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Optical sizing of cement particles

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
We represent the optical correlation technique of cement particle sizing based on the transverse coherency function measurement using a polarization transverse shearing interferometer. It is shown that a set of particles with random shapes and orientations produces a coherence function, which is the same as a function of the set of spherical particles. The proposed technique of experimental data processing decreases the dependence of the result on interferometer noise, emission source intensity fluctuations and differences in the refraction index of isolated cement particles. The described technique allows fast and high reliable determining of the size distribution function parameters for a set of cement particles.
Czasopismo
Rocznik
Strony
511--519
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
  • Yuriy Fedkovych Chernivtsi National University, 2 Kotsjubynskyi St., Chernivtsi, Ukraine
  • Yuriy Fedkovych Chernivtsi National University, 2 Kotsjubynskyi St., Chernivtsi, Ukraine
Bibliografia
  • [1] GORSKIY V.F., Plugging Materials and Solutions. Handbook, Oblpoligrafvydav, Chernivtsi, 2006, (in Ukrainian).
  • [2] LEE F.M., The Chemistry of Cement and Concrete, 3rd Ed., Chemical Publishing Company, 1971.
  • [3] RAMACHANDRAN V.S., BEAUDOIN J.J., Handbook of Analytical Techniques in Concrete Science and Technology: Principles, Techniques and Applications, William Andrew Inc., 2001.
  • [4] BULATOV A.I., DANYUSHEVSKIY V.S., Plugging Materials Reference Manual, Nadra, Moscow, 1987, (in Russian).
  • [5] FERRARIS C., HACKLEY V., AVILÉS A., Measurement of particle size distribution in Portland cement powder: analysis of ASTM round robin studies, Cement, Concrete and Aggregates 26(2), 2004, pp. 1–11.
  • [6] ANGELSKY O.V., MAKSIMYAK P.P., Optical correlation method for studying disperse media, Applied Optics 32(30), 1993, pp. 6137–6141.
  • [7] MAKSIMYAK P.P., ANGELSKY O.V., An optical correlation method for measuring particle size and concentration, Proceedings of IC Mechatronics 2000, Warsaw, Poland, 2000, pp. 466–468.
  • [8] ISHIMARU A., Wave Propagation and Scattering in Random Media. Vols. 1, 2, Academic Press, New York, 1978.
  • [9] ANGEL’SKIĬ O.V., USHENKO A.G., ARKHELYUK A.D., ERMOLENKO S.B., BURKOVETS D.N., USHENKO YU.A., Laser polarimetry of pathological changes in biotissues, Optics and Spectroscopy (Optika i Spektroskopiya) 89(6), 2000, pp. 973–978.
  • [10] ANGELSKY O.V., TOMKA YU.YA., USHENKO A.G., USHENKO YE.G., YERMOLENKO S.B., USHENKO YU.A., 2-D tomography of biotissue images in pre-clinic diagnostics of their pre-cancer states, Proceedings of SPIE 5972, 2005, article ID 59720N.
  • [11] BORN M., WOLF E., Principles of Optics, Cambridge University Press, New York, 1999.
  • [12] GORSKY M.P., MAKSIMYAK P.P., MAKSIMYAK A.P., Studies of light backscattering at concrete during its hydration, Ukrainian Journal of Physical Optics 10(3), 2009, pp. 134–149.
  • [13] GORSKY M.P., MAKSIMYAK P.P., MAKSIMYAK A.P., Optical correlation technique for cement particle size measurements, Optica Applicata 40(2), 2010, pp. 459–469.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f0645f8b-4625-4906-9674-2b9a31ea7e5c
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