Based on the classical Alexander solution for the axial collapse of bare metal tubes, a theoretical model is presented to predict the mean crushing force of arbitrarily fibre-reinforced metal tubes with a ring collapse mode. The derived mean crushing force and length of the local folding wave are more reasonable and are in better agreement with the experiments than previously obtained. The effect of wrapping direction of the reinforcing fibres is studied. This model for predicting the static mean crushing force can be extended for the dynamic mean crushing force of fibre-reinforced metal tubes under axial impact load
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
A numerical study of the crushing of circular aluminium tubes with and without aluminium foam filler...
Nowadays, aluminium tubes have been used widely as a controlled absorption of kinetic crash energy. ...
This paper presents further investigations into the axisymmetric progressive crushing behaviour of m...
This paper presents further investigations into the axisymmetric progressive crushing behaviour of m...
The progressive collapse of tubular structures under axial loading is a challenging problem in mecha...
Abstract: By changing the end constraints, the behaviour of mild steel and aluminium alloy tubes of ...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
In this paper, crushing behaviors of tube with shallow and deep corrugation are experimentally and t...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
© 2019 Trans Tech Publications Ltd, Switzerland. Carbon fibre composite tubes have high strengt...
A numerical study of the crushing of circular aluminium tubes with and without aluminium foam filler...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
A numerical study of the crushing of circular aluminium tubes with and without aluminium foam filler...
Nowadays, aluminium tubes have been used widely as a controlled absorption of kinetic crash energy. ...
This paper presents further investigations into the axisymmetric progressive crushing behaviour of m...
This paper presents further investigations into the axisymmetric progressive crushing behaviour of m...
The progressive collapse of tubular structures under axial loading is a challenging problem in mecha...
Abstract: By changing the end constraints, the behaviour of mild steel and aluminium alloy tubes of ...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
In this paper, crushing behaviors of tube with shallow and deep corrugation are experimentally and t...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
© 2019 Trans Tech Publications Ltd, Switzerland. Carbon fibre composite tubes have high strengt...
A numerical study of the crushing of circular aluminium tubes with and without aluminium foam filler...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
In the present paper, the mechanical behavior of large deformation of a regular equilateral triangul...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
This paper presents a further investigation into the energy absorbing behaviour of axially splitting...
A numerical study of the crushing of circular aluminium tubes with and without aluminium foam filler...
Nowadays, aluminium tubes have been used widely as a controlled absorption of kinetic crash energy. ...