首页> 外文会议>International Conference on High Strength Low Alloy Steels >COMPARATIVE ANALYSIS OF PRECIPITATION EFFECTS IN MICROALLOYED AUSTENITE AND FERRITE UNDER HOT AND COLD FORMING CONDITIONS
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COMPARATIVE ANALYSIS OF PRECIPITATION EFFECTS IN MICROALLOYED AUSTENITE AND FERRITE UNDER HOT AND COLD FORMING CONDITIONS

机译:在热和冷成形条件下微合金化奥氏体和铁素体沉淀作用的比较分析

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摘要

Deformation processes of microalloyed steels, both during hot and cold processing, are characterized by complex interactions between fine strain-induced precipitates and defonnation activated movement of dislocations. Disperse particles that are either forming during the deformation at elevated temperature or are already present in the material at ambient temperature can significantly affect also other strengthening mechanisms e.g. dislocation and grain size strengthening. In the current work, quantitative and qualitative analysis of the effects of second phase particles in fcc and bcc microalloyed structures subjected to severe plastic defonnation (SPD) processing was performed with respect to the inhomogeneity of microstructure evolution and properties. Observed inhomogeneities of defonnation mechanisms, work hardening and microstructure refinement of microalloyed femte much more pronounced than in the case of microalloyed austenite. Discussion of the mechanical and microstructural reasons of such differences is also presented. Conclusions regarding effects of applied complex deformation history on microstructure morphology and properties were used as a validation of performed computer modelling.
机译:在热和冷加工期间微合金钢的变形方法,其特征在于精细菌株诱导的沉淀物之间的复杂相互作用和脱位的脱位的激活运动。在升高温度或在环境温度下存在于材料中的变形期间形成的分散颗粒可以显着地影响其他强化机制。脱位和晶粒尺寸加强。在目前的工作中,对对经受严重塑料放射(SPD)处理进行的FCC和BCC微合金结构在FCC和BCC微合金结构中进行的定量和定性分析是关于微观结构演化和性质的不均匀性的。观察到的定义机构的不均匀性,微合金佛罗里大学的工作硬化和微观结构细化比微合金化奥氏体的情况更加明显。还介绍了这种差异的机械和微观结构原因的探讨。关于应用复杂变形史对微观结构形态和性质的影响的结论用作进行了计算机建模的验证。

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