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Home > products > Titanium Tube > 3.0Al-2.5V Titanium Tube Grade 9 ASTM B338/ASTM B861 Including 3% Aluminium And 2.5% Vanadium

3.0Al-2.5V Titanium Tube Grade 9 ASTM B338/ASTM B861 Including 3% Aluminium And 2.5% Vanadium

Product Details

Place of Origin: Baoji, China

Brand Name: LHTi,China

Certification: ISO9001, CE, API,etc

Model Number: Titanium Tube Grade 9

Payment & Shipping Terms

Minimum Order Quantity: 5-10 pieces

Price: negotiable

Packaging Details: Plywood case or pallet, or as per your requirement

Delivery Time: about 7-14 days for delivery

Payment Terms: L/C, D/A, D/P, T/T, Western Union

Supply Ability: 5000 Pieces Per Month

Get Best Price
Highlight:

ASTM B338 Titanium Tube

,

ASTM B861 Titanium Tube

,

3.0Al-2.5V Titanium Tube

Standard:
ASTM B338, ASTM B861, ASTM B862
Classification:
Grade 9
Materials:
Titanium Metal Or Titanium Alloy
Processing Service:
Bending, Welding, Cutting
Surface:
Pickling Surface/Polished
Processing:
Seamless And Weld
Application:
Aerospace, Chemical Processing, Medical, Industrial
Shape:
Tube
Specific Use:
Heating And Cooling
Dimension:
Customized Or Standardisation
Standard:
ASTM B338, ASTM B861, ASTM B862
Classification:
Grade 9
Materials:
Titanium Metal Or Titanium Alloy
Processing Service:
Bending, Welding, Cutting
Surface:
Pickling Surface/Polished
Processing:
Seamless And Weld
Application:
Aerospace, Chemical Processing, Medical, Industrial
Shape:
Tube
Specific Use:
Heating And Cooling
Dimension:
Customized Or Standardisation
3.0Al-2.5V Titanium Tube Grade 9 ASTM B338/ASTM B861 Including 3% Aluminium And 2.5% Vanadium

3.0Al-2.5V Titanium Tube Grade 9 ASTM B338/ASTM B861 Including 3% Aluminium and 2.5% Vanadium

 

Introduction of Titanium Seamless Tube and Titanium Tube:

The 3Al-2.5V titanium alloy, also known as Grade 9 titanium, offers significant advantages over commercially pure titanium alloys, particularly in demanding environments and high-performance applications:

 

Greater Mechanical Strength: Compared to commercially pure titanium alloys like Grade 1 or Grade 2, Grade 9 titanium (3Al-2.5V) provides 20-50% greater mechanical strength. This enhanced strength makes it suitable for applications where higher mechanical performance is required, both at room temperature and elevated temperatures.

 

Excellent Properties in Aggressive Environments: The alloy is particularly noted for its excellent properties in aggressive chloride-containing environments. This includes resistance to corrosion, which is critical for applications exposed to seawater, salt spray, or other corrosive substances. This makes Grade 9 titanium highly suitable for marine and aerospace applications where durability against corrosion is essential.

 

Hydraulic Tubes in Aerospace: Grade 9 titanium is commonly used in aerospace applications, especially for hydraulic tubes. Its combination of strength, corrosion resistance, and lightweight properties contributes to the efficiency and reliability of aerospace hydraulic systems.

 

High-Performance Bicycle Frames: The alloy is also favored in the manufacture of high-performance bicycle frames. Its strength-to-weight ratio allows for the creation of lightweight frames that are strong and durable, meeting the rigorous demands of competitive cycling and high-end recreational bicycles.

 

Good Ductility and Toughness: Despite its increased strength, Grade 9 titanium maintains good ductility and toughness. This property is crucial for manufacturing processes and applications where the material may undergo forming, bending, or machining without compromising its structural integrity.

 

Overall, 3Al-2.5V (Grade 9) titanium alloy stands out as a versatile material that combines strength, corrosion resistance, and durability, making it a preferred choice in aerospace, marine, and sports equipment industries where performance under challenging conditions is paramount.

 

 

Different Specifications:

 

Specification Description
ABS5004 American Bureau of Shipping rules for marine structures/equipment
AMS4943 Aerospace Material Specification for titanium alloy sheets
AMS4944 Aerospace Material Specification for titanium alloy strips
AMS4945 Aerospace Material Specification for titanium alloy plates
AMS4946 Aerospace Material Specification for titanium alloy bars/forgings
ASTM B338 ASTM standard for seamless and welded titanium tubes
ASTM B861 ASTM standard for seamless titanium and titanium alloy pipe
BMS 7-234 Boeing Material Specification for titanium alloy bars/forgings
DMS2241 Specification for titanium alloy bars/forgings in aerospace applications
GEB50TF35 Specific aerospace or industrial standard (exact details may vary)
 
 
Benefits of Grade 9 Titanium Tubes:

Grade 9 titanium (3Al-2.5V) offers several distinct benefits due to its specific properties, making it a preferred choice in various applications:

 

Excellent Resistance to Erosion Corrosion: Grade 9 titanium exhibits exceptional resistance to erosion corrosion, particularly in environments containing chlorides and other corrosive substances. This makes it suitable for use in marine environments, where exposure to seawater and salt spray can degrade other materials over time.​

 

Good Weldability: Titanium Grade 9 possesses good weldability, allowing for ease of joining with other titanium alloys or materials using standard welding techniques. This is crucial in manufacturing processes where components need to be assembled or repaired without compromising the material's integrity.

 

Good Formability: The alloy demonstrates good formability, meaning it can be easily formed into various shapes and sizes through processes such as forging, bending, and machining. This property is advantageous in industries like aerospace and medical, where complex and customized parts are often required.

 

Good Ductility: Despite its increased strength compared to commercially pure titanium, Grade 9 titanium maintains good ductility. This ensures that it can undergo deformation without fracturing or losing its structural integrity. Good ductility is essential in applications where the material may experience stress or mechanical loading.

 

 

 

3.0Al-2.5V Titanium Tube Grade 9 ASTM B338/ASTM B861 Including 3% Aluminium and 2.5% Vanadium 0

 

Applications of Grade 9 Titanium Tube:

Grade 9 titanium (3Al-2.5V) finds diverse applications across several industries due to its excellent combination of properties, including strength, corrosion resistance, and lightweight characteristics. Here are some specific applications where Grade 9 titanium is commonly used:

  1. Bicycle Frames: Grade 9 titanium is highly valued in the cycling industry for its strength-to-weight ratio and durability. It is used to manufacture high-performance bicycle frames that are both lightweight and robust, offering cyclists a responsive and comfortable riding experience. Titanium frames are particularly sought after by enthusiasts and competitive cyclists due to their ability to absorb vibrations and provide a smooth ride.

  2. Heat Exchangers: In industrial and marine environments, Grade 9 titanium is utilized in heat exchanger applications. Its resistance to corrosion, even in chloride-containing environments, makes it ideal for these critical components. Titanium tubes made from Grade 9 alloy are used in heat exchangers for chemical processing, desalination plants, HVAC systems, and other applications where efficiency and longevity are crucial.

  3. Medical Components: Titanium's biocompatibility and corrosion resistance make Grade 9 titanium suitable for medical applications. It is used in the manufacture of medical implants such as orthopedic implants (e.g., hip and knee replacements), dental implants, and surgical instruments. Titanium's ability to integrate with human bone tissue and its resistance to bodily fluids make it a preferred material for long-term implants.

  4. Hydraulic Tubes: Aerospace and industrial hydraulic systems benefit from Grade 9 titanium due to its strength and corrosion resistance. Hydraulic tubes made from Grade 9 titanium alloy can withstand high pressures and harsh operating conditions, ensuring reliability and safety in critical hydraulic applications.