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Refining performance of Al–3Ti–0.2C–5Sr on A356 alloy and electron microanalysis of ternary Al–Ti–Sr phases

Refining performance of Al–3Ti–0.2C–5Sr on A356 alloy and electron microanalysis of ternary Al–Ti–Sr phases
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摘要 The effect of Al-3Ti-0.2C-5Sr (wt%) grain refiner on the refining performance and modification of A356 alloy was investigated using optical microscope (OM).The morphology and crystal structure of ternary Al-Ti-Sr phases in Al-3Ti-0.2C-5Sr refiner were analyzed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM).The results show that the ternary Al-Ti-Sr phases in Al-3Ti-0.2C-5Sr refiner can promote the grain refining efficiency of A356 alloy.The ternary Al-Ti-Sr phases co-exist in two morphologies,i.e.,blocky-like phase and surround-like phase,besides,which both have the same chemical composition of Al34Ti3Sr.The crystal structure of Al34TiaSr is face-centered cubic,and the lattice parameter is determined to be about 1.52 nm. The effect of Al-3Ti-0.2C-5Sr (wt%) grain refiner on the refining performance and modification of A356 alloy was investigated using optical microscope (OM).The morphology and crystal structure of ternary Al-Ti-Sr phases in Al-3Ti-0.2C-5Sr refiner were analyzed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM).The results show that the ternary Al-Ti-Sr phases in Al-3Ti-0.2C-5Sr refiner can promote the grain refining efficiency of A356 alloy.The ternary Al-Ti-Sr phases co-exist in two morphologies,i.e.,blocky-like phase and surround-like phase,besides,which both have the same chemical composition of Al34Ti3Sr.The crystal structure of Al34TiaSr is face-centered cubic,and the lattice parameter is determined to be about 1.52 nm.
出处 《Rare Metals》 SCIE EI CAS CSCD 2017年第3期188-192,共5页 稀有金属(英文版)
基金 financially supported by the National Natural Science Foundation of China(No.51174177)
关键词 Grain refiner Aluminum alloy AI-Ti-Srphase Microscopic morphology Crystal structure Grain refiner Aluminum alloy AI-Ti-Srphase Microscopic morphology Crystal structure
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