Aluminum Silicon Carbide Structural Components
Aluminum Silicon Carbide Structural Components
Aluminum Silicon Carbide Structural Components offer excellent thermal conductivity and lightweight strength, making them ideal for applications requiring efficient heat dissipation and reduced weight. They outperform traditional metal and ceramic parts in power electronics, aerospace, and communication systems. We can supply high-quality Aluminum Silicon Carbide Structural Components with various specifications and competitive prices, offering customized solutions to meet specific requirements.
Or email us at sales@heegermaterials.com.Aluminum Silicon Carbide Structural Components Data Sheet
Chemical Formula: | Al-SiC |
Shape: | Custom parts |
Dimension: | Standard or customized |
Aluminum Silicon Carbide Structural Components Description
Aluminum Silicon Carbide Structural Components combine high thermal conductivity, low density, and excellent mechanical strength, making them ideal for demanding applications where weight reduction and heat dissipation are critical. These components provide superior performance compared to conventional metal or ceramic parts, ensuring stability and durability in environments such as power electronics, aerospace, high-frequency communication systems, and optoelectronic devices. Their balanced properties help enhance overall system efficiency, extend service life, and lower operational costs.
Aluminum Silicon Carbide Material Chemical Composition
Technology | Material Reference Code | Volume Fraction | Performance Advantages | Application Directions | |
SiC (%) | Al (%) | ||||
RSPM + HIP (Rapid Solidification + HIP) | HMA15 | 15 | 85 | ✔High specific strength & stiffness ✔Low density ✔Excellent wear resistance ✔Good heat resistance | ✔Lightweight and wear-resistant components ✔Alternative to aluminum alloys, cast steel, cast iron, and titanium alloys ✔Brake components, pistons, connecting rods, fighter belly fins, helicopter rotor forgings |
HMA30 | 30 | 70 | |||
HMA40 | 40 | 60 | ✔High specific strength & stiffness ✔High micro-yield strength ✔Low thermal expansion ✔High thermal conductivity | ✔Aerospace and defense applications ✔Optical mirrors, inertial navigation system components ✔Alternative to beryllium, glass-ceramics, quartz glass | |
HMA50 | 50 | 50 | |||
Pressure Infiltration (PI) | HMA55 | 55 | 45 | ✔High specific modulus ✔Low density ✔Low thermal expansion ✔High thermal conductivity | ✔Thermal management materials for military and civilian use ✔Military IGBT substrates, PCB substrates, heat dissipation baseplates ✔Electronic component bases and housings, power amplifier module housings and bases ✔Alternative to W/Cu, Mo/Cu, Kovar alloys |
HMA65 | 65 | 35 | |||
HMA70 | 70 | 30 |
Aluminum Silicon Carbide Structural Components Features
- High Thermal Conductivity: Ensures efficient heat dissipation in demanding environments.
- Lightweight: Reduces overall system weight for improved performance and handling.
- Excellent Mechanical Strength: Provides durability and resistance to mechanical stress.
- Corrosion Resistance: Maintains stability and longevity in harsh conditions.
- Dimensional Stability: Offers precise and consistent performance across temperature variations.
Aluminum Silicon Carbide Structural Components Applications
- Power Electronics: Used for heat sinks and structural supports in high-power devices.
- Aerospace Industry: Provides lightweight, strong components for aircraft and spacecraft systems.
- High-Frequency Communication Systems: Enhance thermal management and structural integrity.
- Optoelectronic Devices: Supports efficient heat dissipation in lasers and LEDs.
- Automotive Electronics: Applied in modules requiring durability and thermal stability.
Aluminum Silicon Carbide Material Properties
Aluminum Silicon Carbide Packaging
Aluminum silicon carbide ceramic products are typically packaged in vacuum-sealed bags to prevent moisture or contamination and wrapped with foam to cushion vibrations and impacts during transport, ensuring the quality of products in their original condition.
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