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Tensile properties and fracture reliability of a glass-coated Co-based amorphous microwire

机译:玻璃涂层钴基非晶微丝的拉伸性能和断裂可靠性

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摘要

Co_(68.15)Fe_(4.35)Si_(12.25)B_(15.25) (at%) amorphous microwires with a smooth surface and a circular cross-section were fabricated by the glass-coated melt spinning method. Their mechanical properties were evaluated through tensile tests of the glass-coated amorphous microwires, and their fracture reliability was estimated using two- and three-parameter Weibull analysis. X-ray diffraction and transmission electron microscopy results showed that these glass-coated Co-based microwires were mostly amorphous. The coated Co-based microwires exhibit a tensile strength of 1145 to 2457 MPa, with a mean value of 1727 MPa and a variance of 445 MPa. Weibull statistical analysis showed that the tensile two-parameter Weibull modulus of the amorphous microwires is 4.16 and the three-parameter Weibull modulus is 1.61 with a threshold value as high as 942 MPa. These results indicate that the fabricated microwires exhibit good tensile properties and fracture reliability, and thus appear to be good candidates for electronics reliability engineering applications.
机译:通过玻璃包覆熔融纺丝法制备了具有光滑表面和圆形横截面的Co_(68.15)Fe_(4.35)Si_(12.25)B_(15.25)(原子%)非晶态微丝。通过对玻璃包覆的非晶态微丝进行拉伸测试,评估了它们的机械性能,并使用两参数和三参数Weibull分析评估了其断裂可靠性。 X射线衍射和透射电子显微镜结果表明,这些玻璃涂层的Co基微丝大多是非晶态的。涂覆的Co基微丝表现出1145至2457MPa的抗张强度,平均值为1727MPa,方差为445MPa。威布尔统计分析表明,非晶微丝的拉伸二参数威布尔模量为4.16,三参数威布尔模量为1.61,阈值高达942 MPa。这些结果表明,所制造的微线表现出良好的拉伸性能和断裂可靠性,因此似乎是电子可靠性工程应用的良好候选者。

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