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同步加速器原位研究机械活化处理和γ辐射对γ-(TiAl)化合物形成过程中结构相变及高温合成参数的影响。

Synchrotron in situ studies of mechanical activation treatment and γ-radiation impact on structural-phase transitions and high-temperature synthesis parameters during the formation of γ-(TiAl) compound.

作者信息

Loginova Marina, Sobachkin Alexey, Sitnikov Alexander, Yakovlev Vladimir, Filimonov Valeriy, Myasnikov Andrey, Sharafutdinov Marat, Tolochko Boris, Gradoboev Alexander

机构信息

Polzunov Altai State Technical University, Lenina Avenue, Barnaul 656038, Altai Region, Russian Federation.

Institute of Solid State Chemistry and Mechanochemistry of Siberian Branch Russian Academy of Sciences, Kutateladze, Novosibirsk 630128, Russian Federation.

出版信息

J Synchrotron Radiat. 2019 Sep 1;26(Pt 5):1671-1678. doi: 10.1107/S1600577519010014. Epub 2019 Aug 19.

Abstract

In situ synchrotron studies of structure and phase formation dynamics in mechanically activated (t = 7 min, power density 40 g) and mechanically activated with subsequent irradiation by γ-quanta Co powder mixture (Ti 64 wt% + Al) during high-temperature synthesis by the method of thermal explosion using induction heating are described. In situ high-temperature synthesis was carried out on the created experimental complex adapted for synchrotron X-ray diffraction methods. The sequence of formation and time-temperature interval of the metastable and main phases were determined. The impact of preliminary mechanical activation and of γ-irradiation on the macrokinetic parameters of the synthesis were studied experimentally in situ. It has been established that the impact of γ-irradiation on the mechanically activated powder mixture of the composition Ti 64 wt% + Al leads to a change in the thermal parameters of combustion: the maximum synthesis temperature and the burning rate decrease. The heating rate for the non-irradiated mixture is 204.8 K s and that for the irradiated mixture is 81.6 K s. The dependences of mass fractions of the synthesized compounds on time and temperature were calculated from the stage of preheating until completion of the thermal explosion. A single-phase equilibrium product of the composition γ-(TiAl) is formed in γ-irradiated mechanically activated mixture when the system reaches maximum temperature. The synthesized product of the mechanically activated mixture without γ-irradiation contains 72% γ-(TiAl); TiAl (26%) and residual Ti (2%) are also observed.

摘要

描述了在通过感应加热的热爆炸法进行高温合成过程中,对机械活化(t = 7分钟,功率密度40克)以及机械活化后用γ量子辐照的Co粉末混合物(Ti 64 wt% + Al)的结构和相形成动力学进行的原位同步加速器研究。原位高温合成是在适用于同步加速器X射线衍射方法的特制实验装置上进行的。确定了亚稳相和主相的形成顺序以及时间 - 温度区间。通过原位实验研究了初步机械活化和γ辐照对合成宏观动力学参数的影响。已经确定,γ辐照对组成Ti 64 wt% + Al的机械活化粉末混合物的影响导致燃烧热参数发生变化:最大合成温度和燃烧速率降低。未辐照混合物的加热速率为204.8 K s,辐照混合物的加热速率为81.6 K s。从预热阶段到热爆炸完成,计算了合成化合物的质量分数随时间和温度的变化关系。当系统达到最高温度时,在γ辐照的机械活化混合物中形成了组成γ-(TiAl)的单相平衡产物。未进行γ辐照的机械活化混合物的合成产物含有72%的γ-(TiAl);还观察到TiAl(26%)和残余Ti(2%)。

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