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首页> 外文期刊>Technical physics >Mechanical tests of the conduit tubes of a conductor for the Toroidal winding of the International Thermonuclear Experimental Reactor (ITER)
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Mechanical tests of the conduit tubes of a conductor for the Toroidal winding of the International Thermonuclear Experimental Reactor (ITER)

机译:国际热核实验堆(ITER)的环形绕组导体的导管的机械测试

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Extremely stringent requirements, which include the impact toughness at the liquid-helium temperature, are imposed on the material of the conduit tubes for International Thermonuclear Experimental Reactor (ITER) Toroidal Field (TF) conductors. Modified 316LN-IG stainless steel is recommended as the conduit tube material. Steel 316LN-IG tube samples (both full-size samples and sub-sized samples) are subjected to mechanical tests at various stages of the process of conductor production: in the as-recieved state and after compacting, preliminary elongation by 2.5% at room temperature, and annealing at 650°C for 200 h in a pure helium gas atmosphere. The tests are carried out at room, liquid nitrogen, and liquid helium temperatures and satisfy the standards of the American Society of Mechanical Engineers (ASME and ASTM). The results of sub-size and full-size samples testing show that the last one gives more representative results to qualify the weld joints in liquid nitrogen. When the temperature decreases or the strain increases, the magnetization of the samples increases, especially in the weld area. Strain measurements with an extensometer demonstrate that the intracrystal processes occurring at the liquid-helium temperature can lead to a significant change in the local load, up to complete unloading in a deformation zone. Unusual local serrated deformation is observed with an extensometer installed in the weld area during tests in liquid helium: this deformation is the result of compressive jumps opposite to the loading direction.
机译:对国际热核实验堆(ITER)环形场(TF)导体的导管材料施加了极其严格的要求,包括在液氦温度下的冲击韧性。建议使用改性316LN-IG不锈钢作为导管材料。在导体生产过程的各个阶段,对316LN-IG钢制钢管样品(全尺寸样品和小尺寸样品)进行机械测试:在接收状态下和压实之后,室温下的初始伸长率为2.5%温度,并在纯氦气气氛中于650°C退火200小时。该测试在室温,液氮和液氦温度下进行,并符合美国机械工程师学会(ASME和ASTM)的标准。亚尺寸和全尺寸样品测试的结果表明,最后一个给出了更具代表性的结果,可验证液氮中的焊接接头。当温度降低或应变增加时,样品的磁化强度增加,尤其是在焊接区域。用引伸计进行的应变测量表明,在液氦温度下发生的晶内过程会导致局部载荷发生明显变化,直至在变形区完全卸载为止。在液氦测试期间,在焊接区域中安装的引伸计会观察到异常的局部锯齿形变形:这种变形是与载荷方向相反的压缩跃变的结果。

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