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Can I read Molecular dynamics simulation and experimental verification of the crystallization behavior of a Ti–Zr–Ni alloy prepared by SPS low temperature liquid phase sintering on EtoBox?

Molecular dynamics simulation and experimental verification of the crystallization behavior of a Ti–Zr–Ni alloy prepared by SPS low temperature liquid phase sintering by Shuyi Luo; Junting Luo; Qingxin Kang; Zhenlun Li; Guofeng Wang is a Engineering article available to read on EtoBox.

What is Molecular dynamics simulation and experimental verification of the crystallization behavior of a Ti–Zr–Ni alloy prepared by SPS low temperature liquid phase sintering about?

Titanium-zirconium (Ti–Zr)alloys have attracted more and more research attention due to their excellent mechanical properties and corrosion resistance. Herein, molecular dynamics simulation is used to study the relationship between the solid-liquid phase transition temperature, the content of each phase, and the growth anisotropy of the β phase under various sintering temperatures and cooling rates during the crystallization process of the Ti–Zr–Ni alloy. Using GH4169 alloy powder as an additive, Ti–Zr–Ni alloy samples with fine grains are prepared via spark plasma sintering (SPS) technology, and their crystallization and microstructural evolution are characterized by electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). The results show that: (i) when the cooling rate is greater than the critical cooling rate of the first-order phase transformation, the regular face centered cubic-hexagonal close packed (FCC-HCP) structure is significantly replaced by an increasing content of amorphous structure, and (ii) with the increase in sintering temperature, the critical cooling rate of the completely amorphous state increases gradually, and the growth rates of

Who reads Molecular dynamics simulation and experimental verification of the crystallization behavior of a Ti–Zr–Ni alloy prepared by SPS low temperature liquid phase sintering?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Shuyi Luo; Junting Luo; Qingxin Kang; Zhenlun Li; Guofeng Wang
Publisher
Elsevier BV
Published
2022
Language
EN
Field
Engineering (Physical Sciences)

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