The most widespread application of polymers in structural applications is their useas pipe material for e.g. gas distribution systems. Pipes have a design lifetime oftypically 50 years, which rules out real-time lifetime assessment methods. Here, anengineering approach is presented, whichmakes it possible to predict long-term ductilefailure of loaded glassy polymers based on short-term tests. The approach is basedupon the hypothesis that failure is governed by accumulation of plastic deformation upto a critical strain. A pressure-modified Eyring relation is employed to calculate theaccumulation of plastic strain for any simple loading geometry. It is demonstrated that the approach can produce accurate quantitative time-to-failure prediction...
Extruded polymer pipes are qualified using pressurized pipe tests. With these tests the long-term hy...
In this study, an in-house numerical model is employed to predict the time-to-failure of polycarbona...
\u3cp\u3eIn this study, an in-house numerical model is employed to predict the time-to-failure of po...
The most widespread application of polymers in structural applications is their useas pipe material ...
The most widespread application of polymers in structural applications is their use as pipe material...
The timescale at which ductile failure occurs in loaded glassy polymers can be successfullypredicted...
The timescale at which ductile failure occurs in loaded glassy polymers can be successfully predicte...
Time-to-failure of polymers, and the actual failure mode, are influenced by stress,temperature, proc...
Long-term failure is a major concern when polymers and polymer composites are employed in load-beari...
ABSTRACT: Time-to-failure of polymers, and the actual failure mode, are influenced by stress, temper...
This study focuses on the prediction of long-term failure of glassy polymers under static or cyclic ...
\u3cp\u3eThis study focuses on the prediction of long-term failure of glassy polymers under static o...
An analytical methodology is presented that allows the prediction of long-term plasticity-controlled...
The use of fibre-reinforced polymers in civil construction applications originated structures with a...
Extruded polymer pipes are qualified using pressurized pipe tests. With these tests the long-term hy...
In this study, an in-house numerical model is employed to predict the time-to-failure of polycarbona...
\u3cp\u3eIn this study, an in-house numerical model is employed to predict the time-to-failure of po...
The most widespread application of polymers in structural applications is their useas pipe material ...
The most widespread application of polymers in structural applications is their use as pipe material...
The timescale at which ductile failure occurs in loaded glassy polymers can be successfullypredicted...
The timescale at which ductile failure occurs in loaded glassy polymers can be successfully predicte...
Time-to-failure of polymers, and the actual failure mode, are influenced by stress,temperature, proc...
Long-term failure is a major concern when polymers and polymer composites are employed in load-beari...
ABSTRACT: Time-to-failure of polymers, and the actual failure mode, are influenced by stress, temper...
This study focuses on the prediction of long-term failure of glassy polymers under static or cyclic ...
\u3cp\u3eThis study focuses on the prediction of long-term failure of glassy polymers under static o...
An analytical methodology is presented that allows the prediction of long-term plasticity-controlled...
The use of fibre-reinforced polymers in civil construction applications originated structures with a...
Extruded polymer pipes are qualified using pressurized pipe tests. With these tests the long-term hy...
In this study, an in-house numerical model is employed to predict the time-to-failure of polycarbona...
\u3cp\u3eIn this study, an in-house numerical model is employed to predict the time-to-failure of po...