“…The Al 2 O 3 coatings are considered to be the typical representative of oxide ceramic coatings [4]. The previous studies were focused on the strength-toughness enhancement of the Al 2 O 3 coatings, including porosity control [5], metal phase addition [6], other oxide solution [7][8][9], structure nano-crystallization [10], component or structure gradient [11] and post processing [12]. However, some problems exist in the above-mentioned property improvement methods: (1) limited effects of porosity change; (2) obviously decreased hardness and strength of the coating due to the metal phase addition;…”
“…The Al 2 O 3 coatings are considered to be the typical representative of oxide ceramic coatings [4]. The previous studies were focused on the strength-toughness enhancement of the Al 2 O 3 coatings, including porosity control [5], metal phase addition [6], other oxide solution [7][8][9], structure nano-crystallization [10], component or structure gradient [11] and post processing [12]. However, some problems exist in the above-mentioned property improvement methods: (1) limited effects of porosity change; (2) obviously decreased hardness and strength of the coating due to the metal phase addition;…”
“…Furthermore, previous studies [14][15][16] have also elucidated that extraordinary properties can be obtained with a nanostructure closer to its original size (especially less than 100 nm). It is necessary to control the starting nano-crystal size of the agglomerates and their heat trajectories carefully in the plasma jet [17,18]. Many investigations have been completed to connect jet temperature with coating microstructures by studying the effects of spray processing parameters [19].…”
“…Some example of nanostructured ceramic coatings obtained by APS from agglomerated powders include alumina [16,17], titania [18,19], alumina-titania [14,20], yttria-stabilised zirconia [21,22] or pyrochlore [23].…”
Versión / Versió:Preprint were used as starting materials. The coatings microstructure and phase composition were fully characterised using FEG-SEM and XRD techniques. Nanoindentation technique was used to determine the coatings hardness and elastic modulus properties.Results have shown that the addition of titania to alumina SPS coatings causes different crystalline phases and a higher powder melting rate is reached. The higher melted material achieved, when titania is added leads to higher hardness and elastic modulus when the same spraying parameters are used.
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