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A study on low magnetic permeability gas tungsten arc weldment of AISI 316LN stainless steel for application in electron accelerator

机译:用于电子加速器的AISI 316LN不锈钢低磁导率钨极电弧焊的研究

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Low magnetic permeability is an important criterion in selection of the material of construction of beam pipes and vacuum chambers of electron accelerators for safeguarding against distortion of the magnetic field. In the modified design of new 20 MeV/30 mA Injector Microtron for the existing synchrotron radiation sources Indus-1 and Indus-2, AISI 316 LN stainless steel has been identified as the material of construction of its vacuum chamber. Welding of AISI 316LN stainless steel with conventional filler alloys like ER316L and ER317L of AWS A5.9 produces duplex weld metal with 3-8% ferro-magnetic delta ferrite to avoid solidification cracking. The results of the study has demonstrated that GTAW of AISI 316LN SS with high Mn adaptation of W 18165NL filler produced a crack free non-magnetic weld with acceptable mechanical properties. Moreover, AISI 316LN stainless steel is not required to be solution annealed after the final forming operation for obtaining a low magnetic permeability, thereby avoiding solution annealing of large vacuum chamber in vacuum/controlled atmosphere furnace and associated problems of distortion. Besides Injector Microtron, the study also provides useful input for design of future indigenous accelerators with vacuum chambers of austenitic stainless steel.
机译:低磁导率是选择电子加速器的束管和真空室的构造材料以防止磁场变形的重要标准。在针对现有同步加速器辐射源Indus-1和Indus-2的新型20 MeV / 30 mA注入器Microtron的改进设计中,AISI 316 LN不锈钢已被确定为其真空室的构造材料。将AISI 316LN不锈钢与AWS A5.9的ER316L和ER317L之类的常规填充合金焊接可产生具有3-8%铁磁性δ铁素体的双相焊接金属,以避免凝固裂纹。研究结果表明,AISI 316LN SS的GTAW与W 18165NL填料的高Mn适应性产生了具有可接受机械性能的无裂纹非磁性焊缝。此外,不需要在最终成形操作之后对AISI 316LN不锈钢进行固溶退火,以获得低磁导率,从而避免了真空/可控气氛炉中的大型真空室的固溶退火和相关的变形问题。除了喷射器Microtron,该研究还为设计未来的带有奥氏体不锈钢真空室的本地加速器提供了有用的信息。

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