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TI6064 Titanium/Aluminium/Vanadium Alloy Balls (Ti90/Al 6/V 4)

Catalog No. TI6064
Material Ti90/Al6/V4
Appearance Metallic Gray Ball
Grade 200
Diameter 2/3/6/8 mm

Titanium/Aluminium/Vanadium Alloy Balls are high-strength, lightweight spherical components known for their exceptional corrosion resistance and biocompatibility, making them ideal for aerospace, medical, and industrial applications.

Related Products: 316 Stainless Steel Balls, Gold Balls

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Titanium/Aluminium/Vanadium Alloy Balls (Ti90/Al 6/V 4)
Titanium/Aluminium/Vanadium Alloy Balls (Ti90/Al 6/V 4)
Titanium/Aluminium/Vanadium Alloy Balls (Ti90/Al 6/V 4)
Titanium/Aluminium/Vanadium Alloy Balls (Ti90/Al 6/V 4)
Description
Specification

Titanium/Aluminium/Vanadium Alloy Balls Description:

Titanium/Aluminium/Vanadium Alloy Balls are renowned for their exceptional combination of strength, lightweight, and corrosion resistance, making them highly suitable for demanding applications. This alloy, often referred to as Ti-6Al-4V, provides an outstanding balance between mechanical performance and durability, even in extreme environments. Its high tensile strength and low density make these balls ideal for aerospace components where weight reduction without compromising structural integrity is crucial. Additionally, the alloy's excellent biocompatibility makes it a preferred choice in medical implants and devices. The balls also exhibit good resistance to fatigue and wear, ensuring long-lasting performance in industrial applications. This unique combination of properties makes Titanium/Aluminium/Vanadium Alloy Balls a versatile and reliable choice in various high-performance sectors.

Titanium/Aluminium/Vanadium Alloy Balls Specifications:

Grade

200

Formula

Ti90/Al6/V4

Diameter

2/3/6/8 mm

Sphericity

5.08µm

Type

Precision Sphere

Titanium/Aluminium/Vanadium Alloy Balls Applications:

Titanium/Aluminium/Vanadium Alloy Balls are extensively used in high-performance applications across various industries due to their exceptional strength, lightweight properties, and corrosion resistance. In the aerospace industry, they are crucial for aircraft components, structural parts of spacecraft, and satellites, where reducing weight without compromising strength is vital. The medical field relies on these alloy balls for implants and surgical instruments, benefiting from the alloy's excellent biocompatibility and resistance to corrosion. In industrial applications, they are used in high-performance bearings and chemical processing equipment, ensuring durability under heavy loads and exposure to aggressive chemicals. The automotive industry also employs these balls in racing and performance vehicles, as well as in engine components, to enhance efficiency and reduce weight. Additionally, the alloy's strength and lightness make it ideal for high-end sports equipment, such as golf clubs and bicycle frames, where performance and durability are key. This versatility makes Titanium/Aluminium/Vanadium Alloy Balls a preferred choice in demanding environments where superior material properties are essential.

Titanium/Aluminium/Vanadium Alloy Balls Packing:

Our Titanium/Aluminium/Vanadium Alloy Balls are carefully handled during storage and transportation to preserve the quality of our product in its original condition.

Titanium/Aluminium/Vanadium Alloy Balls FAQ:

Q1: Why is this alloy preferred for medical implants?

A1: The alloy is highly biocompatible, meaning it is well-tolerated by the human body, and offers excellent resistance to corrosion, making it ideal for long-term use in medical implants such as joint replacements and dental implants.

Q2: How does the alloy perform under extreme conditions?

A2: Titanium/Aluminium/Vanadium Alloy Balls are designed to withstand extreme temperatures and harsh environments without losing their mechanical properties, making them suitable for aerospace and industrial applications where durability is crucial.

Q3: Are these alloy balls resistant to wear and fatigue?

A3: Yes, Titanium/Aluminium/Vanadium Alloy Balls exhibit excellent resistance to wear and fatigue, ensuring long-lasting performance in applications that involve heavy loads, repetitive motion, or high stress.

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