Godeke A, Abraimov D V, Arroyo E, Barret N, Bird M D, Francis A, Jaroszynski J, Kurteva D V, Markiewicz W D, Marks E L, Marshall W S, McRae D M, Noyes P D, Pereira R C P, Viouchkov Y L, Walsh R P, White J M
National High Magnetic Field Laboratory, 1800 East Paul Dirac Drive, Tallahassee, FL 31310, USA,
Supercond Sci Technol. 2017 Mar;30(3). doi: 10.1088/1361-6668/aa5582. Epub 2017 Jan 30.
We performed a feasibility study on a high-strength Bi Pb SrCaCuO (Bi-2223) tape conductor for high-field solenoid applications. The investigated conductor, DI-BSCCO Type HT-XX, is a pre-production version of Type HT-NX, which has recently become available from Sumitomo Electric Industries (SEI). It is based on their DI-BSCCO Type H tape, but laminated with a high-strength Ni-alloy. We used stress-strain characterizations, single- and double-bend tests, easy- and hard-way bent coil-turns at various radii, straight and helical samples in up to 31.2 T background field, and small 20-turn coils in up to 17 T background field to systematically determine the electro-mechanical limits in magnet-relevant conditions. In longitudinal tensile tests at 77 K, we found critical stress- and strain-levels of 516 MPa and 0.57%, respectively. In three decidedly different experiments we detected an amplification of the allowable strain with a combination of pure bending and Lorentz loading to ≥ 0.92% (calculated elastically at the outer tape edge). This significant strain level, and the fact that it is multi-filamentary conductor and available in the reacted and insulated state, makes DI-BSCCO HT-NX highly suitable for very high-field solenoids, for which high current densities and therefore high loads are required to retain manageable magnet dimensions.
我们对用于高场螺线管应用的高强度铋铅锶钙铜氧化物(Bi-2223)带材导体进行了可行性研究。所研究的导体DI-BSCCO HT-XX型是HT-NX型的预生产版本,最近住友电气工业公司(SEI)已开始提供HT-NX型。它基于该公司的DI-BSCCO H型带材,但与高强度镍合金层压在一起。我们通过应力应变表征、单弯和双弯测试、在不同半径下进行易弯和难弯的线圈匝数测试、在高达31.2 T的背景磁场中的直线和螺旋形样品,以及在高达17 T的背景磁场中的小型20匝线圈,系统地确定了与磁体相关条件下的机电极限。在77 K下的纵向拉伸试验中,我们分别发现临界应力和应变水平为516 MPa和0.57%。在三个截然不同的实验中,我们检测到纯弯曲和洛伦兹载荷相结合时允许应变放大至≥0.92%(在带材外边缘弹性计算)。这一显著的应变水平,以及它是多丝导体且以反应和绝缘状态可用的事实,使得DI-BSCCO HT-NX非常适合用于超高场螺线管,对于这种螺线管,需要高电流密度以及因此高负载来保持磁体尺寸可控。