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SRP Ford Small Block Piston – 4.060 in. Bore – 1.300 in. CH, -5.00 CC
SKU: 329738S
SRP, Ford, Small Block Ford, 4.060 in. Bore, 1.300 CD, Flat Top, Single Piston
Born from the rich racing experience of JE Pistons, the Sportsman Racing Products (SRP) piston line proudly bridges the gap between high-quality forged piston performance and affordability. Forged from strong, 4032 aluminum alloy material, SRP pistons are designed and manufactured to reduce machining costs without sacrificing strength or performance characteristics. These pistons are the perfect option for someone building a mild to moderate performance engine on a sportsman budget. As with all JE Pistons products, SRP pistons are made 100% in the USA.
- Forged in the USA using 4032 aluminum, yielding tensile strength and minimal thermal expansion
- Dedicated forging helps optimize strength and weight throughout the piston design
- Perfect for street/strip applications
- Forced pin oiling for improved pin lubrication
- Made 100% in the USA
GTIN: 00193564261113
Piston Series | SRP |
---|---|
Cylinder Head | SMALL BLOCK FORD 20 DEG |
Bore Diameter | 4.060 IN |
Piston Head Type | Flat |
Compression Height | 1.300 IN |
Piston Volume | -5.00 CC |
Piston Material | 4032 |
Forging Type | FSR |
Piston Average Weight | 480 GR |
Ring Set Included | No |
Top Compression Ring Thickness | 0.0640 IN |
Second Compression Ring Thickness | 0.0640 IN |
Oil Ring Thickness | 0.188 IN |
Wrist Pin Material | 5115 Low Carbon Steel, Case Hardened |
Wrist Pin Length | 2.750 IN |
Wrist Pin Wall Thickness | 0.150 IN |
Makes
Engines
Instructions: Enter a value in the un-shaded boxes below as they pertain to your engine.
Note: For pistons BELOW the block @ TDC – value in box must be a NEGATIVE number (-0.000)
Note: For pistons ABOVE the block @ TDC – value in box must be a POSITIVE number (0.000)
Note: For a DISH piston – value in box must be a NEGATIVE number (-0.0)
Note: For a DOME piston – value in box must be a POSITIVE number (0.0)
Note: Manipulate the DOME/DISH & PISTON to DECK volumes to get the ratio you want.