首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Effect of Applied Compressive Stress and Impregnation Material on Internal Strain and Stress State in Nb3Sn Rutherford Cable Stacks
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Effect of Applied Compressive Stress and Impregnation Material on Internal Strain and Stress State in Nb3Sn Rutherford Cable Stacks

机译:施加压应力和浸渍材料对Nb 3 Sn Rutherford电缆叠层内部应变和应力状态的影响

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The Nb3Sn superconductor in accelerator magnets must resist high mechanical stresses. In order to better understand the effect of the coil impregnation system on the stresses exerted on the strain-sensitive Nb3Sn superconductor, we have measured the elastic strain evolution in the conductor constituents under externally applied loads. For this purpose, a dedicated load frame that enables rotation of the sample load axis with respect to the neutron scattering geometry was installed in the Stress-Spec beamline at the neutron source Heinz Maier-Leibnitz FRM II. The Nb3Sn- and Cu-loading strains were measured in situ by neutron diffraction under monotonic and cyclic compressive loading. So-called ten-stack samples composed of Nb3Sn Rutherford type cables with different impregnation and coil blocks extracted from an 11 T dipole short model coil were investigated.
机译:加速器磁体中的Nb3Sn超导体必须抵抗高机械应力。为了更好地了解线圈浸渍系统对施加在应变敏感的Nb3Sn超导体上的应力的影响,我们测量了外部施加载荷下导体成分中的弹性应变演变。为此,在中子源Heinz Maier-Leibnitz FRM II的应力规格束线中安装了一个专用的载荷框架,该载荷框架能够使样品载荷轴相对于中子散射几何形状旋转。在单调和循环压缩载荷下,通过中子衍射原位测量Nb3Sn和Cu载荷。研究了由不同浸渍的Nb3Sn卢瑟福型电缆和从11 T偶极子短模型线圈中提取的线圈组组成的所谓十堆样品。

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