Aluminum, a lightweight metal with balanced properties, is limited in high-end applications by its inherent insufficient strength and heat resistance. Aluminum matrix composites achieve performance breakthroughs by incorporating nano-scale or micro-scale reinforcement particles, while retaining aluminum’s excellent characteristics.
Through interactions with dislocations (such as hindrance and surrounding) and load transfer effects, reinforcement particles effectively impede dislocation movement, enabling the material to achieve synergistic improvements in strength, stiffness, and thermal stability. This feature makes it an ideal choice for lightweight load-bearing components in aerospace, braking systems of high-speed trains, and high-power electronic packaging devices.
It successfully addresses the composite demand for “stronger, lighter, and more heat-resistant” materials in modern industry, driving the continuous innovation of high-end equipment manufacturing technology.
Sample Preparation Scheme for This Batch:
1️⃣ Rough Grinding: P2000 silicon carbide sandpaper, with low-temperature wax coated on the sandpaper surface
2️⃣ Rough Polishing: SC-JP + 3μm PD-WT polycrystalline diamond
3️⃣ Fine Polishing: ZN-JP + 50nm SO-A439 silicon dioxide
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