Thermal Characterization of Nanoclay Nanocomposites

Article ID

08I48

Thermal Characterization of Nanoclay Nanocomposites

Yousef Haik
Yousef Haik
Saud Aldajah
Saud Aldajah United Arab Emirates University
Kamal Moustafa
Kamal Moustafa
Saleh Hayek
Saleh Hayek
Ammar Alomari3
Ammar Alomari3
DOI

Abstract

Nanocomposites have attracted the attention of scientists during the past few decades due to their superior mechanical, thermal, chemical and electrical characteristics. This paper studies the potential of using Nanoclay woven Kevlar laminated composites to enhance the impact the mechanical and thermal performance. The variation of Nanoclay percentage usually lead to different thermal characteristics of the resulting composite. Various percentages of Nanoclay added to the woven Kevlar composites were studied ranging from 0% to 9.4%. The results showed that the nanoclay reinforced composites showed a considerable change in the thermal characteristics of the considered samples. Thermal gravitational and differential scanning calorimetry analysis were performed and it was found that the decomposition temperature of the pure vinylester was increased by the addition of the Nanoclay, whereas the glass transition temperature was little affected. The results of the infrared spectrum analysis indicated the presence of both nano materials and polymers at various frequencies.

Nanocomposites have attracted the attention of scientists during the past few decades due to their superior mechanical, thermal, chemical and electrical characteristics. This paper studies the potential of using Nanoclay woven Kevlar laminated composites to enhance the impact the mechanical and thermal performance. The variation of Nanoclay percentage usually lead to different thermal characteristics of the resulting composite. Various percentages of Nanoclay added to the woven Kevlar composites were studied ranging from 0% to 9.4%. The results showed that the nanoclay reinforced composites showed a considerable change in the thermal characteristics of the considered samples. Thermal gravitational and differential scanning calorimetry analysis were performed and it was found that the decomposition temperature of the pure vinylester was increased by the addition of the Nanoclay, whereas the glass transition temperature was little affected. The results of the infrared spectrum analysis indicated the presence of both nano materials and polymers at various frequencies.

Yousef Haik
Yousef Haik
Saud Aldajah
Saud Aldajah United Arab Emirates University
Kamal Moustafa
Kamal Moustafa
Saleh Hayek
Saleh Hayek
Ammar Alomari3
Ammar Alomari3

No Figures found in article.

Saud Aldajah. 2014. “. Global Journal of Research in Engineering – A : Mechanical & Mechanics GJRE-A Volume 14 (GJRE Volume 14 Issue A2): .

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Classification
Not Found
Article Matrices
Total Views: 4460
Total Downloads: 2390
2026 Trends
Research Identity (RIN)
Related Research
Our website is actively being updated, and changes may occur frequently. Please clear your browser cache if needed. For feedback or error reporting, please email [email protected]

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

Quote and Order Details

Contact Person

Invoice Address

Notes or Comments

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Thermal Characterization of Nanoclay Nanocomposites

Yousef Haik
Yousef Haik
Saud Aldajah
Saud Aldajah United Arab Emirates University
Kamal Moustafa
Kamal Moustafa
Saleh Hayek
Saleh Hayek
Ammar Alomari3
Ammar Alomari3

Research Journals