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    • 1. 发明专利
    • Pod type propulsion unit
    • POD型推进装置
    • JP2007245947A
    • 2007-09-27
    • JP2006072835
    • 2006-03-16
    • Ihi CorpSumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学株式会社Ihi
    • TSUJI NORIHIKOTAKEDA TOSHIOSUGIMOTO HIDEHIKOOKAZAKI TORU
    • B63H21/17B63H25/42
    • B63H5/125B63H21/383B63H2005/1258
    • PROBLEM TO BE SOLVED: To provide a small sized pod type propulsion unit capable of feeding a refrigerant for cooling a super-conductive coil of a super-conductive electric motor in the state in which the super-conductive electric motor is arranged in a pod body. SOLUTION: The pod type propulsion unit 1 is provided with the pod body 3 turnably supported on a hull 2; a turning motor (turning means) 5 for turning the pod body 3 relative to the hull 2; a field coil (super-conductive coil) and an armature coil (super-conductive coil); the super-conductive electric motor 11 having a rotation shaft 8 rotated by a magnetic field generated by these coils and arranged in the pod body 3; a propeller 12 mounted to the rotation shaft 8; a cooling unit 13 filled with the refrigerant for cooling the field coil and the armature coil; a cooling pipe for connecting the cooling unit 13 and the super-conductive electric motor 11; and a turning base 16 arranged with the cooling unit 13 and connected to the pod body 3. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种小型荚型推进单元,其能够在超导电动机配置的状态下供给用于冷却超导电动机的超导体线圈的制冷剂 荚体。 解决方案:荚型推进单元1设置有可转动地支撑在船体2上的荚体3; 用于使荚体本体3相对于船体2转动的转动马达(转动装置)5; 励磁线圈(超导线圈)和电枢线圈(超导线圈); 超导电动机11具有由这些线圈产生的磁场旋转并设置在荚体3内的旋转轴8; 安装在旋转轴8上的螺旋桨12; 填充有用于冷却励磁线圈和电枢线圈的制冷剂的冷却单元13; 用于连接冷却单元13和超导电动机11的冷却管; 以及设置有冷却单元13并连接到荚体3的转动底座16.版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Inductor-type synchronous machine
    • 电感式同步电机
    • JP2007252106A
    • 2007-09-27
    • JP2006072836
    • 2006-03-16
    • Ihi CorpSumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学株式会社Ihi
    • TAKEDA TOSHIOSUGIMOTO HIDEHIKOOKAZAKI TORU
    • H02K19/22H02K55/00
    • PROBLEM TO BE SOLVED: To provide an inductor-type synchronous machine which can be increased in capacity and reduced in size, and can be made lengthy.
      SOLUTION: The inductor-type synchronous machine comprises: first magnetic-field side stators 5A, 5B arranged with first magnetic field coils 3A; first rotors 8A, 8B to which a rotating shaft 2 is fixed, and which have first N-pole inductors 6A and first S-pole inductors 7A; a first armature-side stator 11 arranged with a first armature coil 10A; second magnetic-field side stators 13A, 13B arranged with second magnetic field coils 3B; second rotors 15A, 15B to which the rotating shaft 2 is fixed, and which have second N-pole inductors 6B and second S-pole inductors 7B; and a second armature-side stator 16 arranged with a second armature coil 10B.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可以增加容量并减小尺寸的电感式同步电机,并且可以做得很长。 电感型同步电机包括:配置有第一磁场线圈3A的第一磁场侧定子5A,5B; 固定有旋转轴2的第一转子8A,8B,其具有第一N极电感6A和第一S极电感7A; 配置有第一电枢线圈10A的第一电枢侧定子11; 配置有第二磁场线圈3B的第二磁场侧定子13A,13B; 第二转子15A,15B,旋转轴2固定到其上,并具有第二N极电感器6B和第二S极电感器7B; 以及配置有第二电枢线圈10B的第二电枢侧定子16。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Water jet propulsion device
    • 水喷射装置
    • JP2007245948A
    • 2007-09-27
    • JP2006072838
    • 2006-03-16
    • Ihi CorpSumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学株式会社Ihi
    • TAKEDA TOSHIOSUGIMOTO HIDEHIKOOKAZAKI TORU
    • B63H19/00B63H11/08
    • PROBLEM TO BE SOLVED: To provide a water jet propulsion device capably of rotating/driving an impeller relative to a water-leading pipe by reducing a calorific value from a coil.
      SOLUTION: The water jet propulsion device 1 is provided with the water-leading pipe 2 arranged on a hull not shown; a rotation pipe part 3 provided on a part of the inside of the water-leading pipe 2 along the water-leading pipe 2 and rotated relative to the water-leading pipe 2; and the impeller 5 fixed to an inner peripheral surface of the rotation pipe part 3. The device 1 is further provided with a field side stator 13 fixed to the water-leading pipe 2 and arranged with a field coil 12 for forming an N pole and an S pole; an N pole inductor 16 provided on the rotation pipe part 3 so as to be opposed to the N pole formed by the field coil 12 and an S pole inductor 16 provided on the rotation pipe part 3 so as to be opposed to the S pole formed by the field coil 12; and an armature side stator 18 fixed to the water-leading pipe 2 and arranged with an armature coil 17 for applying rotation magnetic field to the N pole inductor 15 and the S pole inductor 16.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种水喷射推进装置,其通过减少来自线圈的热值来可靠地相对于导水管旋转/驱动叶轮。 解决方案:喷水推进装置1设置有布置在未示出的船体上的导水管2; 沿导水管2设置在导水管2的内部的一部分上并相对于导水管2旋转的旋转管部3; 并且叶轮5固定在旋转管部3的内周面上。装置1还设置有固定在导水管2上的场侧定子13,并配置有形成N极的励磁线圈12, S极; 设置在旋转管部3上以与由励磁线圈12形成的N极相对的N极电感器16和设置在旋转管部3上的与S极相对的S极电感器16 通过励磁线圈12; 以及电枢侧定子18,其固定在导水管2上,配置有用于向N极电感器15和S极电感器16施加旋转磁场的电枢线圈17.(C)2007,JPO&INPIT
    • 4. 发明专利
    • Superconducting motor
    • 超级电机
    • JP2007252107A
    • 2007-09-27
    • JP2006072837
    • 2006-03-16
    • Ihi CorpSumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学株式会社Ihi
    • TAKEDA TOSHIOSUGIMOTO HIDEHIKOOKAZAKI TORU
    • H02K16/00H02K55/02
    • PROBLEM TO BE SOLVED: To provide a superconducting motor that can be reduced in size even if the motor has a plurality of output shafts.
      SOLUTION: The superconducting motor comprises: first magnetic-field side stators 5A, 5B arranged with first magnetic field coils 3A; first rotors 8A, 8B to which a first rotating shaft 2 is fixed, and which have first N-pole inductors 6A and first S-pole inductors 7A; a first armature-side stator 11 arranged with a first armature coil 10A; second magnetic-field side stators 14A, 14B arranged with second magnetic-field coils 3B; second rotors 15A, 15B to which a second rotating shaft 13 is fixed, and which have second N-pole inductors 6B and second S-pole inductors 7B; and a second armature-side stator 16 arranged with a second armature coil 10B.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供即使电动机具有多个输出轴也可以减小尺寸的超导电动机。 解决方案:超导电动机包括:配置有第一磁场线圈3A的第一磁场侧定子5A,5B; 第一转子8A,8B固定有第一旋转轴2,并且具有第一N极电感器6A和第一S极电感器7A; 配置有第一电枢线圈10A的第一电枢侧定子11; 配置有第二磁场线圈3B的第二磁场侧定子14A,14B; 第二转子15A,15B固定有第二旋转轴13,并且具有第二N极电感器6B和第二S极电感器7B; 以及配置有第二电枢线圈10B的第二电枢侧定子16。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Outer-rotor type synchronous machine and synchronous device
    • 外转子同步电机和同步装置
    • JP2007252108A
    • 2007-09-27
    • JP2006072839
    • 2006-03-16
    • Ihi CorpSumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学株式会社Ihi
    • TAKEDA TOSHIOSUGIMOTO HIDEHIKOOKAZAKI TORU
    • H02K19/10H02K7/10H02K55/02
    • Y02E40/622
    • PROBLEM TO BE SOLVED: To provide an outer-rotor type synchronous machine by which a high output and high power generation efficiency can be obtained even if the machine is in low rotation, and which can be simplified in a power-feeding or power-distributing structure and in a cooling structure of a superconducting coil, and a synchronous device equipped with the synchronous machine.
      SOLUTION: An outer-rotor motor 1 comprises: a shaft 7 arranged along a central axial line C; a pair of magnetic-field side stators 10A, 10B which are symmetrically arranged so as to oppose each other and fixed to the shaft 7, and in which a magnetic field coil 8 with an N-pole and an S-pole concentrically formed thereon is arranged; an N-pole inductor 11 which is composed of a magnetic body, arranged so as to oppose the N-pole formed by the magnetic field coil 8, and magnetized; and an S-pole inductor 12 which is composed of a magnetic body, arranged so as to oppose an S-pole formed by the magnetic field coil 8, and magnetized. The motor also comprises a hollow drum 13 which rotates with respect to the shaft 7, and an armature-side stator 16 which comprises an armature coil 15 opposing the N-pole inductor 11 and the S-pole inductor 12, and is sandwiched by the pair of magnetic-field side stators 10A, 10B.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种外转子型同步电机,即使机器处于低旋转状态,也可以获得高输出和高发电效率,并且可以简化馈电或 配电结构和超导线圈的冷却结构,以及配备有同步电机的同步装置。 解决方案:外转子电动机1包括:沿着中心轴线C布置的轴7; 一对磁场侧定子10A,10B,它们对称地布置成彼此相对并固定到轴7,并且其中同心地形成有N极和S极的磁场线圈8是 安排; 由与磁场线圈8形成的N极相对配置的由磁体构成的N极电感器11被磁化; 以及由磁性体构成的S极电感器12,被配置成与由磁场线圈8形成的S极相对并被磁化。 电动机还包括相对于轴7旋转的中空鼓13和电枢侧定子16,其包括与N极电感器11和S极电感器12相对的电枢线圈15,并被夹在 一对磁场侧定子10A,10B。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Drive device
    • 驱动装置
    • JP2008074263A
    • 2008-04-03
    • JP2006256126
    • 2006-09-21
    • Sumitomo Electric Ind LtdUniv Of Fukui住友電気工業株式会社国立大学法人福井大学
    • OKAZAKI TORUSUGIMOTO HIDEHIKO
    • B60K7/00B60L15/00
    • PROBLEM TO BE SOLVED: To improve space efficiency on the retaining material side by arranging a motor for rotating a drive shaft on the drive shaft projected from the retaining material.
      SOLUTION: An axial gap type motor is mounted to the drive shaft having one end fixed to a rotation material side and the other end rotatably supported on the retaining material side around an axis. In the axial gap type motor, a rotor fixed to the drive shaft and a stator rotatably penetrated with the drive shaft and retained to the retaining material side are arranged at an interval in the axial direction of the drive shaft. A permanent magnet is mounted to the rotor at an interval around an axis of the drive shaft so that, on the side surface of the stator, an N pole and an S pole are alternately arranged, and an armature coil is mounted to the stator at an interval around an axis of the drive shaft. An AC current is fed to the armature coil to rotate the rotor together with the drive shaft.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过设置用于使驱动轴旋转在从保持材料突出的驱动轴上的马达来提高保持材料侧的空间效率。 解决方案:轴向间隙型电动机安装在驱动轴上,其一端固定在旋转材料侧,另一端围绕轴线可旋转地支撑在保持材料侧上。 在轴向间隙型电动机中,固定在驱动轴上的转子和可旋转地贯穿驱动轴并保持在保持材料侧的定子以驱动轴的轴向间隔布置。 永磁体以驱动轴的轴线的间隔安装在转子上,使得在定子的侧面上交替排列N极和S极,并且将电枢线圈安装在定子上 围绕驱动轴的轴线的间隔。 AC电流被馈送到电枢线圈以使转子与驱动轴一起旋转。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Induction heating apparatus and power generation system including the same
    • 感应加热装置及其发电系统
    • JP2012256507A
    • 2012-12-27
    • JP2011128713
    • 2011-06-08
    • Sumitomo Electric Ind Ltd住友電気工業株式会社Kyoto Univ国立大学法人京都大学
    • OKAZAKI TORUMATSUO TETSUJIMIFUNE TAKESHI
    • H05B6/02F03D9/00F03D9/02H05B6/10
    • H02N99/00F03D9/22H05B6/108H05B6/109Y02E10/72Y02E10/725
    • PROBLEM TO BE SOLVED: To provide an induction heating apparatus which has the capability suitable for improving a heat value and heating a heat medium, and to provide a power generation system including the induction heating apparatus.SOLUTION: An induction heating apparatus 101 comprises: a rotor 11 having a rotation shaft; and a stator part 12 having a heating part 13 disposed so as to be spaced apart from the rotor 11. The rotor 11 is provided with a coil 15 generating magnetic flux in a direction of the heating part 13. The heating part 13 is formed by a composite material of a magnetic material and a conductive material and has a structure formed by combining a magnetic material part 131 and a conductive material part 132. When the coil 15 is in a position facing the heating part 13, a cross section area of the magnetic material part 131 is smaller than an interlinkage area of the magnetic flux generated from the coil 15 in the heating part 13, and the conductive material part 132 is disposed so as to enclose around the magnetic material part 131. A flow passage 14, in which a heat medium circulates, is provided in the heating part 13.
    • 解决的问题:提供一种具有适于提高热值和加热热介质的能力的感应加热装置,并提供包括感应加热装置的发电系统。 感应加热装置101包括:具有旋转轴的转子11; 以及具有与转子11间隔设置的加热部13的定子部12.转子11设置有沿加热部13的方向产生磁通的线圈15。加热部13由 磁性材料和导电材料的复合材料,并且具有通过组合磁性材料部分131和导电材料部分132而形成的结构。当线圈15处于面向加热部分13的位置时,横截面积 磁性材料部131比加热部13中的线圈15产生的磁通的交链面积小,并且导电材料部132被配置成围绕磁性材料部131包围。流路14 加热部13中设置有热介质循环的热敏介质。版权所有(C)2013,JPO&INPIT
    • 10. 发明专利
    • Power generation system
    • 发电系统
    • JP2012223051A
    • 2012-11-12
    • JP2011089235
    • 2011-04-13
    • Sumitomo Electric Ind LtdKyoto Univ住友電気工業株式会社国立大学法人京都大学
    • OKAZAKI TORUSHIRAI YASUYUKI
    • H02P9/00H02P9/04H05B6/02H05B6/10
    • Y02E20/14
    • PROBLEM TO BE SOLVED: To provide a power generation system that generates electric power by directly heating a heat medium by induction and converting heat of the heat medium into electric energy.SOLUTION: The power generation system includes an induction heating device which heats the heat medium and a power generation part which converts the heat of the heat medium into the electric energy. The induction heating device 101 includes piping 14 which stores the heat medium and a coil 15 which generates magnetic flux, and is provided with a coil 15 at an outer periphery of a rotary body 11 and fitted with the piping 14 on an inner peripheral surface of a stator part 12. The heat medium is a conductive fluid. The coil 15 is supplied with electric power to generate magnetic flux in a radial direction of the rotary body 11, and the coil 15 rotates together with the rotary body 11 to generate varying magnetic flux. Consequently, a current is generated by electromagnetic induction in the heat medium (conductive fluid) in the piping 14, and the heat medium generates heat through electric resistance to directly heat the heat medium by induction.
    • 要解决的问题:提供一种发电系统,其通过感应直接加热热介质并将热介质的热量转换为电能来产生电力。 解决方案:发电系统包括加热热介质的感应加热装置和将热介质的热量转换成电能的发电部分。 感应加热装置101包括存储热介质的管道14和产生磁通量的线圈15,并且在旋转体11的外周设置有线圈15,并在管体14的内周面 定子部分12.热介质是导电流体。 线圈15被供给电力以在旋转体11的径向方向上产生磁通量,并且线圈15与旋转体11一起旋转以产生变化的磁通量。 因此,在配管14的热介质(导电性流体)中通过电磁感应产生电流,并且热介质通过电阻产生热量,以通过感应直接加热热介质。 版权所有(C)2013,JPO&INPIT