Blast Protection Techniques: A Review

Author(s):  
Muhammed Zain Kangda
Keyword(s):  
2018 ◽  
Vol 34 (3) ◽  
pp. 224-232 ◽  
Author(s):  
Seth C. Britch ◽  
Kenneth J. Linthicum ◽  
Robert L. Aldridge ◽  
Todd W. Walker ◽  
Mattie J. E. Rush ◽  
...  

ABSTRACT United States military troops in the field are exposed to the environment and are thus at high risk for transmission of arboviruses, and degradation of mission from continual harassment from insects. Passive vector control, such as application of residual insecticides to US military materials common in the field such as tents and camouflage netting, has been shown to be effective and can contribute to a successful integrated vector management (IVM) plan in the field to reduce this risk. However, other common US military field materials have not been evaluated with residual pesticides. In this study we conducted the first known investigation of the efficacy and longevity of a residual pesticide containing λ-cyhalothrin applied to HESCO® blast protection wall geotextile. We exposed treated material to a temperate Florida environment and found that this treatment can be effective against sand flies, filth-breeding flies, and mosquitoes for at least 6 wk. This study provides evidence that residual treatment of this US military material may be leveraged as an IVM component to enhance the US Department of Defense pest management system.


2018 ◽  
Vol 1 (2) ◽  
pp. 93-96 ◽  
Author(s):  
Tünde Kovács ◽  
Zoltán Nyikes ◽  
Lucia Figuli

Abstract In the current century, building protection is very important in the face of terrorist attacks. The old buildings in Europe are not sufficiently resilient to the loads produced by blasts. We still do not fully understand the effects of different explosives on buildings and human bodies. [1–3] Computing blast loads are different from that of traditional loads and the material selection rules for this type of impact load are diverse. Historical and old buildings cannot be protected simply by new walls and fences. New ways need to be found to improve a building’s resistance to the effects of a blast. It requires sufficiently thin yet strong retrofitted materials in order to reinforce a building’s walls [4–6].


Author(s):  
Hisham Kamel

Abstract This review paper covers the subject of vehicle design for protection against the blast of improvised explosive devices. It summarizes the most recent techniques in the design of vehicle structures for blast protection. This review pinpoints the challenges in designing a vehicle for blast protection and maintaining acceptable mobility at the same time. In addition, this paper reveals and summarizes key design principles based on the critical assessment of the published literature. This review covers the state of the art design methods for each individual part of vehicle structure. It also identifies the role of human protective gear and its effectiveness in mitigating blast related injuries. This review suggests future trends in developing innovative protective structures that are inspired by nature or manufactured. The aim of this review is to guide and advance the research of vehicle design for blast protection.


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