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    • 3. 发明申请
    • Electrical contact and electrical equipment including the same
    • 电气接触和电气设备包括相同
    • US20060239854A1
    • 2006-10-26
    • US10564951
    • 2004-07-16
    • Noboru UenishiNorihito GomaYasuhiko Suzuki
    • Noboru UenishiNorihito GomaYasuhiko Suzuki
    • C22C5/06
    • C22C5/06B32B15/018H01H1/0231H01H1/02376
    • An electric contact of high performance that is constituted of a Cd-free Ag alloy posing no toxic problem, excels in insulating capability and can ensure stability of brazing and consumption characteristics and that can be used in a breaker or high-load electromagnetic switch; and electrical equipment including the electric contact. In particular, an electric contact comprised of an Ag alloy containing 1 to 9 mass % of Sn in which the amount of Cd as impurity is 0 or less than 0.01 mass %, the electric contact having a double layer structure composed of a surface-side first layer and an interior second layer wherein the first layer has a thickness of 10 μm or greater and has an average hardness of 150 or higher on the microvickers scale stipulated in JIS while the second layer has an average hardness of higher than 130 on the same scale.
    • 高性能的电接触由无Cd的Ag合金构成,不会产生毒性问题,绝缘性能优异,可确保钎焊和消耗特性的稳定性,可用于断路器或高负载电磁开关; 以及包括电接触器的电气设备。 特别是包含含有1〜9质量%Sn的杂质的Cd合金含量为0以下0.01以下的电接触体,具有由表面侧构成的双层结构的电接点 第一层和内部第二层,其中第一层具有10μm以上的厚度,并且在JIS上规定的微观尺度上具有150或更高的平均硬度,而第二层具有高于130的平均硬度。 规模。
    • 5. 发明授权
    • Tungsten alloy grains, processing method using the same, and method for manufacturing the same
    • 钨合金晶粒,使用其的加工方法及其制造方法
    • US08025710B2
    • 2011-09-27
    • US12085376
    • 2006-11-20
    • Shinji KikuharaHitoshi InoueNoboru UenishiSatoshi Umemoto
    • Shinji KikuharaHitoshi InoueNoboru UenishiSatoshi Umemoto
    • B22F9/06C22C27/04
    • B24B31/02B22F2998/00B22F2998/10C09K3/1409C22C1/045C22C27/04Y10T428/2982B22F2207/01B22F1/0003B22F1/0059B22F9/04B22F1/0014B22F3/10B22F9/026
    • Provided are an ancillary material, used for shape processing, which is capable of shortening a processing time, avoiding a reduction in quality of a shape provided to a workpiece material, and allowing a relatively low manufacturing cost; a processing method using the ancillary material; and a method of manufacturing the ancillary material. The tungsten alloy grains (1) comprise: tungsten of greater than or equal to 80% by mass and less than or equal to 98% by mass; nickel; at least one kind of metal selected from the group consisting of iron, copper, and cobalt; and an inevitable impurity, a maximum diameter thereof is greater than or equal to 0.1 mm and less than or equal to 5.00 mm, and a specific surface area thereof is less than or equal to 0.02 m2/g. The tungsten alloy grains (1, 10), the workpiece material (30), an abrasive (20) are blended in a container (100) and the container is rotated, thereby processing the shape of the workpiece material (30). In the method of manufacturing the tungsten alloy grains (1), a granulated powder is stirred at a temperature greater than or equal to a softening point of an organic binder and thereafter, is cooled, thereby spheroidizing the granulated powder.
    • 提供了用于形状加工的辅助材料,其能够缩短处理时间,避免了提供给工件材料的形状的质量降低,并且允许相对低的制造成本; 使用该辅助材料的加工方法; 以及制造辅助材料的方法。 钨合金粒子(1)包含:质量%以上且小于等于98质量%的钨, 镍; 选自铁,铜和钴中的至少一种金属; 和不可避免的杂质,其最大直径大于或等于0.1mm且小于或等于5.00mm,比表面积小于或等于0.02m 2 / g。 将钨合金颗粒(1,10),工件材料(30),研磨剂(20)混合在容器(100)中并使容器旋转,从而处理工件材料(30)的形状。 在制造钨合金晶粒(1)的方法中,将粒状粉末在大于或等于有机粘合剂的软化点的温度下搅拌,然后冷却,从而使造粒粉末球化。
    • 7. 发明授权
    • Space accessories
    • 空间配件
    • US6074268A
    • 2000-06-13
    • US134244
    • 1998-08-14
    • Noboru Uenishi
    • Noboru Uenishi
    • A63H33/40
    • A63H33/40
    • There is disclosed a space accessory for forming a three-dimensional ornamental pattern. The space accessory includes a rotating center, necessary disk supports disposed along the rotating center and a predetermined number of vanes each having a design shape or pattern, said vanes being of the same shape, thickness and mass and fixed to the disk support for balanced rotation with a natural air current. For changes in the ornamental pattern of the space accessory there are only need in changes in the design or pattern of the vanes.
    • 公开了一种用于形成三维装饰图案的空间附件。 空间配件包括旋转中心,沿着旋转中心设置的必要的盘支架和每个具有设计形状或图案的预定数量的叶片,所述叶片具有相同的形状,厚度和质量,并且固定到盘支撑件以进行平衡旋转 具有自然气流。 对于空间配件的装饰图案的变化,只需要改变叶片的设计或图案。
    • 9. 发明申请
    • Tungsten Alloy Grains, Processing Method Using the Same, and Method for Manufacturing the Same
    • 钨合金粒,其加工方法及其制造方法
    • US20090169888A1
    • 2009-07-02
    • US12085376
    • 2006-11-20
    • Shinji KikuharaHitoshi InoueNoboru UenishiSatoshi Umemoto
    • Shinji KikuharaHitoshi InoueNoboru UenishiSatoshi Umemoto
    • B32B1/00B22F3/10C22C27/04
    • B24B31/02B22F2998/00B22F2998/10C09K3/1409C22C1/045C22C27/04Y10T428/2982B22F2207/01B22F1/0003B22F1/0059B22F9/04B22F1/0014B22F3/10B22F9/026
    • Provided are an ancillary material, used for shape processing, which is capable of shortening a processing time, avoiding a reduction in quality of a shape provided to a workpiece material, and allowing a relatively low manufacturing cost; a processing method using the ancillary material; and a method of manufacturing the ancillary material. The tungsten alloy grains (1) comprise: tungsten of greater than or equal to 80% by mass and less than or equal to 98% by mass; nickel; at least one kind of metal selected from the group consisting of iron, copper, and cobalt; and an inevitable impurity, a maximum diameter thereof is greater than or equal to 0.1 mm and less than or equal to 5.00 mm, and a specific surface area thereof is less than or equal to 0.02 m2/g. The tungsten alloy grains (1, 10), the workpiece material (30), an abrasive (20) are blended in a container (100) and the container is rotated, thereby processing the shape of the workpiece material (30). In the method of manufacturing the tungsten alloy grains (1), a granulated powder is stirred at a temperature greater than or equal to a softening point of an organic binder and thereafter, is cooled, thereby spheroidizing the granulated powder.
    • 提供了用于形状加工的辅助材料,其能够缩短处理时间,避免了提供给工件材料的形状的质量降低,并且允许相对低的制造成本; 使用该辅助材料的加工方法; 以及制造辅助材料的方法。 钨合金粒子(1)包含:质量%以上且小于等于98质量%的钨, 镍; 选自铁,铜和钴中的至少一种金属; 和不可避免的杂质,其最大直径大于或等于0.1mm且小于或等于5.00mm,比表面积小于或等于0.02m 2 / g。 将钨合金颗粒(1,10),工件材料(30),研磨剂(20)混合在容器(100)中并使容器旋转,从而处理工件材料(30)的形状。 在制造钨合金晶粒(1)的方法中,将粒状粉末在大于或等于有机粘合剂的软化点的温度下搅拌,然后冷却,从而使造粒粉末球化。