Polishing Machining Titanium Round Rods / Bar Low Density High Strength

Place of Origin China
Brand Name Changsheng
Certification ISO 9001;2015
Model Number ASTM B348, ASTM F136, ASTM F67
Minimum Order Quantity 10kg
Price USD24/kg
Packaging Details wooden case,carton Packaging can be according to customer requirements.
Delivery Time 15~20 work days
Payment Terms L/C, T/T, Western Union, MoneyGram,paypal
Supply Ability 2000kgs/month

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Product Details
Surface Finish Polished Color Silvery
Diameter Customizable Size 6.35×6.35×4000mm
Technology Hot Forging Hot Rolled Machining Length Customizable
Yield Strength 170 MPa Material Titanium
Dimention As Order Tensile Strength 240 MPa
Grade Commercially Pure (CP) Grade 1 Production Method Cold Drawing
Materials Titanium Package Wooden Case
Elongation 24%
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Machining Titanium Round Rods

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Polishing Titanium Round Rods

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High Strength Titanium Round Bar

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Product Description

Introduction

 

Titanium rods are used to produce titanium alloys and titanium metal. They have low density, high strength, excellent corrosion resistance, and good thermal properties, making them ideal for aerospace components, rocket nozzles, chemical processing equipment, heat exchangers, and medical implants.

Specifications

Parameter Details
Product Name Titanium Rod / Bar
Standard ASTM B348, ISO 13810, ISO 5832-2, ISO 5832-3; ASTM F136 & ASTM F67 for medical applications
Grade Grade 5 Titanium Bar (Ti-6Al-4V)
Diameter 1–200 mm (customized sizes available)
Length 300–6000 mm
Technique Hot Forging & Hot Rolling
Surface Finish Polished, Machined
Shape Round, Flat, Square, Hexagonal
Features Excellent cryogenic performance, non-magnetic, non-toxic, low modulus of elasticity
Applications Industrial, Medical, Petrochemical, Aerospace, Chemical, Marine

Applications

Titanium rods are highly versatile and can be used for:

  1. Cold drawing to make lath, foil, or wire.

  2. Manufacturing titanium sponge (PTFE fiber) products.

  3. Serving as chemical catalyst carriers or electrolyte purification agents.

  4. Acting as filler material in high-temperature welding (melting point: 3727°C).

  5. Producing refractory materials and high-temperature plastics.

  6. Steelmaking as a deoxidizer and desulfurizer.

  7. High-temperature furnace components.

  8. Nuclear reactor control rods.

  9. Aircraft engine blades and rocket nozzles.

  10. Containers for uranium extraction from seawater.

  11. Heat-resistant glass and zirconia fiber production.

  12. Artificial joints and medical implants.

  13. Semiconductor device applications.