M33 4.6 tightening torque — 769 N·m
693.56 mm² of thread at 240 MPa yield gives a target clamp force of 116518 N. The torque here is what it takes to produce that stretch.
Tightening torque
Roughly half the effort is lost to friction in the threads and another half under the head. Only about a tenth actually stretches the bolt. Oil the thread and the same clamp force needs a quarter less torque — and applying a dry-spec torque to an oiled bolt overtightens it by that same quarter.
- zinc-plated, as it comesK=0.22845.9 N·m
- plain dry steelK=0.2769 N·m
- lightly oiledK=0.15576.8 N·m
- waxed or moly-coatedK=0.12461.4 N·m
- Strength grade
- 4.6
- Pitch
- 3.5 mm
- Cross-section
- 693.56 mm²
- Tensile strength
- 400 MPa
- Yield strength
- 240 MPa
- Target clamp force
- 116518 N
- Force that breaks it
- 277424 N
- In kgf·m
- 78.42 kgf·m
- In lb-ft
- 567.2 lb-ft
These figures are a starting point
Whenever the manufacturer specifies a torque, that number wins. Bolts into aluminium, bolts squeezing a gasket and bolts with thread locker are all set differently from this calculation.
Nearby cells
Same bolt, other grades
Same grade, other bolts
How to read this
- Torque turns the bolt; what you want is the clamp force the stretched bolt provides.
- The slipperier the thread, the less torque the same clamp force needs — pick the condition you have.
- Clamp force is set at 70% of yield. A manufacturer figure always wins over this one.
- These are coarse threads. A fine thread has slightly more area, so its numbers differ.
Frequently asked questions
Q. What torque does a M33 4.6 bolt take?
769 N·m dry — 78.42 kgf·m, or 567.2 lb-ft.
Q. And if the thread is oiled?
576.8 N·m. Lower friction means lower torque for the same clamp force.
Q. How hard does this bolt actually bite?
The target clamp force is 116518 N. It breaks at 277424 N, so you stop at 42% of that.
Q. How strong is grade 4.6?
400 MPa tensile, 240 MPa yield. Multiply by the 693.56 mm² of thread and you have what this bolt can hold.