POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUOROPROPYLENE)
- $67.7 - $999
- Product name: POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUOROPROPYLENE)
- CAS: 9011-17-0
- MF: C5H2F8
- MW: 214.06
- EINECS:
- MDL Number:MFCD00212573
- Synonyms:1-Propene,1,1,2,3,3,3-hexafluoro-,polymerwith1,1-difluoroethene ;POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUOROPROPYLENE);POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUORO-P ROPYLENE), MELT INDEX 4-10;POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUORO-P ROPYLENE), AVERAGE MN CA. 130,000;POLY(VINYLIDENE FLUORIDE-CO-HEXAFLUORO-P ROPYLENE), AVERAGE MN CA. 110,000;HEXAFLUOROPROPYLENE-VINYLDENE-FLUORIDE,COPOLYMER;HEXAFLUOROPROPYLENE-VINYLIDENEFLUORIDE,COPOLYMER;Hexafluoropropylene-vinylidene fluoride: (Viton)
5 prices
Selected condition:
Brand
- Sigma-Aldrich
Package
- 1EA
- 100g
- ManufacturerSigma-Aldrich
- Product number427160
- Product descriptionPoly(vinylidene fluoride-co-hexafluoropropylene) average M
- Packaging100g
- Price$67.7
- Updated2024-03-01
- Buy
- ManufacturerSigma-Aldrich
- Product number427187
- Product descriptionPoly(vinylidene fluoride-co-hexafluoropropylene) pellets
- Packaging100g
- Price$72.9
- Updated2024-03-01
- Buy
- ManufacturerSigma-Aldrich
- Product number427179
- Product descriptionPoly(vinylidene fluoride-co-hexafluoropropylene) average Mw ~455,000, average Mn ~110,000, pellets
- Packaging100g
- Price$79.3
- Updated2024-03-01
- Buy
- ManufacturerSigma-Aldrich
- Product numberGF68290746
- Product descriptionHexafluoropropylenevinylidenefluoride Copolymer (FKM ), sheet, thickness 3?mm, size 300 × 300?mm, black
- Packaging1EA
- Price$735
- Updated2023-06-20
- Buy
- ManufacturerSigma-Aldrich
- Product numberGF01808681
- Product descriptionHexafluoropropylenevinylidenefluoride Copolymer (FKM ), sheet, thickness 1?mm, size 1000 × 1000?mm, tolerance 0.2
- Packaging1EA
- Price$999
- Updated2023-06-20
- Buy
Manufacturer | Product number | Product description | Packaging | Price | Updated | Buy |
---|---|---|---|---|---|---|
Sigma-Aldrich | 427160 | Poly(vinylidene fluoride-co-hexafluoropropylene) average M | 100g | $67.7 | 2024-03-01 | Buy |
Sigma-Aldrich | 427187 | Poly(vinylidene fluoride-co-hexafluoropropylene) pellets | 100g | $72.9 | 2024-03-01 | Buy |
Sigma-Aldrich | 427179 | Poly(vinylidene fluoride-co-hexafluoropropylene) average Mw ~455,000, average Mn ~110,000, pellets | 100g | $79.3 | 2024-03-01 | Buy |
Sigma-Aldrich | GF68290746 | Hexafluoropropylenevinylidenefluoride Copolymer (FKM ), sheet, thickness 3?mm, size 300 × 300?mm, black | 1EA | $735 | 2023-06-20 | Buy |
Sigma-Aldrich | GF01808681 | Hexafluoropropylenevinylidenefluoride Copolymer (FKM ), sheet, thickness 1?mm, size 1000 × 1000?mm, tolerance 0.2 | 1EA | $999 | 2023-06-20 | Buy |
Properties
Melting point :115-135℃
Density :1.78 g/mL at 25 °C
refractive index :n20/D 1.42
form :pellets
EPA Substance Registry System :1-Propene, 1,1,2,3,3,3-hexafluoro-, polymer with 1,1-difluoroethene (9011-17-0)
Density :1.78 g/mL at 25 °C
refractive index :n
form :pellets
EPA Substance Registry System :1-Propene, 1,1,2,3,3,3-hexafluoro-, polymer with 1,1-difluoroethene (9011-17-0)
Safety Information
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Description
Details of the processes used to produce vinylidene fluoride-hexafluoropropylene copolymers have not been disclosed but the copolymers may be prepared by emulsion polymerization under pressure using a persulphatebisulphite initiator system. Highly fluorinated surfactants, such as ammonium perfluorooctoate, are most commonly used in order to avoid chain transfer reactions. The preferred vinylidene fluoride content for commercial copolymers is about 70% mole. The structure of such a copolymer might be represented as follows:NMR studies confirm that head-to-tail arrangements predominate in the copolymers. It may be noted that under the conditions normally used to prepare commercial copolymers, hexafluoropropylene does not homopolymerize and so the molar proportion of this monomer in a copolymer cannot exceed 50% whatever the composition of the monomer feed.
Commercial copolymers typically have an average molecular weight (Mn) of about 70000.
Since the copolymers are saturated, they cannot be vulcanized by conventional sulphur systems. However, they may be vulcanized by aliphatic amines and derivatives, aromatic dihydroxylic compounds and peroxides; all of these methods are practised commercially. Free diamines react too quickly, causing premature vulcanization or scorching during mixing. One method of reducing the tendency to scorch is to use diamines in the form of their inner carbamates; hexamethylenediamine carbamate (VIII) and ethylenediamine carbamate (IX) are employed commercially. Alternatively, the Schiff's bases of diamines function as delayed-action vulcanizing agents; examples of compounds of this type are N, N'-dicinnamylidene-l,6-hexanediamine (X) and N, N'-disalicylpropylenediamine (XI).
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