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    • 25. 发明授权
    • Method and apparatus for measuring thermal diffusivity by ac
joule-heating
    • 通过焦耳加热测量热扩散率的方法和装置
    • US5080495A
    • 1992-01-14
    • US573810
    • 1990-08-28
    • Toshimasa HashimotoAkira MiyamotoKohei ShizukaTeruo Hyugaji
    • Toshimasa HashimotoAkira MiyamotoKohei ShizukaTeruo Hyugaji
    • G01N25/18
    • G01N25/18
    • Disclosed is a method for measuring the thermal diffusivity in the thickness direction of a thin sample plate, which has the steps of forming a conductive thin layer on at least one surface of said thin sample plate to allow the thin film to function as an ac heater generating joule heat, applying an ac current modulated with a given modulation frequency to the ac heater (conductive thin layer) so as to produce ac joule-heating, generating an oscillation response corresponding to said ac joule-heating on the opposite surface of the ac heater, and measuring the phase shift between said oscillation response, and the ac joule-heating, thereby obtaining the thermal diffusivity in the thickness direction of said sample plate. Apparatus useful for the method are also disclosed.
    • 公开了一种用于测量薄样品板的厚度方向的热扩散率的方法,其具有在所述薄样品板的至少一个表面上形成导电薄层以允许薄膜用作交流加热器的步骤 产生焦耳热,将以给定调制频率调制的交流电流施加到交流加热器(导电薄层),以产生交流加热,在交流电流的相对表面上产生对应于所述交流焦耳加热的振荡响应 加热器,并测量所述振荡响应和交流焦加热之间的相移,从而获得所述样品板的厚度方向上的热扩散率。 还公开了对该方法有用的装置。
    • 28. 发明授权
    • Simulation device, simulation system, method of simulation and program
    • 仿真设备,仿真系统,仿真和程序的方法
    • US09189572B2
    • 2015-11-17
    • US13638757
    • 2011-03-07
    • Akira MiyamotoMichihisa KoyamaKazuki Nakamura
    • Akira MiyamotoMichihisa KoyamaKazuki Nakamura
    • G06G7/50G06F17/50G01N15/08
    • G06F17/5009G01N15/0886
    • A simulation system (101) includes an X-ray CT device (11) that obtains a tomographic image of a porous sample, and a simulation device (14) that simulates a mercury intrusion method by processing a laminated tomographic image of the sample. The simulation device (14) includes a modeling means which processes the laminated tomographic image of the sample, and which models an internal structure of the sample, a minimum-diameter obtaining means that obtains a minimum entrance diameter when mercury enters in a pore of the sample at a predetermined pressure based on a surface energy of the sample and a pressure, and a means that simulates a liquid entering in the interior of the pore from one surface of the sample based on a diameter of the pore of the modeled sample and the minimum entrance diameter.
    • 模拟系统(101)包括获得多孔样品的断层图像的X射线CT装置(11),以及通过处理样品的层叠断层图像来模拟水银侵入方法的模拟装置(14)。 模拟装置(14)包括:模拟装置,其处理样品的层叠断层图像,并对样品的内部结构进行建模;最小直径获取装置,当汞进入到所述样品的孔中时获得最小入口直径 基于样品的表面能和压力的预定压力的样品,以及基于样品的孔的直径来模拟从样品的一个表面进入孔的内部的液体的装置,以及 最小入口直径