Titanium Sheet & Plates

Titanium Sheet & Plates

Short Description:

Titanium sheet and plate are commonly used in manufacturing today, with the most popular grades being 2 and 5. Grade 2 is the commercially pure titanium used in most of the chemical processing plants and is cold formable. Grade 2 plate and sheet can have ultimate tensile strength at and above 40,000 psi. Grade 5 is too strong to be cold rolled, so it is used more often when no forming is needed. Grade 5 aerospace alloy will have ultimate tensile strength at and above 120,000 psi. Titanium Pla...

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Titanium sheet and plate are commonly used in manufacturing today, with the most popular grades being 2 and 5. Grade 2 is the commercially pure titanium used in most of the chemical processing plants and is cold formable. Grade 2 plate and sheet can have ultimate tensile strength at and above 40,000 psi. Grade 5 is too strong to be cold rolled, so it is used more often when no forming is needed. Grade 5 aerospace alloy will have ultimate tensile strength at and above 120,000 psi.

Titanium Plate/Sheets are as per ASTM B265/ASTM SB265 available in both CP and Alloy grades in thickness ranging from 0.5mm to over 100 mm thick. Titanium Plate is available in widths and lengths based on customers’ requirements. Customers can buy only what they need and not full sheets or available sizes. We supply Titanium Sheets and Plates at very competitive prices of good quality, made by top-tier mills.

Available shapes

ASTM B265 ASME B265 ASTM F67
ASTM F136 ASTM F1341 AMS 4911

AMS 4902              MIL-T-9046

Available Sizes

thickness 0.5 ~ 100mm

Available Grades

Grade1, 2, 3, 4 Commercial Pure
Grade 5 Ti-6Al-4V
Grade 7 Ti-0.2Pd
Grade 9 Ti-3Al-2.5V
Grade 12 Ti-0.3Mo-0.8Ni
Grade 17 Ti-0.08Pd
Grade 23 Ti-6Al-4V ELI

Example Applications

Fire wall, driver protection, valve covers, bell housings, driveshaft tunnels, brake backing plates, heat shields, rocker shaft stands, jewelry

Titanium and titanium alloys have low density and high tensile strength. In the range of - 253-600 ℃, their specific strength is almost the highest among metal materials. They can form a thin and hard oxide film in an appropriate oxidizing environment and have excellent corrosion resistance. In addition, it has the characteristics of non-magnetic and small linear expansion coefficient. This makes titanium and alloy first known as important aerospace structural materials, and then extended to shipbuilding, chemical industry and other fields, and has been rapidly developed. Especially in the chemical industry, titanium and titanium alloy products are used in more and more products, such as petrochemical, fiber, pulp, fertilizer, electrochemistry, seawater desalination and other industries, as exchangers, reaction towers, synthesizers, autoclaves, etc. Titanium plate is used as electrolytic plate and electrolytic cell in electrolysis and sewage desalination, and as tower body and kettle body in reaction tower and reactor.

With the development of science and technology, the application fields of titanium materials are becoming wider and wider, such as medical treatment, automobile, sports and other aspects. Through these, it is also true that titanium, as a light metal, has more and more excellent characteristics that are recognized and determined by people, and it can replace other metals and integrate into our production and application fields at the fastest speed, even our bodies.

Application in Medical
Medical titanium rod Titanium has been used for decades in the global pharmaceutical industry, surgical instruments, human implants and other medical fields as an emerging material.
history and has achieved great success.
Bone and joint injuries caused by trauma and tumors in the human body, the use of titanium and titanium alloys to manufacture artificial joints, bone plates and screws is now widely used.
in clinical. Also used in hip joints (including femoral head), knee joints, elbow joints, metacarpophalangeal joints, interphalangeal joints, mandibles, artificial vertebral bodies (spinal
shapers), pacemaker shells, artificial hearts (heart valves), artificial dental implants, and titanium mesh in cranioplasty.
The requirements for medical titanium rod implant materials can be classified into three aspects: the biocompatibility of the material with the human body, the corrosion resistance of the material in the human environment, and the mechanical properties of the material


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