2023
DOI: 10.3390/ma16124462
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Effect of Thermal Exposure on Microstructure Evolution and Mechanical Properties of TC25G Alloy

Abstract: The microstructure and room temperature tensile properties of heat-treated TC25G alloy after thermal exposure were investigated. The results show that the α2 phase dispersed in the α phase, and silicide precipitated firstly at the α/β phase boundary and then at the dislocation of the αp phase and on the β phase. When thermal exposure was 0–10 h at 550 °C and 600 °C, the decrease of alloy strength was mainly due to the dominant effect of dislocations recovery. With the rise and extension of thermal exposure tem… Show more

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Cited by 2 publications
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“…In addition, the higher the melting point of the solid solution element, the larger the radius difference between the element and the matrix atom, and the better the high-temperature creep resistance of the alloy. At present, the W-containing high-temperature titanium alloys that have been studied at home and abroad mainly include BT36 [79], TC25G [125], and Ti65 [126]. Solving the problem of adding W element is of great significance for further breaking through the "thermal barrier" temperature of 600 • C.…”
Section: Eutectoid β Stable Elementmentioning
confidence: 99%
“…In addition, the higher the melting point of the solid solution element, the larger the radius difference between the element and the matrix atom, and the better the high-temperature creep resistance of the alloy. At present, the W-containing high-temperature titanium alloys that have been studied at home and abroad mainly include BT36 [79], TC25G [125], and Ti65 [126]. Solving the problem of adding W element is of great significance for further breaking through the "thermal barrier" temperature of 600 • C.…”
Section: Eutectoid β Stable Elementmentioning
confidence: 99%