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Characterization of deformation-induced metallurgical change in austenite stainless steel sheet with acoustic microscopy

机译:奥氏体不锈钢板形变引起的冶金变化的声学显微镜表征

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This article reports on the non-destructive evaluation (NDE) of metallurgical changes induced by the deformation processes. In particular, the martensite and reversed austenite states of a meta-stable austenitic stainless steel sheet were evaluated. The sheet was elongated up to 40% at room temperature, and was then brought below room temperature to produce martensite. This was then followed by annealing for reversion. First, martensite content was measured with a Feritscope. Second, the surface acoustic wave (SAW) velocity was measured with a high numerical aperture spherically focused ultrasonic beam with a frequency equal to 600 MHz. The measured SAW velocity values were found to be dependent on the elongation, the ambient temperature during elongation, and the annealing temperature. A useful trend was found in the correlation between the measured SAW velocity and the martensite content as measured with the Feritscope. Second, using a high frequency (i.e., 800 MHz) acoustic imaging technique, the deformed and annealed grain structures were mapped. In comparing the acoustic images with the optical images, the deformed grains shown in the acoustic images were found to be significantly clearer than those shown in the optical images. These studies reveal the importance of NDE, in connection with the forming of stainless steel structures, to map the deformation induced metallurgical changes. Here, unique NDE techniques are seen to be effective in mapping the changes with the use of hypersonic SAW velocity measurements and imaging.
机译:本文报道了由变形过程引起的冶金变化的无损评估(NDE)。特别地,评估了亚稳定奥氏体不锈钢薄板的马氏体和反向奥氏体状态。将该片在室温下拉长至40%,然后使其降至室温以下以产生马氏体。然后进行退火以恢复原状。首先,用Feritscope测量马氏体含量。其次,用频率等于600 MHz的高数值孔径球形聚焦超声束测量表面声波(SAW)速度。发现测得的SAW速度值取决于伸长率,伸长过程中的环境温度和退火温度。发现了一个有用的趋势,即通过费力显微镜测得的SAW速度与马氏体含量之间的相关性。其次,使用高频(即800MHz)声成像技术,对变形和退火的晶粒结构进行映射。在将声学图像与光学图像进行比较时,发现声学图像中示出的变形晶粒比光学图像中示出的明显更清晰。这些研究表明,与不锈钢结构的形成有关的无损检测对于绘制形变引起的冶金变化的重要性。在这里,可以看到独特的NDE技术可以有效地利用高超声速声表面波速度测量和成像来绘制变化图。

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