TBBA(TBBPA), a highly effective brominated flame retardant of our company, can be used as a reactive-type flame retardant in epoxy resin. polyurethane resin, BDDP, etc.. and also as an additive-type flame retardant in PS, SAN resins, ABS resins, etc.
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TBBA
Product name: TBBA
Molecular Formula : C15H12Br14O2
Molecular Weight:543.87
The CAS Number: 79-94-7
EINECS Number: 201-236-9
Size yüksek kaliteli ürünler ve rekabetçi fiyatlar sağlayabilecek, derin işbirliğine sahip birçok yüksek kaliteli fabrikamız var. Ayrıca toplu alımlarda indirim de yapabiliyoruz. Ayrıca birçok profesyonel nakliye firmasıyla işbirliği yaparak ürünleri güvenli ve sorunsuz bir şekilde elinize ulaştırabiliyoruz. Teslim süresi ödeme onaylandıktan sonra yaklaşık 3-20 gündür.
TetrabromobisphA Basic information |
|
Product Name: |
TetrabromobisphA |
CAS: |
79-94-7 |
MF: |
C15H12Br4O2 |
MW: |
543.87 |
EINECS: |
201-236-9 |
Mol File: |
79-94-7.mol |
TetrabromobispA Structure |
|
Tetrabromobisph A Chemical Properties |
|
Erime noktası |
178-181 °C(lit.) |
Kaynama noktası |
316 °C |
yoğunluk |
2.1 |
kırılma indisi |
1.5000 (estimate) |
depolama sıcaklığı |
2-8°C |
çözünürlük |
Insoluble |
pka |
8.50±0.10(Predicted) |
biçim |
neat |
Suda Çözünürlük |
Insoluble |
BRN |
1889048 |
CAS DataBase Reference |
79-94-7(CAS DataBase Reference) |
IARC |
2A (Vol. 115) 2018 |
NIST Chemistry Reference |
Phe, 4,4'-(2,2-propanediyl) bis[2,6-dibromo]-(79-94-7) |
EPA Substance Registry System |
Tetrabromobisphl A (79-94-7) |
As a multifunctional rubber additive, TAIC can be applied in the following three fields:
1. Plastic TAIC can improve the heat resistance, chemical stability and thermosetting properties of CPE, PE, PA, PBT, PVC and other plastic materials.
2. Rubber TAIC can provide a low compression set and improved thermal aging performance for a variety of synthetic rubbers (such as EPDM, HNBR, TPE, FKM, EVA).
3. The combination of photovoltaic TAIC and peroxide can improve the curing speed, improve production efficiency, save production costs, and enhance the efficiency / efficiency of solar modules by improving the transparency of EVA sealing materials.
Note: in order to obtain the necessary structural stability, EVA coating has to be crosslinked by peroxide during the lamination process. By using TAIC as a crosslinking additive in EVA coating, the crosslinking process is significantly improved, resulting in the following advantages / advantages:
A. Curing time reduction / cost savings
B. Increase of glue content / crosslinking degree
C. Increased transparency
D. Improved color stability by shorter curing time
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