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Magnesium Die Casting Drone Crash Frame
US$0.50-20.00
100 Pieces

Product profile

Customization

Available

Die Casting Machine Type

Hot Chamber Die Casting Machine

Die Casting Method

Precision Die Casting

Model NO.

Magnesium-013

Application

Automotive, Industrial, Electronics, New Energy

Machining

CNC Machining, Drilling, Tapping, Turning, Milling

Material

Magnesium Alloy

Surface Preparation

Anodizing, Powder Coating, Electroplating

Pressure Chamber Structure

Horizontal

Tolerance Grade

7

Casting Surface Quality Level

1

Certification

CE, RoHS, ISO 9001:2000, ISO 9001:2008

Product Name

Steering Wheel Frames,Seat Frames, Console / Instr

Product Specification

According to The Drawing

Surface Treatment

Chemical Conversion Coating, Electroplating,Painti

Raw Material

Az91d,Am60b,Am50A,En-Mc21120,En-Mc21320

Applications

Lightweight Automotive Components,Nev Parts,Motorc

Service

Design and Toolings by Drawings or 3D Scan Samples

Shipping Terms

EXW,Fob,CIF,Fca,DDP etc.

Software Assistance

PRO-E/Solidworks/Ug/Auto CAD/Catia

Transport Package

Carton, Pallet and Other Requirments

Specification

Customer

Trademark

OEM

Origin

Foshan, Guangzhou, China

HS Code

7901200000

Production Capacity

100000PCS/Month

Key features

Ultra-Lightweight - 30% Lighter than Aluminum Magnesium alloy is 30% lighter than aluminum and 80% lighter than steel, ideal for lightweight applications in automotive, aerospace, and electronics.
High Specific Strength - Lightweight without Compromising Rigidity Magnesium alloy offers excellent strength-to-weight ratio, delivering both lightweight design and structural rigidity.
Excellent EMI Shielding Performance Magnesium alloy provides superior EMI/RFI shielding for sensitive electronic devices and communication equipment.
Superior Vibration Damping Magnesium alloy absorbs vibration effectively, reducing equipment noise and improving operational stability.
Good Thermal Conductivity Thermal conductivity nearly double that of steel and 10 times higher than plastics, suitable for heat dissipation components.
Thin-Wall Casting Capability Minimum wall thickness down to 0.6mm, enabling complex, lightweight, and intricate component designs.
Cost-Effective CNC Machining Excellent machinability with longer tool life (up to 10x vs aluminum). Single finishing pass achieves final surface quality.
Professional Surface Finishing Systems Micro-arc oxidation (MAO), conversion coating, anodizing, and spray coating for corrosion and wear resistance.
High Dimensional Accuracy Die casting achieves 98% dimensional accuracy with tight tolerances and consistent part quality.
IATF 16949 & ISO 9001 Certified Quality Rigorous process control, full traceability, and zero-defect targets for aerospace, automotive, and medical applications.

Company profile

Foshan Nanhai Sunleaf Metal Products Co., Ltd.
Importers and ExportersHigh Repeat Buyers ChoiceR&D CapabilitiesExperienced Team
CertifiedBusiness Type: Manufacturer/Factory & Trading Company CertifiedR&D Capacity: ODM Service Available & OEM Service Available CertifiedCustomization Options: Customization from Samples, Customization from Designs, etc. CertifiedExport Year: 17 Years CertifiedNearest Port: Foshan PortAverage Response Time: ≤0.01h

AI-Powered supplier vetting

SummaryThe supplier, located in Foshan, China, has a robust manufacturing capability with a focus on construction materials and related products. They have been exporting goods for 17 years, with a significant portion of their sales coming from exports. The supplier holds an ISO9001:2015 certification, indicating a commitment to quality management. Despite lacking a research and development capability with SDK, they offer full customization services and provide both OEM and ODM services. The company has no inventory or overseas warehousing capabilities and does not collaborate with Fortune 500 companies.
Supplier typeThe supplier is a factory located in Nanhai District, Foshan, specializing in manufacturing.
CertificationsThe supplier holds an ISO9001:2015 certification, reflecting a commitment to maintaining quality management standards.
Financial creditThe supplier has stable financial capacity over the last three years and maintains consistent cash flow.
R&D capabilityThere is no available SDK for R&D, and no new products were developed in the past year, indicating limited innovation capability.
Production capacityThe supplier has a diverse range of manufacturing equipment and valid contracts, ensuring robust production capabilities.
Customization capabilityThe supplier offers full customization services and provides ODM, indicating strong customization capabilities.

Product Q&A

Q:What are the core advantages of magnesium die casting over aluminum die casting?
A:
Magnesium alloy is 30% lighter than aluminum, with higher specific strength and stiffness, excellent EMI shielding, vibration damping, and thin-wall casting capability. Minimum wall thickness can reach 0.6mm versus 1.2-1.5mm for aluminum.
Q:What are the main applications of magnesium die castings?
A:
Widely used in electric vehicles (drive housings, instrument panel beams, seat frames), aerospace, 3C electronics (laptop shells, phone casings, radar housings), medical devices, robotics, and power tools.
Q:How does magnesium machining differ from aluminum? Why is tool life longer?
A:
Magnesium has good thermal conductivity and low cutting force, with fast heat dissipation during machining, resulting in less tool wear and built-up edge. Tool life can be extended up to 10 times compared to aluminum machining. Usually only one finishing pass is needed.
Q:What are the safety precautions for magnesium machining?
A:
Keep cutting tools sharp to avoid friction heat and sparks from dull tools; use larger feed rates to produce thicker chips; dry cutting is recommended to avoid hydrogen embrittlement from coolants; prohibit flammable materials in the workshop.
Q:What are the main surface treatment methods for magnesium alloys?
A:
Main methods include micro-arc oxidation (MAO), chemical conversion coating, anodizing, electroplating, electrophoretic deposition, and spray coating. MAO can form ceramic oxide coatings with total thickness over 100.

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