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Effect on deformation process of adding a copper core to multifilament MgB2 superconducting wire

机译:添加铜芯对复丝mgB2超导线材变形过程的影响

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摘要

Using the PIT method, multifilament wire with different packing strategies has been manufactured. In all, three types of wire have been investigated, a 19-filament configuration using ex-situ powder in an Fe-matrix and two 8-filament configurations in an Fe-matrix applying a copper core, one using in-situ and another using ex-situ powder. The effect on the annealing requirements during mechanical processing of adding such a copper core has been investigated. The results show that the number of required annealings drops by about a factor of one half with the addition of a copper core. This finding is supported by numerical simulations of the deformation process which indicate that tensile stresses are. concentrated around the middle of the wire during the drawing process. As such, strategic packing of the multifilament configuration can reduce the need for annealing during the mechanical deformation process. It is also found that the multifilament configuration using in-situ powder requires less annealing than the ex-situ counterpart. This is most likely due to the fact that in-situ powder is more readily compacted than ex-situ powder.
机译:使用PIT方法,已经制造出具有不同包装策略的复丝。总共研究了三种类型的导线,一种是在铁基体中使用异位粉末制成的19丝结构,另一种是在铜基体中使用铜芯的铁基中使用了8丝结构。易位粉。已经研究了在机械加工过程中添加这种铜芯对退火要求的影响。结果表明,添加铜芯后,所需的退火次数下降了大约一半。这一发现得到变形过程的数值模拟的支持,该模拟表明张应力是存在的。集中在拉丝过程中的导线中间。这样,多丝构型的策略性填充可以减少机械变形过程中对退火的需要。还发现使用原位粉末的复丝构型比原位粉末所需的退火少。这很可能是由于原位粉末比原位粉末更容易压实的事实。

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