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    • 2. 发明授权
    • Production device for high-quality silicon single crystals
    • 高品质硅单晶生产设备
    • US06702892B2
    • 2004-03-09
    • US09926285
    • 2001-11-20
    • Masahiko OkuiManabu NishimotoTakayuki KuboFumio KawahigashiHiroshi Asano
    • Masahiko OkuiManabu NishimotoTakayuki KuboFumio KawahigashiHiroshi Asano
    • C30B1514
    • C30B29/06C30B15/14C30B15/203C30B15/206Y10T117/1052Y10T117/1056Y10T117/106Y10T117/1068
    • An apparatus is provided which is to be used in producing single crystals for silicon wafers useful as semiconductor materials and which can stably produce large-diameter, long-length and high-quality single crystals from which wafers limited in the number of grown-in defects can be taken. This silicon single crystal production apparatus comprises a cooling member surrounding the single crystal to be pulled up and having an internal surface coaxial with the pulling axis and thermal insulating members disposed outside the outer surface and below the bottom surface of the cooling member, the cooling member having an internal surface diameter of 1.20D to 2.50D (D being the diameter of the single crystal to be pulled up) and a length of not less than 0.25D, the distance from the melt surface to the bottom surface of the cooling member being 0.30D to 0.85D and the bottom side of the thermal insulating member below the cooling member having an inside diameter smaller than the inside diameter of the bottom of the cooling member.
    • 提供了一种用于制造用作半导体材料的硅晶片的单晶的装置,其可以稳定地生产大直径,长长和高质量的单晶,其中限制了多个生长缺陷的晶片 可以服用 这种硅单晶制造装置包括围绕单晶的被拉起并具有与牵引轴同轴的内表面的冷却构件和设置在冷却构件的外表面的外表面的外表面的下方的隔热构件, 内表面直径为1.20D至2.50D(D为待拉起的单晶的直径),长度不小于0.25D,从冷却件的熔体表面到底表面的距离为 0.30D至0.85D,并且所述隔热构件的底部在所述冷却构件下方的内径小于所述冷却构件的底部的内径。
    • 8. 发明授权
    • Plasma display panel and its manufacturing method
    • 等离子显示面板及其制造方法
    • US08072143B2
    • 2011-12-06
    • US12375295
    • 2008-03-12
    • Hiroshi AsanoTakahiro HamadaSeigo Shiraishi
    • Hiroshi AsanoTakahiro HamadaSeigo Shiraishi
    • H01J17/49
    • H01J9/02H01J11/12H01J11/40
    • A PDP and a manufacturing method for the PDP are provided, the PDP being capable of suppressing discharge delay due to improved discharge properties of a protective layer, and exhibiting superior image display performance despite having a high-definition cell structure. A magnesium oxide powder layer (16) is formed by distributing magnesium oxide particles (16a) flatly on a surface layer (8). Each of the magnesium oxide particles (16a) includes halogen atoms at and in a vicinity of the surface thereof. The magnesium oxide particles (16a) are manufactured such that the halogen atoms exist particularly at the surface of each of magnesium oxide particles (16a) through to a depth of 4 nm or less toward the core of each of the magnesium oxide particles (16a).
    • 提供了一种PDP和PDP的制造方法,该PDP由于改善了保护层的放电性能而能够抑制放电延迟,并且尽管具有高清晰度单元结构,但是显示出优异的图像显示性能。 通过将氧化镁颗粒(16a)平坦地分布在表面层(8)上形成氧化镁粉末层(16)。 每个氧化镁颗粒(16a)在其表面及其附近包括卤素原子。 制造氧化镁颗粒(16a),使得卤素原子特别存在于每个氧化镁颗粒(16a)的表面上,朝向每个氧化镁颗粒(16a)的芯4纳米或更深的深度存在, 。
    • 9. 发明授权
    • Ultrasonic motor
    • 超声波电机
    • US08063538B2
    • 2011-11-22
    • US12904229
    • 2010-10-14
    • Hiroshi Asano
    • Hiroshi Asano
    • H01L41/08
    • H02N2/163
    • An ultrasonic motor includes a stator and a rotor. In the stator, an n number of piezoelectric elements (wherein n is a natural number) are affixed to one surface of a vibrating member, whose outer circumferential edge is circular or polygonal, along a direction in which the outer circumferential edge extends. Each of the piezoelectric elements has a size corresponding to λθ/2 in terms of center angle, and the piezoelectric elements that are adjacent to each other are disposed so as to be separated by an interval corresponding to λθ/4 in terms of the center angle along a circumferential direction of the vibrating member. The piezoelectric elements are polarized in opposite directions in a thickness direction. The rotor is disposed so as to contact the stator, and is rotated by receiving vibration resulting from a 3n-wave traveling wave generated by the stator.
    • 超声波马达包括定子和转子。 在定子中,沿着外周缘延伸的方向,将n个压电元件(其中n为自然数)固定在外周边缘为圆形或多边形的振动件的一个表面上。 每个压电元件具有与中心角相对应的λ& t / 2的尺寸,彼此相邻的压电元件被设置成相对于λ& 沿着振动部件的圆周方向的中心角。 压电元件在厚度方向上以相反的方向极化。 转子被设置为接触定子,并且通过接收由定子产生的3n波行波产生的振动而旋转。
    • 10. 发明申请
    • GAS TURBINE BLADE, MANUFACTURING METHOD THEREFOR, AND GAS TURBINE USING TURBINE BLADE
    • 气体涡轮叶片,其制造方法和使用涡轮叶片的气体涡轮机
    • US20110217181A1
    • 2011-09-08
    • US13093437
    • 2011-04-25
    • Satoshi HadaTakahiko ImadaTomofumi ShintaniKatsutoshi OoeNorifumi HirataHiroshi Asano
    • Satoshi HadaTakahiko ImadaTomofumi ShintaniKatsutoshi OoeNorifumi HirataHiroshi Asano
    • F01D5/18B23P15/02
    • F01D5/187B23P15/02F01D5/18Y10T29/49336Y10T29/49341
    • Provided are gas turbine blades in which it is possible to simplify the formation of cooling channels provided inside the turbine blades while simultaneously avoiding loss of turbine blade strength and rigidity due to forming of the cooling channels. In a gas turbine blade (41), cooling channels (410) provided in the interior thereof include a plurality of straight channel-like base-side elongated holes (401a) that extend in a longitudinal direction at a base side of the turbine blade (41), a plurality of straight channel-like tip-side elongated holes (410b) that extend in a longitudinal direction at a tip side of the turbine blade (41), and a plurality of communicating hollow portions (410c) that are interposed at connection portions between the two types of elongated holes (410a, 410b) to individually allow the two types of elongated holes (410a, 410b) to communicate with each other and that have larger cross-sectional areas than the channel cross-sectional areas of both elongated holes (410a, 410b). In addition, the communicating hollow portions (410c) are formed so as to match the position of a platform portion (413) of the turbine blade (41).
    • 提供了一种燃气轮机叶片,其中可以简化设置在涡轮机叶片内部的冷却通道的形成,同时避免由于形成冷却通道而导致的涡轮叶片强度和刚度的损失。 在燃气轮机叶片(41)中,设置在其内部的冷却通道(410)包括在涡轮机叶片的基部侧沿长度方向延伸的多个直通道状的基侧长孔(401a) 41),在所述涡轮叶片(41)的前端侧沿长度方向延伸的多个直线状的前端侧长孔(410b),以及多个连通用的中空部(410c),其位于 两个类型的细长孔(410a,410b)之间的连接部分分别允许两种类型的细长孔(410a,410b)彼此连通并且具有比两者的通道横截面积更大的横截面面积 细长孔(410a,410b)。 另外,连通用中空部410c形成为与涡轮叶片(41)的平台部(413)的位置一致。