David Pipes and Tubes, located in Canberra, Australia, stands out as a top-notch manufacturer and supplier of **Titanium EFW Pipes**. These pipes are crafted using the **Electric Fusion Welding (EFW)** technique, which guarantees impressive structural integrity, precise dimensions, and outstanding weld quality. Renowned for their remarkable resistance to corrosion, lightweight design, and high mechanical strength, Titanium EFW Pipes from David Pipes and Tubes are perfect for tough industrial, marine, and chemical applications. With a strong emphasis on quality, durability, and adherence to international standards, the company delivers piping solutions that consistently perform well in harsh environments while catering to the unique needs of various industries.
Titanium EFW Pipes are constructed from commercially pure titanium or titanium alloys, formed by rolling titanium plates or strips and welding them together longitudinally through electric fusion. These pipes boast excellent corrosion resistance in seawater, chemical, and oxidizing settings. Depending on the grade, they offer tensile strength ranging from 345 MPa (Grade 2) to 895 MPa (Grade 5), along with commendable ductility and toughness. Their low density, impressive strength-to-weight ratio, and superior weldability make them ideal for high-pressure, high-temperature, and chemically aggressive conditions.
Specifications : ASTM B337 / ASME SB337
Dimensions : ASTM, ASME and API
Size : 8″ NB to 24″ NB
Wall Thickness : 0.5 to 150mm Thick
Schedules : SCH 5S, 10S,10, 20, 40S, 40, STD, 60, 80S, 80, XS, 100, 120, 140, 160 & XXS
Length : Single Random, Double Random & Required Length
Form : Round, Square, Rectangular, Hydraulic Pipes
End : Plain end, Bevelled end
Type : Electric Resistance Welded
| Grade | Ti | C | Fe | H | N | O | Al | V |
| Titanium Gr 2 | 99.2 min | 0.1 max | 0.3 max | 0.015 max | 0.03 max | 0.25 max | – | – |
| Titanium Gr 5 | 90 min | – | 0.25 max | – | – | 0.2 max | 6 min | 4 min |
| Grade | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
| Ti Gr 2 | 4.5 g/cm3 | 1665 °C (3030 °F) | Psi – 49900 , MPa – 344 | Psi – 39900 , MPa – 275 | 20 % |
| Ti Gr 5 | 4.43 g/cm3 | 1632 °C (2970 °F) | Psi – 138000 , MPa – 950 | Psi – 128000 , MPa – 880 | 14 % |
We provide products that come with both mill test certificates and third-party test certificates, ensuring the highest standards of quality and compliance.
Choosing Titanium EFW Pipes from David Pipes and Tubes ensures exceptional quality, durability, and performance for demanding industrial applications. Our alloy steel pipes are manufactured using high-grade materials that offer superior resistance to corrosion, high pressure, and extreme temperatures. We adhere to stringent quality control standards to guarantee reliable performance in critical sectors such as oil and gas, power generation, and construction. With a commitment to customer satisfaction, David Pipes and Tubes provides tailored solutions, timely delivery, and expert support, making us a trusted partner for all your alloy steel pipe needs.
David Pipes and Tubes, one of the largest suppliers of Titanium EFW Pipes in Canberra, Australia, offers a comprehensive range of high-quality pipes and tubes suitable for various industrial applications. Their extensive inventory and commitment to exceptional service make them a go-to choice for stainless steel products in the region.
Yes, we offer custom sizes for Titanium EFW Pipes to meet your specific requirements. Our team at David Pipes and Tubes is committed to providing tailored solutions for all your Piping & tubing needs. For more details, contact us at sales@davidpipes.com.
Titanium EFW Pipes find extensive use across industries that demand high-performance, corrosion-resistant piping solutions. In chemical and petrochemical plants, they safely and efficiently transport corrosive fluids. They are widely utilized in desalination plants, marine environments, and offshore platforms due to their resistance to seawater corrosion. In aerospace, they are used for hydraulic lines, fuel systems, and structural tubing, while in power generation, they serve in heat exchangers, condensers, and cooling systems. Moreover, their biocompatibility and non-toxic characteristics make them suitable for the pharmaceutical, food processing, and medical sectors, ensuring reliable and long-lasting performance.
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