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    • 71. 发明申请
    • Bearing Apparatus For A Wheel of Vehicle
    • 车轮轴承装置
    • US20110069919A1
    • 2011-03-24
    • US12891882
    • 2010-09-28
    • Mitsuru UmekidaHiroshi KawamuraKazunari Yamamoto
    • Mitsuru UmekidaHiroshi KawamuraKazunari Yamamoto
    • F16C13/02
    • B60B27/001F16C19/386F16C19/49F16C19/56F16C33/4635F16C43/04F16C2240/80F16C2326/02F16D3/2237F16D2003/22326Y10T403/32181
    • A vehicle wheel bearing apparatus with a back-to-back double row tapered roller bearing has an outer member integrally with a body mounting flange and double row outer raceway surfaces tapered open respectively axially inward and outward. An inner member include a wheel hub and an inner ring or an outer joint member of a constant velocity universal joint. The wheel hub has a wheel mounting flange and one inner raceway surface arranged oppositely to one of the double row outer raceway surfaces and a cylindrical portion. The inner ring or the outer joint member of a constant velocity universal joint are press fit onto the cylindrical portion and include the other inner raceway surface arranged opposite to the other raceway surface of the double row outer raceway surfaces. Double row tapered rollers are freely rollably held between the outer and inner raceway surfaces by cages. Seals are arranged in annular openings formed by the outer and inner members. The cages are formed of synthetic resin. Posts between pockets of the cages are arranged to be positioned radially inward of the pitch circle diameter of the tapered rollers. The width of an opening radially inward of each pocket is set so that each tapered roller is held within the pocket. The contacting tapered surfaces of the posts open radially outward so that the rollers do not fall out radially inward.
    • 具有背对背双列圆锥滚子轴承的车轮轴承装置具有与主体安装凸缘一体的外部构件和分别轴向向内和向外逐渐变细的双列外滚道表面。 内部构件包括轮毂和等速万向接头的内圈或外接头构件。 轮毂具有轮安装法兰和与双列外滚道表面中的一个相对布置的一个内滚道表面和圆柱形部分。 等速万向接头的内圈或外接头构件压配合在圆筒部上,并且包括与双列外滚道表面的另一个滚道面相对布置的另一内滚道表面。 双列圆锥滚子可以通过笼子自由地滚动地保持在外滚道表面和内滚道表面之间。 密封件布置在由外部构件和内部构件形成的环形开口中。 笼子由合成树脂制成。 保持架的凹穴之间的位置被布置成位于圆锥滚子的节圆直径的径向内侧。 设置每个凹部径向向内的开口的宽度,使得每个圆锥滚子保持在口袋内。 柱的接触锥形表面径向向外敞开,使得辊不会径向向内掉落。
    • 73. 发明授权
    • Bearing apparatus for a wheel of vehicle
    • 用于车轮的轴承装置
    • US07857521B2
    • 2010-12-28
    • US12115730
    • 2008-05-06
    • Mitsuru UmekidaHiroshi KawamuraKazunari Yamamoto
    • Mitsuru UmekidaHiroshi KawamuraKazunari Yamamoto
    • F16C33/48F16C33/56F16C33/34
    • B60B27/001F16C19/386F16C19/49F16C19/56F16C33/4635F16C43/04F16C2240/80F16C2326/02F16D3/2237F16D2003/22326Y10T403/32181
    • A vehicle wheel bearing apparatus with a back-to-back double row tapered roller bearing has an outer member integrally with a body mounting flange and double row outer raceway surfaces tapered open respectively axially inward and outward. An inner member include a wheel hub and an inner ring or an outer joint member of a constant velocity universal joint. The wheel hub has a wheel mounting flange and one inner raceway surface arranged oppositely to one of the double row outer raceway surfaces and a cylindrical portion. The inner ring or the outer joint member of a constant velocity universal joint are press fit onto the cylindrical portion and include the other inner raceway surface arranged opposite to the other raceway surface of the double row outer raceway surfaces. Double row tapered rollers are freely rollably held between the outer and inner raceway surfaces by cages. Seals are arranged in annular openings formed by the outer and inner members. The cages are formed of synthetic resin. Posts between pockets of the cages are arranged to be positioned radially inward of the pitch circle diameter of the tapered rollers. The width of an opening radially inward of each pocket is set so that each tapered roller is held within the pocket. The contacting tapered surfaces of the posts open radially outward so that the rollers do not fall out radially inward.
    • 具有背对背双列圆锥滚子轴承的车轮轴承装置具有与主体安装凸缘一体的外部构件和分别轴向向内和向外逐渐变细的双列外滚道表面。 内部构件包括轮毂和等速万向接头的内圈或外接头构件。 轮毂具有轮安装法兰和与双列外滚道表面中的一个相对布置的一个内滚道表面和圆柱形部分。 等速万向接头的内圈或外接头构件压配合在圆筒部上,并且包括与双列外滚道表面的另一个滚道面相对布置的另一内滚道表面。 双列圆锥滚子可以通过笼子自由地滚动地保持在外滚道表面和内滚道表面之间。 密封件布置在由外部构件和内部构件形成的环形开口中。 笼子由合成树脂制成。 保持架的凹穴之间的位置被布置成位于圆锥滚子的节圆直径的径向内侧。 设置每个凹部径向向内的开口的宽度,使得每个圆锥滚子保持在口袋内。 柱的接触锥形表面径向向外敞开,使得辊不会径向向内掉落。
    • 74. 发明申请
    • Method for Manufacturing Compound Semiconductor and Apparatus for Manufacturing the Same
    • 制造复合半导体的方法及其制造方法
    • US20100297786A1
    • 2010-11-25
    • US12225420
    • 2007-03-20
    • Kazutaka TerashimaSuzuka NishimuraHirosi NagayoshiHiroshi KawamuraKazuhiro Haga
    • Kazutaka TerashimaSuzuka NishimuraHirosi NagayoshiHiroshi KawamuraKazuhiro Haga
    • H01L21/20B05C13/02H01L21/66
    • H01L21/67207C30B25/08H01L21/02381H01L21/02461H01L21/0254H01L21/67196
    • The present invention provides a method for manufacturing a compound semiconductor, which can improve a quality of each of thin film layers constituting a laminate structure.Each of first and second thin film layers is formed by growing a crystal of each thin film layer one over another on a silicon substrate 2 in first and second vapor deposition chambers 6a and 6b for exclusive use, corresponding to the respective thin film layers. As this crystal growth is carried out under conditions under which nothing other than raw gas materials used therein or those derived therefrom, such as stuck materials, precipitates, etc., exists in the first and second vapor deposition chambers 6a and 6b, a decrease in quality of the second thin film layer can be prevented because an unexpected reaction between the raw gas materials used for the first and second thin film layers, etc. can be suppressed. Moreover, a conveyor space 35 extending between the first vapor deposition chamber 6a and the second vapor deposition chamber 6b, in which the silicon substrate 2 is conveyed, is disposed under an atmosphere of nitrogen gas or in a state of vacuum for suppressing oxidation of the thin film layer, thereby suppressing the oxidation of the first thin film layer constituting the outermost layer of the laminated thin film layers to form oxides.
    • 本发明提供一种化合物半导体的制造方法,其能够提高构成层叠结构的薄膜层的质量。 第一和第二薄膜层中的每一个通过在对应于各个薄膜层的第一和第二蒸镀室6a和6b中的硅基板2上逐个生长每个薄膜层的晶体而形成。 由于该晶体生长是在第一和第二蒸镀室6a,6b中存在的情况下,在其中使用的原料气体材料以外的其它原料或其衍生物,例如卡住材料,析出物等存在的条件下进行的, 由于可以抑制用于第一和第二薄膜层等的原料气体材料之间的意想不到的反应,所以可以防止第二薄膜层的质量。 此外,在第一蒸镀室6a和第二蒸镀室6b之间延伸有输送硅基板2的输送空间35配置在氮气氛下,也可以在真空状态下,抑制氧化 从而抑制构成层叠薄膜层的最外层的第一薄膜层的氧化,形成氧化物。