膜片(21A),(21B)的质量变化的共振部分的共振频率的变化来测量每个膜片(21A),(21B)的质量的变化。 本发明的质量传感器能够容易且高度精确地测量包括细菌和病毒等微生物,化学物质以及气相沉积膜的厚度的纳刻级的微小质量。
    • 75. 发明授权
    • Piezoelectric/electrostrictive device having mutually opposing thin plate portions
    • 具有相互相对的薄板部分的压电/电致伸缩器件
    • US06351056B1
    • 2002-02-26
    • US09494075
    • 2000-01-28
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • H01L4104
    • H01L41/43H01L41/0946H01L41/314
    • A piezoelectric/electrostrictive device including a driving portion, a movable portion, a fixing portion for holding the driving portion and the movable portion, the movable portion being coupled with the fixing portion via the driving portion, and a hole formed by inner walls of the driving portion, movable portion, and fixing portion. The driving portion includes a pair of mutually opposing thin plate portions and a piezoelectric/electrostrictive (P/E) element. A P/E operating portion of the P/E element is arranged on at least a part of an outer surface of at least one of the thin plate portions, such that one end thereof exists on the fixing portion or the movable portion and the other end thereof is arranged on the thin plate portion. At least one end of a P/E layer of the P/E element exists on the fixing portion or the movable portion, and the other end is arranged on the thin plate portion. The Young's modulus Y1 of a material composing the thin plate portions and the Young's modulus Y2 of a material composing the P/E layer have a relationship satisfying 1
    • 一种压电/电致伸缩装置,包括驱动部分,可动部分,用于保持驱动部分和可动部分的固定部分,可动部分通过驱动部分与固定部分相连,以及由内壁形成的孔 驱动部分,可动部分和固定部分。 驱动部分包括一对相互相对的薄板部分和压电/电致伸缩(P / E)元件。 P / E元件的AP / E操作部分布置在至少一个薄板部分的外表面的至少一部分上,使得其一端存在于固定部分或可移动部分上,另一端 布置在薄板部分上。 P / E元件的P / E层的至少一端存在于固定部或可动部上,另一端配置在薄板部上。 构成薄板部分的材料的杨氏模量Y1和构成P / E层的材料的杨氏模量Y2具有满足1
    • 76. 发明授权
    • Mass sensor and mass sensing method
    • 质量传感器和质量感测方法
    • US06326563B1
    • 2001-12-04
    • US09401625
    • 1999-09-22
    • Yukihisa TakeuchiTakao OhnishiKoji Kimura
    • Yukihisa TakeuchiTakao OhnishiKoji Kimura
    • G01G314
    • G01G3/13
    • A mass sensor includes a diaphragm, a sensing plate having a piezoelectric element arranged on at least a part of at least one surface joining respective sides, a connecting plate sandwiched by the diaphragm and the sensing plate, wherein the diaphragm, the sensing plate, the piezoelectric element, and the connecting plate form a resonating portion. The connecting plate is bridged across the side surfaces of a concave portion formed in a sensor substrate, and the sensing plate is joined to at least the bottom portion of the concave portion. Change in the mass of the diaphragm is measured by measuring change in the resonant frequencies of the resonating portion accompanying the change in the mass of the diaphragm. The mass sensor enables the easy and accurate measurement of a minute mass of a nanogram order including microorganisms such as bacteria and viruses, or chemical substances, or the thickness of vapor-deposited films.
    • 质量传感器包括隔膜,具有布置在连接相应侧面的至少一个表面的至少一部分上的压电元件的感测板,由隔膜和感测板夹持的连接板,其中隔膜,感测板, 压电元件和连接板形成谐振部分。 连接板跨接在形成在传感器基板中的凹部的侧面,并且感测板至少与凹部的底部接合。 通过测量伴随隔膜质量变化的谐振部分的谐振频率的变化来测量隔膜质量的变化。 质量传感器能够容易且准确地测量包括诸如细菌和病毒等微生物或化学物质的纳刻级的微小质量或气相沉积膜的厚度。
    • 78. 发明授权
    • Alkaline battery separator and process for producing the same
    • 碱性电池分离器及其制造方法
    • US06183913B2
    • 2001-02-06
    • US08937838
    • 1997-09-25
    • Masanao TanakaKoji KimuraNobutoshi Tokutake
    • Masanao TanakaKoji KimuraNobutoshi Tokutake
    • H01M216
    • H01M2/162D01F8/06D04H1/49D04H1/54D04H5/02D04H5/03D04H5/06H01M2/1633H01M10/24
    • An alkaline battery separator comprising a hydrophilic nonwoven fabric obtainable by heat-fusing and hydro-entangling (1) polyolefin dividable composite fibers having an average fiber length of 20 to 60 mm, (2) high-strength fibers having an average fiber length of 30 to 60 mm and a fiber strength of 5 g/denier or more, and (3) polyolefin heat-sensitive-adhesive fibers having an average fiber length of 30 to 60 mm, to obtain a heat-fused and hydro-entangled nonwoven fabric by a dry-laid method, and imparting a hydrophilic property to the resulting heat-fused and hydro-entangled nonwoven fabric; these high-strength fibers accounting for 20 to 45 mass % with respect to a total mass of the polyolefin dividable composite fibers, the high-strength fibers and the polyolefin heat-sensitive-adhesive fibers. The alkaline battery separator exhibits an excellent breaking strength, and has practical and sufficient tensile strength and electrolyte-holding capacity properties.
    • 一种碱性电池隔膜,其特征在于,包括通过热熔融和水解(1)平均纤维长度为20〜60mm的聚烯烃可分割复合纤维得到的亲水性无纺布,(2)平均纤维长度为30的高强度纤维 至60mm,纤维强度为5g /旦尼尔以上,(3)平均纤维长度为30〜60mm的聚烯烃热敏粘合纤维,得到热熔融和水缠结无纺布,由 干法成网法,赋予所得热熔水解无纺布亲水性; 相对于聚烯烃可分割复合纤维,高强度纤维和聚烯烃热敏粘合纤维的总质量,这些高强度纤维占20〜45质量%。 碱性电池隔膜表现出优异的断裂强度,并且具有实用且足够的拉伸强度和电解质保持能力。
    • 79. 发明授权
    • Method for producing a piezoelectric/electrostrictive film-type element
    • 压电/电致伸缩薄膜型元件的制造方法
    • US6088893A
    • 2000-07-18
    • US57398
    • 1998-04-09
    • Yukihisa TakeuchiTsutomu NanatakiKoji KimuraNobuo Takahashi
    • Yukihisa TakeuchiTsutomu NanatakiKoji KimuraNobuo Takahashi
    • H04R17/00H01L41/09H01L41/22H04R17/08H01L41/08
    • H01L41/0973H01L41/314H01L41/1875H04R17/08Y10T29/42
    • A piezoelectric and/or electrostrictive film-type element comprises a zirconia substrate with a thin-walled diaphragm section provided integrally to cover and close a window to serve as a hollow space, and a film-shaped piezoelectric and/or electrostrictive operating section composed of a lower electrode, a piezoelectric and/or electrostrictive layer, and an upper electrode which are successively provided in a layered configuration on an outer surface of the diaphragm section in accordance with a film-forming method, wherein at least a part of a peripheral edge portion of the piezoelectric and/or electrostrictive layer extends laterally beyond a corresponding peripheral edge portion of the lower electrode to construct an overhang section located opposingly over the diaphragm section, and the overhang section is in a state of incomplete connection with respect to a partial region of the diaphragm section located just under by the aid of particles of an alumina-magnesia compound such as spinel particles allowed to intervene therebetween.Thus, it is possible to effectively improve, for example, the piezoelectric and/or electrostrictive characteristics such as the displacement amount, and the resonance frequency characteristics.
    • 压电和/或电致伸缩膜型元件包括具有薄壁隔膜部分的氧化锆基底,其整体地设置成覆盖和闭合窗口以用作中空空间;以及膜状压电和/或电致伸缩操作部分,其由 根据成膜方法在隔膜部分的外表面上依次设置成层状构造的下电极,压电和/或电致伸缩层和上电极,其中至少一部分周缘 压电和/或电致伸缩层的一部分横向延伸超过下电极的相应的周缘部分,以构成相对于隔膜部分设置的伸出部分,并且伸出部分处于与部分区域不完全连接的状态 通过氧化铝 - 氧化镁化合物的颗粒正好在其下的隔膜部分 允许尖晶石颗粒介入其间。 因此,可以有效地改善例如位移量和谐振频率特性等压电和/或电致伸缩特性。
    • 80. 发明授权
    • Piezoelectric/electrostrictive film-type element and method for
producing the same
    • 压电/电致伸缩薄膜型元件及其制造方法
    • US5814920A
    • 1998-09-29
    • US777953
    • 1996-12-23
    • Yukihisa TakeuchiTsutomu NanatakiKoji KimuraNobuo Takahashi
    • Yukihisa TakeuchiTsutomu NanatakiKoji KimuraNobuo Takahashi
    • H04R17/00H01L41/09H01L41/22H04R17/08H01L41/08
    • H01L41/0973H01L41/314H01L41/1875H04R17/08Y10T29/42
    • A piezoelectric and/or electrostrictive film-type element comprises a zirconia substrate with a thin-walled diaphragm section provided integrally to cover and close a window to serve as a hollow space, and a film-shaped piezoelectric and/or electrostrictive operating section composed of a lower electrode, a piezoelectric and/or electrostrictive layer, and an upper electrode which are successively provided in a layered configuration on an outer surface of the diaphragm section in accordance with a film-forming method, wherein at least a part of a peripheral edge portion of the piezoelectric and/or electrostrictive layer extends laterally beyond a corresponding peripheral edge portion of the lower electrode to construct an overhang section located opposingly over the diaphragm section, and the overhang section is in a state of incomplete connection with respect to a partial region of the diaphragm section located just under by the aid of particles of an alumina-magnesia compound such as spinel particles allowed to intervene therebetween. Thus, it is possible to effectively improve, for example, the piezoelectric and/or electrostrictive characteristics such as the displacement amount, and the resonance frequency characteristics.
    • 压电和/或电致伸缩膜型元件包括具有薄壁隔膜部分的氧化锆基底,其整体地设置成覆盖和闭合窗口以用作中空空间;以及膜状压电和/或电致伸缩操作部分,其由 根据成膜方法在隔膜部分的外表面上依次设置成层状构造的下电极,压电和/或电致伸缩层和上电极,其中至少一部分周缘 压电和/或电致伸缩层的一部分横向延伸超过下电极的相应的周缘部分,以构成相对于隔膜部分设置的伸出部分,并且伸出部分处于与部分区域不完全连接的状态 通过氧化铝 - 氧化镁化合物的颗粒正好在其下的隔膜部分 允许尖晶石颗粒介入其间。 因此,可以有效地改善例如位移量和谐振频率特性等压电和/或电致伸缩特性。