会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Silicon nitride-silicon carbide composite sintered material and
manufacturing thereof
    • 氮化硅 - 碳化硅复合烧结材料及其制造
    • US5523267A
    • 1996-06-04
    • US276596
    • 1994-07-18
    • Kouichi TanakaMasaki TerazonoMasahiro SatohMasahito NakanishiHideki UchimuraShoji Kousaka
    • Kouichi TanakaMasaki TerazonoMasahiro SatohMasahito NakanishiHideki UchimuraShoji Kousaka
    • C04B35/565C04B35/575C04B35/584C04B35/593C04B35/567
    • C04B35/593C04B35/575
    • A silicon nitride-silicon carbide composite sintered material which comprises 100 parts by weight of a silicon nitride component containing 92 to 99.5 mol % of silicon nitride including excessive oxygen and 0.5 to 8 mol % of the elements of Group IIIa in the Periodic Table as corresponding oxides thereof and 1 to 100 parts by weight of a silicon carbide component in a dispersed state, wherein the silicon nitride component has an average particle size of 1 .mu.m or less and an average aspect ratio of 2 to 10, and the silicon carbide component has an average particle size of 1 .mu.m or less, moreover, the total amount of Al, Mg, Ca respectively contained in the sintered material as calculated as oxides thereof is 0.5% by weight or less, and a manufacturing method thereof.According to the above-mentioned composite sintered material, it becomes possible to suppress deterioration of strength at 1400.degree. C. and realize excellent creep properties. Therefore, the composite sintered material is applicable not only to structural materials for heat engines such as gas turbines and turbo-rotors but also to other heat resistant materials for various uses.
    • 一种氮化硅 - 碳化硅复合烧结材料,其包含100重量份的包含92至99.5摩尔%的包含过量氧的氮化硅和0.5至8摩尔%的元素周期表中的IIIa族的元素的氮化硅组分, 氧化物和1〜100重量份的分散状态的碳化硅成分,其中,氮化硅成分的平均粒径为1μm以下,平均纵横比为2〜10,碳化硅成分 具有1μm以下的平均粒径,此外,以氧化物计算的烧结体中所含的Al,Mg,Ca的总量为0.5重量%以下,其制造方法。 根据上述复合烧结材料,可以抑制1400℃强度的劣化,实现优异的蠕变性能。 因此,复合烧结体不仅适用于燃气轮机,涡轮转子等发动机的结构材料,还适用于各种用途的其他耐热材料。
    • 3. 发明授权
    • Multi-layer piezoelectric element and method for manufacturing the same
    • 多层压电元件及其制造方法
    • US08125124B2
    • 2012-02-28
    • US12717018
    • 2010-03-03
    • Mitsuo KondoMasaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • Mitsuo KondoMasaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • H01L41/047H01L41/083
    • H01L41/0472H01L41/0471H01L41/0477H01L41/273Y10T29/42
    • A multi-layer piezoelectric element having high durability which allows it to increase the amount of displacement of a piezoelectric actuator under high voltage and high pressure and does not undergo a change in the amount of displacement during continuous operation in a high electric field and under a high pressure over a long time period is provided.The multi-layer piezoelectric element comprises a stack of at least one piezoelectric layer and a plurality of internal electrodes consisting of first and second internal electrodes placed one on another, a first external electrode formed on a first side face of the stack and connected to the first internal electrode and a second external electrode formed on a second side face of the stack and connected to the second internal electrode, wherein the bonding strength between the piezoelectric layer and the internal electrode is weaker than the bending strength of the piezoelectric layer.
    • 一种具有高耐久性的多层压电元件,其能够在高电压和高压下增加压电致动器的位移量,并且在高电场和在高电压下连续操作期间不会发生位移量的变化 提供了长时间的高压。 所述层叠型压电元件包括​​由至少一个压电体层叠的多个内部电极和由彼此重叠的第一和第二内部电极组成的多个内部电极,形成在所述堆叠体的第一侧面上的第一外部电极, 第一内部电极和第二外部电极,形成在所述堆叠的第二侧面上并与所述第二内部电极连接,其中所述压电层和所述内部电极之间的接合强度弱于所述压电层的弯曲强度。
    • 4. 发明授权
    • Multi-layer piezoelectric element and method for manufacturing the same
    • 多层压电元件及其制造方法
    • US07705525B2
    • 2010-04-27
    • US12467901
    • 2009-05-18
    • Mitsuo KondoMasaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • Mitsuo KondoMasaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • H01L41/047H01L41/083
    • H01L41/0472H01L41/0471H01L41/0477H01L41/273Y10T29/42
    • A multi-layer piezoelectric element having high durability which allows it to increase the amount of displacement of a piezoelectric actuator under high voltage and high pressure and does not undergo a change in the amount of displacement during continuous operation in a high electric field and under a high pressure over a long time period is provided.The multi-layer piezoelectric element comprises a stack of at least one piezoelectric layer and a plurality of internal electrodes consisting of first and second internal electrodes placed one on another, a first external electrode formed on a first side face of the stack and connected to the first internal electrode and a second external electrode formed on a second side face of the stack and connected to the second internal electrode, wherein the bonding strength between the piezoelectric layer and the internal electrode is weaker than the bending strength of the piezoelectric layer.
    • 一种具有高耐久性的多层压电元件,其能够在高电压和高压下增加压电致动器的位移量,并且在高电场和在高电压下连续操作期间不会发生位移量的变化 提供了长时间的高压。 所述层叠型压电元件包括​​由至少一个压电体层叠的多个内部电极和由彼此重叠的第一和第二内部电极组成的多个内部电极,形成在所述堆叠体的第一侧面上的第一外部电极, 第一内部电极和第二外部电极,形成在所述堆叠的第二侧面上并与所述第二内部电极连接,其中所述压电层和所述内部电极之间的接合强度弱于所述压电层的弯曲强度。
    • 6. 发明申请
    • Multi-layer piezoelectric element
    • 多层压电元件
    • US20070080612A1
    • 2007-04-12
    • US10577843
    • 2004-10-26
    • Masaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • Masaki TerazonoTakeshi OkamuraKatsushi Sakaue
    • H01L41/047
    • B41J2/14274F02M51/0603H01L41/0471H01L41/0838
    • A multi-layer piezoelectric element of high reliability and high durability, that undergoes smaller variations in the amount of displacement even when used under a high electric field and high pressure and is subject to less variations in the amount of displacement even when used in continuous operation over a long period of time is provided. The multi-layer piezoelectric element comprises a stack formed by stacking piezoelectric layers and internal electrodes alternately one on another and external electrodes formed on a first side face and on a second side face of the stack, wherein one of the adjacent internal electrodes is connected to the external electrode on the first side face and the other internal electrode is connected to the external electrode formed on the second side face, while the ratio of change in the amount of displacement of the element after undergoing continuous operation of 1×109 cycles or more to the initial device dimension is not larger than 5%.
    • 具有高可靠性和高耐久性的多层压电元件即使在高电场和高压下使用时也能够发生位移量变化较小,并且即使在连续操作中使用也容易发生位移量变动 提供了很长一段时间。 所述层叠型压电元件具有将叠层的压电层和内部电极彼此交替堆叠而形成的叠层和形成在所述堆叠的第一侧面和第二侧面上的外部电极,其中,所述相邻的内部电极之一与 第一侧面上的外部电极和另一个内部电极连接到形成在第二侧面上的外部电极,而连续操作后的元件的位移量的变化比例为1×10 9 / SUP>循环或更多的初始设备尺寸不大于5%。
    • 7. 发明授权
    • Multilayer piezoelectric element and injector using the same
    • 多层压电元件和注射器使用相同
    • US08441174B2
    • 2013-05-14
    • US11917747
    • 2006-06-15
    • Takeshi OkamuraMasaki TerazonoTomohiro KawamotoTakafumi TsurumaruShigenobu NakamuraKen Yamamoto
    • Takeshi OkamuraMasaki TerazonoTomohiro KawamotoTakafumi TsurumaruShigenobu NakamuraKen Yamamoto
    • H01L41/083
    • H01L41/0838B05B17/0653F02M51/0603H01L41/0471H01L41/0477
    • In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers are stacked alternately, the plurality of metal layers include a plurality of low-filled metal layers having a lower filling rate of metal composing the metal layers than oppositely disposed metal layers adjacent to each other in a stacking direction. In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers are stacked alternately, the plurality of metal layers include a plurality of thin metal layers having a smaller thickness than oppositely disposed metal layers adjacent to each other in a stacking direction. In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers composed mainly of an alloy are stacked alternately, the plurality of metal layers include a plurality of high-ratio metal layers having a higher ratio of a component constituting the alloy than oppositely disposed metal layers adjacent to each other in a stacking direction.
    • 在其中多个压电层和多个金属层交替堆叠的多层压电元件中,多个金属层包括多个低填充金属层,其中构成金属层的金属填充率低于相对设置的金属层 在层叠方向上彼此相邻的金属层。 在其中多个压电层和多个金属层交替堆叠的多层压电元件中,多个金属层包括多个薄金属层,其厚度相对于彼此相邻布置的金属层的厚度小于堆叠 方向。 在其中多个压电层和主要由合金构成的多个金属层交替堆叠的多层压电元件中,多个金属层包括多个高比例的金属层,其中构成 合金比层叠方向上彼此相邻的相对设置的金属层。
    • 8. 发明授权
    • Multi-layer electronic component and method for manufacturing the same, multi-layer piezoelectric element
    • 多层电子元件及其制造方法,层叠型压电元件
    • US07633210B2
    • 2009-12-15
    • US10566044
    • 2004-07-28
    • Susumu OnoTakeshi OkamuraKatsushi SakaueTakaaki HiraMasaki Terazono
    • Susumu OnoTakeshi OkamuraKatsushi SakaueTakaaki HiraMasaki Terazono
    • H01L41/083
    • H01L41/083H01L41/0471H01L41/273
    • In order to provide a multi-layer electronic component in which the occurrence of delamination between the ceramic layer and the internal electrode is restricted and a method for manufacturing the same, the multi-layer electronic component of the present invention comprises a stack formed by stacking piezoelectric layers and internal electrodes one on another alternately and a pair of external electrodes formed on two opposing side faces of the stack, wherein the internal electrode consists of a first internal electrode connected to the external electrode formed on one of the two side faces and a second internal electrode located between the first internal electrode and connected to the external electrode formed on the other one of the two side faces, and wherein the internal electrodes and the piezoelectric layers are faced in proximity so that a space between them is 2 μm or less over an area occupying 50% or more of the active region where the first internal electrode and the second internal electrode oppose each other.
    • 为了提供限制陶瓷层和内部电极之间的分层的发生的多层电子部件及其制造方法,本发明的多层电子部件包括:叠层体 压电层和内部电极彼此交替设置,一对外部电极形成在堆叠的两个相对侧面上,其中内部电极由连接到形成在两个侧面中的一个侧面上的外部电极的第一内部电极和 所述第二内部电极位于所述第一内部电极之间并且与形成在所述两个侧面中的另一个侧面上的所述外部电极连接,并且其中所述内部电极和所述压电层面对,使得它们之间的空间为2μm或更小 在占有第一内部电极和第二内部电极的有源区域的50%以上的区域上 d内部电极彼此相对。
    • 9. 发明申请
    • Multi-Layer Piezoelectric Element and Method for Manufacturing the Same
    • 多层压电元件及其制造方法
    • US20090224636A1
    • 2009-09-10
    • US12467901
    • 2009-05-18
    • Mitsuo KONDOMasaki TERAZONOTakeshi OKAMURAKatsushi SAKAUE
    • Mitsuo KONDOMasaki TERAZONOTakeshi OKAMURAKatsushi SAKAUE
    • H01L41/083
    • H01L41/0472H01L41/0471H01L41/0477H01L41/273Y10T29/42
    • A multi-layer piezoelectric element having high durability which allows it to increase the amount of displacement of a piezoelectric actuator under high voltage and high pressure and does not undergo a change in the amount of displacement during continuous operation in a high electric field and under a high pressure over a long time period is provided.The multi-layer piezoelectric element comprises a stack of at least one piezoelectric layer and a plurality of internal electrodes consisting of first and second internal electrodes placed one on another, a first external electrode formed on a first side face of the stack and connected to the first internal electrode and a second external electrode formed on a second side face of the stack and connected to the second internal electrode, wherein the bonding strength between the piezoelectric layer and the internal electrode is weaker than the bending strength of the piezoelectric layer.
    • 一种具有高耐久性的多层压电元件,其能够在高电压和高压下增加压电致动器的位移量,并且在高电场和在高电压下连续操作期间不会发生位移量的变化 提供了长时间的高压。 所述层叠型压电元件包括​​由至少一个压电体层叠的多个内部电极和由彼此重叠的第一和第二内部电极组成的多个内部电极,形成在所述堆叠体的第一侧面上的第一外部电极, 第一内部电极和第二外部电极,形成在所述堆叠的第二侧面上并与所述第二内部电极连接,其中所述压电层和所述内部电极之间的接合强度弱于所述压电层的弯曲强度。
    • 10. 发明授权
    • Electrostatic chuck
    • 静电吸盘
    • US06643115B2
    • 2003-11-04
    • US10090438
    • 2002-02-27
    • Katsushi SakaueShoji KosakaIchio KiyofujiJunji OheMasaki TerazonoYasushi MigitaNaohito HigashiHitoshi Atari
    • Katsushi SakaueShoji KosakaIchio KiyofujiJunji OheMasaki TerazonoYasushi MigitaNaohito HigashiHitoshi Atari
    • H02N1300
    • H02N13/00H01L21/6831Y10T279/23
    • Disclosed is an electrostatic chuck comprising a ceramic dielectric layer having a surface for placing thereon a work that is to be held, and an electrode provided on a surface opposite to the surface of the ceramic dielectric layer for placing the work thereon, wherein: the placing surface of the ceramic dielectric layer is sectionalized into an outer peripheral region and a central region by gas injection grooves extending in a circumferential manner; the surface roughness Ra(o) of the outer peripheral region of the placing surface and the surface roughness Ra(i) ot the central region satisfy the following conditions: 0.6≦Ra(i)≦1.5 &mgr;m Ra(o)≦0.7 &mgr;m Ra(i)≧Ra(o)  and the outer peripheral region of the placing surface is higher than the inner peripheral region by not less than 0.6 &mgr;m. The electrostatic chuck holds the substrate with a large adsorptive force, maintains evenness in the heat distribution of the substrate, enables the substrate to be quickly separated away from the chuck, and permits the gas to leak little.
    • 公开了一种静电卡盘,其包括具有用于放置待保持的工件的表面的陶瓷电介质层和设置在与陶瓷电介质层的与陶瓷电介质层的表面相反的表面上的电极,用于将工件放置在其上,其中:放置 陶瓷电介质层的表面通过沿周向延伸的气体注入槽分成外周区域和中心区域;放置表面的外周区域的表面粗糙度Ra(o)和表面粗糙度Ra(i )满足以下条件:载置面的外周区域比内周区域高0.6μm以上。 静电吸盘以大的吸附力保持基板,保持基板的热分布均匀性,能够将基板快速地从夹头分离,并允许气体泄漏很少。