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    • 1. 发明专利
    • Fluid machine
    • 流体机
    • JP2006077744A
    • 2006-03-23
    • JP2004266034
    • 2004-09-13
    • Toshiba Kyaria Kk東芝キヤリア株式会社
    • TSUNODA KAZUHISAHIRAYAMA TAKUYAKOYAMA SATOSHIFUJIWARA HISAYOSHI
    • F04C18/30
    • PROBLEM TO BE SOLVED: To provide a fluid machine, capable of enlarging applications to multiple devices, reducing leak of fluid between actuation chambers, and improving performance and reliability by providing a helical mechanism part comprising a plurality of actuation mechanism parts in a single cylinder. SOLUTION: This fluid machine comprises the helical mechanism part 3 comprising blades 24 and 34 engaged in a plurality of spiral grooves 23 and 33 provided in a roller 13. A seal ring 12 is provided between the plurality of the spiral grooves 23 and 33. The seal ring 12 is formed as a seamless ring, and a thin lip 12c that is thinner than a base body part 12a is formed in its outer circumference. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够将应用扩大到多个装置的流体机械,减少致动室之间的流体泄漏,并通过提供螺旋机构部件来提高性能和可靠性,该螺旋机构部件包括多个致动机构部件 单缸。 解决方案:该流体机械包括螺旋机构部分3,其包括叶片24和34,其接合在设置在辊13中的多个螺旋槽23和33中。密封环12设置在多个螺旋槽23和 密封环12形成为无缝环,并且在其外周形成有比基体部12a薄的薄唇12c。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • HELICAL COMPRESSOR
    • JP2002070773A
    • 2002-03-08
    • JP2000266544
    • 2000-09-04
    • TOSHIBA CARRIER KK
    • FUJIWARA HISAYOSHI
    • F04C18/344F04C18/107F04C18/30
    • PROBLEM TO BE SOLVED: To provide a helical compressor of which a spiral groove and Oldham' s key are effectively allocated to a roller, the roller is made compact and reliability is improved. SOLUTION: A helical compressor 10 has a motor 12 inside a sealed case 11 and a helical blade type compression mechanism 13 which is driven by the motor 12. The compression mechanism 13 is equipped with a main bearing 20 and a sub bearing 21, meanwhile consists of a cylinder 23, the roller 24 which is eccentrically put in the cylinder 23 and a helical blade 25 put between the roller 24 and the cylinder 23. The roller 24 integrated to the compression mechanism 13 forms the spiral groove 28 surrounding a plate and key way 38 extended radically to roller end plate. A key way 38 makes the intake side edge part (starting edge) of the spiral groove zero degree and when the spiral groove is formed from zero degree to plus degree, it is formed at the position of necessary angle at minus side and the spiral groove 28 and key way 38 of the roller edge plate are effectively arranged.
    • 5. 发明专利
    • HELICAL COMPRESSOR
    • JP2002070772A
    • 2002-03-08
    • JP2000258921
    • 2000-08-29
    • TOSHIBA CARRIER KK
    • SASAHARA YUTAKAYOSHIDA MASATOSHI
    • F04C29/00F04C18/30F04C18/344F04C29/12
    • PROBLEM TO BE SOLVED: To provide a helical compressor which prevents a roller from rotating opposite side smoothly and certainly, has high reliability and maintain high compressor performance, when compressor is stopped. SOLUTION: A helical blade type compression mechanism 19 which is equipped with a main bearing 24 and a sub bearing 25 is put in the sealed case 16 of a helical compressor 11. The compression mechanism 19 has a cylinder 27, a roller 28 which is eccentrically put in this cylinder 27, a helical blade 29 put between the roller 28 and the cylinder 27. An intake path 46 is formed in the sealed case 16 in which outer refrigerant gas is guided to the intake part 36 of the compression mechanism 19. This intake path 46 consists of the intake aperture of the sub bearing 25, the intake hole of a thrust sheet 33 and the intake aperture 45 of the cylinder 27 and the intake aperture of cylinder 27 is transmitted to the intake part 36 of the compression mechanism 19. A return check valve 50 is set at the intake path of the cylinder 27 and the opposite rotation prevention mechanism 46 of the roller 28 is composed.
    • 6. 发明专利
    • DISPLACEMENT COMPRESSOR
    • JPH0814173A
    • 1996-01-16
    • JP17984094
    • 1994-06-27
    • ABE HIROSUKE
    • ABE HIROSUKE
    • F04C18/30
    • PURPOSE:To provide a displacement compressor having high compression performance and not moving its center of gravity by discharging fluid from each of two pump rooms formed on both upper and lower surfaces of a disc at a specific phase difference and adding it. CONSTITUTION:A disc 2 does not rotate even when a rotation axis 7 is rotated, but the direction of an angle the disc 2 has is rotated in the same direction as the rotation axis 7 by a shaft mechanism 6 having an angle as a cutout of the disc 2 is engaged with a partition of a housing 4. Consequently, the disc 2 moves to oscillate, a part 8 making contact with linearly is made on one side surface of the disc 2 and another part 8 making contact with linearly is made on the opposite surface of the disc 2 on the 180 deg. opposite side, these parts 8 making contact with linearly move to rotate in the same direction as the rotation axis 7 and display a pumping work between the disc 2 and the housing 4. Two pump rooms 5 formed on upper and lower surfaces of the disc 2 are serially connected to each other by a recessed part 16 and a passage 12 provided at a partition part of the housing 4.