Fractures in High-Strength Bolts due to Hydrogen Induced Stress Corrosion – Causes and Corrective Actions

Author:

Hoche H.1,Oechsner M.1

Affiliation:

1. Technische Universität Darmstadt , Zentrum für Konstruktionswerkstoffe; Staatliche Materialprüfungsanstalt Darmstadt und Fachgebiet und Institut für Werkstoffkunde; Grafenstr. 2 , 64283 Darmstadt; e-mail:

Abstract

Abstract Delayed brittle fractures of high-strength bolts of the strength class 10.9 are presented, taking the example of three damage cases. The respective damage mechanisms could be attributed to hydrogen induced stress corrosion which was caused, in turn, by hydrogen absorption during operation. The examples were chosen with a particular focus on the material condition‘s susceptibility which explains the cause for the occurrence of the damage mechanism. However, in only one of the three cases the susceptibility was evident and could be explained by violations of normative specifications and an unfavorable material choice. Whereas in the two other examples, only slight or no deviations from the standards and/or regulations could be found. The influencing parameters that caused the damage, those that further promoted the damage, as well as possible corrective actions are discussed taking into account the three exemplary damage cases.

Publisher

Walter de Gruyter GmbH

Subject

Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference19 articles.

1. Hydrogen thermal desorption relevant to delayed-fracture susceptibility of high-strength steels

2. 2006: Hochfeste planmäßig vorspannbare Schraubenverbindungen für den Metallbau,2006

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