This letter introduces a method that uses electrical resistance to monitor crack growth during interlaminar fracture testing of woven SiC fiber-reinforced SiC matrix composites at room temperature without visual observation. The estimated crack length is in excellent agreement with the measured length after subtracting a constant value of resistance related to the initial stage of crack development. This non-visual monitoring method holds great promise for in situ measurement of crack growth during high-temperature testing of ceramic matrix composites
The introduction of Ceramic Matrix Composites parts in civil aeronautics requires a thorough underst...
Sophisticated mechanical characterisation is vital in support of a fundamental understanding of defo...
An in situ experimental technique is described that allows high resolution, high sensitivity determi...
International audienceThe introduction of Ceramic Matrix Composites parts in civil aeronautical engi...
The implementation of Ceramic Matrix Composites necessitates the understanding of stress-dependent d...
The electric resistance of woven SiC fiber reinforced SiC matrix composites were measured under tens...
Silicon carbide (SiC) fiber-reinforced SiC matrix composites are inherently multifunctional material...
Ceramic matrix composites are suitable for high temperature structural applications such as turbine ...
In order to further develop and understand the data provided by electrical resistance measurements, ...
Damage development in SiC-based composites, due to the formation of various sources such as in-plane...
Ceramic matrix composites are processed at high temperatures and experience significant residual the...
Ceramic matrix composites (CMCs) are soon to be used in hot section components of commercial jet eng...
The complex structural architecture and inherent processing artefacts within ceramic matrix composit...
SiC/SiC ceramic matrix composites (CMCs) under creep-rupture loading accumulate damage by means of l...
A coupled electro-mechanical model was developed to predict the mechanical behavior of woven SiC/SiC...
The introduction of Ceramic Matrix Composites parts in civil aeronautics requires a thorough underst...
Sophisticated mechanical characterisation is vital in support of a fundamental understanding of defo...
An in situ experimental technique is described that allows high resolution, high sensitivity determi...
International audienceThe introduction of Ceramic Matrix Composites parts in civil aeronautical engi...
The implementation of Ceramic Matrix Composites necessitates the understanding of stress-dependent d...
The electric resistance of woven SiC fiber reinforced SiC matrix composites were measured under tens...
Silicon carbide (SiC) fiber-reinforced SiC matrix composites are inherently multifunctional material...
Ceramic matrix composites are suitable for high temperature structural applications such as turbine ...
In order to further develop and understand the data provided by electrical resistance measurements, ...
Damage development in SiC-based composites, due to the formation of various sources such as in-plane...
Ceramic matrix composites are processed at high temperatures and experience significant residual the...
Ceramic matrix composites (CMCs) are soon to be used in hot section components of commercial jet eng...
The complex structural architecture and inherent processing artefacts within ceramic matrix composit...
SiC/SiC ceramic matrix composites (CMCs) under creep-rupture loading accumulate damage by means of l...
A coupled electro-mechanical model was developed to predict the mechanical behavior of woven SiC/SiC...
The introduction of Ceramic Matrix Composites parts in civil aeronautics requires a thorough underst...
Sophisticated mechanical characterisation is vital in support of a fundamental understanding of defo...
An in situ experimental technique is described that allows high resolution, high sensitivity determi...