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    • 51. 发明专利
    • Welding method for sealing hole
    • 用于密封孔的焊接方法
    • JPS5933071A
    • 1984-02-22
    • JP14322682
    • 1982-08-20
    • Nippon Nuclear Fuel Dev Co Ltd
    • MORIYAMA TAKEHIRO
    • B23K9/013B23K9/00B23K9/02B23K9/025G21C3/06G21C17/06G21C23/00
    • B23K9/0203
    • PURPOSE:To weld surely the hole punched in a coated pipe with an easy operation and to simplify a positioning mechanism, by fitting and detaining a filler wedge having the wall thickness roughly equal to the wall thickness of said pipe and moving circularly an electrode along the edge of the punched hole thereby welding the hole. CONSTITUTION:A gap cup 4 of a rotary type is mounted via a clamp housing 5 in the punched hole 6 part of a coated pipe 1 by a remote operation and an electrode 3 is positioned on the edge of the hole 6. An electrode 3 is moved circumferentially along the contact part between the hole 6 edge of the pipe 1 and a filler wedge 2 and electric current is conducted thereto to weld the hole. The electrode makes one turn around the edge of the hole 6 to weld the hole; thereafter the electrode is further rotated half intermittently to weld the hole. The bending of the pipe is thus prevented without deformation such as ruggedness.
    • 目的:为了确保焊接在涂层管中的孔容易操作,并简化定位机构,通过安装和扣留具有大致等于所述管的壁厚的壁厚度的填料楔,并沿着圆形移动电极 冲孔的边缘由此焊接孔。 构成:旋转式的间隙杯4通过远程操作经由夹具壳体5安装在涂覆管1的冲孔6部分中,并且电极3位于孔6的边缘上。电极3是 沿着管1的孔6边缘与填料楔2之间的接触部分周向移动,并且向其施加电流以焊接孔。 电极围绕孔6的边缘一圈转动以焊接孔; 此后电极进一步间歇地旋转一半以焊接孔。 因此,可以防止管道的弯曲,而不会发生诸如粗糙度的变形。
    • 56. 发明公开
    • Partially consumable spacer chill rings and their use in welding pipe joints
    • Abstandsgussringe und ihre Verwendung bei Schweissrohrverbindungen。
    • EP0153979A1
    • 1985-09-11
    • EP84105795.3
    • 1984-05-21
    • Robvon Backing Ring Company
    • Von Ahrens, Roger
    • F16L13/02F16L13/06B23K31/06
    • F16L13/0227B23K9/0203
    • A partially consumable spacer chill or welding ring (10) Includes a generally cylindrical non-consumable base metal ring (16) having an outside diameter (22) of such a size as to snugly fit the inside diameter (28) of the pipe end (12, 14) to be welded. A circular consumable filler metal spacer ring (18) is medially attached to the outer periphery of the base metal ring (16) and extends peripherally radially outwardly to function as a spacing device between adjacent ends of two lengths of pipe (12, 14) to be joined. The consumable spacer ring (18) may be affixed to the base metal ring (16) in a plurality of circularly offset locations by spot welding or may be press-fitted in an alignment groove in the base ring (16). The consumable spacer ring (18) becomes filler metal during welding.
    • 部分消耗性间隔件冷却或焊接环(10)包括大致圆柱形的非消耗性基础金属环(16),其具有外径(22),其尺寸适于紧密配合管端(28)的内径(28) 12,14)被焊接。 圆形消耗性填充金属间隔环(18)中间地连接到母金属环(16)的外周边,并且周向地径向向外延伸,用作两段管(12,14)相邻端之间的间隔装置, 加入。 消耗性隔离环(18)可以通过点焊在多个圆形偏移位置固定到母金属环(16),或者可以压配合在基环(16)中的对准槽中。 在焊接过程中,消耗性间隔环(18)成为填充金属。
    • 57. 发明公开
    • Cast iron containers
    • Gusseisenbehälter。
    • EP0148776A1
    • 1985-07-17
    • EP85300125.3
    • 1985-01-08
    • WESTINGHOUSE ELECTRIC CORPORATION
    • Filippi, Arthur MarioSprecace, Richard Paul
    • G21F5/00B23K9/02B23K35/00
    • B23K35/004B23K9/0203G21F5/12
    • @ Cast iron nuclear waste containers have nickel-carbon alloy inserts bonded to a mating plug and main body of the container. The inserts can be bonded in place during casting of the container. The containers are hermetically sealed by welding the inserts together when the most severe thermal effects are restricted to the nickel-carbon alloy insert material which is far better able to accommodate them than is cast iron. Use of nickel-carbon alloy inserts should eliminate any need for pre-weld and post-weld heat treatments which are a problem to apply to nuclear waste containers. Despite the dissimilar metal combination, the relative surface area of nickel-to-iron, their electrochemical relationship and the presence of graphite in both materials will act to minimize galvanic corrosion.
    • 铸铁核废料容器具有镍 - 碳合金插件,其结合到容器的配合插头和主体。 插入件可以在容器的铸造过程中粘合就位。 当最严重的热效应限于镍碳合金插入材料时,通过将插入件焊接在一起,容器被气密密封,镍 - 碳合金插入材料比铸铁更能够容纳它们。 镍 - 碳合金插件的使用不需要预先焊接和焊后热处理,这对于核废料容器是一个问题。 尽管不同的金属组合,镍 - 铁的相对表面积,它们的电化学关系和两种材料中石墨的存在将起到最小化电偶腐蚀的作用。