An equation was developed for calculating the time to failure by slow crack growth (SCG) failure in any polyethylene structure. The equation requires the following experimental inputs: (1) the resistance to SCG as measured by the PENT test (ASTM F1473), (2) the stress intensity of the defect from which failure originates, and (3) the temperature. A simple experiment for determining the stress intensity is presented. The equation was applied to SCG failures that are associated with the inherent random defects that occur in the wall of all pipes. The size of the inherent random defect that exists in commercial gas pipes was found to be 0.14 mm
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
Stress cracking (SC) is recognized as one of the major concerns for high density polyethylene (HDPE)...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
An equation was developed for calculating the time to failure by slow crack growth (SCG) failure in ...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
Since the introduction of polyethylene (PE) pipe for use in natural gas distribution about twenty ye...
Since the introduction of polyethylene (PE) pipe for use in natural gas distribution about twenty ye...
Being able to accurately predict the lifetime of polyolefins is very important in industry for water...
Resistance to slow crack growth is an important material property of polyethylene especially for pip...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
Polyethylene (PE) pipes generally exhibit a limited lifetime, which is considerably shorter than the...
University of Minnesota M.S. thesis. September 2012. Major: Mechanical Engineering. Advisors:Dr. Sus...
A new methodology of polymer pipe lifetime estimation taking into account residual stresses is descr...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
Stress cracking (SC) is recognized as one of the major concerns for high density polyethylene (HDPE)...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
An equation was developed for calculating the time to failure by slow crack growth (SCG) failure in ...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
Since the introduction of polyethylene (PE) pipe for use in natural gas distribution about twenty ye...
Since the introduction of polyethylene (PE) pipe for use in natural gas distribution about twenty ye...
Being able to accurately predict the lifetime of polyolefins is very important in industry for water...
Resistance to slow crack growth is an important material property of polyethylene especially for pip...
A general method for predicting the life time of a polyethylene structure that fails by slow crack g...
Polyethylene (PE) pipes generally exhibit a limited lifetime, which is considerably shorter than the...
University of Minnesota M.S. thesis. September 2012. Major: Mechanical Engineering. Advisors:Dr. Sus...
A new methodology of polymer pipe lifetime estimation taking into account residual stresses is descr...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...
Stress cracking (SC) is recognized as one of the major concerns for high density polyethylene (HDPE)...
Lifetime prediction of plastic pipelines is a critical aspect of any long term asset management prog...