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Articles

PECVD process parameter optimization: towards increased hardness of diamond-like carbon thin films

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Pages 1905-1913 | Received 22 Nov 2017, Accepted 16 Jul 2018, Published online: 05 Sep 2018

References

  • Ahmed, M. H.; Byrne, J. A. Effect of surface structure and wettability of DLC and N-DLC thin films on adsorption of glycine. Applied Surface Science 2012, 258(12), 5166–5174.
  • Bharathy, P. V.; Yang, Q.; Kiran, M. S. R. N.; Rha, J.; Nataraj, D.; Mangalaraj, D. Reactive biased target ion beam deposited W–DLC nanocomposite thin films Microstructure and its mechanical properties. Diamond and Related Materials 2012, 23, 34–43.
  • Wang, A.-Y.; Lee, K.-R.; Ahn, J.-P.; Han, J. H. Structure and mechanical properties of W incorporated diamond-like carbon films prepared by a hybrid ion beam deposition technique. Carbon 2006, 44(9), 1826–1832.
  • Zou, Y. S.; Wu, Y. F.; Yang, H.; Cang, K.; Song, G. H.; Li, Z. X.; Zhou, K. The microstructure, mechanical and friction properties of protective diamond like carbon films on magnesium alloy. Applied Surface Science 2011, 258(4), 1624–1629.
  • Ebrahimi, M.; Mahboubi, F.; Naimi-Jamal, M. R. Optimization of pulsed DC PACVD parameters: toward reducing wear rate of the DLC films. Applied Surface Science 2016, 389, 521–531.
  • Ahmad, P.; Khandaker, M. U.; Amin, Y. M. Effective synthesis of vertically aligned boron nitride nanotubes via a simple CCVD. Materials and Manufacturing Processes 2015, 30(6), 706–710.
  • Jones, B. J.; Nelson, N. Sticking non-stick: surface and structure control of diamond-like carbon in plasma enhanced chemical vapour deposition. Journal of Physics: Conference Series, 2016, 768, 012011
  • Niiyama, Y.; Takeno, T.; Kurihara, K.; Adachi, K. Effect of sliding history on super-low friction of diamond-like carbon coating in water lubrication. Tribology Letters 2017, 65(2), 63.
  • Yamada, T.; Iseda, T.; Kadotani, Y.; Izumi, A. Evaluation of friction coefficient and adhesion properties of silicon carbon nitride films prepared by HWCVD. Acta Physica Polonica A 2017, 131(3), 463–466.
  • Dul, K.; Jonas, S.; Handke, B. The nanostructure and microstructure of SiC surface layers deposited by MWCVD and ECRCVD. Applied Surface Science 2017, 425, 965–971.
  • Zhao, Y.; Qin, S.-Q.; Zhang, X.-A.; Chang, S.-L.; Li, -H.-H.; Yuan, J.-R. Enhanced field electron emission from aligned diamond-like carbon nanorod arrays prepared by reactive ion beam etching. Journal of Physics D: Applied Physics 2016, 49(19), 195304.
  • Zhang, J.; Yu, X.; Zhao, X.-A.; Zhang, L. Influences of interfacial carbonization on the structure and mechanical properties of multilayered Cr-containing diamond-like carbon films. The Journal of Physical Chemistry C 2017, 121(12), 6781–6787.
  • Hainsworth, S. V.; Uhure, N. J. Diamond like carbon coatings for tribology: production techniques, characterisation methods and applications. International Materials Reviews 2007, 52(3), 153–174.
  • Smith, S. M.; Voight, S. A.; Tompkins, H.; Hooper, A.; Talin, A. A.; Vella, J. Nitrogen-doped plasma enhanced chemical vapor deposited (PECVD) amorphous carbon: processes and properties. Thin Solid Films 2001, 398, 163–169.
  • Singh, T. P.; Jatti, V. S. Optimization of the deposition parameters of DLC coatings with the IC-PECVD method. Particulate Science and Technology 2015, 33(2), 119–123.
  • Oliver, W. C.; Pharr, G. M. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. Journal of Materials Research 1992, 7(6), 1564–1583.
  • Chatterjee, S.; Sinha, A.; Das, D.; Ghosh, S.; Basumallick, A. Microstructure and mechanical properties of Al/Fe-aluminide in-situ composite prepared by reactive stir casting route. Materials Science and Engineering: A 2013, 578, 6–13.
  • Myers, R. H.; Montgomery, D. C. Response Surface Methodology: Process and Product Optimization Using Designed Experiments, 2nd edition. John Wiley & Sons: NY, USA, 2002.
  • Nagaraju, S.; Vasantharaja, P.; Chandrasekhar, N.; Vasudevan, M.; Jayakumar, T. Optimization of welding process parameters for 9Cr-1Mo steel using RSM and GA. Materials and Manufacturing Processes 2016, 31(3), 319–327.
  • Shivakoti, I.; Pradhan, B. B.; Diyaley, S.; Ghadai, R. K.; Kalita, K. Fuzzy TOPSIS-based selection of laser beam micro-marking process parameters. Arabian Journal for Science and Engineering 2017, 42(11), 4825–4831.
  • Shadish, W. R.; Clark, M. H.; Steiner, P. M. Can nonrandomized experiments yield accurate answers? A randomized experiment comparing random and nonrandom assignments. Journal of the American Statistical Association 2008, 103(484), 1334–1344.
  • Kalita, K.; Shivakoti, I.; Ghadai, R. K. Optimizing process parameters for laser beam micro-marking using a genetic algorithm and particle swarm optimization. Materials and Manufacturing Processes 2017, 32(10), 1101–1108.
  • Kalita, K.; Dey, P.; Haldar, S. Robust genetically optimized skew laminates. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 2018, 0954406218756943, February 14. DOI: 10.1177/0954406218756943.
  • Goldberg, D. E.;, Genetic Algorithms in Search, Optimization and Machine Learning; Addison-Wesley: Reading, MA, 1989.
  • Shah, K.; Kumar, R.; Sahoo, S.; Pais, R. S.; Chakrabarti, D.; Chakraborti, N. Optimization of annealing cycle parameters of dual phase and interstitial free steels by multiobjective genetic algorithms. Materials and Manufacturing Processes 2017, 32(10), 1201–1208.
  • Eberhart, R.; Kennedy, J. A new optimizer using particle swarm theory. In Micro Machine and Human Science, 1995. MHS’95., Proceedings of the Sixth International Symposium on, 1995. Nagoya, Japan. DOI: 10.1109/MHS.1995.494249.
  • Ghadai, R. K.; Das, S.; Kumar, D.; Mondal, S. C.; Swain, B. P. Correlation between structural and mechanical properties of silicon doped DLC thin films. Diamond and Related Materials 2018, 82, 25–32.
  • Garlapati, V. K.; Vundavilli, P. R.; Banerjee, R. Evaluation of lipase production by genetic algorithm and particle swarm optimization and their comparative study. Applied Biochemistry and Biotechnology 2010, 162(5), 1350–1361.

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