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
    • 153. 发明公开
    • Abrasive waterjet receiver
    • Energievernichtungsbehälterfüreinen Schleifmittel-Flüssigkeitsstrahl。
    • EP0420787A2
    • 1991-04-03
    • EP90630157.7
    • 1990-09-13
    • POSIS CORPORATION
    • Boers, Arie N.Frich, Mark R.
    • B26F3/00B24C1/04B24C3/06B24C9/00
    • B24C1/045B24C9/003B26F3/008Y10T83/0591Y10T83/364
    • An abrasive liquid jet cutting system has a cutting head (14) for directing a jet (17) of ultra high pressure water and grit to a work piece (11). The jet cuts the work piece in a desired pattern to form a product. The liquid from the jet, grit, and particulate materials of the work piece are collected with a receiver (19) located generally below the cutting head (14). Controls (18, 84) for both the cutting head (14) and receiver (19) are coordinated to move the receiver along with the cutting head so that the water and particulate materials are collected by receiver. The receiver (19) has an upright tubular member (37) provided with wear resistant sleeves (49, 53, 57, 58, 59) and an upright central rod (64) to absorb the impact forces of the water and particulate materials that move through the receiver. A drive means (68, 79, 82) connected to the tubular member operates to continuously rotate the tubular member, sleeves and rod to distribute the wear around the sleeves and rod caused by the water, grit and particulate materials that impinge thereon.
    • 研磨液体喷射切割系统具有切割头(14),用于将超高压水和砂粒的射流(17)引导到工件(11)。 喷射器以所需的图案切割工件以形成产品。 来自工件的喷射,砂砾和颗粒材料的液体用大致位于切割头(14)下方的接收器(19)收集。 协调切割头(14)和接收器(19)两者的控制(18,84),以便与接收器一起移动接收器,使得接收器收集水和颗粒物质。 接收器(19)具有设置有耐磨套筒(49,53,57,58,59)的直立管状构件(37)和用于吸收移动的水和颗粒材料的冲击力的直立中心杆(64) 通过接收器。 连接到管状构件的驱动装置(68,79,82)操作以连续地旋转管状构件,套筒和杆,以分散由冲击其上的水,砂砾和颗粒材料引起的套筒和杆周围的磨损。
    • 159. 发明公开
    • Energy dissipating receptacle for a fluid jet cutting system
    • EnergievernichtungsbehälterfüreinFlüssigkeitsstrahl-Schneidsystem。
    • EP0244966A2
    • 1987-11-11
    • EP87303244.5
    • 1987-04-14
    • FLOW SYSTEMS, INC.
    • Marx, Emil A.Amundsen, BruceAnderson, Curtiss L.Wood, Timothy D.Erichsen, Glen A.
    • B26F3/00
    • B26F3/008B24C1/045Y10T83/0591Y10T83/364
    • An energy-dissipating receptacle is disclosed for use with fluid jet cutting systems. The receptacle (10) contains a suspensoid where solid particles circulate within the cavity to at least substantially dissipate the kinetic energy of the fluid jet, together with means (20) for automatically maintaining an effective suspensoid in the cavity as the suspensoid volume is decreased by the wearing action of the fluid jet impingement.
      The effective volume of the suspensoid is preferably maintained by means of a filler tube (20) having a discharge end (20a) positioned within the receptacle.
      By including means for maintaining an effective volume of the suspensoid during the cutting process, the receptacle may be fabricated with compact dimensions for enhanced manoeuverability when coupled to a fluid jet nozzle for coordinated movement therewith.
    • 公开了一种与流体射流切割系统一起使用的耗能容器。 容器(10)包含悬浮物,其中固体颗粒在空腔内循环以至少基本上消散流体射流的动能,以及用于在悬浮物体积被减少的情况下自动保持有效悬浮液在空腔中的装置(20) 流体喷射冲击的磨损作用。 悬浮液的有效体积优选通过具有位于容器内的排出端(20a)的填充管(20)来保持。 通过包括用于在切割过程期间维持悬浮液的有效体积的装置,可以制造具有紧凑尺寸的容器,用于当连接到流体喷嘴以与之协调运动时增强操纵性。