RAVENOL DOT 4
- Specifications
- ISO 4925 Klasse 4
- FMVSS 116 DOT 4
- SAE J1704
- Categories
- Brake fluid
RAVENOL DOT 4 is a brake fluid for the use in all vehicles with optimum ABS characteristics. There is a chemical stability and it is provided with additives which save the best lubrication efficiency.
Because of the special formulation of RAVENOL DOT 4 the international specifications SAE J1703, ISO 4925 and the safety regulations FMVSS 116 DOT3 and DOT4 from the United States of America are exceeded.
Application Notes
RAVENOL DOT 4 can be used in all vehicles for which the DOT 4 specification for brake fluids is required. It is suitable for all hydraulic brake systems with synthetic fluids.
RAVENOL DOT 4 is miscible with all known brake fluids of the same specification.
Characteristics
RAVENOL DOT 4 offers:
- optimum ABS characteristics.
- chemical stability.
- best lubrication efficiency.
- neutral behaviour regarding brake parts.
- low viscosity at low temperatures.
- miscible with all brake fluids of the same specifications.
Property | Unit | Data | Audit |
---|---|---|---|
Colour | hellgelb | visual | |
Density at 20°C | kg/m³ | 1052 | DIN ISO 12185 |
Boiling point | °C | 271 | ISO 4925 |
wet boiling point | °C | 169 | ISO 4925 |
Viscosity at -40°C | mPa*s | 1340 | DIN EN ISO 3104 |
kinematic viscosity at 100°C | mm²/s | 2,41 | ASTM D445 |
pH-Wert | 8,53 | FMVSS 116 | |
High Temperature Stability | °C | -1 | FMVSS 116 |
Chemical Stability | °C | 1 | FMVSS 116 |
Evaporation loss | Gew% | 61 | FMVSS 116 |
Fluidity & Appearance at -40°C | i.O., 4s | FMVSS 116 | |
Fluidity & Appearance at -50°C | i.O., 8s | FMVSS 116 | |
Water Tolerance at -40°C | klar, 3s | FMVSS 116 | |
Water Tolerance at +60°C | klar, keine Ablagerungen | FMVSS 116 | |
Compatibility at -40°C | klar, keine Phasentrennung | FMVSS 116 | |
Compatibility at +60°C | klar, keine Ablagerungen | FMVSS 116 | |
Water content | Gew.-% | <0,2 | Karl Fischer |
Corrosion Resistance | |||
Tinned Iron | Δ mg/cm² | -0,03 | FMVSS 116 |
_ | Aussehen | gut | |
Steel | Δ mg/cm² | -0,01 | FMVSS 116 |
_ | Aussehen | gut | |
Aluminium | Δ mg/cm² | 0 | FMVSS 116 |
_ | Aussehen | gut | |
Cast Iron | Δ mg/cm² | -0,03 | FMVSS 116 |
_ | Aussehen | gut | |
Brass | Δ mg/cm² | -0,08 | FMVSS 116 |
_ | Aussehen | gut | |
Copper | Δ mg/cm² | -0,05 | FMVSS 116 |
_ | Aussehen | gut | |
Zinc | Δ mg/cm² | 0,01 | FMVSS 116 |
_ | Aussehen | gut | |
Aussehen der Flüssigkeit | i.O. | ||
Ablagerungen | % | <0,05 | FMVSS 116 |
pH-Wert | 8,2 | FMVSS 116 | |
Veränderung des Durchmessers von Gummi | 0,16 | FMVSS 116 | |
Veränderung der Härte | IRHD | -4 | FMVSS 116 |
Erscheinungsbild | i.O. | ||
Oxidationsbeständigkeit | |||
Tinned Iron | Δ mg/cm² | 0,04 | FMVSS 116 |
_ | Aussehen | gut | |
Aluminium | Δ mg/cm² | 0,02 | FMVSS 116 |
_ | Aussehen | gut | |
SBR bei 70°C | Ø Veränderung, mm | 0,56 | FMVSS 116 |
__ | Härte, IRHD | -3 | FMVSS 116 |
___ | Volumen, % | 6,21 | FMVSS 116 |
_ | Aussehen | gut | |
SBR bei 120°C | Ø Veränderung, mm | 0,73 | FMVSS 116 |
__ | Härte, IRHD | -7 | FMVSS 116 |
___ | Volumen, % | 7,69 | FMVSS 116 |
_ | Aussehen | gut | |
EPDM bei 70°C (Anforderung aus SAE J1703) | Härte, IRHD | -2 | FMVSS 116 |
___ | Volumen, % | 1.39 | FMVSS 116 |
_ | Aussehen | gut | |
EPDM bei 120°C | Härte, IRHD | -2 | FMVSS 116 |
___ | Volumen, % | 1,91 | FMVSS 116 |
_ | Aussehen | gut | |
Naturell bei 70°C (Anforderung aus ISO 4925) | Ø Veränderung, mm | 0,38 | FMVSS 116 |
__ | Härte, IRHD | -5 | FMVSS 116 |
___ | Volumen, % | 4,61 | FMVSS 116 |
_ | Aussehen | gut | |
Colour | hellgelb | visual | |
Density at 20°C | kg/m³ | 1052 | DIN ISO 12185 |
Boiling point | °C | 271 | ISO 4925 |
wet boiling point | °C | 169 | ISO 4925 |
Viscosity at -40°C | mPa*s | 1340 | DIN EN ISO 3104 |
kinematic viscosity at 100°C | mm²/s | 2,41 | ASTM D445 |
pH-Wert | 8,53 | FMVSS 116 | |
High Temperature Stability | °C | -1 | FMVSS 116 |
Chemical Stability | °C | 1 | FMVSS 116 |
Evaporation loss | Gew% | 61 | FMVSS 116 |
Fluidity & Appearance at -40°C | i.O., 4s | FMVSS 116 | |
Fluidity & Appearance at -50°C | i.O., 8s | FMVSS 116 | |
Water Tolerance at -40°C | klar, 3s | FMVSS 116 | |
Water Tolerance at +60°C | klar, keine Ablagerungen | FMVSS 116 | |
Compatibility at -40°C | klar, keine Phasentrennung | FMVSS 116 | |
Compatibility at +60°C | klar, keine Ablagerungen | FMVSS 116 | |
Water content | Gew.-% | <0,2 | Karl Fischer |
Corrosion Resistance | |||
Tinned Iron | Δ mg/cm² | -0,03 | FMVSS 116 |
_ | Aussehen | gut | |
Steel | Δ mg/cm² | -0,01 | FMVSS 116 |
_ | Aussehen | gut | |
Aluminium | Δ mg/cm² | 0 | FMVSS 116 |
_ | Aussehen | gut | |
Cast Iron | Δ mg/cm² | -0,03 | FMVSS 116 |
_ | Aussehen | gut | |
Brass | Δ mg/cm² | -0,08 | FMVSS 116 |
_ | Aussehen | gut | |
Copper | Δ mg/cm² | -0,05 | FMVSS 116 |
_ | Aussehen | gut | |
Zinc | Δ mg/cm² | 0,01 | FMVSS 116 |
_ | Aussehen | gut | |
Aussehen der Flüssigkeit | i.O. | ||
Ablagerungen | % | <0,05 | FMVSS 116 |
pH-Wert | 8,2 | FMVSS 116 | |
Veränderung des Durchmessers von Gummi | 0,16 | FMVSS 116 | |
Veränderung der Härte | IRHD | -4 | FMVSS 116 |
Erscheinungsbild | i.O. | ||
Oxidationsbeständigkeit | |||
Tinned Iron | Δ mg/cm² | 0,04 | FMVSS 116 |
_ | Aussehen | gut | |
Aluminium | Δ mg/cm² | 0,02 | FMVSS 116 |
_ | Aussehen | gut | |
SBR bei 70°C | Ø Veränderung, mm | 0,56 | FMVSS 116 |
__ | Härte, IRHD | -3 | FMVSS 116 |
___ | Volumen, % | 6,21 | FMVSS 116 |
_ | Aussehen | gut | |
SBR bei 120°C | Ø Veränderung, mm | 0,73 | FMVSS 116 |
__ | Härte, IRHD | -7 | FMVSS 116 |
___ | Volumen, % | 7,69 | FMVSS 116 |
_ | Aussehen | gut | |
EPDM bei 70°C (Anforderung aus SAE J1703) | Härte, IRHD | -2 | FMVSS 116 |
___ | Volumen, % | 1.39 | FMVSS 116 |
_ | Aussehen | gut | |
EPDM bei 120°C | Härte, IRHD | -2 | FMVSS 116 |
___ | Volumen, % | 1,91 | FMVSS 116 |
_ | Aussehen | gut | |
Naturell bei 70°C (Anforderung aus ISO 4925) | Ø Veränderung, mm | 0,38 | FMVSS 116 |
__ | Härte, IRHD | -5 | FMVSS 116 |
___ | Volumen, % | 4,61 | FMVSS 116 |
_ | Aussehen | gut |