MODEL OF ANOMALOUS CARBON DIFFUSION DURING SPARK PLASMA SINTERING OF TUNGSTEN CARBIDE

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A model to explain the causes of anomalous carbon diffusion in tungsten carbide during spark plasma sintering (SPS) of α-WC + W2C powders has been proposed. The phenomenon of anomalously deep carbon penetration into tungsten carbide ceramics during SPS of a powder billet in graphite tooling, as discovered in previous studies by the authors, is characterized by the formation of an anomalously deep layer (∼ 50 mm in thickness) of pure tungsten monocarbide (a-WC) on the ceramic surface. The formation of this layer is due to the reduction of tungsten semicarbide (W2C) during its interaction with carbon diffusing from the tooling surface. The thickness of the reduced layer (∼ 50 mm) is several orders of magnitude greater than the values that follow from calculations of the depth of carbon diffusion, based on tabulated values of the activation energy of carbon diffusion in tungsten carbide. The model is based on the assumption that to facilitate the phase transformation of W2C → α-WC, during which, due to the restructuring of the atomic crystal structure, a change in the volume of the unit cell occurs, it is necessary to ensure not only the flow of additional carbon to the surface of the W2C particles, but also the formation of additional volume, the value of which is proportional to the change in density during this phase transformation (∼ 10%). The creation of additional volume is provided by the flow of nonequilibrium vacancies from the sample surface. The concentration of such vacancies is proportional to the value of the change in density during the phase
transformation of W2C→α-WC and the volume fraction of the W2C particles, and in this case exceeds the equilibrium concentration of vacancies in tungsten carbide by several orders of magnitude. The presence of these vacancies facilitates the accelerated diffusion of carbon in tungsten carbide. The model allows for the estimation of changes in the diffusion coefficient and enables the calculation of the depth of carbon penetration into the sintered material.

作者简介

Ksenia Smetanina

Lobachevsky State University of Nizhny Novgorod

编辑信件的主要联系方式.
Email: smetanina@nifti.unn.ru
ORCID iD: 0000-0003-1310-7379
SPIN 代码: 7498-8955
Scopus 作者 ID: 57209878268
Researcher ID: AAE-3059-2022

Laboratory researcher at the Department of Metal Physics at the Research Institute of Physics and Technology

俄罗斯联邦, Nizhny Novgorod, 603022

Vladimir Chuvil’deev

Lobachevsky State University of Nizhny Novgorod,

Email: chuvildeev@nifti.unn.ru
ORCID iD: 0000-0002-5411-6557
SPIN 代码: 7542-6996
Scopus 作者 ID: 57201913687
Researcher ID: A-6710-2014

ProfessorDoctor of Sciences in Physics and Mathematics, Director of the Research Institute of Physics and Technology

俄罗斯联邦, Nizhny Novgorod, 603022

Pavel Andreev

Lobachevsky State University of Nizhny Novgorod

Email: andreev@phys.unn.ru
ORCID iD: 0000-0003-0105-5655
SPIN 代码: 9343-9070
Scopus 作者 ID: 55619473700
Researcher ID: M-8092-2015

Candidate of Sciences in Physics and Mathematics, Junior Researcher at the Research Institute of Physics and Technology

俄罗斯联邦, Nizhny Novgorod, 603022

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