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    • 3. 发明授权
    • Process and apparatus for supplying rare earth metal-based alloy powder
    • 稀土金属基合金粉末的制备方法和装置
    • US06779995B2
    • 2004-08-24
    • US10212091
    • 2002-08-06
    • Seiichi KoharaShuhei OkumuraAkira Nakamura
    • Seiichi KoharaShuhei OkumuraAkira Nakamura
    • B22F302
    • B30B15/304B22F3/004B22F2999/00H01F1/0571H01F1/0577H01F1/06H01F41/0253H01F41/0266B22F2201/10
    • In a rare earth metal-based alloy powder supplying apparatus, a rare earth metal-based alloy powder is supplied from a feeder box having an opening in its bottom surface into a cavity by moving the feeder box to above the cavity. The apparatus includes a bar-shaped member which is moved horizontally and in parallel in the bottom of the feeder box. A plurality of the bar-shaped members may be provided horizontally at distances. The apparatus further includes a powder replenishing device for sequentially replenishing the alloy powder into the feeder box in an amount corresponding to a decrement in amount resulting from the supplying of the alloy powder from the feeder box to the cavity, an inert gas supply device for filling an inert gas into said powder feeder box, and a plate member made of a fluorine-contained resin and mounted on the bottom surface of the feeder box. Thus, an alloy powder extremely poor in fluidity and in agitatability and liable to be inflamed can be supplied into the cavity with an extremely uniform filled density without production of agglomerates and bridges and with no fear of inflammation.
    • 在稀土类金属基合金粉末供给装置中,通过将供料盒移动到空腔的上方,从其底面开口的供料箱向空腔供给稀土类金属系合金粉末。 该装置包括在进料盒的底部水平移动并平行移动的棒状构件。 多个条形构件可以在距离处水平设置。 该装置还包括粉末补给装置,用于将合金粉末顺序地补充到进料箱中,其量相当于从供料盒向腔体供应合金粉末所产生的量减少;惰性气体供应装置,用于填充 将惰性气体输送到所述粉末给料盒中,以及由含氟树脂制成的板件,并安装在所述进料盒的底表面上。 因此,可以以非常均匀的填充密度将流动性和搅拌性极差且容易发炎的合金粉末供给到空腔中,而不产生附聚物和桥梁,并且不用担心发炎。
    • 7. 发明授权
    • Process and apparatus for supplying rare earth metal-based alloy powder
    • 稀土金属基合金粉末的制备方法和装置
    • US06299832B1
    • 2001-10-09
    • US09472247
    • 1999-12-27
    • Seiichi KoharaShuhei OkumuraAkira Nakamura
    • Seiichi KoharaShuhei OkumuraAkira Nakamura
    • B22F312
    • B30B15/304B22F3/004B22F2999/00H01F1/0571H01F1/0577H01F1/06H01F41/0253H01F41/0266B22F2201/10
    • In a rare earth metal-based alloy powder supplying apparatus, a rare earth metal-based alloy powder is supplied from a feeder box having an opening in its bottom surface into a cavity by moving the feeder box to above the cavity. The apparatus includes a bar-shaped member which is moved horizontally and in parallel in the bottom of the feeder box. A plurality of the bar-shaped members may be provided horizontally at distances. The apparatus further includes a powder replenishing device for sequentially replenishing the alloy powder into the feeder box in an amount corresponding to a decrement in amount resulting from the supplying of the alloy powder from the feeder box to the cavity, an inert gas supply device for filling an inert gas into said powder feeder box, and a plate member made of a fluorine-contained resin and mounted on the bottom surface of the feeder box. Thus, an alloy powder extremely poor in fluidity and in agitatability and liable to be inflamed can be supplied into the cavity with an extremely uniform filled density without production of agglomerates and bridges and with no fear of inflammation.
    • 在稀土类金属基合金粉末供给装置中,通过将供料盒移动到空腔的上方,从其底面开口的供料箱向空腔供给稀土类金属系合金粉末。 该装置包括在进料盒的底部水平移动并平行移动的棒状构件。 多个条形构件可以在距离处水平设置。 该装置还包括粉末补给装置,用于将合金粉末顺序地补充到进料箱中,其量相当于从供料盒向腔体供应合金粉末所产生的量减少;惰性气体供应装置,用于填充 将惰性气体输送到所述粉末给料盒中,以及由含氟树脂制成的板件,并安装在所述进料盒的底表面上。 因此,可以以非常均匀的填充密度将流动性和搅拌性极差且容易发炎的合金粉末供给到空腔中,而不产生附聚物和桥梁,并且不用担心发炎。
    • 8. 发明授权
    • Process for handling powder green compacts and rare earth metal-based magnet
    • 处理粉末生坯和稀土金属基磁体的方法
    • US06537488B1
    • 2003-03-25
    • US09440100
    • 1999-11-15
    • Shuhei OkumuraHiroshi Hashikawa
    • Shuhei OkumuraHiroshi Hashikawa
    • B22F312
    • H01F1/0577H01F41/0253
    • In a process for handling green compacts made from a rare earth metal-based magnetic alloy powder by a press machine to slide, on a sintering support plate, the green compacts, the support plate used has a surface roughness degree Ra in a range of 0.6 to 47 &mgr;m. At a first step, the green compacts are disposed in a first position near a final transport position, and at a second step, the said green compacts disposed in the first position are slid on the sintering support plate and disposed in the final transport position. Thus, by using the support plate having a surface roughness degree in a particular range, the green compacts made from the rare earth metal-based magnetic alloy powder can be sintered without occurrence of the deposition of the green compacts to the support plate, the chipping of the green compacts and the like. In addition, the efficiency of operation of the press machine can be increased.
    • 在通过压机机械处理由稀土类金属系磁性合金粉末制成的压坯的工序中,在烧结支撑板上生坯,使用的支撑板的表面粗糙度Ra为0.6 到47岁 在第一步骤中,绿色压块被布置在靠近最终传送位置的第一位置,并且在第二步骤中,设置在第一位置的所述生坯压块在烧结支撑板上滑动并设置在最终传送位置。 因此,通过使用具有特定范围的表面粗糙度的支撑板,可以烧结由稀土金属基磁性合金粉末制成的压坯,而不会发生生坯到支撑板的沉积, 的压坯等。 另外,能够提高冲压机的运转效率。