Racing Oil vs Regular Synthetic Oil – What’s the Difference?

Track oil vs road oil guide

Choose Oil for the Engine’s Real Duty Cycle—not the Picture on the Bottle

Racing oil and regular full-synthetic street oil can use similar synthetic base oils, but their additive balance, approvals, emissions compatibility, intended drain interval and operating priorities may be very different.

A dedicated race engine may need an oil optimized for high RPM, extreme temperature, fuel dilution and frequent replacement. A daily-driven car normally needs an oil validated for cold starts, traffic, long service intervals, deposit control, fuel economy and catalytic-converter protection.

Best for daily driving OEM-approved synthetic street oil in the specified viscosity
Best for race-only engine Engine-builder-approved racing oil for that exact setup
Is all racing oil track-only? No—product labels and approvals vary significantly
Biggest mistake Assuming more zinc automatically makes an oil better
Classify the vehicle Daily driver, dual-purpose road/track car, competition-only engine, classic car or racing motorcycle.
Check the exact product Read the viscosity, API/ACEA/OEM approvals, catalytic-converter warning and intended service.
Set a real service plan Use the manufacturer, engine builder, oil analysis and race conditions to determine change timing.
The practical answer

What Is the Difference Between Racing Oil and Regular Synthetic Oil?

Dedicated racing oil is formulated for a competition engine’s extreme but relatively short operating cycle. Regular road-going synthetic oil is formulated to protect a production engine across cold starts, commuting, idling, moisture, fuel economy requirements, emissions equipment and a much longer manufacturer-defined service interval.

The name “racing oil” is not enough to determine suitability. Some products are explicitly track-only. Others are designed for classic, performance or dual-purpose street/track vehicles. Some ordinary-looking road synthetics are also approved by automakers for both road driving and track use.

Dedicated racing oil

Best for an engine built, tuned and maintained for competition under an engine builder’s or oil supplier’s program.

Regular road synthetic

Best for normal vehicles requiring API, ILSAC, ACEA or manufacturer-approved oil and standard service intervals.

Street/track performance oil

Best for a road-legal performance car when the exact product carries the vehicle’s required approval and is suitable for track use.

Do not put dedicated race oil into a daily driver simply because it costs more. A higher price or higher zinc number does not prove that the oil meets the vehicle’s cold-start, emissions, cleanliness, fuel-economy or service-interval requirements.
Not every performance oil is the same

Three Oil Categories You Must Separate

Competition only

Dedicated racing oil

Formulated for specific racing demands such as high RPM, high oil temperature, intense loading, fuel dilution, friction reduction or specialized valvetrains.

Key check: The manufacturer may state that it is not recommended for normal street use.

Road approved

Regular full-synthetic road oil

Designed to meet industry and automaker requirements for everyday operating conditions, emissions systems, cleanliness and defined oil-change intervals.

Key check: It must list the exact viscosity and required approval for the vehicle.

Dual purpose

Street/track performance oil

Designed for demanding road cars and occasional motorsport use. It may have race experience while retaining road approvals and emissions compatibility.

Key check: “Race proven” is marketing context; verify the actual approval list.

Product-specific example: Mobil identifies Mobil 1 Racing 0W-30 and 0W-50 as dedicated racing products not recommended for street use, while Mobil 1 15W-50 is marketed for street and track applications and lists API performance claims.
Side-by-side differences

Racing Oil vs Regular Synthetic Oil Comparison

Feature
Dedicated racing oil
Road synthetic oil
Why it matters
Primary duty
Extreme competition loads over a defined race or event cycle.
Cold starts, commuting, highway driving, idling and long-term road service.
The same engine can face very different lubrication demands on track and road.
Approvals
May have no current passenger-car API, ILSAC or OEM road approval.
Normally selected specifically because it meets required industry or automaker standards.
Viscosity alone does not prove compatibility.
Anti-wear chemistry
May use elevated zinc/phosphorus or other race-focused anti-wear chemistry.
Balanced for wear protection, emissions-system durability and current road requirements.
More additive is not automatically better for every engine or catalyst.
Friction strategy
May prioritize power output and reduced internal friction in a specific competition environment.
Balances efficiency, wear, cleanliness, emissions and drivability.
A race optimization may not suit a wet clutch, catalyst or road interval.
Detergency and cleanliness
Varies by product and intended race duration; do not assume either low or high detergent content without data.
Validated for sludge, varnish and deposit control under the claimed road category or approval.
Street engines experience moisture, idling and extended drain periods.
Drain interval
Application-specific and often based on events, hours, fuel dilution and used-oil analysis.
Based on the vehicle manufacturer’s mileage/kilometre, time or oil-life schedule.
A race label does not authorize a long road interval.
Catalytic converter
Some products specifically warn against use with catalytic converters.
Current road oils are designed with emissions-system protection among their requirements.
Oil consumption can expose the catalyst to phosphorus-containing additives.
Fuel types
Some products address gasoline, ethanol, methanol or other competition fuels.
Designed for fuel types and dilution levels covered by the road approval.
Alcohol fuels and rich racing mixtures can increase dilution.
Cold starting
Depends on the exact SAE winter grade and formulation.
Selected to satisfy the vehicle’s low-temperature requirement.
A thick race grade can be unsuitable for winter road starts.
Warranty suitability
May create problems if it lacks the required road approval.
Can support warranty compliance when it meets the manual’s requirements.
Keep receipts and product specifications.
Do not generalize from one brand. One racing oil may be track-only, another may be suitable for certain street engines, and a third may be intended for motorcycles. Read the exact product page and data sheet.
Different jobs require different balance

How the Additive Packages Can Differ

Engine oil is a balanced formulation. Increasing one component can change deposit control, friction, corrosion protection, emissions compatibility or interactions with other additives.

Anti-wear agents

Help protect loaded contact areas such as cam lobes, followers, bearings and piston components.

Detergents

Help control deposits and neutralize acidic combustion by-products. The amount and chemistry vary by formulation.

Dispersants

Help keep contaminants suspended so they are less likely to form sludge or deposits.

Friction modifiers

Can support efficiency or power goals but may make an oil unsuitable for certain wet-clutch applications.

Antioxidants

Help resist oil degradation under oxygen exposure and high temperature.

Viscosity modifiers

Help multigrade oil maintain usable viscosity across cold and hot conditions. Shear stability matters in racing.

Foam control

Helps prevent air entrainment that can reduce effective lubrication and pressure stability.

Corrosion protection

Important for road vehicles, stored race cars and engines exposed to moisture or alcohol-based fuels.

Do not judge oil by one laboratory number. Zinc, phosphorus, viscosity, HTHS, base number, volatility and detergent levels must work as a complete formulation.
High zinc needs context

Does Racing Oil Have More Zinc and ZDDP?

Many racing oils contain elevated zinc and phosphorus anti-wear chemistry, commonly associated with ZDDP. This can benefit highly loaded flat-tappet valvetrains and certain competition engines, but the correct level depends on the engine and product.

Potential benefit

Flat-tappet protection

High spring pressures and aggressive cam profiles can create demanding sliding contact where an appropriate anti-wear system is important.

Possible limitation

Catalyst exposure

When an engine consumes oil, phosphorus from the lubricant can reach the exhaust and may affect catalytic-converter durability.

Correct approach

Follow the engine requirement

Use the camshaft manufacturer, engine builder or OEM specification instead of selecting the highest advertised zinc number.

Mobil product example: Mobil states that its dedicated Racing oils use nominal zinc levels of approximately 1,850 ppm and are not recommended for everyday street vehicles with catalytic converters.
Valvoline product example: Some VR1 products are marketed for track and street service but state that they are not recommended for vehicles with catalytic converters or wet clutches. This shows why the exact product instructions matter.
Do not add a separate ZDDP supplement automatically. Adding extra chemistry to a finished oil can disturb the formulation and may raise phosphorus or ash beyond what the engine and emissions system require.
Road cars need aftertreatment protection

Racing Oil and Catalytic Converters

A dedicated race car may have a very different exhaust system from a production road vehicle. Some race oils therefore prioritize competition wear protection without targeting current road emissions-system requirements.

Vehicle setup Oil-selection approach Key risk to avoid
Modern road car with catalyst Use the required API, ILSAC, ACEA and OEM-approved oil. Do not use a track-only oil that warns against catalytic-converter applications.
Road/track performance car Use an OEM-approved performance oil suitable for both the road and the planned circuit conditions. Do not assume “motorsport” branding equals manufacturer approval.
Classic road car without catalyst Match the engine design, camshaft, clearances, viscosity and street-use needs. Do not ignore detergency, corrosion protection or cold-start behavior.
Competition-only car Follow the engine builder, series rules and used-oil-analysis program. Do not transfer the same oil recommendation to the tow vehicle or daily driver.
Catalyst risk depends partly on oil consumption. Oil that remains in the crankcase does not directly enter the exhaust. A worn engine that burns oil exposes the emissions system to more lubricant-derived material.
Race oil is not always thick oil

Racing Oil Viscosity, HTHS and Oil Temperature

Race oils are offered in low and high viscosity grades. The correct choice depends on bearing clearances, oil temperature, pressure, pump design, RPM, fuel dilution and the engine builder’s target—not on the assumption that racing always requires 20W-50.

SAE viscosity grade

Grades such as 0W-30, 0W-40, 5W-50 and 15W-50 describe low- and high-temperature viscosity classifications.

HTHS viscosity

High-temperature, high-shear viscosity helps describe oil behavior under severe shear at elevated temperature. The correct target is engine-specific.

Actual oil temperature

Oil temperature should be measured in the relevant location. Coolant temperature alone does not show how hot the sump or bearings are.

Do not increase viscosity only because oil pressure falls on track. Check oil temperature, level, aeration, pickup control, bearing clearances, pump condition, filter restriction and pressure-sensor accuracy.
A baffled sump or oil cooler may solve the real problem. Thicker oil cannot prevent pickup uncovering during high-G cornering or repair inadequate oil-temperature control.
Race hours are not road miles

Racing Oil Change Intervals vs Street Oil Intervals

A dedicated race oil should not automatically be left in the engine for the road vehicle’s normal interval. Competition oil life depends on fuel dilution, heat cycles, event duration, dust, coolant contamination, engine wear and fuel type.

Use pattern
Best interval method
What to inspect
Common mistake
Daily road use
Manufacturer mileage/kilometre, time or oil-life interval.
Level, leaks, contamination and service history.
Shortening or extending the interval based only on marketing.
Occasional track day
Vehicle manufacturer’s track guidance plus inspection before and after the event.
Level, temperature, pressure, fuel dilution and filter condition.
Assuming one track session automatically destroys the oil—or has no effect.
Club racing
Engine-builder schedule based on sessions, hours or events.
Used-oil analysis, filter inspection, metal, fuel and viscosity.
Using a generic street mileage interval.
Professional racing
Team-specific service and analysis program.
Every relevant engine, oil and filter parameter.
Copying a professional team’s oil without its engine setup and monitoring.
Alcohol-fuel engine
Frequent monitoring based on fuel dilution and corrosion risk.
Oil level rise, odor, viscosity, water and fuel percentage.
Assuming the normal gasoline interval remains safe.
Product-specific example: Mobil states that racing drain intervals vary widely and cites intervals of 500 miles or more as attainable in some applications, while recommending used-oil monitoring. That is not a universal 500-mile rule.
Choose by vehicle use

Which Oil Should You Use?

Your vehicle Best starting choice Important checks
Normal daily driver Manufacturer-approved road synthetic in the specified viscosity. API/ILSAC/ACEA/OEM approval, capacity, filter and normal/severe interval.
Performance road car OEM-approved full synthetic designed for high-output road engines. Turbo protection, catalyst compatibility, viscosity and manufacturer approval.
Road car with occasional track days Manufacturer-approved street/track oil or the exact track alternative stated by the automaker. Pre-event level, temperature, pressure, track guidance and post-event inspection.
Dedicated race car Race oil selected by the engine builder for clearances, temperature, fuel and race duration. Oil analysis, filter inspection, event schedule and series regulations.
Classic flat-tappet road car Street-suitable oil with appropriate anti-wear chemistry and viscosity. Catalyst status, cam requirements, detergent package and storage conditions.
Fresh racing engine Builder-specified break-in oil followed by the specified operating oil. Cam type, ring seating, spring pressure, initial filter inspection and change timing.
Racing motorcycle Motorcycle oil meeting required JASO/API and clutch/transmission requirements. Wet-clutch compatibility; do not use automotive racing oil automatically.
Practical road-car track preparation

How to Choose Oil for a Track Day

Read the vehicle manufacturer’s track guidance. Check the owner’s manual, performance supplement and official service information for track viscosity, oil-level and change instructions.
Identify the exact engine and current modifications. Record tuning, turbo boost, oil cooler, sump, accumulator, fuel type and engine-build details.
Confirm the oil approval. Use the required API, ACEA or OEM specification unless official track instructions clearly state otherwise.
Check the service age. Do not begin a demanding event with overdue oil, an unknown filter or an uncertain service history.
Set the level exactly. Use the manufacturer’s warm or cold checking procedure. Do not overfill to prevent starvation unless the manufacturer specifically instructs it.
Inspect the oil filter and drain plug. Confirm the correct filter, secure installation, sealing washer and drain-plug torque.
Monitor oil temperature and pressure. Know the normal range and the engine builder’s stop limits before entering the circuit.
Use suitable warm-up laps. Bring the engine, oil, transmission, brakes and tires into operating range gradually.
Perform a post-session inspection. Check the oil level, filter, cooler lines, catch can, underside, warning data and any unusual smell or smoke.
Decide whether to sample or replace the oil. Base the decision on event severity, fuel dilution, temperature, manufacturer guidance and previous analysis—not guesswork.
Road only
OEM road oil
Road and track
Approved dual-use oil
Race only
Builder-selected race oil
Pressure loss
Stop immediately
Stop the session for falling oil pressure, excessive oil temperature, smoke or a major leak. Finishing one more lap can turn a manageable problem into complete engine failure.
Competition fuel can change the oil quickly

Racing Fuel, Ethanol, Methanol and Oil Dilution

Rich mixtures, cold running, repeated starts, direct injection and alcohol-based fuels can introduce fuel into the crankcase. Fuel dilution reduces viscosity and can change wear protection even when the oil still looks clean.

Gasoline/petrol racing fuel

Rich calibration, misfire or incomplete warm-up can increase dilution. Monitor oil level and fuel odor.

Ethanol blends

High ethanol content can require special tuning, warm-up and oil-monitoring practices. Follow the oil supplier and engine builder.

Methanol fuel

Methanol racing engines can present severe dilution, moisture and corrosion challenges that require dedicated service routines.

A rising oil level is not good news. It can indicate fuel or coolant entering the sump. Stop and investigate before the diluted oil damages bearings or cylinder surfaces.
Measure instead of guessing

When Used-Oil Analysis Is Worth It

Useful reasons to test

  • Establish a safe race-event interval
  • Measure fuel dilution
  • Track viscosity loss or thickening
  • Check coolant or water contamination
  • Monitor iron, aluminum, copper and lead trends
  • Compare changes after tuning or engine work

What analysis cannot do alone

  • Guarantee that the next event will be safe
  • Replace filter inspection
  • Identify every failing component from one sample
  • Correct a poor sampling method
  • Make unrelated engines directly comparable
  • Replace pressure and temperature monitoring
Trend data is stronger than one sample. Use the same laboratory, sampling point, oil, fuel and event documentation so changes are easier to interpret.
Classic cars need more than high zinc

Racing Oil in Classic and Flat-Tappet Street Engines

Classic engines with flat-tappet camshafts may need an oil with appropriate anti-wear chemistry, but a street-driven classic also needs cold-start performance, deposit control, corrosion protection and a sensible service interval.

Use a racing oil only when

  • The camshaft or engine builder recommends that exact product
  • The viscosity matches bearing clearances and climate
  • Catalytic-converter limitations are understood
  • The car’s road use is compatible with the product
  • The service interval is documented
  • Storage and corrosion needs are considered

Consider a street-oriented classic oil when

  • The vehicle spends most of its time on public roads
  • Cold starts and seasonal storage are common
  • Longer road-service periods are needed
  • The engine has moderate rather than racing spring pressure
  • A balanced high-zinc street formula is available
  • The vehicle still uses emissions equipment
Break-in oil is a separate category. A new flat-tappet cam or rebuilt engine may require a specialized break-in procedure and early oil changes. Do not assume normal racing oil is the correct break-in product.
Automotive racing oil may damage clutch operation

Racing Oil for Motorcycles and Wet Clutches

Many motorcycles share engine oil with the gearbox and wet clutch. Their oil must satisfy clutch-friction and transmission-shear requirements that do not apply to most passenger cars.

Check JASO specification

Use the JASO category required by the motorcycle manufacturer, commonly MA, MA1, MA2 or MB depending on the design.

Check wet-clutch compatibility

Automotive friction modifiers may contribute to clutch slip in applications requiring a wet-clutch-compatible oil.

Check gearbox use

Shared-sump motorcycle oil must tolerate gearbox shear and protect the engine and transmission together.

Mobil product example: Mobil states that its automotive Mobil 1 Racing oils are not recommended for wet-clutch engines because of their molybdenum content. Mobil 1 Racing 4T is a separate motorcycle product.
Do not use automotive racing oil in a motorcycle merely because both labels say “racing.” Use the motorcycle manufacturer’s required viscosity, API/JASO level and clutch specification.
If racing oil is already in your street car

What to Do After Using Track-Only Racing Oil on the Road

Record exactly what was installed. Write down the brand, product name, viscosity, quantity, filter and distance driven.
Read the product instructions. Check whether it is track-only, suitable for street/track use, API licensed, catalyst compatible and approved for your engine.
Compare it with the owner’s manual. Verify viscosity and every required API, ILSAC, ACEA or OEM specification.
Check oil level and warning symptoms. Stop immediately for a pressure warning, major leak, severe noise, smoke or abnormal running.
Contact the oil company or vehicle manufacturer. Provide the exact product and engine. Ask whether immediate replacement is recommended.
Replace unsuitable oil normally. Drain it, replace the filter when appropriate and refill with the correct road-approved product. A chemical flush is normally unnecessary.
Keep the correction record. Save the receipt and note how long the track oil remained in service.
A short period of use does not automatically mean engine damage occurred. The urgency depends on viscosity, engine design, product warnings, temperature, catalyst status and symptoms. Correct the mismatch rather than continuing for a full road interval.
Race-proven does not always mean race-only

How to Recognize a Street/Track Synthetic Oil

Positive signs

  • Exact required SAE viscosity
  • Required API, ACEA or OEM approval
  • Manufacturer states suitability for road service
  • Compatible with catalytic converters where required
  • Documented oil-change guidance
  • Vehicle manufacturer permits it for track use

Warning signs

  • “Competition use only” or “not for street use”
  • No required vehicle approval
  • Viscosity outside the owner’s manual
  • Warning against catalytic converters
  • No usable service-interval guidance
  • Selection based only on zinc or horsepower claims
A road oil can still be highly capable on track. Many performance cars use an OEM-approved full synthetic that has been tested in motorsport but remains formulated and approved for road service.
Protect your service record

Racing Oil, Warranty and Road Legality

Warranty and road-use laws differ by country, but oil-related claims become harder to defend when the installed product lacks the viscosity or performance specification required by the vehicle manufacturer.

Keep these records

  • Oil and filter receipts
  • Product data sheet
  • Required vehicle approval
  • Service date and odometer reading
  • Track-event dates and sessions
  • Oil-analysis and filter-inspection reports

Ask before an event

  • Does track use affect the vehicle warranty?
  • Is a different viscosity required?
  • Must the oil be changed before or after?
  • Is an oil cooler required?
  • What temperature or pressure limit applies?
  • Does the event require fluid containment or safety wiring?
Competition rules also matter. Certain racing series specify fuel, lubricant, catch-can, containment or environmental requirements. Check the current technical regulations.
Choose oil in the right order

Eight-Step Racing Oil Selection Process

Define the use. State the percentage of road driving, track days, qualifying, sprint racing, endurance racing, drag racing or off-road competition.
Identify the engine configuration. Record engine family, bearing clearances, valvetrain, RPM, boost, oil pump, sump, cooler and fuel.
Find the required viscosity range. Use the OEM or engine builder’s oil-temperature, pressure and clearance targets.
Check road approvals when the car is street driven. Confirm API, ILSAC, ACEA and manufacturer approvals as applicable.
Check catalyst and clutch warnings. Do not overlook emissions equipment or wet-clutch compatibility.
Set the oil-change plan. Use road intervals, event hours, fuel dilution and analysis as appropriate.
Install monitoring. Use accurate oil-pressure and oil-temperature information for serious track use.
Review results. Inspect the filter, analyze used oil and adjust only with evidence.
Build a repeatable oil plan

Road and Race Oil Selection Worksheet

Vehicle Year, make, model and market:
Engine Code, displacement and induction:
Primary use Road, track day, sprint, endurance or drag:
Road percentage Approximate percentage of street use:
Required viscosity OEM or builder specification:
Required approvals API, ACEA, ILSAC or OEM:
Fuel Gasoline/petrol, ethanol, methanol or other:
Catalytic converter Present, absent or unknown:
Valvetrain Flat tappet, roller or unknown:
Oil temperature Normal and peak measured temperature:
Oil pressure Cold, hot idle and high-RPM readings:
Oil capacity With filter, cooler and accumulator:
Selected oil Brand, product and grade:
Change trigger Miles, kilometres, hours, events or analysis:

Useful engine-builder or oil-company question

“My engine is a [engine and build specification] used for [road/track percentage and event type]. It runs [fuel], reaches approximately [oil temperature], and has [catalyst, valvetrain, cooler and sump details]. The vehicle requires [viscosity and approval]. Should I use a road-approved performance synthetic, a dual-purpose oil or a dedicated race oil, and what change interval and analysis limits should I follow?”

Before pouring in racing oil

Final Racing Oil Checklist

Confirm the oil

  • Exact SAE viscosity is suitable
  • Required road approvals are present when needed
  • Catalyst warning has been checked
  • Wet-clutch compatibility has been checked
  • Fuel type is supported
  • Drain interval has been defined

Confirm the vehicle

  • Oil capacity is known
  • Filter is correct
  • Oil cooler and lines are inspected
  • Pressure and temperature limits are known
  • Track-use warranty terms are understood
  • Post-event inspection is planned
Bottom line: Use dedicated racing oil in a dedicated racing application with a defined engine and maintenance program. Use an OEM-approved synthetic road oil in a daily driver. For a road/track car, choose a product that satisfies both the vehicle’s approvals and the actual track conditions.
Racing oil FAQs

Frequently Asked Questions

Can I use racing oil in my daily driver?

Only when the exact product is approved for street use and meets the vehicle’s required viscosity and performance specification. Many dedicated racing oils are explicitly not recommended for everyday road use.

Is racing oil better than full-synthetic road oil?

Not universally. Racing oil may be better for a specific competition engine, while an approved road synthetic is normally better suited to cold starts, emissions equipment, commuting and manufacturer-defined service intervals.

Does racing oil always contain more zinc?

No universal rule applies, but many racing products use elevated zinc and phosphorus anti-wear chemistry. Check the exact product data and engine requirement instead of relying on the category name.

Will high-zinc racing oil damage a catalytic converter?

Some high-phosphorus racing oils are not recommended for catalyst-equipped road vehicles. The risk increases when the engine consumes oil and sends lubricant-derived phosphorus into the exhaust.

How often should racing oil be changed?

There is no universal interval. Use the engine builder’s event or hour schedule, fuel-dilution risk, oil temperature, filter inspection and used-oil analysis.

Do I need racing oil for one track day?

Not necessarily. Many road performance cars use an OEM-approved synthetic for both road and track operation. Read the manufacturer’s track supplement before changing oil categories.

Is racing oil always thicker than regular oil?

No. Racing oils are available in low and high viscosity grades, including products such as 0W-30 and 0W-50. The correct grade depends on the engine build and operating temperature.

Can I use automotive racing oil in a motorcycle?

Not automatically. Motorcycles may require JASO wet-clutch compatibility and oil capable of lubricating both the engine and gearbox. Use the motorcycle manufacturer’s specification.

Is racing oil the same as break-in oil?

No. Break-in oil is designed for a specific initial engine or camshaft procedure. Use the engine builder’s break-in product, duration and first-change instructions.

What should I do if a shop put racing oil in my street car?

Identify the exact product, compare it with the owner’s-manual requirements and check its street-use and catalyst warnings. Replace it promptly when it is not approved for the vehicle.

Official standards and product guidance

Sources Used for This Racing Oil Guide

Racing-oil formulas, warnings, approvals and availability vary by product and country. Always read the current label and product data sheet before use.

Product-claim note: Statements about specific zinc levels, horsepower optimization, street-use limitations and temperature performance are manufacturer claims for the named products and must not be generalized to every racing oil.

Last official-source review: July 25, 2026.

Independent automotive information notice: EngineOiil-Capacity.com is an independent informational website and is not an automaker, racing series, oil manufacturer, engine builder or repair facility. Racing engines and road vehicles can require very different viscosity, additive, emissions and service strategies. Follow the current vehicle manufacturer, engine builder and oil-product instructions. Stop the engine or track session immediately if oil pressure falls, oil temperature becomes excessive, severe noise develops or a major leak appears.