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Proof & Testing

Tested by the leading independent labs in the U.S. Not by us.

Standard API and ASTM engine tests run on off-the-shelf motor oil, with and without SFR, plus the bench tests behind our grease, penetrating oil and diesel fuel conditioners. The numbers on this page are the laboratory's.

Jump to KA24-E wear test L-38 corrosion test Extreme pressure SFR 2522 grease Penetrating oil D-SOL fuel conditioners Safety data sheets
Engine test · ASTM KA24-E valve-train wear

The wear test every motor oil must pass to be certified for warranty

Product tested: SFR 100 All Purpose Oil Fortifier at the standard 5% rate

SFR passed the wear test every motor oil must pass to be certified for warranty — and did it on top of an oil that had already passed on its own.

The KA24-E runs a 2.4-litre four-cylinder engine for 100 hours of low-speed cycling — 50 minutes at 800 rpm, 10 minutes at 1,500 rpm, 200 cycles — to reproduce stop-and-go driving and long idling, the conditions the API calls "severe service." The engine is then disassembled and the camshaft lobes and rocker-arm pads are measured for wear.

Two tests were run back to back on the same test stand. The oil was the best-selling motor oil in the U.S. at the time — an API-certified 10W-30 — bought off the shelf at a retail store in Butte, Montana, so it was exactly the oil any customer could buy. The first run was that oil untreated; the second was the same oil with 5% SFR 100. Nothing else changed.

The oil that came out of both tests then went to an independent oil-analysis laboratory for particle counts and ferrography — the same kind of analysis you can run on your own equipment.

MeasurementUntreated5% SFR 100Change
Average cam lobe wear41.43 µm35.62 µm−14%
Exhaust lobe wear——−30%
Rocker-arm pad wear contact area74.5%61.8%−17%
ISO cleanliness code of the used oil21/1519/10≈ 2× engine life*

* Using the Life Extension Method, a published way of relating oil cleanliness to how much of its design life an engine reaches. Fewer abrasive particles circulating means less secondary wear everywhere in the engine, not just at the valve train.

Wear particles in the used oil

Particle size (ISO class)Untreated (per ml)5% SFR 100Reduction
0–5 µm161,890143,49011%
over 5 µm11,0364,30161%
over 10 µm1,5193498%
over 15 µm2871097%
over 20 µm90594%
over 30 µm17194%
over 40 µm6183%
Ferrograph of the untreated oil showing a dense band of wear particles
Ferrograph, untreated oil. The dark band is metal that came off the engine.
Ferrograph of the SFR 100 treated oil showing a thin band of wear particles
Ferrograph, oil treated with 5% SFR 100. Same engine, same test, same magnification.
The two oil filters cut open after the test: SFR 100 treated on the left, untreated on the right
The oil filters, cut open after 100 hours. Treated on the left, untreated on the right. Fewer particles were generated — the filter did not simply catch more.
Why this test, and what it does not show

The KA24-E was chosen over the older VE test because it is several times more repeatable, and because it is the test the industry moved to for qualifying the next generation of engine oils. Running both tests back to back on one stand, with retail oil, kept every variable except SFR 100 the same.

The test is deliberately mild: no high rpm, no high oil temperature, no repeated cold starts. Those are the conditions where an extreme-pressure fortifier does its most obvious work, and none of them are in this test. The wear reductions above are the conservative case. The L-38 below covers the hot, heavy end.

Complete copies of the KA24-E report are available from SFR Corporation, 405 W. Legion, Whitehall, MT 59759, or call 800-735-6438.

Engine test · ASTM D-5119 (CRC L-38) bearing corrosion and shear stability

37% less bearing wear in an oil that was already API-certified

Product tested: SFR 100 All Purpose Oil Fortifier at 5% in a leading API-certified 10W-40

Total bearing weight loss 21.8 mg with SFR 100, against 34.6 mg for the same oil untreated — 37% less wear, and 45% inside the 40 mg limit an oil must meet to carry the API mark.

The L-38 is the API's bearing-corrosion qualifying test. A single-cylinder test engine runs for 40 hours at 3,150 rpm with the oil held at 290 °F, on a leaded test fuel that deliberately forms corrosive compounds, with fuel contamination fed in on purpose. It uses a copper-lead bearing with no protective overlay — the most corrosion-sensitive bearing there is. An oil that passes is considered safe for API service with respect to bearing corrosion and viscosity stability.

Because the test is so severe, it answers the question customers ask most about an extreme-pressure additive: does it attack bearings? The result is the opposite. SFR 100 reduced the corrosion the certified oil was causing on its own.

MeasurementResult
Bearing weight loss, untreated 10W-40 (the oil maker's own data)34.6 mg
Bearing weight loss, same oil + 5% SFR 10021.8 mg
API limit for the test40 mg
Varnish rating (60 = perfect)59.6
Sludge rating (60 = perfect)58.9
Total Base Number, before → after 40 hours7.4 → 6.7
Stripped viscosity at 10 hoursstayed in grade
Pistons and bearing sleeves from the test, marked pass and fail
Piston and bearing sleeve after 40 hours: treated (pass) beside untreated (fail).
What the deposit and TBN numbers mean

A near-perfect varnish and sludge score shows the treated oil is not building deposits under heat — an extreme-pressure package that gums up would fail here. A Total Base Number that dropped only 0.7 across the test means the oil kept almost all of its reserve against acid, which is what protects bearings between oil changes. The viscosity staying in grade after fuel contamination is stripped out shows the oil's film did not shear down.

A full copy of the L-38 report is available from sfrcorp@sfrcorp.com.

Bench test · ASTM D-2783 four-ball extreme pressure

Film strength at the point where oil alone gives up

Products: the fortifier line — GASZOL, D-SOL, H-ZOL, GEARZOL, COMPREZOL, SFR 100

Motor oils generally fail the four-ball extreme-pressure test beyond 200 kg. GASZOL-treated oil carries the load to 800 kg. In D-2783 testing SFR outperformed seven leading additives on the market.

The four-ball test presses a rotating steel ball against three fixed balls in the lubricant and raises the load until the oil film breaks and the balls weld. It measures one thing: how much pressure the lubricant can carry before metal touches metal. That is exactly what happens at the valve train, lifters, push rods, valve-stem tips and rocker arms, and in gear teeth and pump vanes under load — the places that wear first.

Extreme-pressure protection is the part of an engine oil's job that most oils leave out, which is why a fortifier adds something a "better oil" does not. The engine tests above show the same chemistry does its work without corroding bearings or thickening the oil.

The same principle is what an SFR distributor shows you on a bench demonstration machine: a bearing run under increasing load in plain oil until it seizes, then in SFR-treated oil. Ask for the demonstration.

Specifications and load test · SFR 2522

SFR 2522 Multi-Purpose Extreme Pressure Grease

Product: SFR 2522 grease — NLGI #2, lithium complex, fortified with moly and graphite

Timken OK load over 75 lb. Dropping point 490 °F. Holds up in bearings exposed to heat, water, steam and detergents.

PropertyMethodResult
Dropping pointASTM D-2265490 °F
PenetrationASTM D-217280
Base oil viscosity @ 40 °CASTM D-445143.5 cSt
Base oil viscosity @ 100 °CASTM D-44510.35 cSt
Viscosity @ 100 °FASTM D-2161772 SUS
Viscosity @ 210 °FASTM D-216162 SUS
Pour pointASTM D-97−10 °F
Soap typeLithium complex
Solid lubricantsMoly (molybdenum disulfide) and graphite
ColorBlack
Weight per gallon7.74 lb

A 490 °F dropping point is what lets the grease stay put in bearings and slides exposed to high temperatures — steel-mill slippers, mining and earth-moving equipment, casters on assembly lines — and the extreme-pressure package is the same technology as the fortifiers. It is fortified further with moly and graphite, solid lubricants that stay on the metal, so the grease keeps carrying load after the base grease would have squeezed out.

The grease is the product that seizes the bench-demonstration bearing on a leading synthetic and keeps running on SFR. If you want to see it, ask for a distributor near you and he will run it in front of you.

Bench test and dust test

SFR Lubricant & Penetrating Oil

Product: SFR Lubricant & Penetrating Oil

Holds 20 weights — 600 lb and more — on the Timken test device. The leading brands hold 5 weights, 150 lb.

The machine is calibrated so that four weights dry, 120 lb, ruins the test bearing. A leading penetrating oil fails at five weights. SFR's carries the same bearing to twenty, because it is formulated with the extreme-pressure agents that loosen rusted parts by working into the surface and relieving the torque of rust — and it keeps that film strength wet or dry, after it has dried on the metal.

It dries on purpose

People expect a penetrating oil to stay wet. SFR’s is made to dry on the metal so dust and debris can’t build up on it. Put it on the bearing and race of the test machine, let it dry, and it still takes 600 lb of pressure. It is still lubricating; it just isn’t attracting dust. Re-apply it regularly, and it is the best thing you can put on exposed metal.

The dust test

A black metal plate about 12 inches square, a strip of tape down the middle, the best-selling penetrating oil on one side and SFR on the other. After a month out in the open, the leading brand’s side was covered with dust. The SFR side was shiny, with almost no dust on it.

Engine, fleet and bench tests · D-SOL diesel fuel conditioners

Cleaner injectors, lower emissions, more miles per gallon

Products: D-SOL Lubricity / Cetane and D-SOL Multi-Function All Season

Injectors plugged on untreated fuel recovered 60% of their flow on D-SOL. Emissions fell as the injectors cleaned up. Fuel economy rose 2.6% on the test stand and 1.8–3.0% in working trucks.

Injector tests

  • Peugeot XUD9 keep-clean (light-duty, indirect injection): D-SOL held injector flow well above the pass line, and above the reference fuel.
  • Peugeot XUD9 clean-up: injectors first plugged on untreated fuel, then run on D-SOL, recovered 60% of their flow at 0.1 mm pintle lift.
  • Cummins L10 keep-clean (heavy-duty, direct injection): Superior ratings in repeat testing across several batches of reference fuel.
  • Cummins L10 clean-up, steady state: injectors dirtied on reference fuel came 72% clean after 600 gallons of treated fuel at 1,800 rpm and 600 ft-lb — a truck cruising at highway speed.

Emissions and fuel economy, same engine

As the injectors cleaned upChange
Hydrocarbons (HC)−14.6%
Carbon monoxide (CO)−6.8%
Particulates (PM)−5.1%
Oxides of nitrogen (NOx)−1%
Fuel consumption (BSFC)−2.6%

Fleet test — SAE J1321, three Freightliner trucks

Three in-use Freightliners with Detroit DD60 engines: two test trucks (337,000 and 603,000 miles at the start) and a control truck. Baseline fuel-economy runs on base fuel, 15,000 miles on D-SOL-treated fuel, then the same runs again against the control.

TruckFuel economy vs control
Unit 27 (337,000 mi)+2.97%
Unit 28 (603,000 mi)+1.81%

Bench tests

TestBase fuel+ D-SOL
NACE rust ratingE (75–100% rust)A (none)
SLBOCLE lubricity, ASTM D6078 (pass > 3,100 g)2,750 g4,550 g
HFRR lubricity, ASTM D6079 (pass ≤ 460 µm scar)570 µm370 µm
Thermal stability, ASTM D6468 (% reflectance)5785
Water tolerance, ASTM D1094—no emulsion
Elastomer compatibility (nitrile, fluoroelastomer)—pass

Download the full D-SOL test summary (PDF)

Lubricity matters because ultra-low-sulfur diesel lost the natural lubricity that protected injection pumps; the SLBOCLE and HFRR results show D-SOL puts it back to within the industry pass range. The chemistry is chlorine-free.

Now measure it in your own equipment

Laboratory tests tell you the chemistry works. Oil analysis tells you what it did in your engine: pull a sample before you treat, another at the next drain, and compare the wear metals side by side. Same independent lab, your numbers.