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Evolution of grain boundary network topology in 316L austenitic stainless steel during powder hot isostatic pressing

机译:粉末热等静压过程中316L奥氏体不锈钢晶界网络拓扑的演变

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摘要

The grain boundary network evolution of 316L austenitic steel powder during its densification by hot isostatic pressing (HIPing) was investigated. While the as-received powder contained a network of random high angle grain boundaries, the fully consolidated specimen had a large fraction of annealing twins, indicating that during densification, the microstructure evolves via recrystallization. By interrupting the HIPing process at different points in time, microstructural changes were tracked quantitatively at every stage using twin boundary fractions, distribution of different types of triple junctions, and the parameters associated with twin related domains (TRDs). Results revealed that, with increase in temperature, (i) the fraction of annealing twins increased steadily, but they mostly were not part of the grain boundary network in the fully consolidated specimen and (ii) the average number of grains within a TRD, the length of longest chain, and twinning polysynthetism increased during HIPing and (iii) the powder characteristics and the HIPing parameters have a strong influence on the development of grain boundary network. Based on the results obtained, possible alterations to the HIPing process are discussed, which could potentially allow twin induced grain boundary engineering.
机译:研究了316L奥氏体钢粉在热等静压(HIPing)致密化过程中的晶界网络演变。尽管所接收的粉末包含随机的大角度晶界网络,但完全固结的试样具有很大一部分退火孪晶,这表明在致密化过程中,微结构通过重结晶演变。通过在不同的时间点中断HIPing过程,在每个阶段都使用孪生边界分数,不同类型的三重结的分布以及与孪生相关域(TRD)相关的参数对微观结构的变化进行了定量跟踪。结果表明,随着温度的升高,(i)退火孪晶的分数稳定增加,但在完全固结试样中,它们大部分不是晶界网络的一部分;(ii)TRD中的平均晶粒数, HIPing过程中最长链的长度增加,孪生多合成增加;(iii)粉末特性和HIPing参数对晶界网络的发展有很大影响。基于获得的结果,讨论了对HIPing工艺的可能更改,这可能允许双晶诱导晶界工程。

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