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    • 51. 发明专利
    • Rotary compressor
    • 旋转式压缩机
    • JP2005307764A
    • 2005-11-04
    • JP2004122382
    • 2004-04-19
    • Mitsubishi Electric Corp三菱電機株式会社
    • YOKOYAMA TETSUEIKODA TOSHIHIDENAKATSU KIMIHIDENAKAO HIDETOMAEYAMA HIDEAKISUGIHARA MASAHIRO
    • F04C27/00F04C18/356F04C29/00
    • PROBLEM TO BE SOLVED: To provide a rotary compressor capable of reducing loss of gas leakage (in particular, gas leakage when CO
      2 is refrigerant gas) in a cylinder as much as possible and increasing compression performance than a conventional rotary compressor.
      SOLUTION: In a sealed vessel 1, the cylinder 5 and a roller 7 rotated and driven in the cylinder 5 by a crank shaft 2 are provided. The roller 7 rotates in accordance with rotation of the crank shaft 2 while moving a contact point for the cylinder 5 to compress gas sucked into a suction chamber 10 from an inlet port 15 and discharge it from a discharge port 16. A leakage reducing mechanism 20 bent due to difference in internal pressure between the sealed vessel 1 and the cylinder 5 or difference in pressure between pressure of the compression chamber 11 and pressure of the suction chamber 10 and coming into contact with the roller 7 is provided along an inner peripheral face in the cylinder 5.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够尽可能减少气缸中气体泄漏损失(特别是CO 2 气体泄漏)的旋转式压缩机,并且增加压缩 性能比传统的旋转压缩机。 解决方案:在密封容器1中,设置有缸5和通过曲轴2在缸5中旋转和驱动的辊7。 辊7根据曲轴2的旋转而旋转,同时移动用于气缸5的接触点,以从吸入口15压缩吸入吸入室10的气体,并将其从排出口16排出。泄漏减少机构20 由于密封容器1和气缸5之间的内部压力的差异或者压缩室11的压力与吸入室10的压力之间的压力与辊7接触而弯曲,沿着内周面 气瓶5.版权所有(C)2006,JPO&NCIPI
    • 53. 发明专利
    • FLAW DETECTION SYSTEM FOR TUBE OUTSIDE PART INSPECTION ROBOT
    • JP2000266728A
    • 2000-09-29
    • JP7062699
    • 1999-03-16
    • MITSUBISHI ELECTRIC CORP
    • NAKATSU KIMIHIDEKUMAGAI TAKASHI
    • B25J5/00F16L1/00G01N27/82
    • PROBLEM TO BE SOLVED: To suppress influence of noise entering a sensor so as to provide accurate information about a flaw and a crack on the outside of a tube at a low cost by forming an annular dummy lead wire parallelly to sensor wiring formed into an annular shape through respective robots. SOLUTION: In a dummy sensor, a dummy lead wire 9 is arranged annularly and parallelly to an annularly arranged wire of a sensor 3, that is, a transmission system line. The dummy lead wire 9 is formed of a single conducting wire made of the same material as wires 3c, 3d in the sensor 3 as a whole and is constructed similarly to wiring in all the slave robots, that is, wiring 3d1 in a sensor 3b of a slave machine 1b. When a robot is connected annularly, the dummy lead wire 9 is connected to a female connector 4a for the adjacent slave machine 1b via a male connector 4b for a master machine 1 from a terminal of a transmission system main body 2a as a starting point. This is repeated, and the dummy lead wire 9 passes through the respective robots 1 and passes around the outside of a tube annularly so as to return to the right terminal of the system main body 2a.
    • 55. 发明专利
    • DEVICE FOR DRIVING MAGNETIC HEAD
    • JPH0676255A
    • 1994-03-18
    • JP22842492
    • 1992-08-27
    • MITSUBISHI ELECTRIC CORP
    • NAKATSU KIMIHIDEMORI KAZUO
    • G11B5/53G11B5/56G11B5/592
    • PURPOSE:To provide a low power consumption magnetic head drive device with a few number of parts, with a few number of assembling processes as well, at a low cost, capable of miniaturizing and thinning and further, easy for adjusting an azimuth angle and an initial position in the magnetic head and without occurring a degaussing effect due to leakage flux. CONSTITUTION:Piezoelectric elements 15, 15,... provided with plural electrodes 151, 152 on one surface in the direction of expansion and compression are laminated in the direction of expansion and compression, and the magnetic head 7 is attached to one side end surface in the direction of lamination. Further, strain gauges 191, 192 detecting expansion and compression amt. of the piezoelectric elements 15, 15,... in respective elecrode 151, 152 sides are provided, and the magnetic head drive device 1 is constituted. At this time, adjustment voltages different from each other are applied to plural electrodes 151, 152, and the azimuth angle in the magnetic head 7 is adjustable.