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    • 11. 发明授权
    • Container for sheet products
    • 集装箱板材产品
    • US07740132B2
    • 2010-06-22
    • US10584282
    • 2005-01-20
    • Masahiro OonoHiroshi Kitsutaka
    • Masahiro OonoHiroshi Kitsutaka
    • A45C11/18
    • B65H3/02B65D83/0858Y10S206/804
    • The present invention relates to a container for sheet products that makes it easy to take out each individual piece of the sheet products stacked in the container. The container having a tray-like container body (2), an opening/closing lid (3) that is slidably mounted on the container body (2), a pressing member (5) elastically pressing the sheet products (4) stored in the container (1) toward the inner surface of the opening/closing lid (3), a friction drag member (7) that is installed on the inner surface of the opening/closing lid (3) to feed out the sheet products (4) according to the closing operation of the opening/closing lid (3), and a stopper (6) formed in the container body (2) to stop the backward movement of the sheet products (4) by the friction drag member (7) when the opening/closing lid (3) is opened.
    • 本发明涉及用于片材产品的容器,其容易地取出堆叠在容器中的片材产品的每一片。 容器具有托盘状容器主体(2),可滑动地安装在容器主体(2)上的打开/关闭盖(3),弹性地按压存储在容器本体(2)中的片材产品 容器(1)朝向打开/关闭盖(3)的内表面;摩擦阻力构件(7),其安装在打开/关闭盖(3)的内表面上以输送片材产品(4) 根据打开/关闭盖(3)的关闭操作以及形成在容器主体(2)中的止动件(6),以通过摩擦阻力构件(7)停止片材产品(4)的向后移动,当 打开/关闭盖(3)。
    • 20. 发明授权
    • Method of measuring refractive indices of lens and sample liquid
    • 测量透镜和样品液体的折射率的方法
    • US5151752A
    • 1992-09-29
    • US707438
    • 1991-05-28
    • Masahiro OonoTohru Chiba
    • Masahiro OonoTohru Chiba
    • G01M11/02G01N21/03G01N21/41
    • G01N21/41G01M11/0228G01N2021/0342
    • A method of measuring a refractive index distribution of a lens is disclosed which comprises, immersing a glass sample and a lens under test within a matching fluid whose refractive index differs slightly from that of the glass to be tested, the glass sample having a refractive index and a shape which are both known and the lens to be tested having an unknown refractive index but a known shape, allowing coherent light to pass through the glass sample and the lens under test; superposing the transmitted light wave on a reference light wave to generate interference fringes, outputting the intensity distribution of interference fringes that are generated by the light wave that has passed through the glass sample, determining the refractive index of the matching fluid on the basis of the resulting output, outputting the intensity distribution of interference fringes that are generated by the light wave that has passed through the lens under test; separating from the resulting output the defocus term and aberration terms in the polynomial which expresses the produced interference fringes; determining the average refractive index of the lens under test from the separated defocus term and the refractive index of the matching fluid; and determining the refractive index distribution of the lens under test from the aberrations terms.
    • 公开了一种测量透镜的折射率分布的方法,其包括将玻璃样品和被测试透镜浸入与所测试的玻璃的折射率略微不同的匹配流体中,所述玻璃样品具有折射率 以及具有未知的折射率和已知形状的被测试的透镜的形状,允许相干光通过玻璃样品和被测镜片; 将透射的光波叠加在参考光波上以产生干涉条纹,输出由已经通过玻璃样品的光波产生的干涉条纹的强度分布,基于该光束确定匹配流体的折射率 输出由通过被测镜头的光波产生的干涉条纹的强度分布; 从所得输出中分离表示所产生的干涉条纹的多项式中的散焦项和像差项; 从分离的散焦项和匹配流体的折射率确定被测透镜的平均折射率; 以及根据像差项确定被测透镜的折射率分布。