Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7971599 | Materials Science and Engineering: A | 2018 | 14 Pages |
Abstract
Previous investigations of the Ti-Al-Fe-Cr quaternary system and its related sub-systems were reviewed and summarized, then the thermodynamical database of the Ti-Al-Fe-Cr quaternary system was built up by directly extrapolating from the four sub-ternary systems using the Calphad method. The pseudobinary sections with Cr: Feâ¯=â¯5.2:1 and Alâ¯=â¯0.0, 3.0, 4.5 and 6.0â¯wt% were calculated, combined with the empirical design criterion including aluminum and molybdenum equivalent, a novel αâ¯+â¯Î² type titanium alloy Ti-3Al-8.5Cr-2Fe was proposed and successfully prepared. Microscopic observation showed that Ti-3Al-8.5Cr-2Fe contained α and β phase which was consistent with expectation, no segregation of the elements Cr and Fe existed in grain boundaries and C14 laves phase was not detected in Ti-3Al-8.5Cr-2Fe alloy. Mechanical properties were investigated using the universal testing machine and results showed that the average ultimate tensile strength (Ïb), 0.2% proof strength (Ï0.2) and elongation (EI) of this alloy in thermo-mechanical state can reach 985â¯MPa, 904.5â¯MPa and 19.6 Pct, respectively, which is similar to the Ti-4.3Fe-7.1Cr- 3.0Al(TFCA) and Ti-3Al-5Mo-4.5V(TC16). The SEM photographs of fracture surface showed that the fracture of Ti-3Al-8.5Cr-2Fe sheets after quenching process is plastic fracture.
Keywords
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Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Jing Wang, Ziwei Qin, Fuhao Xiong, Shusen Wang, Xionggang Lu, Chonghe Li,