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首页> 外文期刊>Superconductor Science & Technology >Fracture behavior analysis of EuBaCuO superconducting ring bulk reinforced by a stainless steel ring during field-cooled magnetization
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Fracture behavior analysis of EuBaCuO superconducting ring bulk reinforced by a stainless steel ring during field-cooled magnetization

机译:在现场冷却磁化期间不锈钢环加固的Eubacuo超导环块的断裂行为分析

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We have m agnetized the EuBaCuO ring bulk reinforced by a stainless steel ring during field-cooled magnetization (FCM) at 50 K under the magnetic fields from 6.3, 7.3 or 8.3 T, in which the ring bulk was broken at the intermediate step of FCM from 8.3 T. To discuss the fracture behavior of the bulk, we have performed the numerical simulation using a three dimensional finite element method for the bulk with realistic superconducting characteristics, and obtained both the electromagnetic hoop stress, sigma(FCM)(theta), during FCM and thermal hoop stress, sigma(cool)(theta), under cooling from 300 to 50 K. The difference of the thermal contraction coefficient between the bulk and the stainless steel ring caused an inhomogeneous sigma(cool)(theta) profile with a tensile stress at the outermost edge on the bulk surface under cooling process. The maximum of the total hoop stress, sqtotal(=sigma(FCM)(theta) + sigma(cool)(theta)), was estimated to be + 50 MPa and + 59 MPa during FCM from 7.3 T and 8.3 T, respectively. These results suggest that the actual fracture strength of the present ring bulk is between 50 and 59 MPa. The sigma(total)(theta) value should be reduced as low as possible in the whole area of the bulk to avoid the fracture behavior during FCM.
机译:在磁场下的50 k下,在5.3,7.3或8.3 T的磁场下,在50 k下,在50 k下,我们的磁场中的不锈钢环增强了Mubacuo环形散装。从8.3 T.讨论批量的骨折行为,我们使用三维有限元方法进行了数值模拟,该方法具有现实的超导特性,并获得了电磁箍应力,Sigma(FCM)(THETA),在FCM和热环应力下,Sigma(Cool)(Theta)在冷却至500〜50k下。散装和不锈钢环之间的热收缩系数的差异导致不均匀的Sigma(Cool)(Cool)(Theta)轮廓冷却过程下堆积表面上最外边缘处的拉伸应力。总环应力,Sqtotal(= sigma(X型)(FCM)(THETA)+Σ(COOLA))的最大估计在7.3 T和8.3 T的FCM期间估计为+ 50MPa和+ 59MPa。这些结果表明,目前环散装的实际断裂强度在50和59MPa之间。 Sigma(总)(总)(THETA)值应在大部分整个区域中尽可能低,以避免FCM期间的断裂行为。

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