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Correlation of microstructure and wear resistance of Al2O3-TiO2 coatings plasma sprayed with nanopowders

机译:纳米粉等离子喷涂Al2 O3 -TiO2 涂层的微观结构与耐磨性的相关性

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摘要

Correlation of microstructure and wear resistance of Al2O3-TiO2 coatings plasma sprayed with nanopowders was investigated in this study. Four kinds of nanostructured Al2O3-13 wt pct TiO2 coatings were fabricated by varying plasma-spraying parameters and were compared with an Al2O3-13 wt pct TiO2 coating fabricated with conventional powders. The nanostructured coatings showed a bimodal microstructure composed of fully melted regions of γ-Al2O3 and partially melted regions, while the conventional coating mostly consisted of fully melted γ-Al2O3, together with some TiO2-rich regions and unmelted Al2O3 powders. The wear test results revealed that the wear resistance of the nanostructured coatings was 3 or 4 times better than that of the conventional coating, because the preferential delamination seriously occurred along TiO2-rich regions in the conventional coating. In the nanostructured coatings, TiO2 was homogeneously dispersed inside splats and around, thereby leading to higher splat bonding strength and to better wear resistance over the conventional coating.
机译:研究了等离子喷涂纳米粉体的Al2 O3 -TiO2 涂层的微观结构与耐磨性的相关性。通过改变等离子体喷涂参数制备了四种纳米结构的Al2 O3 -13 wt pct TiO2 涂层,并与Al2 O3 -13 wt比较用常规粉末制造的pct TiO2 涂层。纳米涂层具有双峰微观结构,由完全熔化的γ-Al2 O3 区域和部分熔化的区域组成,而常规涂层主要由完全熔化的γ-Al2 O3 组成>,以及一些富含TiO2 的区域和未熔融的Al2 O3 粉末。磨损试验结果表明,该纳米结构涂层的耐磨性是传统涂层的3到4倍,这是因为在传统涂层中,富TiO2 区域发生了优先的分层现象。在纳米结构涂层中,TiO2 均匀地分散在短片内部和周围,从而比常规涂层具有更高的短片结合强度和更好的耐磨性。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第6期|1851-1861|共11页
  • 作者单位

    New Materials ampamp Component Research Center Research Institute of Industrial Science and Technology 790-600 Pohang Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology 790-784 Pohang Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology 790-784 Pohang Korea;

    Center for Advanced Aerospace Materials Korea;

    Center for Advanced Aerospace Materials Korea;

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