Effect of the average grain size of green pitch coke on the microstructure and properties of self-sintered graphite blocks
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Materials Science (miscellaneous)
Reference42 articles.
1. Mesocarbon microbead based graphite for spherical fuel element to inhibit the infiltration of liquid fluoride salt in molten salt reactor [J];Zhong;Journal of Nuclear Materials,2017
2. Preparation of binderless nanopore-isotropic graphite for inhibiting the liquid fluoride salt and Xe135 penetration for molten salt nuclear reactor [J];Song;Carbon,2014
3. Preparation of ultrafine-grain graphite by liquid dispersion technique for inhibiting the liquid fluoride salt infiltration [J];Lian;Carbon,2016
4. Microstructure and properties of fine-grained isotropic graphite based on mixed fillers for application in molten salt breeder reactor [J];He;Journal of Nuclear Materials,2018
5. Fine-grained graphite with super molten salt barrier property produced from filler of natural graphite flake by a liquid-phase mixing process [J];He;Carbon,2019
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