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Structural study of glass coated Cu-based microwires

机译:玻璃涂层铜基微丝的结构研究

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The microstructural characteristics of Cu based glass coated microwires are studied considering the different factors determined by their fabrication (composition and geometry), Two different sets of binary systems (CuxFe100-x and CuxCo100-x) and CU63Fe36P and Cu80Co19Ni samples have been studied. The parameter that describes the geometry is the ratio p between the diameter of the metallic nucleus and the external one corresponding to the layer of the Pyrex glass. It straightforwardly relates to the fabrication process of the samples owing to the strong internal stresses in the samples because of the different thermal expansion coefficients of the glass coating and the metallic nucleus. The structural study, carried out by means of wide angle X-ray scattering (WAXS) and a subsequent identification of the crystalline peaks, reveals that Feet and Co phases coexist with a Cu phase in each system. In the case of the samples containing P or Ni atoms, a third phase, Cu3P or Cu3.8Ni. respectively, appears. An evaluation of the relative content of each phase shows in each system a sort of a master curve with a non-linear p-dependence with a critical maximum at around rho = 0.25 for the Fe alpha and Co phases in the two systems. The calculation of the grain size shows that nanocrystals around 40 nm in size are formed in all the cases by Fe alpha, Co and Cu phases. Magnetic measurements are now in progress in order to complement these structural results. (C) 2001 Elsevier Science B.V. All rights [References: 25]
机译:考虑到铜基玻璃纤维微丝的制造(组成和几何形状)所决定的不同因素,研究了其微观结构特征,研究了两组不同的二元体系(CuxFe100-x和CuxCo100-x)以及CU63Fe36P和Cu80Co19Ni样品。描述几何形状的参数是金属核的直径与对应于派热克斯玻璃层的外部核之间的比率p。由于玻璃涂层和金属核的热膨胀系数不同,由于样品中强烈的内应力,因此直接涉及样品的制造过程。通过广角X射线散射(WAXS)和随后的结晶峰鉴定进行的结构研究表明,在每个系统中,脚相和Co相与Cu相共存。如果样品含有P或Ni原子,则为第三相Cu3P或Cu3.8Ni。分别出现。对每个相的相对含量的评估在每个系统中显示出一种具有非线性p相关性的主曲线,这两个系统中的Feα和Co相的临界最大值在rho = 0.25左右。晶粒度的计算表明,在所有情况下,都通过Feα,Co和Cu相形成了大约40 nm的纳米晶体。为了补充这些结构结果,目前正在进行磁测量。 (C)2001 Elsevier Science B.V.保留所有权利[参考文献:25]

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