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    • 23. 发明申请
    • COAXIAL INVERSION CORELESS GENERATOR
    • 同轴逆变无线发电机
    • US20110266903A1
    • 2011-11-03
    • US13141961
    • 2009-03-06
    • Akio Hara
    • Akio Hara
    • H02K21/00
    • H02K7/183F03D3/005F03D9/25F03D13/20H02K1/2786H02K3/47H02K7/116H02K16/005H02K23/60H02K53/00Y02B10/30Y02E10/74
    • Provided is a space-saving coaxial inversion coreless generator of a simple structure wherein a high output can be obtained by utilizing the rotational force of a wind turbine, for example. The coaxial inversion coreless generator comprises a generator shaft supported fixedly, an outer rotor with a magnet supported rotatably by the generator shaft and driven by wind force, a coreless coil body that is housed in the outer rotor coaxially therewith while being supported rotatably by the generator shaft and is provided with a coil portion arranged in association with the magnet, and a reversing gear supported by the generator shaft and rotating the coreless coil body reversely according to rotation of the outer rotor by interlocking with circular gears arranged both in the outer rotor; and the coreless coil body circularly, whereby the generator is constituted to take out a power generation output according to an increase in relative speed between the magnet and the coil portion caused by reverse rotations of the outer rotor and the coreless coil body.
    • 提供了一种简单结构的节省空间的同轴反转无芯发电机,其中例如通过利用风力涡轮机的旋转力可以获得高输出。 同轴反转无芯发电机包括固定支撑的发电机轴,具有由发电机轴可旋转并由风力驱动的磁体的外转子,与该发电机可转动地支承在一起的无芯线圈体, 并且设置有与磁体相关联地设置的线圈部分和由发电机轴支撑的换向齿轮,并且通过与外转子中布置的圆形齿轮互锁而根据外转子的旋转而使无芯线圈体反向旋转; 无芯线圈体循环,由此,发电机构成为根据外转子和无芯线圈体的反转而导致的磁体与线圈部之间的相对速度的增加而取出发电输出。
    • 24. 发明申请
    • X-RAY FLUOROSCOPE TABLE AND X-RAY FLUOROSCOPE SYSTEM
    • X射线荧光表和X射线荧光光谱系统
    • US20100296626A1
    • 2010-11-25
    • US12517824
    • 2007-11-27
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • G01N23/223A61B6/04
    • A61B6/4441A61B6/04A61B6/0457A61B6/50A61B6/548A61B6/587
    • An X-ray fluoroscope table and an X-ray fluoroscope system using this fluoroscope table with simple structure and easily ensuring an area where a person stands near the top board.An X-ray fluoroscope table (1) comprises a stand unit (10), a support arm unit (20), a support frame (30), a top board (40), an X-ray generator (60), a column unit (50), and an X-ray detector (FPD 70).The end of the column unit (50) on the support frame side (30) and the end on the X-ray generator (60) side are displaced from each other in the length direction of the support frame (30).With this constitution, the area where an operator (OP3) stands can be ensured near the column unit (50).An X-ray fluoroscope system is constituted of this fluoroscope table (1), a high-voltage generator for supplying electric power to the fluoroscope table (1), and a remote control console for integrally controlling them.
    • 使用这种荧光镜的X射线透视镜和X射线荧光镜系统,结构简单,容易确保人们靠近顶板的位置。 X射线透视台(1)包括支架单元(10),支撑臂单元(20),支撑框架(30),顶板(40),X射线发生器(60),柱 单元(50)和X射线检测器(FPD 70)。 支撑框架侧(30)上的列单元(50)的端部和X射线发生器(60)侧的端部在支撑框架(30)的长度方向上彼此偏移。 利用这种构造,可以在列单元(50)附近确保操作者(OP3)站立的区域。 X射线荧光镜系统由这种荧光透镜台(1),用于向荧光透镜台(1)供电的高压发生器和用于一体地控制它们的遥控台构成。
    • 25. 发明授权
    • Superabrasive tool and method of manufacturing the same
    • 超研磨工具及其制造方法
    • US06312324B1
    • 2001-11-06
    • US09077024
    • 1998-05-27
    • Kosuke MitsuiToshio FukunishiKazunori KadomuraYukio ShimizuYoshio KoutaMasaaki YamanakaAkio Hara
    • Kosuke MitsuiToshio FukunishiKazunori KadomuraYukio ShimizuYoshio KoutaMasaaki YamanakaAkio Hara
    • B24D300
    • B24B53/017B24B3/06B24B37/16B24B53/12B24D3/00B24D5/00B24D7/00B24D18/00
    • A superabrasive tool such as a superabrasive grindstone (101; 102), a superabrasive dresser (103; 104; 105) or a superabrasive lap surface plate (106) includes a base (20) of steel and a superabrasive layer (10) formed on the base (20). The superabrasive layer (10) includes superabrasive grains (11) consisting of diamond grains, cubic boron nitride grains or the like and a holding layer consisting of a nickel plating layer (16) and a bond layer (17), or a brazing filler metal layer (18), holding the superabrasive grains (11) and fixing the same onto the base (20). Grooves (12) or holes (14) are formed on flat surfaces (19) of the superabrasive grains (11) exposed from the holding layer (16, 17; 18). The holding layer (16, 17; 18) holding and fixing the superabrasive grains (11) so that the surfaces of the grains are partially exposed is formed on the base (20). The grooves (12) or the holes (14) are formed by irradiating the surfaces of the superabrasive grains (11) exposed from the holding layer (16, 17; 18) with a laser beam (50). Working of high accuracy can be performed by forming the grooves (12) or the holes (14) on the surfaces of the superabrasive grains (11).
    • 超研磨工具,例如超研磨磨石(101; 102),超研磨修整器(103; 104; 105)或超级磨料搭接表面板(106),包括钢的基部(20)和形成在 基座(20)。 超级磨料层(10)包括由金刚石晶粒,立方氮化硼晶粒等构成的超磨料颗粒(11)和由镀镍层(16)和接合层(17)组成的保持层,或钎料 层(18),保持超磨料颗粒(11)并将其固定到基底(20)上。 在从保持层(16,17; 18)露出的超级磨料颗粒(11)的平坦表面(19)上形成槽(12)或孔(14)。 保持层(16,17; 18)在基体(20)上形成有保持和固定超磨料颗粒(11)以使颗粒的表面部分露出的部分。 通过用激光束(50)照射从保持层(16,17; 18)暴露的超级磨料颗粒(11)的表面,形成凹槽(12)或孔(14)。 可以通过在超级磨料颗粒(11)的表面上形成凹槽(12)或孔(14)来实现高精度的工作。
    • 27. 发明授权
    • Process of producing a sintered compact
    • 制造烧结体的方法
    • US4333902A
    • 1982-06-08
    • US762189
    • 1977-01-24
    • Akio Hara
    • Akio Hara
    • B22F3/12C04B35/645B29C1/02
    • B22F3/1258B22F3/125C04B35/645
    • A process of producing a sintered compact comprises filling a cup with a powdered material to be sintered, putting on an opening of the cup a covering member consisting of a lid and solder so as to permit ventilation between the interior and exterior of the cup to form a cup assembly, applying heat as well as vacuum to the cup assembly to degas the powdered material, melting the solder by the continuation of heat to air-tightly seal the cup with the lid to obtain a closed cup compressible under high pressure at high temperature while maintaining the air-tight seal, and hot-pressing the closed cup to obtain a sintered compact.The covering member may include a porous lid closing the cup and a solder put on the porous lid.
    • 制造烧结体的方法包括用要烧结的粉末材料填充杯子,将杯子的开口置于由盖子和焊料构成的覆盖部件上,以允许杯子的内部和外部之间的通风形成 杯组件,对杯组件施加热量和真空以对粉末材料脱气,通过继续热来熔化焊料,以将盖与盖气密密封,以获得在高温下在高温下可压缩的封闭杯 同时保持气密密封,并且热封闭杯以获得烧结体。 覆盖构件可以包括封闭杯的多孔盖和放置在多孔盖上的焊料。
    • 28. 发明申请
    • FIXING STRUCTURE FOR GENERATOR SHAFT OF WIND DRIVEN GENERATOR OF OUTER ROTOR CORELESS TYPE
    • 外转子无风扇风力发电机发电机轴固定结构
    • US20110304150A1
    • 2011-12-15
    • US13142945
    • 2009-03-06
    • Akio Hara
    • Akio Hara
    • F03D11/04
    • F03D3/064F03D13/20F03D80/70Y02E10/728Y02E10/74
    • A fixing structure for a generator shaft of a wind driven generator of outer rotor coreless type prevents deformation of the generator shaft even in strong wind and has less factors causing failures. In the fixing structure for a wind driven generator (1) of outer rotor coreless type, a screw thread (13) is formed on an end of a generator shaft (13) projecting from a generator body (10) of the wind driven generator (1), the generator shaft (13) projecting from the generator body (10) is fitted in a shaft support body (11) so as to be rotatably supported thereby, and a nut (62) is engaged to the screw thread (13a) of the generator shaft (13) to fasten the generator shaft (13) to fasten the generator shaft (13) to the shaft support body (11).
    • 用于外转子无芯型风力发电机的发电机轴的固定结构,即使在强风下也能防止发电机轴变形,导致故障的因素较少。 在外转子无芯式风力发电机(1)的固定结构中,在从风力发电机的发电机主体(10)突出的发电机轴(13)的端部上形成有螺纹(13) 如图1所示,从发电机主体(10)突出的发电机轴(13)以轴支承体(11)的形式配合,由此可旋转地支承,并且螺母(62)与螺纹(13a)接合, 的发电机轴(13),以紧固发电机轴(13)以将发电机轴(13)紧固到轴支撑体(11)。
    • 29. 发明授权
    • X-ray fluoroscope table and X-ray fluoroscope system
    • X光透视镜和X光荧光镜系统
    • US08052325B2
    • 2011-11-08
    • US12517824
    • 2007-11-27
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • G01N23/223
    • A61B6/4441A61B6/04A61B6/0457A61B6/50A61B6/548A61B6/587
    • An X-ray fluoroscope table and an X-ray fluoroscope system using this fluoroscope table with simple structure and easily ensuring an area where a person stands near the top board.An X-ray fluoroscope table (1) comprises a stand unit (10), a support arm unit (20), a support frame (30), a top board (40), an X-ray generator (60), a column unit (50), and an X-ray detector (FPD 70).The end of the column unit (50) on the support frame side (30) and the end on the X-ray generator (60) side are displaced from each other in the length direction of the support frame (30).With this constitution, the area where an operator (OP3) stands can be ensured near the column unit (50).An X-ray fluoroscope system is constituted of this fluoroscope table (1), a high-voltage generator for supplying electric power to the fluoroscope table (1), and a remote control console for integrally controlling them.
    • 使用这种荧光镜的X射线透视镜和X射线荧光镜系统,结构简单,容易确保人们靠近顶板的位置。 X射线透视台(1)包括支架单元(10),支撑臂单元(20),支撑框架(30),顶板(40),X射线发生器(60),柱 单元(50)和X射线检测器(FPD 70)。 支撑框架侧(30)上的列单元(50)的端部和X射线发生器(60)侧的端部在支撑框架(30)的长度方向上彼此偏移。 利用这种构造,可以在列单元(50)附近确保操作者(OP3)站立的区域。 X射线荧光镜系统由这种荧光透镜台(1),用于向荧光透镜台(1)供电的高压发生器和用于一体地控制它们的遥控台构成。