316L stainless steel is a promising material candidate for a hydrogen containment system. However, when in contact with hydrogen, the material could be degraded by hydrogen embrittlement (HE). Moreover, the mechanism and the effect of HE on 316L stainless steel have not been clearly studied. This study investigated the effect of hydrogen exposure on the impact toughness of 316L stainless steel to understand the relation between hydrogen charging time and fracture toughness at ambient and cryogenic temperatures. In this study, 316L stainless steel specimens were exposed to hydrogen in different durations. Charpy V-notch (CVN) impact tests were conducted at ambient and low temperatures to study the effect of HE on the impact properties and fr...
The hydrogen embrittlement (HE) behaviors of a CoCrFeMnNi high-entropy alloy (HEA), 304 stainless st...
Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability...
Role of microstructure in susceptibility of 18Cr ferritic stainless steel to hydrogen embrittlement ...
The effects of hydrogen on the fracture-toughness properties of Type 316L stainless steel from 175 K...
ABSTRACT The effect of hydrogen on the fracture toughness properties of Types 304L, 316L and 21-6-9 ...
The imminent emergence of the hydrogen fuel industry has resulted in an urgent mandate for very spec...
Hydrogen changes the mechanical properties of a wide range of materials, especially metallic surface...
In-situ tensile testing of electrochemically hydrogen charged 304L stainless steel at different cros...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
The environmental effect on the mechanical properties of steels, specifically hydrogen embrittlement...
The effect of hydrogen on the fracture toughness properties of Types 304L, 316L and 21-6-9 forged st...
Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materi...
Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability...
In this work, the effects of electrochemical hydrogen charging of 316H grade austenitic stainless st...
The hydrogen embrittlement (HE) behaviors of a CoCrFeMnNi high-entropy alloy (HEA), 304 stainless st...
Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability...
Role of microstructure in susceptibility of 18Cr ferritic stainless steel to hydrogen embrittlement ...
The effects of hydrogen on the fracture-toughness properties of Type 316L stainless steel from 175 K...
ABSTRACT The effect of hydrogen on the fracture toughness properties of Types 304L, 316L and 21-6-9 ...
The imminent emergence of the hydrogen fuel industry has resulted in an urgent mandate for very spec...
Hydrogen changes the mechanical properties of a wide range of materials, especially metallic surface...
In-situ tensile testing of electrochemically hydrogen charged 304L stainless steel at different cros...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
The environmental effect on the mechanical properties of steels, specifically hydrogen embrittlement...
The effect of hydrogen on the fracture toughness properties of Types 304L, 316L and 21-6-9 forged st...
Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materi...
Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability...
In this work, the effects of electrochemical hydrogen charging of 316H grade austenitic stainless st...
The hydrogen embrittlement (HE) behaviors of a CoCrFeMnNi high-entropy alloy (HEA), 304 stainless st...
Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability...
Role of microstructure in susceptibility of 18Cr ferritic stainless steel to hydrogen embrittlement ...