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Heat Treatments to Develop High-Strength Ferritic Ductile Iron

机译:热处理,开发高强度铁素体延性铁

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摘要

The influence of grain refinement on the mechanical properties of ferritic ductile iron was investigated. Alloys containing nominally 2%, 3%, and 4% silicon were produced for this study. Various heat treatments were employed to produce a fine-grained ferritic structure. Hardness, tensile, and Charpy impact properties were determined. The three alloys were austempered at 385 degrees C (725 degrees F). The austempered materials were then annealed between 540 and 732 degrees C (1000-1350 degrees F) to produce a fine-grained, 100% ferrite matrix. Intercritical heat treatments were also performed to produce a fine-grained acicular microstructure. Samples were both air-cooled and oil-quenched from the intercritical temperature and subsequently annealed to ferritize the material and enhance toughness. All three alloys were also tested in the fully annealed ferritic condition. All approaches to refine ferrite grain size were successful; the heat-treated alloys developed strengths comparable to the fully annealed SSSF 4%Si alloy. Based on Charpy impact testing, the grain-refined alloys displayed nil ductility temperatures below room temperature, whereas that of the 4% Si alloy was above room temperature.
机译:研究了晶粒细化对铁素体延性铁的力学性能的影响。为本研究制备含名义上2%,3%和4%硅的合金。使用各种热处理来产生细粒状铁素体结构。确定硬度,拉伸和夏比冲击性能。三种合金在385℃(725摄氏度)上稳定。然后在540至732℃(1000-1350°F)之间的奥氏体化材料进行退火,以产生细粒,100%铁氧体基质。还进行跨临界热处理以产生细粒的针状微观结构。样品既是空气冷却的,也会从临界温度淬火,随后退火以将材料加强并增强韧性。所有三种合金也在完全退火的铁素体条件下进行测试。完善铁氧体粒度的所有方法都是成功的;热处理的合金产生与完全退火的SSSF 4%Si合金相当的强度。基于夏比冲击试验,晶粒精制合金显示出低于室温的延展性温度,而4%Si合金的延展性温度高于室温。

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