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    • 2. 发明授权
    • Fitting for elastically-biasing a capillary for a fluid-tight connection to a fluidic conduit
    • 用于弹性偏压用于与流体导管的流体密封连接的毛细管的配件
    • US09482649B2
    • 2016-11-01
    • US14394590
    • 2012-11-15
    • AGILENT TECHNOLOGIES, INC.
    • Claus LuethDarijo Zeko
    • G01N30/60B01D15/22B01D53/04B01D57/02F16L15/08F16L19/02G01N30/02
    • B01D15/22B01D53/0407B01D57/02F16L15/08F16L19/02G01N30/60G01N30/6004G01N30/6026G01N2030/025G01N2030/027Y10T29/49826
    • A fitting (200) for providing a fluid connection between a capillary (202) and a fluidic conduit (204) of a fluidic component (30), the fitting (200) comprising a male piece (240) and a female piece (250) for connection with the male piece (240), wherein the male piece (240) comprises a housing (252) with a capillary reception (212) configured for receiving the capillary (202), wherein a part of the capillary (202) being received in the capillary reception (212) is circumferentially covered by a sleeve (214), an elastic biasing mechanism (206) being arranged at least partially within the housing (252), being configured for biasing the capillary (202) against the female piece (250) and being supported by the sleeve (214), and a locking mechanism (208) being arranged at least partially within the housing (252) and being configured for locking the capillary (202) to the fitting (200).
    • 一种用于在流体组件(30)的毛细管(202)和流体导管(204)之间提供流体连接的配件(200),所述配件(200)包括阳件(240)和阴件(250) 用于与所述阳件(240)连接,其中所述阳件(240)包括具有毛细管接收(212)的外壳(252),所述毛细管接收件构造成用于容纳所述毛细管(202),其中所述毛细管(202)的一部分被接纳 在毛细管接收(212)中由套管214周向地覆盖,弹性偏置机构(206)至少部分地布置在壳体(252)内,构造成用于将毛细管(202)偏压在阴片 并且由所述套筒(214)支撑并且至少部分地布置在所述壳体(252)内并且被配置用于将所述毛细管(202)锁定到所述配件(200)上的锁定机构(208)。
    • 7. 发明授权
    • Pipe expanding apparatus of thin wall stainless steel pipe
    • 薄壁不锈钢管膨胀管
    • US08528377B2
    • 2013-09-10
    • US12956276
    • 2010-11-30
    • Koji OharaHiroshi Ashida
    • Koji OharaHiroshi Ashida
    • B21D39/20
    • B21D39/203B21D41/028F16L19/02
    • The invention provides a pipe expanding apparatus of a thin wall stainless steel pipe in which a strain is not generated in a flange and a yoke, even when a pipe expanding rubber swells. The invention includes a flange which forms one inclined surface of a chevron shaped projection portion by internally fitting a thin wall stainless steel pipe, a yoke which forms the other inclined surface of the chevron shaped projection portion by being coupled at its one end side to the flange, and is coupled to a cylinder at its other end side, a guide rod which is coupled to a piston of the cylinder, and a pipe expanding rubber which is pinched between a step portion of the guide rod and a backup ring and expands the thin wall stainless steel pipe.
    • 本发明提供了一种薄壁不锈钢管的扩管装置,其中即使膨胀橡胶膨胀时,法兰和轭中也不产生应变。 本发明包括通过内部安装薄壁不锈钢管而形成人字形突出部分的一个倾斜表面的凸缘,通过在其一端侧连接形成人字形突起部的另一个倾斜表面的轭, 凸缘,并且在其另一端侧连接到气缸,连接到气缸的活塞的导杆和夹在导杆的台阶部分和支撑环之间的扩管橡胶, 薄壁不锈钢管。
    • 10. 发明申请
    • ULTRA HIGH STRENGTH ALLOY FOR SEVERE OIL AND GAS ENVIRONMENTS AND METHOD OF PREPARATION
    • 超高强度合金用于严重油和气体环境及其制备方法
    • US20110011500A1
    • 2011-01-20
    • US12742445
    • 2008-11-18
    • Sarwan Kumar Mannan
    • Sarwan Kumar Mannan
    • C22F1/10C22C19/05C22C30/02C22F1/16C22C30/00
    • C22F1/10C22C19/055C22C19/056F16L19/02
    • A Ni—Fe—Cr—Mo alloy containing a small amount of Cu and correlated percentages of Nb, Ti and Al to develop a unique microstructure to produce 145 ksi minimum yield strength. The unique microstructure is obtained by special annealing and age hardening conditions, by virtue of which the alloy has an attractive combination of yield strength, impact strength, ductility, corrosion resistance, thermal stability and formability, and is especially suited for corrosive oil well applications that contain gaseous mixtures of carbon dioxide and hydrogen sulfide. The alloy comprises in weight percent the following: 0-15% Fe, 18-24% Cr, 3-9% Mo, 0.05 3.0% Cu, 3.6-6.5% Nb, 0.5-2.2% Ti, 0.05-1.0% Al, 0.005-0.040% C, balance Ni plus incidental impurities and a ratio of Nb/(Al+Ti) in the range of 2.5-7.5. To facilitate formability, the composition range of the alloy is balanced to be Laves phase free. According to the disclosed method of manufacture, the above alloy is provided and hot worked to a desired shape such as a bar or tube for corrosive oil and gas deep wells. The shaped alloy is heat treated by solution annealing, quenching or air cooling, followed by one or two aging steps to precipitate.y′ and y″ phases.
    • 含有少量Cu的Ni-Fe-Cr-Mo合金和Nb,Ti和Al的相关百分比,以形成独特的微结构,以产生145ksi的最小屈服强度。 独特的微观结构是通过特殊的退火和时效硬化条件获得的,由此,合金具有屈服强度,冲击强度,延展性,耐腐蚀性,热稳定性和成形性的有吸引力的组合,并且特别适用于腐蚀性油井应用 含有二氧化碳和硫化氢的气体混合物。 该合金的重量百分比如下:0-15%Fe,18-24%Cr,3-9%Mo,0.05 3.0%Cu,3.6-6.5%Nb,0.5-2.2%Ti,0.05-1.0%Al, 0.005-0.040%C,平衡Ni加杂质,Nb /(Al + Ti)的比例在2.5-7.5的范围内。 为了促进成形性,合金的组成范围平衡为Laves相。 根据所公开的制造方法,提供上述合金并热加工成所需的形状,例如用于腐蚀性油气深井的棒或管。 成形合金通过固溶退火,淬火或空气冷却进行热处理,然后进行一个或两个老化步骤以沉淀“Y”相。