When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-static or in a high stress cyclic tension-tension regime, many fiber breaks may occur in random positions already during the load increase in the first cycle. This is because fiber strain to failure in UD composites is lower than the polymer matrix strain to failure.In cyclic loading with constant amplitude we usually assume that fibers do not experience fatigue. Therefore the next step in damage evolution with increasing number of cycles may be development of interface cracks (debonds) growing along the fiber/matrix interface.Fracture mechanics concepts are applied and Mode II strain energy release rate GII related to debond crack growth alo...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
The aim of this paper is to analyse fibre/matrix debond crack growth during high stress cyclic tens...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
When a unidirectional (UD) fiber reinforced polymer composite is loaded in fiber direction in quasi-...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
Predicting micro-damage initiation and evolution is one of the key challenges for safe design of fib...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
The aim of this paper is to analyse fibre/matrix debond crack growth during high stress cyclic tens...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) co...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...