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Additionally, the failure strength of the joint specimen was improved by more than 13.1 21.8%.
The wear resistance of the thixoforged specimen was improved due to a wear-resisting skin layer that surrounded outside.
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The bending stiffness of the strengthened specimen is improved due to an increase in inertia resulting from the strengthening plate.
The cavitation erosion resistance Re of all the laser-modified specimens was improved, except for the case of Cr2O3, with the improvement depending on the microstructure formed.
The oxidation resistance of the coated specimens was improved by approximately twice as compared to the uncoated specimen.
The fracture toughness, as well as the deteriorated hardness, of the deformed specimens was improved by the TiN coating.
The results showed that with the addition of macro steel fibers, the deformability of the specimens was improved significantly and the crack width could be controlled.
A subsequent annealing treatment changed the grain boundary character distribution (GBCD) remarkably and the IGC resistance of the processed specimens was improved.
At the second stage, SP1 and SP3 specimens were improved considering the failure modes observed in the previous tests.
The results indicate that the mechanical properties of the PBL specimens are improved due to the bond at the interface between the perforated plate and the concrete.
The results showed that the fretting wear and friction coefficient characteristics of the UNSM-treated specimens were improved compared to those of the untreated specimens.
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