On the creep of ferritic weldments containing multiple zones in plates under uniaxial loading

Author:

Craine R E1,Hawkes T D2

Affiliation:

1. Mathematical Studies, University of Southampton, UK

2. National Economic Research Associates, London, UK

Abstract

Weldments are not currently included in most high temperature design codes although welds are known to be life-limiting. Metallurgists state that there are four principal regions in a ferritic weldment with the parent metal and weld region being separated by both the narrow high temperature heat affected zone (HAZ) and the narrow lower temperature type IV region. Expected weld performance can be evaluated using full size weldment testing or by the simpler creep testing of cross-weld specimens in the laboratory. The former is expensive but the latter, although cheaper to carry out, is not well understood. To improve understanding of the failure process in weldments, a plate containing these four distinct weldment regions and subjected to a constant uniaxial tensile end loading is studied in this paper. The plate is modelled using the Cosserat theory of plates and a generalization of the steady state Norton creep law and numerical solutions of the governing differntial equations are obtained illustrating how the creep strain rate is changed by variations in the widths and strengths of the type IV, HAZ, and weld regions and by varying the creep index. These results reveal that when narrow zones exist in a ferritic weldment the strain rate at a point can be greatly affected by the properties of both the neighbouring regions and non-adjacent zones and, therefore, deductions made through using only the homogeneous strengths of the constitutent materials would usually be incorrect.

Publisher

SAGE Publications

Subject

Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Modeling and Simulation

Cited by 12 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Heterogeneous creep behavior of a CrMoV multi-pass weld metal;Materials Science and Engineering: A;2017-04

2. Type IV creep cavity accumulation and failure in steel welds;International Journal of Pressure Vessels and Piping;2003-09

3. Creep crack growth in welds: a damage mechanics approach to predicting initiation and growth of circumferential cracks;International Journal of Pressure Vessels and Piping;2001-11

4. Creep of Welded Structures;IUTAM Symposium on Creep in Structures;2001

5. An inductive procedure for determining the stresses in multi-material components under steady state creep;The Journal of Strain Analysis for Engineering Design;2000-07-01

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