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    • 8. 发明授权
    • Method for measuring and analyzing interference fringes using a
halographic optical element having two patterns for diffracting a laser
beam
    • 使用具有用于衍射激光束的两种图案的光晕光学元件来测量和分析干涉条纹的方法
    • US5424828A
    • 1995-06-13
    • US94480
    • 1993-07-19
    • Yoshitaka Minami
    • Yoshitaka Minami
    • G01B9/021G01B11/24
    • G01B9/021
    • A method for measuring and analyzing interference fringes using a hologram interferometer. The hologram interferometer is provided with a holographic optical element which includes a first pattern for diffracting a laser beam as a reference beam in a direction which is different from the surface of an object to be measured and a second pattern for diffracting a laser beam as a measuring beam which is to be radiated onto the surface to be measured, and measures interference fringes resulting from interference between the reference beam and the beam reflected from the measured surface of the object. Interference fringes are measured while the phase of the interference fringes is successively changed by moving the holographic optical element parallel to a surface thereof by given amounts in a direction normal to the gratings of the first pattern, and the configuration of the measured surface is obtained by analyzing the fringes.
    • 一种使用全息干涉仪测量和分析干涉条纹的方法。 全息干涉仪设置有全息光学元件,该全息光学元件包括用于将激光束衍射为与被测量物体的表面不同的方向作为参考光束的第一图案,以及用于将激光束衍射为 测量要被辐射到要测量的表面上的光束,并且测量由参考光束和从测量的物体表面反射的光束之间的干涉而产生的干涉条纹。 通过沿垂直于第一图案的光栅的方向将全息光学元件平行于其表面移动一定量的量来连续改变干涉条纹的相干条纹,并且测量的表面的结构通过 分析边缘。
    • 10. 发明授权
    • Apparatus for packing catalyst
    • 用于包装催化剂的装置
    • US5795550A
    • 1998-08-18
    • US598911
    • 1996-02-09
    • Yoshitaka Minami
    • Yoshitaka Minami
    • B01J8/00B01J8/08
    • B01J8/002B01J8/003
    • A catalyst packing apparatus with which a desired packed density can be easily and surely obtained by use of a suspended type catalyst ejector, wherein correlated data giving a scattering height from which a desired packed density can be obtained has been determined and stored beforehand in a memory part 74, and by setting a desired packed density, prior to the scattering of catalyst, a selecting part 75 selects a scattering height corresponding to the desired packed density from the correlated data in the memory part 74 and delivers the same to an adjusting part 76 which controls the catalyst ejector 30 so as to obtain this scattering height, thereby the catalyst 11 in a reaction tower 10 can be packed at the desired packed density.
    • 一种催化剂填充装置,其中通过使用悬浮型催化剂喷射器可以容易且可靠地获得所需的填充密度,其中提供可获得期望的填充密度的散射高度的相关数据已被确定并预先存储在存储器中 部分74,并且通过设置所需的填充密度,在催化剂散射之前,选择部分75从存储器部分74中的相关数据中选择对应于所需填充密度的散射高度,并将其传送到调节部分76 其控制催化剂喷射器30以获得这种散射高度,从而反应塔10中的催化剂11可以以所需的密度填充。