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    • 1. 发明申请
    • CRUCIBLE PROTECTION SHEET AND CRUCIBLE APPARATUS USING THE CRUCIBLE PROTECTION SHEET
    • 使用防腐片保护片和可疑装置
    • US20090308307A1
    • 2009-12-17
    • US12373182
    • 2007-07-09
    • Yoshiaki HiroseTetsuya YukiTeruhisa KondoOsamu Okada
    • Yoshiaki HiroseTetsuya YukiTeruhisa KondoOsamu Okada
    • C30B15/12B32B9/00
    • F27B14/10C30B15/10Y10T117/10Y10T117/1004Y10T117/1024Y10T117/1052
    • A crucible protection sheet is provided that can prevent damages to an inner crucible, hinder an outer crucible from silicon-carbidization, and transmit heat from the outer crucible to the inner crucible uniformly.In a crucible having an inner crucible 2 and an outer crucible 3, the crucible protection sheet is arranged between the two crucibles and is made of expanded graphite. The planar thermal conductivity is 120 W/(m·K) or higher, the gas permeability is less than 1.0×10−4 cm2/s, and the compression ratio is 20% or higher when the sheet is compressed in a thickness direction at a pressure of 34.3 MPa. Since the compression ratio is high, the effect of preventing breakage is great when inserting the inner crucible, improving workability and preventing the inner crucible from tilting inside the outer crucible. In addition, even though the compression ratio is high, the thermal conductivity is kept to such a degree that the inner crucible can be heated uniformly, and the gas shielding capability is also ensured. As a result, the outer crucible is prevented from silicon-carbidization and thickness decrease.
    • 提供了可以防止内坩埚损坏的坩埚保护片,阻止外坩埚从硅碳化,并将热量从外坩埚均匀地传递到内坩埚。 在具有内坩埚2和外坩埚3的坩埚中,坩埚保护片布置在两个坩埚之间并且由膨胀石墨制成。 平面导热率为120W /(mK)以上,气体透过率小于1.0×10 -4 cm 2 / s,压缩比为20%以上时,在厚度方向压缩片材的压力为 34.3MPa。 由于压缩比高,所以在插入内坩埚时,防止破损的效果大,提高加工性,防止内坩埚在外坩埚内部倾斜。 此外,即使压缩比高,导热率也保持在内坩埚能均匀加热的程度,并且也保证了气体屏蔽能力。 结果,防止了外坩埚的硅 - 碳化和厚度的减小。
    • 3. 发明授权
    • Expanded graphite sheet and method of manufacturing same
    • 膨胀石墨片及其制造方法
    • US09556033B2
    • 2017-01-31
    • US13879223
    • 2011-10-17
    • Tetsuya YukiYoshiaki Hirose
    • Tetsuya YukiYoshiaki Hirose
    • C01B9/00C01B31/04
    • C01B31/0423C01B32/225Y10T428/30
    • An expanded graphite sheet is provided that can remarkably improve the quality and yield rate by preventing chipping and cracks in the surface in molding the sheet into a desired shape by inhibiting degradation in the flexibility while reducing the ash content to a certain degree. An expanded graphite sheet (3) has a flexibility of 25 times or greater, as determined in a flexibility test in which the flexibility is defined as the number of times the expanded graphite sheet (3) can be bent using a flexibility testing device having a rotator (2) to which one end of a plate-shaped expanded graphite sheet (3) is fixed, a weight (7) fixed to the other end of the expanded graphite sheet (3), and a bending position determining member (5) for determining a bending position of the expanded graphite sheet (3) when the rotator (2) is rotated.
    • 提供了一种膨胀石墨片,其通过防止在将灰分含量降低到一定程度的同时抑制柔软性降低而将片材成型成表面的断面和裂纹,从而显着提高质量和收率。 膨胀石墨片(3)具有25倍以上的柔软性,如柔性试验所确定的,其中柔性被定义为可以使用柔性试验装置使膨胀石墨片(3)弯曲的次数 固定有板状膨胀石墨片(3)的一端的转子(2),固定在膨胀石墨片(3)的另一端的重物(7)和弯曲位置决定部件(5) 用于在旋转器(2)旋转时确定膨胀石墨片(3)的弯曲位置。
    • 4. 发明授权
    • Expanded graphite sheet
    • 膨胀石墨片
    • US08765093B2
    • 2014-07-01
    • US13382185
    • 2010-08-06
    • Tetsuya YukiYoshiaki Hirose
    • Tetsuya YukiYoshiaki Hirose
    • C01B31/04
    • C01B32/225
    • An object is to provide an expanded graphite sheet at the use stage that can prevent can prevent degradation in product quality and deterioration in product yield by inhibiting the expanded graphite sheet from containing impurities even when the expanded graphite sheet is actually used.An expanded graphite sheet at the use stage in a condition in which the expanded graphite sheet is packed with a packing material and thereafter removed from the packing material, characterized in that all of the amounts of Al, B, Be, Ca, Cu, Fe, Li, Mg, Ni, S, Ti, V, and Zn as determined by an ICP emission spectroscopy method, the amounts of K and Na as determined by an atomic absorption spectrometry method, and the amount of Si as determined by an absorption spectrophotometry method are at a level less than the detection limit.
    • 一个目的是提供一种在使用阶段能够防止可通过抑制从即使当实际使用该膨胀石墨片含有杂质的膨胀石墨片防止在产品质量和劣化产品的成品率退化的膨胀石墨板。 在的条件下,在使用阶段的膨胀石墨片材,其中所述膨胀石墨片材被填充有填充材料,然后从包装材料中除去,其特征在于所有的Al,B,铍,钙,铜,铁的量的 ,通过ICP发射光谱法测定的Li,Mg,Ni,S,Ti,V和Zn,通过原子吸收光谱法测定的K和Na的量以及通过吸收分光光度法测定的Si的量 方法处于小于检测限的水平。
    • 6. 发明申请
    • METHOD OF PROTECTING CARBONACEOUS CRUCIBLE AND SINGLE-CRYSTAL PULLING APPARATUS
    • 保护碳水化合物和单晶拉伸装置的方法
    • US20100116198A1
    • 2010-05-13
    • US12594690
    • 2008-04-04
    • Yoshiaki HiroseTetsuya Yuki
    • Yoshiaki HiroseTetsuya Yuki
    • C30B15/10B32B37/18
    • C30B15/10Y10T117/1032
    • A method is provided of protecting a carbonaceous crucible that is easy to handle, reduces work hour, and can cover the inner surface of a crucible without breaking the sheet and without gaps. A single-crystal pulling apparatus is also provided. The method of protecting a carbonaceous crucible by interposing a protective sheet made of an expanded graphite material between a quartz crucible and a carbonaceous crucible on which the quartz crucible is placed, including: laying two or more protective sheet pieces on an inner surface of the carbonaceous crucible, each of the protective sheet pieces having such a shape that the protective sheet pieces are combined integrally to form the protective sheet in laying the protective sheet between the crucibles.
    • 提供了一种保护易于处理的碳质坩埚,减少工作时间的方法,并且可以覆盖坩埚的内表面而不破坏片材而没有间隙。 还提供了单晶拉制装置。 通过在石英坩埚和其上放置石英坩埚的碳质坩埚之间插入由膨胀石墨材料制成的保护片来保护碳质坩埚的方法,包括:在碳质陶瓷的内表面上铺设两个或更多个保护片 坩埚,每个保护片片具有这样一种形状,使保护片一体地结合在一起,以便将保护片放置在坩埚之间形成保护片。
    • 8. 发明授权
    • Crucible protection sheet and crucible apparatus using the crucible protection sheet
    • 使用坩埚保护板的坩埚保护板和坩埚装置
    • US08864908B2
    • 2014-10-21
    • US12373182
    • 2007-07-09
    • Yoshiaki HiroseTetsuya Yuki
    • Yoshiaki HiroseTetsuya Yuki
    • C30B35/00C30B13/28C30B15/20C30B15/26C30B11/00C30B15/00C30B21/06C30B27/02C30B28/10C30B30/04F27B14/10C30B15/10
    • F27B14/10C30B15/10Y10T117/10Y10T117/1004Y10T117/1024Y10T117/1052
    • A crucible protection sheet is provided that can prevent damages to an inner crucible, hinder an outer crucible from silicon-carbidization, and transmit heat from the outer crucible to the inner crucible uniformly.In a crucible having an inner crucible 2 and an outer crucible 3, the crucible protection sheet is arranged between the two crucibles and is made of expanded graphite. The planar thermal conductivity is 120 W/(m·K) or higher, the gas permeability is less than 1.0×10−4 cm2/s, and the compression ratio is 20% or higher when the sheet is compressed in a thickness direction at a pressure of 34.3 MPa. Since the compression ratio is high, the effect of preventing breakage is great when inserting the inner crucible, improving workability and preventing the inner crucible from tilting inside the outer crucible. In addition, even though the compression ratio is high, the thermal conductivity is kept to such a degree that the inner crucible can be heated uniformly, and the gas shielding capability is also ensured. As a result, the outer crucible is prevented from silicon-carbidization and thickness decrease.
    • 提供了可以防止内坩埚损坏的坩埚保护片,阻止外坩埚从硅碳化,并将热量从外坩埚均匀地传递到内坩埚。 在具有内坩埚2和外坩埚3的坩埚中,坩埚保护片布置在两个坩埚之间并且由膨胀石墨制成。 平面导热率为120W /(m·K)以上时,气体透过率小于1.0×10 -4 cm 2 / s,压缩比为20%以上时, 压力为34.3MPa。 由于压缩比高,所以在插入内坩埚时,防止破损的效果大,提高加工性,防止内坩埚在外坩埚内部倾斜。 此外,即使压缩比高,导热率也保持在内坩埚能均匀加热的程度,并且也保证了气体屏蔽能力。 结果,防止了外坩埚的硅 - 碳化和厚度的减小。
    • 9. 发明申请
    • EXPANDED GRAPHITE SHEET AND METHOD OF MANUFACTURING SAME
    • 膨胀石墨片及其制造方法
    • US20130202872A1
    • 2013-08-08
    • US13879223
    • 2011-10-17
    • Tetsuya YukiYoshiaki Hirose
    • Tetsuya YukiYoshiaki Hirose
    • C01B31/04
    • C01B31/0423C01B32/225Y10T428/30
    • An expanded graphite sheet is provided that can remarkably improve the quality and yield rate by preventing chipping and cracks in the surface in molding the sheet into a desired shape by inhibiting degradation in the flexibility while reducing the ash content to a certain degree. An expanded graphite sheet (3) has a flexibility of 25 times or greater, as determined in a flexibility test in which the flexibility is defined as the number of times the expanded graphite sheet (3) can be bent using a flexibility testing device having a rotator (2) to which one end of a plate-shaped expanded graphite sheet (3) is fixed, a weight (7) fixed to the other end of the expanded graphite sheet (3), and a bending position determining member (5) for determining a bending position of the expanded graphite sheet (3) when the rotator (2) is rotated.
    • 提供了一种膨胀石墨片,其通过防止在将灰分含量降低到一定程度的同时抑制柔软性降低而将片材成型成表面的断面和裂纹,从而显着提高质量和收率。 膨胀石墨片(3)具有25倍以上的柔软性,如柔性试验所确定的,其中柔性被定义为可以使用柔性试验装置使膨胀石墨片(3)弯曲的次数 固定有板状膨胀石墨片(3)的一端的转子(2),固定在膨胀石墨片(3)的另一端的重物(7)和弯曲位置决定部件(5) 用于在旋转器(2)旋转时确定膨胀石墨片(3)的弯曲位置。
    • 10. 发明申请
    • EXPANDED GRAPHITE SHEET
    • 膨胀石墨片
    • US20120107222A1
    • 2012-05-03
    • US13382185
    • 2010-08-06
    • Tetsuya YukiYoshiaki Hirose
    • Tetsuya YukiYoshiaki Hirose
    • C01B31/00
    • C01B32/225
    • An object is to provide an expanded graphite sheet at the use stage that can prevent can prevent degradation in product quality and deterioration in product yield by inhibiting the expanded graphite sheet from containing impurities even when the expanded graphite sheet is actually used.An expanded graphite sheet at the use stage in a condition in which the expanded graphite sheet is packed with a packing material and thereafter removed from the packing material, characterized in that all of the amounts of Al, B, Be, Ca, Cu, Fe, Li, Mg, Ni, S, Ti, V, and Zn as determined by an ICP emission spectroscopy method, the amounts of K and Na as determined by an atomic absorption spectrometry method, and the amount of Si as determined by an absorption spectrophotometry method are at a level less than the detection limit.
    • 一个目的是提供一种在使用阶段能够防止可通过抑制从即使当实际使用该膨胀石墨片含有杂质的膨胀石墨片防止在产品质量和劣化产品的成品率退化的膨胀石墨板。 在的条件下,在使用阶段的膨胀石墨片材,其中所述膨胀石墨片材被填充有填充材料,然后从包装材料中除去,其特征在于所有的Al,B,铍,钙,铜,铁的量的 ,通过ICP发射光谱法测定的Li,Mg,Ni,S,Ti,V和Zn,通过原子吸收光谱法测定的K和Na的量以及通过吸收分光光度法测定的Si的量 方法处于小于检测限的水平。