Arid
DOI10.1007/s13726-014-0296-x
Effect of Thal silica sand nanoparticles and glass fiber reinforcements on epoxy-based hybrid composite
Ahmad, Tahir1; Ahmad, Rafiq1; Kamran, Muhammad1; Wahjoedi, Bambang2; Shakoor, Imran1; Hussain, Faraz1; Riaz, Farhad1; Jamil, Zuhaib1; Isaac, Sirjeel1; Ashraf, Qaiser1
通讯作者Ahmad, Tahir
来源期刊IRANIAN POLYMER JOURNAL
ISSN1026-1265
EISSN1735-5265
出版年2015
卷号24期号:1页码:21-27
英文摘要

Epoxy is a hard, brittle but strong polymeric material and various types of research works are being carried out to exploit its unique properties in commercial service particularly as composite materials. One of these researches is to study the effect of addition of Thal silica sand nanoparticles and glass fiber on epoxy-based hybrid composites. The silica sand was collected from Thal desert situated in Punjab province of Pakistan, milled to nanoparticles using a ball mill. The production of silica sand nanoparticles was verified using a Zeta sizer nanoparticles analyzer and SEM analysis. These silica sand nanoparticles were utilized to develop the epoxy-based composites. The glass fibers were cut into small pieces of 2 cm in length and thoroughly mixed with epoxy along with silica sand nanoparticles. Hand-lay-up fabrication technique was proceeded by room temperature curing which was used to develop the epoxy-based hybrid composites. The tensile and impact specimens were made according to ASTM standard and tested using universal tensile testing and charpy impact testing machines. A Vickers hardness tester, applying 50 g load for 10 s, was used to determine the hardness of the composites. The thermo-gravimetric analysis was carried out to analyze the thermal behavior of the composites particularly to evaluate mass loss or gain due to decomposition and oxidation using TGA apparatus. The interaction of glass fiber and silica sand nanoparticles with epoxy was studied using scanning electron microscopy. It was observed that with increasing silica sand nanoparticles and glass fiber contents, the hardness, tensile, and impact properties of the epoxy-based hybrid composites increased. The TGA results showed that the developed hybrid composites became stable at 300 degrees C.


英文关键词Thal silica sand nanoparticles Glass fiber Epoxy-based hybrid composites Mechanical and thermal properties Microstructure
类型Article
语种英语
国家Pakistan ; Malaysia
收录类别SCI-E
WOS记录号WOS:000351565100003
WOS关键词BEHAVIOR
WOS类目Polymer Science
WOS研究方向Polymer Science
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/188100
作者单位1.Univ Punjab, Dept Met & Mat Engn, Coll Engn & Emerging Technol, Lahore, Pakistan;
2.Univ Teknol PETRONAS, Dept Fundamental & Appl Sci, Tronoh, Perak, Malaysia
推荐引用方式
GB/T 7714
Ahmad, Tahir,Ahmad, Rafiq,Kamran, Muhammad,et al. Effect of Thal silica sand nanoparticles and glass fiber reinforcements on epoxy-based hybrid composite[J],2015,24(1):21-27.
APA Ahmad, Tahir.,Ahmad, Rafiq.,Kamran, Muhammad.,Wahjoedi, Bambang.,Shakoor, Imran.,...&Ashraf, Qaiser.(2015).Effect of Thal silica sand nanoparticles and glass fiber reinforcements on epoxy-based hybrid composite.IRANIAN POLYMER JOURNAL,24(1),21-27.
MLA Ahmad, Tahir,et al."Effect of Thal silica sand nanoparticles and glass fiber reinforcements on epoxy-based hybrid composite".IRANIAN POLYMER JOURNAL 24.1(2015):21-27.
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