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    • 1. 发明授权
    • Wave absorber
    • 波浪吸收器
    • US5952953A
    • 1999-09-14
    • US41729
    • 1998-03-13
    • Yoshio NikawaMasaru ChinoShinichi KitahataKeiko Kurata
    • Yoshio NikawaMasaru ChinoShinichi KitahataKeiko Kurata
    • H01Q17/00
    • H01Q17/007H01Q17/004
    • A wave absorber which is light in weight, rich in flexibility and excellent in wave absorption characteristics in a microwave frequency range. The wave absorber in which composite carbon black particles including crystalline graphite and amorphous carbon black are dispersed into an insulating matrix. In the wave absorber, dispersion of the composite carbon black particles is adjusted so that a ratio (.rho./R) of a volume resistivity .rho. measured at frequencies of 30, 100 and 500 kHz to a measured DC volume resistivity R is in a predetermined range and a volume ratio of the composite carbon black particles having particle diameters of 10 nm to 200 nm to all the composite carbon black particles is in a range of 5% to 95%. Thereby, a wave absorber excellent in absorption characteristics is obtained.
    • 一种重量轻,在微波频率范围内灵活性高,波吸收特性优异的吸波体。 其中包括结晶石墨和无定形炭黑的复合炭黑颗粒分散在绝缘基体中的波吸收体。 在波吸收体中,调整复合炭黑粒子的分散,使得以30,100和500kHz的频率测量的体积电阻率rho与测量的DC体积电阻率R的比(rho / R)在预定范围内 粒径为10nm〜200nm的复合炭黑粒子与所有复合炭黑粒子的体积比为5〜95%的范围。 由此,得到吸收特性优异的波长吸收体。
    • 3. 发明授权
    • Magnetic recording medium
    • 磁记录介质
    • US4770933A
    • 1988-09-13
    • US142685
    • 1988-01-11
    • Shinichi KitahataMikio Kishimoto
    • Shinichi KitahataMikio Kishimoto
    • C09D5/23C09D7/12G11B5/706G11B5/70
    • G11B5/70678Y10S428/90Y10T428/25Y10T428/2982
    • A magnetic recording medium which comprises a substrate and a magnetic layer comprising hexagonal system ferrite powder of the formula:AO.multidot.n{[Fe.sub.1-(x+y) .multidot.M.sup.2+.sub.x .multidot.M.sup.4+.sub.y ].sub.2 O.sub.3 } (I)wherein,A is at least one metal selected from the group consisting of Ba, Sr, Pb and Ca,M.sup.2+ is at least one divalent metal ion selected from the group consisting of Mn, Co, Ni, Cu, Zn and Mg,M.sup.4+ is at least one tetravalent metal ion selected from the group consisting of Ti, Zr, Sn, Ge, V and Nb,n is a number of 3 to 8,x and y are such numbers that x+y is from 0.02 to 0.3 and x/y is from 0.2 to 0.8.,and which has a temperature dependency such that the coercive force of the magnetic layer is at a minimum in the temperature range of -20.degree. to 50.degree. C. and has a higher coercive force outside said temperature rangehas good storage property.
    • 一种磁记录介质,包括基底和磁性层,所述磁性层包含以下结构的六方晶系铁氧体粉末:AOxn {[Fe1-(x + y)xM2 + xxM4 + y] 2O3}(I)其中,A为至少一种金属 选自由Ba,Sr,Pb和Ca组成的组,M2 +为选自Mn,Co,Ni,Cu,Zn和Mg中的至少一种二价金属离子,M4 +为选自以下的四价金属离子 由Ti,Zr,Sn,Ge,V和Nb组成的组,n为3〜8的数,x和y为x + y为0.02〜0.3,x / y为0.2〜0.8的数。 并且具有温度依赖性,使得磁性层的矫顽力在-20℃至50℃的温度范围内处于最小值,并且在所述温度范围外具有较高的矫顽力具有良好的储存性能。
    • 7. 发明授权
    • Process for producing alloy, alloy and alloy containing sheets made
therefrom
    • 用于制造由其制成的合金,合金和合金的片材的方法
    • US06143096A
    • 2000-11-07
    • US812944
    • 1997-03-04
    • Shinichi KitahataHisao Kanzaki
    • Shinichi KitahataHisao Kanzaki
    • G06K19/06G11B5/706H01F1/00
    • H01F1/0027G06K19/06196G11B5/70605
    • A powdery alloy mainly composed of Mn--Bi having particle diameter of 5 .mu.m or less which has a magnetic anisotropy of 6000 Oe or more in coercive force and 35 emu/g or more in saturation magnetization, wherein the size of crystallite according to Scheler's formula is 700 .ANG. or less; and an alloy containing sheet of 0.5 to 10 .mu.m thickness in which a powdery alloy mainly composed of Mn--Bi having particle diameter of 5 .mu.m or less which has a magnetic anisotropy of 6000 Oe or more in coercive force and 35 emu/g or more in saturation magnetization is bound with a binder into a sheet of 0.5 to 10 .mu.m thickness in a state magnetically oriented toward said direction of magnetic anisotropy, wherein when said sheet is measured toward said magnetic anisotropy direction at 16 kOe and 5 kOe, the ratio of residual magnetic flux density Mr16k and Mr5k (Mr5k/Mr16k) is 0.85 or more.
    • 主要由粒径5μm以下的Mn-Bi构成的粉末状合金,矫顽磁力各向异性为6000Oe以上,饱和磁化强度为35emu / g以上,其中,Scheler's 公式为700 ANGSTROM以下; 以及厚度为0.5〜10μm的含有合金的片材,其中主要由粒径为5μm以下的Mn-Bi构成的粉末状合金,其矫顽磁力各向异性为6000Oe以上,35emu / g 或更多的饱和磁化强度与粘结剂结合成在磁性方向朝向所述磁各向异性方向磁性取向的状态下为0.5至10μm厚的片材,其中当所述片材以16kOe和5kOe朝向所述磁各向异性方向测量时, 剩余磁通密度Mr16k和Mr5k(Mr5k / Mr16k)的比率为0.85以上。