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Magnesium-Gadolinium Master Alloy Superior High-Temperature Strength & Creep Resistance

Magnesium-Gadolinium Master Alloy Superior High-Temperature Strength & Creep Resistance

Magnesium Gadolinium Master Alloy

Creep Resistance Magnesium Gadolinium Master Alloy

High Temperature Magnesium Gadolinium Master Alloy

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Product Details
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Magnesium Gadolinium Master Alloy

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Creep Resistance Magnesium Gadolinium Master Alloy

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High Temperature Magnesium Gadolinium Master Alloy

Payment & Shipping Terms
Minimum Order Quantity
500g
Packaging Details
50 kg sealed iron drum packaging
Delivery Time
45-60 Workdays
Payment Terms
T/T
Supply Ability
5000kg
Product Description

This product is the core solution for next-generation high-temperature resistant magnesium alloys and a key raw material for designing and developing advanced heat-resistant magnesium alloys. Gadolinium (Gd), as a rare earth element with a large atomic radius, can extremely effectively enhance the high-temperature strength, creep resistance, and microstructural stability of magnesium alloys through unique solid solution and precipitation strengthening mechanisms.

 

Application Fields

1.Aerospace and High-end Equipment: Aero-engine accessory gearboxes, transmission housings, skins and frames for high-speed aircraft, support components in high-temperature airborne areas.

2.New Energy Vehicles and High-end Transportation: High-power drive motor housings, heat dissipation substrates for electronic control systems, turbocharger housings.

3.Specialized Industrial Sectors: Industrial robot joint arms operating under high-temperature conditions, precision instrument housings, semiconductor equipment components, high-end racing engine components.

 

Properties (Theoretical)

Specification

Gadolinium (Gd) Content: 10% - 50% (Supports precise customization)

Product Form

Standard waffle ingots (optimized for dissolution efficiency) or customized as required

Solid Solution Strengthening

Large atomic radius of gadolinium causes significant lattice distortion in the magnesium matrix

Precipitation Strengthening

Forms nanoscale dispersed strengthening phases (e.g., β' phase) with extremely high thermal stability

Increase Recrystallization Temperature

Significantly delays the recrystallization process at high temperatures

Specification

Gadolinium (Gd) Content: 10% - 50% (Supports precise customization)

 

Health and Safety Information

General Description

This product is an alloy material and is stable in its solid, normal state. However, dust or fumes may be generated during melting, processing (e.g., cutting, grinding).

Operational Recommendations

Operations involving high temperatures or dust generation should be conducted in a well-ventilated environment. Operators should wear appropriate personal protective equipment, such as dust masks, protective goggles, and gloves. Avoid inhaling dust or fumes and prolonged contact with eyes and skin.

Storage Requirements

Store in a dry, well-ventilated area, away from strong acids, alkalis, and other corrosive substances.

Safety Data Sheet

For detailed information on safe operations and emergency response, please refer to the Material Safety Data Sheet (MSDS) for this product or request it from the supplier.

 

Packaging Specifications

Standard Packaging: 50 kg sealed iron drum packaging.

Custom Packaging: Available according to customer specifications.

 

About Magnesium-Gadolinium Master Alloy

1.Outstanding High-Temperature Performance Improvement: Significantly increases recrystallization temperature, slows the recrystallization process, enabling the alloy to maintain excellent mechanical properties even above 300°C; and forms nanoscale dispersed phases with extremely high thermal stability, granting outstanding creep resistance.

2.Flexible Alloying Platform: Exhibits significant synergistic strengthening effects with elements such as yttrium and neodymium, providing broad design space for materials.

3.Stable Product Quality: Strictly produced in accordance with national standards, featuring high purity, low impurities, uniform composition, and batch-to-batch stability.

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