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Critical Current Response of BSCCO Tapes in Tension

机译:BSCCO胶带在张紧状态下的临界电流响应

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Uniaxial tension experiments were performed on monofilament Bi_(1.90Pb_(0.4)Sr_2Ca_2Cu_3O_x (BSCCO)-silver and pure silver tapes. Nearly silver-free BSCCO tapes were also tested to study the influence of the silver phase. In situ measurements of the critical current density (J_c) vs applied strain provided evidence for the strength and failure behavior of the superconducting oxide core. Final rolling deformation was used as the primary processing variable. BSCCO-Ag tapes exhibited strain tolerance of up to 0.4% before the superconducting performance began to degrade. The stress-strain response of a near silver-free core was typical of ceramics with brittle failure occurring after an elastic strain of 0.19%. Although not optimized, the yield strength and J_c improved with greater final rolling deformation. Even greater strain tolerance is postulated by improving the structure and integrity of the oxide core and by increasing the residual compressive stress imposed on the core by the thermal expansion mismatch with the silver sheath.
机译:在单丝Bi_(1.90Pb_(0.4)Sr_2Ca_2Cu_3O_x(BSCCO)-银和纯银带上进行了单轴拉伸实验,还测试了几乎无银的BSCCO带,以研究银相的影响。密度(J_c)与施加的应变之间的关系为超导氧化物核的强度和破坏行为提供了证据,最终轧制变形被用作主要加工变量,BSCCO-Ag胶带在超导性能开始之前显示出高达0.4%的应变容限。接近无银芯的应力-应变响应是典型的陶瓷,其弹性应变为0.19%后会发生脆性破坏,尽管没有优化,但屈服强度和J_c随最终轧制变形的增加而提高,甚至更大的应变容限。可以通过改善氧化物核的结构和完整性,以及通过增加氧化铁施加在核上的残余压缩应力来推测rmal膨胀与银鞘不匹配。

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