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Hot Forging equipment and forged metal components

Hot Forging Services

High-strength hot-forged components for shafts, flanges, drivetrain parts and industrial assemblies. JINGLE reviews alloy, billet size, die strategy and downstream machining before production.

  • Open-Die & Closed-Die Options
  • Controlled Grain Flow
  • Forging, Heat Treatment & Inspection
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Trusted by Customers Across Industries

Forged components for automotive, industrial equipment, energy, fluid control and custom OEM programs.

festo
siemens
schneider-electric
danfoss
abb
rexroth

Hot Forging Capabilities

A quick view of the information buyers need before sending a hot forging RFQ. Final values are confirmed against alloy, billet, die, heat treatment and machining requirements.

Hot Forging equipment and production sequence
Forging presses, dies and heated billet handling equipment. Heated billet forming within the die and controlled working envelope. Trimmed forgings prepared for heat treatment, machining and dimensional inspection.
ParameterCapability details
Forging ProcessHot closed-die, open-die or project-specific forging route
Max. Forging SizeTo be confirmed - reserve press, hammer and die envelope
Typical ToleranceTo be confirmed - quote-specific forged and machined range
Material SectionTo be confirmed - billet size and section range by alloy
MaterialsCarbon steel, alloy steel, stainless steel, aluminum and titanium alloys
Secondary OperationsHeat treatment, shot blasting, trimming, machining and surface finishing
Production VolumePrototype, low-volume and batch production
Accepted Drawing FormatsSTEP, IGES, Parasolid, SolidWorks, PDF drawing and DXF

Heat. Form. Control the Grain. Finish the Part.

Hot Forging component showcase
Representative hot forging components with forged geometry and finished interfaces.

01

Alloy and billet review

Match heating range, billet size and reduction strategy to the required properties.

Billet and alloy matched

02

Die and flash control

Plan die parting, flash, trim and fill around the final geometry.

Die fill and trim planned

03

Post-forge stability

Coordinate heat treatment, machining stock and inspection before release.

Finishing route coordinated

See the Work Behind the Capability

See the Work Behind the Capability
Forging presses, dies and heated billet handling equipment. Heated billet forming within the die and controlled working envelope. Trimmed forgings prepared for heat treatment, machining and dimensional inspection.

Real hot forging equipment

Forging presses, dies and heated billet handling equipment.

Actual forging in process

Heated billet forming within the die and controlled working envelope.

Real finishing and inspection environment

Trimmed forgings prepared for heat treatment, machining and dimensional inspection.

Parts We Commonly Forge

Parts We Commonly Forge
Representative hot forging components with forged geometry and finished interfaces.

Shafts & Flanges

Forged shaft and flange shapes with planned machining stock.

Steering and Suspension Parts

Load-bearing geometry reviewed for material flow and finished interfaces.

Gear and Drivetrain Components

Forged blanks for transmission and rotating equipment components.

Valve and Pressure Parts

Pressure-related components reviewed against alloy and inspection requirements.

Industrial Hubs

Hub profiles with controlled material distribution and machining references.

Custom Forged OEM Parts

Drawing-led forgings developed around geometry, quantity and required properties.

Materials We Forge

Materials We Forge
Forging materials reviewed against alloy grade, starting stock and application requirements.
  • Carbon Steel

    load-bearing shafts

  • Alloy Steel

    high-strength interfaces

  • Stainless Steel

    corrosion-resistant parts

  • Aluminum Alloys

    lightweight structures

  • Titanium Alloys

    performance-critical components

Quality Evidence at Every Handoff

  • 01

    Incoming Billet and Chemistry Review

    Verify billet grade, chemistry records and required material traceability.

  • 02

    Preform and Die Process Checks

    Check preform condition, die fill and trimming checkpoints against the process plan.

  • 03

    Heat Treatment and Hardness Inspection

    Review the specified treatment condition and agreed hardness checks.

  • 04

    Final Dimensional and NDT Inspection

    Measure finished dimensions and perform any NDT agreed in the inspection plan.

Documents available

  • CMM Report
  • FAI
  • Material Certificate
  • Heat Treatment Certificate
  • NDT Report
  • CoC
  • PPAP Upon Request
Inspection of forged components and machined interfaces
Inspection methods, acceptance criteria and reporting are confirmed against the drawing and application requirements.

Prototype to Production

Prototype to Production

01

Prototype Forgings

Validate die concept, material flow and machining allowance on the first article.

02

Low-Volume Production

Support launch quantities with documented forging and inspection checkpoints.

03

Batch Production

Repeat the approved billet, die, heat treatment and finishing route.

Engineering Support You Can Use

01

Forging DFM Review Before Tooling

Review parting lines, draft, radii and machining stock before die release.

02

Material Flow and Die Strategy

Plan billet distribution and die filling around the required forged geometry.

03

Flexible Prototype & Batch Production

Validate initial forgings before launch quantities and scheduled batches.

04

Controlled Heat Treatment and Inspection

Coordinate treatment requirements with hardness and dimensional checkpoints.

05

Material, Process & NDT Documentation

Agree material certificates, process records and any required NDT reports at quotation.

06

Responsive RFQ Support

Review the model, alloy, quantity and inspection scope before confirming the quotation route.

Hot Forging FAQ

What alloys can you hot forge?

Carbon steel, alloy steel, stainless steel, aluminum and titanium alloys can be reviewed for hot forging. The specified grade, geometry and required properties determine the proposed billet and treatment route.

When is hot forging a better fit than machining?

Hot forging can be a candidate when load paths, grain flow or recurring volume favor a shaped blank rather than machining entirely from stock. Share the model, alloy and demand so tooling, machining stock and inspection requirements can be compared.

Can you support prototypes and low-volume orders?

Prototype and low-volume routes can be evaluated alongside batch production. Send the drawing, alloy and quantity so die requirements and first-article checkpoints can be confirmed.

Can you provide heat-treatment and NDT records?

Heat-treatment certificates and NDT reports can be included when agreed in the inspection plan. Specify applicable standards, acceptance criteria and required records with the RFQ.

What machining allowance should be included?

Machining allowance depends on the alloy, forging geometry, treatment condition and finished features. Provide the finished drawing and critical datums so stock can be reviewed before tooling release.

How quickly can you quote a hot-forged part?

Quotation timing depends on the completeness of the 3D model, drawing, alloy, quantity and inspection requirements. We review those inputs and confirm the quotation schedule rather than promise a fixed turnaround.

Have a Forged Part to Develop?

Send the model, drawing, alloy and quantity. We will review billet, die, heat treatment, machining stock and inspection before quoting.

Finished forged metal components prepared for project review
  • 3D Model
  • Technical Drawing
  • Material Grade
  • Quantity
  • Machining Allowance
  • Heat Treatment
  • Inspection Requirements