2012Medical Entomology and ZoologyRequires access

The problem, its characterisation and effects on particular alloy classes

Richard P. Gangloff, Brian P. Somerday

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Abstract

Part 1 The hydrogen embrittlement problem: Hydrogen production and containment Hydrogen-induced disbonding and embrittlement of steels used in petrochemical refining Assessing hydrogen embrittlement in automotive hydrogen tanks Gaseous hydrogen issues in nuclear waste disposal Hydrogen embrittlement in nuclear power systems Standards and codes to control hydrogen-induced cracking in pressure vessels and pipes for hydrogen gas storage and transport. Part 2 Characterisation and analysis of hydrogen embrittlement: Fracture and fatigue test methods in hydrogen gas Mechanics of modern test methods and quantitive-accelerated testing for hydrogen embrittlement Metallographic and Fractographic techniques for characterising and understanding hydrogen-assisted cracking of metals Fatigue crack initiation and fatigue life of metals exposed to hydrogen Effects of hydrogen on fatigue crack propagation in steels. Part 3 The hydrogen embrittlement of alloy classes: Hydrogen embrittlement of high-strength steels Hydrogen trapping phenomena in martensitic steels Hydrogen embrittlement of carbon steels and their welds Hydrogen embrittlement of high-strength low-alloy (HSLA) steels and their welds Hydrogen embrittlement of austenitic stainless steels and their welds Hydrogen embrittlement of nickel, cobalt and iron-based superalloys Hydrogen effects in titanium alloys Hydrogen embrittlement of aluminium and aluminium-based alloys Hydrogen-induced degradation of rubber seals.

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Part 1 The hydrogen embrittlement problem: Hydrogen production and containment Hydrogen-induced disbonding and embrittlement of steels used in petrochemical refining Assessing hydrogen embrittlement in automotive hydrogen tanks Gaseous hydrogen issues in nuclear waste disposal Hydrogen embrittlement in nuclear power systems Standards and codes to control hydrogen-induced cracking in pressure vessels and pipes for hydrogen gas storage and transport. Part 2 Characterisation and analysis of hydrogen embrittlement: Fracture and fatigue test methods in hydrogen gas Mechanics of modern test methods and quantitive-accelerated testing for hydrogen embrittlement Metallographic and Fractographic techniques for characterising and understanding hydrogen-assisted cracking of metals Fatigue crack initiation and fatigue life of metals exposed to hydrogen Effects of hydrogen on fatigue crack propagation in steels. Part 3 The hydrogen embrittlement of alloy classes: Hydrogen embrittlement of high-strength steels Hydrogen trapping phenomena in martensitic steels Hydrogen embrittlement of carbon steels and their welds Hydrogen embrittlement of high-strength low-alloy (HSLA) steels and their welds Hydrogen embrittlement of austenitic stainless steels and their welds Hydrogen embrittlement of nickel, cobalt and iron-based superalloys Hydrogen effects in titanium alloys Hydrogen embrittlement of aluminium and aluminium-based alloys Hydrogen-induced degradation of rubber seals.

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Available abstract

Part 1 The hydrogen embrittlement problem: Hydrogen production and containment Hydrogen-induced disbonding and embrittlement of steels used in petrochemical refining Assessing hydrogen embrittlement in automotive hydrogen tanks Gaseous hydrogen issues in nuclear waste disposal Hydrogen embrittlement in nuclear power systems Standards and codes to control hydrogen-induced cracking in pressure vessels and pipes for hydrogen gas storage and transport. Part 2 Characterisation and analysis of hydrogen embrittlement: Fracture and fatigue test methods in hydrogen gas Mechanics of modern test methods and quantitive-accelerated testing for hydrogen embrittlement Metallographic and Fractographic techniques for characterising and understanding hydrogen-assisted cracking of metals Fatigue crack initiation and fatigue life of metals exposed to hydrogen Effects of hydrogen on fatigue crack propagation in steels. Part 3 The hydrogen embrittlement of alloy classes: Hydrogen embrittlement of high-strength steels Hydrogen trapping phenomena in martensitic steels Hydrogen embrittlement of carbon steels and their welds Hydrogen embrittlement of high-strength low-alloy (HSLA) steels and their welds Hydrogen embrittlement of austenitic stainless steels and their welds Hydrogen embrittlement of nickel, cobalt and iron-based superalloys Hydrogen effects in titanium alloys Hydrogen embrittlement of aluminium and aluminium-based alloys Hydrogen-induced degradation of rubber seals.

Key concepts: Hydrogen embrittlement, Materials science, Hydrogen, Metallurgy, Embrittlement, Environmental stress fracture, Cracking, Alloy

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