首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Specific Heat, A Method to Determine the $T_{c}$ Distribution in Industrial ${rm Nb}_{3}{rm Sn}$ Wires Prepared by Various Techniques
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Specific Heat, A Method to Determine the $T_{c}$ Distribution in Industrial ${rm Nb}_{3}{rm Sn}$ Wires Prepared by Various Techniques

机译:比热,一种确定工业$ {rm Nb} _ {3} {rm Sn} $焊丝中$ T_ {c} $分布的方法,采用各种技术制备

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摘要

A new calorimeter has been built with the special purpose to determine the distribution of $T_{c}$ in industrial superconducting wires. Specific heat measurements have been carried out on a series of multifilamentary ${rm Nb}_{3}{rm Sn}$ wires, using a long relaxation technique. The advantage of this technique consists in the fact that the measurement is performed in presence of the Cu-Sn matrix, i.e. the filaments are measured under the same stress conditions as under operation, i.e. under the same state of mechanical precompression. In addition, the $T_{c}$ distribution is obtained for the whole sample volume, ruling out shielding effects. The deconvolution of the data in the region of the superconducting transition was used for getting the precise distribution of $T_{c}$, which in turn allows a determination of the Sn distribution across the filaments. These data confirm previous TEM measurements showing a Sn gradient inside of the filaments of bronze route processed ${rm Nb}_{3}{rm Sn}$ wires. The $T_{c}$ distribution has been determined in ${rm Nb}_{3}{rm Sn}$ wires processed by Bronze Route, Internal Sn and Powder-In-Tube technique. Based on this information, the various processing parameters can be varied to get narrower $T_{c}$ distributions at transition temperatures closer to 18 K.
机译:为了确定工业超导线中T_ {c} $的分布,已专门制造了一种新的量热仪。使用长弛豫技术对一系列复丝$ {rm Nb} _ {3} {rm Sn} $焊丝进行了比热测量。该技术的优点在于以下事实:在Cu-Sn基质的存在下进行测量,即,在与操作相同的应力条件下,即在相同的机械预压缩状态下,对丝进行测量。另外,获得了整个样品体积的$ T_ {c} $分布,排除了屏蔽效应。将数据在超导过渡区域中的反卷积用于获得$ T_ {c} $的精确分布,从而可以确定跨细丝的Sn分布。这些数据证实了先前的TEM测量结果,该结果显示了青铜路线加工的{{rm Nb} _ {3} {rm Sn} $线材的细丝内部的Sn梯度。 $ T_ {c} $的分布是通过青铜线,内部锡和粉末在管技术处理的$ {rm Nb} _ {3} {rm Sn} $线确定的。基于此信息,可以更改各种处理参数,以在接近18 K的转变温度下获得更窄的$ T_ {c} $分布。

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