5083
EDOBO
Feature of products:
5083 H32 aluminum plate is a high-strength material that is made up of aluminum, magnesium, and manganese. This particular alloy is highly resistant to corrosion and has exceptional welding and fabrication properties making it an ideal choice for marine and offshore applications. The H32 temper designation means that the plate is strain-hardened and stabilized to provide increased strength and durability while maintaining excellent formability.
Our 5083 H32 aluminum plate is produced to meet stringent industry standards and is available in a variety of sizes and thicknesses to suit your specific needs. Whether you are looking for a standard stock size or require custom cuts, we can provide you with the exact size and shape you need to meet your project requirements.
Some of the key features of our 5083 H32 aluminum plate include its high strength-to-weight ratio, excellent corrosion resistance, and low density. These properties make it an ideal choice for a variety of applications, including aerospace, transportation, architecture, and marine industries. Additionally, this material is well-suited for welding and fabrication and can be easily formed into complex shapes and configurations.
At our facility, we take great pride in producing high-quality aluminum products that meet and exceed our customer's expectations. Our 5083 H32 aluminum plate is no exception, and we are confident that it will meet your project needs and perform exceptionally well in demanding environments. Contact us today to learn more about our products and services and how we can help you with your aluminum plate needs.
Specification of 5083 aluminum plate:
Thickness:6-250mm
Width:max 2800mm
Length:can be customized
Chemical composition of 5083 aluminum plate:
Elements | Si | Cu | Mg | Zn | Mn | Ti | Cr | Fe | Al |
Content(WT%) | ≤0.4 | ≤0.1 | 4.0-4.9 | ≤0.25 | 0.4-1.0 | ≤0.15 | 0.05-0.25 | ≤0.4 | Reminder |
Feature of products:
5083 H32 aluminum plate is a high-strength material that is made up of aluminum, magnesium, and manganese. This particular alloy is highly resistant to corrosion and has exceptional welding and fabrication properties making it an ideal choice for marine and offshore applications. The H32 temper designation means that the plate is strain-hardened and stabilized to provide increased strength and durability while maintaining excellent formability.
Our 5083 H32 aluminum plate is produced to meet stringent industry standards and is available in a variety of sizes and thicknesses to suit your specific needs. Whether you are looking for a standard stock size or require custom cuts, we can provide you with the exact size and shape you need to meet your project requirements.
Some of the key features of our 5083 H32 aluminum plate include its high strength-to-weight ratio, excellent corrosion resistance, and low density. These properties make it an ideal choice for a variety of applications, including aerospace, transportation, architecture, and marine industries. Additionally, this material is well-suited for welding and fabrication and can be easily formed into complex shapes and configurations.
At our facility, we take great pride in producing high-quality aluminum products that meet and exceed our customer's expectations. Our 5083 H32 aluminum plate is no exception, and we are confident that it will meet your project needs and perform exceptionally well in demanding environments. Contact us today to learn more about our products and services and how we can help you with your aluminum plate needs.
Specification of 5083 aluminum plate:
Thickness:6-250mm
Width:max 2800mm
Length:can be customized
Chemical composition of 5083 aluminum plate:
Elements | Si | Cu | Mg | Zn | Mn | Ti | Cr | Fe | Al |
Content(WT%) | ≤0.4 | ≤0.1 | 4.0-4.9 | ≤0.25 | 0.4-1.0 | ≤0.15 | 0.05-0.25 | ≤0.4 | Reminder |
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{"text":"Introduction\n\nAluminum alloys are widely used in various industries due to their lightweight, corrosion resistance, and excellent mechanical properties. Among these, the **5005 H18 aluminum alloy** has garnered attention for its potential applications in marine environments. However, the