Titanium Round Bar

Manufacturer of ASTM B348 Ti. Alloy Hex Bar and Titanium Threaded Rod

Titanium has really good resistance to electrical conductivity. Hence, the Titanium Round Bar would be a fitting choice for those applications which do not require good electrical conductivity. One such area would be the aerospace industry. Another benefit of titanium is its biocompatibility, which makes it an asset in the field of medicine. Being a non-toxic metal, in combination with its biocompatibility is why it can be used for various surgical implants. But leaving this aside, if we focus on the mechanical characteristics of the Titanium Square Bar, this alone could supersede many other alloy grades. For instance, as the material is light in weight in comparison to most steel grades, applications, where space or weight is considered to be an issue, could use this Titanium Rectangular Barb. To be precise, titanium as a metal is two times stronger in comparison to aluminium but is only 60% denser. Frequently the alloy is recognized not only for its high strength to weight ratio, but also for its high tensile strength and corrosion resistance properties.


Moreover, the use of titanium metal in the automobile industry is on the rise. For instance, the  Titanium Flat Bar can be used in particular in the production of both automobile and motorcycles that are designed to be used for racing. Typically those auto motors involved in racing have primary requirements such as lightweight, high tensile strength and rigidity that are considered to be very critical. This is because a lighter weighing Titanium Threaded Rod provides the driver or rider with a lighter weighing vehicle, which in turn increases the speed of a vehicle. In addition, the ASTM B348 Titanium Hex Bar is resistant to heat and has a higher tensile strength, which again proves to be beneficial in event of any accidents, thus protecting the driver of the vehicle.

Titanium Threaded Rod Standard Sizes And Schedule Specifications

Specifications ASTM B348
Finish Black, Bright Polished, Rough Turned, NO.4 Finish, Matt Finish, BA Finish
Dimensions ASTM, EN, DIN, JIS, BS, ASME, AISI
Length 200 mm To 5000 mm
Size 10 mm To 600 mm
Tolerance H8, H11, H13K9, K10, K12
Diameter 0.5 mm to 300 mm
Form Round, Hex (A/F), Square, Rectangle, Billet, Ingot, Forging Etc.

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Alloy Polished Bar Chemical and Mechanical Compatibility

Hardness, Brinell 120 120 annealed
Hardness, Knoop 132 132 Estimated from Brinell.
Hardness, Rockwell B 70 70 annealed
Hardness, Vickers 122 122 Estimated from Brinell
Tensile Strength, Ultimate 240 MPa 34800 psi -
Tensile Strength, Yield 170 - 310 MPa 24700 - 45000 psi -
Elongation at Break 24 % 24 % -
Reduction of Area 35 % 35 % -
Modulus of Elasticity 105 GPa 15200 ksi In Tension
Compressive Modulus 110 GPa 16000 ksi -
Poisson's Ratio 0.37 0.37 -
Charpy Impact 310 J 229 ft-lb V-notch
Shear Modulus 45 GPa 6530 ksi -

Physical Material of Titanium Hexagonal Bar

Physical Properties Metric English
Density 4.51 g/cc 0.163 lb/in³

Ti. Alloy Black Bar Equivalent Material Grade

STANDARD WERKSTOFF NR. UNS
Titanium 3.7035 / 3.7165 / 3.7235 R50400 / R56400 / R52400