Drydene Radias S 320 Rust & Oxidation (R&O) Oil
Description
DRYDENE RADIAS® S oils are rust and oxidation (R&O) inhibited hydraulic fluids designed for industrial circulating systems, hydraulic systems and lightly-loaded gear systems that do not operate under extreme pressure. The ashless additive system provides reliable protection against rust, corrosion, deposit formation and wear without the use of traditional heavy metals.Additional Information
| Size | 330 gal, 55 gal, 5 gal |
|---|---|
| Air Release Valve at 50ºC (min) | 1 |
| Claims (Suitable for Use) | Alstom HTGD 90117 V 0001 AA, Solar ES 9-224Y Class II, GE Oil and Gas – Appropriate Specification listed under document ITN52220.04, Siemens Power Generation TLV 9013 04 & TLV 9013 05, Dresser Rand – Spec 003-406-001 Type I and III, Westinghouse 21 TO 591, 55125Z3 and Eng. Spec DP21T-00000443, Man D&T SE TED 10000494596, Elliott Turbo-Machinery X-18-0004, ASTM 4304-13 Type I & III, GB (China) 11120-2011, L-TGA, L-TSA, L-TGSB, DIN 51515 – Part 1 L-TD, Part 2 L-TG, DIN 51524-1-HL, ISO 8068:2006 – L-TGB, L-TGSB, General Electric – GEK 32568K, GEK 46506e, GEK 28143b, GEK 107395a, GEK 120498, MS04-MA-CL001 (Rev 4), MS04-MA-CL002 (Rev 4), MS04-MA-CL005 (Rev 2), JIS K 2213:2006 Type 2, ANSALDO TGO2-0171-E00000/B, ASTM 4304-12 Type I, II, & III, GB (China) 11120-2011, L-TSE, L-TGE, L-TGSE, DIN 51515 – Part 1 L-TDP, Part 2 L-TGP, DIN 51524-2-HLP, ISO 8068:2006 – L-TGF, L-TGSE, General Electric – GEK 32568K, GEK 46506e, GEK 28143b, GEK 101941a, GEK 107395a, GEK 120498, Siemens Turbo – 1CW0047915, WN800003798, Report 65/0027, Siemens Finspong MAT812109, General Electric – GEK 28143b, GEK 117064, ASTM 4304-13 Type I, II, & III |
| Copper Strip Corrosion | 1B |
| Demulsibility | 80 seconds (Steam), 95 seconds (Steam) |
| Features and Benefits | Extended Oil Life – Shell Turbo S4 X 32 delivers exceptional resistance to degradation, even under conditions of high oxidative and thermal stress. Excellent results in both the ASTM dry TOST and the TOST life test (ASTM D943) demonstrate the potential for Shell Turbo S4 G 32 to offer extended service life, reduced maintenance costs and less downtime when compared to conventional mineral oil technology. Enhanced Equipment Protection – The greater resistance against varnish and sludge formation provided by Shell Turbo S4 X 32 allows turbine systems to operate reliably even during severe peak load operation. Minimizing the formation of sludge and bearing deposits not only reduces the wear of critical system components, but can also reduce the risk of an unplanned turbine shutdown. Enhanced System Efficiency – Demulsibility, air release, resistance to foaming, and filter blockage are critical factors for oil in the latest geared turbine designs (especially turbines which have shorter oil residence times). Shell Turbo S4 X 32 offers excellent performance in all four areas, ensuring that optimum operating conditions are maintained., Extended Oil Life – Shell Turbo S4 GX 32 delivers exceptional resistance to degradation, even under conditions of high oxidative and thermal stress. Excellent results in both the ASTM dry TOST and the TOST life test (ASTM D943) demonstrate the potential for Shell Turbo S4 GX 32 to offer extended service life, reduced maintenance costs and less downtime when compared to conventional mineral oil technology. Enhanced Equipment Protection – The excellent prevention of deposit formation provided by Shell Turbo S4 GX 32 enables it to lubricate the hottest gas turbine bearings with minimal deposit build up or sludge formation. This reduces the potential for critical component failure and the risk of unplanned turbine shutdown. As the pressure increases on gearboxes in turbines it is critical for an oil to provide greater anti-wear protection. Shell Turbo S4 GX 32 offers enhanced anti-wear protection for heavily loaded gear boxes helping end users maintain optimum operating conditions under challenging situations without sacrificing resistance to deposits or oil life. Enhanced System Efficiency – Demulsibility, air release, resistance to foaming, and filter blockage are critical factors for oil in the latest geared turbine designs (especially turbines which have shorter oil residence times). Shell Turbo S4 GX 32 offers excellent performance in all four areas, ensuring that optimum operating conditions are maintained., Extended Oil Life – Shell Turbo S4 GX 46 delivers exceptional resistance to degradation, even under conditions of high oxidative and thermal stress. Excellent results in both the ASTM dry TOST and the TOST life test (ASTM D943) demonstrate the potential for Shell Turbo S4 GX 46 to offer extended service life, reduced maintenance costs and less downtime when compared to conventional mineral oil technology. Enhanced Equipment Protection – The excellent prevention of deposit formation provided by Shell Turbo S4 GX 46 enables it to lubricate the hottest gas turbine bearings with minimal deposit build up or sludge formation. This reduces the potential for critical component failure and the risk of unplanned turbine shutdown. As the pressure increases on gearboxes in turbines it is critical for an oil to provide greater anti-wear protection. Shell Turbo S4 GX 46 offers enhanced anti-wear protection for heavily loaded gear boxes helping end users maintain optimum operating conditions under challenging situations without sacrificing resistance to deposits or oil life. Enhanced System Efficiency – Demulsibility, air release, resistance to foaming, and filter blockage are critical factors for oil in the latest geared turbine designs (especially turbines which have shorter oil residence times). Shell Turbo S4 GX 46 offers excellent performance in all four areas, ensuring that optimum operating conditions are maintained. |
| Flash Point (ºC) | 230, 232 |
| Flash Point (ºF)] | 473 |
| Foaming Sequence I (Tendency - Stability) (mL) | 0/0 |
| Foaming Sequence II (Tendency - Stability) (mL) | 0/0 |
| Foaming Sequence III (Tendency - Stability) (mL) | 0/0 |
| Freight Class | 50 |
| FZG-Test Failure Load Stage | 7, 10, 11 |
| ISO Viscosity Grade | R&O ISO 32, R&O ISO 46 |
| Modified RPVOT % | 95 |
| Oxidation (hours) | 10000 |
| Pour Point (ºC) | -42 |
| Pour Point (ºF) | -16.6 |
| Rotating Pressure Vessel Oxidation Test (RPVOT) min | 1400 |
| Sludge Content at 25% RPVOT | 51 mg/kg |
| Sludge Content at 50% RPVOT | 25 mg/kg, 256mg/kg |
| Time to 25% RPVOT (hours) | 1320 |
| Time to 50% RPVOT (hours) | 1410, 1460 |
| TOST 1000 Hour Sludge | 20 mg/kg, 25 mg/kg |
| Total Acid Number (mg KOH/g) | 0.10, 0.15 |
| Viscosity at 100ºC (cSt) | 6.10, 6.06, 7.5 |
| Viscosity Index | 141, 139 |
| Water Separation (ASTM D1401) (min) | 15 |

