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    • 2. 发明授权
    • Cooling drum for a continuous casting system and method for
manufacturing the same
    • 用于连续铸造系统的冷却鼓及其制造方法
    • US5469909A
    • 1995-11-28
    • US257746
    • 1994-06-09
    • Kunimasa SasakiYouichi WakiyamaTakahiro MatsumotoKisaburo TanakaKeiichi Yamamoto
    • Kunimasa SasakiYouichi WakiyamaTakahiro MatsumotoKisaburo TanakaKeiichi Yamamoto
    • B22D11/06
    • F28F5/02B22D11/0682Y10T29/49888
    • A cooling drum which can continuously cast a favorable band-shaped cast piece having little thermal deformation and a method for manufacturing the same cooling drum, are disclosed. The cooling drum comprises a three-layer structure consisting of a rigid member, a cooling member metallurgically bonded to the outside of the rigid member, and a heat-resistance member plated by electro-deposition on the outer circumferential surface of the cooling member. The rigid member is made of austenite group stainless steel, the cooling member is made of Cu or Cu-alloy, and the heat-resistance member is made of either Ni or its alloy or Co or its alloy. Within the rigid member are equipped partition walls and tubular partition walls. To the opposite end portions of the rigid member are connected hollow shafts adapted to be rotationally driven, by means of bolts after shrinkage fitting. In the cooling member are drilled cooling holes for communicating a coolant as distributed over the entire circumference, extending in the axial direction of the drum. The cooling holes are communicated with a flow passageway of a coolant formed by the partition walls and the tubular partition walls through cooling passageways.
    • 公开了能够连续铸造具有很少热变形的有利的带状铸件的冷却鼓和制造相同的冷却鼓的方法。 冷却鼓包括三层结构,其由刚性构件,与金属结合到刚性构件的外部的冷却构件,以及通过电沉积镀在冷却构件的外周面上的耐热构件。 刚性构件由奥氏体组不锈钢制成,冷却构件由Cu或Cu合金制成,耐热构件由Ni或其合金或Co或其合金制成。 刚性部件内设有隔墙和管状分隔壁。 刚性构件的相对端部分连接有适于被旋转地驱动的中空轴,借助于紧固件之后的螺栓。 在冷却构件中钻有冷却孔,用于使沿着滚筒的轴向延伸的整个圆周上分布的冷却剂连通。 冷却孔与通过分隔壁形成的冷却剂的流动通道和管状分隔壁通过冷却通道连通。
    • 4. 发明授权
    • Power generation device, thermal power generation method and solar power generation method
    • 发电装置,火力发电方式和太阳能发电方式
    • US09467088B2
    • 2016-10-11
    • US13882409
    • 2011-08-29
    • Takahiro Matsumoto
    • Takahiro Matsumoto
    • H01L31/04H02S10/30H01L31/0236H01L35/00H01L31/054
    • H02S10/30H01L31/0236H01L31/0543H01L31/0547H01L35/00Y02E10/52
    • A small sized power generator is provided, being highly efficient in power generation. The power generator can include a heat-light conversion element for converting heat to infrared light and a semiconductor power generation cell for converting the infrared light to electrical energy. The heat-light conversion element can include a material in which reflectance is higher on a long wavelength side of a predetermined infrared wavelength, relative to reflectance on a short wavelength side thereof. The material can cause radiation of the infrared light upon being heated. Heat from a heat source is transferred to the heat-light conversion element, thereby radiating the infrared light. The semiconductor power generation cell converts this infrared light to electrical energy, thereby performing thermal power generation. In order to heat the heat-light conversion element, a light collection optical system can be provided for collecting sunlight toward the heat-light conversion element, enabling solar thermo-photovoltaic power generation.
    • 提供小型发电机,发电效率高。 发电机可以包括用于将热量转换成红外光的热光转换元件和用于将红外光转换成电能的半导体发电单元。 热光转换元件可以包括相对于其短波长侧的反射率,预定红外波长的长波长侧的反射率更高的材料。 该材料在加热时可引起红外光的辐射。 来自热源的热量被传递到热光转换元件,从而辐射红外光。 半导体发电单元将该红外光转换为电能,进行热发电。 为了加热热光转换元件,可以提供一种聚光光学系统,用于朝向热光转换元件收集太阳光,从而实现太阳能热光伏发电。
    • 6. 发明申请
    • POWER GENERATION DEVICE, THERMAL POWER GENERATION METHOD AND SOLAR POWER GENERATION METHOD
    • 发电装置,热发电方法和太阳能发电方法
    • US20130213460A1
    • 2013-08-22
    • US13882409
    • 2011-08-29
    • Takahiro Matsumoto
    • Takahiro Matsumoto
    • H01L31/04
    • H02S10/30H01L31/0236H01L31/0543H01L31/0547H01L35/00Y02E10/52
    • A small sized power generator is provided, being highly efficient in power generation. The power generator can include a heat-light conversion element for converting heat to infrared light and a semiconductor power generation cell for converting the infrared light to electrical energy. The heat-light conversion element can include a material in which reflectance is higher on a long wavelength side of a predetermined infrared wavelength, relative to reflectance on a short wavelength side thereof. The material can cause radiation of the infrared light upon being heated. Heat from a heat source is transferred to the heat-light conversion element, thereby radiating the infrared light. The semiconductor power generation cell converts this infrared light to electrical energy, thereby performing thermal power generation. In order to heat the heat-light conversion element, a light collection optical system can be provided for collecting sunlight toward the heat-light conversion element, enabling solar thermo-photovoltaic power generation.
    • 提供小型发电机,发电效率高。 发电机可以包括用于将热量转换成红外光的热光转换元件和用于将红外光转换成电能的半导体发电单元。 热光转换元件可以包括相对于其短波长侧的反射率,预定红外波长的长波长侧的反射率更高的材料。 该材料在加热时可引起红外光的辐射。 来自热源的热量被传递到热光转换元件,从而辐射红外光。 半导体发电单元将该红外光转换为电能,进行热发电。 为了加热热光转换元件,可以提供一种聚光光学系统,用于朝向热光转换元件收集太阳光,从而实现太阳能热光伏发电。
    • 9. 发明授权
    • Information processing apparatus for interference signal processing
    • 用于干扰信号处理的信息处理装置
    • US07924426B2
    • 2011-04-12
    • US12032205
    • 2008-02-15
    • Tomoyuki MiyashitaTakahiro MatsumotoHideki Ina
    • Tomoyuki MiyashitaTakahiro MatsumotoHideki Ina
    • G01B11/02G01B9/02
    • G01B11/2441G03F7/70641
    • A shape measuring apparatus for measuring the shape of a measurement target surface includes an interferometer and computer. The interferometer senses interference light formed by measurement light from the measurement target surface and reference light by a photoelectric converter, while changing the light path length of the measurement light or the reference light. The computer Fourier-transforms a first interference signal sensed by the photoelectric converter to obtain a phase distribution and an amplitude distribution, shapes the amplitude distribution, inversely Fourier-transforms the phase distribution and the shaped amplitude distribution to obtain a second interference signal, and determines the shape of the measurement target surface based on the second interference signal.
    • 用于测量测量对象表面的形状的形状测量装置包括干涉仪和计算机。 在改变测量光或参考光的光路长度的同时,干涉仪通过光电转换器感测来自测量对象表面的测量光和参考光所形成的干涉光。 计算机对由光电转换器感测到的第一干涉信号进行傅立叶变换以获得相位分布和幅度分布,对幅度分布进行整形,对相位分布和形状振幅分布进行逆傅立叶变换,以获得第二干涉信号,并确定 基于第二干涉信号的测量对象表面的形状。
    • 10. 发明授权
    • Brain/neuronal cell-protecting agent and therapeutic agent for sleep disorder
    • 脑/神经元细胞保护剂和睡眠障碍治疗剂
    • US07812025B2
    • 2010-10-12
    • US11990385
    • 2006-08-11
    • Takahiro MatsumotoMasakuni KoriMitsunori Kouno
    • Takahiro MatsumotoMasakuni KoriMitsunori Kouno
    • A61K31/501A61K31/497A61K31/44C07D237/02C07D401/06C07D403/06C07D413/06C07D241/06C07D401/02C07D213/02
    • C07D213/75C07D237/20C07D261/14C07D333/20C07D405/14C07D409/14C07D413/14
    • A compound represented by the formula (I) or a salt thereof; and an agent for protecting a brain/neuronal cell or a therapeutic agent for sleep disorder comprising the compound or salt: wherein Z represents an oxygen or sulfur; R1 represents an aryl or heterocyclic group which may be substituted, provided that R1 is not a 3-ethyl-6-methoxy-2-methyl-5-naphthalen-1-yl group; R1a represents a hydrogen atom, a hydrocarbon group which may be substituted, a hydroxyl group or the like; R2 represents a piperidin-1,4-diyl or piperazin-1,4-diyl which may be substituted; R3 represents a bivalent group which is formed by removing two hydrogen atoms from a benzene ring or 6-membered aromatic heterocyclic ring which may have a substituent, provided that R3 is not a pyridazin-3,6-diyl; and R4 represents a group which is formed by removing one hydrogen atom from a benzene ring or 5- to 6-membered heterocyclic ring which may be substituted, provided that the substituent on the heterocyclic ring is not a phenylethyl group which may be substituted when Z is sulfur.
    • 由式(I)表示的化合物或其盐; 以及用于保护脑/神经元细胞或用于睡眠障碍的治疗剂的药剂,其包含所述化合物或盐:其中Z表示氧或硫; R1表示可被取代的芳基或杂环基,条件是R 1不是3-乙基-6-甲氧基-2-甲基-5-萘-1-基; R 1a表示氢原子,可被取代的烃基,羟基等; R2代表可被取代的哌啶-1,4-二基或哌嗪-1,4-二基; R3表示通过从可以具有取代基的苯环或6元芳族杂环除去2个氢原子而形成的二价基团,条件是R 3不是哒嗪-3,6-二基; 并且R 4表示通过从可以被取代的苯环或5-至6-元杂环除去一个氢原子而形成的基团,条件是杂环上的取代基不是Z时可以被取代的苯基乙基 是硫。