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    • 31. 发明授权
    • Multi-piece golf ball
    • 多件高尔夫球
    • US07037216B2
    • 2006-05-02
    • US10945932
    • 2004-09-22
    • Junji HayashiHiroyuki NagasawaHideo Watanabe
    • Junji HayashiHiroyuki NagasawaHideo Watanabe
    • A63B37/06
    • A63B37/0003A63B37/0031A63B37/0033A63B37/0039A63B37/0062A63B37/0064A63B37/0065A63B37/0075A63B37/0076
    • Disclosed herein is a multi-piece golf ball composed of a core and an outermost cover layer, with one or more inner cover layers interposed between them, which is characterized in that the core is made mainly of a polybutadiene which is synthesized with using a catalyst of rare earth element such that the content of cis-1,4 bond is no less than 60%, the core has a diameter of 34.7 to 40.7 mm, the core undergoes deflection amounting to 3.0 to 5.0 mm under a load of 100 kg, the outermost cover layer is formed mainly of a thermoplastic resin or elastomer compounded with organic short fibers, the outermost cover layer has a Shore D hardness of 55 to 70 and a thickness of 0.5 to 2.0 mm, and the inner cover layer has a Shore D hardness of 15 to 55 and a thickness of 0.5 to 2.0 mm. The multi-piece golf ball exhibits good flying performance and crack durability. In addition, it gives the player a good striking feel at the time of putting and driver shot.
    • 本发明公开了一种多芯高尔夫球,其由芯体和最外层覆盖层组成,其中一个或多个内覆盖层位于它们之间,其特征在于,芯主要由使用催化剂合成的聚丁二烯 的稀土元素使得顺式-1,4键的含量不小于60%,芯的直径为34.7至40.7mm,芯在100kg的负载下经历挠曲量为3.0至5.0mm, 最外覆盖层主要由与有机短纤维复合的热塑性树脂或弹性体形成,最外覆盖层的肖氏D硬度为55〜70,厚度为0.5〜2.0mm,内覆盖层具有肖氏D 硬度为15〜55,厚度为0.5〜2.0mm。 多件式高尔夫球表现出良好的飞行性能和裂纹耐久性。 此外,它给玩家在放映和驾驶员拍摄时的良好醒目感觉。
    • 32. 发明授权
    • Metallic gasket
    • 金属垫片
    • US07025358B2
    • 2006-04-11
    • US10433558
    • 2002-11-12
    • Kosaku UetaHideo Watanabe
    • Kosaku UetaHideo Watanabe
    • F02F11/00
    • F16J15/0818F16J2015/0843F16J2015/0856F16J2015/0868F16J2015/0875
    • A metallic gasket comprising a base plate having a first thickness-increased portion 3 formed at a peripheral edge on a combustion chamber opening 3 side of a base plate, and a first seal line SL1 and a second seal line SL2 arranged on the outer side of said first thickness-increased portion 3. No openings other than a cooling water hole 8 exist between said two seal lines. Beads formed along said seal lines SL1 and SL2 each consist of a convex metal bead raised only upward from an upper surface of said base plate and a rubber bead made of an elastic sealing material fixed to a convex portion and a concave portion of said metal bead. This structure of said metallic gasket can improve a processing accuracy of said metal bead and also enhance cooling effects on said metallic gasket itself and said joint surfaces of an engine, between which said metallic gasket is disposed.
    • 一种金属垫片,其特征在于,具有基板,所述基板具有形成在基板的燃烧室开口部3侧的周缘部的第一厚度增加部3和配置在所述外侧的第一密封线SL1和第二密封线SL2 所述第一厚度增加部分3的侧面。在所述两条密封线之间不存在冷却水孔8以外的开口。 沿着所述密封线SL 1和SL 2形成的珠粒分别由从所述基板的上表面向上凸起的凸金属珠和由弹性密封材料制成的橡胶珠固定到所述密封线SL 1和SL 2的凸部和凹部 金属珠。 所述金属衬垫的这种结构可以提高所述金属胎圈的加工精度,并且还增强对所述金属衬垫本身和发动机的所述接合表面的冷却效果,所述金属衬垫之间设置有所述金属衬垫。
    • 35. 发明申请
    • Sample information measuring method and scanning confocal microscope
    • 样品信息测量方法和扫描共聚焦显微镜
    • US20050161592A1
    • 2005-07-28
    • US10991123
    • 2004-11-17
    • Hideo WatanabeWataru Nagata
    • Hideo WatanabeWataru Nagata
    • G01B11/02G01B11/24G02B21/00H01J3/14H01J5/16
    • G02B21/006
    • When irradiating a sample with light from a light source through an object lens, discretely changing a relative position between a beam condensing position of the object lens and the sample in an optical axis direction of the converging beam, obtaining light intensity information from the sample at each relative position, extracting plural pieces of light intensity information from a light intensity information group, estimating a maximum value on a change curve adaptive to the plural pieces of extracted light intensity information and the relative position for the maximum value, and obtaining the estimated maximum value of the light intensity information and relative position as brightness information and height information, these information about the sample can be continuously obtained by discretely performing an iterative operation on the relative position between a beam condensing position of the object lens and the sample in an optical axis direction of the converging beam.
    • 当通过物镜将来自光源的光照射样品时,离散地改变物镜的聚光位置和聚光束的光轴方向上的样品之间的相对位置,从样品中获得光强度信息 每个相对位置,从光强度信息组中提取多个光强度信息,根据多个提取的光强度信息和最大值的相对位置估计适应于变化曲线的最大值,并获得估计的最大值 光强度信息的值和相对位置作为亮度信息和高度信息,关于样本的这些信息可以通过离散地对物镜的光束聚光位置和光学器件的样品之间的相对位置进行迭代操作来连续获得 会聚光束的轴向。
    • 39. 发明授权
    • Thermoelectric converter
    • 热电转换器
    • US06185941B1
    • 2001-02-13
    • US09380060
    • 2000-02-08
    • Hideo WatanabeFumikazu Kiya
    • Hideo WatanabeFumikazu Kiya
    • F25B2102
    • H01L35/30F25B2321/023H01L35/32
    • With an object to provide a thermoelectric converter excellent in performance, this invention provides a thermoelectric converter provided with a first thermal converter 1, a blocked second thermal conductor 2 connected to a predetermined position of the first conductor 1, a frame 6 made of a synthetic resin and surrounding the second conductor 2, a thermally-conductive substrate 5 with the frame 6 fixed at a basal end portion 8 thereof on the substrate and also with a group of thermoelectric elements 4 supported inside the substrate, and a heat-insulating layer 31 interposed between the first thermal conductor 1 and the thermally-conductive substrate 5 such that the frame 6 is surrounded at an outer periphery thereof by the heat-insulating layer. The second thermal conductor 2 and the thermally-conductive substrate 5 are opposing each other and are maintained in close contact with each other via the group of thermoelectric elements 4. The second thermal conductor 2 and the frame 6 are provided with an engaging flange 12, which prevents the second thermal conductor 2 from undergoing a displacement toward the first thermal conductor 1, and an engaged portion 9 which is in engagement with the engaging flange.
    • 目的在于提供一种性能优异的热电转换器,本发明提供了一种热电转换器,其具有第一热转换器1,连接到第一导体1的预定位置的阻塞第二热导体2,由合成 树脂,并且围绕第二导体2,导热基板5,其框架6固定在基板的基端部8上,并且还具有支撑在基板内的一组热电元件4,以及绝热层31 插入在第一导热体1和导热基板5之间,使得框架6在其外周被绝热层包围。 第二热导体2和导热基板5彼此相对并且经由一组热电元件4彼此保持紧密接触。第二热导体2和框架6设置有接合凸缘12, 这防止第二导热体2朝向第一导热体1发生位移,以及与接合凸缘接合的被接合部分9。