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Austenite stability of austempered ductile iron (ADI) in sub-zero conditions

机译:零以下条件下的奥氏体球墨铸铁(ADI)的奥氏体稳定性

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The use of Austempered Ductile Iron (ADI) in the manufacture of different types of components grows despite some limitations that hinder the full development of their potential. The eligibility of these grades for applications at low temperature operating conditions is still an open question. . Consequently, the effect of low temperatures in the behaviour of materials submitted to conditions that resemble those expected in some extreme applications should be analyzed. Test samples have been submitted to sub-zero thermal treatment at -20°C (-4℉) and -40°C (-40℉) in order to assess their influence in the mechanical properties of ADI 1000. But in actual working situations, most of the components undergo variable temperature conditions. So, a group of samples has also bee submitted to successive cycles of-40°C in order to, in a way, approach the thermal conditions that could be found in hard environments. Moreover, some samples have been submitted to deep cryogenic treatment at -175°C (-283℉). Although not reachable in nature, this level of temperatures provides an interesting research field for the future development of austempered ductile iron. In order to simplify the presentation and interpretation of the results, the dynamic characterization (fatigue and fracture values) has not been considered in this study. It will be addressed in future investigation. The transformation of the austenite has been verified by metallographic techniques. The changes in mechanical properties have been significant and can be explained by this evolution.
机译:尽管有一些局限性阻碍了其潜力的全面发展,但奥氏体球墨铸铁(ADI)在制造不同类型组件中的使用仍在增长。这些等级是否适合在低温工作条件下使用仍然是一个悬而未决的问题。 。因此,应分析低温对材料行为的影响,这些条件类似于某些极端应用中所预期的条件。为了评估样品对ADI 1000力学性能的影响,已对测试样品在-20°C(-4℉)和-40°C(-40℉)进行零度热处理。 ,大多数组件会经历可变温度条件。因此,一组样品也要经过-40°C的连续循环,以某种方式接近在硬环境中可能发现的热条件。此外,一些样品已在-175°C(-283℉)下进行了深低温处理。尽管本质上无法达到,但这一温度水平为奥氏体球墨铸铁的未来发展提供了一个有趣的研究领域。为了简化结果的表示和解释,在这项研究中未考虑动态特性(疲劳和断裂值)。将在以后的调查中解决。奥氏体的相变已经通过金相技术进行了验证。机械性能的变化非常重要,可以通过这种演变来解释。

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