Raw Material Properties | ||||||||||||
Material Grade/ Description |
Chemical Composition (weight %) | T.S (Mpa) |
Y.S (Mpa) |
EL | Hardness | |||||||
(Cu) | (Si) | (Fe) | (Mn) | (Mg) | (Zn) | (Cr) | (Ti) | |||||
Aluminum 5052-H32 | <=0.1 | <=0.25 | <=0.40 | <=0.1 | 2.2~2.8 | <=0.1 | <=0.1 | NA | 170~305 | >=90 | >=10% | 120-160HB |
Aluminum alloy 5052-H32 is a suitable choice for making common CNC machining prototypes or precision prototype machining parts to be used in various industries. Here are some main reasons for reference,
Corrosion Resistance: Aluminum alloy 5052-H32 has excellent corrosion resistance, making it a great option for applications where the parts will be exposed to harsh environments or corrosive substances.
Strength-to-Weight Ratio: This alloy offers a good balance of strength and lightweight, which is crucial for many industries like aerospace, automotive, and marine, where weight savings are important.
Machinability: Aluminum 5052-H32 has good machinability, meaning it can be easily and accurately machined using CNC technology to create intricate and precise prototypes.
Versatility: This alloy can be used in a wide range of applications, from structural components to decorative parts, making it a versatile choice for many industries.
Cost-Effectiveness: Compared to other high-performance aluminum alloys, 5052-H32 is relatively cost-effective, making it a budget-friendly option for prototype development.
Overall, the combination of corrosion resistance, strength, machinability, and cost-effectiveness makes aluminum alloy 5052-H32 a suitable material for producing CNC machining prototypes that can be used in a variety of industries, including automotive, aerospace, marine, and more.