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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Improved Pinning Effects in Ball-Milled Bulks Containing Glycine by Introducing Shedding Impurities From Agate Balls
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Improved Pinning Effects in Ball-Milled Bulks Containing Glycine by Introducing Shedding Impurities From Agate Balls

机译:通过引入玛瑙球中的杂质杂质,改善了球磨的含甘氨酸球的钉扎效果

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MgB2 samples containing 3 wt% glycine were prepared from milled B powders and were sintered at 800°C for 30 min. Ball milling, through the interaction with the SiO2 milling media, led to the formation of Mg2Si pinning centers, which inhibited grain growth and thereby increased the grain boundary area density; MgO, which formed as an impurity both as a result of the glycine addition and the milling media, ripened into large particles, which probably served to decrease the intergranular connectivity in the samples. As a result, the sample using 80-h-milled B powders exhibited the highest irreversible critical field and the highest critical current density at 20 K under the field larger than 4.7 T. On the other hand, ball milling breaks the limited C-substitution level in glycine-doped MgB2 samples, and the favorable properties also benefited from the relatively high C-substitution level, low crystallinity, and small grain size caused by ball milling. The irreversible magnetic field increased up to 5.8 T after ball milling, indicating that the upper critical field at 20 K is increased, which correlates with the decrease in low-field critical current density.
机译:由研磨的B粉制备含有3wt%甘氨酸的MgB 2 样品,并在800℃下烧结30分钟。球磨通过与SiO 2 研磨介质的相互作用,导致形成Mg 2 Si钉扎中心,从而抑制了晶粒长大,从而增加了晶界面积密度; MgO(由于添加甘氨酸和研磨介质而形成为杂质)成熟为大颗粒,这可能会降低样品中的晶间连通性。结果,使用80小时研磨的B粉末的样品在大于4.7 T的电场下在20 K时表现出最高的不可逆临界场和最高临界电流密度。另一方面,球磨破坏了有限的C取代甘氨酸掺杂的MgB 2 样品中的Cb含量较高,并且其良好的性能还得益于球磨导致的相对较高的C取代水平,较低的结晶度和较小的晶粒尺寸。球磨后,不可逆磁场增加到5.8 T,这表明20 K时的上临界场增加,这与低场临界电流密度的降低有关。

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