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The effect of ageing on the microstructure, mechanical properties and shape memory effect (SME) in a newly developed Fe-24Mn-5Si-8Co-4Mo shape memory alloy has been studied. It was found that Fe2Mo particles precipitate during ageing and thereby increase hardness and strength of the alloy The SME of the alloy can be remarkably improved by ageing and a maximum SME can be obtained when aged at 873 K. When the ageing temperature is over 873 K, the SME decreases with increasing ageing temperature. The reason for the improvement of SME by ageing in the Fe-Mn-Si-Co-Mo alloy is discussed
The effect of aging on the microstructure, mechanical properties and shape memory effect (SME) in a newly developed Fe-24Mn-5Si-8Co-4Mo shape memory alloy has been studied. It was found that Fe2Mo particles precipitate during aging and thereby increase hardness and strength of the alloy The SME of the alloy can remarkably improve by aging and a maximum SME can be obtained when aged at 873 K. When the aging temperature is over 873 K, the SME decreases with increasing aging temperature. The reason for the improvement of SME by aging in the Fe-Mn-Si-Co-Mo alloy is discussed