Fire retardancy effect of migration in polypropylene nanocomposites induced by modified interlayer

2003 ◽  
Vol 82 (2) ◽  
pp. 379-385 ◽  
Author(s):  
Gy. Marosi ◽  
A. Márton ◽  
A. Szép ◽  
I. Csontos ◽  
S. Keszei ◽  
...  
2006 ◽  
Vol 41 (21) ◽  
pp. 7005-7010 ◽  
Author(s):  
Magatte Diagne ◽  
Mamadou Gueye ◽  
Anicet Dasilva ◽  
Loic Vidal ◽  
Adams Tidjani

Author(s):  
Jayvardhan Patil ◽  
Harshvardhan Patil ◽  
Ruturaj Sankpal ◽  
Dipraj Rathod ◽  
Karan Patil ◽  
...  

Cellulose ◽  
2021 ◽  
Author(s):  
Koki Matsumoto ◽  
Tatsuya Tanaka ◽  
Masahiro Sasada ◽  
Noriyuki Sano ◽  
Kenta Masuyama

AbstractThis study focused on realizing fire retardancy for polymer composites by using a cellulosic biofiller and ammonium polyphosphate (APP). The motivation of this study was based on revealing the mechanism of the synergetic effect of a cellulosic biofiller and APP and determining the parameters required for achieving a V-0 rating in UL94 standard regardless of the kind of polymer system used. As for the polymer matrix, polypropylene and polylactic acid were used. The flammability, burning behavior and thermal decomposition behavior of the composites were investigated through a burning test according to the UL-94 standard, cone calorimetric test and thermogravimetric analysis. As a result, the incorporation of a high amount of cellulose enabled a V-0 rating to be achieved with only a small amount of APP despite the variation of the optimum cellulose loading between the matrix polymers. Through analysis, the results indicated that APP decreased the dehydration temperature of cellulose. Furthermore, APP promoted the generation of enough water as a nonflammable gas and formed enough char until the degradation of the polymer matrix was complete. The conditions required to achieve the V-0 rating were suggested against composites incorporating APP and biofillers. Furthermore, the suggested conditions were validated by using polyoxymethylene as a highly flammable polymer.


2021 ◽  
pp. 009524432110153
Author(s):  
Jaber Mirzaei ◽  
Abdolhossein Fereidoon ◽  
Ahmad Ghasemi-Ghalebahman

In this study, the mechanical properties of polypropylene (PP)-based nanocomposites reinforced with graphene nanosheets, kenaf fiber, and polypropylene-grafted maleic anhydride (PP-g-MA) were investigated. Response surface methodology (RSM) based on Box–Behnken design (BBD) was used as the experimental design. The blends fabricated in three levels of parameters include 0, 0.75, and 1.5 wt% graphene nanosheets, 0, 7.5, and 15 wt% kenaf fiber, and 0, 3, and 6 wt% PP-g-MA, prepared by an internal mixer and a hot press machine. The fiber length was 5 mm and was being constant for all samples. Tensile, flexural, and impact tests were conducted to determine the blend properties. The purpose of this research is to achieve the highest mechanical properties of the considered nanocomposite blend. The addition of graphene nanosheets to 1 wt% increased the tensile, flexural, and impact strengths by 16%, 24%, and 19%, respectively, and an addition up to 1.5 wt% reduced them. With further addition of graphene nanosheets until 1.5 wt%, the elastic modulus was increased by 70%. Adding the kenaf fiber up to 15 wt% increased the elastic modulus, tensile, flexural, and impact strength by 24%, 84%, 18%, and 11%, respectively. The addition of PP-g-MA has increased the adhesion, dispersion and compatibility of graphene nanosheets and kenaf fibers with matrix. With 6 wt% PP-g-MA, the tensile strength and elastic modulus were increased by 18% and 75%, respectively. The addition of PP-g-MA to 5 wt% increased the flexural and impact strengths by 10% and 5%, respectively. From the entire experimental data, the optimum values for elastic modulus, as well as, tensile, flexural, and impact strengths in the blends were obtained to be 4 GPa, 33.7896 MPa, 57.6306 MPa, and 100.1421 J/m, respectively. Finally, samples were studied by FE-SEM to check the dispersion of graphene nanosheets, PP-g-MA and kenaf fibers in the polymeric matrix.


2017 ◽  
Vol 66 (12) ◽  
pp. 1716-1724 ◽  
Author(s):  
Marianna Triantou ◽  
Nadia Todorova ◽  
Tatiana Giannakopoulou ◽  
Tiverios Vaimakis ◽  
Christos Trapalis

2021 ◽  
pp. 51640
Author(s):  
Siti Maznah Kabeb ◽  
Azman Hassan ◽  
Faiz Ahmad ◽  
Zurina Mohamad ◽  
Zalilah Sharer ◽  
...  

RSC Advances ◽  
2021 ◽  
Vol 11 (13) ◽  
pp. 7663-7671
Author(s):  
Huiseob Shin ◽  
Min-Young Lim ◽  
Jinwoo Oh ◽  
Yonghoon Lee ◽  
Jong-Chan Lee

The effect of lateral size and surface characteristics of CBGO on the physical properties of polypropylene nanocomposites was studied.


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