Guidance for Material Selection Based on Static and Dynamic Mechanical Properties at Sub-Zero Temperatures

Author:

Braun Moritz1,Kahl Adrian2,Willems Tom3,Seidel Marc3,Fischer Claas4,Ehlers Sören1

Affiliation:

1. Institute for Ship Structural Design and Analysis, Hamburg University of Technology, Am Schwarzenberg Campus 4(C), D-21073 Hamburg, Germany

2. DNV GL—Maritime, Brooktorkai 18, D-20457 Hamburg, Germany

3. Siemens Gamesa Renewable Energy GmbH & Co. KG, Beim Strohhause 17, D-20097 Hamburg, Germany

4. TÜV NORD EnSys GmbH & Co. KG, Große Bahnstraße 31, D-22525 Hamburg, Germany

Abstract

Abstract It is well known that material properties undergo significant changes with temperature. In order to meet extreme environmental requirements for ships and offshore structures operating in Arctic regions, the effect of temperature on material behavior needs to be considered. In recent studies, significantly higher fatigue strength was observed for base materials and welded joints in comparison to room temperature. Fatigue strength increased even for temperatures far below the allowed service temperature based on fracture toughness results; however, sub-zero temperatures fatigue data are scarce and the effects of steel strength and welding type on fatigue strength changes are unknown. Material selection for ships and offshore structures is typically based on empirical Charpy and fracture toughness relations at the design temperature, minus a safety margin. Thus, this study presents material test results including fatigue tests of butt-welded joints, tensile test, and Charpy impact toughness tests at room and sub-zero temperatures of different structural steel types. Additionally, the effect of welding techniques and steel strength are discussed. The results can be used to extend design approaches for ships and offshore structures subject to sub-zero temperatures and to improve material selection for ships and offshore structures operating in Arctic regions.

Funder

Bundesministerium für Wirtschaft und Energie

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference93 articles.

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