Product Description
Titanium Round Bar
The Titanium Round Bar that we provide is often utilized in situations like construction where a perfect surface and precise dimensions aren't as important. Instead, this round bar is employed in situations where a superior surface polish and exact measurements are required, such as medical devices. A few examples of common uses for this bar are frameworks, supports, braces, shafts, and axles, to name a few. Nickel Steel and Engineering LLP is pleased to offer Titanium Round Bar, which is extremely corrosion-resistant. Contact us today to learn more. Additionally, it is possible to utilize stainless steel in situations containing chlorine or alkaline solutions since it is resistant to high acidity levels.
Exceptional Strength and Lightweight NatureTitanium Round Bars combine low density and outstanding tensile strength, delivering high performance without excessive weight. Grade 2 achieves a minimum strength of 345 MPa, while Grade 5 surpasses 895 MPa, ensuring reliability for critical parts with the added benefit of reduced mass, making them especially desirable for aerospace and automotive engineering.
Superior Corrosion and Heat ResistanceDesigned to withstand severe environments, these bars maintain their excellent corrosion resistance against seawater, acids, and chemicals. Heat resistance up to 400C, and higher for select grades, allows Titanium Round Bars to perform consistently in thermal, chemical, and marine applications, minimizing maintenance and increasing lifespan.
Flexible Manufacturing and Precision FinishingManufactured through hot rolling or cold drawing, Titanium Round Bars are supplied in annealed and pickled conditions for optimal machinability. Finished surfaces include polished, bright, and pickled styles, offering a metallic silver-grey appearance. Custom dimensions and lengths, packed securely in wooden boxes or bundles, cater to diverse project requirements.
FAQs of Titanium Round Bars:
Q: How are Titanium Round Bars manufactured for precision applications?
A: Titanium Round Bars are produced using hot rolling or cold drawing processes, followed by annealing and pickling for improved workability and surface quality. This ensures each bar meets precise dimensional and mechanical requirements, suitable for aerospace, medical, and other specialized uses.
Q: What grades of titanium are available for these round bars and how do they differ?
A: These round bars come in Grade 2, Grade 5, and Grade 7, among others on request. Grade 2 offers excellent ductility (min. 20% elongation) and moderate strength, whereas Grade 5 delivers higher tensile strength (min. 895 MPa) and hardness, making it suitable for demanding applications. Each grade varies in mechanical properties and trace elements.
Q: When is it necessary to choose Titanium Round Bars over other materials?
A: Titanium Round Bars are ideal when high strength-to-weight ratio, non-magnetic nature, corrosion resistance, and biocompatibility are essentialsuch as in aerospace parts, surgical implants, marine fasteners, and chemical processing components. Their natural finish and resistance to harsh environments provide substantial advantages over traditional alloys.
Q: Where can custom sizes and lengths for Titanium Round Bars be ordered?
A: Custom lengths (up to 6000 mm) and diameters (3 mm to 200 mm) are available as per project specifications. Orders can be placed with exporters, importers, manufacturers, or suppliers in India who offer negotiable minimum order quantities and tailored packaging solutions to suit client requirements.
Q: What is the recommended process for machining Titanium Round Bars?
A: Machining titanium requires use of appropriate tooling, controlled speed, and coolant due to its low thermal conductivity and high strength. The bars annealed supply condition enhances machinability, allowing precision forming of machined parts, fasteners, and surgical implants while reducing tool wear.
Q: How does the composition of Titanium Round Bars benefit their intended usage?
A: Consisting of over 99% titanium and trace elements relevant to each grade, these bars deliver a low density (4.51 g/cm), high corrosion resistance, and natural biocompatibility. This composition ensures long-lasting durability and safety, making the bars highly suitable for medical, marine, chemical, and aerospace applications.