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Preparation of gradated nano-transient layer at interface between deposited film and substrate by high-intensity pulsed ion beam irradiation

  • Jiachang Liang*
  • , Liping Zhang
  • , Zhiping Wang
  • , Yifei Chen
  • , Chaohui Ji
  • , Yanyan Zhang
  • , Peng Zhang
  • , Xueyang Zhang
  • , Jianxing Xu
  • , Yue Chen
  • , Xuelan Hu
  • , Lihui Jiang
  • , Xiaoyun Le
  • , Cuihua Rong
  • , Mingkai Lei
  • , Jingping Xin
  • *Corresponding author for this work
  • Civil Aviation University of China
  • Beihang University
  • Dalian University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

We prepared gradated nano-transient layers at different interfaces between deposited film and substrates by high-intensity pulsed ion beam (HIPIB) irradiation. The deposited film was (AlSi) alloy and substrates were Ni and Ti, respectively. The gradated nano-transient layers at different interfaces were measured by Rutherford backscattering, its spectra were solved by SIMNRA code and then the microstructures of the gradated nano-transient layers at the interfaces of these two irradiated samples were obtained. The experimental results were analyzed by STEIPIB code. The formation of the gradated distribution of element contents in nano-transient layer at the interface can eliminate the abrupt changes of thermal and elastic characteristics at the interface. And, it can greatly reduce the mismatch of thermal expansion coefficients and Young's modulus at the interface between deposited film and substrate. Thus, after the formation of the gradated nano-transient layer, the adhesion at the interface between different materials can be enhanced and the level of thermal stresses can also be reduced in the case of thermal loading.

Original languageEnglish
Pages (from-to)463-468
Number of pages6
JournalSurface Review and Letters
Volume17
Issue number5-6
DOIs
StatePublished - Oct 2010

Keywords

  • HIPIB
  • Interface
  • gradated nano-transient layer
  • microstructure

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