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    • 2. 发明授权
    • Ion beam analyzing apparatus
    • 离子束分析仪
    • US5350920A
    • 1994-09-27
    • US994953
    • 1992-12-22
    • Hirofumi FukuyamaTatuya NoguchiKenichi InoueKiyotaka IshibashiShigeto Adachi
    • Hirofumi FukuyamaTatuya NoguchiKenichi InoueKiyotaka IshibashiShigeto Adachi
    • G01N23/225G01Q90/00H01J37/04H01J37/09H01J37/22H01J37/252H01J37/256H01J37/28
    • H01J37/263H01J37/22H01J37/256
    • An ion beam analyzing apparatus wherein a scan image displayed on display means and the profile of an ion beam can be made coincide with each other readily to assure a high operability. Slit members for X and Y directions of an objector collimator are provided for movement to vary the dimensions of slits defined thereby, and dimensions A and B of the slits in the X and Y directions are detected. Dimensions X' and Y' of a spot of an ion beam irradiated upon a specimen on a target are calculated by multiplying the dimensions A and B by reduction ratios fx and fy of quadruple pole magnetic lenses, respectively, and then the dimensions X' and Y' are multiplied by values obtained by division of conditions Cx and Cy of an image apparatus by current scanning widths Sx and Sy of deflecting electrodes to calculate enlarged beam spot diameters X" and Y" respectively. An image having the diameters X" and Y" is displayed on a cathode ray tube so that an operator can visually grasp it. Consequently, a scan image of the specimen and the profile of the ion beam can be made coincide readily with each other by manual operation of a manually operable mechanism of a beam position setter.
    • 一种离子束分析装置,其中可以使显示装置上显示的扫描图像和离子束的轮廓彼此一致,以确保高可操作性。 提供了用于移动以使由此限定的狭缝的尺寸变化的反射器准直器的X和Y方向的狭缝构件,并且检测X和Y方向上狭缝的尺寸A和B. 通过将尺寸A和B分别乘以四极磁性透镜的减速比fx和fy分别计算照射到目标上的样本上的离子束点的尺寸X'和Y',然后将尺寸X'和 Y'乘以通过用偏转电极的当前扫描宽度Sx和Sy分割图像装置的条件Cx和Cy分割获得的值,以分别计算扩大的光点直径X“和Y”。 具有直径X“和Y”的图像显示在阴极射线管上,使得操作者可以在视觉上掌握它。 因此,可以通过手动操作光束位置设定器的手动操作的机构,使样本的扫描图像和离子束的轮廓容易地彼此一致。
    • 6. 发明授权
    • Raw tire preheating method and apparatus therefor
    • 生胎预热方法及其设备
    • US07084380B2
    • 2006-08-01
    • US10381435
    • 2002-07-02
    • Kazuto OkadaHisashi MitamuraKenichi InoueShigeto Adachi
    • Kazuto OkadaHisashi MitamuraKenichi InoueShigeto Adachi
    • H05B6/02H05B6/10
    • B29C35/0805B29C35/0272B29C2035/0811B29D30/0005B29L2030/00
    • A raw tire-preheating method and apparatus for preheating a raw tire uniformly over all the areas with a reduced running cost. The raw tire-preheating apparatus comprises a tread section-preheating mechanism (16) including a front coil (21) disposed so as to face a tread section (4a) for generating a high frequency magnetic field and for applying it to the tread section (4a); and a core mechanism consisting of center cores (24), separation cores (25) and side cores (26) for providing an intensity distribution of the high frequency magnetic field that the tread section (4a) is uniformly preheated overall in the tire width direction. A movement mechanism for moving at least one of the tread section-preheating mechanism (16) and the raw tire (4) is provided in order to move the tread section-preheating mechanism (16) relative to the tread section (4a).
    • 一种生产轮胎预热方法和装置,用于在所有区域均匀地预热生轮胎,运行成本降低。 生胎材预热装置包括胎面部预热机构(16),其包括设置成面向胎面部(4a)的前线圈(21),用于产生高频磁场并将其施加到胎面部分 (4 a); 以及由中心芯(24),分离芯(25)和侧芯(26)组成的芯机构,用于提供高频磁场的强度分布,胎面部分(4a)整体在轮胎宽度上被均匀地预热 方向。 为了使胎面部预热机构(16)相对于胎面部(4a)移动,设置有用于移动胎面部预热机构(16)和生胎(4)中的至少一个的移动机构。