I get this stuff from Innofoam. They use it in high pressure rotary screw air compressors for fire equipment.It is NOT compatible with 134a! It is however GREAT with R12, R22, & R290.
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ISO Grade Specific Gravity Viscosity 100°F SUS (ASTM D-445) Viscosity 40°C Cst (ASTM D-445) Viscosity 100°C Cst (ASTM D-445) Brookfield Viscosity @ 0°F/-18°C cP (ASTM D-2983) Brookfield Viscosity @ -20°F/-29°C c (ASTM D-2983) Viscosity Index Flash Point °F/°C (ASTM D-92) Fire Point °F/°C (ASTM D-92) Auto Ignition Temp °F/°C (ASTM D 2155) Pour Point °F/°C (ASTM D-97) Stable Pour Point °F/°C (FTM D-203) Neutralization Number (ASTM D-974) Orbach Rotary Bomb Oxidation Test minutes (ASTM D-2272) Foam Test (ASTM D-892) Sequence I Sequence II Sequence III Air Release (ASTM D-3427) Time (min @122°F) % Evaporation Loss 22 hrs @ 300°F (ASTM D-972) % Evaporation Loss @ 700°F/371.11°C (ASTM D-2889) Four Ball EP (ASTM D-2783) Weld Point, kg LWI, kg Aniline Point °F/°C (ASTM D-611) Rust Test (ASTM D-665) Procedure A (Distilled Water) Procedure B (Salt Water) Four Ball Wear Test (ASTM D-4172) (1hr 167°F, 1800 RPM, 40 kg) Scar Diameter Average Coefficient of Friction Four Ball Test (ASTM D-4172) (1hr 130°F, 1800 RPM, 20 kg) Scar Diameter Falex Continuous Load (ASTM D-3233) Failure Load, lbs. Conradson Carbon Residue (ASTM D-189) % Residue Vickers Pump Wear Test (ASTM D-2882) Total Wt. Loss, mg Demulsibility (ASTM D-1401) Oil, Water, Emulsion Time Hydrolytic Stability (ASTM D-2619) Copper Wt Loss (mg/cm2) Acidity of Water Copper Strip Corrosion (ASTM D-130) Oxidation Stability Test (ASTM D-943) Hrs. to TAN of 2 Sludge Tendencies (ASTM D-4310) Total sludging Total Copper, mg Total Iron, mg Neutralization Number Thermal Stability (Cincinnati Milicron Method 168hrs./135°C, copper, steel catalyst) Sludge (mg/100ml) Condition of Copper Rod Condition of Iron Rod |
32 .825 149-171.6 29.00-33.50 5.52-6.09 460 1735 130 455°/235° 529°/276° 730°/387.7° -65°/-53.89° -44°/-42° 0.4-0.8 1140/1320 0/0 0/0 0/0 0.25 0.2 2.6 250 77.1 265°/129.44° Pass Pass .18 .08 .27 1250 .001 15 40-40-0 10 0.65 1 1a +8000 18 15 0.1 0.2 2 1 1 |
46 .83 235.2-255.7 46.00-50.00 7.69-8.15 910 4360 135 460°/237.7° 535°/279.4° 750°/398.8° -65°/-53.89° -44°/-42° 0.4-0.8 1150/1330 0/0 0/0 0/0 0.25 0.2 2.6 250 77.1 270°/132.22° Pass Pass .18 .08 .27 1250 .001 15 40-40-0 10 0.65 1 1a +8000 18 15 0.1 0.2 2 1 1 |
68 .87 350.9-376.6 68.50-73.50 10.38-10.98 2435 10750 138 495°/257.22° 530°/276.67° 750°/398.8° -65°/53.89° -44°/-42° 0.4-0.8 1150/1330 0/0 0/0 0/0 0.25 0.2 2.6 250 78.2 270°/132.22° Pass Pass .18 .08 .27 1250 .001 15 40-40-0 10 0.65 1 1a +8000 18 15 0.1 0.2 2 1 1 |
100 .835 490.9-540.3 95.50-105.00 13.26-14.22 ---- ---- 138 530°/276.67° 560°/293.33° 750°/398.8° -40°/-40° ---- 0.4-0.8 1150/1330 0/0 0/0 0/0 0.25 0.2 3 250 78.2 285°/140.56° Pass Pass .18 .08 .33 1500 .005 15 40-40-0 10 0.65 1 1a +8000 18 15 0.1 0.2 2 1 1 |
150 .835 748.7-827.2 145.00-160.00 18.17-19.52 ---- ---- 140 530°/276.67° 560°/293.33° 750°/398.8° -35°/-37.22° ---- 0.4-0.8 1150/1330 0/0 0/0 0/0 0.25 0.2 3.5 250 78.2 287°/141.67° Pass Pass .18 .08 .33 1500 .005 15 40-40-0 10 0.65 1 1 +8000 18 15 0.1 0.2 2 1 1 |
Since PAO's are non-polar, they absorb less
water under high humidity conditions. They also separate condensed
water much faster and more completely, thus resulting in the
water being removed easily from the system. These properties
result in extended bearing life, anti-wear protection and improved
rust and corrosion protection.
Excellent Operating Temperature
Reduction.
PAO's
have better specific heat values (less available heat is absorbed)
and better thermal conductivity that conventional air compressor
oils. These combined properties help to reduce operating temperatures.
Compatibility with all types
of seals and coatings.
Excellent miscibility and
low solubility with refrigerant gases.
The rest of the Stuff...
FLUSHING your A/C System
BLACK DEATH
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