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Results for these uniaxial compression tests in the finite strain regime through ramp strain and ramp-relaxation loading histories applied over two orders of strain rate magnitude show that microstructural anisotropy is directly manifested in the bulk viscoelastic solid-like response.
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The obtained results made clear a strain rate hardening behavior, especially distinct hardening trend over 1 s−1 order of strain rate in 9% Ni steel.
As in the cross-phylogeny bioassay, the observed reactions were not symmetric (Mantel r = −0.07; p = 1.00), so that reactions were dependent upon the order of strains used in a given pairing.
These models have often been shown to be able to recapitulate the rank virulence order of strains as assessed in mice.
The same order of strains was if to express TIG concentration in mg/L: MOXp-GSH2 - 2257 mg/L; mcGSH2 - 1532 mg/L; mcMET4- 1318 mg/L; wild type -910 mg/L.
From these data we calculated the first-order gradients of strain and the GND densities below the indents.
Given that this section of the work was to provide a first order assessment of strain performance in SSF in the presence of inhibitors, we opted for an approach where triticale hydrolysate was used for hardening and sorghum was used for SSF work, in light of the relatively similar inhibitor concentrations in the hydrolysate from both feedstocks.
In order to incorporate geometric nonlinearity, thesecond-order terms of strains are included.
The results, which cover almost six orders of magnitude of strain rate, give high values for the apparent stress exponent and the apparent activation energy for creep.
The experimental data, which cover several orders of magnitude of strain rate, show that the stress dependence of creep rate is high and that the temperature dependence of creep rate is higher than that for self-diffusion in tantalum.
Our simulations of mechanical deformation across several orders of magnitudes of strain until failure occurs enable us to carry out a detailed mechanistic and structural analysis of deformation mechanisms of both the dimer and tetramer.
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