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A method to quantify crystallinity in amorphous metal alloys: A differential scanning calorimetry study

机译:量化无定形金属合金结晶度的方法:差示扫描量热法研究

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We developed and describe a differential scanning calorimetry method for calculating the initial crystallinity, change of crystallinity and crystallinity percentage of amorphous metal alloys as a function of temperature. Using thermodynamic enthalpies of amorphous, crystalline and partially devitrified specimens, our methodology is capable of determining crystallinity percentages as low as a few percent. Moreover, the linear relationship between the set (pre-determined) and calculated crystallinities of experimental samples indicates that there is no need to prepare calibration samples before measuring the crystallinity percentage of target samples. This technique also eliminates the need for expensive in situ accessories, such as those required in electron microscopy. Thus, the technique is highly relevant as a primary technique for characterization of devitrification behavior in amorphous materials.
机译:我们开发并描述了一种用于计算初始结晶度,结晶度和结晶度和结晶度百分比的差分扫描量热法作为温度的函数。 采用无定形,结晶和部分透过的标本的热力学焓,我们的方法能够将结晶度百分比确定为低至少量。 此外,实验样品的设定(预定)和计算的晶体之间的线性关系表明,在测量靶样品的结晶度百分比之前,不需要准备校准样品。 该技术还消除了对原位附件的昂贵的需求,例如电子显微镜所需的。 因此,该技术与用于在非晶材料中表征透透行为的主要技术高度相关。

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