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Comparison of plastic collapse moment for different angled non-circular pipe bends under bending moments and internal pressure
by
Singh, Muralidhar
, Kamble, Devendra
, Kumar, Amit
, Kumar, Amrendra
, Kumar, Manish
in
Bending moments
/ Elastic analysis
/ Engineering
/ Finite element method
/ Geometry
/ Initial geometric imperfections
/ Internal pressure
/ Load
/ Material properties
/ Mechanical Engineering
/ Pipe bends
/ Pipes
/ Piping systems
/ Plastic collapse
/ Pneumatics
/ Pressure pipes
/ Strain hardening
/ Technical Paper
/ Temperature effects
2024
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Comparison of plastic collapse moment for different angled non-circular pipe bends under bending moments and internal pressure
by
Singh, Muralidhar
, Kamble, Devendra
, Kumar, Amit
, Kumar, Amrendra
, Kumar, Manish
in
Bending moments
/ Elastic analysis
/ Engineering
/ Finite element method
/ Geometry
/ Initial geometric imperfections
/ Internal pressure
/ Load
/ Material properties
/ Mechanical Engineering
/ Pipe bends
/ Pipes
/ Piping systems
/ Plastic collapse
/ Pneumatics
/ Pressure pipes
/ Strain hardening
/ Technical Paper
/ Temperature effects
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Comparison of plastic collapse moment for different angled non-circular pipe bends under bending moments and internal pressure
by
Singh, Muralidhar
, Kamble, Devendra
, Kumar, Amit
, Kumar, Amrendra
, Kumar, Manish
in
Bending moments
/ Elastic analysis
/ Engineering
/ Finite element method
/ Geometry
/ Initial geometric imperfections
/ Internal pressure
/ Load
/ Material properties
/ Mechanical Engineering
/ Pipe bends
/ Pipes
/ Piping systems
/ Plastic collapse
/ Pneumatics
/ Pressure pipes
/ Strain hardening
/ Technical Paper
/ Temperature effects
2024
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Comparison of plastic collapse moment for different angled non-circular pipe bends under bending moments and internal pressure
Journal Article
Comparison of plastic collapse moment for different angled non-circular pipe bends under bending moments and internal pressure
2024
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Overview
Pipe bends are a crucial component of the pipeline industry because they experience more stresses and deformations than straight pipes of the same dimensions and material properties under the same loading conditions. For a reliable and safe piping system, the plastic collapse moment of pipe bends must be estimated accurately. The current study aims to find which bending mode is critical to failure for pipe bends; for that, the collapse moment under in-plane closing (IPC), in-plane opening (IPO) and out-of-plane (OP) bending moments are compared using finite element (FE) analysis. The comparison accounts for various values of internal pressure, bend angle and initial geometric imperfection. The FE analysis considers elastic-perfectly plastic (EPP) and strain-hardening (SH) material models. Twice-elastic-slope (TES) method is implemented to evaluate plastic collapse moment for all considered cases. The comparison of collapse moment shows that under unpressurized conditions, pipe bends are critical to IPC bending moment. However, it is difficult to identify which bending mode is critical under pressurized conditions. Therefore, plastic collapse moment under all three bending modes should be known and for that plastic collapse moment equations under all bending modes should be proposed.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
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