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Lunati 51018LUN - Lunati Hydraulic Roller Tappet Camshafts

  • Camshaft, Hydraulic Roller Tappet, Advertised Duration 300/310, Lift .560/.576, Ford, Small Block, Each
  • Application Specific
  • Estimated Ship Date: 5/29/2012
 
BrandLunati
Manufacturer's Part Number51018LUN
Part TypeCamshafts
Product LineLunati Hydraulic Roller Tappet Camshafts
Summit Racing Part NumberLUN-51018LUN
UPC090127530474
 
Cam StyleHydraulic roller tappet
Basic Operating RPM Range3,000-6,800
Intake Duration at 050 inch Lift242
Exhaust Duration at 050 inch Lift252
Duration at 050 inch Lift242 int./252 exh.
Advertised Intake Duration300
Advertised Exhaust Duration310
Advertised Duration300 int./310 exh.
Intake Valve Lift with Factory Rocker Arm Ratio0.560 in.
Exhaust Valve Lift with Factory Rocker Arm Ratio0.576 in.
Valve Lift with Factory Rocker Arm Ratio0.560 int./0.576 exh.
Lobe Separation (degrees)110
Computer-Controlled CompatibleNo
Grind NumberRRN1-242-252
Valve Springs RequiredYes
QuantitySold individually.
 

These hydraulic roller tappet cams from Lunati provide the best of both worlds. These aggressive profiles produce more power over a broader rpm range, while providing the benefits of quieter operation and ease of valve lash setting. These cams will get you off the line quicker and on your way to the winner's circle--no wonder they're "The Racer's Choice"!

Warranty

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Warnings

Please keep the following information in mind when selecting a performance camshaft:

It is the complete vehicle package that will determine how well your vehicle satisfies your performance preference. By complete vehicle package, we mean the interaction of all of a vehicle's components and subsystems, including the engine and its related parts (such as the carburetor, intake manifold, exhaust system, camshaft, and ignition), the transmission, rear-end gears, wheel and tire combinations and diameters, and suspension pieces. All of these components must work in unison to produce the desired performance results.

First, you will need to decide what rpm power range you will be operating in most often. Because camshaft selection, as well as carburetion, manifold choice, and gearing are based on it, knowing your rpm power range is the key to building a successful vehicle package.

Be sure to purchase all of the components necessary to complete the desired vehicle package at your performance level. Remember, the further from stock you deviate in the engine department, the more modifications will be required elsewhere in the vehicle.

It is the responsibility of the installer to ensure that all of the components are correct before installation. Errors in component selection or installation procedures are not covered by warranty.

To help ensure successful camshaft performance and reliability, the following procedures should be followed:

Always install new lifters with a new or used flat tappet camshaft. Roller lifters may be reused with roller camshafts only after careful inspection for excessive lifter wear. Always use valve springs that match the camshaft manufacturer's requirements for open and closed seat pressures at the correct installed height. Other valvetrain components may be required (screw-in rocker arm studs, pushrod guideplates, hardened pushrods, special distributor drive gear, etc.), depending upon the profile of the cam you choose.

Every camshaft includes installation instructions and break-in procedures. It is critical that these instructions are followed precisely. (These guidelines are not a substitute for the installation or break-in instructions.)

Use only the approved, manufacturer-recommended assembly lubricant. Assembly lubricant must be applied to every cam lobe surface, and to the bottom of every lifter face on all flat tappet cams. Also, be sure to apply assembly lubricant to the distributor drive gears on the cam and distributor for all camshafts.

NOTE: Many camshaft manufacturers do not recommend the use of synthetic oil during the break-in period. It is also not recommended to use any type of oil restrictors to the lifter galley, windage trays, or baffles, or plug any oil return holes in the lifter valley. Oil has a twofold purpose; it not only lubricates, but it also draws the heat away from whatever it comes in contact with. The cam needs oil splash from the crankcase and oil run-back from the top of the engine to help draw the heat away. Without this oil flow, all the heat generated at the cam is transferred to the lifter, which can contribute to premature wear and/or failure.

The following Mechanical operating clearances must always be verified to ensure the service life of the camshaft:
Spring coil bind clearance
Retainer to seal/valve guide boss clearance
Piston to valve clearance
Rocker arm slot to stud clearance
Camshaft endplay
Distributor shaft and gear endplay
Connecting rod to cam clearance
Proper hydraulic lifter pre-load
Proper valvetrain geometry

Application

Results 1-16 of 16

 
MakeFORD
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1982
Ending Year1995
Engine FamilyFord small block Windsor
Camshaft UsageDrag race
 
 
MakeFORD
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1982
Ending Year1995
Engine FamilyFord small block Windsor
Camshaft UsageNitrous oxide
 
 
MakeFORD
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1982
Ending Year1995
Engine FamilyFord small block Windsor
Camshaft UsageStreet/Strip
 
 
MakeFORD
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1982
Ending Year1995
Engine FamilyFord small block Windsor
Camshaft UsageSupercharged
 
 
MakeFORD
Engine TypeV8
Engine Size5.8L/351
Liter5.8
CID351
Beginning Year1969
Ending Year1997
Engine FamilyFord small block Windsor
Camshaft UsageDrag race
 
 
MakeFORD
Engine TypeV8
Engine Size5.8L/351
Liter5.8
CID351
Beginning Year1969
Ending Year1997
Engine FamilyFord small block Windsor
Camshaft UsageNitrous oxide
 
 
MakeFORD
Engine TypeV8
Engine Size5.8L/351
Liter5.8
CID351
Beginning Year1969
Ending Year1997
Engine FamilyFord small block Windsor
Camshaft UsageStreet/Strip
 
 
MakeFORD
Engine TypeV8
Engine Size5.8L/351
Liter5.8
CID351
Beginning Year1969
Ending Year1997
Engine FamilyFord small block Windsor
Camshaft UsageSupercharged
 
 
MakeLINCOLN
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1986
Ending Year1992
Engine FamilyFord small block Windsor
Camshaft UsageDrag race
 
 
MakeLINCOLN
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1986
Ending Year1992
Engine FamilyFord small block Windsor
Camshaft UsageNitrous oxide
 
 
MakeLINCOLN
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1986
Ending Year1992
Engine FamilyFord small block Windsor
Camshaft UsageStreet/Strip
 
 
MakeLINCOLN
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1986
Ending Year1992
Engine FamilyFord small block Windsor
Camshaft UsageSupercharged
 
 
MakeMERCURY
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1984
Ending Year1986
Engine FamilyFord small block Windsor
Camshaft UsageDrag race
 
 
MakeMERCURY
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1984
Ending Year1986
Engine FamilyFord small block Windsor
Camshaft UsageNitrous oxide
 
 
MakeMERCURY
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1984
Ending Year1986
Engine FamilyFord small block Windsor
Camshaft UsageStreet/Strip
 
 
MakeMERCURY
Engine TypeV8
Engine Size5.0L/302
Liter5.0
CID302
Beginning Year1984
Ending Year1986
Engine FamilyFord small block Windsor
Camshaft UsageSupercharged
 

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