首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Structural Component Development of Three-Layer Cylinders for Superconducting Generators, Part 2: Development of Three-Layer Welding Techniques to Extend Axial Length and Evaluation of the Welds
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Structural Component Development of Three-Layer Cylinders for Superconducting Generators, Part 2: Development of Three-Layer Welding Techniques to Extend Axial Length and Evaluation of the Welds

机译:超导发电机三层气缸的结构部件开发,第2部分:扩展轴向长度的三层焊接技术的开发和焊缝的评估

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The warm damper is one of the multi-cylindrical rotor components, which is located at the outermost position in a rotor of the superconducting generator. The main function of the warm damper, in addition to bear rotor torque, is to shut off the magnetic fields of the armature. While maximum stresses in the warm damper are caused by electromagnetic forces in the event of a short-circuit fault, which cause large bending stresses, so it is required to have high conductivity and sufficient strength against bending stresses. A promising design for it is a three-layer cylindrical structure composed of a highly conductive Cu-Cr cylinder sandwiched between inner and outer stiffeners made of a high-strength nonmagnetic material (A286). To realize this structure, it is necessary first to select a suitable layer bonding method and then to research and develop the procedures to construct this large structure. The previous paper described selection of diffusion bonding as the suitable layer bonding method. The first step to fabricate this large structure was to prove the structural integrity of a diffusion-bonded mock-up model, which was 885 mm in diameter and 2800 mm in axial length [1], This paper is a study on circumferential three-layer welding to extend the axial length allowing for the fabrication of a ever larger structure. Two A286/Cu-Cr/A286 three-layer rings, 625.5 mm in O.D. and 300 mm in axial length, were prepared by diffusion bonding the layers of each rings simultaneously by HIP. Then, the axial ends of their three-layers were butt welded with the filler wires, which were selected for each layers in advance. Subsequently, in accordance with the results of a study on the condition for aging treatment following diffusion bonding (800°C X 4 h) to obtain the proper mechanical properties of the alloy A286, which is a material for the major load bearing component, the rings were age-treated at 70(fC for 10 h. The tensile test results of the welded joint and weld metal specimens cut out from the welded rings proved that both alloys A286 and Cu-Cr welded components had adequate mechanical properties. That is these properties were equivalent to those of the base metals, with no reductions of layer bonding strength due to weld heat input.
机译:暖风阻尼器是多圆柱转子组件之一,其位于超导发电机转子的最外部。除承受转子转矩外,暖风阻尼器的主要功能是切断电枢的磁场。发生短路故障时,电磁阻尼器会在暖风阻尼器中产生最大应力,这会导致较大的弯曲应力,因此要求具有高导电性和足够的强度来抵抗弯曲应力。一种有希望的设计是一种三层圆柱结构,该结构由高导电性的Cu-Cr圆柱体组成,夹在由高强度非磁性材料(A286)制成的内部和外部加强筋之间。为了实现这种结构,首先必须选择一种合适的层粘结方法,然后研究和开发构造这种大结构的程序。先前的论文描述了选择扩散键合作为合适的层键合方法。制造这种大结构的第一步是证明直径为885 mm,轴向长度为2800 mm的扩散粘结模型的结构完整性[1],本文是对圆周三层结构的研究焊接以延长轴向长度,从而允许制造更大的结构。两个外径为625.5毫米的A286 / Cu-Cr / A286三层环。通过HIP同时扩散键合每个环的层来制备轴向长度为300mm和轴向长度为300mm的材料。然后,将其三层的轴向末端与填充焊丝对接,这些填充焊丝是预先为每一层选择的。随后,根据对扩散结合(800°CX 4 h)后进行时效处理的条件进行研究的结果,以获得适当的机械性能的合金A286(作为主要承压组件的材料),环在70(fC)下进行了10 h时效处理。从焊接环上切下的焊接接头和焊接金属试样的拉伸试验结果证明,合金A286和Cu-Cr焊接部件均具有足够的机械性能。与贱金属等价,且不会因焊接热输入而降低层结合强度。

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