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    • 3. 发明授权
    • Hydraulic power steering device
    • 液压动力转向装置
    • US5899293A
    • 1999-05-04
    • US790857
    • 1997-02-03
    • Fumiyoshi Ono
    • Fumiyoshi Ono
    • B62D5/083B62D5/08
    • B62D5/083
    • A portion of an oil path between an actuator for generating steering assistance power and a pump is formed by the inside space S in a housing covering an input shaft. A bearing assembly supporting the input shaft in the inside space has a bearing joined to one of the outer and inner circumferences of a circular spacer, and is inserted between the outer circumference of the input shaft and the inner circumference of the housing via radial clearances. The displacement of the bearing assembly toward one axial direction can be restrained by the contact between the contact portion formed on the other of the circumferences of the spacer and the receiving portion formed on either the housing or the input shaft, and the bearing assembly is pressed toward one axial direction by the oil pressure in the inside space.
    • 在用于产生转向辅助动力的致动器和泵之间的油路的一部分由覆盖输入轴的壳体中的内部空间S形成。 在内部空间中支撑输入轴的轴承组件具有接合到圆形间隔件的外圆周和内圆周中的一个的轴承,并且经由径向间隙插入在输入轴的外周和壳体的内周之间。 轴承组件朝向一个轴向的位移可以通过形成在隔离件的另一个周边上的接触部分与形成在壳体或输入轴上的接收部分之间的接触来限制,并且轴承组件被按压 通过内部空间中的油压向一个轴向方向。
    • 5. 发明授权
    • Cathode electroactive material, production method therefor and secondary cell
    • 阴极电活性材料及其制备方法和二次电池
    • US07090822B2
    • 2006-08-15
    • US11099496
    • 2005-04-06
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • C01D1/02H01M4/48
    • H01M4/505H01M4/131H01M4/485H01M10/0525H01M2004/021
    • A cathode electroactive material for use in lithium ion secondary cells, process for producing the material, and lithium ion secondary cells using the cathode electroactive material, wherein the electroactive material predominantly comprises an Li—Mn composite oxide particles with the spinel structure and particles of the electroactive material have an average porosity of 15% or less, the porosity being calculated by employing the following equation: Porosity (%)=(A/B)×100 (wherein A represents a total cross-section area of pores included in a cross-section of one secondary particle, and B represents the cross-section area of one secondary particle), a tapping density of 1.9 g/ml or more, a size of crystallites of 400 Å–960 Å, a lattice constant of 8.240 Å or less. The cathode electroactive material of the present invention is formed of particles which are dense and spherical and exhibit excellent packing characteristics to an electrode, and exhibit high initial capacity and capacity retention percentage at high temperature.
    • 一种用于锂离子二次电池的阴极电活性材料,该材料的制造方法以及使用该阴极电活性材料的锂离子二次电池,其中该电活性材料主要包含具有尖晶石结构的Li-Mn复合氧化物颗粒和 电活性材料的平均孔隙率为15%以下,通过使用以下公式计算孔隙率:<?in-line-formula description =“In-line Formulas”end =“lead”?>孔隙率(%)=( A / B)×100 <?in-line-formula description =“In-line Formulas”end =“tail”?>(其中A表示包含在一个二次粒子的横截面中的孔的总横截面积, B表示一个二次粒子的截面积),攻丝密度为1.9g / ml以上,微晶尺寸为400〜960,晶格常数为8.240以下。 本发明的阴极电活性材料由致密和球形的颗粒形成,并且对电极表现出优异的填充特性,并且在高温下表现出高的初始容量和容量保持率。
    • 6. 发明授权
    • Cathode electroactive material, production method therefor and secondary cell
    • 阴极电活性材料及其制备方法和二次电池
    • US06890456B2
    • 2005-05-10
    • US10743873
    • 2003-12-24
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • H01M4/02H01M4/131H01M4/48H01M4/485H01M4/50H01M4/505H01M10/0525H01M10/36C01G45/02H01B1/08
    • H01M4/505H01M4/131H01M4/485H01M10/0525H01M2004/021
    • A cathode electroactive material for use in lithium ion secondary cells, process for producing the material, and lithium ion secondary cells using the cathode electroactive material, wherein the electroactive material predominantly comprises an Li—Mn composite oxide particles with the spinel structure and particles of the electroactive material have an average porosity of 15% or less, the porosity being calculated by employing the following equation: Porosity (%)=(A/B)×100 (wherein A represents a total cross-section area of pores included in a cross-section of one secondary particle, and B represents the cross-section area of one secondary particle), a tapping density of 1.9 g/ml or more, a size of crystallites of 400 Å-960 Å, a lattice constant of 8.240 Å or less. The cathode electroactive material of the present invention is formed of particles which are dense and spherical and exhibit excellent packing characteristics to an electrode, and exhibit high initial capacity and capacity retention percentage at high temperature.
    • 一种用于锂离子二次电池的阴极电活性材料,该材料的制造方法以及使用该阴极电活性材料的锂离子二次电池,其中该电活性材料主要包含具有尖晶石结构的Li-Mn复合氧化物颗粒和 电活性材料的平均孔隙率为15%以下,通过使用以下公式计算孔隙率:<?in-line-formula description =“In-line Formulas”end =“lead”?>孔隙率(%)=( A / B)×100 <?in-line-formula description =“In-line Formulas”end =“tail”?>(其中A表示包含在一个二次粒子的横截面中的孔的总横截面积, B表示一个二次粒子的截面积),攻丝密度为1.9g / ml以上,微晶尺寸为400〜960,晶格常数为8.240以下。 本发明的阴极电活性材料由致密和球形的颗粒形成,并且对电极表现出优异的填充特性,并且在高温下表现出高的初始容量和容量保持率。
    • 8. 发明授权
    • Cathode electroactive material, production method therefor and secondary cell
    • 阴极电活性材料及其制备方法和二次电池
    • US06699618B2
    • 2004-03-02
    • US09785258
    • 2001-02-20
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • Takao NodaAkihiko ShirakawaJoseph GazeYoshiaki YamauchiFumiyoshi Ono
    • H01M450
    • H01M4/505H01M4/131H01M4/485H01M10/0525H01M2004/021
    • A cathode electroactive material for use in lithium ion secondary cells, process for producing the material, and lithium ion secondary cells using the cathode electroactive material, wherein the electroactive material predominantly comprises an Li—Mn composite oxide particles with the spinel structure and particles of the electroactive material have an average porosity of 15% or less, the porosity being calculated by employing the following equation: Porosity (%)=(A/B)×100  (1) (wherein A represents a total cross-section area of pores included in a cross-section of one secondary particle, and B represents the cross-section area of one secondary particle), a tapping density of 1.9 g/ml or more, a size of crystallites of 400 Å-960 Å, a lattice constant of 8.240 Å or less. The cathode electroactive material of the present invention is formed of particles which are dense and spherical and exhibit excellent packing characteristics to an electrode, and exhibit high initial capacity and capacity retention percentage at high temperature.
    • 一种用于锂离子二次电池的阴极电活性材料,该材料的制造方法以及使用该阴极电活性材料的锂离子二次电池,其中该电活性材料主要包含具有尖晶石结构的Li-Mn复合氧化物颗粒和 电活性材料具有15%以下的平均孔隙率,通过使用以下等式计算孔隙率:(其中A表示包含在一个二次颗粒的横截面中的孔的总横截面积,B表示交叉 一个二次粒子的截面积),攻丝密度为1.9g / ml以上,微晶尺寸为400〜960,晶格常数为8.240以下。本发明的阴极电活性材料形成 的致密和球形的颗粒,并且对电极表现出优异的填充特性,并且在初始容量和容量保持率方面表现出高的性能 高温。