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Since three types of interfaces for crack propagation were studied (orientations 0/0, 0/90 and 90/90), some problems arise in determining the SIF because of its oscillatory behavior.
The results presented in this paper show that proper modelling of the bond behaviour of all three types of interfaces is essential in order to accurately simulate the shear behaviour of RC beams shear-strengthened with FRP and that the effects of the assumed bond behaviour of steel stirrups or steel tension bars are very complex and need much further research.
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Figure 3 Absorption coefficient of the (CdSe) 7 /(ZnTe) 7 SL for three types of interface, as a function of energy.
This pan-specificity of inhibition is believed to derive from formation of a heterotetrameric complex with target proteases involving three types of interface: the dimerization interface, a primary substrate-like interaction, and a smaller secondary interaction between the partner ecotin subunit and the protease.
Three types of interface were used: four nasopharyngeal tubes, three nasal masks, and six nasobuccal masks.
Two types of interfaces are considered, a perfect one, and one with discontinuities (steps and ledges).
The deposition followed by in situ kinetic ellipsometry point out the two types of interfaces.
Two mooring line pretension conditions and two types of interfaces between the ship and the fenders were experimentally investigated.
The load bearing capacities of the two types of interfaces determined theoretically match well with the lab testing results.
The expressions of keffk1 for these two types of interfaces are found to be identical but with different definitions for involved multipole polarizabilities, θn.
Two types of interfaces are treated: one with finite thickness and one with no thickness but possessive of certain thermal barriers.
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