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Phase transformations in the NiS Nickel sulphide: microstructure, mechanisms and modelling through in situ microscopy

机译:NIS硫化镍中的相变:通过原位显微镜的微观结构,机制和建模

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Nickel sulphide (NiS) can form inclusions in tempered glass which lead to fracture due to a phase transformation with a volume change of about 4%. A heat treatment, aiming to provoke this phase transformation, is currently used in industry to reduce this effect. In order to propose more efficient treatments, a complete study going from identification of the transformation mechanisms to the modelling of the transformation was carried out. Depending on stoichiometry and temperature, two mechanisms for the transformation (partitioned or partitionless) have been evidenced by detailed microstructural and calorimetric studies leading to a fruitful parallel with the Fe-C phase transformations which provides the basis for further modelling of the kinetics. An in situ follow up of the transformation by optical microscopy has given information (like nucleation rate and interface migration velocity) necessary to build the kinetic models. This modelling is based on Zener and Zener-Hillert kinetics models for interface velocity and described the transformation under isothermal treatment and anisothermal conditions.
机译:硫化镍(NIS)可以在钢化玻璃中形成夹杂物,这导致由于体积变化为约4%的相变导致裂缝。热处理,旨在引发这种相变,目前用于工业以减少这种效果。为了提出更有效的治疗,进行了从识别转化机制到转化的建模的完整研究。取决于化学计量和温度,通过详细的微观结构和量热研究已经证明了用于转化(分区或独立)的两个机制,导致与FE-C相变富有富有成熟的平行,这为进一步建模的动力学提供了依据。通过光学显微镜的转换的原位跟随改变给出了构建动力学模型所需的信息(如核切割速率和界面迁移速度)。该建模基于齐纳和ZENER-HILLERT动力学模型,用于界面速度,并描述了等温处理和同性炭条件下的转化。

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