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    • 1. 发明授权
    • Heat-resistant ultrasonic sensor and installation method thereof
    • 耐热超声波传感器及其安装方法
    • US09304113B2
    • 2016-04-05
    • US13474065
    • 2012-05-17
    • Atsushi BabaYoshinori MushaMasahiro Koike
    • Atsushi BabaYoshinori MushaMasahiro Koike
    • G01H11/08H01L41/22G01N29/22G01N29/24
    • G01N29/228G01N29/245G01N2291/0289Y10T29/42
    • A heat-resistant ultrasonic sensor forms a piezo-electric ceramics film with a thickness of 0.5 mm or smaller and a Curie point of 200° C. or higher on a flexible metal plate. A thin metal film that is an electrode is attached to a top surface of the piezo-electric ceramics film and a metal wire mesh covers the thin metal film and is attached to a top surface of the thin metal film. A core of a heat-resistant coaxial cable is connected to the metal wire mesh at a connection point. The heat-resistant coaxial cable is fixed to the thin metal plate with a metal fixing member that is a ground portion. An electric insulating cover is attached to the thin metal plate and covers the piezo-electric ceramics film, the thin metal film, the metal wire mesh, the connection point, the fixing member, and the core of the coaxial cable.
    • 耐热超声波传感器在柔性金属板上形成厚度为0.5mm以下,居里点为200℃以上的压电陶瓷膜。 作为电极的薄金属膜附着在压电陶瓷膜的上表面,金属丝网覆盖薄金属膜,并附着在金属薄膜的上表面。 耐热同轴电缆的芯线在连接点处连接到金属丝网。 耐热同轴电缆用作为接地部的金属固定部件固定在薄金属板上。 电绝缘盖安装在薄金属板上,覆盖压电陶瓷膜,薄金属膜,金属丝网,连接点,固定件和同轴电缆芯。
    • 3. 发明申请
    • Heat-Resistant Ultrasonic Sensor and Installation Method Thereof
    • 耐热超声波传感器及其安装方法
    • US20120291554A1
    • 2012-11-22
    • US13474065
    • 2012-05-17
    • Atsushi BABAYoshinori MushaMasahiro Koike
    • Atsushi BABAYoshinori MushaMasahiro Koike
    • G01H11/08H01L41/22
    • G01N29/228G01N29/245G01N2291/0289Y10T29/42
    • A heat-resistant ultrasonic sensor forms a piezo-electric ceramics film with a thickness of 0.5 mm or smaller and a Curie point of 200° C. or higher on a flexible metal plate. A thin metal film that is an electrode is attached to a top surface of the piezo-electric ceramics film and a metal wire mesh covers the thin metal film and is attached to a top surface of the thin metal film. A core of a heat-resistant coaxial cable is connected to the metal wire mesh at a connection point. The heat-resistant coaxial cable is fixed to the thin metal plate with a metal fixing member that is a ground portion. An electric insulating cover is attached to the thin metal plate and covers the piezo-electric ceramics film, the thin metal film, the metal wire mesh, the connection point, the fixing member, and the core of the coaxial cable.
    • 耐热超声波传感器在柔性金属板上形成厚度为0.5mm以下,居里点为200℃以上的压电陶瓷膜。 作为电极的薄金属膜附着在压电陶瓷膜的上表面,金属丝网覆盖薄金属膜,并附着在金属薄膜的上表面。 耐热同轴电缆的芯线在连接点处连接到金属丝网。 耐热同轴电缆用作为接地部的金属固定部件固定在薄金属板上。 电绝缘盖安装在薄金属板上,覆盖压电陶瓷膜,薄金属膜,金属丝网,连接点,固定件和同轴电缆芯。
    • 5. 发明授权
    • Ultrasonic testing method
    • 超声波检测方法
    • US09046469B2
    • 2015-06-02
    • US13222523
    • 2011-08-31
    • Naoyuki KonoAtsushi BabaYoshinori Musha
    • Naoyuki KonoAtsushi BabaYoshinori Musha
    • G01N29/07G01B17/02
    • G01N29/07G01B17/02G01N2291/0234G01N2291/02854G01N2291/102
    • An ultrasonic testing method is provided to measure a thickness of an object in a simple and highly accurate manner when crystal grains that form a metal solidification structure of a directionally-solidified material cast or the like have a statistical variation.An ultrasonic probe 102 causes a longitudinal ultrasonic wave to be incident on a test object 101 in a direction perpendicular to a surface 101A of the test object 101. As a velocity of the longitudinal ultrasonic wave, the average of velocities of longitudinal ultrasonic waves propagating in directions of crystal orientations , , and is used. The thickness of the test object 101 is measured on the basis of the velocity of the ultrasonic wave and a time period for the propagation of the ultrasonic wave.
    • 当形成定向凝固材料铸件的金属凝固组织等的晶粒具有统计学变化时,提供超声波测试方法以简单且高精度的方式测量物体的厚度。 超声波探头102使纵向超声波以与测试对象101的表面101A垂直的方向入射到测试对象101.作为纵向超声波的速度,纵向超声波的传播速度的平均值 使用晶体取向<100>,<110>和<210>的方向。 基于超声波的速度和超声波的传播时间来测定被测物101的厚度。