Please use this identifier to cite or link to this item: http://earchive.tpu.ru/handle/11683/71107
Title: Effects of Water Cooling on the Microstructure of Electron Beam Additive-Manufactured Ti-6Al-4V
Authors: Panin, Alexey Viktorovich
Martynov, Sergey Aleksandrovich
Kazachenok, Marina Sergeevna
Kazantseva, Lyudmila Mikhaylovna
Bakulin, Aleksandr Viktorovich
Kulkova, Svetlana
Perevalova, Olga Borisovna
Sklyarova, Elena Aleksandrovna
Keywords: аддитивное производство; субстраты; микроструктуры; разложение; мартенсит; водяное охлаждение; wire-fed electron beam additive manufacturing; Ti-6Al-4V; water-cooled substrate; microstructure; martensite decomposition; residual stress; Ti-6Al-4V
Issue Date: 2021
Publisher: MDPI AG
Citation: Effects of Water Cooling on the Microstructure of Electron Beam Additive-Manufactured Ti-6Al-4V / A. V. Panin, S. A. Martynov, M. S. Kazachenok [et al.] // Metals. — 2021. — Vol. 11, iss. 11. — [1742, 15 p.].
Abstract: The inferior mechanical properties of EBAM Ti-6Al-4V samples are due to the coarse columnar grains containing coarse lamellar structures. One can expect that water cooling of the build platform will increase the cooling rate of the molten pool during the build-up process, causing microstructure refinement. In the present work, the substrate cooling effects on the microstructure and phase composition of EBAM Ti-6Al-4V samples are studied using optical, scanning electron, and scanning transmission microscopy, as well as X-ray diffraction analysis. It is shown that the microstructure of the EBAM Ti-6Al-4V samples built on the substrate without water cooling consists predominantly of columnar prior beta grains with lateral sizes ranging up to 2000 [mu]m, while cooling of the build platform causes the appearance of equiaxed prior beta grains measuring 1000 [mu]m. Moreover, the refinement of the martensite structure and the precipitation of alpha′′ martensite platelets within alpha laths occur in the EBAM Ti-6Al-4V samples built on the water-cooled build platform. An explanation of the mechanisms underlying the alpha′→alpha+beta and alpha′→alpha+alpha′′+beta transformations during the building process is provided based upon ab initio calculations. The fragmentation of the α laths under the residual compressive stresses is discussed.
URI: http://earchive.tpu.ru/handle/11683/71107
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