Finite element simulations are carried out to examine the mechanical behavior of the metallic hollow sphere (MHS) material during their large plastic deformation and to estimate the energy absorbing capacity of these materials under uniaxial compression. A simplified model is proposed from experimental observations to describe the connection between the neighboring spheres, which greatly improves the computation efficiency. The effects of the governing physical and geometrical parameters are evaluated; whilst a special attention is paid to the plateau stress, which is directly related to the energy absorbing capacity. Finally, the empirical functions of the relative material density are proposed for the elastic modulus, yield strength and p...
ABSTRACT: Porous composite materials constitute an innovative group of lightweight materials which c...
Hollow sphere structures with perforations (PHSSs) in three different arrangements (simple cubic (SC...
Hollow sphere structures are a new group of advanced lightweight materials for multifunctional appli...
Experimental, numerical and theoretical analyses are carried out to obtain the relationship between ...
Different from conventional metal foams, the mixed open/closed cell characteristic of the sintered m...
The stress-strain characteristics of metal hollow sphere (MHS) material are obtained in relatively l...
One way to obtain a cellular metal with a uniform microstructure is to employ hollow metallic sphere...
This chapter addresses the elasto-plastic properties of novel metallic hollow sphere structures (MHS...
The chapter focuses on the dynamic behaviour of metallic hollow sphere structures that constitute an...
Different from conventional metal foams, sintered metallic hollow sphere (MHS) material contains a c...
The stress-strain relationship for uniaxial compression of a metal hollow sphere material in large s...
Metallic Hollow Sphere Structures (MHSS) is a member of cellular metal family which have air cavitie...
Recent interest in lightweight metallic hollow sphere foams for aerospace applications requires a be...
ABSTRACT: Porous composite materials constitute an innovative group of lightweight materials which c...
This paper presents experimental and numerical analysis of sintered metallic hollow sphere structure...
ABSTRACT: Porous composite materials constitute an innovative group of lightweight materials which c...
Hollow sphere structures with perforations (PHSSs) in three different arrangements (simple cubic (SC...
Hollow sphere structures are a new group of advanced lightweight materials for multifunctional appli...
Experimental, numerical and theoretical analyses are carried out to obtain the relationship between ...
Different from conventional metal foams, the mixed open/closed cell characteristic of the sintered m...
The stress-strain characteristics of metal hollow sphere (MHS) material are obtained in relatively l...
One way to obtain a cellular metal with a uniform microstructure is to employ hollow metallic sphere...
This chapter addresses the elasto-plastic properties of novel metallic hollow sphere structures (MHS...
The chapter focuses on the dynamic behaviour of metallic hollow sphere structures that constitute an...
Different from conventional metal foams, sintered metallic hollow sphere (MHS) material contains a c...
The stress-strain relationship for uniaxial compression of a metal hollow sphere material in large s...
Metallic Hollow Sphere Structures (MHSS) is a member of cellular metal family which have air cavitie...
Recent interest in lightweight metallic hollow sphere foams for aerospace applications requires a be...
ABSTRACT: Porous composite materials constitute an innovative group of lightweight materials which c...
This paper presents experimental and numerical analysis of sintered metallic hollow sphere structure...
ABSTRACT: Porous composite materials constitute an innovative group of lightweight materials which c...
Hollow sphere structures with perforations (PHSSs) in three different arrangements (simple cubic (SC...
Hollow sphere structures are a new group of advanced lightweight materials for multifunctional appli...