首页> 外文学位 >Comprehensive process maps for synthesizing high density aluminum oxide-carbon nanotube coatings by plasma spraying for improved mechanical and wear properties.
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Comprehensive process maps for synthesizing high density aluminum oxide-carbon nanotube coatings by plasma spraying for improved mechanical and wear properties.

机译:通过等离子喷涂合成高密度氧化铝-碳纳米管涂层的综合工艺图,以改善机械性能和磨损性能。

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摘要

Plasma sprayed aluminum oxide ceramic coating is widely used due to its outstanding wear, corrosion, and thermal shock resistance. But porosity is the integral feature in the plasma sprayed coating which exponentially degrades its properties. In this study, process maps were developed to obtain Al2O3-CNT composite coatings with the highest density (i.e. lowest porosity) and improved mechanical and wear properties. Process map is defined as a set of relationships that correlates large number of plasma processing parameters to the coating properties.;Carbon nanotubes (CNTs) were added as reinforcement to Al2O 3 coating to improve the fracture toughness and wear resistance. Two novel powder processing approaches viz spray drying and chemical vapor growth were adopted to disperse CNTs in Al2O3 powder. The degree of CNT dispersion via chemical vapor deposition (CVD) was superior to spray drying but CVD could not synthesize powder in large amount. Hence optimization of plasma processing parameters and process map development was limited to spray dried Al2O3 powder containing 0, 4 and 8 wt. % CNTs.;An empirical model using Pareto diagram was developed to link plasma processing parameters with the porosity of coating. Splat morphology as a function of plasma processing parameter was also studied to understand its effect on mechanical properties.;Addition of a mere 1.5 wt. % CNTs via CVD technique showed ∼27% and ∼24% increase in the elastic modulus and fracture toughness respectively. Improved toughness was attributed to combined effect of lower porosity and uniform dispersion of CNTs which promoted the toughening by CNT bridging, crack deflection and strong CNT/Al2O3 interface. Al2O 3-8 wt. % CNT coating synthesized using spray dried powder showed 73% improvement in the fracture toughness when porosity reduced from 4.7% to 3.0%. Wear resistance of all coatings at room and elevated temperatures (573 K, 873 K) showed improvement with CNT addition and decreased porosity. Such behavior was due to improved mechanical properties, protective film formation due to tribochemical reaction, and CNT bridging between the splats. Finally, process maps correlating porosity content, CNT content, mechanical properties, and wear properties were developed.
机译:等离子喷涂氧化铝陶瓷涂层因其出色的耐磨性,耐腐蚀性和耐热冲击性而被广泛使用。但是,孔隙率是等离子喷涂涂层中不可或缺的特征,它成倍地降低了其性能。在这项研究中,开发了工艺图以获得具有最高密度(即最低孔隙率)和改善的机械和磨损性能的Al2O3-CNT复合涂层。工艺图被定义为一组关系,这些关系将大量的等离子体处理参数与涂层性能相关联。碳纳米管(CNT)被添加为Al2O 3涂层的增强材料以改善断裂韧性和耐磨性。采用两种新颖的粉末加工方法,即喷雾干燥和化学气相生长,将CNT分散在Al2O3粉末中。通过化学气相沉积(CVD)进行的CNT分散程度优于喷雾干燥,但CVD无法大量合成粉末。因此,等离子体处理参数和工艺图开发的优化仅限于喷雾干燥的Al2O3粉末,其含量为0、4和8 wt%。建立了使用帕累托图的经验模型,以将等离子体处理参数与涂层的孔隙率联系起来。还研究了Splat形态随等离子处理参数的变化,以了解其对机械性能的影响。;仅添加1.5 wt%。通过CVD技术的%CNT显示出弹性模量和断裂韧性分别增加〜27%和〜24%。韧性的提高归因于较低孔隙率和CNT均匀分散的综合作用,这些作用通过CNT桥连,裂纹偏转和强CNT / Al2O3界面促进了增韧。 Al 2 O 3-8重量当孔隙率从4.7%降低到3.0%时,使用喷雾干燥粉末合成的10%CNT涂层显示出断裂韧性提高了73%。在室温和高温(573 K,873 K)下,所有涂层的耐磨性均显示出添加CNT的改善和孔隙率的降低。这种行为是由于机械性能的改善,由于摩擦化学反应形成的保护膜以及splats之间的CNT桥接所致。最后,建立了与孔隙率,CNT含量,机械性能和磨损性能相关的工艺图。

著录项

  • 作者

    Keshri, Anup Kumar.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Mechanical.;Engineering Metallurgy.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 294 p.
  • 总页数 294
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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