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Based on SEMO model calculations (see Tang et al., 2008b for the calculations in detail), precipitation rate effect on Ca isotope fractionation is due to the effective entrapment of Ca-depleted surface layer by crystal growth before ion diffusion re-equilibrates any abnormal composition in the newly-formed crystal lattice.
The implications of the loading rate effect on pile foundation design are then presented.
Hence, establishing the rate effect on energy absorption is of paramount importance when designing for impact.
This paper reports experimental results of the strain rate effect on paste, mortar and concrete.
Different strain rate axial loads were applied to observe the rate effect on the failure.
The tests showed that there was a considerable strain rate effect on the yield stress of the steel.
The results show no strain rate effect on plastic deformation up to strain rates of about 5000 s−1.
In this paper, a numerical analysis of the heating rate effect on spalling of HPC is presented.
Considering three various loading regimes, strain rate effect on post-peak stress-strain response of concrete is investigated.
Experiments and Weibull distribution analysis were performed to investigate the strain rate effect on the dynamic properties of FFRP composites.
An equation represents the time-loading/unloading rate effect on the creep/creep recovery of the force transducers, is introduced.
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