Synergistic effect of modified anhydrous magnesium carbonate and hexaphenoxycyclotriphosphazene on flame retardancy of ethylene-vinyl acetate copolymer. [PDF]
Liu Y, Xu S, Chen Q, Xu J, Sun B.
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A Novel Intumescent MCA-Modified Sodium Silicate/Acrylic Flame-Retardant Coating to Improve the Flame Retardancy of Wood. [PDF]
Wang Y +8 more
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Poly(ester imide)s with Low Linear Coefficients of Thermal Expansion and Low Water Uptake (VIII): Structure-Flame Retardancy Relationship. [PDF]
Hasegawa M, Takeuchi Y, Saito T.
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Green flame-retardant rigid polyurethane foam with cobalt hydroxystannate to improve the thermal stability, flame retardancy and smoke suppression properties. [PDF]
Zhang X, Wang Z, Sun S, Wang Z, Xie H.
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Flame retardant polyesters. I. Phosphorous flame retardants
Journal of Applied Polymer Science, 2007AbstractCommercially available two types of phosphorous flame retardants (FRs) for polyester were compared from the viewpoint of chemical reactivity, reaction mechanism, and byproduct formation. 3‐(Hydroxyphenyl phosphinyl) propanoic acid (HPP) and 9,10‐dihydro‐9‐oxa‐10‐2,3‐dicarbonylpropyl)‐10‐phosphophenanthrene‐10‐oxide (DI) were used as a main ...
Seung‐Cheol Yang, Jae Pil Kim
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Flame retardants are chemical additives that are incorporated into products such as plastics, textiles, leather, paper and rubber and have an important role in safeguarding lives and property. Polymers such as thermoplastics and thermosetting resins, for example, epoxy resins and elastomers have wide-ranging applications hence floor coverings, fabrics,
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Flame Retardants and Flame-Retarded Plastics
2021Jürgen Troitzsch, Edith Antonatus
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Biopolymer‐Based Flame Retardants and Flame‐Retardant Materials
Advanced MaterialsAbstract Polymeric materials featuring excellent flame retardancy are essential for applications requiring high levels of fire safety, while those based on biopolymers are highly favored due to their eco‐friendly nature, sustainable characteristics, and abundant availability.
Ying‐Jun Xu +3 more
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