Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Synergetic toughening of polyphenylene sulfide by poly(aryl ether sulfone ketone) and poly(ethylene‐ran‐methacrylate‐ran‐glycidyl methacrylate)

View through CrossRef
AbstractThe toughened polyphenylene sulfide (PPS) was prepared using copolymer poly(aryl ether sulfone ketone) as the toughening agent, which was synthesized through copolycondensation of 2‐phenyl‐3,3‐bis(4‐hydroxyphenyl)phthalimide, 1,4‐bis(4‐fluorophenyl)butane‐1,4‐diketone (BFB), and bis(4‐fluorophenyl)sulfone (DFS) as monomers. The properties of the copolymers were regulated by controlling the ratio of BFB and DFS. The glass transition temperature (Tg) exceeds 210°C, and the thermal decomposition temperature (Td 5%) surpasses 430°C, demonstrating the copolymer's excellent thermal stability. When the mole ratio of sulfone to ketone was 8:2, the impact strength exhibited an increase of approximately 178% compared to that of neat PPS. The influences of the toughening agent and blending method on the thermal properties, rheological properties, and mechanical properties of the blends were examined.Highlights Copolymer was synthesized as a toughening agent for polyphenylene sulfide (PPS). Copolymer demonstrates good thermal stability properties. Adding copolymer and EGMA significantly improved the toughness of PPS.
Title: Synergetic toughening of polyphenylene sulfide by poly(aryl ether sulfone ketone) and poly(ethylene‐ran‐methacrylate‐ran‐glycidyl methacrylate)
Description:
AbstractThe toughened polyphenylene sulfide (PPS) was prepared using copolymer poly(aryl ether sulfone ketone) as the toughening agent, which was synthesized through copolycondensation of 2‐phenyl‐3,3‐bis(4‐hydroxyphenyl)phthalimide, 1,4‐bis(4‐fluorophenyl)butane‐1,4‐diketone (BFB), and bis(4‐fluorophenyl)sulfone (DFS) as monomers.
The properties of the copolymers were regulated by controlling the ratio of BFB and DFS.
The glass transition temperature (Tg) exceeds 210°C, and the thermal decomposition temperature (Td 5%) surpasses 430°C, demonstrating the copolymer's excellent thermal stability.
When the mole ratio of sulfone to ketone was 8:2, the impact strength exhibited an increase of approximately 178% compared to that of neat PPS.
The influences of the toughening agent and blending method on the thermal properties, rheological properties, and mechanical properties of the blends were examined.
Highlights Copolymer was synthesized as a toughening agent for polyphenylene sulfide (PPS).
Copolymer demonstrates good thermal stability properties.
Adding copolymer and EGMA significantly improved the toughness of PPS.

Related Results

Effect of quercetin on the structure and oxidation resistance of polyphenylene sulfide fiber prepared by melt spinning
Effect of quercetin on the structure and oxidation resistance of polyphenylene sulfide fiber prepared by melt spinning
Polyphenylene sulfide fiber is easily oxidized at high temperature, thus vastly reducing its application range. In this study, polyphenylene sulfide/quercetin fibers were prepared ...
Montmorillonite-reinforced nanocomposite from off-grade plastics materials using response surface analysis
Montmorillonite-reinforced nanocomposite from off-grade plastics materials using response surface analysis
Off-grade thermoplastic poly(ethylene terephthalate) of industrial manufacturers was partially depolymerized to synthesize poly(ethylene terephthalate) oligomers. Influences of rea...
Controlling Ethylene Responses in Horticultural Crops at the Receptor Level
Controlling Ethylene Responses in Horticultural Crops at the Receptor Level
Ethylene is a plant hormone that controls many plant responses, such as growth, senescence, ripening, abscission and seed germination. Recently, 1-methy- cyclopropene (1-MCP), was ...
SAFETY CONTROL SYSTEMS FOR ETHYLENE PRODUCTION
SAFETY CONTROL SYSTEMS FOR ETHYLENE PRODUCTION
Ethylene production is a cornerstone of the petrochemical industry, with a global demand that continues to rise. Ensuring efficient, safe, and environmentally responsible ethylene ...
Efficient Bioconversion of Raspberry Ketone in Escherichia Coli Using Fatty Acids Feedstocks
Efficient Bioconversion of Raspberry Ketone in Escherichia Coli Using Fatty Acids Feedstocks
Abstract BackgroundPhenylpropanoid including raspberry ketone, is a kind of important natural plant product and widely used in pharmaceuticals, chemicals, cosmetics, and he...
Characterization of Material Extrusion-Printed Amorphous Poly(Ether Ketone Ketone) (PEKK) Parts
Characterization of Material Extrusion-Printed Amorphous Poly(Ether Ketone Ketone) (PEKK) Parts
Poly(ether ketone ketone) (PEKK), as a representative of high-performance poly(aryl ether ketones), shows outstanding thermomechanical properties, opening up a huge range of differ...
Ethylene Mediated Regulation of Sex Expression in Cucumis
Ethylene Mediated Regulation of Sex Expression in Cucumis
Monoecious species such as melon and cucumber develop separate male and female (or bisexual) flowers on the same plant individual. They display complex genetic and hormonal regulat...

Back to Top