Zhijie Lin
Hebei University of Technology
8 Papers
4 Citations
Zhijie Lin is an academic researcher from Hebei University of Technology. The author has contributed to research in topics: Dislocation & Deformation mechanism. The author has an hindex of 2, co-authored 3 publications.
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Papers
The effect of loading strain rates on deformation behavior of Cu/Fe composite
TL;DR: In this article, the effect of loading strain rates on deformation behavior of Cu/Fe composite was studied via molecular dynamics, and the long dislocation lines were divided into necklace-like dislocation segments and further harden composite.
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The deformation mechanisms and mechanical properties of Cu/Fe multilayer during compression process
TL;DR: In this article, the deformation mechanisms and mechanical properties of Cu/Fe multilayer during compression process were investigated via atomistic simulations and rationalized analysis, and it was found that yield stress and strain of Kurdjumov-Sachs model are lower than that of Nishiyama-Wassermann model, and lattice dislocation nucleates from periodic arrangement structures on the interface.
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Study on the Properties of Carbon Nanotube (CNTs) Reinforced AlSi10Mg Composites Fabricated by Powder Metallurgy
TL;DR: In this article , the authors investigated the influence of ball-milling time and CNT content on the mechanical and corrosion resistance of the composite and showed that uniform dispersion of CNTs can significantly enhance both the mechanical properties and corrosion resistances of the material.
Observation of low thermal expansion behavior and weak thermal anisotropy in M3A2C phases
Hongxiang Chen,Zhilong Zhang,Jun Deng,Zhijie Lin,Chunfu Hong,Shixuan Du,Pinqiang Dai +6 more
- 01 Mar 2023
TL;DR: In this article , the average linear thermal expansion coefficients (TECs), αL = 5-6 μK-1, are the lowest among the reported values of MAX phases, and the best isotropy performance was found in Nb3P2C (αc/αa = 1.11).
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Effects of crystal orientation and temperature on the deformation mechanism and mechanical property of Cu nanowire
TL;DR: In this article, the effects of crystallographic direction and temperature on the deformation mechanism and properties of Cu nanowire (NW) were studied via systematic simulations and theoretical analysis, and it was found that the elastic module, yield stress and yield strain are quite different for five oriented NWs.
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