Nośność Sprężysta Rurociągu Grubościennego

The aim of this paper is to determine the limit curves in the plane of which the coordinates are the bending moment and the internal pressure, for the elastic load carrying capacity of a thick- walled pipe-line (the appearance of first plastic strains in a perfect elastic-plastic material). Three ty...

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Main Authors: M. Mrowiec, M. Życzkowski
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 1962-09-01
Series:Engineering Transactions
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/2863
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author M. Mrowiec
M. Życzkowski
author_facet M. Mrowiec
M. Życzkowski
author_sort M. Mrowiec
collection DOAJ
description The aim of this paper is to determine the limit curves in the plane of which the coordinates are the bending moment and the internal pressure, for the elastic load carrying capacity of a thick- walled pipe-line (the appearance of first plastic strains in a perfect elastic-plastic material). Three typical cases are considered: those of plane stress, plane strain and the case of a cylinder closed by bottoms. These cases are treated collectively by introducing the coefficient y the respective values of which are ? = 0, P = y and p = 0.5. On the basis of the Huber-Mises-Hencky strain theory the upper bound of the equivalent stress 0o is found. It is shown that it can be reached at the inner or the outer radius only, not the middle radius. The limit curves are composed of ellipse arches. Figure 2 shows the relation between the limit curves and the wall thickness and Fig. 3 the dependency of these curves on the character of the work (coefficient ϕ). Figure 4 represents an example of the pattern of the lines of equal equivalent stresses σ0 in a cross-section of the pipe.
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institution Kabale University
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2450-8071
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publishDate 1962-09-01
publisher Institute of Fundamental Technological Research
record_format Article
series Engineering Transactions
spelling doaj-art-d75dfa36ea1b4678834ea49116a2409f2025-08-20T03:49:49ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80711962-09-01103Nośność Sprężysta Rurociągu GrubościennegoM. Mrowiec0M. Życzkowski1Politechnika KrakowskaPolitechnika KrakowskaThe aim of this paper is to determine the limit curves in the plane of which the coordinates are the bending moment and the internal pressure, for the elastic load carrying capacity of a thick- walled pipe-line (the appearance of first plastic strains in a perfect elastic-plastic material). Three typical cases are considered: those of plane stress, plane strain and the case of a cylinder closed by bottoms. These cases are treated collectively by introducing the coefficient y the respective values of which are ? = 0, P = y and p = 0.5. On the basis of the Huber-Mises-Hencky strain theory the upper bound of the equivalent stress 0o is found. It is shown that it can be reached at the inner or the outer radius only, not the middle radius. The limit curves are composed of ellipse arches. Figure 2 shows the relation between the limit curves and the wall thickness and Fig. 3 the dependency of these curves on the character of the work (coefficient ϕ). Figure 4 represents an example of the pattern of the lines of equal equivalent stresses σ0 in a cross-section of the pipe.https://et.ippt.pan.pl/index.php/et/article/view/2863
spellingShingle M. Mrowiec
M. Życzkowski
Nośność Sprężysta Rurociągu Grubościennego
Engineering Transactions
title Nośność Sprężysta Rurociągu Grubościennego
title_full Nośność Sprężysta Rurociągu Grubościennego
title_fullStr Nośność Sprężysta Rurociągu Grubościennego
title_full_unstemmed Nośność Sprężysta Rurociągu Grubościennego
title_short Nośność Sprężysta Rurociągu Grubościennego
title_sort nosnosc sprezysta rurociagu grubosciennego
url https://et.ippt.pan.pl/index.php/et/article/view/2863
work_keys_str_mv AT mmrowiec nosnoscsprezystarurociagugrubosciennego
AT mzyczkowski nosnoscsprezystarurociagugrubosciennego