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The height decrease rate of the PU specimen increased by a factor of 6 with increasing normal force and temperature while the general degradation characteristics were maintained.
Compared with the standard cured specimen, the carbonation depth of the accelerated cured specimen increased by 61% for the control C25 concrete and by 56% for the control C35 concrete.
As a result, the peak stress and toughness of the Kevlar-woven fabric specimen increased by as much as two times, with increasing strain rate in a range of 1182 1460 s−1, whereas the strain at peak stress decreased by approximately 16%.
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The water permeability of the mortar specimens increased by about one to two orders of magnitude due to leaching degradation.
The load-bearing capacity of the strengthened specimens increased by as much as 100% relative to that of unstrengthened reference specimens.
The tensile force capacity of the strengthened BFRP UHTCC specimens increased by 42% to 172% compared to the reference specimens depending on the reinforcement ratio of the BFRP grid.
As a consequence, strength loss of the specimens increased by the addition of FNS aggregate, as shown in Fig. 8.
On the other hand, toughness of the control heat-damaged CH2 and CH3 specimens increased by 29 and 42%, respectively as a result of exposure to 500 °C for 2 and 3 h.
As PLGA degraded in phosphate-buffered saline solution (pH 7.4) at 37 °C over a 7-week period, the tensile elastic modulus and ultimate strength of the loaded specimen increased dramatically, followed by a decrease, which was much faster than that of the unloaded specimen, whereas break elongation of the loaded samples declined more quickly over the whole degradation period.
It was found that the normalized cumulative stiffness of the strengthened column specimen CS4 increased by about 87%% than in specimen CS1.
The results of these impact and post impact tests showed that contact force occurring between the impactor and the composite specimen increased and the CAI strength reduced by increasing the impact energy.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com