首页> 外文期刊>MTT: Manufacturing Technology Today >DEVELOPING EMPIRICAL RELATIONSHIP TO PREDICT THE DIAMETER OF MULTIWALL CARBON NANO TUBES (MWCNTs) SYNTHESIZED BY CHEMICAL VAPOR DEPOSITION (CVD) PROCESS
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DEVELOPING EMPIRICAL RELATIONSHIP TO PREDICT THE DIAMETER OF MULTIWALL CARBON NANO TUBES (MWCNTs) SYNTHESIZED BY CHEMICAL VAPOR DEPOSITION (CVD) PROCESS

机译:开发经验关系以预测化学气相沉积(CVD)工艺合成的多壁碳纳米管(MWCNT)的直径

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The thermal chemical vapor deposition (CVD) route was used to synthesize multi walled carbon nano tubes (MWCNTs) and metal NiO powders was used as catalyst and it supported on crystalline alumina nano particles. Acetylene was used as the carbon source gas and Argon was used as the carrier gas. An empirical relationship was developed to predict the diameter of MWNTs incorporating important CVD process parameters. Three factors, five levels central composite design was used to minimize number of experimental conditions. The CVD parameters such as reaction temperature, gas flow rate and process time were chosen as the important parameters. The diameter of MWNTs was measured using field emission scanning electron microcopy (FESEM). Analysis of variance (ANOVA) method was used to identify significant main and interaction factors. Final empirical relationship was developed using these significant factors. The developed empirical relationship can be effectively used to predict the diameter of MWNTs synthesized through CVD process at 95% confidence level.
机译:热化学气相沉积(CVD)途径用于合成多壁碳纳米管(MWCNT),并使用金属NiO粉末作为催化剂,并负载在结晶氧化铝纳米颗粒上。使用乙炔作为碳源气体,并使用氩气作为载气。开发了一种经验关系,以预测包含重要CVD工艺参数的MWNT的直径。三种因素,五级中央复合设计用于最小化实验条件的数量。选择CVD参数,例如反应温度,气体流速和处理时间作为重要参数。使用现场发射扫描电子显微镜(FESEM)测量MWNT的直径。方差分析(ANOVA)方法用于识别显着的主要和相互作用因子。使用这些重要因素制定了最终的实证关系。开发的经验关系可以有效地用于预测通过CVD工艺合成的MWNT的直径,在95%的置信水平下。

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