| Literature DB >> 30960364 |
Wei Zhao1, Yongxiang Li2,3, Qiushi Li4,5, Yiliang Wang6, Gong Wang7,8.
Abstract
The flame retardant modification ofEntities:
Keywords: epoxy resin; flame retardant; glass transition temperature; kinetics; polysulfone; structure-property effect
Year: 2019 PMID: 30960364 PMCID: PMC6419410 DOI: 10.3390/polym11020380
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1Chemical structures of the polysulfones used in this study.
Compositions and vertical burning tests results of all epoxy composites.
| Samples | DGEBA (g) | m-PDA (g) | Polysulfone (g) | P (wt %) | UL-94 (3.2 mm) |
|---|---|---|---|---|---|
| EP | 50.00 | 6.00 | 0 | 0 | No rating |
| EP/ArPN2 | 50.00 | 6.00 | 9.88 | 1.25 | V-0 |
| EP/ArPO2 | 50.00 | 6.00 | 9.88 | 1.25 | V-1 |
| EP/ArOPN2 | 50.00 | 6.00 | 10.35 | 1.25 | No rating |
| EP/ArOPO2 | 50.00 | 6.00 | 10.35 | 1.25 | No rating |
Thermal properties of epoxy (EP) and EP/polysulfone composites.
| Sample | Char | |||
|---|---|---|---|---|
| EP | 147.8 | 369 | 394 | 12.7/-- |
| EP/ArPN2 | 146.1 | 317 | 339,373 | 21.7/18.0 |
| EP/ArPO2 | 150.7 | 317 | 364 | 24.9/16.4 |
| EP/ArOPN2 | 134.0 | 313 | 365 | 25.2/17.5 |
| EP/ArOPO2 | 145.5 | 310 | 365 | 27.5/17.0 |
Char yield at 700 °C.
Figure 2Differential scanning calorimetry (DSC) curves of polysulfone (a) as well as EP and EP/polysulfone composites (b).
Figure 3Thermogravimetric analysis (TGA) curves of polysulfone (a) as well as EP and EP/polysulfone composites (b).
Cone calorimetric data for EP and EP/polysulfone composites at 50 kW·m−2.
| Sample | TTI | PHRR | THR | TML | TSR | THR/TML | TSR/TML | TCOR/TML |
|---|---|---|---|---|---|---|---|---|
| EP | 50 | 1712 | 83.7 | 93.0 | 22.4 | 3.85 | 117 | 0.11 |
| EP/ArPN2 | 29 | 847 | 61.5 | 80.2 | 18.3 | 3.27 | 110 | 0.15 |
| EP/ArPO2 | 32 | 608 | 42.7 | 82.7 | 19.2 | 2.31 | 117 | 0.18 |
| EP/ArOPN2 | 30 | 546 | 59.4 | 77.1 | 11.4 | 3.42 | 75 | 0.14 |
| EP/ArOPO2 | 30 | 726 | 55.3 | 80.8 | 14.8 | 3.09 | 94 | 0.14 |
Figure 4Macroscopic photos of cone calorimeter residue (a) and heat release rate (HRR) curves of EP and EP/polysulfone composites (b).
X-ray photoelectron spectroscopy (XPS) results of the residual char of EP and EP/polysulfone composites.
| Sample | C (% | N (%) | O (%) | P (%) | S (%) |
|---|---|---|---|---|---|
| EP | 82.82 | 3.22 | 13.77 | 0.10 | 0.09 |
| EP/ArPN2 Inner | 82.49 | 1.10 | 16.10 | 0.13 | 0.18 |
| EP/ArPN2 Outer | 79.19 | 3.16 | 16.65 | 0.84 | 0.17 |
| EP/ArPO2 Inner | 81.80 | 1.11 | 16.74 | 0.14 | 0.21 |
| EP/ArPO2 Outer | 75.52 | 2.88 | 19.28 | 2.05 | 0.26 |
| EP/ArOPN2 Inner | 80.87 | 1.09 | 17.52 | 0.28 | 0.24 |
| EP/ArOPN2 Outer | 71.34 | 5.53 | 19.78 | 2.92 | 0.43 |
| EP/ArOPO2 Inner | 80.92 | 3.26 | 14.35 | 1.24 | 0.23 |
| EP/ArOPO2 Outer | 72.17 | 4.50 | 19.98 | 2.87 | 0.48 |
Atomic concentration.
Figure 5Absorbance of gas products for EP and EP/polysulfone composites vs. time: (a) H2O; (b) hydrocarbons; (c) acetone; (d) aromatic compounds.
Figure 6SEM images of surface for residual char of pure EP and EP/polysulfone composites.
Calculated Ea at various conversions using the FWO method for EP/polysulfone composites.
| α | EP | EP/ArPN2 | EP/ArPO2 | EP/ArOPN2 | EP/ArOPO2 | |||||
|---|---|---|---|---|---|---|---|---|---|---|
|
|
|
|
|
| ||||||
| 0.10 | 147.37 | 0.9967 | 147.37 | 0.9967 | 138.74 | 0.9716 | 140.61 | 0.9816 | 99.57 | 0.9145 |
| 0.20 | 147.37 | 0.9967 | 147.37 | 0.9967 | 167.26 | 0.9593 | 167.26 | 0.9593 | 123.07 | 0.9210 |
| 0.30 | 147.37 | 0.9967 | 135.22 | 0.9907 | 168.51 | 0.9884 | 187.00 | 0.9665 | 136.91 | 0.9220 |
| 0.40 | 160.52 | 0.9974 | 136.91 | 1.0000 | 168.51 | 0.9884 | 167.26 | 0.9593 | 148.01 | 0.9586 |
| 0.50 | 165.05 | 0.9959 | 147.37 | 0.9967 | 168.51 | 0.9884 | 167.26 | 0.9593 | 148.74 | 0.9189 |
| 0.60 | 165.05 | 0.9959 | 147.37 | 0.9967 | 185.75 | 0.9876 | 185.75 | 0.9876 | 148.74 | 0.9189 |
| 0.70 | 165.05 | 0.9959 | 165.05 | 0.9959 | 187.00 | 0.9665 | 209.03 | 0.9650 | 169.86 | 0.9215 |
| 0.80 | 165.05 | 0.9959 | 209.40 | 0.9956 | 240.97 | 0.9757 | 240.97 | 0.9757 | 209.03 | 0.9650 |
| 0.85 | 167.34 | 0.9949 | 221.17 | 0.9962 | 243.09 | 0.9370 | 296.63 | 0.9657 | 283.60 | 0.9604 |
| 0.90 | 178.58 | 0.9836 | 260.79 | 0.9636 | 250.73 | 0.8971 | 406.83 | 0.9740 | 383.36 | 0.9849 |
| 0.95 | 383.36 | 0.9849 | 315.60 | 0.9846 | 312.94 | 0.9335 | 410.74 | 0.9220 | 406.83 | 0.9740 |
Figure 7Activation energy curves of pure EP and EP/polysulfone composites.