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    • 1. 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。
    • 2. 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。