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GR5 Titanium Sheet AMS 4911 Thickness 0.12" To 0.125" For Aerospace

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xFeatures | Lightweight, High Strength, Corrosion Resistance, Heat Resistance | Mateiral | Titanium GR5 6AL 4V |
---|---|---|---|
Advantages | High Elongation Rate | Surface Quality | Smooth, Clean, No Cracks, No Scratches |
Processing Service | Bending ,Cutting | Processing | CNC, Forge, Rolling And Welded |
Surface Process | Polished, Anodized, Sandblasted | Sizes | As Required |
Highlight | Aerospace Titanium Sheet,GR5 Titanium Sheet,AMS 4911 Titanium Sheet |
GR5 Titanium Sheet AMS 4911 thickness 0.12" to 0.125" For Aerospace
Ti-6Al-4V sheet meets AMS 4911 specs
Size : ( 1.0 +/-0.05 mm ) Thick x (914 + 10mm ) Width x L
( 2.0 +/-0.07 mm ) Thick x (1220 + 10mm) Width x L
What is 6al 4v titanium sheet?
The 6al-4v titanium sheet, also known as Grade 5 titanium, is a highly valued alloy within the titanium industry. It boasts a remarkable combination of properties that make it suitable for a wide array of applications. These properties include exceptional strength, a low modulus of elasticity, high resistance to corrosion, and the capability to be welded and heat-treated.
The addition of aluminum and vanadium to the titanium alloy enhances its physical and mechanical attributes, notably increasing hardness. This careful blend of elements results in an alloy that is both robust and adaptable, meeting the stringent demands of various industries.
Grade 5 titanium, with its 6% aluminum and 4% vanadium composition, balances lightweight characteristics with a favorable strength-to-weight ratio. Its superior corrosion resistance makes it an ideal material for environments where other metals might fail. As the most popular grade of titanium, it is widely used across sectors such as aerospace, medical, tools, and machinery. Stocks of this titanium alloy are available domestically in full size and can also be custom cut to meet specific requirements.
AMS 4911 Titanium Sheet is particularly favored in military and aerospace applications due to its high strength-to-weight ratio and ability to endure high temperatures, along with its corrosion resistance. Ti-6Al-4V, under this designation, adheres to strict material specifications essential for these critical applications.
Available in various sizes and thicknesses, 6al-4v titanium sheets can be tailored to meet the unique demands of different projects. They can be precisely cut, formed, and welded to create complex shapes and structures, making them integral in aerospace, military, and defense sectors. Applications for this titanium alloy extend to aircraft frames, missile and rocket components, armor plating, and naval ship components, reflecting its versatility and reliability in demanding environments.
Specification
AMS 4911 Titanium 6Al-4V Available Forms |
Titanium Coil size range: thickness 0.12"- 0.125" |
AMS 4911 6Al-4V Titanium sheet | size range: thickness 0.12"- 0.125" |
AMS 4911 6Al-4V Titanium plate | size range: thickness 0.125"- 4" |
AMS 4911 6Al-4V SHEET /PLATE Common size |
Thickness from 0.012", wide less than 59", length less than 118" 0.032" x 36" x 96" 0.040" x 36" x 96" 0.063" x 36" x 96" 0.071" x 36" x 96" 0.080"x 36"x 96" 0.090" x 36" x 96" |
Mechanical Properties:
Tensile strength: min 900Mpa
Yield Strength At 0.2% Offset:min 825 Mpa
Elogation A50mm:min 10%
Hardness well:36HRC
Chemical Composition:
Element | min | max |
Aluminum | 5.50 | 6.75 |
Vanadium | 3.50 | 4.50 |
Iron | -- | 0.30 |
Oxygen | -- | 0.20 |
Carbon | -- | 0.08 |
Nitrogen | -- | 0.05 (500 ppm) |
Hydrogen(3.1.2) | -- | 0.015 (150 ppm) |
Yttrium (3.1.1) | -- | 0.005 ( 50 ppm) |
Other Elements, each (3.1.1) | -- | 0.10 |
Other Elements, total (3.1.1) | -- | 0.40 |
Titanium | remainder |
QUALITY TEST Of AMS 4911 Ti-6Al-4V TITANIUM SHEET/PLATE For AEROSPACE USE
The titanium Sheets must 100% meet AMS 4911 specs. and ASTM E290 105 Degree Bend test.
Ti-6Al-4V titanium, a material with a nominal composition of 6% aluminum, 4% vanadium, and the balance primarily titanium, is widely used in the aerospace industry due to its exceptional properties. Here are some key characteristics of Ti-6Al-4V that make it suitable for aerospace applications:
1. **High Strength-to-Weight Ratio**: One of the most important considerations in aerospace engineering is reducing weight without compromising strength. Ti-6Al-4V offers an excellent balance between these two factors, contributing to more efficient fuel usage and increased performance.
2. **Corrosion Resistance**: The alloy has outstanding resistance to corrosion from seawater, salt spray, and other environmental factors, making it ideal for aircraft skin, landing gear, and components that may be exposed to harsh conditions.
3. **Creep and Fatigue Resistance**: At elevated temperatures, Ti-6Al-4V maintains its mechanical properties, which is crucial for components such as jet engine parts that operate at high temperatures.
4. **Weldability**: The ability to join Ti-6Al-4V reliably through welding is essential for manufacturing complex aerospace structures.
5. **Biocompatibility**: While not directly related to aerospace, the biocompatibility of Ti-6Al-4V makes it useful for space-related medical devices or equipment that could have human contact.
6. **High Temperature Strength**: Aerospace components often face extreme temperatures, either from operational heat or during re-entry into the Earth's atmosphere. Ti-6Al-4V can withstand these conditions without significant loss of strength.
7. **Formability and Machinability**: The alloy can be formed and machined into various shapes and sizes to meet specific design requirements, which is vital for producing intricate aerospace components.
8. **Low Coefficient of Thermal Expansion**: This property helps ensure that components will not significantly distort under changes in temperature, maintaining their structural integrity.
9. **Tensile Strength**: Ti-6Al-4V possesses high tensile strength, allowing it to resist forces that tend to stretch or pull the material, which is critical for structural components.
10. **Ductility**: The alloy exhibits good ductility, meaning it can undergo significant deformation before reaching its breaking point, which aids in forming processes.
These properties collectively contribute to making Ti-6Al-4V a favored material for a variety of aerospace applications, including aircraft structures, landing gears, engine components, and even spacecraft elements.