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Effect of densification distribution on the Young's modulus of porous coatings after nano-indentation

Effect of densification distribution on the Young's modulus of porous coatings after nano-indentation
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摘要 Nano-indentation of a porous ceramic coating leads to crushing and densification of the coating under the indenter. In this work, finite element simulations of indentation on the porous coating have been carried out to study the effect of the size and dis- tribution of densification on Youngts modulus measured by nano-indentation. Two totally different distribution patterns have been simulated in this work. In the case of gradient densification, the Youngts modulus increased by 8.6% when the densifi- cation has occurred in the maximum influenced area. While the Young^s modulus increased by 2% with a uniformed densification. Examinations of the cross-section of the coatings have suggested that the densification after the indentation is close to the second model. The measured Young's modulus could have differed by 2%. The effect of densification on the Young's modulus measured by using nano-indentation is strongly dependent on the densification patterns of the porous coating. Nano-indentation of a porous ceramic coating leads to crushing and densification of the coating under the indenter. In this work, finite element simulations of indentation on the porous coating have been carried out to study the effect of the size and dis- tribution of densification on Youngts modulus measured by nano-indentation. Two totally different distribution patterns have been simulated in this work. In the case of gradient densification, the Youngts modulus increased by 8.6% when the densifi- cation has occurred in the maximum influenced area. While the Young^s modulus increased by 2% with a uniformed densification. Examinations of the cross-section of the coatings have suggested that the densification after the indentation is close to the second model. The measured Young's modulus could have differed by 2%. The effect of densification on the Young's modulus measured by using nano-indentation is strongly dependent on the densification patterns of the porous coating.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2012年第5期383-390,共8页 金属学报(英文版)
基金 financially supported by the Fundamental Research Funds for the Central Universities of China (No. 916051202)
关键词 Film Mechanical property Finite element simulation POROSITY Electron Microscopy Film Mechanical property Finite element simulation Porosity Electron Microscopy
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