Hiduron

Marine Alloys

TP037 – The Development of Very High Strength Copper Nickel alloys with Resistance to Hydrogen Embrittlement and Stress Corrosion Cracking

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Fastener

TP039 – Development, Properties and Performance Testing of Very High Strength Cupronickel with Resistance to Hydrogen Embrittlement

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TP040 – Optimisation of Strength & Marine Corrosion Resistance for Naval Architecture and Offshore Oil & Gas

TP040 – Optimisation of Strength & Marine Corrosion Resistance for Naval Architecture and Offshore Oil & Gas

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TP041 – Identification of Orthorhombic Phase in a High-strength Cupronickel

TP041 – Identification of Orthorhombic Phase in a High-strength Cupronickel

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TP042 – Strengthening of a Cupronickel Alloy by an Ordered L1(2) Phase Intermetallics

TP042 – Strengthening of a Cupronickel Alloy by an Ordered L1(2) Phase Intermetallics

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Alloys for Oil and Gas

TP033 – The Development of an Ultra-high Strength Cupronickel Alloy for Offshore Use

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Fastener

TP034 – The Hydrogen Interaction and Embrittlement Characteristics of High Strength Fastener Alloys

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TP035 – Hydrogen Embrittlement Resistance of Hiduron 220 Exposed to Gaseous Hydrogen Environment on Fatigue Resistance

TP035 – Hydrogen Embrittlement Resistance of Hiduron 220 Exposed to Gaseous Hydrogen Environment on Fatigue Resistance

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Oil & Gas

TP036 – Corrosion and Galvanic Compatibility Studies of a High-Strength Copper-Nickel Alloy

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TP019 – Electrochemical and AFM Studies of a Copper Nickel Alloy in Sulphide-Contaminated Sodium Chloride Solution

TP019 – Electrochemical and AFM Studies of a Copper Nickel Alloy in Sulphide-Contaminated Sodium Chloride Solution

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Langley Alloys Markets

TP027 – Development of Very High Strength Copper Alloys with Resistance to Hydrogen Embrittlement and Stress Corrosion Cracking

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TP012 -Hydrogen Embrittlement Resistance of Ultra-High Strength Cupronickel Alloy – Effects of Exposure to Gaseous Hydrogen Environment on Fatigue Resistance

TP012 -Hydrogen Embrittlement Resistance of Ultra-High Strength Cupronickel Alloy – Effects of Exposure to Gaseous Hydrogen Environment on Fatigue Resistance

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