Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in literature. Many of them showed healing upon contact across the crack interface. Different parameters such as contact time, temperature, pressure or chemical activity determine the degree of healing obtained. In this work, a numerical simulation of the healing efficiency as a function of the environment is proposed based on the use of cohesive elements in a finite element model. Cohesive elements are commonly used to model interlaminar fracture mechanisms in composite materials. In this work, they are adopted to simulate both failure and subsequent healing by a specific SH elastomeric system. The SH elastomeric system is initially characterised by ...
This report is the result of a pilot-study towards the numerical simulation of self-healing material...
The breakage of capsules upon crack propagation is crucial for achieving crack healing in encapsulat...
A numerical model to study the fatigue crack retardation in a self-healing material (White et al., 2...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
A cohesive zone-based constitutive model, originally developed to model fracture, is extended to inc...
Research in the field of self-healing materials gained significant attention in the last decade owin...
Self-healing materials receive a lot of attention nowadays. These materials are produced introducing...
The subject of this paper is the mathematical modelling of the crack self-healing process. For self-...
The backbone of a numerical technique for the simulation of self-healing mechanisms is the cohesive ...
In this work the self-healing behaviour of a supramolecular elastomer showing healing at room temper...
A number of self healing mechanisms for composite materials have been presented in the previous chap...
We present a modeling methodology to assess and improve the encapsulation-based self-healing strateg...
This report is the result of a pilot-study towards the numerical simulation of self-healing material...
The breakage of capsules upon crack propagation is crucial for achieving crack healing in encapsulat...
A numerical model to study the fatigue crack retardation in a self-healing material (White et al., 2...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
Several polymeric systems with intrinsic Self-Healing (SH) capabilities have been reported in litera...
A cohesive zone-based constitutive model, originally developed to model fracture, is extended to inc...
Research in the field of self-healing materials gained significant attention in the last decade owin...
Self-healing materials receive a lot of attention nowadays. These materials are produced introducing...
The subject of this paper is the mathematical modelling of the crack self-healing process. For self-...
The backbone of a numerical technique for the simulation of self-healing mechanisms is the cohesive ...
In this work the self-healing behaviour of a supramolecular elastomer showing healing at room temper...
A number of self healing mechanisms for composite materials have been presented in the previous chap...
We present a modeling methodology to assess and improve the encapsulation-based self-healing strateg...
This report is the result of a pilot-study towards the numerical simulation of self-healing material...
The breakage of capsules upon crack propagation is crucial for achieving crack healing in encapsulat...
A numerical model to study the fatigue crack retardation in a self-healing material (White et al., 2...