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    • 1. 发明申请
    • CORRUGATION STRUCTURE FOR PIPE
    • 管道修正结构
    • WO2002081957A1
    • 2002-10-17
    • PCT/US2002/010619
    • 2002-04-04
    • HANCOR, INC.TOLIVER, Timothy, R.VANHOOSE, Bill
    • TOLIVER, Timothy, R.VANHOOSE, Bill
    • F16L11/00
    • F16L11/15
    • A corrugated pipe (2) has a plurality of corrugation structures (10, 12) positioned adjacent one another. The corrugation structures (10, 12) comprise an inner cylindrical wall (22), two annular wall portions (28, 32) that extend outwardly from the inner cylindrical wall (22), and a bowed annular wall portion (40) that is connected to the outer ends (36, 38) of the two annular wall portions (28, 32). The corrugation structure (10, 12) includes a centroid (48, 49) and at least a portion of the inner surface (50) of the bowed wall portion (40) has a radius R 1 centered on the centroid (48, 49) and at least a portion of the outer surface (52) of the bowed wall portion (40) has a radius and at least R 2 centered on the centroid (48, 49). The cavity (56) defined by the corrugation structure (10, 12) has an inner surface with an inner radius R 2 centered on the centroid (48, 49). The cavity (56) defined by the corrugation structure (10, 12) has a inner surface with an inner radius R 1 , R 3 that is equal to or greater than one half the thickness T 1 of the inner cylindrical wall (22). The profile of the corrugation structure (10, 12) is configured to optimally accept forces caused by backfill soil positioned over the pipe (2). A method of manufacturing a corrugated pipe (2) includes manufacturing a first, a second, and a third corrugated pipe (80, 90, 100) with each pipe having an inner diameter ID and an outer diameter OD. The inner diameter ID is chosen such taht the first pipe (80) can be telescopically inserted into the second pipe (90) and the second pipe (90) can be telescopically inserted into the third pipe (100). A method of shipping a plurality of different diameter pipes is also provided.
    • 波纹管(2)具有彼此相邻定位的多个波纹结构(10,12)。 波纹结构(10,12)包括内圆柱形壁(22),从内圆柱形壁(22)向外延伸的两个环形壁部分(28,32)和连接的弯曲的环形壁部分(40) 到两个环形壁部分(28,32)的外端(36,38)。 波纹结构(10,12)包括质心(48,49),并且弓形壁部分(40)的内表面(50)的至少一部分具有以质心(48,49)为中心的半径R1,以及 弓形壁部分(40)的外表面(52)的至少一部分具有半径,并且至少R2以重心(48,49)为中心。 由波纹结构(10,12)限定的空腔(56)具有以中心于重心(48,49)的内半径R2的内表面。 由波纹结构(10,12)限定的空腔(56)具有内表面,其内半径R1,R3等于或大于内圆柱形壁(22)的厚度T1的一半。 波纹结构(10,12)的轮廓被配置为最佳地接受由位于管道(2)上方的回填土所引起的力。 波纹管(2)的制造方法包括制造具有内径ID和外径OD的每个管的第一,第二和第三波纹管(80,90,100)。 内径ID选择为第一管(80)能够可伸缩地插入到第二管(90)中,并且第二管(90)可以可伸缩地插入第三管(100)中。 还提供了一种运送多个不同直径的管道的方法。
    • 9. 发明公开
    • Corrugated pipe
    • 波纹管
    • EP1384930A3
    • 2004-10-13
    • EP03016901.5
    • 2003-07-24
    • Hancor, Inc.
    • Toliver, Timothy R.Vanhoose, Bill R.
    • F16L11/15F16L11/20F16L25/00F16L55/04
    • F16L25/0063F16L11/15F16L25/0045F16L25/0054
    • A corrugation (130) has a radially inner wall (146) circumferentially surrounding an axis (113). The inner wall (146) defines an inner cavity (150) configured to conduct a liquid axially through the inner cavity (150). A radially outer wall (156) of the corrugation (130) overlies the inner wall (146). The outer wall (156) adjoins the inner wall (146) so as to form a closed outer cavity (160) bounded by the inner and outer walls (146,156) and separated from the inner cavity (150) by the inner wall (146). The inner wall (146) has at least one opening (162) providing fluid communication between the inner and outer cavities (150,160) for the corrugation (180) to serve as a reservoir for the liquid.
    • 波纹(130)具有沿周向围绕轴线(113)的径向内壁(146)。 内壁(146)限定内腔(150),该内腔构造成轴向地引导液体通过内腔(150)。 波纹(130)的径向外壁(156)覆盖内壁(146)。 外壁(156)邻接内壁(146)以形成由内壁(146,156)和由内壁(146)与内腔(150)隔开的封闭外腔(160) 。 内壁(146)具有至少一个开口(162),该开口提供用于波纹(180)的内腔和外腔(150,160)之间的流体连通以用作液体的储存器。
    • 10. 发明公开
    • CORRUGATION STRUCTURE FOR PIPE
    • 井管道建设
    • EP1384023A4
    • 2008-10-29
    • EP02723767
    • 2002-04-04
    • HANCOR INC
    • TOLIVER TIMOTHY RVANHOOSE BILL
    • F16L11/15
    • F16L11/15
    • A corrugated pipe (2) has a plurality of corrugation structures (10, 12) positioned adjacent one another. The corrugation structures (10, 12) comprise an inner cylindrical wall (22), two annular wall portions (28, 32) that extend outwardly from the inner cylindrical wall (22), and a bowed annular wall portion (40) that is connected to the outer ends (36, 38) of the two annular wall portions (28, 32). The corrugation structure (10, 12) includes a centroid (48, 49) and at least a portion of the inner surface (50) of the bowed wall portion (40) has a radius R1 centered on the centroid (48, 49) and at least a portion of the outer surface (52) of the bowed wall portion (40) has a radius and at least R2 centered on the centroid (48, 49). The cavity (56) defined by the corrugation structure (10, 12) has an inner surface with an inner radius R2 centered on the centroid (48, 49). The cavity (56) defined by the corrugation structure (10, 12) has a inner surface with an inner radius R1, R3 that is equal to or greater than one half the thickness T1 of the inner cylindrical wall (22). The profile of the corrugation structure (10, 12) is configured to optimally accept forces caused by backfill soil positioned over the pipe (2). A method of manufacturing a corrugated pipe (2) includes manufacturing a first, a second, and a third corrugated pipe (80, 90, 100) with each pipe having an inner diameter ID and an outer diameter OD. The inner diameter ID is chosen such taht the first pipe (80) can be telescopically inserted into the second pipe (90) and the second pipe (90) can be telescopically inserted into the third pipe (100). A method of shipping a plurality of different diameter pipes is also provided.