Elastic-plastic deformation of pressure vessel with radial branch pipe and determination of ultimate load

 
PIIS023571190002559-5-1
DOI10.31857/S023571190002559-5
Publication type Article
Status Published
Authors
Affiliation:
Affiliation: MIREA – Russian Technological University
Address: Russian Federation, Moscow
Affiliation: Bauman Moscow State Technical University
Address: Russian Federation, Moscow
Journal nameProblemy mashinostroeniia i nadezhnosti mashin
EditionIssue 6
Pages34-43
Abstract

               

Keywords
Publication date15.12.2018
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1. ASME. Boiler and Pressure Vessel Code. Sections II and VIII. New York, 2004.

2. BSI. PD 5500:2006 Specification for Unfired Fusion Welded Pressure Vessels. London: British standards Institution, 2006.

3. EN 13445. Unfired Pressure Vessels. Part 3: Design. European Committee for Standardisation (CEN), 2002.

4. GOST R 52857.3–2007 «Sosudy i apparaty. Normy i metody rascheta na prochnost'. Ukreplenie otverstij v obechajkakh i dnischakh pri vnutrennem i vneshnem davleniyakh».

5. Skopinskij V.N. Napryazheniya v peresekayuschikhsya obolochkakh. M.: FIZMATLIT, 2008. 400 s.

6. Gerdeen J.C. A critical evaluation of plastic behavior data and a unified definition of plastic loads for pressure components // WRC Bulletin. 1979. No. 254. P. 1–64.

7. Skopinskij V.N., Berkov N.A., Vozhova N.V. Novyj kriterij opredeleniya predel'noj nagruzki v sosudakh davleniya s patrubkami // Mashinostroenie i inzhenernoe obrazovanie. 2011. № 3. S. 50–57.

8. Skopinsky V.N. and Berkov N.A. New Criterion for the Definition of Plastic Limit Load in Nozzle Connections of Pressure Vessels // Trans. ASME. J. Pres. Vessel Technol. 2013. V. 135. Iss. 2. P. 021206-021206-6 (6 pages).

9. Skopinsky V.N., Berkov N.A. Defining the plastic limit moment for shell intersections based on a new criterion // Journal of Engineering Mechanics. 2014. V. 140 Iss. 8. P. 04014054-1–8.

10. Skopinsky V.N., Berkov N.A., Vozhov R.A. Plastic limit loads for cylindrical shell intersections under combined loading // Inter. J. Pres. Vessels and Piping. 2015. Vol. 126-127. P. 8–16.

11. Sang Z.F., Xue L.P., Lin Y.J., Widera G.E.O. Limit and burst pressures for a cylindrical shell intersection with intermediate diameter ratio // Inter. J. Pres. Vessels and Piping. 2002. V. 79. P. 341–349.

12. Sang Z.F., Lin Y.J., Xue L.P., Widera G.E.O. Limit and Burst Pressures for a Cylindrical Vessel With a 30 deg—Lateral (d/D≥0.5) // Trans. ASME. J. Pres. Vessel Technol. 2005. V. 127. Iss. 1. P. 61–69.

13. Sang Z.F., Wang Z.L., Xue L.P., Widera G.E.O. Plastic limit loads of nozzles in cylindrical vessels under out-of-plane moment loading // Inter. J. Pres. Vessels and Piping. 2005. V. 82. P. 638-648.

14. Li N., Sang Z.F., Widera G.E.O. Study of plastic limit load on pressurized cylinders with lateral nozzle // Trans. ASME. J. Pressure Vessel Technol. 2008. Vol. 130. Iss. 4. P. 041210-041210-7 (7 pages).

15. Wu B.H., Sang Z.F., Widera G.E.O. Plastic analysis for cylindrical vessels under in-plane moment on the nozzle // Trans. ASME. J. Pressure Vessel Technol. 2010. V. 132. Iss. 6. P. 061203-061203-8 (8 pages).

16. Xue L.P., Widera G.E.O., Sang Z.F. Influence of Pad Reinforcement on the Limit and Burst Pressures of a Cylinder-Cylinder Intersection // Trans. ASME. J. Pres. Vessel Technol. 2003. Vol. 125. Iss. 2. P. 182–187.

17. Sang Z.F., Wang H.F., Xue L.P., Widera G.E.O. Plastic limit loads of pad reinforced cylindrical vessels under out-of-plane moment of nozzle // Trans. ASME. J. Pres. Vessel Technol. 2006. V. 128. Iss. 1. P. 49–56.

18. Malinin N.N. Prikladnaya teoriya plastichnosti i polzuchesti. M.: Mashinostroenie, 1975. 400 s.

19. Skopinskij V.N., Berkov N.A., Vozhova N.V., Smetankin A.B. Predel'naya plasticheskaya nagruzka v sosude davleniya s patrubkom pri sovmestnom dejstvii vnutrennego davleniya i izgibayuschikh momentov // Khimicheskoe i neftegazovoe mashinostroenie. 2013. № 8. S. 38–41.

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