Atomic Simulation of Temperature Effect on the Mechanical Properties of Thin Films

سال انتشار: 1394
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 273

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شناسه ملی سند علمی:

JR_MACS-2-1_003

تاریخ نمایه سازی: 14 تیر 1399

چکیده مقاله:

The molecular dynamic technique was used to simulate the nano-indentation test on the thin films of silver, titanium, aluminum and copper which were coated on the silicone substrate. The mechanical properties of the selected thin films were studied in terms of the temperature. The temperature was changed from 193 K to 793 K with an increment of 100 K. To investigate the effect of temperature on the mechanical properties, two different ways including step by step and continuous ways, were used. The temperature in the indentation region was controlled and the effect of temperature increase due to the friction between the indenter and the film was taken into account. The temperature effects on the material structure, piling-up and sinking-in phenomena were also considered. The results show that the elasticity modulus and hardness of thin films decrease by increasing temperature. These mechanical properties also decreased due to the increase in temperature, in the indentation region, which in turn was due to the interaction between the indenter and the thin film.

نویسندگان

M.R. Ayatollahi

School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran

A.S. Rahimi

School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran

A. Karimzadeh

School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran

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  • Bolshakov A, Pharr GM. Influences of Pileup on the Measurement ...
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  • Lebedev AB, Burenkov YA, Romanov AE, Kopylov VI, Filonenko VP, ...
  • Hung Z, Gu LY, Weertman JR. Temperature Dependence of Hardness ...
  • Ashurst WR, Carraro C, Maboudian R, Frey W. Wafer Level ...
  • Bourhis ELE. Indentation Mechanics and ...
  • its Application to Thin Film Characterization. Vacuum 2011; 82: 1353–1359. ...
  • Radhakrishnan G, Robertson RE, Adams PM, Cole RC. Integrated TiC ...
  • Cao Y, Allameh SM, Nankivil D, Sethiaraj S, Otiti T, ...
  • Hong SH, Kim KS, Kim YM, Hahn JH, Lee CS, ...
  • Sharpe WN, Yuan B, Edwards RL. A New Technique for ...
  • Minfray C, Martin JM, Esnouf C, Mogne T Le, Kersting ...
  • Oliver WC, Pharr GM. An Improved Technique for Determining Hardness ...
  • Burnett PJ, Rickerby DS. The Mechanical Properties of Wear Resistant ...
  • Hay JL, Oliver WC, Bolshakov A, Pharr GM. Using the ...
  • Hay JC, Pharr GM. Critical Issues in Measuring the Mechanical ...
  • Tang KC, Arnell RD. Determination of Coating Mechanical Properties using ...
  • Saha R, Xue ZY, Huang Y, Nix WD. Indentation of ...
  • Saha R, Nix WD. Effects of The Substrate on The ...
  • Seung Min Han , Ranjana Saha, William D. Nix. Determining ...
  • Szlufarska I, Kalia R, Nakano A, Vashishta P. Atomistic Mechanisms ...
  • Chen HP, Kalia RK, Nakano A, Vashishta P, Szlufarska I. ...
  • Zaminpayma E. Computer Simulation on TiO2 Nanostructure Films and Experimental ...
  • Shi YF, Falk ML. Structural Transformation and Localization during Simulated ...
  • Peng P, Liao G, Shi T, Tang Z, Gao Y. ...
  • Hwang SF, Li YH, Hong ZH. Molecular Dynamic Simulation for ...
  • Gerolf Z, Alexander H, Herbert H. Pair vs Many-body Potentials: ...
  • Yan Y, Sun T, Dong S, Liang Y. Study on ...
  • Fang T, Wu J. Molecular Dynamics Simulations on Nano-indentation Mechanisms ...
  • Tersoff J. Modeling Solid-State Chemistry: Interatomic Potentials for Multi-component Systems. ...
  • Ayatollahi MR, Rahimi A,Karimzadeh A. Study on Effect of Thickness ...
  • Dasilva J, Rino P. Atomistic Simulation of The Deformation Mechanism ...
  • Wymyslowski A, Dowhan L. Application of Nano-indentation Technique for Investigation ...
  • Bolshakov A, Pharr GM. Influences of Pileup on the Measurement ...
  • Liang L, Li M, Qin F, Wei Y. Temperature Effect ...
  • Lebedev AB, Burenkov YA, Romanov AE, Kopylov VI, Filonenko VP, ...
  • Hung Z, Gu LY, Weertman JR. Temperature Dependence of Hardness ...
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