Research Article

TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology

Volume: 4 Number: 2 December 14, 2020
EN

TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology

Abstract

TiB2 (titanium diboride) is a transition metal boride with remarkable properties and, its thin-film coatings can be deposited on various substrates to develop the wear resistance properties of substrates. Radiation interaction properties of TiB2 coated glass and HSS are very significant as well for shielding applications and it has not been investigated so far. In this work, linear attenuation coefficient (µ), half-value layer (HVL), tenth-value layer (TVL) and mean free path (MFP) of TiB2 coated glass and HSS (AISI-M2) were measured using a 133Ba radioactive point source at energies 80.8, 276.4, 302.8, 356 and 383.8 keV. A comparison has been made with some radiation shielding concretes with respect to MFP. Energy absorption and exposure buildup factors (EABF and EBF) of composites were also calculated in the experimental energy region 50 – 500 keV. TiB2 coated glass and HSS were found to be better radiation shielding materials than the standard shielding concretes concluding that they can be further developed for radiation shielding applications.

Keywords

References

  1. [1] Munro, R. G. (2000). Material Properties of Titanium Diboride, J. Res. Natl. Inst. Stand. Technol.105:709-720.
  2. [2] Han, Y., Dai, Y., Shu, D., Wang, J., Sun, B. (2007). Electronic and bonding properties of TiB2. J. Alloys Compd., 438:327-331.
  3. [3] Will, G. (2004). Electron deformation density in titanium diboride chemical bonding in TiB2.J. Solid. State Chem., 177:628-631.
  4. [4] Telle, R., Sigl, L.S., Takagi, K. (2000). Chapter 7 in Handbook of Ceramic Hard Materials edited by R. Riedel, Wiley-VCH. Weinheim, 879.
  5. [5] Pierson, H.O. (1996). Handbook of Refractory Carbides and Nitrides, Noyes Publications. Westwood, New Jersey, 65.
  6. [6] Huang, F., Barnard, J.A., Weaver, M.L. (2001). Ultrathin TiB2 protective films. J. Mater. Res.,16(4):945-954.Z., S. Wu, J. Wang, A. Yu and G. Wei, (2019). Carbon nanofiber-based functional nanomaterials for sensor applications. Nanomaterials, 9(7): 1045.
  7. [7] Mishra, S. K., Rupa, P.K.P., Pathak, L.C. (2007). Surface and nanoindentation studies on nanocrystalline titanium diboride thin film deposited by magnetron sputtering. Thin Solid Films, 515:6884-6889.
  8. [8] Sanchez, C.M.T., Rebollo Plata, B., Maia da Costa, M.E.H., Freire Jr. F.L. (2011). Titanium diboride thin films produced by dc-magnetron sputtering: Structural and mechanical properties.Surface & Coatings Technology, 205:3698-3702.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

December 14, 2020

Submission Date

May 2, 2020

Acceptance Date

July 13, 2020

Published in Issue

Year 2020 Volume: 4 Number: 2

APA
Büyükyıldız, M., Turan, A., Tavşanoğlu, T., Şakar, E., Yücel, O., & Kurudirek, M. (2020). TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology. Journal of Innovative Science and Engineering, 4(2), 84-95. https://doi.org/10.38088/jise.731126
AMA
1.Büyükyıldız M, Turan A, Tavşanoğlu T, Şakar E, Yücel O, Kurudirek M. TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology. JISE. 2020;4(2):84-95. doi:10.38088/jise.731126
Chicago
Büyükyıldız, Mehmet, Ahmet Turan, Tolga Tavşanoğlu, Erdem Şakar, Onuralp Yücel, and Murat Kurudirek. 2020. “TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology”. Journal of Innovative Science and Engineering 4 (2): 84-95. https://doi.org/10.38088/jise.731126.
EndNote
Büyükyıldız M, Turan A, Tavşanoğlu T, Şakar E, Yücel O, Kurudirek M (December 1, 2020) TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology. Journal of Innovative Science and Engineering 4 2 84–95.
IEEE
[1]M. Büyükyıldız, A. Turan, T. Tavşanoğlu, E. Şakar, O. Yücel, and M. Kurudirek, “TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology”, JISE, vol. 4, no. 2, pp. 84–95, Dec. 2020, doi: 10.38088/jise.731126.
ISNAD
Büyükyıldız, Mehmet - Turan, Ahmet - Tavşanoğlu, Tolga - Şakar, Erdem - Yücel, Onuralp - Kurudirek, Murat. “TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology”. Journal of Innovative Science and Engineering 4/2 (December 1, 2020): 84-95. https://doi.org/10.38088/jise.731126.
JAMA
1.Büyükyıldız M, Turan A, Tavşanoğlu T, Şakar E, Yücel O, Kurudirek M. TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology. JISE. 2020;4:84–95.
MLA
Büyükyıldız, Mehmet, et al. “TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology”. Journal of Innovative Science and Engineering, vol. 4, no. 2, Dec. 2020, pp. 84-95, doi:10.38088/jise.731126.
Vancouver
1.Mehmet Büyükyıldız, Ahmet Turan, Tolga Tavşanoğlu, Erdem Şakar, Onuralp Yücel, Murat Kurudirek. TiB2 Thin Film Coated Glass and High Speed Steel (HSS) in Applications of Radiation Shielding Technology. JISE. 2020 Dec. 1;4(2):84-95. doi:10.38088/jise.731126


Creative Commons License

The works published in Journal of Innovative Science and Engineering (JISE) are licensed under a  Creative Commons Attribution-NonCommercial 4.0 International License.