Flame retardant polymer materials: An update and the future for 3D printing developments

H Vahabi, F Laoutid, M Mehrpouya, MR Saeb… - Materials Science and …, 2021 - Elsevier
Fire safety has become a major concern due to the ubiquitous use of polymers. The
development of flame retardant polymer materials has consequently experienced a huge …

[HTML][HTML] Intrinsically flame retardant polyamides: Research progress in the last 15 years

N Drigo, S Gaan - Advanced Industrial and Engineering Polymer …, 2023 - Elsevier
Polyamides are essential thermoplastics whose current worldwide annual production
exceeds 10 million tons. They are ubiquitous and easily ignitable polymeric materials that …

[HTML][HTML] Recyclable flame retardant phosphonated epoxy based thermosets enabled via a reactive approach

WW Klingler, V Rougier, Z Huang, D Parida… - Chemical Engineering …, 2023 - Elsevier
The development of reusable fire-safe polymers with a prolonged lifetime heralds the switch
for a transition towards circular economy. In this framework, we report a novel phosphonated …

[HTML][HTML] Novel polyamide 6 composites based on Schiff-base containing phosphonate oligomer: High flame retardancy, great processability and mechanical property

FM He, BW Liu, L Chen, DM Guo, XM Ding… - Composites Part A …, 2021 - Elsevier
Conventional methods of improving the flame retardancy of PA 6 usually involve the
sacrifice of mechanical properties, which is unfavorable for the practical application. Herein …

Designing Fe-containing polyhedral oligomeric silsesquioxane to endow superior mechanical and flame-retardant performances of polyamide 1010

X Ye, X Meng, Z Han, Y Qi, Z Li, P Tian, W Wang… - … Science and Technology, 2023 - Elsevier
With increasing attention to environmental safety and health, long-chain biologically-based
polyamides (PA) are considered to be promising materials owing to their biocompatibility …

New sustainable flame retardant DOPO-NH-functionalized polyamide 6 and filament yarn

M Čolović, J Vasiljević, Ž Štirn, NČ Korošin… - Chemical Engineering …, 2021 - Elsevier
This work presents a unique approach for the preparation of a flame retardant (FR)
polyamide 6 (PA6) polymer with chemically bonded 9, 10-dihydro-9, 10-oxa-10 …

[HTML][HTML] In-situ phosphine oxide physical networks: A facile strategy to achieve durable flame retardant and antimicrobial treatments of cellulose

R Nazir, D Parida, J Borgstädt, S Lehner… - Chemical Engineering …, 2021 - Elsevier
A facile methodology to durably modify cellulose fibers by forming in-situ phosphine oxide
macromolecular physical networks is developed in this work. Such networks were formed by …

[HTML][HTML] Investigating thermomechanical recycling of poly (ethylene terephthalate) containing phosphorus flame retardants

C Bascucci, I Duretek, S Lehner, C Holzer… - Polymer Degradation …, 2022 - Elsevier
Abstract Poly (ethylene terephthalate)(PET) has wide usage in packaging and fiber
industries thanks to its superior mechanical, thermal, and barrier properties. It is also one of …

A phosphorous/nitrogen-containing flame retardant with UV-curing for polyester/cotton fabrics

X Yang, X Liu, X Yang, Q Zhang, Y Zheng, Y Ren… - Cellulose, 2022 - Springer
Abstract Polyester/cotton (PET/CO) fabrics usually burn more violently than single-
component fabric due to significant differences of two components as well as “wick effect” …

Effect of different flame-retardant bridged DOPO derivatives on properties of in situ produced fiber-forming polyamide 6

J Vasiljević, M Čolović, N Čelan Korošin, M Šobak… - Polymers, 2020 - mdpi.com
The production of sustainable and effective flame retardant (FR) polyamide 6 (PA6) fibrous
materials requires the establishment of a novel approach for the production of polyamide …