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Fabrication of MgB_2 monofilament wire by in-situ using powder-in-tube (PIT) method

机译:使用粉末管(坑)法制备MgB_2单丝线的制造

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In this research we have studied the making of MgB_2 superconducting monofilament wire using powder-in-tube method with variation of Mg composition to B ie 0.90, 1.00 and 1.10, while Boron remains The precursor used is Mg powder (98%) and powder B (95%) Both materials are mixed and then crushed with agate mortar for 30 minutes and then put into stainless steel tube 316. The tube is then subjected to a mechanical treatment of rolling to form its monofilament wire. The wire is then cut and sintered at a temperature of 800°C for 2 hours. After that we measure the critical temperature then characterize the samples by XRD and SEM. From the result of this research it was found that in-situ wire-making by powder-in-tube method can make MgB_2 superconducting monofilament wire with MgB_2 as the dominant phase around 95% and MgO as the impurity phase around 5%. MgO is formed due to the oxidation occurring in the MgB_2 powder inside the wire. The optimal Mg:B composition to make this wire is in the 1:2 composition Because it has a good resistivity curve with a high enough Tc Onset that is 41,67 K and Tc Zero 40,89 K. However, there is a porosity in the wire due to the volume reduction of the Mg + 2B reaction plus the evaporation of Mg.
机译:在本研究中,我们研究了使用粉末制作MgB_2超导单丝线的制造,其使用Mg组合物与B IE 0.90,1.00和1.10的变化,而硼仍然是使用的前体是Mg粉末(98%)和粉末B. (95%)两种材料混合,然后用玛瑙研钵粉30分钟,然后放入不锈钢管316.然后将管进行机械处理轧制以形成其单丝线。然后将线切割并在800℃的温度下烧结2小时。之后,我们测量临界温度,然后通过XRD和SEM表征样品。从该研究的结果,发现通过粉末管方法原位制造可以使MGB_2超导单丝线具有MGB_2,作为大约95%和MgO的主要阶段,杂质相约为5%。 MgO由于在线内的MgB_2粉末中发生氧化而形成。最佳的Mg:B组合物使该线在1:2组合物中,因为它具有良好的电阻率曲线,其具有足够高的TC发作,即41,67 k和Tc零40,89 K.然而,存在孔隙率由于Mg + 2b反应的体积减少加上Mg的蒸发导致的导线。

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