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    • 81. 发明授权
    • Corrosion resistant metal tube and process for making the same
    • 耐腐蚀金属管及其制造方法
    • US06976510B2
    • 2005-12-20
    • US09765782
    • 2001-01-19
    • Guido M. CampagnaJames D. McDsnielTimothy L. Schwiebert
    • Guido M. CampagnaJames D. McDsnielTimothy L. Schwiebert
    • F16L9/147F16L58/08F16L58/10F16L11/00
    • F16L58/08F16L9/147F16L58/109Y10T428/1393
    • A corrosion resistant multi-layer tube comprises a metal tube; a zinc layer bonded to the metal tube outer surface; a surface treatment layer bonded to the zinc layer; a priming layer; a first polymeric layer bonded to the priming layer; a second polymeric layer bonded to the first polymeric layer. A process for manufacturing the tube comprises the step of extruding multiple layers of a melt-processible thermoplastic to a pretreated metal tube having an external surface with at least a zinc based coating, a sealant coating on top of the zinc based coating, and a primer coating on top of the sealant coating. The primer coating is preferably applied by an airless spray system in a closed atmosphere, wherein substantially no volatile organic compounds escape into the atmosphere. The polymeric layer(s) remain adhered to the metal tube, even when exposed for prolonged periods to aggressively corrosive environments.
    • 耐腐蚀多层管包括金属管; 锌层结合到金属管外表面; 与锌层结合的表面处理层; 启动层; 结合到起动层的第一聚合物层; 结合到第一聚合物层的第二聚合物层。 一种制造该管的方法包括以下步骤:将多层可熔融加工的热塑性塑料挤压到具有外表面至少具有锌基涂层的预处理金属管,在锌基涂层的顶部上的密封剂涂层和底漆 涂覆在密封剂涂层的顶部。 底漆涂层优选通过无气喷涂系统在密闭的气氛中进行,其中基本上没有挥发性有机化合物逃逸到大气中。 即使长时间暴露于腐蚀性较强的环境中,聚合物层也保持粘附到金属管上。
    • 82. 发明授权
    • Scraper for inhibiting corrosion in the arch of a pipe carrying a multiphase corrosive liquid
    • 刮板用于抑制管道中承受多相腐蚀性液体的管道的腐蚀
    • US06886206B1
    • 2005-05-03
    • US09959437
    • 2000-03-31
    • Yves Gunaltun
    • Yves Gunaltun
    • F16L58/10B08B9/055
    • F16L58/1027
    • A method for inhibiting corrosion (18) in the arch of a pipe (10) carrying a multiphase corrosive liquid containing a liquid phase (12) which flows off at the lower part of the pipe (10) and a gaseous phase (14) which flows off at the upper part of the pipe. The method includes the following: a scraper (16) is introduced into the pipe, a joint (27) is provided between the scraper (16) and the inner wall of the pipe in such a way that the scraper is moved along the pipe from top to bottom as a result of the effect of the pressure difference between the top and bottom, a liquid that inhibits corrosion is introduced into the scraper or the liquid is injected into the pipe where it is mixed with the liquid phase (12), the scraper is provided with an uptake and projection device (22) that enable the corrosion-inhibiting liquid contained in the scraper or the mixture contained in the pipe to be taken up, whereby the liquid is projected onto the inner wall of the arch of the pipe as the scraper advances in the pipe.
    • 一种用于抑制在管道(10)的拱中的腐蚀(18)的方法,所述管道(10)承载多相腐蚀性液体,所述多相腐蚀性液体包含在所述管道(10)的下部处流动的液相(12)和气相(14),所述液相 在管道的上部流出。 该方法包括以下步骤:将刮刀(16)引入管中,在刮刀(16)和管内壁之间设置有一个接头(27),使得刮刀沿管道移动 由于顶部和底部之间的压力差的影响,将抑制腐蚀的液体引入刮刀中,或者将液体注入与液相(12)混合的管中, 刮刀设置有吸收和投影装置(22),其使包含在刮刀中的腐蚀抑制液体或包含在管道中的混合物被吸收,从而液体被投射到管道的拱形的内壁上 因为刮刀在管道中前进。
    • 83. 发明申请
    • Guiding means for installation of formed-in-situ conduit repairs
    • 导向装置用于安装现场导管修理
    • US20050072482A1
    • 2005-04-07
    • US10499377
    • 2003-06-17
    • David Harrington
    • David Harrington
    • F16L55/16B29C63/36E21D11/38E21D11/40F16L1/00F16L55/162F16L55/165F16L58/10F16L55/18
    • F16L55/1652F16L55/1651
    • A method and apparatus for guiding an everting form employed to carry formed-in-situ repair material into a pipe or conduit comprising passing a guiding means through the interior and along the full length of the everting form in its un-everted state; fixing a first end of the guiding means to a substantially closed end of the everting form; attaching the guiding means in a readily detachable way to the interior surfaces of the everting form and the repair material substantially throughout the length of the everting form; and, during eversion of the everting form, applying tension to the guiding means to assist in guiding the transition of the zone of eversion through directional changes and discontinuities in the pipe or conduit and prevent localised axial differential movement between the everting form and the repair material immediately upstream of the zone of eversion.
    • 用于引导用于将原位修复材料携带到管道或管道中的永久形式的方法和装置,包括使引导装置穿过内部并沿着其未旋转状态的永久形式的全长; 将引导装置的第一端固定到旋转形式的基本上封闭的端部; 将引导装置以易于拆卸的方式附接到旋转形式的内表面和修复材料,基本上贯穿整个长度的复盖形式; 并且在外翻形式的外翻期间,向引导装置施加张力,以帮助引导外翻区域的过渡通过管道或管道中的方向变化和不连续性,并且防止转动形式和修复材料之间的局部轴向差速运动 紧靠外向区域的上游。
    • 88. 发明授权
    • Branch pipe liner bag and pipe lining method
    • 支管衬管和管内衬法
    • US5971031A
    • 1999-10-26
    • US165277
    • 1998-10-02
    • Takao KamiyamaYasuhiro YokoshimaShigeru EndohHiroyuki Aoki
    • Takao KamiyamaYasuhiro YokoshimaShigeru EndohHiroyuki Aoki
    • F16L58/10B29C63/36B29K101/10B29K105/08B29L23/00F16L1/00F16L55/16F16L55/179
    • F16L55/179
    • An economical branch pipe liner bag is provided. The branch pipe liner bag allows for a reduction in manufacturing cost, stabilized quality, and mass-production, and does not have any portion to be wasted when used. One end of a tubular resin absorbent material impregnated with an unhardened hardenable resin is outwardly folded and pressed to form an extension which is sandwiched between separate flange forming members to form a flange at the one end of the tubular resin absorbent material, thus constructing the branch pipe liner bag. Since the branch pipe liner bag has the flange formed at one end by integrally coupling the flange forming members, which are members separate from the tubular resin absorbent material, the flange forming members can be mechanically mass-produced independently of the tubular resin absorbent material, with the result that a manufacturing cost of these flange forming members is reduced, and consequently a manufacturing cost of the branch pipe liner bag is reduced.
    • 提供经济的分支管衬套袋。 分支管内衬袋允许制造成本降低,质量稳定和批量生产,并且在使用时没有任何部分被浪费。 浸渍有未硬化的可硬化树脂的管状树脂吸收材料的一端向外折叠并压制以形成延伸部,该延伸部夹在分离的凸缘形成部件之间,以在管状树脂吸收材料的一端形成凸缘,从而构成分支 管内衬袋。 由于分支管内衬袋具有通过与作为与管状树脂吸收材料分离的部件一体地连接的凸缘形成部件而在一端形成的凸缘,所以可以与管状树脂吸收材料独立地机械地大量生产凸缘形成部件, 结果,这些凸缘成形构件的制造成本降低,因此分支管衬里袋的制造成本降低。