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Effect of thermomechanical treatment on the properties of Fe-11Al and Fe-14Al alloys

机译:热机械处理对Fe-11Al和Fe-14Al合金性能的影响

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摘要

Fe-Al alloys have the potential to be relatively inexpensive soft magnetic materials if their formability could be improved. An investigation has been made on the effect of thermomechanical treatment on the properties of Fe-11 wt%Al and Fe-14 wt%Al alloys (designated Fe-11Al and Fe-14Al respectively). For the former the room temperature mechanical properties were found to be determined principally by the recrystallised grain size. A good combination of properties for Fe-11Al, i.e. high strength and ductility, was obtained when the grain size was less than about 100 μm. The small grain size was produced by warm rolling at 600°C followed by 1 hour annealing at 600–700°C. On the other hand hot rolling followed by annealing resulted in large grain size, hence rendered the alloy brittle. The cold formability also exhibited a grain size dependence, with the Fe-11Al alloy with a fine recrystallised grain size having good cold rollability. In contrast Fe-14Al was brittle irrespective of the treatment given; ductility of less than 1% was observed in all cases and the cold rollability was limited. Ordering was not seen to be a factor affecting the observed mechanical properties and rollability of either alloy as all the thermomechanical treatments, other than an ordering treatment of 500 hours at 400°C, resulted in a disordered structure. The stress required to work these alloys at elevated temperatures were estimated from compression tests and it is apparent that for Fe-11Al the stress is greatly reduced (50%) from the room temperature value at 600°C and that at 750°C both alloys required a similar stress which was about 15% of the room temperature value. The magnetic properties of Fe-11Al compared favourably with Fe-14Al; the former has a higher saturation induction, a similar coercive force but a lower permeability than Fe-14Al.
机译:如果可以提高Fe-Al合金的可成形性,它们有可能成为相对便宜的软磁材料。已经研究了热机械处理对Fe-11wt%Al和Fe-14wt%Al合金(分别称为Fe-11Al和Fe-14Al)的性能的影响。对于前者,发现室温机械性能主要由再结晶的晶粒尺寸决定。当晶粒尺寸小于约100μm时,获得了Fe-11Al的性能的良好组合,即高强度和延展性。通过在600°C进行热轧,然后在600-700°C进行1小时退火,可以生产出较小的晶粒。另一方面,热轧接着退火导致大晶粒尺寸,因此使合金变脆。冷成形性还显示出晶粒尺寸依赖性,具有细的再结晶晶粒尺寸的Fe-11Al合金具有良好的冷轧性。相比之下,无论采用何种处理方法,Fe-14Al都是脆性的。在所有情况下均观察到延展性小于1%,并且冷轧性受到限制。不认为有序性是影响所观察到的任一种合金的机械性能和可轧制性的因素,因为除了在400℃下500小时的有序处理之外,所有的热机械处理均导致结构混乱。根据压缩测试估算了在高温下加工这些合金所需的应力,很明显,对于Fe-11Al,两种合金均比室温下的600°C和750°C的应力大大降低(50%)。需要类似的应力,约为室温值的15%。 Fe-11Al的磁性优于Fe-14Al。前者比Fe-14Al具有更高的饱和感应度,相似的矫顽力但磁导率较低。

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  • 来源
    《Journal of Materials Science》 |2002年第9期|1823-1830|共8页
  • 作者

    Syahril; R. D. Rawlings;

  • 作者单位

    Research and Development Centre for Materials Science and Technology;

    Department of Materials Imperial College of Science Technology and Medicine;

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  • 原文格式 PDF
  • 正文语种 eng
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