The use of combat helmets has greatly reduced penetrating injuries and saved lives of many soldiers. However, behind helmet blunt trauma (BHBT) has emerged as a serious injury type experienced by soldiers in battlefields. BHBT results from nonpenetrating ballistic impacts and is often associated with helmet back face deformation (BFD). In the current study, a finite element-based computational model is developed for simulating the ballistic performance of the Advanced Combat Helmet (ACH), which is validated against the experimental data obtained at the Army Research Laboratory. Both the maximum value and time history of the BFD are considered, unlike existing studies focusing on the maximum BFD only. The simulation results show that the max...
A large number of brain injuries and casualties can be caused by the impact of bullets on the bullet...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...
The use of combat helmets has greatly reduced penetrating injuries and saved lives of many soldiers....
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
Thesis: S.M. in Aerospace Engineering, Massachusetts Institute of Technology, Department of Aeronaut...
Blast-induced traumatic brain injury (bTBI) has emerged as a signature injury in combat casualty c...
The mechanism of Behind Helmet Blunt Trauma (BHBT) caused by a high-speed bullet is difficult to und...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
[EN] In this paper, the design methodology of composite ballistic helmets has been enhanced consider...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
A large number of brain injuries and casualties can be caused by the impact of bullets on the bullet...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...
The use of combat helmets has greatly reduced penetrating injuries and saved lives of many soldiers....
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
Thesis: S.M. in Aerospace Engineering, Massachusetts Institute of Technology, Department of Aeronaut...
Blast-induced traumatic brain injury (bTBI) has emerged as a signature injury in combat casualty c...
The mechanism of Behind Helmet Blunt Trauma (BHBT) caused by a high-speed bullet is difficult to und...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
[EN] In this paper, the design methodology of composite ballistic helmets has been enhanced consider...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
Modern designing process of combat helmets requires both numerical modeling and experimental validat...
A large number of brain injuries and casualties can be caused by the impact of bullets on the bullet...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...
This work focuses on the finite element analysis (FEA) of a new combat helmet design developed by th...