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Below is a comprehensive list of our alloys arranged by type. More detailed information can be found on each alloys specific page. All of our products are purchased to normal industry standards and come with material test reports (MTR) also known as material certifications.
This unalloyed grade offers slightly higher mechanicals when compared with Commercially Pure Grade 2 while displaying similar ductility and formability. Distributor availability of Grade 3 is a fact to be considered here, as it is less widely used than Gr
Generally used where corrosion resistance is a major design factor in chemical production components, marine and airframe applications.
As a family, titanium and its alloys have developed a mystique as a nightmare to machine. This is simply not the case. Experienced operators have compared its characteristics to those found in 316 stainless steel. Recommended practice includes high coolan.
May be hot or cold formed using hydropress, power brake, stretch or drop hammer methods. Similar in characteristics to 300 series stainless steels.
Highly resistant to a wide variety of oxidizing and mildly reducing environments, including chlorides.
Beta Transus (F +/- 25) 1900
Not hardenable by heat treatment.
Roughing operations can begin at 907 C (1165 F),while finishing should be performed at 843 C(1550 F).
Hot forming will reduce both the springback and required forming forces, and will increase the overall ductility of the material.
The cold work characteristics of this material is similar to that of a moderately tempered austenitic stainless steel. In multiple cold forming operations, intermediate stress relief is recommended to prevent tearing or other material damage.
Heat to 704 C (1300 F),hold for 2 hours follow by air cooling. For intermediate stress relieving, heat to 482-538 C(900-1000 f) and hold for 45 minutes.
Beta Transus (F +/- 25) 1690.