会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 42. 发明专利
    • Molding device of stator, and molding method of stator
    • 定子的成型装置和定子的成型方法
    • JP2005218292A
    • 2005-08-11
    • JP2004026109
    • 2004-02-02
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FUJIWARA KENJIKOGURE TAKATOSHIKATO YOSHIKIMORIMOTO MASAYUKIKOBAYASHI SHINICHIBABA ISAO
    • H02K15/12
    • PROBLEM TO BE SOLVED: To provide a molding device of a stator which is further reduced in cost, and further excels in degassing property, and a molding method of the stator.
      SOLUTION: The molding device of a stator is provided with a vacuum tub (1), a rotation base (4) which rotates in the vacuum tub (1), double cylinders (6, 9) which are supported by the rotation base (4) and inserts the stator which is a work (W), and a feeder (14) for supplying a molding liquid to the work (W). The work (W) is supported by the double cylinder (6, 9). The feeder (14) constitutes an inlet (16) for sagging the molding liquid to the annular stem right-angled side of the work (W). The double cylinder (6, 9) performs the sag of the liquid to perpendicular lower part to the axial right-angled top view of the work (W) inserted in the annular volume, liquid permeates toward the lower surface from the top view of the work. Thus, bubble in a permeating liquid floats during penetration and is discharged into the vacuum tub (1). The liquid sags dispersively to the axial right-angled annular side of the rotating work equally. In such dispersive equalization, the descent side of permeating liquid forms a horizontal circle-like side in the annular volume, moves below gradually as an annular liquid which penetrates annularly in the space, and bubble is driven out homogeneously.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:为了提供进一步降低成本,进一步优异的脱气性的定子的成型装置和定子的成型方法。 解决方案:定子的模制装置设置有真空桶(1),在真空桶(1)中旋转的旋转底座(4),由旋转支撑的双缸(6,9) 基座(4)并插入作为工件(W)的定子和用于向工件(W)供给成型液体的进料器(14)。 工件(W)由双缸(6,9)支撑。 进料器(14)构成用于将成型液体流下到工件(W)的环形杆直角侧的入口(16)。 双缸(6,9)将液体的垂度向插入环形体积中的工件(W)的轴向直角顶视图垂直于下部,从液体的顶视图向下表面渗透 工作。 因此,渗透液体中的气泡在穿透期间漂浮并排出到真空桶(1)中。 液体在旋转工作的轴向直角环形侧面分散地凹陷。 在这种分散均衡中,渗透液体的下降侧在环形体积中形成水平的圆形的一侧,作为在该空间中环状地贯穿的环状液体逐渐向下移动,气泡被均匀地排出。 版权所有(C)2005,JPO&NCIPI
    • 43. 发明专利
    • Ipm rotary electric machine
    • IPM旋转电机
    • JP2005080381A
    • 2005-03-24
    • JP2003306603
    • 2003-08-29
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FUJIWARA KENJIKOGURE TAKATOSHIKATO YOSHIKIMORIMOTO MASAYUKIKOBAYASHI SHINICHIBABA ISAO
    • H02K1/14H02K1/22H02K1/27H02K3/18H02K21/16
    • Y02T10/641
    • PROBLEM TO BE SOLVED: To provide an IPM(Interior Permanent Magnet) motor which has a large output torque and a stable d-axis inductance at weak field control at a small value by suppressing higher harmonic components of voltage induced in armature winding.
      SOLUTION: This machine is equipped with a field of n1 poles, and has a rotor side face opposed to a stator. The field includes a permanent magnet which has a magnetic pole face outside in the radial direction of a rotor. The permanent magnet is buried to such a degree that the maximum value x of the distance from a point on the magnetic face to the rotor side face fulfills the following formula:x≤D/10(D=2πr/n
      1 ) when defined that the radius of the rotor is r. The stator is equipped with n
      2 pieces of armature teeth and armature winding wound severally on the armature teeth. An angle θ
      1 that both ends in circumferential direction of the tip of each armature tooth view the center axis of the rotor and an angle θ defined by formula (3): θ=360°/N fulfill formula(4):0.85≤θ
      1 /θ
    • 要解决的问题:通过抑制电枢绕组中感应的电压的高次谐波分量,提供具有较小输出转矩和稳定d轴电感的IPM(内部永磁)电动机, 。

      解决方案:该机器配备有n1极的场,并具有与定子相对的转子侧面。 该磁场包括在转子的径向方向上具有磁极面的永磁体。 将永磁体埋入到从磁性面到转子侧面的距离的最大值x满足下式:x≤D/ 10(D =2πr/ n 1 < / SB>)定义为转子的半径为r。 定子配有n 2 电枢齿和电枢绕组,分别缠绕在电枢齿上。 每个电枢齿顶端的圆周方向两端的角度θ 1 观察转子的中心轴线和由公式(3)定义的角度θ:θ= 360°/ N满足公式 (4):0.85≤θ 1 /θ<1.0。 版权所有(C)2005,JPO&NCIPI

    • 45. 发明专利
    • CHOPPER FOLDING DRIVE DEVICE
    • JPH0664836A
    • 1994-03-08
    • JP22033892
    • 1992-08-19
    • MITSUBISHI HEAVY IND LTD
    • OTA YASUTAKAHARADA TAKAOFUJIWARA KENJI
    • B65H45/18
    • PURPOSE:To facilitate the timing adjustment by actuating a chopper arm drive motor synchronously with the speed of a rotary press, and making the rotational phase of the motor variable for the rotational phase of the rotary press, regarding a chopper folding device installed on the folding machine of the rotary press. CONSTITUTION:A chopper folding mechanism causes the rotation of a rotary shaft 14 via a gear 47, a crank rod 24 having one end connected to the eccentric pin of the gear 47 and a crank arm 25, on the rotation of a gear 48 fitted to the output shaft of a motor 31. A chopper arm 13 having a chopper blade 29 is thereby driven. In this case, the motor 31 is controlled be synchronous with printing machine speed, according to a signal from a synchronous encoder 32 on the drive shaft of a printing machine body via a speed instruction computing element 36 and a driver 37. Also, for the timing adjustment of the chopping arm 13, a speed signal from a frequency-speed converter 34 is read into a speed- phase preset data device 35, and a phase correction signal is sent to the element 36.
    • 46. 发明专利
    • PAPER CONNECTING METHOD FOR PAPER FEED SECTION OF CORRUGATED CARDBOARD MANUFACTURING DEVICE
    • JPH02270748A
    • 1990-11-05
    • JP8806289
    • 1989-04-10
    • MITSUBISHI HEAVY IND LTD
    • FUJIWARA KENJI
    • B65H19/16
    • PURPOSE:To prevent paper cutting and unsatisfactory paper connection and improve productivity by controlling the rotating speed and driving torque of a driving servo motor, and adjusting the tensile force applied to a corrugated cardboard sheet when the paper feeding of an accelerating roll is stopped and the tip section of the newly wound paper is stuck to the previously wound paper to connect them. CONSTITUTION:A servo motor 21 is started, its rotation is transmitted to a self-propelling dancer 5, the self-propelling dancer 5 is moved in the feeding direction of a corrugated cardboard sheet 8, and the feeding of the corrugated cardboard sheet 8 beyond an outlet roll 7 is continued. When the paper feeding of an accelerating roll 3 is stopped and the tip section of the newly wound paper is stuck to the previously wound paper to connect them, the rotating speed and driving torque of the driving servo motor 21 are controlled by a control device 12, and the tensile force applied to the corrugated cardboard sheet 8 is adjusted. Paper cutting and unsatisfactory paper connection or the like are prevented, the production interruption of the corrugated cardboard sheet 8 and the occurrence of the broke are dissolved, and productivity can be improved.
    • 47. 发明专利
    • TENSION CONTROL DEVICE FOR RUNNING PAPER
    • JPH0270649A
    • 1990-03-09
    • JP22047988
    • 1988-09-05
    • MITSUBISHI HEAVY IND LTD
    • FUJIWARA KENJIOGAWA YOSHIRO
    • B65H23/192
    • PURPOSE:To perform a stable tension control of new rewound paper, during connection, clearly known in its radius and inertia and given a proper brake gain corresponding to these radius and inertia by detecting the new rewound paper for its radius and width in the time of chucking the paper. CONSTITUTION:New rewound paper 1 is carried coming by a conveyer in a condition that arms 2, 3 are lifted. Next lowering the arms 2, 3 the rewound paper 1 is detected for the center of its paper tube further clamped by closing the arms 2, 3 in a width direction. Here by detecting height of the arm 3 with a position detector 4, a radius of the rewound paper 1 is known. While the detecting a position of the arm 3 in its width direction with a position detector 5, a width of the rewound paper 1 is known. Thereafter, again lifting the arms 2, 3, preparation of connecting the paper is performed. Accordingly, the radius and the width of the new rewound paper 1 can be known, and even inertia can be calculated.