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    • 1. 发明授权
    • Liquid fuel combustion apparatus
    • 液体燃料燃烧装置
    • US4408593A
    • 1983-10-11
    • US382673
    • 1982-05-27
    • Michitake FurumotoShinichi Harada
    • Michitake FurumotoShinichi Harada
    • F23D11/44F23K5/04F24C5/16F24C5/00
    • F24C5/16F23D11/443F23K5/04
    • This invention relates to a liquid fuel combustion apparatus such as oil space heater in which liquid fuel is vaporized by a vaporizer and the vaporized liquid fuel is injected through a first nozzle to a burner. The vaporizer is heated by combustion of fuel gas which is injected through a second nozzle to the burner before the vaporizer has been heated up to a temperature at which the liquid fuel passing the vaporizer is evaporated. The injection of the fuel gas from the second nozzle to the burner is changed to the injection of the vaporized liquid fuel from the first nozzle when the vaporizer has been heated up to a desired temperature. The supply of the liquid fuel to the vaporizer is carried out by a fuel pump which is driven by electric power generated by a thermopile.
    • 液体燃料燃烧装置技术领域本发明涉及一种液体燃料燃烧装置,例如油空间加热器,其中液体燃料由蒸发器汽化,并且蒸发的液体燃料通过第一喷嘴喷射到燃烧器。 在汽化器已经被加热到通过蒸发器的液体燃料蒸发的温度之前,蒸发器被燃烧通过第二喷嘴喷射的燃料加热到燃烧器。 当蒸发器已经被加热到期望的温度时,将燃料气体从第二喷嘴喷射到燃烧器被改变为从第一喷嘴喷射蒸发的液体燃料。 向蒸发器供应液体燃料由燃料泵进行,燃料泵由热电堆产生的电力驱动。
    • 3. 发明授权
    • Mold for use in continuous metal casting
    • 用于连续铸造的模具
    • US4579165A
    • 1986-04-01
    • US579955
    • 1984-02-14
    • Futoshi KameiShinichi HaradaHiroshi Soga
    • Futoshi KameiShinichi HaradaHiroshi Soga
    • B22D11/04B22D11/07B22D11/106
    • B22D11/0401B22D11/07B22D11/106
    • A porous layer consisting of sintered material containing metal powder or ceramics powder is provided as the inner surface of a mold for use in continuous metal casting, and a shielding plate is provided on the outside of this porous layer. A gas is supplied in a gap portion formed between the porous layer and the shielding plate and the gas is spouted out from the porous portions in the porous layer into the inside of the mold, thereby forming a gas film between the inner surface of the mold and the molten metal. Electromagnetic coils are interposed between a stiffening plate and sandwiching frames around the mold and hanger frames supporting them. An annular cylindrical partition wall surrounding a nozzle is provided between the mold and a tundish, and a water-cooled reflecting plate having an annular downward reflecting surface is also provided therebetween.
    • 提供由含有金属粉末或陶瓷粉末的烧结材料构成的多孔层作为用于连续金属铸造的模具的内表面,并且在该多孔层的外侧设置有屏蔽板。 在形成于多孔层和屏蔽板之间的间隙部分中供给气体,并且将多孔层中的多孔部分中的气体喷射到模具的内部,从而在模具的内表面之间形成气膜 和熔融金属。 电磁线圈介于加强板和围绕模具的夹持框架和支撑它们的悬挂框架之间。 在模具和中间包之间设置有围绕喷嘴的环形圆筒形分隔壁,并且还设置有具有环形向下反射表面的水冷反射板。
    • 4. 发明授权
    • High frequency incising device
    • 高频切割装置
    • US4485812A
    • 1984-12-04
    • US448781
    • 1982-12-10
    • Shinichi HaradaKatsuhiko FuruyaKazukiyo Tamada
    • Shinichi HaradaKatsuhiko FuruyaKazukiyo Tamada
    • A61B1/00A61B10/02A61B17/28A61B18/14A61M3/02A61B17/39
    • A61B18/14A61B2017/2927A61B2018/1407A61B2018/144A61M3/0279
    • The high frequency incising device includes a flexible tubular member secured to a manipulating unit. The tubular member has an open ended tip portion and a pair of longitudinal spaced openings in the wall of the tube. An electrically conductive wire extends through the flexible tube passing outwardly thereof through a forward one of the longitudinal openings and being anchored to the flexible tube at a rearward one of the longitudinal openings. Such anchoring is accomplished by bending the wire toward the tip portion of the tube. A second bend portion in the outwardly exposed wire is directed away from the tip portion such that the outwardly exposed wire takes on the shape of a fan or sector. An opposite end of the wire is connected to an electrically conductive pipe that is movably disposed in the manipulating unit and the tube. An end of the movable pipe that projects beyond the manipulating unit is connected to an anchoring device that is movable with respect to the manipulating unit. Accordingly movement of the anchoring device causes movement of the electrically conductive wire which causes the outwardly exposed portion of the wire to bulge away from the tube in an amount that is based upon a relative position of the anchoring device with respect to the manipulating unit. A contrast medium that is injected into the tube has a relatively unobstructed passage through the tip of the tube since the wire disposed within the tube and the bent portions of the wire within the tube do not impede flow of such contrast medium to the tip.
    • 高频切割装置包括固定到操纵单元的柔性管状构件。 管状构件具有敞开的末端部分和管的壁中的一对纵向隔开的开口。 导电线穿过柔性管延伸穿过其中的一个纵向开口,并且在纵向开口的后面一个锚定到柔性管。 这种锚固是通过将钢丝弯曲到管的尖端部分而实现的。 外露的线中的第二弯曲部分被引导离开尖端部分,使得向外暴露的线呈扇形或扇形。 电线的另一端连接到可移动地设置在操纵单元和管中的导电管。 突出超过操纵单元的可移动管的端部连接到可相对于操纵单元移动的锚定装置。 因此,锚定装置的相应运动引起导电线的移动,导致电线的向外暴露的部分以基于锚定装置相对于操纵单元的相对位置的量远离管而膨胀。 注射到管中的造影剂具有通过管的尖端的相对无阻碍的通道,因为设置在管内的线和管内的线的弯曲部分不会阻碍这种造影剂流到尖端。
    • 8. 发明授权
    • Continuous casting equipment and continuous casting method
    • 连铸设备及连铸方法
    • US5228498A
    • 1993-07-20
    • US938685
    • 1992-09-01
    • Shinichi HaradaHiroshi KawaguchiAtsushi YamamotoMasamitsu Nakatani
    • Shinichi HaradaHiroshi KawaguchiAtsushi YamamotoMasamitsu Nakatani
    • B22D11/10
    • B22D11/10
    • A continuous casting equipment which can be applied to a wide variation of casting capacity for continuous casting and by which a continuous casting operation can be performed with safety. The continuous casting equipment comprises a tundish for receiving molten metal poured from a ladle and for pouring the molten metal into a mold, a travelling truck for carrying the tundish between a molding section at which the mold is located and a skimming section at which molten scum in the tundish is to be discharged, and a tilting apparatus located at the skimming section for tilting the tundish together with the travelling truck on which the tundish is carried to allow molten scum to be discharged from within the tundish. Also an improved continuous casting method is disclosed.
    • 一种连续铸造设备,其可以应用于连续铸造的多种铸造能力的变化,并且可以安全地执行连续铸造操作。 连续铸造设备包括用于接收从钢包浇注的熔融金属并用于将熔融金属浇注到模具中的中间包,用于将中间包运送在模具所在的模制部分和用于熔融浮渣之间的撇渣部分的移动卡车 在中间包被排出的倾斜装置和位于撇渣部分的倾斜装置,用于将中间包与携带中间包的行进车一起倾斜以允许熔融的浮渣从中间包内排出。 还公开了一种改进的连续铸造方法。
    • 9. 发明授权
    • Passive mode lock fiber laser
    • 被动模式锁定光纤激光器
    • US06819689B2
    • 2004-11-16
    • US10165979
    • 2002-06-11
    • Makoto YoshidaShinichi Harada
    • Makoto YoshidaShinichi Harada
    • H01S330
    • H01S3/067H01S3/042H01S3/105H01S3/1112H01S3/139
    • A passive mode lock fiber laser including an energy generating means. The energy generating means includes a cavity, the cavity includes a gain medium made of an optical fiber for amplifying the laser energy in the cavity, a reflect means for reflecting the laser energy, a phase fluctuation compensating means for compensating a linear phase fluctuation of the gain medium, and an output means for outputting the laser energy generated in the cavity includes a temperature adjusting mechanism for adjusting a temperature of an optical fiber portion and a piezo element position adjusting mechanism for adjusting a position in the optical axis of the reflect means by using a piezo element.
    • 一种被动模式锁定光纤激光器,包括能量产生装置。 能量产生装置包括空腔,空腔包括由用于放大空腔中的激光能量的光纤制成的增益介质,用于反射激光能量的反射装置,用于补偿激光能量的线性相位波动的相位波动补偿装置 增益介质,并且用于输出在空腔中产生的激光能量的输出装置包括用于调节光纤部分的温度的温度调节机构和用于通过以下方式调节反射装置的光轴位置的压电元件位置调节机构 使用压电元件。