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    • 4. 发明授权
    • Adhesive wheel balance weight and process for producing the same
    • 胶轮平衡重量及其制造方法
    • US08449042B2
    • 2013-05-28
    • US12805613
    • 2010-08-10
    • Yutaka YamaguchiOsamu Yamaguchi
    • Yutaka YamaguchiOsamu Yamaguchi
    • F16F15/32
    • F16F15/328F16F15/324
    • The present invention provides an adhesive wheel balance weight capable of drastically reducing costs from those of conventional ones, and a process for producing the same. In an adhesive wheel balance weight (W) comprising a weight body (P) and an adhesive tape (T) for attaching the weight body (P) to a vehicle wheel, the weight body (P) comprises a folded weight comprising a folded metal plate piece. The folded weight of the present invention can be formed from a relatively inexpensive raw material sheet at a high yield rate. It is preferable that the raw material sheet is a zinc-coated steel sheet, because no rust-proofing aftertreatment is necessary and therefore further cost reduction is achieved, and its environmental burden is small.
    • 本发明提供一种能够显着地降低成本与传统轮胎平衡重的粘合轮平衡重及其制造方法。 在包括用于将重量体(P)附接到车轮的重量体(P)和粘合带(T))的粘合轮平衡重(W)中,所述重量体(P)包括折叠重量,所述折叠重量包括折叠金属 板块 本发明的折叠重量可以由相对便宜的原料片以高产率形成。 优选原料片是镀锌钢板,因为不需要防锈后处理,因此进一步降低成本,并且其环境负担小。
    • 8. 发明申请
    • WHEEL BALANCE WEIGHT
    • 车轮平衡重量
    • US20090160239A1
    • 2009-06-25
    • US12158546
    • 2006-12-26
    • Yukiyasu TaguchiTatsuhiko SugayauchiYutaka Yamaguchi
    • Yukiyasu TaguchiTatsuhiko SugayauchiYutaka Yamaguchi
    • F16F15/32
    • F16F15/328
    • To provide a wheel balance weight in which a release coated paper is likely to be detached when assembling it with a wheel.A wheel balance weight according to the present invention is such that, in a wheel balance weight including: a substantially-strip-shaped weight; an adhesive-tape portion whose tape front surface is fixed to a weight rear surface; and a release coated paper covering a tape rear surface, it makes the release coated paper likely to be pinched by adjusting the widths of the adhesive-tape portion and release coated paper. Since the wheel balance weight according to the present invention is such that the release coated paper is less likely to be detached before the assembly operation and the release coated paper is likely to be pinched upon assemblage, the handling becomes easy and additionally the workability when assembling the wheel balance weight with a wheel has improved.
    • 提供一种车轮平衡重,其中当与轮组装时,剥离涂层纸可能被分离。 根据本发明的车轮平衡重是这样一种轮平衡重,包括:基本上带状的重量; 胶带前表面固定在重量后表面上的胶带部分; 以及覆盖带后表面的剥离纸,通过调节粘合带部分的宽度和剥离涂布纸使得剥离纸可能被夹持。 由于根据本发明的车轮平衡重是使得在组装操作之前不太可能拆卸脱模涂布纸,并且在组装时可能被夹紧剥离涂布纸时,处理变得容易并且另外在组装时的可操作性 带轮的车轮平衡重量有所提高。
    • 9. 发明授权
    • Method for evaluating refractive index homogeneity of optical member
    • 评价光学元件的折射率均匀性的方法
    • US07245361B2
    • 2007-07-17
    • US11002456
    • 2004-12-03
    • Yutaka YamaguchiMasaaki MochidaAtsushi YanagisawaHiroshi Niikura
    • Yutaka YamaguchiMasaaki MochidaAtsushi YanagisawaHiroshi Niikura
    • G01B9/00G01N21/41
    • G03F7/70591G01M11/00G03F7/706
    • A method for evaluating the refractive index homogeneity of an optical member includes passing light through an optical member (1) used for photolithography. The side surface (1a) with respect to the optical axis (AX) of the optical member (1) is retained by elastic members (4) at a plurality of positions disposed at equal intervals to pass light through the optical member (1) and measure a wave front aberration. The optical member is rotated around the optical axis (AX) by the equal interval to measure a wave front aberration again and determine the difference from the initial measurement. The optical member (1) is moved in a direction perpendicular to the optical axis (AX) to measure a wave front aberration again and determined the difference from the initial measurement. The refractive index homogeneity of the optical member can be accurately evaluated from those differences by using fitting of the Zernike cylindrical function.
    • 用于评估光学构件的折射率均匀性的方法包括使光通过用于光刻的光学构件(1)。 相对于光学构件(1)的光轴(AX)的侧表面(1a)由弹性构件(4)在相等间隔设置的多个位置处保持以使光通过光学构件(1) 并测量波前像差。 光学构件围绕光轴(AX)旋转相等的间隔,以再次测量波前像差,并确定与初始测量的差异。 光学构件(1)沿垂直于光轴(AX)的方向移动,以再次测量波前像差,并确定与初始测量的差异。 通过使用Zernike圆柱形函数的拟合,可以从这些差异精确地评估光学构件的折射率均匀性。