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    • 1. 发明授权
    • Vane angle changing device for an axial fluid machine
    • 用于轴流式机械的叶片角度更换装置
    • US4618311A
    • 1986-10-21
    • US511734
    • 1983-07-07
    • Haruo MiuraTakashi NagaokaYoshiaki AbeSouji Sakata
    • Haruo MiuraTakashi NagaokaYoshiaki AbeSouji Sakata
    • F04D29/56F01D17/16F04D29/36
    • F01D17/16F01D17/162
    • A device for changing and attaching or mounting an angle of stationary vanes of an axial-flow fluid machine by rotating the stationary vanes through a circumferential movement of an intermediate cylinder. The device includes at least one arm secured to one end of the intermediate cylinder and engaging at a second end in a groove formed in a block member which is attached to an end of an actuator and is movable in a tangential direction of the intermediate cylinder. A guide arrangement is provided for guiding a movement of the block member and at least a portion of the actuator so as to ensure a smooth operation of the actuator by freeing the same from any influence of undesireable forces such as lateral pressure caused by a thermal expansion of the intermediate cylinder.
    • 一种用于通过使中间圆筒的周向运动旋转固定叶片来改变和附接或安装轴流式流体机械的静止叶片角度的装置。 该装置包括至少一个臂,固定到中间圆筒的一端,并且在第二端处接合在形成在块构件中的凹槽中,该凹槽附接到致动器的端部并且可沿中间圆筒的切线方向移动。 引导装置用于引导块件和致动器的至少一部分的运动,以便确保致动器的平稳操作,使其不受任何不希望的力的影响,例如由热膨胀引起的侧向压力 的中间圆筒。
    • 2. 发明授权
    • Method of capacity controlling of multistage compressor and apparatus
therefor
    • 多级压缩机及其设备的容量控制方法
    • US4770602A
    • 1988-09-13
    • US941639
    • 1986-12-15
    • Haruo MiuraToshio KanekoYoshiaki AbeHiroshi Ohmachi
    • Haruo MiuraToshio KanekoYoshiaki AbeHiroshi Ohmachi
    • F04D27/00F04D27/02F01D17/00
    • F04D27/0246
    • The invention relates to a capacity control method for controlling the capacity of a multistage compressor in response to a flow rate signal by varying the openings of vanes at individual stages. The relationships of the openings of the vanes of the individual stages are made to vary in response to the flow rate signal from the multistage compressor. Thus, when the flow rate of the multistage compressor is far from the anti-surge capacity within the operable range thereof, it is possible to select vane opening relationships which provide the highest efficiency for the multistage compressor. When the flow rate of the multistage compressor drops to either a value near the anti-surge capacity or the inoperable range, on the other hand, it is possible to select vane opening relationships which provide an enlargement of the operating range of the multistage compressor, before the flow rate enters that inoperable range.
    • 本发明涉及一种容量控制方法,用于通过改变各级叶片的开口来响应流量信号来控制多级压缩机的容量。 各级的叶片的开口的关系响应于来自多级压缩机的流量信号而变化。 因此,当多级压缩机的流量远远超过其在可操作范围内的防喘振能力时,可以选择为多级压缩机提供最高效率的叶片开度关系。 另一方面,当多级压缩机的流量下降到接近防喘振能力或不可操作范围的值时,可以选择提供多级压缩机的工作范围的叶片开度关系, 在流量进入不可操作的范围之前。
    • 5. 发明授权
    • Pickup cable for stringed instrument
    • 用于弦乐器的拾音电缆
    • US08692102B2
    • 2014-04-08
    • US13916658
    • 2013-06-13
    • Kazuhisa KondoPen-Hao MaYoshiaki Abe
    • Kazuhisa KondoPen-Hao MaYoshiaki Abe
    • G10H3/12
    • G10H3/143G10H3/186
    • A pickup cable for a stringed instrument can switch between the output of the direct vibrational sound of strings and the output of the sound from the stringed instrument body generated by the vibrations of the strings and can also simultaneously output both the sound components. The pickup cable for a stringed instrument includes an input terminal to be inserted in a jack of the stringed instrument; a microphone to collect and convert sound of an internal space of the stringed instrument into collected-sound electrical signals; and an output terminal to output the collected-sound electrical signals. The microphone is incorporated in the input terminal.
    • 用于弦乐器的拾取电缆可以在弦的直接振动声音的输出和弦乐器产生的弦乐器主体的声音输出之间切换,并且还可以同时输出声音分量。 用于弦乐器的拾取电缆包括插入弦乐器的插孔中的输入端子; 用于收集和转换弦乐器的内部空间的声音到收集的声音电信号中的麦克风; 以及输出端子,用于输出收集的声音电信号。 麦克风被并入输入端。
    • 9. 发明授权
    • Chip-type semiconductor ceramic electronic component
    • 芯片式半导体陶瓷电子元器件
    • US08164178B2
    • 2012-04-24
    • US12845271
    • 2010-07-28
    • Takayo KatsukiYoshiaki Abe
    • Takayo KatsukiYoshiaki Abe
    • H01L23/00
    • H01C1/142H01C7/02H01C7/04H01C7/10
    • A chip-type semiconductor ceramic electronic component including a ceramic body made of a semiconductor ceramic, first external electrodes formed on opposite end surfaces of the ceramic body, and second external electrodes extending to cover surfaces of the first external electrodes and part of side surfaces of the ceramic body. A curvature radius of a corner portion of the ceramic body is R (μm), a maximum thickness of a layer of the first external electrode layer, which is in contact with the ceramic body, measured from the end surface of the ceramic body is y (μm), and a minimum thickness of a layer of the second external electrode, which is in contact with the side surface of the ceramic body, measured from an apex of the corner portion of the ceramic body is x (μm), and 20≦R≦50, −0.4 x+0.6≦y≦0.4 is satisfied when 0.5≦x≦1.1, and −0.0076 x+0.16836≦y≦0.4 is satisfied when 1.1≦x≦9.0.
    • 一种芯片型半导体陶瓷电子元件,包括由半导体陶瓷制成的陶瓷体,形成在陶瓷体的相对端面上的第一外部电极和第二外部电极,该第二外部电极延伸至第一外部电极和第二外部电极的侧面的一部分 陶瓷体。 陶瓷体的角部的曲率半径为R(μm),从陶瓷体的端面测定的与陶瓷体接触的第一外部电极层的层的最大厚度为y (μm),并且从陶瓷体的角部的顶点测量的与陶瓷体的侧面接触的第二外部电极的层的最小厚度为x(μm),并且20< 当1.1≦̸ x≦̸ 9.0时,满足0.5≤nlE; x≦̸ 1.1和-0.0076×+ 0.16836≦̸ y≦̸ 0.4; R<