Next-gen magnesium alloy extrusions: The ultimate lightweight alternative to aluminum and steel. Our hot-extruded AZ31B, ZK60, and WE43 bars offer superior damping and fine-grained mechanical integrity. Custom-engineered for high-stress applications in electronics and automotive industries. Reliable supply with bespoke fabrication options.
Aikerly offers a full-spectrum magnesium alloy extrusion capability, ranging from ultra-precision micro-rods to large-scale structural bars, meeting the most demanding industrial application requirements.
Our manufacturing system integrates extrusion press capacities from 300T to 6000T. This enables flexible production across micro, medium, and heavy structural geometries while maintaining stable metallurgical performance.
Conventional suppliers are often constrained by fixed die libraries and limited extrusion press capacities. Aikerly’s engineering system is built around geometric freedom and scalable extrusion force mapping. This allows for customized diameters while maintaining material integrity and lead times.
NDA protected — your IP stays secure
Typical response within 48 hours
Brand: Aikerly
Material Grades:
AZ31B (General-purpose industrial grade)
AZ80 (High-strength grade)
ZK60A (High strength and toughness grade)
WE43 (High-temperature and corrosion-resistant grade)
Supply Temper/Condition:
AZ31B: F (as-extruded), H24 (strain-hardened and partially annealed)
AZ80: F, T5 (artificially aged)
ZK60A: F, T5, T6 (solution heat-treated and artificially aged)
WE43: F, T5, T6
Standard Compliance: ASTM B107, GB/T, RoHS, REACH
Monthly Production Capacity: 1,800 metric tons (designed capacity)
Minimum Order Quantity (MOQ): 100 kg
Commercial Pricing Logic:
Unit Price (per kg) = Raw Material Index times 1.3 + Processing Cost
Total Order Price =Unit Price times Order Quantity
Grain Structure Control: Optimized extrusion ratios improve microstructure uniformity, eliminate porosity, and enhance fatigue resistance under cyclic loading.
High Machinability: Excellent suitability for downstream CNC machining and precision forming operations.
Secondary Processing Compatibility: Compatible with re-extrusion for profile optimization, rolling/drawing for dimensional refinement, and structural joining—with Friction Stir Welding (FSW) recommended for modular structural designs.
Medical-Grade Applications: WE43 rare-earth magnesium alloy bone pins and orthopedic implants. Note: Subject to ISO 10993 biocompatibility compliance and medical device certification.
Wearable Device Shafts (Ø1.5 mm): High dimensional stability.
Biodegradable Implant Scaffolds (Ø2 – 5 mm): Requires surface modification to control degradation rates.
EV Drive Shafts: High strength-to-weight ratio.
High-Voltage Connector Systems: Thermal stability combined with corrosion resistance.
Wind Turbine Pitch Drive Shafts
Structural Supports for Maglev and Rail Transit
Large-Scale Vibration-Damping Structural Components
All extruded products are manufactured within tightly controlled process windows:
Precise control of extrusion ratios.
Grain refinement achieved through thermodynamic equilibrium.
Batch-level traceability of mechanical properties.
Optional fatigue and corrosion test reports available upon request.
Do not let your design be restricted by standard off-the-shelf extrusion dimensions. Work directly with the Aikerly engineering team to define your custom geometric specifications rather than adapting to existing limits.
Fast technical feasibility feedback (within 24–48 hours)
Non-Disclosure Agreements (NDA) available for intellectual property protection
Comprehensive support for engineering drawing reviews
Submit your technical specifications today for engineering evaluation and quotation.
Critical Technical Notes:
Biomedical Applications: Only rare-earth magnesium alloys (such as WE43) are recommended. These applications must pass ISO 10993 biocompatibility testing and obtain FDA/NMPA medical device certification.
Ultra-Large Diameter Specifications: Specifications exceeding Ø300 mm utilize a combined casting and hot-working process. The upper limit for pure extrusion capability stands at Ø250 mm.
Welding Processes: Friction Stir Welding (FSW) is highly recommended. The welding windows for joining dissimilar grades must be evaluated independently.
Surface Modification: Medical applications require specific surface treatments (e.g., coatings) to effectively regulate the degradation rate.
Capacity Statement: The monthly capacity of 1,800 tons represents the design capacity; actual production output will be adjusted based on order volume.
NDA protected — your IP stays secure
Typical response within 48 hours