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Vickers hardness tests of base steel and tempered samples were carried out, and then the hardness was changed by accompanying with the change of particle fraction.
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In terms of integrity of the base steel, carbon steel is superior to stainless steel and the effect of bond coat is found to be trivial for the tests performed in this study.
Coating the blasted substrate with this kind of deposit leads to a further reduction of the fatigue properties of the base steel.
On the contrary, the excellent adherence of such films to the substrate, together with the elevated compressive residual stresses and mechanical strength give rise to a significant improvement of the fatigue performance of the base steel.
However, precoated steel sheets assembled by lap joints are prone to suffer durability problems associated with this type of joint, such as the premature deterioration of protective coatings (metallic, organic) and accelerated metallic corrosion of the base steel by moisture retention in the lap.
As a feasibility test of the proposed IVCC in this INERI project, the effects of IVCC base steel materials, internal coating materials, and gap size between the IVCC and the vessel lower head were examined.
The reduction in oxidation rate of the base steel was 94%.
The research of irradiation damage of recovery by post-irradiation annealing of EUROFER base steels showed that repeated intermediate annealing treatment at 550 °C made RAFM steel withstood much higher nominal damage dose rates.
Results demonstrated that passivity can be established on various zones, i.e., weld metal, heat-affected zone (HAZ) and base steel, of welded X70 steel.
Meanwhile, annealing at 500 °C was supposed to be the minimum temperature for starting recovery [13] of EUROFER base steels.
The chapter discusses the effects of rubber bearing ageing on seismic response of base-isolated steel bridges.
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