R-T-B system rare earth permanent magnet
    1.
    发明授权
    R-T-B system rare earth permanent magnet 有权
    R-T-B系稀土永磁铁

    公开(公告)号:US07314531B2

    公开(公告)日:2008-01-01

    申请号:US10799153

    申请日:2004-03-11

    IPC分类号: H01F1/057

    CPC分类号: H01F1/0577

    摘要: A sintered body comprising a main phase consisting of an R2T14B phase (wherein R represents one or more rare earth elements (providing that the rare earth elements include Y), and T represents one or more transition metal elements essentially containing Fe, or Fe and Co), and a grain boundary phase containing a higher amount of R than the main phase, wherein a platy or acicular product exists. This sintered body enables to inhibit the grain growth, while keeping a decrease in magnetic properties to a minimum, and to improve a suitable sintering temperature range.

    摘要翻译: 一种烧结体,其包含由R 2 2 T 14 B相构成的主相(其中R表示一种或多种稀土元素(使得稀土元素包括Y) ,T表示一种或多种基本上含有Fe或Fe和Co的过渡金属元素,以及含有比主相高的R的晶界相,其中存在片状或针状产物。 该烧结体能够抑制晶粒生长,同时将磁特性降低至最小,并提高合适的烧结温度范围。

    R-T-B system rare earth permanent magnet
    2.
    发明授权
    R-T-B system rare earth permanent magnet 有权
    R-T-B系稀土永磁铁

    公开(公告)号:US07311788B2

    公开(公告)日:2007-12-25

    申请号:US10675230

    申请日:2003-09-29

    IPC分类号: H01F1/057

    摘要: A sintered body with a composition consisting of 25% to 35% by weight of R (wherein R represents one or more rare earth elements, provided that the rare earth elements include Y), 0.5% to 4.5% by weight of B, 0.02% to 0.6% by weight of Al and/or Cu, 0.03% to 0.25% by weight of Zr, 4% or less by weight (excluding 0) of Co, and the balance substantially being Fe. This sintered body has a coefficient of variation (CV value) showing the dispersion degree of Zr of 130 or less. In addition, this sintered body has a grain boundary phase comprising a region that is rich both in at least one element selected from a group consisting of Cu, Co and R, and in Zr. This sintered body enables to inhibit the grain growth, while keeping the decrease of magnetic properties to a minimum, and to improve the suitable sintering temperature range.

    摘要翻译: 具有25重量%至35重量%的R(其中R表示一种或多种稀土元素,条件是稀土元素包括Y),0.5重量%至4.5重量%的B组成的烧结体,0.02重量% 至0.6重量%的Al和/或Cu,0.03〜0.25重量%的Zr,4重量%以下(不包括0)的Co,余量实质上为Fe。 该烧结体具有显示Zr的分散度为130以下的变异系数(CV值)。 此外,该烧结体具有包含富含选自Cu,Co和R中的至少一种元素的区域和在Zr中的区域的晶界相。 该烧结体能够在保持磁特性降低至最小的同时抑制晶粒生长,并且可提高合适的烧结温度范围。

    Ferrite magnetic material
    3.
    发明授权
    Ferrite magnetic material 有权
    铁氧体磁性材料

    公开(公告)号:US07919007B2

    公开(公告)日:2011-04-05

    申请号:US11611180

    申请日:2006-12-15

    IPC分类号: C04B35/40 C04B35/26 H01F1/00

    摘要: The present invention provides a ferrite magnetic material capable of attaining such magnetic properties that Br+(⅓)HcJ is 6200 or more even by sintering at a temperature of 1150° C. or lower. The ferrite magnetic material includes as a main phase thereof a ferrite phase having a hexagonal structure, the main phase being represented by the following composition formula (1): LaxCamα1−x−m(Fe12−yCoy)z with α representing one or two of Ba and Sr; wherein the constituent ratios of the metal elements constituting the main phase satisfy the following conditions: x and m are the values in a region bounded by the points, A: (0.53, 0.27), B: (0.64, 0.27), C: (0.64, 0.35), D: (0.53, 0.45), E: (0.47, 0.45) and F: (0.47, 0.32) in the (x, m) coordinates shown in FIG. 2; 1.3≦x/yz≦1.8; and 9.5≦12z≦11.0.

    摘要翻译: 本发明提供一种铁氧体磁性材料,即使在1150℃以下的温度下烧结也能够得到Br +(1/3)HcJ为6200以上的磁特性。 铁氧体磁性材料主要包括具有六方结构的铁素体相,主相由以下组成式(1)表示:LaxCamα1-x-m(Fe12-yCoy)z,其中α表示一个或两个 Ba和Sr; 其中构成主相的金属元素的组成比满足以下条件:x和m是由点限定的区域中的值,A:(0.53,0.27),B:(0.64,0 .27),C:( 0.64,0.35),D:(0.53,0.45),E:(0.47,0.45)和F:(0.47,0.32)。 2; 1.3≦̸ x / yz≦̸ 1.8; 和9.5≦̸ 12z≦̸ 11.0。

    Method of producing a powder, powder, and multilayered ceramic capacitor using the same
    5.
    发明授权
    Method of producing a powder, powder, and multilayered ceramic capacitor using the same 失效
    使用该粉末,粉末和多层陶瓷电容器的方法

    公开(公告)号:US07744954B2

    公开(公告)日:2010-06-29

    申请号:US11384508

    申请日:2006-03-21

    IPC分类号: B05D7/00

    摘要: A core/shell structured powder different in composition between the inside the particle and the surface thereof before sintering, so that it is possible to sinter the powder at lower temperature and give a core/shell structured powder having a shell portion uniform in thickness after sintering; a multilayered ceramic capacitor having a longer lifetime, by preparing the multilayered ceramic capacitor by using a powder having a core/shell structure different in composition between the inside the particle and the surface thereof before sintering; and a method of producing a powder by synthesizing particles in the liquid containing a raw material, wherein particles different in composition at least between the inside the particle and the surface thereof are obtained by adding a composition to be incorporated as a component of the particles to the liquid during the synthetic process so that the composition of the liquid changes continuously or intermittently.

    摘要翻译: 在烧结之前,颗粒内部和表面之间的组成不同的芯/壳结构粉末,使得可以在较低温度下烧结粉末,并得到烧结后具有均匀厚度的壳体部分的芯/壳结构粉末 ; 通过在烧结之前通过使用具有与颗粒内部和其表面之间的组成不同的核/壳结构的粉末来制备多层陶瓷电容器,具有更长寿命的多层陶瓷电容器; 以及通过在含有原料的液体中合成颗粒来制造粉末的方法,其中至少在颗粒内部和其表面之间至少在颗粒内部和/或表面之间的组成不同的颗粒通过将作为颗粒的组分掺入的组合物添加到 在合成过程中的液体,使得液体的组成连续或间歇地变化。

    Dielectric ceramic composition and electronic device
    8.
    发明授权
    Dielectric ceramic composition and electronic device 失效
    介电陶瓷组合物和电子器件

    公开(公告)号:US06559084B1

    公开(公告)日:2003-05-06

    申请号:US09618219

    申请日:2000-07-18

    IPC分类号: H01G412

    摘要: A dielectric ceramic composition comprising a main component of BaTiO3, a first subcomponent including at least one compound selected from MgO, CaO, BaO, SrO and Cr2O3, a second subcomponent of (Ba, Ca)xSiO2+x (where, x=0.8 to 1.2), a third subcomponent including at least one compound selected from V2O5, MoO3, and WO3, and a fourth subcomponent including an oxide of R1 (where R1 is at least one element selected from Sc, Er, Tm, Yb, and Lu), a fifth subcomponent including an oxide of R2 (where R2 is at least one element selected from Y, Dy, Ho, Tb, Gb and Eu), wherein the ratios of the subcomponents to 100 moles of the main component of BaTiO3 are first subcomponent of 0.1 to 3 moles, second subcomponent of 2 to 10 moles, third subcomponent of 0.01 to 0.5 mole, fourth subcomponent of 0.5 to 7 moles, and fifth subcomponent of 2 to 9 moles (where the number of moles of the fourth and fifth subcomponents are respectively the ratio of R1 and R2 alone).

    摘要翻译: 一种包含BaTiO 3的主要组分的介电陶瓷组合物,包含至少一种选自MgO,CaO,BaO,SrO和Cr 2 O 3的化合物的第一副成分,(Ba,Ca)xSiO 2 + x的第二副成分(其中x = 0.8至 1.2),包含至少一种选自V 2 O 5,MoO 3和WO 3的化合物的第三副成分和包含R 1的氧化物(其中R 1为选自Sc,Er,Tm,Yb和Lu中的至少一种元素)的第四副成分, ,其中包含R2的氧化物(其中R2是选自Y,Dy,Ho,Tb,Gb和Eu中的至少一种元素)的第五副成分,其中副成分与BaTiO 3的主成分100摩尔的比率是第一次要成分 为0.1〜3摩尔,第2副成分为2〜10摩尔,第3副成分为0.01〜0.5摩尔,第4副成分为0.5〜7摩尔,第5副成分为2〜9摩尔(第4副产物和第5副成分的摩尔数 分别是R1和R2的比率)。