This paper focuses on helmet design for head protection under blast threats. It is presented a numerical investigation of the head response accruing to blast loads on helmet protective systems. Various combinations of the helmet, visor and mandible guard were numerically analyzed for a given mass of TNT at a distance to the target representing an anti-vehicle buried mine threat. Limited published articles on the subject are available in the scientific literature. In this paper, a 3D head helmet numerical model for blast analyses is developed in the finite element code ABAQUS/Explicit. The results showed that individual protective systems are not effective enough to mitigate the damage caused by blast loading. The complete protective equipme...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2010.Ca...
Blast induced neurotrauma (BINT) has been designated as the signature injury to warfighters in the...
The current study aims to investigate the effectiveness of two different designs of helmet interior ...
This paper focuses on helmet design for head protection under blast threats. It is presented a numer...
Brain injury resulting from improved explosives devices (IEDs) is identified as a challenge for forc...
Blast-induced traumatic brain injury (bTBI) has emerged as a signature injury in combat casualty c...
Blast-induced traumatic brain injury has emerged as a signature injury in combat casualty care. Pres...
I) is designing/developing more effective head protection systems. In the present work, the blast-wa...
Blast traumatic brain injury (BTBI) is the major type of injury, existing helmets are mainly designe...
The blast wave that is generated from the detonation of an anti-personnel mine can induce significan...
Introduction Prevention against head wounds from explosively propelled fragments is currently the Ma...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
To combat the problem of traumatic brain injury (TBI), a signature injury of the current military co...
Blast-induced traumatic brain injury is the most prevalent military injury in Iraq and Afghanistan, ...
In current US Military operations, warfighters are frequently subjected to blast events, which can l...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2010.Ca...
Blast induced neurotrauma (BINT) has been designated as the signature injury to warfighters in the...
The current study aims to investigate the effectiveness of two different designs of helmet interior ...
This paper focuses on helmet design for head protection under blast threats. It is presented a numer...
Brain injury resulting from improved explosives devices (IEDs) is identified as a challenge for forc...
Blast-induced traumatic brain injury (bTBI) has emerged as a signature injury in combat casualty c...
Blast-induced traumatic brain injury has emerged as a signature injury in combat casualty care. Pres...
I) is designing/developing more effective head protection systems. In the present work, the blast-wa...
Blast traumatic brain injury (BTBI) is the major type of injury, existing helmets are mainly designe...
The blast wave that is generated from the detonation of an anti-personnel mine can induce significan...
Introduction Prevention against head wounds from explosively propelled fragments is currently the Ma...
In this paper, the design methodology of composite ballistic helmets has been enhanced considering b...
To combat the problem of traumatic brain injury (TBI), a signature injury of the current military co...
Blast-induced traumatic brain injury is the most prevalent military injury in Iraq and Afghanistan, ...
In current US Military operations, warfighters are frequently subjected to blast events, which can l...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2010.Ca...
Blast induced neurotrauma (BINT) has been designated as the signature injury to warfighters in the...
The current study aims to investigate the effectiveness of two different designs of helmet interior ...