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Grade:
Standard:
Diameter:
Shape:
Surface:
Applications:
High Strength-to-Weight Ratio:
Corrosion Resistance:
Welding Performance:
Biocompatibility:
High Temperature Resistance:
Petrochemical Industry:
Titanium’s corrosion resistance makes it suitable for petrochemical plants, where components are exposed to highly corrosive substances like sulfuric acid, hydrochloric acid, and other aggressive chemicals. Titanium wires are often used in heat exchangers, reactors, piping systems, and valves.
Medical Field:
Titanium is extensively used for medical implants such as hip replacements, dental implants, and surgical instruments. Its biocompatibility and strength make it ideal for medical applications.
Titanium wire is also used for medical devices that require precision welding and corrosion resistance.
Automotive Industry:
Titanium alloy wires are used in the automotive sector for high-performance parts such as exhaust systems, brackets, and components requiring high heat resistance.
Construction and Building Materials:
Titanium wire is also employed in architectural applications, especially for coatings and cladding of buildings that need to withstand environmental stressors without compromising on aesthetic appeal.
Sports and Leisure Products:
Titanium is increasingly used in sports equipment, such as golf clubs, bicycle frames, and ski poles, due to its lightweight and durable nature.
Electrolytic and Electrochemical Applications:
Titanium is particularly used in electrolytic applications such as electroplating and anodizing because of its high resistance to corrosion and ability to withstand electrolytic environments without degradation.
It is also used in anodes and cathodes in electrochemical cells, where it acts as a durable, non-corroding material that extends the lifespan of electrochemical devices.
Marine Industry:
Titanium’s resistance to seawater corrosion makes it ideal for marine applications, such as boat components, underwater hardware, and marine fasteners. Titanium alloy wires are used in these systems for their durability and resistance to marine corrosion.
AWS | CHEMICAL SPECIFICATIONS | ||||||||
AWS A5.16 | UNS | C | O | N | H | I | Al | V | Pd |
Number | |||||||||
ERTi 1 | R50100 | 0.03 | 0.03-0.10 | 0.012 | 0.005 | 0.08 | - | - | - |
ERTi 2 | R50120 | 0.03 | 0.08-0.16 | 0.015 | 0.008 | 0.12 | - | - | - |
ERTi 4 | R50130 | 0.03 | 0.08-0.32 | 0.025 | 0.008 | 0.25 | - | - | - |
ERTi 5 | R56400 | 0.05 | 0.12-0.20 | 0.03 | 0.015 | 0.22 | 5.5-6.7 | 3.5-4.5 | - |
ERTi 7 | R52401 | 0.03 | 0.08-0.16 | 0.015 | 0.008 | 0.12 | - | - | 0.12-0.25 |
Material | Pure titanium and Titanium alloy |
Titanium Grade | GR1/GR2/GR3/Gr4/GR5/GR7/GR9/GR12/Gr5Eli/Gr23 ERTi-1/ERTi-2/ERTi-3/ERTi-4/ERTi-5Eli/ERTi-7/ERTi-9/ERTi-11/ERTi-12 Ti15333/Nitinol Alloy |
Standard | AWS A5.16/ASTM B863/ASME SB863, ASTMF67, ASTM F136, ISO-5832-2(3) etc |
Shape | Titanium Coil Wire/Titanium Spool Wire/Titanium Straight Wire |
Wire Gauge | Dia(0.06--6) *L |
Process | Bar billets-hot rolling-drawing-annealing-strength-pickling |
Surface | Polishing, picking, acid washed, black oxide |
Main Technique | Hot Forged; Hot Rolled; Cold drawn; Straighten etc |
Material Milling Certificate | According to. EN 10204.3.1 Including Chemical composition and Mechanical property |
Application | Welding, Industry, Medical, Aerospace, Electronic etc |
ASTM Base Metal Grade | Base metal | Normal composition | Recommended Filler Metal | |
UTS(min.) ksi[Mpa] | YS(min.) ksi[Mpa] | |||
Grade 1 | 35[240] | 20[138] | Unalloyed Ti CP1 | ERTi-1 |
Grade 2 | 50[345] | 40[275] | Unalloyed Ti CP2 | ERTi-2 |
Grade 4 | 80[550] | 70[483] | Unalloyed Ti CP4 | ERTi-4 |
Grade 5 | 130[895] | 120[828] | Ti 6AL-4V | ERTi-5 |
Grade 7 | 50[345] | 40[275] | Ti 0.15Pd | ERTi-7 |