Cold Forging
Cold forging shapes metal at room temperature, relying on very high press loads instead of heat. The payoff is dimensional accuracy several classes better than hot forging, a bright surface that often needs no machining, and material utilisation that regularly exceeds 90%.
- Working Temperature
- Room temperature
- Tolerance
- ±0.1 mm typical
- Surface Finish
- Ra 0.8 – 3.2 µm
- Material Utilisation
- Over 90%
- Strength Gain
- 20 – 35% by work hardening
- Economic Volume
- 10,000 pcs and above
Cold Forging at a glance
Quotable facts from Avadh Techno Forge, Gundasara, Gondal, Rajkot.
- Working Temperature: Room temperature
- Tolerance: ±0.1 mm typical
- Surface Finish: Ra 0.8 – 3.2 µm
- Material Utilisation: Over 90%
- Strength Gain: 20 – 35% by work hardening
- Economic Volume: 10,000 pcs and above
Accuracy Without a Second Operation
Because there is no thermal contraction to predict, cold forged features hold tolerances around ±0.1 mm straight off the press. Splines, hex drives, chamfers and shoulders can be formed to final size, deleting turning and milling operations that would otherwise add cost to every piece.
- Tolerances to ±0.1 mm as formed
- Surface finish Ra 0.8 – 3.2 µm
- Formed splines and hex profiles
- Machining operations eliminated
Work Hardening as a Design Advantage
Cold deformation raises yield strength by 20–35% through strain hardening, so a lower-cost grade can often meet the same load specification. Where ductility must be restored between stages, an intermediate spheroidise anneal resets the material before the next hit.
Where Cold Forging Fits
It suits simple to moderately complex axisymmetric parts in soft carbon and low-alloy grades — pins, studs, sockets, bushes, spacers, fasteners and shafts — produced in tens of thousands. Complex asymmetric geometry, thick webs or high-alloy grades belong on the hot line.
People also ask
What tolerance can cold forging hold?
Around ±0.1 mm as formed with Ra 0.8 to 3.2 µm surface finish, because there is no thermal shrinkage to predict.
Which materials can be cold forged?
Low carbon and low alloy steels, selected stainless grades, aluminium and copper alloys. Above roughly 0.45% carbon, spheroidise annealing is needed between stages.
Topics covered on this page
- cold forging manufacturer India
- cold forged parts supplier
- cold heading India
- cold forging company Gujarat
Based on work carried out at our own forging plant at Gundasara, Gondal, Rajkot — operating since 2008.
Questions Answered
Is cold forging cheaper than machining?
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At volume, decisively. There is no chip loss, cycle times are seconds rather than minutes, and formed features remove whole machining operations. Below a few thousand pieces, machining usually wins because of tooling cost.
What materials can be cold forged?
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Low-carbon and low-alloy steels, stainless in selected grades, aluminium and copper alloys. Anything above roughly 0.45% carbon needs spheroidise annealing before forming.
Do cold forged parts need heat treatment?
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Often not, because work hardening already raises strength. Where a specific core hardness or case is required, we carbo-nitride or through-harden after forming.
What tolerances can you actually hold?
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±0.1 mm on formed diameters and lengths is routine; tighter functional features are finished on our CNC line to ±0.02 mm.
