Xiaolei WU
,
Xiangkang MENG
,
Xiyan ZHANG
,
Yanqing YANG and Mokuang KANG(Dept. of Materials Science and Technology
,
401
,
Northwestern Polytech. University
,
Xi'an
,
710072
,
China)
材料科学技术(英文)
Thermodynamic analysis for the formation of bainitic ferrite in carbon -depleted region has been conducted. The results show that the driving force of bainitic formation increases with depleting of carbon in parent austenite and with decreasing the transformation temperature. The critical driving force (absolute value) at the Bs temperature is 600-1 200 J / mol, which increases as the mean carbon content of Fe-C alloys increases. The freshly-formed bainitic ferrite has partial supersaturation of carbon, which increases smoothly with decreasing the transformation temperature Therefore, the displacive formation of bainitic ferrite in carbon-depleted region is thermodynamically feasible in the whole temperature range of bainitic reaction.
关键词:
Fenghui WANG
,
Minxu LU
,
Jianfeng WE and Xiulin ZHENG (Northwestern Polytechnical University
,
Xi'an
,
710072
,
China)
材料科学技术(英文)
Four-point bending cyclic fatigue testing has been performed for alumina specimens with two kinds of notch radius in corrosive environments. Cyclic life is found to be dependent on notch radius and environments, the tests also show that the fatigue notch factor Kf is roughly equal to the theoretical notch factor Kt, the fatigue strength and fatigue limit σc are reduced in environment in the sequence: formamide-room air-distilled water
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