M56×5.5 Torque Spec
Calculated preload torque by grade, plus what actually changes the number.
M56×5.5 · 8.8 · dry threads
9890 N·m
7295 lb-ft · targets 883.1
kN clamp load (75% of proof)
By grade
| Grade | Dry (N·m) | Lubed (N·m) | Dry (lb-ft) | Clamp load | Ultimate tensile |
|---|---|---|---|---|---|
| 4.6 Low-carbon steel, general purpose | 3837 | 2878 | 2830 | 342.6 kN | 812 kN |
| 8.8 Medium-carbon, quenched & tempered — the default structural grade | 9890 | 7418 | 7295 | 883.1 kN | 1624 kN |
| 10.9 Alloy steel, Q&T — high strength | 14153 | 10615 | 10439 | 1263.7 kN | 2111.2 kN |
| 12.9 Alloy steel, Q&T — highest common grade (socket head cap screws) | 16541 | 12405 | 12200 | 1476.8 kN | 2476.6 kN |
| A2-70 304 stainless, cold worked | 7673 | 5755 | 5660 | 685.1 kN | 1421 kN |
Why lubrication changes everything
Roughly 90% of the torque you apply is consumed by friction — under the head and in the threads. Only about 10% becomes useful bolt stretch. That means the friction coefficient, not the bolt, sets the relationship between torque and clamp load. Here is the same M56×5.5 8.8 fastener under different conditions:
| Thread condition | Nut factor K | Torque for same preload |
|---|---|---|
| Plain / as-received, dry | 0.20 | 9890 N·m |
| Zinc plated, dry | 0.22 | 10879 N·m |
| Black oxide, lightly oiled | 0.18 | 8901 N·m |
| Machine oil on threads | 0.15 | 7418 N·m |
| Molybdenum disulfide / anti-seize | 0.12 | 5934 N·m |
| Waxed or PTFE coated | 0.10 | 4945 N·m |
Torquing a lubricated bolt to the dry spec overloads it — the
4945
N·m row and the
9890
N·m row produce the same clamp load. Apply the dry
number to a waxed fastener and you are at roughly twice the intended preload, which
for a 8.8 is past yield.
Assumptions behind these numbers
T = K × D × F with K = 0.20, F = 0.75 × proof load, and proof load = tensile stress area (2030.02 mm²) × the grade's proof strength. This is a general-engineering starting point for a reusable steel-on-steel joint. It is not a substitute for a manufacturer's torque sequence on an engine, a suspension component, a pressure vessel or any structural connection.