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    • 5. 发明申请
    • ROTARY MACHINE
    • 旋转机
    • US20100260599A1
    • 2010-10-14
    • US12746355
    • 2009-03-27
    • Shoki YamashitaToshihiro InoueTakaaki Matsuo
    • Shoki YamashitaToshihiro InoueTakaaki Matsuo
    • F04D29/42
    • F01D25/243F01D25/26F05D2260/30
    • To reduce the size of a rotary machine and to provide a rotary machine in which it is possible to achieve an improvement in reliability and performance of the rotary machine. A first casing (1) and a second casing (2) formed by dividing a substantially cylindrical casing (101), enclosing in the interior thereof a rotor shaft (4) in which rotor blades (11) are embedded, into two at substantially a central portion relative to an axial direction of the rotor shaft (4) are provided; a first coupling flange (1A) and a second coupling flange (2A) are provided at openings in the first casing (1) and the second casing (2), respectively; a third coupling flange (3A) is provided, which is enclosed by the casing (101), which is positioned at substantially a central portion of the length in the axial direction in a substantially cylindrical blade ring (3) holding stator blades (10) and enclosing the rotor shaft (4), and which holds the blade ring (3); the first casing (1), the second casing (2), and the blade ring (3) being assembled by sandwiching the third coupling flange (3A) between the first coupling flange (1A) and the second coupling flange (2A).
    • 为了减小旋转机器的尺寸并提供一种可以实现旋转机器的可靠性和性能的提高的旋转机器。 第一壳体(1)和第二壳体(2)通过将基本上圆柱形的壳体(101)分成两部分而形成,第一壳体(1)和第二壳体(2)在其内部包围有转子叶片(11) 提供相对于转子轴(4)的轴向方向的中心部分; 第一联接凸缘(1A)和第二联接凸缘(2A)分别设置在第一壳体(1)和第二壳体(2)的开口处; 设置有第三联接凸缘(3A),其被壳体(101)包围,所述壳体(101)在保持定子叶片(10)的大致圆柱形的叶片环(3)中位于轴向方向上的长度的大致中心部分处, 并且包围所述转子轴(4)并且保持所述叶片环(3); 通过将第三联接凸缘(3A)夹在第一联接凸缘(1A)和第二联接凸缘(2A)之间来组装第一壳体(1),第二壳体(2)和叶片环(3)。
    • 6. 发明授权
    • Yarns and process for production thereof
    • 纱线及其制造方法
    • US3967441A
    • 1976-07-06
    • US464878
    • 1974-04-29
    • Katsumi YasuzukaTakaaki MatsuoHachiro Fujiwara
    • Katsumi YasuzukaTakaaki MatsuoHachiro Fujiwara
    • D02G1/02D01G1/08D02G3/22D02G3/42D02G3/00D01G1/06D01H5/30D02G1/00
    • D02G3/22D01G1/081
    • A yarn comprising thermoplastic synthetic staple fibers or thermoplastic synthetic staple fibers and continuous filaments, in which the individual fibers constituting the yarn contain twisted crimps and having cross-sectional surfaces with a markedly flattened portion, in which the staple fibers contained therein have broken ends comprising mainly portions flattened to a lesser degree, a plurality of fibers having this structure uniformly and alternately forming the surface and inner layers of the yarn and being intertwined in a truly twisted state or in a substantially non-twisted state at fluffs formed of the broken ends of the individual fibers, and a process for producing a yarn which comprises drawing an undrawn yarn comprising multifilaments of a thermoplastic synthetic polymer and having substantially the same break elongation, in a twisted state at an elevated temperature thereby to remarkably flatten portions of the individual filaments which appear on the outer layer of the yarn, and immediately detwisting the yarn to break a part or all of those portions of the filaments which are flattened to a lesser degree, followed by taking up the yarn.
    • 一种包含热塑性合成短纤维或热塑性合成短纤维和连续长丝的纱线,其中构成纱线的单根纤维含有扭曲的卷曲并且具有显着扁平部分的横截面,其中包含其中的短纤维具有断裂端,包括 主要部分平坦化,多个具有这种结构的纤维均匀地并且交替地形成纱线的表面和内层,并且以真实扭曲状态或基本上非扭转状态缠绕在由断裂端形成的绒毛处 的单根纤维,以及一种生产纱线的方法,其包括在高温下以扭曲状态拉伸包含热塑性合成聚合物的复丝并具有基本相同的断裂伸长率的未拉伸丝,从而显着平坦化各个长丝的部分 它出现在y的外层 并立即将纱线绞合以将一部分或全部长丝的部分或全部破碎得较小,然后卷起纱线。
    • 8. 发明授权
    • Steam turbine stationary blade
    • 蒸汽轮机固定叶片
    • US06305902B1
    • 2001-10-23
    • US09422459
    • 1999-10-21
    • Tetsu KonishiRyotaro MagoshiHideyuki TodaTakaaki MatsuoEiichiro Watanabe
    • Tetsu KonishiRyotaro MagoshiHideyuki TodaTakaaki MatsuoEiichiro Watanabe
    • F01D514
    • F01D25/32
    • Precision cast hollow stationary blade used for final stage of steam turbine is improved to enhance drain recovery efficiency. Hollows (4, 5), sectioned by rib (6) to be independent of each other, are formed in stationary blade (1) passing therethrough from outer shroud 2 to inner shroud 3. A plurality of ventral slits (10 to 20) are provided on blade surface ventral side linearly with predetermined interval between the slits in two parallel rows. Dorsal slits (21 to 26) are also provided linearly with predetermined interval between the slits. Drain on blade surface enters the hollows (5, 4) through the ventral slits (10 to 20) and the dorsal slits (21 to 26), respectively, and flows out of the outer shroud (2) or the inner shroud (3) as drain (40 to 43) to be recovered. While prior art hollow is single hollow and drain entering the hollow through the dorsal slits flows out through the ventral slits or reverse case thereof occurs, the hollows (4, 5) of the present invention being sectioned by the rib (6), the drain is prevented from flowing out to the opposite side.
    • 用于蒸汽轮机最后阶段的精密铸造中空固定叶片得到改进,以提高排水回收效率。 在由外护罩2穿过的固定刀片(1)中形成有由肋(6)分割成彼此独立的空腔(4,5)。多个腹口狭缝(10〜20) 在叶片表面腹侧上以两个平行的行之间的狭缝之间的预定间隔线性地设置。 背缝狭缝(21至26)也以狭缝间的预定间隔直线地设置。 叶片表面上的排水分别通过腹侧缝隙(10〜20)和背缝隙(21〜26)进入中空部(5),并从外护罩(2)或内护罩(3)流出, 作为排水(40〜43)进行回收。 虽然现有技术的中空是单个中空的,并且通过背面缝隙进入中空的排水通过腹侧狭缝流出或其反向壳体,本发明的中空部分(4,5)由肋(6)分割,排水 被防止流出到相对侧。