July 17, 2017
Conference Paper

Microstructural Characterization of Irradiated U0.7ZrH1.6 Using Ultrasonic Techniques

Abstract

In recent years, there has been an increased level of effort to understand the changes in microstructure that occur due to irradiation of nuclear fuel. The primary driver for this increased effort is the potential for designing new fuels that are safer and more reliable, in turn enabling new and improved reactor technologies. Much of the data on microstructural change in irradiated fuels is generated through a host of post irradiation examination techniques such as optical microscopy (OM), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) to determine grain structure, porosity, crack geometry, etc. in irradiated fuels. Such “traditional” examination techniques were recently used to characterize a novel new fuel consisting of U0.17ZrH1.6 pellets bonded to zircaloy-2 cladded with lead-bismuth eutectic before and after irradiation. However, alternative methods such as ultrasonic inspection can provide an opportunity for nondestructively assessing microstructure in both in-pile and post-irradiation examinations. In this paper, we briefly describe initial results of ultrasonic examination of the U0.17ZrH1.6 pellets (unirradiated and irradiated), in a post-irradiation examination study. Data indicate some correlation with microstructural changes due to irradiation; however, it is not clear what the specific microstructural changes are that are influencing the ultrasonic measurements. Interestingly, specimens with nominally identical burnup show differences in ultrasonic signatures, indicating apparent microstructural differences between these specimens. A summary of the experimental study, preliminary data and findings are presented in this short paper. Additional details of the analysis will be included in the presentation.

Revised: June 4, 2018 | Published: July 17, 2017

Citation

Ramuhalli P., R.E. Jacob, P.J. MacFarlan, and A.M. Casella. 2017. Microstructural Characterization of Irradiated U0.7ZrH1.6 Using Ultrasonic Techniques. In Transactions of the American Nuclear Society (ANS 2017), June 11-15, 2017, San Francisco, CA, 116, 361-364. La Grange Park, Illinois:American Nuclear Society. PNNL-SA-123536.