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Titanium Rod

Titanium Rod

Material: C.P. Titanium, Titanium Alloy

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Features

Material:

C.P. Titanium, Titanium Alloy

Standard:

ASTM B348, ASTM F136, ASTM F67, AMS 4928, etc.

Surface:

Polished, Finish Turning

Shape:

Round Rod, Rectangular and Hexagonal Bar, Ingot

Size:

Dia.: 5mm-300mm (0.2"-12"), Length: 50mm-6000mm (2.0"-236")

 

Product Description

Titanium rod is a lightweight, high-strength, and corrosion-resistant metal product widely used in aerospace, medical, chemical, and industrial applications. Available in commercially pure (CP) titanium and titanium alloys, it offers excellent mechanical properties, heat resistance, and biocompatibility, making it suitable for engineering, medical implants, and high-performance components.

 

Features & Properties

High Strength-to-Weight Ratio – Stronger than steel but significantly lighter.
Superior Corrosion Resistance – Withstands seawater, acids, and harsh chemicals.
High Temperature Resistance – Suitable for extreme conditions.
Biocompatibility – Ideal for medical and dental implants.
Excellent Machinability & Weldability – Easy to cut, shape, and weld.
Non-Magnetic & Non-Toxic – Perfect for sensitive applications.

 

Product Specifications

Material Grade Diameter Range Length Surface Finish Standard
C.P. Titanium Gr1, Gr2, Gr3, Gr4 5mm – 300mm 50mm – 6000mm Polished, Finish Turning ASTM B348, ASTM F67
Titanium Alloy Gr5 (Ti-6Al-4V), Gr7, Gr9, Gr12 5mm – 300mm 50mm – 6000mm Polished, Finish Turning ASTM B348, ASTM F136, AMS 4928

(Custom sizes and alloys available upon request)

 

Product Standards

ASTM B348 – Standard for titanium & titanium alloy bars, rods, and billets.

ASTM F136 – Medical-grade titanium for surgical implants.

ASTM F67 – Unalloyed titanium for medical applications.

AMS 4928 – Aerospace titanium bar & forging stock.

 

Product Forms

Round Rod – Commonly used in machining and fabrication.
Rectangular Bar – Ideal for structural and industrial applications.
Hexagonal Bar – Used for fasteners and mechanical parts.
Titanium Ingot – Raw material for further processing.

 

Production Method & Production Equipments

Production Method:

Titanium Sponge Preparation – Extracted and purified from titanium ore.

Vacuum Arc Remelting (VAR) or Electron Beam Melting (EBM) – Produces high-purity titanium ingots.

Forging & Hot Rolling – Forms titanium into rods and bars of required sizes.

Annealing & Heat Treatment – Improves mechanical properties.

Surface Treatment & Finishing – Polished or finish-turned for smooth surface.

Quality Control & Inspection – Ensures compliance with international standards.

Production Equipments:
🔹 Vacuum Arc Remelting (VAR) Furnace
🔹 Electron Beam Melting (EBM) System
🔹 Hot Rolling & Forging Press
🔹 CNC Machining & Cutting Equipment
🔹 Polishing & Surface Treatment Machines
🔹 Ultrasonic Testing (UT) & X-ray Inspection Systems

 

Applications & Related Industries

Aerospace & Aviation – Aircraft structures, engine components, and landing gear.
Medical & Dental – Bone implants, orthopedic rods, and surgical tools.
Chemical & Petrochemical – Heat exchangers, reaction vessels, and piping systems.
Marine & Offshore – Shipbuilding, underwater equipment, and propeller shafts.
Industrial & Manufacturing – Machined parts, fasteners, and structural components.
Jewelry & Watches – Lightweight, durable, and hypoallergenic accessories.
Automotive & Motorsport – High-performance parts and exhaust systems.

 

Interesting Facts

✅ Titanium rods are 45% lighter than steel but just as strong.
✅ Used in NASA spacecraft due to its high strength and heat resistance.
✅ Biocompatible titanium rods have revolutionized medical implants & orthopedic surgeries.
✅ Titanium is naturally resistant to corrosion, even in seawater & extreme environments.

 

Synonyms

Titanium Bar

Titanium Alloy Rod

Aerospace Titanium Rod

Medical Titanium Bar

 

Health & Safety Information

Non-Toxic & Biocompatible – Safe for medical and food industry use.
Corrosion-Resistant – No toxic reactions with chemicals or biological environments.
Handling Precautions – Use protective gloves to avoid contamination.
Storage Recommendations – Keep in a dry, clean area to maintain quality.

 

Why Choose Our Titanium Rod?

🔹 Premium Quality & High Purity – Meets global industry standards.
🔹 Custom Sizes & Grades Available – Tailored solutions for your needs.
🔹 Certified & Tested – Ensures compliance with ASTM & aerospace regulations.
🔹 Competitive Pricing & Fast Shipping – Reliable supply chain for global delivery.

 

📩 Contact us today for inquiries or bulk orders!

Grades and Standards

Material Grade

Standard specification

Commercially Pure

ASTM B 348 Grades 1,2,3,4
AWS A5.16 ERTi 1,2,3,4
AMS 4951
AMS 4921
ASTM F 67 Grades 1,2,3,4

Ti Alloy 6Al 4V

ASTM B 348 Grade 5
AWS A5.16 ERTi 5
AMS 4954

Titanium Alloy 6Al 4V ELI

ASTM F 136
AMS 4956
AWS A5.16 ERTi 5 ELI

Titanium Alloy Ti 0.2Pd

ASTM B 348 Grades 7 & 11
AWS A5.16 ERTi 7

Titanium Alloy Ti 0.3 Mo .8Ni

ASTM B 348 Grade 12
AWS A5.16 ERTi 12

Titanium Alloy 5Al 2.5Sn

AMS 4953
AWS A5.16 ERTi 6
ASTM B 348 Grade 6

Titanium Alloy 3Al 2.5V

ASTM B 348 Grade 9
AWS A5.16 ERTi 9

Titanium Alloy Ti 6Al 7Nb

ASTM F 1295

Titanium Physical Properties

Grade

Ultimate Tensile Strength Min.

Yield Strength

Elongation %

Reduction Area %

Condition

KSI

MPa

KSI

MPa

1

35

240

20

138

24

30

As specified (shape)

2

50

345

40

275

20

30

As specified (shape)

3

64

450

55

380

18

30

As specified (shape)

4

80

550

70

483

15

25

As specified (shape)

5

130

895

120

828

10

25

As specified (shape)

6

115

792

110

758

10

25

Forged Bars

7

50

345

40

275

20

30

As specified (shape)

9

90

620

70

483

15

25

As specified (shape)

11

35

240

20

138

24

30

As specified (shape)

12

70

483

50

345

18

25

As specified (shape)

16

50

345

40

275

20

30

As specified (shape)

17

35

240

25

170

24

30

As specified (shape)

23

120

828

110

759

10

25

Beta-Annealed

Titanium Material Grades

C.P. Titanium

Grade 1

Grade 2

Grade 2H (Grade 2 with 58 ksi minimum UTS)

Grade 3

Grade 4

Titanium Alloy

Grade 5 (6 % Al, 4 % V)

Grade 7 (0.12 to 0.25 % Pd)

Grade 7H (0.12 to 0.25 % Pd) (Grade 7 with 58 ksi minimum UTS)

Grade 9 (3 % Al, 2.5 % V)

Grade 11 (0.12 to 0.25 % Pd)

Grade 12 (0.3 % Mo, 0.8 % Ni)

Grade 13 (0.5 % Ni, 0.05 % Ru)

Grade 14 (0.5 % Ni, 0.05 % Ru)

Grade 15 (0.5 % Ni, 0.05 % Ru)

Grade 16 (0.04 to 0.08 % Pd)

Grade 16H (0.04 to 0.08 % Pd) (Grade 16 with 58 ksi minimum UTS)

Grade 17 (0.04 to 0.08 % Pd)

Grade 18 (3 % Al, 2.5 % V, 0.04 to 0.08 % Pd)

Grade 19 (3 % Al, 8 % V, 6 % Cr, 4 % Zr, 4 % Mo)

Grade 20 (3 % Al, 8 % V, 6 % Cr, 4 % Zr, 4 % Mo, 0.04 %–0.08 % Pd)

Grade 21 (15 % Mo, 3 % Al, 2.7 % Nb, 0.25 % Si)

Grade 23 (6 % Al, 4 % V, with extra low interstitial elements, ELI)

Grade 24 (6 % Al, 4 % V, 0.04 % to 0.08 % Pd)

Grade 25 (6 % Al, 4 % V, 0.3 % to 0.8 % Ni and 0.04 % to 0.08 % Pd)

Grade 26 (0.08 to 0.14 % Pd)

Grade 26H (0.08 to 0.14 % Pd) (Grade 26 with 58 ksi minimum UTS)

Grade 27 (0.08 to 0.14 % Pd)

Grade 28 (3 % Al, 2.5 % V, 0.08–0.14 % Ru)

Grade 29 (6 % Al, 4 % V, ELI, plus 0.08 to 0.14 % Ru)

Grade 30 (0.3 % Co, 0.05 % Pd)

Grade 31 (0.3 % Co, 0.05 % Pd)

Grade 32 (5 % Al, 1 % tin, 1 % Zr, 1 % V, 0.8 % Mo)

Grade 33 (0.4 % Ni, 0.015 % Pd, 0.025 % Ru, 0.15 % Cr)

Grade 34 (0.4 % Ni, 0.015 % Pd, 0.025 % Ru, 0.15 % Cr)

Grade 35 (4.5 % Al, 2 % Mo, 1.6 % V, 0.5 % iron, 0.3 % Si)

Grade 36 (45 % Nb)

Grade 37 (1.5 % Al)

Grade 38 (4 % Al, 2.5 % V, 1.5 % Fe)

 

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