Engine Displacement Calculator — Bore × Stroke to Cubic Inches, CC & Liters

Free engine displacement calculator with 30+ engine specs table (SBC, LS, BBC, Ford, Mopar, Coyote, Cummins), 20 popular stroker combos with displacement gain, and overbore effect chart. Cubic inches ↔ liters ↔ cc conversions.

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Engine displacement is the total volume swept by all pistons during one complete revolution of the crankshaft. It's the single most fundamental measurement of an engine — it drives airflow needs, fuel system sizing, cam selection, and ultimately power potential. Enter your bore, stroke, and cylinder count above; the calculator returns cubic inches (CID), cubic centimeters (cc), and liters instantly.

The engine displacement formula

Displacement = Bore² × Stroke × 0.7854 × Cylinders

The 0.7854 constant is π/4, converting bore diameter to the cross-sectional area of one cylinder. Multiply by stroke to get the swept volume of a single cylinder, then by cylinder count for total displacement.

Worked example — SBC 350:

4.000² × 3.480 × 0.7854 × 8
= 16.000 × 3.480 × 0.7854 × 8
= 349.85 cubic inches (5.73 L)

Unit conversions:

  • Cubic inches → Liters: divide by 61.024
  • Cubic inches → CC: multiply by 16.387
  • Liters → Cubic inches: multiply by 61.024
  • CC → Cubic inches: divide by 16.387

Common engine displacement chart

Bore, stroke, and displacement for the most common performance engines. All measurements are OEM factory specs at nominal (0.000") overbore.

EngineBoreStrokeCylDisplacement
SBC 2833.875"3.000"8283 ci (4.64 L)
SBC 305 (5.0L)3.736"3.480"8305 ci (5.00 L)
SBC 3274.000"3.250"8327 ci (5.36 L)
SBC 350 (5.7L)4.000"3.480"8350 ci (5.73 L)
SBC 4004.125"3.750"8400 ci (6.55 L)
LS1 5.7L3.898"3.622"8346 ci (5.67 L)
LS2 6.0L4.000"3.622"8364 ci (5.96 L)
LS3 6.2L4.065"3.622"8376 ci (6.16 L)
LS7 7.0L4.125"4.000"8428 ci (7.01 L)
LSX 4544.185"4.125"8454 ci (7.44 L)
BBC 3964.094"3.760"8396 ci (6.49 L)
BBC 4274.251"3.760"8427 ci (7.00 L)
BBC 454 (7.4L)4.251"4.000"8454 ci (7.44 L)
BBC 4964.310"4.250"8496 ci (8.13 L)
Ford 2894.000"2.870"8289 ci (4.73 L)
Ford 302 (5.0L)4.000"3.000"8302 ci (4.95 L)
Ford 351W4.000"3.500"8352 ci (5.77 L)
Ford 4604.360"3.850"8460 ci (7.54 L)
Coyote 5.0L (Gen 1-3)3.630"3.649"8302 ci (4.95 L)
Mopar 3404.040"3.310"8340 ci (5.57 L)
Mopar 3604.000"3.580"8360 ci (5.90 L)
Mopar 4404.320"3.750"8440 ci (7.21 L)
Chrysler Hemi 5.7L3.917"3.579"8345 ci (5.65 L)
Chrysler Hemi 6.4L4.090"3.720"8391 ci (6.42 L)
Honda K20A23.386"3.386"4121.9 ci (2.00 L)
Honda K24A23.428"3.898"4143.7 ci (2.35 L)
Toyota 2JZ-GTE3.386"3.386"6183 ci (3.00 L)
Cummins 5.9L 12V4.020"4.720"6359 ci (5.88 L)
Cummins 6.7L4.213"4.882"6408 ci (6.69 L)
Ford Powerstroke 7.3L4.110"4.180"8444 ci (7.28 L)
GM Duramax 6.6L4.055"3.897"8403 ci (6.60 L)

Popular stroker combinations

Stroker kits swap the crankshaft (and often rods and pistons) to increase stroke, which increases displacement without going any bigger on the bore. The math is the reason strokers dominate the aftermarket — you gain 25–100+ cubic inches from a bolt-in rotating assembly.

Base EngineStroker ComboBore × StrokeNew DisplacementGain
SBC 350383 stroker4.030" × 3.750"383 ci (6.28 L)+33 ci
SBC 350406 stroker4.155" × 3.750"406 ci (6.65 L)+56 ci
SBC 400421 stroker4.155" × 3.875"421 ci (6.90 L)+21 ci
SBC 400434 stroker4.155" × 4.000"434 ci (7.11 L)+34 ci
LS 5.3L (LM7)383 stroker3.905" × 4.000"383 ci (6.28 L)+58 ci
LS 5.3L (LM7)408 stroker4.030" × 4.000"408 ci (6.68 L)+83 ci
LS 6.0L (LQ4/LQ9)408 stroker4.030" × 4.000"408 ci (6.68 L)+44 ci
LS 6.0L (LQ4/LQ9)427 stroker4.125" × 4.000"427 ci (7.00 L)+63 ci
LS3 6.2L416 stroker4.065" × 4.000"415 ci (6.80 L)+39 ci
LS3 6.2L440 stroker4.185" × 4.000"440 ci (7.21 L)+64 ci
BBC 454496 stroker4.310" × 4.250"496 ci (8.13 L)+42 ci
BBC 454540 stroker4.500" × 4.250"540 ci (8.85 L)+86 ci
BBC 454632 stroker4.600" × 4.750"632 ci (10.36 L)+178 ci
Ford 302331 stroker4.030" × 3.250"331 ci (5.43 L)+29 ci
Ford 302347 stroker4.030" × 3.400"347 ci (5.68 L)+45 ci
Ford 351W408 stroker4.030" × 4.000"408 ci (6.68 L)+56 ci
Ford 351W427 stroker4.125" × 4.000"427 ci (7.00 L)+75 ci
Mopar 360408 stroker4.030" × 4.000"408 ci (6.68 L)+48 ci
Mopar 440500 stroker4.375" × 4.150"499 ci (8.18 L)+59 ci
Coyote 5.0L331 Coyote3.630" × 4.000"331 ci (5.43 L)+29 ci

The pattern: the 383 SBC (5.7L → 6.3L) and 408 LS (5.3/6.0 → 6.7L) are the two most popular strokers because they use readily available factory-based rotating assemblies. Bigger cubes = more torque at any RPM, cheaper than boost, and the parts availability makes them cost-effective compared to raising displacement through bore alone.

Overbore effect — how much displacement do you gain?

Every 0.010" of overbore adds a small but measurable amount of displacement. Here's what standard overbore steps do to popular V8s:

Engine+0.000"+0.020"+0.030"+0.040"+0.060"
SBC 350 (3.480" stroke)350 ci353 ci355 ci357 ci361 ci
SBC 400 (3.750" stroke)400 ci404 ci406 ci408 ci412 ci
LS3 6.2L (3.622" stroke)376 ci380 ci381 ci383 ci387 ci
BBC 454 (4.000" stroke)454 ci458 ci461 ci463 ci467 ci
Ford 302 (3.000" stroke)302 ci305 ci307 ci308 ci311 ci
Ford 351W (3.500" stroke)352 ci355 ci357 ci359 ci363 ci

Rule of thumb: each 0.010" of overbore adds roughly 1.7 cubic inches on a V8 at 3.5" stroke. Rebores are typically done in 0.010" increments — +0.030" is the most common (clean-up bore for a rebuild), +0.060" is the practical limit for most cast iron blocks without sonic-testing wall thickness first.

Oversquare vs undersquare — bore-to-stroke ratio

Bore-to-stroke ratio classifies engines by their aspect ratio and predicts a lot about how they'll behave:

  • Oversquare (bore > stroke) — Larger valves fit in the head, less piston travel per revolution, breathes better at high RPM. Peak torque and horsepower come at higher RPM. Most modern performance engines (LS3, LS7, Coyote, most F1) are oversquare.
  • Square (bore = stroke) — Balanced tradeoff. LS1 (3.898"×3.622" — nearly square), Ford 4.6L Modular (90.2×90.0 mm — exactly square), Honda K20 (3.386"×3.386" — exactly square).
  • Undersquare (bore < stroke) — Longer stroke gives more low-RPM torque, higher piston speeds limit maximum RPM. Diesels are almost always undersquare (Cummins 5.9L: 4.02"×4.72", Duramax LB7: 4.055"×3.897"). Chrysler Slant Six: 3.41"×4.12".

Bore/stroke ratio: divide bore by stroke. Ratios above 1.05 are strongly oversquare; below 0.95 is strongly undersquare. Neither is "better" — they're just optimized for different RPM ranges and applications.

Frequently asked questions

Does connecting rod length affect displacement?
No. Displacement is purely a function of bore, stroke, and cylinder count. Rod length affects piston motion characteristics (dwell at TDC/BDC, side loading, peak piston velocity), but the swept volume of the cylinder is fixed by the crank stroke — the rod just links piston to crank pin.

Why is a "5.7L" engine sometimes 346 ci, sometimes 350 ci, and sometimes 353 ci?
Marketing rounding. GM calls both the SBC 350 (349.8 ci = 5.73 L) and the LS1 (346 ci = 5.67 L) "5.7 liter" engines despite being different displacements. Marine and truck variants sometimes get badged with slightly different numbers. Always calculate actual displacement from bore and stroke rather than trusting the badge.

How much does a 0.030" overbore actually add?
About 5 cubic inches on an SBC V8, 6 ci on a BBC. See the overbore table above for specifics per engine.

Do you need to account for combustion chamber volume in displacement?
No — displacement is swept volume only (BDC to TDC). Chamber volume is separate and only matters for compression ratio calculation. Use our Compression Ratio Calculator for CR math.

What's the biggest street engine you can build in a specific block?
Limited by cylinder wall thickness (max safe bore) and block deck height (max safe stroke without piston pin intersecting oil ring). Roughly: SBC → 434 ci, LS → 454 ci (with LSX or aftermarket block), BBC → 632 ci, Ford Windsor → 427 ci. Aftermarket race blocks push these numbers higher.

Should I calculate displacement in cubic inches or liters?
Either is fine — 1 cubic inch = 16.387 cc, or 1 liter = 61.024 cubic inches. American V8 culture defaults to cubic inches, import culture defaults to liters. The math is identical.

How does displacement affect carb or injector sizing?
Airflow demand scales with displacement × RPM × volumetric efficiency. A 383 ci engine at 6,000 RPM at 100% VE needs about 665 CFM; a 454 needs about 788 CFM. Recalculate your carb CFM or injector size anytime displacement changes.