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首页> 外文期刊>Journal of Materials Processing Technology >Grain refinement limit during hot radial ring rolling of as-cast GCr15 steel
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Grain refinement limit during hot radial ring rolling of as-cast GCr15 steel

机译:铸态GCr15钢热轧环轧时晶粒细化极限

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Using hot radial ring rolling to process as-cast blank is a new ring manufacturing technology of high efficiency, high material utilization and low energy consumption. It was customarily considered that larger deformation amount is needed in the new process to obtain smaller average grain size. However, in our work, no further refinement of the average grain size has been found at a certain sufficient deformation amount. Hot radial ring rolling of as-cast GCr15 steel at elevated forging temperature has a grain limit, further deformation produced by this technology does not help overcome this limit. The key explanation to this phenomenon lies in the balance of dynamic recrystallization-induced grain reduction and thermal induced grain growth occurred during this process. The minimum strain to reach grain limit has been defined and quantified based on the empirical dynamic recrystallization models. The effects of strain and Z parameter on grain limit have been carried out. The optimizing selections of rolling parameters based on grain limit have been discussed. These results obtained provide guidance for grain size controlling and performance improving in the new technology of manufacturing rings. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用热径向环轧来加工铸件是一种高效率,高材料利用率和低能耗的新型环制造技术。通常认为,在新工艺中需要较大的变形量以获得较小的平均晶粒尺寸。但是,在我们的工作中,没有发现在一定的足够变形量下进一步细化平均晶粒尺寸。在较高的锻造温度下对铸态GCr15钢进行的径向热轧具有晶粒极限,该技术产生的进一步变形无助于克服该极限。对此现象的关键解释在于,在此过程中,动态再结晶引起的晶粒减少与热引起的晶粒生长之间达到了平衡。根据经验动态再结晶模型,已经定义和量化了达到晶粒极限的最小应变。已经进行了应变和Z参数对晶粒极限的影响。讨论了基于晶粒极限的轧制参数优化选择。获得的这些结果为制造环的新技术中的晶粒尺寸控制和性能改进提供了指导。 (C)2015 Elsevier B.V.保留所有权利。

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