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Integrated casting and forging forming technology and equipment Integrated casting and forging forming technology and equipment

Custom High-Strength Aluminum Structural Component

Manufactured with proprietary integrated casting-forging technology for lightweight, dense and heat-treatable aluminum parts.

Integrated casting and forging forming technology and equipment Integrated casting and forging forming technology and equipment

Pioneered integrated casting and forging equipment

Multiple national patents End-to-end capabilities spanning prototype development to mass production Third-party mechanical property testing T6 heat treatment capabilities Comprehensive machining

Lightweight, high-strength aluminum alloy components suitable for various industries. Lightweight, high-strength aluminum alloy components suitable for various industries.

High-strength aluminum alloy structural components

Custom cast-forged and CNC-machined aluminum parts for e-bikes, scooters, bicycles, motorcycles, automotive and marine applications.

Self-developed Machines

Purpose-built machines support stable, scalable, and repeatable production.

Patented Process

Patented technology engineered for advanced aluminum structural components.

Complex Geometry

Supports complex shapes with near-net forming and reduced machining.

Testing Support

Testing support helps verify quality, performance, and application readiness.

Not standard parts. Not ordinary die casting.

We manufacture drawing-based aluminum components using integrated casting-forging equipment, mold design, alloy selection, heat treatment, CNC finishing and testing support.

When standard die casting or full CNC is not enough For complex aluminum parts requiring strength, density, heat treatment or material efficiency, integrated casting-forging provides a different manufacturing route.

Application Industries Custom Components

Built for demanding mobility and industrial applications 

E-bike, e-scooter, bicycle, automotive/EV, marine/industrial, smart devices. All representative products are customized by drawings and project requirements.

 

  • Bicycle Aluminum Parts

    Integrated handlebar and stem, dropouts, hydraulic disc brakes, chainring/crankset, seatpost clamp.

  • E-bike Aluminum Parts

    Electric motor mounting brackets, mid-drive motor housings, hub motor end caps, and frame connection nodes.

  • E-scooter Aluminum Parts

    Down tube, front fork, rear fork, folding mechanism, hub motor housing.

Self-developed machines behind every custom component

We manufacture and operate integrated casting-forging machines for both component production and machine project inquiries.  

Testing Support for Critical Aluminum Parts

Inspection and validation can be arranged according to project requirements.

Why Buyers Choose This Manufacturing Route

High strength, lightweight design, better density, heat-treatment options, testing support and OEM flexibility.


More Than a Supplier — An Engineering and Manufacturing Partner

Our role begins before production.

For each project, our engineering team evaluates the product geometry, alloy selection, load conditions, heat-treatment requirements, machining allowances, tooling structure and expected production volume.

We then recommend a manufacturing route based on the actual performance and commercial requirements of the component.

Our capabilities cover:

Product manufacturability analysis
Aluminum alloy and material selection
Integrated casting-forging process development
Mold and tooling design
Prototype and trial production
T6 heat treatment
CNC precision machining
Surface finishing
Mechanical performance testing
Dimensional inspection
Pilot production and mass-production preparation

This integrated service model helps customers reduce development risks, shorten the supply chain and move more efficiently from concept validation to production.

09.18.2026 | Engineering Team
Why Aluminum Castings Leak Under Pressure: The Role of Interconnected Porosity
Why can an aluminum housing look defect-free yet still fail a pressure or leak test? Learn how interconnected porosity forms and how pressure-assisted solidification helps control internal leak paths.
09.16.2026 | Engineering Team
Why Solution Heat Treatment Is Difficult for Die-Cast Aluminum Parts
Learn why trapped gas and internal porosity can make solution heat treatment difficult for die-cast aluminum parts, and how Integrated Cast-Forging changes the forming conditions.
09.14.2026 | Engineering Team
Why 6061 Aluminum Is Difficult to Cast | Integrated Cast-Forging
Why does 6061 aluminum tend to crack or segregate during conventional casting? Learn how Integrated Cast-Forging creates a different forming route for complex wrought-alloy structural components.
09.11.2026 | Engineering Team
Localized Pressure Control for Complex Aluminum Structural Parts
Learn why complex aluminum structural parts may require localized pressure control during forming, and how critical load-bearing regions can be treated differently from the rest of the component.
09.09.2026 | Engineering Team
How Pressure-Assisted Forming Changes Aluminum Microstructure
Learn how pressure-assisted solidification and controlled deformation can refine aluminum microstructure, increase structural density and support high-performance complex components.
09.07.2026 | Engineering Team
Integrated Cast-Forging for Complex High-Strength Aluminum Parts
Why do complex aluminum structural parts often face a trade-off between casting geometry and forging performance? Learn how Integrated Cast-Forging creates a new manufacturing route for high-performance near-net components.
09.05.2026 | Engineering Team
Integrated Cast-Forging for Aluminum Parts | BEIGONG
Discover how integrated cast-forging combines casting and pressure deformation within one manufacturing route for complex high-strength aluminum structural parts.
09.03.2026 | Engineering Team
Why CNC Machining Aluminum Billet Gets Expensive
Learn why machining aluminum parts from solid billet can become costly at scale, and when near-net forming may offer a more efficient manufacturing route.