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Crystallization of Fe-Ni Based Amorphous Alloy

机译:Fe-Ni基非晶合金的结晶

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The devitrification of the Fe-Ni-B-Si amorphous ribbon was investigated by the differential scanning calorimetry (DSC) with scanning and isothermal methods. The devitrification of rapidly quenched ribbons is a multilevel process. On the basis of DSC investigations it was determined that crystallization occurs in three processes up to 700°C in the Fe_(40)Ni_(40)B_(16)Si_4 alloy. In the present work the first and second steps have been discussed. The first crystallization step involves the segregation of the Fe-Ni crystalline solid solution from the amorphous matrix. During the second crystallization phase, in addition to austenite, nickel silicide and two types of iron borides crystallize as well. The ribbons were relaxed at 380°C for 2 hours, following the pre-annealing at different temperatures. Pre-annealing was performed in the DSC within the temperature range elapsing from 395°C to 420°C. The pre-annealing at temperatures below the first exothermal DSC peak has an effect on the crystallization processes. After the pre-annealing the samples were investigated by DSC. The DSC peak of the first crystallization step shifts to higher temperatures and decrease its enthalpy. The scanning DSC measurements, applied after the isothermal pre-annealing, were performed in order to determine the fraction of the ribbon transformed in the primary crystallization step. The second DSC peak shifts to lower temperatures with a maximum of 4°C. The X-ray diffraction (XRD) analyses reveal that the lattice constant changes with the pre-annealing temperatures. Such observation was also supported by the circumstance that the composition of the Fe-Ni solid solution undergoes certain modifications.
机译:通过扫描和等温法研究了差示扫描量热法(DSC)研究了Fe-Ni-B-Si非晶带的透透析。快速淬火的带的透过率是多级工艺。在DSC调查的基础上,确定在Fe_(40)Ni_(40)B_(16)Si_4合金中的三个过程中发生三种过程。在本作工作中,已经讨论了第一步和第二步。第一结晶步骤涉及来自非晶基质的Fe-Ni结晶固溶体的偏析。在第二结晶阶段,除了奥氏体,硅化镍和两种类型的铁硼化物也结晶。在不同温度下的预退火后,丝带在380℃下放松2小时。在395℃至420℃的温度范围内在DSC中进行预退火。在低于第一放热DSC峰的温度下的预退火对结晶过程有影响。在预退火后,通过DSC研究样品。第一结晶步骤的DSC峰值变为较高的温度并降低其焓。施加在等温前退火后施加的扫描DSC测量以确定在初级结晶步骤中转化的带状的级分。第二个DSC峰位移到最大4°C的较低温度。 X射线衍射(XRD)分析揭示了晶格恒定随退火的温度变化。还通过Fe-Ni固体溶液的组成经历某些修饰的情况支持这种观察结果。

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