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Ultra-fine Bainite Structure in Hypo-eutectoid Steels

机译:次共析钢中的超细贝氏体组织

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摘要

Ultra-fine, carbide-free bainitic structure of plate thickness between 34 and 116 nm has been obtained by low temperature austempering process of two hypo-eutectoid steels with 0.42 and 0.57% C. Decreasing the carbon content results in accelerating the bainite transformation reaction together with decreasing the retained austenite content, which is known to be detrimental to the mechanical properties. Furthermore, lowering the carbon content below the eutectoid composition allowed intercritical annealing of the material which resulted in a wider window for heat treatment parameters and consequently in a spread field for mechanical properties. Dilatometric measurements were used to design the suitable heat-treatment parameters including an estimation of the required time frames for the cessation of the bainitic reaction. The structure was characterized using light optical microscopy (LOM), scanning electron microscopy (SEM) and X-ray diffractometry. In order to investigate the effect of the microstructure parameters on the materials mechanical properties, compression tests had been conducted at room temperature.
机译:通过两种温度为0.42和0.57%C的次共析钢的低温奥氏回火工艺,获得了板厚为34至116 nm的超细无碳化物贝氏体组织。降低碳含量可共同促进贝氏体转变反应降低残余奥氏体含量,这对机械性能是有害的。此外,将碳含量降低到共析成分以下允许材料的临界退火,这导致了用于热处理参数的更宽的窗口,并且因此导致了用于机械性能的扩展场。使用膨胀测量法设计合适的热处理参数,包括估计停止贝氏体反应所需的时间范围。使用光学显微镜(LOM),扫描电子显微镜(SEM)和X射线衍射仪对结构进行了表征。为了研究微观结构参数对材料力学性能的影响,已在室温下进行了压缩试验。

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