Corrosion or manufacture defects can cause internal cracks in steel pipes. For ductile materials, the crack front can yield before the stress intensity r eaches its fracture toughness. The yielding of the crack front could ease the stress concentration at the crack front. Therefore, to predict the failure of cracked steel pipes using linear elastic fracture m echanics it is necessary to quantify the part of fracture toughness that withstands the elastic stre ss field, namely, elastic fracture toughness. This paper intends to propose an analytical model of the elastic fracture toughness for steel pipes with internal surface cracks
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
For the transport of gases and liquids, such as CO2, in steel pipelines to be safe, rupture in the p...
The fracture toughness of two acicular ferrite, HSLA pipeline steels was investigated utilising the ...
Corrosion or manufacture defects can cause internal cracks in steel pipes. For ductile materials, th...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Surface cracks have long been recognized as a major cause for potential failures of metal pipes. In ...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Surface cracks have long been recognized as a major cause for potential failures of metal pipes. In ...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
The rupture phenomenon of a mechanical structure requires critical consideration, because of its saf...
Linear elastic fracture mechanics has been widely used for fracture analysis of cracked metals. For ...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
For the transport of gases and liquids, such as CO2, in steel pipelines to be safe, rupture in the p...
The fracture toughness of two acicular ferrite, HSLA pipeline steels was investigated utilising the ...
Corrosion or manufacture defects can cause internal cracks in steel pipes. For ductile materials, th...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Surface cracks have long been recognized as a major cause for potential failures of metal pipes. In ...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
Surface cracks have long been recognized as a major cause for potential failures of metal pipes. In ...
Linear elastic fracture mechanics has been widely employed for fracture analysis of cracked pipes. F...
The rupture phenomenon of a mechanical structure requires critical consideration, because of its saf...
Linear elastic fracture mechanics has been widely used for fracture analysis of cracked metals. For ...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
The fracture toughness of pipeline steel grade X65 was investigated utilizing linear elastic fractur...
For the transport of gases and liquids, such as CO2, in steel pipelines to be safe, rupture in the p...
The fracture toughness of two acicular ferrite, HSLA pipeline steels was investigated utilising the ...