tetrafunctional epoxy
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Polymers ◽  
2021 ◽  
Vol 13 (24) ◽  
pp. 4440
Author(s):  
Megha Sahu ◽  
Lakshmi Narasimhan ◽  
Ashok M. Raichur ◽  
Alexandru Sover ◽  
Romeo C. Ciobanu ◽  
...  

In this work, improved fracture toughness of tetra-functional epoxy polymer was obtained using two-dimensional (2H polytype) molybdenum disulfide (MoS2) nano-platelets as a filler. Simultaneous in-situ exfoliation and functionalization of MoS2 were achieved in the presence of cetyltrimethylammonium bromide (CTAB) via sonication. The aim was to improve the dispersion of MoS2 nanoplatelets in epoxy and enhance the interfacial interaction between nanoplatelets and epoxy matrix. Epoxy nanocomposites with CTAB functionalized MoS2 (f-MoS2) nanoplatelets, ranging in content from 0.1 wt% up to 1 wt%, were fabricated. Modified MoS2 improved the fracture properties (81%) of tetrafunctional epoxy nanocomposites. The flexural strength and compressive strength improved by 64% and 47%, respectively, with 0.25 wt% loading of f-MoS2 nanoplatelets compared to neat epoxy. The addition of f-MoS2 nanoplatelets enhanced the thermomechanical properties of epoxy. This work demonstrated the potential of organically modified MoS2 nanoplatelets for improving the fracture and thermal behavior of tetrafunctional epoxy nanocomposites.


Polymer ◽  
2020 ◽  
Vol 206 ◽  
pp. 122893
Author(s):  
Filip Vuković ◽  
Sam R. Swan ◽  
Larry Q. Reyes ◽  
Russell J. Varley ◽  
Tiffany R. Walsh

2020 ◽  
Vol 69 (9) ◽  
pp. 867-875
Author(s):  
Miaomiao Zhang ◽  
Xuepei Miao ◽  
Jianwei Fu ◽  
Fei Bao ◽  
Xing An ◽  
...  

2020 ◽  
Vol 31 (4) ◽  
pp. 635-644
Author(s):  
Fengfeng Zhang ◽  
Lishuai Zong ◽  
Feng Bao ◽  
Zhihuan Weng ◽  
Chenghao Wang ◽  
...  

Author(s):  
Duraibabu Dhanapal ◽  
Alagar Muthukaruppan ◽  
Ananda Kumar Srinivasan

Attempts were made in the present study to design and develop skeletally modified ether linked tetraglycidyl epoxy resin (TGBAPSB), which is subsequently reinforced with different weight percentages of amine functionalized mullite fiber (F-MF). The F-MF was synthesized by reacting mullite fiber with 3-aminopropyltriethoxysilane (APTES) as coupling agent and the F-MF structure was confirmed by FT-IR. TGBAPSB reinforced with F-MF formulation was cured with 4,4’-diamino diphenyl methane (DDM) to obtain nanocomposite. The surface morphology of TGBAPSB-F-MF epoxy nanocomposites was investigated by XRD, SEM and AFM studies. From the study, it follows that these nanocomposite materials offer enhancement in mechanical, thermal, thermo-mechanical, dielectric properties compared to neat (TGBAPSB) epoxy matrix. Hence we recommend these nanocomposites for a possible use in advanced engineering applications that require both toughness and stiffness.


Author(s):  
Duraibabu Dhanapal ◽  
Alagar Muthukaruppan ◽  
Ananda Kumar Srinivasan

Attempts were made in the present study to design and develop skeletally modified ether linked tetraglycidyl epoxy resin (TGBAPSB), which is subsequently reinforced with different weight percentages of amine functionalized mullite fiber (F-MF). The F-MF was synthesized by reacting mullite fiber with 3-aminopropyltriethoxysilane (APTES) as coupling agent and the F-MF structure was confirmed by FT-IR. TGBAPSB reinforced with F-MF formulation was cured with 4,4’-diamino diphenyl methane (DDM) to obtain nanocomposite. The surface morphology of TGBAPSB-F-MF epoxy nanocomposites was investigated by XRD, SEM and AFM studies. From the study, it follows that these nanocomposite materials offer enhancement in mechanical, thermal, thermo-mechanical, dielectric properties compared to neat (TGBAPSB) epoxy matrix. Hence we recommend these nanocomposites for a possible use in advanced engineering applications that require both toughness and stiffness.


2018 ◽  
Vol 71 ◽  
pp. 38-48 ◽  
Author(s):  
An Xing ◽  
Fei Bao ◽  
Jianwei Fu ◽  
Xuepei Miao ◽  
Tuan Liu ◽  
...  

Author(s):  
Duraibabu Dhanapal ◽  
Alagar Muthukaruppan ◽  
Ananda Kumar Srinivasan

Attempts were made in the present study to design and develop skeletally modified ether linked tetraglycidyl epoxy resin (TGBAPSB), which is subsequently reinforced with different weight percentages of amine functionalized mullite fiber (F-MF). The F-MF was synthesized by reacting mullite fiber with 3-aminopropyltriethoxysilane (APTES) as coupling agent and the F-MF structure was confirmed by FT-IR. TGBAPSB reinforced with F-MF formulation was cured with 4,4’-diamino diphenyl methane (DDM) to obtain nanocomposite. The surface morphology of TGBAPSB-F-MF epoxy nanocomposites was investigated by XRD, SEM and AFM studies. From the study, it follows that these nanocomposite materials offer enhancement in mechanical, thermal, thermo-mechanical, dielectric properties compared to neat (TGBAPSB) epoxy matrix. Hence we recommend these nanocomposites for a possible use in advanced engineering applications that require both toughness and stiffness.


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