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    • 72. 发明申请
    • Frictional engagement structure using multiple disks
    • 使用多个磁盘的摩擦接合结构
    • US20050274586A1
    • 2005-12-15
    • US11147442
    • 2005-06-08
    • Yasuyuki SuzukiAtsumi MuramotoKazuo Hata
    • Yasuyuki SuzukiAtsumi MuramotoKazuo Hata
    • F16D13/58F16D25/0638F16D25/12F16H3/66F16H63/30
    • F16D25/0638F16D13/583F16D25/12F16H3/66F16H63/3026F16H2200/0047F16H2200/201
    • A frictional engagement structure includes a first drum arranged at the inner periphery of a transmission casing, a second drum arranged at the inner periphery of the first drum, first friction plates splined to the casing or the first drum, second friction plates splined to the second drum, the first and second friction plates being arranged alternately in the direction of an axis of rotation of the drums, a piston for pressing the first friction plates through a disk spring and ensuring coupling between the first friction plates and the second friction plates to frictionally engage the casing or the first drum with the second drum, and a spring bearing member arranged between the first friction plates and the disk spring and including a plate portion substantially parallel to the first friction plates and the outer peripheral portion arranged substantially perpendicular to the first friction plates and interposed between the disk spring and the first drum or the casing.
    • 摩擦接合结构包括布置在变速器壳体的内周的第一鼓,布置在第一滚筒的内周的第二滚筒,花键连接到壳体或第一滚筒的第一摩擦板,花键连接到第二滚筒的第二摩擦板 滚筒,第一和第二摩擦板沿着滚筒的旋转轴线的方向交替布置;活塞,用于通过盘形弹簧挤压第一摩擦片,并且确保第一摩擦片和第二摩擦片之间的摩擦力摩擦 将壳体或第一滚筒与第二滚筒接合,以及布置在第一摩擦片和盘弹簧之间的弹簧支承部件,其包括基本平行于第一摩擦片的平板部分和大致垂直于第一摩擦片 摩擦片并且介于盘簧和第一鼓或套管之间。
    • 78. 发明授权
    • Process for formation of multi-layer film
    • 多层膜的形成工艺
    • US6096378A
    • 2000-08-01
    • US970761
    • 1997-11-14
    • Yoshiharu KomatsuKazuhito NiidaShigeru KuramochiYasuyuki Suzuki
    • Yoshiharu KomatsuKazuhito NiidaShigeru KuramochiYasuyuki Suzuki
    • B05D5/06B05D7/00B05D7/14B32B27/20B32B33/00
    • B05D7/57B05D5/066
    • The present invention provides a process for forming a multilayer film by applying, on a substrate, the following coatings in the following order: (A) a primer, (B) an intermediate coating, C) a coloring base coating, (D a pearl-like base coating, and (E) a clear coating, in which process the intermediate coating (B) is a liquid thermosetting coating containing a thermosetting resin composition, a fine aluminum powder having an average particle diameter of less than 10 .mu.m and a titanium oxide pigment, the amounts of the fine aluminum powder and the titanium oxide pigment being 0.1-30 parts by weight and 1-200 parts by weight, respectively, per 100 parts by weight of the thermosetting resin composition so that a film formed from the liquid thermosetting coating has a hiding powder of 25 .mu.m or less; the coloring base coating (C) is a coating containing a thermosetting resin composition, a titanium white pigment and an aluminum flake, the amounts of the titanium white pigment and the aluminum flake being such that a film formed from the coating has a value of N 7 to N 9 in Munsell's color system; and the pearl-like base coating (D) is a white-pearl-like or silver-pearl-like coating containing a thermosetting resin composition and a scaly mica powder coated with titanium oxide. The process enables formation of a multilayer film superior in chipping resistance, high white-iridescent appearance, color stability, etc. even when having a small total film thickness.
    • 本发明提供一种通过以下顺序在基材上涂覆以下涂层来形成多层膜的方法:(A)底漆,(B)中间涂层,C)着色底涂层,(D珍珠 和(E)透明涂层,其中中间涂层(B)是含有热固性树脂组合物的液体热固性涂层,平均粒径小于10μm的细铝粉末和 氧化钛颜料,相对于100重量份的热固性树脂组合物,细铝粉末和氧化钛颜料的量分别为0.1-30重量份和1-200重量份,使得由 液态热固性涂层具有25μm或更小的隐藏粉末;着色基底涂层(C)是包含热固性树脂组合物,钛白色颜料和铝薄片的涂层,钛白色颜料和 铝薄片使得从涂层形成的膜在孟塞尔的颜色系统中具有N 7至N 9的值; 珍珠状基底涂层(D)是含有热固性树脂组合物和涂覆有氧化钛的鳞状云母粉末的白珍珠样或银珍珠样涂层。 该方法即使在总膜厚小的情况下,也能够形成耐切削性,高白色外观,颜色稳定性等优异的多层膜。
    • 80. 发明授权
    • Optical-fiber inspection device
    • 光纤检测装置
    • US6008487A
    • 1999-12-28
    • US39944
    • 1998-03-16
    • Yoshihiko TachikawaYoshihiro SampeiTakaaki HirataMakoto KomiyamaYasuyuki SuzukiMamoru Arihara
    • Yoshihiko TachikawaYoshihiro SampeiTakaaki HirataMakoto KomiyamaYasuyuki SuzukiMamoru Arihara
    • G01M11/00H01J5/16
    • G01M11/3172
    • In the primary invention of this application, an optical-fiber inspection device which detects the distance to a reflection point within the DUT and the amount of reflected light by dividing into two a laser beam which is possible to be frequency-swept, making one of the divided light beams incident to an optical detector via the reference light path, while making the other of the divided light beams incident to the DUT and making the light reflected within the DUT incident to the said optical detector, and analyzing the frequency of the interference signal for the two beams obtained by the optical detector, is configured so that the final reference light is obtained by providing an optical coupler in the reference light path and, after taking out a part of the reference light and making it pass through an optical frequency shifter, combining this again with the original reference light with the said optical coupler.
    • 在本申请的第一个发明中,一种光纤检查装置,其检测到DUT内的反射点的距离和通过分成两个可能被频率扫描的激光束的反射光的量,使得 通过参考光路入射到光学检测器的分束光束,同时使分离的光束中的另一个入射到DUT并使在DUT中反射的光入射到所述光学检测器,并且分析干扰的频率 由光检测器获得的两束光信号被配置为使得最终参考光通过在参考光路中提供光耦​​合器而获得,并且在取出一部分参考光并使其通过光频率 移位器,再次与原来的参考光与所述光耦合器组合。