The Effect of Modeling Parameters on the Predicted Limit Loads for Pipe Bends Subjected to Out-of-Plane Moment Loading and Internal Pressure

Author:

Mourad Hashem M.1,Younan Maher Y. A.1

Affiliation:

1. The American University in Cairo, Engineering Department, Cairo 11511, Egypt

Abstract

The purpose of this study is to investigate the effect of modeling parameters on the determination of limit loads for standalone pipe bends, subjected to an out-of-plane end moment and internal pressure. A pipe bend, with bend factor h=0.1615, is modeled and analyzed using the nonlinear finite element code ABAQUS. Small and large-displacement analyses are performed with elastic-perfectly plastic and strain-hardening material models. Small-displacement analyses fail to predict the stiffening effect of pressure and give a continuously decaying limit load with increased pressure. Material strain hardening gives a higher limit load than perfectly plastic materials. In the large-displacement analysis with a strain-hardening material, the limit moment levels off as the pressure increases, and does not decrease as in the case of a perfectly plastic material. [S0094-9930(00)00804-0]

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference16 articles.

1. Ohtsubo, H., and Watanabe, O., 1976, “Flexibility and Stress Factors of Pipe Bends—An Analysis by the Finite Ring Method,” Trans. ASME, Paper No. 76-PVP-40, pp. 1–10.

2. Mello, R. M., and Griffin, D. S., 1974, “Plastic Collapse Loads for Pipe Elbows Using Inelastic Analysis,” Trans. ASME, 96(J), pp. 177–183.

3. Sobel, L. H., and Newman, S. Z., 1977, “Instability Analysis of Elbows in the Plastic Range,” Proc., 4th Structural Mechanics in Reactor Technology (SMiRT) Conference, Vol. L3, pp. 1–11.

4. Dhalla, A. K., 1980, “Plastic Collapse of a Piping Elbow: Effects of Finite Element Convergence and Residual Stresses,” Proc., 4th International Conference on Pressure Vessel Technology, The Institution of Mechanical Engineers, Vol. 11, pp. 243–249.

5. Shalaby, M. A., 1996, “Elastic-Plastic Behavior and Limit-Load Analysis of Pipe Elbows Under In-Plane Bending and Internal Pressure,” M.Sc. thesis, The American University in Cairo, Cairo, Egypt.

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