Progressive Inelastic Deformation Characteristics of Cylindrical Structure with Plate-to-Shell Junction Under Moving Temperature Front

  • 발행 : 2003.03.01

초록

A study on the progressive inelastic deformation behavior of the 316 L stainless steel cylindrical structure with plate-to-shell junction under moving temperature front was carried out by structural test and analysis. The structural test intends to simulate the thermal ratcheting behavior occurring at the reactor baffle of the liquid metal reactor as free surface of hot sodium pool moves up and down under plant transients. The thermal ratchet load that heats the specimen up to 550$^{\circ}C$ was applied repeatedly and residual deformation was measured. The thermal ratcheting test was carried out with two types of cylindrical structures, one with plate to-shell junction and the other without the junction to investigate the effects of the geometric discontinuities on the global ratcheting deformation. The temperature distributions of the test specimens were measured and were used for the ratcheting analysis. The ratchet deformations were analyzed with the constitutive equation of the non-linear combined hardening model. The analysis results were in good agreement with those of the structural tests.

키워드

참고문헌

  1. ABAQUS version 6.2, Hibbit Karlsson, Sorensen, April 12, 2001
  2. ASME Boiler and Pressure Vessel Code, 2001, Section III Rules for construction of nuclear power plant components, Subsection NH Class 1 components in elevated temperature service
  3. Chaboche, J.-L., Rousselier, 1983, On the Plastic and Viscoplastic Constitutive Equations-Part Ⅰ: Rules Developed with Internal Variable Concept,' Journal of Pressure Vessel Technology, Vol. 105, No. 5, pp. 153 https://doi.org/10.1115/1.3264257
  4. IMSL Mathematics & Statistics Library, Vol. 2
  5. Igari, T., Wada, H., Ueta, M., 2000, 'Mechanism-based Evaluation of Thermal Ratcheting due to Traveling Temperature Distribution,' Journal of Pressure Vessel Technology, Vol. 122, No. 2, pp. 130-138 https://doi.org/10.1115/1.556162
  6. Igari, T., et al, 2002, 'Inelastic Analysis of New Thermal Ratchetting due to Moving Temperature Front,' International Journal of plasticity, Vol. 18, pp. 1191-1217 https://doi.org/10.1016/S0749-6419(01)00062-6
  7. Kobayashi, K. and Ohno, N., 1996, 'Thermal Ratcheting of a Cylinder Subjected to a Moving Temperature Front : Effect of Kinematic Hardening Rules on the Analysis,' International Journal of Plasticity, Vol. 12, No. 2, pp. 255-271 https://doi.org/10.1016/S0749-6419(96)00007-1
  8. Koo, G. H. and Lee, J. H., 2002, 'Design of LMR Reactor Structure in the Vicinity of Hot Pool Free Surface Regions Subjecting Elevated Moving Temperature Cycles,' International Journal of Pressure Vessel and piping, Vol. 79, pp. 167-179 https://doi.org/10.1016/S0308-0161(02)00013-3
  9. Lee, H. Y., Kim, J. B. and Lee, J. H., 2002, 'Test and Analysis of Thermal Ratchetting Deformation for 316L Stainless Steel Cylindrical Structure,' Korean Society of Mechanical Engineers (KSME), Vol. 26, No. 3, pp. 479-486 (in Korea) https://doi.org/10.3795/KSME-A.2002.26.3.479
  10. Lemaitre, J., Chaboche, J-L., 1990, Mechanics of Solid Materials, Cambridge university press
  11. R5, 1998, An assessment procedure for the high temperature response of structures, Nuclear Electic, Issue 2, Revision 2, UK
  12. RCC-MR Code, 1993, Section I, Subsection RB-3000, AFCEN, 1985 edition & 1993 addenda
  13. Schwertel, I. and Schinke, B., 1996, 'Automated Evaluation of Material Parameters of Viscoplastic Constitutive Equations,' J. Eng Mat. Tech., Vol. 118, pp. 273 https://doi.org/10.1115/1.2806805
  14. Wada, H., Otani, T., Fujioka, T., 1997, 'The Ratcheting Evaluation Methods in Japanese Demonstration FBR Design,' SMIRT 14, F04/2, pp. 85-92
  15. Wolters, J., Breitbach, G., Rodig, H. and Nickel, H., 1997, 'Investigation of Ratcheting Phenomenon for Dominating Bending Loads,' Nuclear Engineering Design, Vol. 174, No. 3, pp. 353-363 https://doi.org/10.1016/S0029-5493(97)00128-3
  16. Yoon, S. S., Lee, S. B., Kim, J. B., Lee, H. Y. and Yoo, B., 'Generalization of Integration Methods for Complex Inelastic Constitutive Equations with State Variables,' KSME, Vol. 24, No. 5, pp. 1075-1083. (in Korea)
  17. Nuclear Engineering Design v.174 no.3 Investigation of Ratcheting Phenomenon for Dominating Bending Loads Wolters, J.;Breitbach, G.;Rodig, H.;Nickel, H. https://doi.org/10.1016/S0029-5493(97)00128-3
  18. KSME v.24 no.5 Generalization of Integration Methods for Complex Inelastic Constitutive Equations with State Variables Yoon, S. S.;Lee, S. B.;Kim, J. B.;Lee, H. Y.;Yoo, B.