외압을 받는 두꺼운 원통형 내압용기의 붕괴하중 해석The Analysis of Collapse Load of Thick Pressure Cylinder under External Hydrostatic Pressure
- Other Titles
- The Analysis of Collapse Load of Thick Pressure Cylinder under External Hydrostatic Pressure
- Authors
- 이재환; 박병재
- Issue Date
- 2019
- Publisher
- 대한조선학회
- Keywords
- Thick cylinder(두꺼운 실린더); Pressure vessel(내압용기); External pressure(외압); Hydraulic pressure(수압); Buckling load(좌굴하중); Collapse load( 붕괴하중); Ovality(난형도); Imperfection(불완전성)
- Citation
- 대한조선학회 논문집, v.56, no.2, pp 175 - 186
- Pages
- 12
- Journal Title
- 대한조선학회 논문집
- Volume
- 56
- Number
- 2
- Start Page
- 175
- End Page
- 186
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/7897
- DOI
- 10.3744/SNAK.2019.56.2.175
- ISSN
- 1225-1143
- Abstract
- Number of studies on the buckling of thin cylindrical pressure vessels, such as submarine pressure hull and pipe with a large ratio of diameter/thickness, have been carried out in the naval and ocean engineering. However, research about thick cylinder pressure vessel has not been active except for the specific application in nuclear area. There are not many papers for the estimation of buckling and ultimate load capacity of thick cylinders for the deep sea usage. Thus, it is important to understand the theoretical bases of the buckling and collapse process and the derivation process of such loads for the proper design and structural analysis.
The objective of this study is to survey the collapse behavior, to analyse and clarify the derivation procedure and to estimate the ultimate collapse load for thick cylinder by analyzing relevant books and papers. It is found that the yielding begins at the internal surface of the thick cylinder and plasticity develops from the internal surface to the external surface to generate collapse.
Also the initial imperfection of cylinder develops flattening and consequently accelerates buckling and finally ultimate collapse.
By comparing the collapse loads of aluminum thick cylinder by applying equations herein, it is shown that the equations analyzed are appropriate to obtain collapse load for thick cylinder.
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