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245 1 0 _aThe efects of glass-Rber sizings on the strength and energy absorption of the Rber/matrix interphase under high loading rates
490 0 _vComposites Science and Technology, 61(2), p.205-220, 2001
520 3 _aThe interphases of various sized E-glass-®ber/epoxy-amine systems were tested at displacement rates in the range 230±2450 mm/s by a new experimental technique (dynamic micro-debonding technique). By this method, the rate-dependent interphase properties, apparent shear strength and absorbed energies due to debonding and frictional sliding, were quanti®ed. The systems include unsized, epoxy-amine compatible, and epoxy-amine incompatible glass ®bers. The high displacement rates that induce high-strain-rate interphase loading were obtained by using the rapid expansion capability of piezoelectric actuators (PZT). The results of dynamic micro-debonding experiments showed that the values of interphase strength and speci®c absorbed energies varied in a manner that is dependent on the sizing and exhibited signi®cant sensitivity to loading rates. The unsized ®bers exhibit greater frictional sliding energies that could provide better ballistic resistance, while the compatible sized ®bers show higher strength values that improve the structural integrity of the polymeric composites. In addition, signi®cantly higher amounts of energy are absorbed within the frictional sliding regime compared to debonding. By using the experimental data obtained, a case study was performed to reveal the importance of the interphase related micro damage modes on energy absorption (and therefore ballistic performance)of glass/epoxy composite armor
650 1 4 _aCOUPLING AGENTS
650 1 4 _aPOLYMER-MATRIX COMPOSITES (PMCS)
650 1 4 _aINTERPHASE: B. FIBER/MATRIX BOND
650 1 4 _aB. IMPACT BEHAVIOR
700 1 2 _aTanoglu, M.
700 1 2 _aMcknight, S.H.
700 1 2 _aPalmese, G.R.
700 1 2 _aGillespie Jr., J.W.
856 4 0 _uhttps://drive.google.com/file/d/10sPngc9CXjmc3XICl1UCkYwG1cJPt-bd/view?usp=drivesdk
_zPara ver el documento ingresa a Google con tu cuenta: @cicy.edu.mx
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