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Effect of deviations of composition from the quasi-binary section TiNi-TiCu on structural and phase transformations in rapidly quenched alloys

机译:准二元截面TiNi-TiCu的成分偏差对快速淬火合金中结构和相变的影响

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摘要

Methods of X-ray diffraction, transmission and scanning electron microscopy, and selected-area electron diffraction (SAED) have been used to study the phase and elemental composition and structure of alloys close to the stoichiometric Ti50Ni25Cu25 alloy. Based on the method of rapid quenching of the melt (free-jet melt spinning), alloys of the quasi-binary TiNi-TiCu section have been prepared, which in the initial as-cast state exhibited the thermoelastic martensitic transformations B 2 < B 19 and related shape-memory effects. The chemical composition of the Ti50 + x Ni25Cu25 - x alloys was varied by changing titanium and copper concentrations within x ≤ ±1 at % (from Ti49Ni25Cu26 to Ti51Ni 25Cu24). It has been established that quenching at a cooling rate equal to 106 K/s leads to the amorphization of all the alloys under consideration. Heating to 723 K and higher leads to the devitrification of the alloy with the formation of a nanocrystalline or submicrocrystalline structure of the B2 austenite. The mechanical properties of these alloys have been measured in the initial amorphous state and in the polycrystalline martensitic state. It has been shown that, depending on the extent of the deviations of the alloy composition from the stoichiometry, which cause the decomposition of the alloys in the process of nanocrystallization, regular changes are observed in their mechanical properties and in the shape-memory effects. The kinetics of the processes of the devitrification of the alloys, as well of the forward and reverse martensitic transformations, have been studied, their characteristic temperatures have been determined, and a diagram of the dependence of the characteristic temperatures on the chemical composition of the alloys has been constructed. © 2013 Pleiades Publishing, Ltd.
机译:X射线衍射,透射和扫描电子显微镜以及选择区域电子衍射(SAED)的方法已用于研究接近化学计量的Ti50Ni25Cu25合金的合金的相,元素组成和结构。根据熔体的快速淬火方法(自由射流熔体纺丝),制备了准二元TiNi-TiCu截面的合金,该合金在初始铸态时表现出热弹性马氏体转变B 2

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