Titanium Rods

Description

Titanium Round Bars, where our packaging specialists pack these products in best quality material to make sure of their safe transportation. The light weight, corrosion resistance and high strength of our Titanium Square Bars allow this grade to be used in a lot of applications. Most usually used alloy, these Titanium Flat Bars is suggestively sturdier than other commercially pure titanium whereas still holding the same toughness and thermal features (without thermal conductivity). These Titanium Threaded Bars is the most broadly used titanium alloy of the alpha – plus – beta session, and is as well the most communal of all titanium alloys.

Meanwhile, our Titanium Hollow Bars are also being offered in different sizes and shapes to our customers. Although “commercially pure” titanium has acceptable mechanical properties and has been used for orthopedic and dental implants, for most applications of these Titanium Hexagonal Bars is alloyed with small amounts of aluminum and vanadium, typically 6 % and 4 % respectively, by weight. Mechanical properties for fracture critical applications of our Titanium Triangular Bars can be enhanced through processing and heat treatment. These Titanium Bars is resistant to general corrosion but may be quickly attacked by environments that cause breakdown of the protective oxide layer including hydrofluoric (HF), hydrochloric (HCl), sulfuric and phosphoric acids.

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Specifications of Titanium Rods

Specifications : ASTM B348/ ASTM SB348
Dimensions : EN, DIN, JIS, ASTM, BS, ASME, AISI
Size
: 5 mm To 500 mm
Diameter : 0.1 mm to 100 mm
Length : 100 mm To 3000 mm Long & Above
Finish : Black, Bright Polished, Rough Turned, NO.4 Finish, Matt Finish, BA Finish
Tolerance : H8, H9, H10, H11, H12, H13K9, K10, K11, K12 or as per clients’ requirements
Form : Round, Square, Hex (A/F), Rectangle, Billet, Ingot, Forging Etc.

Titanium Rod Chemical Composition

Grade Ti C Fe Al V O
Titanium 90 min 0.25 max 6 min 4 min 0.02 max

Titanium Rod Mechanical Properties

Density Melting Point Tensile Strength Yield Strength (0.2%Offset) Elongation
4.43 g/cm3 1632 °C (2970 °F) Psi – 138000 , MPa – 950 Psi – 128000 , MPa – 880 14 %