You need to choose options for product.
-
files/7885394b74f381f30e1bb7ff3244f658_9619f573-4bfd-427f-be18-65233ee03b25.jpg
-
files/42d381d6c390367a909480b08efde7a5_cdb49faf-b9bb-4c74-8282-8b18b64d3918.jpg
Revolutionary Advancement In High Performance Spring Technology
Expected to become the new standard in high performance street and race valve spring design, COMP Cams® Conical Valve Springs utilize round wire and feature a diameter and progressive pitch driven natural frequency. This design increases the valve train RPM limit while reducing resonance concerns and decreasing dynamic spring oscillations. The result is longer spring life and the ability to run more aggressive camshafts. A breakthrough in valve spring development, COMP Cams® is the very first to introduce this advanced conical design.
Conical Valve Springs:
- Reduced mass improves RPM stability
- Conical design offers the best natural frequency damping
- Dampens w/o wear, heat/friction or risk from interference contact
- Progressive frequency increases RPM limit & allows for more aggressive cams
- Superfinish surface processing increases both max lift capability & valve spring longevity
- Constantly decreasing diameter from bottom to top reduces active mass & decreases applied forces; Result is longer valve train component life & less parasitic horsepower loss.
- Reduced oscillation in Conical Springs translates to less applied force and stress to the springs. This increases the lifespan of the spring and the valve train. It also allows the use of more aggressive camshaft profiles.
Specifications
Outer Diam.: 1.060" (Top)
Outer Diam.:1.332" (Bottom)
Inner Dia.:.660" (Top)
Inner Dia.:.932" (Bottom)
Seat Load: 145 @1.900"
Open Load: 495 @1.225"
Coil Bind: 1.185"
Rate: 520
Revolutionary Advancement In High Performance Spring Technology
Expected to become the new standard in high performance street and race valve spring design, COMP Cams® Conical Valve Springs utilize round wire and feature a diameter and progressive pitch driven natural frequency. This design increases the valve train RPM limit while reducing resonance concerns and decreasing dynamic spring oscillations. The result is longer spring life and the ability to run more aggressive camshafts. A breakthrough in valve spring development, COMP Cams® is the very first to introduce this advanced conical design.
Conical Valve Springs:
- Reduced mass improves RPM stability
- Conical design offers the best natural frequency damping
- Dampens w/o wear, heat/friction or risk from interference contact
- Progressive frequency increases RPM limit & allows for more aggressive cams
- Superfinish surface processing increases both max lift capability & valve spring longevity
- Constantly decreasing diameter from bottom to top reduces active mass & decreases applied forces; Result is longer valve train component life & less parasitic horsepower loss.
- Reduced oscillation in Conical Springs translates to less applied force and stress to the springs. This increases the lifespan of the spring and the valve train. It also allows the use of more aggressive camshaft profiles.
Specifications
Outer Diam.: 1.060" (Top)
Outer Diam.:1.332" (Bottom)
Inner Dia.:.660" (Top)
Inner Dia.:.932" (Bottom)
Seat Load: 145 @1.900"
Open Load: 495 @1.225"
Coil Bind: 1.185"
Rate: 520
- Regular price
- $433.35
Couldn't load pickup availability
Frequently Bought Together
-
Vendor: DFW Speed Syndicate
Offenhauser 6284 – Ford 240-300 High Performance Dual Port Intake Manifold
Regular price $669.00 -
Vendor: DFW Speed Syndicate
Remflex Exhaust Header Gasket Sets 3080
Regular price $53.00 -
Vendor: DFW Speed Syndicate
Syndicate6 EFI Exhaust Manifold Turbo Kit Ford 240/300 - 1965 to 1979
Regular price From $2,495.00 -
Vendor: DFW Speed Syndicate
EFI Exhaust Manifolds
Regular price $250.00
Product Description
Revolutionary Advancement In High Performance Spring Technology
Expected to become the new standard in high performance street and race valve spring design, COMP Cams® Conical Valve Springs utilize round wire and feature a diameter and progressive pitch driven natural frequency. This design increases the valve train RPM limit while reducing resonance concerns and decreasing dynamic spring oscillations. The result is longer spring life and the ability to run more aggressive camshafts. A breakthrough in valve spring development, COMP Cams® is the very first to introduce this advanced conical design.
Conical Valve Springs:
- Reduced mass improves RPM stability
- Conical design offers the best natural frequency damping
- Dampens w/o wear, heat/friction or risk from interference contact
- Progressive frequency increases RPM limit & allows for more aggressive cams
- Superfinish surface processing increases both max lift capability & valve spring longevity
- Constantly decreasing diameter from bottom to top reduces active mass & decreases applied forces; Result is longer valve train component life & less parasitic horsepower loss.
- Reduced oscillation in Conical Springs translates to less applied force and stress to the springs. This increases the lifespan of the spring and the valve train. It also allows the use of more aggressive camshaft profiles.
Specifications
Outer Diam.: 1.060" (Top)
Outer Diam.:1.332" (Bottom)
Inner Dia.:.660" (Top)
Inner Dia.:.932" (Bottom)
Seat Load: 145 @1.900"
Open Load: 495 @1.225"
Coil Bind: 1.185"
Rate: 520
Customer Reviews
Similar Products
-
Vendor: DFW Speed Syndicate
Offenhauser 6284 – Ford 240-300 High Performance Dual Port Intake Manifold
Regular price $669.00 -
Vendor: DFW Speed Syndicate
Remflex Exhaust Header Gasket Sets 3080
Regular price $53.00 -
Vendor: DFW Speed Syndicate
Syndicate6 EFI Exhaust Manifold Turbo Kit Ford 240/300 - 1965 to 1979
Regular price From $2,495.00 -
Vendor: DFW Speed Syndicate
EFI Exhaust Manifolds
Regular price $250.00
Customers also bought
Complementary products
-
ITEM BAR TITLE
Share shipping, delivery, policy information.
-
ITEM BAR TITLE
Share shipping, delivery, policy information.
-
ITEM BAR TITLE
Share shipping, delivery, policy information.
-
ITEM BAR TITLE
Share shipping, delivery, policy information.