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The materials tested were mild steel, high strength quenched and tempered steel, and abrasion resistant steel.
The materials tested were divided into two groups: non-mineralized and mineralized.
The oxygen carrier materials tested were ilmenite and a manganese ore.
The alternative materials tested were fly ash as binder for cement replacement, recycled fine aggregate originating from mixed construction and demolition waste and steel slag as coarse aggregate.
The materials tested were of inherently diverse hydrophobicity and crystallinity: poly l-lactide) (poly l-lactide random copoly LLA from l-landide and ε-caprandomone or 1,5-dioxepan-2-one, fabricopolymers porous and non-porous scafromds.
The materials tested were (1) a high-nickel iron-base alloy (Alloy 800H); (2) a nickel-base alloy (Alloy 617); (3) two advanced nano-structured ferritic alloys (designated 14YWT and 14WT); and (4) a commercial ferritic martensitic steel (annealed 9Cr 1MoV).
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We report, here, that one of these materials tested is quite suitable for SIMS work.
The ISR over time for all the materials tested is represented in Figure 5.
The oxidation resistance of materials tested was characterized by weight gain per unit surface area ΔW/S.
The dependences of weight gain per unit surface area on oxidation time at 600 °C for Ti3AlC2-based materials tested are presented in Fig. 3.
However, the range of surface materials tested was by no means exhaustive.
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