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41por Martin, Jacob W., Pascazio, Laura, Menon, Angiras, Akroyd, Jethro, Kaiser, Katharina, Schulz, Fabian, Commodo, Mario, D’Anna, Andrea, Gross, Leo, Kraft, Markus“…The mechanism by which soot nanoparticles form within hydrocarbon flames is still an unsolved problem in combustion science. …”
Publicado 2021
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42por The Lancet Respiratory MedicineEnlace del recurso
Publicado 2021
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43Flame retardant properties and mechanism of PLA/P-PPD -Ph /ECE conjugated flame retardant composites“…The structural, thermal, flame retardant and mechanical properties of PLA/P-PPD-Ph/ECE conjugated flame retardant composites were characterised. …”
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44“…A new strategy for the preparation of an integrated three-source intumescent flame retardant (IFR) has been developed to improve the flame-retardant and smoke suppression performance of epoxy resin (EP) with a synergistic flame retardant effect. …”
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45“…In this study, a novel flame retardant (PMrG) was developed by self-assembling melamine and phytic acid (PA) onto rGO, and then applying it to the improvement of the flame resistance of PLA. …”
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46“…PET/DIDOPO conjugated flame retardant composites were prepared by melt blending of styrene bridged DOPO (DIDOPO) into polyethylene terephthalate (PET). …”
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47“…Combinations of multiple inorganic fillers have emerged as viable synergistic agents for boosting the flame retardancy of intumescent flame retardant (IFR) polymer materials. …”
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49por Kupervasser, Oleg“…Pole solutions for flame front propagation are developed. Premixed flames and filtration combustion have remarkable properties: the complex nonlinear integro-differential equations for these problems have exact analytical solutions described by the motion of poles in a complex plane. …”
Publicado 2015
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51“…Brominated flame retardants (BFRs) have routinely been added to consumer products for several decades in a successful effort to reduce fire-related injury and property damage. …”
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52“…An overview of commercially used flame retardants is give. The most used flame retardants are illustrated and the seven major markets, which use 96% of all flame-retarded polymers, are described. …”
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53“…Physicomechanical and other properties of all test specimens were tested before exposition to open flame: density, compressive strength, flexural strength, moisture content, and surface appearance. …”
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54por Yoshikawa, HidekiEnlace del recurso
Publicado 2015
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56“…Flame Retardancy Index, FRI, was defined as a simple yet universal dimensionless criterion born out of cone calorimetry data on thermoplastic composites and then put into practice for quantifying the flame retardancy performance of different polymer composites on a set of reliable data. …”
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57“…However, among other applications, the flame retardancy of such polymers needs to be improved for technical applications due to potential fire risk and their involvement in our daily life. …”
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58por Seidi, Farzad, Movahedifar, Elnaz, Naderi, Ghasem, Akbari, Vahideh, Ducos, Franck, Shamsi, Ramin, Vahabi, Henri, Saeb, Mohammad Reza“…However, high flammability of PP has always been noticed by users as a constraint; therefore, a variety of additives has been examined to make PP flame-retardant. In this work, research papers on the flame retardancy of PP have been comprehensively reviewed, classified in terms of flame retardancy, and evaluated based on the universal dimensionless criterion of Flame Retardancy Index (FRI). …”
Publicado 2020
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60por Howell, Bob A.“…The development of new organophosphorus flame retardants for polymeric materials is spurred by relatively low toxicity, effectiveness, and demand for replacement of more traditional materials. …”
Publicado 2022
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