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991.
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993.
Allison SW  Gillies GT 《Applied optics》1994,33(10):1802-1805
Experimental results of self-imaging in optical fibers are reported along with an analytical model that explains the observations. Some implications for sensor design are discussed.  相似文献   
994.
Yu YH  Park JM  Lim TK 《Applied optics》1994,33(11):2128-2133
A ring cavity system consisting of two hybrid Michelson interferometers coupled together with feedback is constructed. This system shows spatial bifurcation and can be utilized as an all-optical flip-flop device. We demonstrate experimentally a flip-flop operation by use of only a positive pulse in this system.  相似文献   
995.
Uang CM  Yin S  Andres P  Reeser W  Yu FT 《Applied optics》1994,33(11):2147-2151
A shift-invariant neural network that uses the translation-invariant property of the modulus Fourier spectra with the heteroassociation interpattern association memory is proposed. A binary encoding of a spectral sampling of the training set is used to preserve the main features. Computer simulations and experimental demonstrations are provided that show the shift-invariant property of the proposed optical neural network.  相似文献   
996.
Chang JT  Su DC  Huang YT 《Applied optics》1994,33(35):8143-8145
Based on the diffractive properties of a transmission-type phase volume hologram, a new type of polarization-division multi/demultiplexer for optical communications is presented.  相似文献   
997.
Ng TW  Chau FS 《Applied optics》1994,33(25):5959-5961
Errors in measurement of the object illumination angle affect fringe interpretation accuracies in speckle interferometry. To measure the object illumination angle we propose a method based on the moiré effect. The technique is easy to implement and was found to yield fast and accurate measurements.  相似文献   
998.
Liu Y  Rahman BM  Grattan KT 《Applied optics》1994,33(24):5611-5616
Birefringence induced by thermal stress in bow-tie optical fibers is studied in detail by the use of the finite-element method. Results of computer modeling show that a higher degree of birefringence can be obtained with the use of a larger cladding and larger stress-applying zones in the fiber.  相似文献   
999.
Ng TW  Chau FS 《Applied optics》1994,33(22):5050-5051
A white-light reconstruction setup for shearograms using optical-fiber waveguides is presented. The setup is compact, is not susceptible to dust and scratches, and enables the two-dimensional fringe pattern on shearograms to be viewed directly under uniform and enhanced illumination with minimal image distortion.  相似文献   
1000.
We have used Raman spectroscopy to measure the axial stress distribution along a fibre during a quasi-static single fibre pull-out test. The stress distribution at the debonding front during the progress of debonding gives the maximum interfacial shear strength s directly. In addition, the stress distribution along the fibre after debonding can be used to evaluate the interfacial normal stress and the frictional coefficient. For the plasma treated high modulus polyethylene (PE) fibres used here, s is found to be 28 MPa by this method, while the apparent mean interfacial shear strength a obtained from the regular single fibre pull-out test varies from 3 to 15 MPa with the fibre embedded length I e. Stress distributions derived from the shear-lag theory fit the experimental data for fully bonded fibres well, giving values for the shear-lag constant K and the stress transfer length 1/ [1]. According to the shear-lag theory, s = l eacoth(l e). If can be found for a given system from Raman spectroscopy, s can be evaluated from the pull-out test using this equation.The regular pull-out tests, corrected for residual stress and interfacial friction, give the same s but not the same or pull-out load as the slower Raman test. The shear-lag constant K can be expressed as a function of the matrix shear modulus and geometric terms. One of these terms is the effective interfacial radius, r e, the radius at which the strain in the matrix equals the average matrix strain. Raman measurements indicate that r e is small, only four times the fibre radius. This result is supported by polarizing optical microscopy. The model of Greszczuk [2], which assumes a uniform shear within an effective interaction thickness b i, gives a similar result. We find that b i = 20 m, about twice the fibre radius. Using the pull-out test data, as for other fibre composites, b i and r e predicted by shear-lag theories do not agree with the results of microscopy to this extent. In these cases s is much larger than the yield strength of the matrix and as neither treatment considers plastic deformation of the matrix agreement should not be expected.  相似文献   
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