PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The influence of coating fabrication processes on the optical efficiency of replicated Moiré diffraction gratings

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
One of the most important parameters in the study of diffraction gratings is their optical efficiency. This paper analyzes the different manufacturing processes to cover gratings of Moiré interferometry and their influence on the quality and absolute efficiency of replicated gratings on the surfaces of specimens. The Moiré interferometry is a field measurement technique that has been used in many different fields such as applied mechanics, microelectronics, biomechanics or micromechanics, hence the importance of this study. The applied reflected coating was done by sputtering and aluminium vaporization processes. In this work different materials and thickness layers were analyzed. The obtained coatings have a high degree of reflectivity on the replicated gratings.
Rocznik
Strony
119--126
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
  • Polytechnic Institute of Bragança, Campus de Sta Apolónia, 5300-253 Bragança Portugal, jribeiro@ipb.pt
Bibliografia
  • [1] Ifju, P.G., Han, B. (2010). Recent Applications of Moiré Interferometry. Experimental Mechanics, 50(8), 1129-1147.
  • [2] Perry, K.E., Labossiere, P.E., Steffler, E. (2007). Measurement of deformation and strain in Nitinol. Experimental Mechanics, 47(3), 373-380.
  • [3] Guo, Z., Xie, H., Liu, B., Dai, F., Chen, P., Zhang, Q., Huang, F. (2006). Study on deformation of polycrystalline aluminium alloy using moiré interferometry. Experimental Mechanics, 46(6), 699-711.
  • [4] Wang, Z., Cardenas-Garcia, J.F., Han, B. (2005). Inverse method to determine elastic constants using a circular disk and moiré interferometry. Experimental Mechanics, 45(1), 27-34.
  • [5] Morita, Y., Arakawa, K., Todo, M. (2007). High-sensitivity measurement of thermal deformation in a stacked multichip package. IEEE Trans. on Components and Packaging Technologies, 30(1), 137-143.
  • [6] Zhang, Y., Liu, J., Larsson, R., Watanabe, I. (2008). Experimental investigation and micropolar modeling of the anisotropic conductive adhesive flip-chip interconnection. Journal of Adhesion Science and Technology, 22, 1717-1731.
  • [7] Han, B. (1992). Higher sensitivity moiré interferometry for micromechanics studies. Optical Engineering, 31(7), 1517-1526.
  • [8] Liou, N.S., Prakash, V. (2000). A moiré microscope for finite deformation micro-mechanical studies. Experimental Mechanics, 40(4), 351-360.
  • [9] Kang, Y.L., Lu, H. (2002). Investigation of near-tip displacement fields of a crack normal to and terminating at a bimaterial interface under mixed-mode loading. Engineering Fracture Mechanics, 69(18), 2199-2208.
  • [10] Savalia, P.C., Tippur, H.V. (2007). A study of crack-inclusion interactions and matrix-inclusion debonding using Moiré interferometry and finite element method. Experimental Mechanics, 47(4), 533-547.
  • [11] Chen, M.C., Ping, X.C., Xie, H.M., Liu, Z.W. (2008). Numerical and experimental analyses of singular electro-elastic fields around a V-shaped notch tip in piezoelectric materials. Engineering Fracture Mechanics, 75(18), 5029-5041.
  • [12] Shankar, K., Xie, H., Wei, R., Asundi, A., Boay, C.G. (2004). A study on residual stress in polymer composites using moiré interferometry. Advanced Composite Materials, 13, 237-253.
  • [13] Min, Y., Hong, M., Xi, Z., Jian L. (2006). Determination of residual stress by use of phase shifting Moiré interferometry and hole-drilling method. Optics and Lasers in Engineering, 44(1), 68-79.
  • [14] Nelson, D.V. (2010). Residual Stress Determination by Hole Drilling Combined with Optical Methods, Experimental Mechanics, 50(2), 145-158.
  • [15] Shrotriya, P., Sottos, N. (2004). Local time-temperature-dependent deformation of a woven composite. Experimental Mechanics, 44(4), 336-353.
  • [16] Mollenhauer, D., Iarve, E.V., Kim, R., Langley, B. (2006). Examination of ply cracking in composite laminates with open holes: a moiré interferometry and numerical study. Applied Science and Manufacturing, 37(2), 282-294.
  • [17] Wood, J.D., Wang, R.Z., Weiner, S., Pashley, D.H. (2003). Mapping of tooth deformation caused by moisture change using moiré interferometry. Dental Materials, 19(3), 159-166
  • [18] Kishena, A., Tan, K., Asundib, A. (2006). Digital moiré interferometric investigations on the deformation gradients of enamel and dentine: An insight into non-carious cervical lesions. Journal of Dentistry, 34(1), 12-18.
  • [19] Niu, X., Ifju, P.G., Bianchi, J.R., Wallace, B. (2000). A Diffraction Grating for Compliant and Porous Materials. Experimental Techniques, 24(1), 27-30.
  • [20] Gerasimov, F., Sergeev, V., Teltevskii, I., Sergev, V., Marichev, B. (1965). The use of Moiré interference fringes to control the ruling of diffraction gratings. Optics and Spectroscopy, 19, 152-163.
  • [21] Ifju, P., Post, D. (1991). Zero Thickness Specimen Gratings for Moiré Interferometry. Experimental Techniques, 15(2), 45-47.
  • [22] Post, D. (1983). Moiré Interferometry at VPI & SU. Experimental Mechanics, 23(2), 203-210.
  • [23] Post, D., Han, B., Ifju, P. (1994). High Sensitivity Moiré - Experimental Analysis for Mechanics and Material. New York, Edited by Springer-Verlag.
  • [24] Palmer, C. (2002). Diffraction Grating Handbook. New York, Erwin Loewen Editor.
  • [25] Loewen, E., Popov, E. (1997). Diffraction Gratings and Applications. New York, Edited by Marcel Dekker Inc.
  • [26] Walker, C.A. (2004). Handbook of Moiré Measurement. Bristol and Philadelphia, Edited by C A Walker, Institute of Physics Publishing.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0113-0011
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.