SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES

Coating of a surface by droplet spreading plays an important role in many novas industrial processes, such as plasma spray coating, ink jet printing, nano safeguard coatings and nano self-assembling. Data analysis of nano and micro droplet spreading can be widely used to predict and optimize coating...

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Main Author: S. Asadi
Format: Article
Language:English
Published: Iran University of Science & Technology 2014-12-01
Series:Iranian Journal of Materials Science and Engineering
Subjects:
Online Access:http://ijmse.iust.ac.ir/browse.php?a_code=A-10-127-66&slc_lang=en&sid=1
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spelling doaj-8168e1de84da4329a85f7c6f5e9d4c682020-11-24T21:06:45ZengIran University of Science & TechnologyIranian Journal of Materials Science and Engineering1735-08082383-38822014-12-011147279SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBESS. Asadi0 Department of Mechanical Engineering, Payame Noor University (PNU), Tehran, Iran. Coating of a surface by droplet spreading plays an important role in many novas industrial processes, such as plasma spray coating, ink jet printing, nano safeguard coatings and nano self-assembling. Data analysis of nano and micro droplet spreading can be widely used to predict and optimize coating processes. In this article, we want to select the most appropriate statistical distribution for spread data of aluminum oxide splats reinforced with carbon nanotubes. For this purpose a large class of probability models including generalized exponential (GE), Burr X (BX), Weibull (W), Burr III (BIII) distributions are fitted to data. The performance of the distributions are estimated using several statistical criteria, namely , Akaike Information Criterion (AIC), Baysian Information Criterion (BIC), LogLikelihood (LL) and Kolmogorove-Smirnove distance. Also, the fitted plots of probability distribution function and quantile-quantile (q-q) plots are used to verify the results of different criteria. An important implication of the present study is that the GE distribution function, in contrast to other distributions, may describe more appropriately in these datasets.http://ijmse.iust.ac.ir/browse.php?a_code=A-10-127-66&slc_lang=en&sid=1Aluminum oxide Carbon nanotube Coating Model selection criteria Splat Spread data Statistical
collection DOAJ
language English
format Article
sources DOAJ
author S. Asadi
spellingShingle S. Asadi
SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
Iranian Journal of Materials Science and Engineering
Aluminum oxide
Carbon nanotube
Coating
Model selection criteria
Splat
Spread data
Statistical
author_facet S. Asadi
author_sort S. Asadi
title SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
title_short SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
title_full SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
title_fullStr SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
title_full_unstemmed SPREAD DATA ANALYSIS OF ALUMINUM OXIDE SPLATS REINFORCED WITH CARBON NANOTUBES
title_sort spread data analysis of aluminum oxide splats reinforced with carbon nanotubes
publisher Iran University of Science & Technology
series Iranian Journal of Materials Science and Engineering
issn 1735-0808
2383-3882
publishDate 2014-12-01
description Coating of a surface by droplet spreading plays an important role in many novas industrial processes, such as plasma spray coating, ink jet printing, nano safeguard coatings and nano self-assembling. Data analysis of nano and micro droplet spreading can be widely used to predict and optimize coating processes. In this article, we want to select the most appropriate statistical distribution for spread data of aluminum oxide splats reinforced with carbon nanotubes. For this purpose a large class of probability models including generalized exponential (GE), Burr X (BX), Weibull (W), Burr III (BIII) distributions are fitted to data. The performance of the distributions are estimated using several statistical criteria, namely , Akaike Information Criterion (AIC), Baysian Information Criterion (BIC), LogLikelihood (LL) and Kolmogorove-Smirnove distance. Also, the fitted plots of probability distribution function and quantile-quantile (q-q) plots are used to verify the results of different criteria. An important implication of the present study is that the GE distribution function, in contrast to other distributions, may describe more appropriately in these datasets.
topic Aluminum oxide
Carbon nanotube
Coating
Model selection criteria
Splat
Spread data
Statistical
url http://ijmse.iust.ac.ir/browse.php?a_code=A-10-127-66&slc_lang=en&sid=1
work_keys_str_mv AT sasadi spreaddataanalysisofaluminumoxidesplatsreinforcedwithcarbonnanotubes
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