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Liu Hetong; Ma Qinwei; Ma Shaopeng; Wang Hongtao, E-mail: liuht@bit.edu.com
7th International Topical Meeting on High Temperature Reactor Technology: The modular HTR is advancing towards reality. Papers and Presentations2014
7th International Topical Meeting on High Temperature Reactor Technology: The modular HTR is advancing towards reality. Papers and Presentations2014
AbstractAbstract
[en] The graphite material cylinders are widely used in High-temperature gas-cooled reactor as connecting components. For engineering design, the deformation behavior, especially the yielding process of the graphite cylinder should be investigated in order to evaluate the carrying capacity of the cylinder. The yielding formation and propagation of a graphite cylinder subjected to line loading, which corresponds to the global behavior of the structure, was experimentally studied and evaluated by measuring the strain fields on the end of the cylinder using Digital Image Correlation. The global behavior of the structure is expressed by a relationship between the average stress (load divided by contact area) and the equivalent strain (ratio of half width of contact area to radius of the cylinder), the contact area was measured by identifying the color area of the pressure film in a new experiment which graphite component is loaded and unloaded continuously. A correspondence between the yielding state and the nonlinearity of the global behavior was constructed, as loading was increased, the cylinder was found to first yield at a specific point after which a yielding core formed and propagated. Before the yielding core propagated to the surface of the cylinder, the global behavior of the structure remained linear. After the yielding core propagated to the surface of the cylinder, the global behavior became nonlinear. The correspondence constructed in the paper will be helpful to understand the failure process and to evaluate the carrying capacity of a graphite cylinder subjected to line loading in reactors. (author)
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Tsinghua University, Institute of Nuclear and New Energy Technology (INET), Beijing (China); China Huaneng, Shandong Shidao Bay Nuclear Power, Co., Ltd., Beijing (China); Chinergy Co., Ltd., Beijing (China); vp; ISBN 978-7-89395-349-1;
; 2014; 6 p; HTR2014: 7. International Topical Meeting on High Temperature Reactor Technology; Weihai (China); 27-31 Oct 2014; HTR2014--41331; GRANT 20131089332; ZX06901; 11172039; 11372038; Country of input: International Atomic Energy Agency (IAEA); 13 refs., 6 figs., 1 tab.

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