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Uncovering the influence of mechanical properties on wave formation during high-velocity impact welding by numerical simulation

  • I. A. Bataev*
  • , P. A. Riabinkina
  • , K. I. Emurlaev
  • , E. D. Golovin
  • , D. V. Lazurenko
  • , P. Chen
  • , Z. B. Bataeva
  • , T. S. Ogneva
  • , I. E. Nasennik
  • , A. A. Bataev
  • *此作品的通讯作者
  • Novosibirsk State Technical University
  • RAS - Boreskov Institute of Catalysis, Siberian Branch
  • Siberian State University of Water Transport

科研成果: 期刊稿件文章同行评审

摘要

The formation of wavy interface is one of the distinctive features of high-velocity impact welding. It is known that the geometric parameters of waves (amplitude a and length λ) depend not only on the impact conditions, but also on the mechanical properties of the materials being welded. However, until now, the impact of mechanical properties on the formation of waves has only been explored in a limited number of studies. To address this issue, in this paper, we use extensively a numerical simulation. First, we demonstrate that the numerical model, in conjunction with the smooth particle hydrodynamics (SPH) solver, effectively replicates the outcomes of a carefully controlled high-velocity impact welding experiment. Secondly, based on the validated model, we conducted a systematic study of the influence of strength on the wave formation process. Using numerical simulations with Johnson-Cook and ideal elastic-plastic strength models, we show that various characteristics of strength have a profound influence on the wave formation process. Furthermore, it is crucial to consider not only the yield strength of a material, but also factors such as strain and strain-rate hardening, along with thermal softening, to fully understand the wave formation during high-velocity impact welding.

源语言英语
文章编号118532
期刊Journal of Materials Processing Technology
332
DOI
出版状态已出版 - 11月 2024

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