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Solvay Specialty Polymers Solef® 3108/0903 Anti-static PVDF Compound  (discontinued **)

Category Polymer , Thermoplastic , Fluoropolymer , PVDF , Polyvinylidinefluoride (PVDF), Molded/Extruded
Manufacturer
Trade Name
Port Shanghai port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Solvay Specialty Polymers Solef® 3108/0903 Anti-static PVDF Compound  (discontinued **).pdf
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Material Notes:
Key features of this grade: Anti-static, Formulated. Recommended processing is injection. Available as granules.General information about SOLEF® PVDF: SOLEF® PVDF is a fluorinated semi-crystalline thermoplastic which is obtained by polymerizing vinylidene fluoride. Important properties include excellent chemical resistance to most aggressive substances and solvents, excellent mechanical strength and toughness, high abrasion resistance, high temperature capabilities, excellent aging resistance, high purity, resistance to UV and nuclear radiation, excellent intrinsic fire resistance, resistance to weathering, low permeability to most gases and liquids, and easily melt-processed by standard methods of molding and extrusion.Tensile properties are achieved with varying methods of sample fabrication. Information provided by Solvay Solexis, Inc.
Physical Properties Metric English Comments
Density 1.83 g/cc
0.0661 lb/in³
ISO 1183
Water Absorption <= 0.070 %
<= 0.070 %
ISO 62 (method 1)
Linear Mold Shrinkage 0.010 - 0.030 cm/cm
0.010 - 0.030 in/in
Melt Flow 2.0 g/10 min

@Load 2.16 kg,
Temperature 230 °C
2.0 g/10 min

@Load 4.76 lb,
Temperature 446 °F
ASTM D1238
6.0 g/10 min

@Load 5.00 kg,
Temperature 230 °C
6.0 g/10 min

@Load 11.0 lb,
Temperature 446 °F
ASTM D1238
Mechanical Properties Metric English Comments
Hardness, Shore D 82

@Thickness 2.00 mm
82

@Thickness 0.0787 in
ASTM D2240
Tensile Strength, Ultimate 40.0 - 60.0 MPa
5800 - 8700 psi
50 mm/min; ASTM D638
Tensile Strength, Yield 56.0 - 60.0 MPa
8120 - 8700 psi
50 mm/min; ASTM D638
Elongation at Break 20 - 30 %
20 - 30 %
50 mm/min; ASTM D638
Elongation at Yield 3.0 - 5.0 %
3.0 - 5.0 %
50 mm/min; ASTM D638
Modulus of Elasticity 4.20 GPa
609 ksi
1 mm/min; ASTM D638
Flexural Yield Strength 89.0 MPa
12900 psi
2 mm/min; ASTM D790
Flexural Modulus 4.50 GPa
653 ksi
2 mm/min; ASTM D790
Izod Impact, Notched 0.600 J/cm

@Thickness 4.00 mm,
Temperature 23.0 °C
1.12 ft-lb/in

@Thickness 0.157 in,
Temperature 73.4 °F
Notched V 10 mm; ASTM D256
Coefficient of Friction 0.20 - 0.30
0.20 - 0.30
ASTM D1894
Coefficient of Friction, Static 0.20 - 0.40
0.20 - 0.40
ASTM D1894
Taber Abrasion, mg/1000 Cycles 5.0 - 10
5.0 - 10
CS10 / 1 kg
Thermal Properties Metric English Comments
Heat of Fusion 59.0 J/g
25.4 BTU/lb
Crystallization Heat
67.0 J/g
28.8 BTU/lb
80°C to end of melting
CTE, linear 120 - 140 µm/m-°C

@Temperature 20.0 °C
66.7 - 77.8 µin/in-°F

@Temperature 68.0 °F
ASTM D696
Thermal Conductivity 0.300 W/m-K
2.08 BTU-in/hr-ft²-°F
ASTM C177
Melting Point 174 °C
345 °F
Crystallinity by DSC; ASTM D 3418
Crystallization Temperature 140 °C
284 °F
Deflection Temperature at 0.46 MPa (66 psi) 152 °C

@Thickness 4.00 mm
306 °F

@Thickness 0.157 in
after annealing 150°C 16 hr; ASTM D648
Deflection Temperature at 1.8 MPa (264 psi) 156 °C

@Thickness 4.00 mm
313 °F

@Thickness 0.157 in
after annealing 150°C 16 hr; ASTM D648
Vicat Softening Point 168 °C

@Load 1.00 kg,
Thickness 4.00 mm
334 °F

@Load 2.20 lb,
Thickness 0.157 in
ISO 306
Brittleness Temperature >= 0.000 °C
>= 32.0 °F
ASTM D746A
Decomposition Temperature 300 - 350 °C
572 - 662 °F
Thermal Stability via TGA : beginning - and at 1% weight loss in air
Electrical Properties Metric English Comments
Electrical Resistivity >= 1.00e+14 ohm-cm
>= 1.00e+14 ohm-cm
Intensity = 10 mA after 2 min @ 23°C; ASTM D 257; DIN 53483
Surface Resistance <= 1000 ohm
<= 1000 ohm
Voltage < 1 V after 2 min - 500 V; ASTM D 257/DIN 53483
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