
High Strength Gr3 Titanium Wire
Product name:Gr3 titanium wire
Specifications and dimensions:φ0.1mm至φ8.0mm;φ0.8-φ6.0mm;φ1.0-φ6.0mm;
Standard: GR1、GR2、GR3
Origin: Baoji, Shaanxi, China
Certification: ISO9001:2015 GJB9001C-2017
In terms of products, we can also provide private customization.
Product Introduction
What's high strength Gr3 titanium wire ?
High strength GR3 titanium wire corresponds to the national standard grade TA2 pure titanium wire, which is a type of industrial pure titanium. It has good plasticity, corrosion resistance, and biocompatibility, is easy to process, and is widely used in medical devices, eyeglass manufacturing, chemical equipment, and other fields.

Chemical and physical properties of The High strength Gr3 titanium wire
| Performance/Specifications | Parameters/Information |
| Physical properties | |
| Density | approx. 4.4 g/cm³ |
|
Melting point |
is about 1668°C |
| Thermal conductivity | Approx. 7 W/(m·K) |
| The linear expansion coefficient | is about 8.6 × 10⁻⁶/K |
| Chemical properties | |
| Main Ingredients | Titanium (Ti) ≥ 99.2% |
| Impurity elements | Iron (Fe) ≤ 0.3%, carbon (C) ≤ 0.08%, nitrogen (N) ≤ 0.05%, oxygen (O) ≤ 0.25%, hydrogen (H) ≤ 0.015% |
| Excellent corrosion resistance | especially in wet chlorine environments, seawater, organic acids |
| Common sizes | |
|
Diameter range |
φ0.2mm - φ10.0mm |
| Typical Specifications |
φ0.8mm - φ6.0mm(General Purpose) |
| Other states | Annealed (M), hot (R), cold (Y) |
The mechnical and Heat treatment properties
High strength Gr3 titanium alloy exhibits excellent mechanical properties at room temperature, with a yield strength of approximately 380 MPa, a tensile strength of approximately 380 MPa, an elongation of approximately 20%, and a hardness of approximately 120 HB (Britll hardness). These data indicate that Gr3 titanium alloy possesses both good strength and toughness, meeting the needs of diverse engineering applications, especially excelling in scenarios requiring high strength and good ductility.
Furthermore, the properties of Gr3 titanium wire can be further optimized through heat treatment processes. For example, by adjusting heat treatment parameters (such as temperature and time), its surface hardness, plasticity, and strength can be significantly altered, allowing for performance customization for specific applications. This controllability makes Gr3 titanium alloy more suitable for aerospace, medical devices, and industrial manufacturing, enabling precise performance enhancement through heat treatment to meet diverse engineering requirements.
Applications of the high strength Gr3 titanium wire
Titanium wire perfectly inherits the excellent properties of titanium and titanium alloys, possessing a series of advantages such as strong corrosion resistance, high specific strength, non-magnetic properties, good biocompatibility, low ultrasonic impedance, and excellent shape memory function. These properties make it an ideal material in many fields.
Based on the aforementioned advantages, titanium and titanium alloy wires are widely used in various industries, including military, eyeglasses, earrings, headwear, electroplating fixtures, welding wire, aerospace, petrochemicals, medical and health, automotive, construction, and sports and leisure products. In recent years, with the continuous development of the titanium wire industry, its varieties have become increasingly diverse, and its applications in high-performance industrial products and consumer goods have become increasingly widespread.
Currently, over 80% of titanium and titanium alloy wires are used as welding wires for welding various titanium equipment, pipes, repair welding of aircraft jet engine turbine disks and blades, and casing welding. Furthermore, due to its excellent corrosion resistance, titanium wire is widely used in the chemical, pharmaceutical, and paper industries, and can be made into mesh products such as seawater filters, pure water filters, and chemical filters.
Titanium and titanium alloy wires, due to their excellent overall properties, are also used to manufacture fasteners, load-bearing components, springs, and other parts. In the medical and health field, their good biocompatibility makes them an ideal choice for medical devices and cranial fixation devices. Titanium alloy wires with shape memory function, such as titanium-nickel alloy wires, are used to manufacture satellite antennas, clothing shoulder pads, women's bras, and eyeglass frames. In the electroplating and water treatment industries, titanium and titanium alloy wires are also used to manufacture various types of electrodes.
What is the difference between titanium wire and titanium welding wire?
Titanium is a lightweight, high-strength, and corrosion-resistant metal widely used in various industries, including aerospace, medical, and automotive. In these industries, titanium wire and titanium welding wire are two common forms of titanium products. Although both are made of titanium, there are some key differences between them.
Compositional differences: Titanium wire is usually made of pure titanium or titanium alloy, while titanium welding wire has filler metal added during the welding process.
Differences in application: Titanium wire has a wide range of applications, including the manufacture of components such as springs, fasteners, and electrical contacts. Titanium welding wire, on the other hand, is specifically designed for welding and is primarily used to join two pieces of metal together.
Strength differences: Titanium wire is known for its high strength-to-weight ratio, but the strength of titanium welding wire depends on the type of filler metal used. The strength of the weld joint is also affected by the welding process and the welder's skill.
Price difference: Titanium welding wire is generally more expensive than titanium wire due to the additional cost of filler metal.
Supply differences: Titanium wire is readily available in the market, with a variety of shapes and sizes to choose from. In contrast, titanium welding wire is typically only available in a few standard sizes.
What's the characteristics of the High strength gr3 titanium wire?
The core advantages of GR3 titanium wire (corresponding to national standard TA2) lie in its excellent strength-to-weight ratio and corrosion resistance, while also possessing good processing performance.
Its density is approximately 4.4 g/cm³, 43% lighter than steel, yet its mechanical strength is comparable. It has a high melting point of 1668°C, exhibiting excellent high-temperature resistance. Its most prominent feature is its outstanding corrosion resistance, particularly in humid chlorine environments, seawater, and organic acids. Furthermore, it is non-magnetic, highly biocompatible, has low ultrasonic impedance, and good shape memory properties.
Thanks to these properties, GR3 titanium wire has wide applications in aerospace, medical devices, chemical equipment, sporting goods, and jewelry. Its states are typically annealed (M), hot-worked (R), and cold-worked (Y), allowing for performance adjustments to meet specific needs.
Why choose us ?
Baoji Mingjie Titanium Materials Technology Co., Ltd., as a professional manufacturer in the field of titanium materials, demonstrates significant advantages in titanium plates, titanium wires, titanium rods, and titanium tubes thanks to its superior product quality, reasonable pricing strategy, and strong production capacity. The company's products are based on high-purity titanium, ensuring excellent corrosion resistance and biocompatibility, and are widely used in medical devices, aerospace, and chemical equipment.
In summary, Baoji Mingjie Titanium Materials Technology Co., Ltd.'s balanced advantages in quality, price, and production capacity make it an ideal partner for titanium material applications, providing high-performance solutions for various industries.
In terms of quality, Mingjie Titanium Materials adopts strict production standards, ensuring precise tolerance control and excellent surface quality, significantly improving service life and reliability. For example, titanium plates enable lightweight designs in electronic devices while maintaining high strength; titanium wire, with its excellent ductility, meets complex processing requirements. Regarding pricing, the company offers highly competitive prices through large-scale production and cost optimization, providing outstanding value compared to the industry average, making it particularly suitable for large-volume purchasing needs.
Production capacity is another major highlight. Mingjie Titanium Materials boasts advanced production lines and an efficient warehousing system, enabling rapid order response and significantly shortened delivery cycles. Our company has customized production capabilities, able to adjust product specifications according to customer needs, delivering everything from precision micro-parts to large industrial components efficiently. Furthermore, a comprehensive after-sales service system, including quality traceability and technical support, further enhances customer trust.

High strength gr3 titanium wire
FAQs
Q1: What are the main uses of titanium wire?
A: A: Titanium wire is not only used in orthodontic implants, but also in surgical procedures such as joint and bone reconstruction. If you're looking for a pure e-cigarette experience, Ti-Tek's titanium wire is definitely the ideal choice!
Q2: Why is titanium difficult to weld?
A: A: When the temperature exceeds 400°C, oxygen and nitrogen diffuse into the titanium, causing severe embrittlement. This means welding is extremely challenging, and not all existing arc welding processes are suitable. The core issue is atmospheric pollution, which makes the weld area highly susceptible to cracking.
Q3: Which titanium alloy is best suited for welding?
A: A: Pure titanium (CP) alloys have the best weldability due to their combination of excellent corrosion resistance, good ductility, and superior weldability. Common grades of pure titanium include Grade 1, Grade 2, Grade 3, and Grade 4.
Q4: How strong is titanium wire?
A: A: Strength comparison between titanium and steel: The yield strength of steel is 350 MPa, while that of titanium is 140 MPa (Source: Ulbrich).
Q5: Is titanium wire easy to bend?
A: A: Grade 1 and Grade 2 titanium rings can be bent 50 times without breaking, indicating that they have excellent ductility.
Q6: How much current is needed for welding titanium?
A: A: It is recommended to use a GTAW inverter welder with high-frequency arc ignition, remote current control, back-blow timer and output of at least 250 amps, and always set the polarity to DC electrode negative (DCEN).
Q7: What is the difference between Grade 5 titanium and pure titanium?
A: A: Grade 5 titanium is the most widely used titanium alloy, with extremely high strength but relatively low ductility. Compared to pure titanium, its tensile strength and yield point are significantly higher, making it more preferred in applications where strength is more important than corrosion resistance.
Q8: How do I install a titanium wire assembly?
A: A: Thread a few inches of titanium wire guide line through the eyelet, twist it around the main line four times, then fold it back and thread the end of the main line through the loop at the top of the eyelet. Tighten the main line and the end of the line with pliers, and trim off any excess.
Q9: What is the melting point of titanium wire?
A: A: Titanium has a melting point as high as 3135°F (1725°C), which is about 400°F (220°C) higher than steel and about 2000°F (1100°C) higher than aluminum.
Q10: How do I clean titanium wire?
A: A: Nitric acid is an excellent passivating agent for titanium. It can be used alone or in combination with hydrochloric acid to effectively clean titanium surfaces.
Q11: Will titanium wire rust?
A: A: Pure titanium will not rust or discolor like iron, and it is safe even with prolonged contact with water. The oxide film that forms on its surface makes it completely resistant to salt water corrosion.
Q12: Does titanium wire conduct electricity?
A: A: Titanium has poor electrical conductivity. Compared to copper (100%), titanium's conductivity is only 3.1%, making it unsuitable for applications requiring high conductivity.
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