PRODUCTS

Features
|
Material: |
C.P. Titanium, Titanium Alloy
|
|
Standard: |
ASTM B265, ASME SB265, AMS 4911, etc. |
|
Process: |
Hot rolled, Cold rolled |
|
Shape: |
Square Sheet, Rectangular Sheet, Circular Shapes or according to drawings and specifications. |
|
Size: |
Per requirements |
Product Description
Titanium sheet is a lightweight, corrosion-resistant, and high-strength material widely used in aerospace, medical, chemical, and marine industries. Available in commercially pure (C.P.) titanium and titanium alloys, it offers excellent mechanical properties, heat resistance, and biocompatibility, making it an ideal choice for high-performance engineering applications.
Features & Properties
✔ High Strength-to-Weight Ratio – Stronger than steel but much lighter.
✔ Superior Corrosion Resistance – Resists seawater, acids, and industrial chemicals.
✔ Excellent Heat Resistance – Withstands high temperatures up to 600°C.
✔ Biocompatible & Non-Toxic – Perfect for medical implants and surgical tools.
✔ Easy to Machine, Weld & Form – High workability for manufacturing.
✔ Non-Magnetic & Non-Allergenic – Safe for medical and sensitive applications.
Product Specifications
| Material | Grade | Thickness Range | Width | Length | Surface Finish | Standard |
|---|---|---|---|---|---|---|
| C.P. Titanium | Gr1, Gr2, Gr3, Gr4 | 0.5mm – 100mm | Up to 2500mm | Up to 6000mm | Hot Rolled, Cold Rolled, Polished | ASTM B265, ASME SB265 |
| Titanium Alloy | Gr5 (Ti-6Al-4V), Gr7, Gr9, Gr12 | 0.5mm – 100mm | Up to 2500mm | Up to 6000mm | Hot Rolled, Cold Rolled, Polished | ASTM B265, AMS 4911 |
(Custom sizes and alloys available upon request)
Product Standards
ASTM B265 / ASME SB265 – Titanium & Titanium Alloy Sheet, Strip, and Plate.
AMS 4911 – Aerospace specification for Ti-6Al-4V sheets & plates.
DIN, ISO, JIS Standards – Available upon request.
Product Forms
✔ Square Sheet – Ideal for industrial and engineering applications.
✔ Rectangular Sheet – Widely used in aerospace, chemical, and medical fields.
✔ Circular Shapes – Cut to custom sizes based on customer drawings & specifications.
Production Method & Production Equipments
Production Method:
Titanium Sponge Preparation – Extracted from titanium ore and refined.
Vacuum Arc Remelting (VAR) or Electron Beam Melting (EBM) – Produces high-purity titanium ingots.
Hot Rolling & Cold Rolling – Reduces thickness to required sheet dimensions.
Annealing & Heat Treatment – Enhances mechanical properties.
Surface Treatment & Finishing – Polished, pickled, or chemically treated.
Quality Control & Testing – Ensures compliance with global standards.
Production Equipments:
🔹 Vacuum Arc Remelting (VAR) Furnace
🔹 Electron Beam Melting (EBM) System
🔹 Hot & Cold Rolling Mills
🔹 CNC Cutting & Laser Processing Machines
🔹 Pickling & Surface Treatment Equipment
🔹 Ultrasonic & X-ray Testing Systems
Applications & Related Industries
✔ Aerospace & Aviation – Aircraft structures, engine components, and fuselage parts.
✔ Medical & Dental – Titanium implants, prosthetics, and surgical instruments.
✔ Chemical & Petrochemical – Heat exchangers, reaction vessels, and storage tanks.
✔ Marine & Offshore – Shipbuilding, submarine components, and seawater piping.
✔ Industrial & Manufacturing – Machined parts, heat-resistant structures, and processing equipment.
✔ Automotive & Motorsport – High-performance car components and exhaust systems.
✔ Jewelry & Consumer Goods – Watch cases, jewelry, and decorative applications.
Interesting Facts
✅ Titanium sheets are used in NASA spacecraft due to their lightweight & durability.
✅ Titanium is as strong as steel but 45% lighter, making it perfect for aviation & sports cars.
✅ Biocompatible titanium sheets are widely used in medical implants & bone replacement surgeries.
✅ It is naturally resistant to corrosion, even in extreme environments like deep-sea applications.
Synonyms
Titanium Alloy Sheet
Titanium Metal Plate
Aerospace Titanium Sheet
Medical Titanium Plate
Health & Safety Information
✔ Non-Toxic & Biocompatible – Safe for medical, food, and environmental applications.
✔ Corrosion-Resistant – No toxic reactions with chemicals or biological environments.
✔ Handling Precautions – Use protective gloves to prevent contamination.
✔ Storage Recommendations – Store in a dry, clean environment to maintain quality.
Why Choose Our Titanium Sheets?
🔹 High-Quality & Precision Manufacturing – Meets global industry standards.
🔹 Custom Sizes & Grades Available – Tailored solutions for various applications.
🔹 Certified & Tested – Compliance with ASTM, aerospace, and medical standards.
🔹 Competitive Pricing & Fast Delivery – Reliable supply chain for global orders.
📩 Contact us today for pricing, bulk orders, or custom inquiries!
Size Range of Titanium Sheet
|
Thickness (mm) |
Width (mm) |
Length (mm) |
|
0.5-0.8 |
800 max, Ti 6Al-4V |
2000 max |
|
1000 max, CP Ti |
||
|
0.8-5 |
1000 max |
3000 max |
|
Thickness (inches) |
Width (inches) |
Length (inches) |
|
0.020"-0.032" |
31.5" max, Ti-6Al-4V |
78.7" max |
|
39.4" max, C.P. Ti |
||
|
0.032"-0.20" |
39.4" max |
118.1" max |
Grades and Standards
|
Material Grade |
Standard specification |
|
Commercially Pure |
ASTM B 348 Grades 1,2,3,4 |
|
Ti Alloy 6Al 4V |
ASTM B 348 Grade 5 |
|
Titanium Alloy 6Al 4V ELI |
ASTM F 136 |
|
Titanium Alloy Ti 0.2Pd |
ASTM B 348 Grades 7 & 11 |
|
Titanium Alloy Ti 0.3 Mo .8Ni |
ASTM B 348 Grade 12 |
|
Titanium Alloy 5Al 2.5Sn |
AMS 4953 |
|
Titanium Alloy 3Al 2.5V |
ASTM B 348 Grade 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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