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A New Approach to Isothermal Precipitation Kinetics of Carbides

Wantang FU , Zheng WANG , Tianfu JING and Yangzeng ZHENG (Dept. of Materials Engineering , Yanshan University , Qinhuangdao 066004 , China)Jianguo MA(Harbin Frame Factory of Electrical Cable , Harbin , China)

材料科学技术(英)

A new approach to isothermal precipitation kinetics of carbides in undercooled austenite has been proposed firstly, which is based on measuring the changes of Ms point vs holding time at a certain temperature. The isothermal precipitation kinetics (PTT) Curve of carbides was obtained by the use of the method for 13Cr-8Mn-0.07N stainless steel, and compared with the results of chemical phase analysis and TEM method. The results show that the new method is more sensitive and convenient than the other methods.

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Microstructural Evolution of Pearlite in Eutectoid Fe-C Alloys during Severe Cold Rolling

Wantang FU , Yi XIONG , Jun ZHAO , Yong LI , T.Furuhara , T.Maki

材料科学技术(英)

The microstructural evolution of pearlite during severe cold rolling in Fe-0.8C binary alloy and Fe-1Mn-0.8C ternary alloys was investigated by using SEM, TEM and XRD etc. The results show that the deformed pearlite consists of irregularly bent lamella, coarse lamella with shear-band and fine lamella. As the rolling reduction increases, the proportion of fine lamella increases. The strong plastic deformation, amorphization and dissolution of cementite take place during the severe cold rolling. The maximum carbon content in ferrite reaches 0.15 mass% after 90% cold rolling.

关键词: Pearlite , null , null , null , null , null

Microstructure changes during cavitation erosion for a steel with metastable austenite

Wantang FU

材料科学技术(英)

The characteristics of microstructure changes during cavitation erosion (CE) were investigated by the use of XRD and TEM analyses for steel (ZG0Cr13Mn8N) with metastable austenite. The results show that the microstructure of the surface layer of the specimens consists of alpha'-martensite, metastable austenite and a few g-martensite before CE. CE obviously increases dislocation density and straight or planar dislocations on the surface, and induces gamma --> epsilon, epsilon --> alpha' and gamma --> alpha'-martensitic transformation.

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