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Effect of Silicon and Manganese on Mechanical Properties of Low-Carbon Plain TRIP Steel

Effect of Silicon and Manganese on Mechanical Properties ofLow-Carbon Plain TRIP Steel
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摘要 A great deal of stabilized retained austenite can be obtained by means of austempering immediately after intercritical annealing in the low-carbon plain steel sheets which only contain alloying elements of silicon and manganese. Transformation from retained austenite to martensite may be induced by strain at a temperature ranging from 50 ℃ to 400 ℃ during tension testing. Transformation-induced plasticity (TRIP) may occur. Alloying of silicon improves the stability of retained austenite. Mechanical properties of the present TRIP steels containing manganese increase with increasing silicon amount when the amount of silicon is less than two percent. A great deal of stabilized retained austenite can be obtained by means of austempering immediately after intercritical annealing in the low-carbon plain steel sheets which only contain alloying elements of silicon and manganese. Transformation from retained austenite to martensite may be induced by strain at a temperature ranging from 50 ℃ to 400 ℃ during tension testing. Transformation-induced plasticity (TRIP) may occur. Alloying of silicon improves the stability of retained austenite. Mechanical properties of the present TRIP steels containing manganese increase with increasing silicon amount when the amount of silicon is less than two percent.
出处 《Journal of Iron and Steel Research International》 SCIE CAS CSCD 2005年第3期51-55,共5页
基金 ItemSponsoredbyNationalNaturalScienceFoundationofChina(50334010)
关键词 AUSTEMPERING intercritical annealing retained austenite strain-induced martensite transformation transformation-induced plasticity (TRIP) mechanical property austempering intercritical annealing retained austenite strain-induced martensite transformation transformation-induced plasticity (TRIP) mechanical property
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参考文献8

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