
Aluminum parts precision-engineered through CNC machining deliver exceptional dimensional accuracy, smooth finishes, and intricate geometries, ensuring reliable performance across automotive, aerospace, electronics, and medical applications while minimizing material waste costs.

Aluminum parts produced via die casting offer high-volume efficiency, complex shapes, superior strength-to-weight ratio, excellent surface quality, and cost-effectiveness, making them ideal for consumer electronics, automotive, and industrial components applications.

Aluminum parts fabricated through sheet metal processes deliver lightweight durability, uniform thickness, and design flexibility, accommodating bends, embossing, and cutouts for enclosures, chassis, brackets, and architectural elements with rapid turnaround.
Advantages of Aluminum Parts
CNC machining aluminum provides numerous advantages, making it a preferred choice for precision manufacturing across industries like aerospace, automotive, and electronics. Here’s a breakdown of the main benefits:
Aluminum cuts and forms easily, speeding up manufacturing, minimizing tool degradation, and cutting expenses relative to tougher materials like steel, while its abundance and recyclability enhance overall economic value.
It provides strong durability in a lightweight form, making it highly suitable for scenarios that require weight reduction without compromising structural integrity.
The natural oxide coating resists moisture, chemicals, and harsh environments, extending component lifespan while requiring only minimal additional protection.
Aluminum offers excellent heat dissipation and electrical transmission for thermal management and electronic applications. CNC machining enables precise tolerances and anodizing for improved appearance and performance.
Chemical Composition of Aluminum Alloys
The table below summarizes the chemical composition of the aluminum alloys mentioned in the image—6061-T6, 6063-T6, 7075-T6, 6082, 5052, 5083, and 2024-T3—expressed as weight-percent ranges for each element. “Balance” indicates the remainder of the alloy is aluminum.
| lloy | Si | Fe | Cu | Mn | Mg | Cr | Zn | Ti | Others | Al |
|---|---|---|---|---|---|---|---|---|---|---|
| 6061-T6 | 0.40-0.80 | 0-0.70 | 0.15-0.40 | 0-0.15 | 0.80-1.20 | 0.04-0.35 | 0-0.25 | 0-0.15 | 0-0.15 total (0.05 each) | 95.85-98.56 |
| 6063-T6 | 0.20-0.60 | 0-0.35 | 0-0.10 | 0-0.10 | 0.45-0.90 | 0-0.10 | 0-0.10 | 0-0.10 | 0-0.15 total (0.05 each) | 97.5-99.35 |
| 7075-T6 | 0.40 max | 0.50 max | 1.20-2.00 | 0.30 max | 2.10-2.90 | 0.18-0.28 | 5.10-6.10 | 0.20 max | 0.05 each, 0.15 total | 87.1-91.4 |
| 6082 | 0.70-1.30 | 0.50 max | 0.10 max | 0.40-1.00 | 0.60-1.20 | 0.25 max | 0.20 max | 0.10 max | 0.15 max | 95.2-98.3 |
| 5052 | 0.25 max | 0.40 max | 0.10 max | 0.10 max | 2.20-2.80 | 0.15-0.35 | 0.10 max | 0.15 max | 0.15 max | 95.7-97.7 |
| 5083 | 0.40 max | 0.40 max | 0.10 max | 0.40-1.00 | 4.00-4.90 | 0.05-0.25 | 0.25 max | 0.15 max | 0.15 max | 92.55-95.55 |
| 2024-T3 | 0.50 max | 0.50 max | 3.80-4.90 | 0.30-0.90 | 1.20-1.80 | 0.10 max | 0.25 max | 0.15 max | 0.15 max | 90.9-93.2 |
| Alloy | Density (g/cm³) | Ultimate Tensile Strength (MPa) | Yield Strength (MPa) | Elongation at Break (%) | Brinell Hardness (HB) | Fatigue Strength (MPa) | Modulus of Elasticity (GPa) | Thermal Conductivity (W/m-K) |
|---|---|---|---|---|---|---|---|---|
| 6061-T6 | 2.7 | 310 | 276 | 12 | 95 | 96 | 69 | 167 |
| 6063-T6 | 2.7 | 241 | 214 | 11 | 85 | 70 | 68 | 200 |
| 7075-T6 | 2.81 | 572 | 503 | 11 | 150 | 159 | 72 | 130 |
| 6082 | 2.71 | 310 | 260 | 10 | 95 | 110 | 71 | 170 |
| 5052 | 2.68 | 228 | 193 | 18 | 61 | 90 | 70.3 | 138 |
| 5083 | 2.65 | 317 | 228 | 12 | 85 | 110 | 72 | 120 |
| 2024-T3 | 2.78 | 470 | 325 | 20 | 120 | 138 | 71 | 120 |
CNC Aluminum Machining Service
Selecting an appropriate supplier for your aluminum fabrication requirements is essential to guarantee superior quality, exactness, and streamlined operations in your manufacturing workflow. Boasting more than 17 years in precision CNC aluminum machining, rely on Anebon to provide top-tier outcomes that support your company’s expansion.
6061-T6
6063-T6
7075-T6
6082
5052
5083
2024-T3
Anodized Aluminum of Practical and Beautiful
Following anodizing, the exterior of industrial aluminum profiles becomes extremely durable, with the oxide film exhibiting elevated hardness. As a result, it demonstrates strong resistance to abrasion and is resistant to scratches post-anodizing.
The oxide film on anodized aluminum lacks conductivity, thus requiring anodizing for applications that demand insulation.
Certain aluminum components require surface coating with paint; the pores in anodized aluminum surfaces possess robust absorption capabilities, ensuring the coating applies more evenly and aesthetically pleasing.
The aluminum oxide film remains clear, making the slender layer of aluminum oxide film hard to detect by the naked eye, while it effectively blocks air contact to prevent corrosion of the aluminum.

Applications of Aluminum Parts

Aluminum parts excel in aerospace for their high strength-to-weight ratio, enabling efficient aircraft structures like wings, fuselages, and landing gear. They contribute to fuel efficiency, corrosion resistance, and durability in harsh conditions, also used in spacecraft components and satellite thermal shielding.

In medical applications, aluminum parts are valued for biocompatibility and lightweight properties, forming surgical instruments, implants, prosthetics, and diagnostic equipment. Their corrosion resistance supports sterilization, while ease of machining allows custom designs for devices like wheelchairs and endoscopic tools.

Aluminum parts enhance automotive performance through lightweight construction in engine blocks, wheels, body panels, and radiators. They improve fuel efficiency, corrosion resistance, and vibration absorption, commonly seen in chassis enclosures and transmission housings for durability and cost-effectiveness.

Aluminum parts in electronics provide excellent thermal conductivity for heat sinks, enclosures, and PCBs, preventing overheating in devices like smartphones and computers. Their conductivity supports connectors and batteries, offering lightweight, corrosion-resistant solutions for reliable performance.

Aluminum parts are crucial in UAVs for frames, propeller hubs, motor brackets, and landing gear, balancing lightness with rigidity for enhanced flight stability. Their corrosion resistance and precision machining improve durability in agricultural and industrial drones.
If you’re searching for top-tier CNC aluminum machining services, consider Anebon as your ideal choice. Equipped with advanced facilities and skilled experts, we stand as a leading supplier of aluminum machined parts, handling every phase from initial design through to production. Let Anebon manage these responsibilities to ensure precision and reliability. Reach out today to discuss bringing your ideas to life.
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Affordable choices without compromising standards.
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Try Anebon Now!
Discover high-quality aluminum parts from Anebon that provide outstanding performance and customized production flexibility to meet all your CNC machined aluminum requirements. With precision engineering and reliable durability, Anebon’s components are designed to excel in various industrial applications. Select Anebon as your preferred manufacturing partner for innovative solutions and consistent excellence in aluminum machining. Trust Anebon to deliver superior products with competitive advantages for your specific project needs.