A Probabilistic Model of Optimising Perforated High-Strength Steel Sheet Assemblies for Impact-Resistant Armour Systems

This paper presents a concept for optimising an assembly of perforated metal sheets with a probabilistic theory, and the results of testing perforated bainite steel sheets with a nanocrystalline structure. The work presented herein was completed with an assumption of applying the perforated sheets i...

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Published inProblemy Mechatroniki Vol. 8; no. 1; pp. 71 - 88
Main Authors Wojciech BURIAN, Jarosław MARCISZ, Lech STARCZEWSKI, Małgorzata WNUK
Format Journal Article
LanguageEnglish
Published Military University of Technology, Warsaw, Poland 31.03.2017
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Abstract This paper presents a concept for optimising an assembly of perforated metal sheets with a probabilistic theory, and the results of testing perforated bainite steel sheets with a nanocrystalline structure. The work presented herein was completed with an assumption of applying the perforated sheets in the design of anti-armour-piercing and anti-HEAT armour systems. The theoretical analysis and experimental research were performed for a 7.62x54 mm R API B-32 projectile and a PG-7 rocket-propelled grenade.
AbstractList This paper presents a concept for optimising an assembly of perforated metal sheets with a probabilistic theory, and the results of testing perforated bainite steel sheets with a nanocrystalline structure. The work presented herein was completed with an assumption of applying the perforated sheets in the design of anti-armour-piercing and anti-HEAT armour systems. The theoretical analysis and experimental research were performed for a 7.62x54 mm R API B-32 projectile and a PG-7 rocket-propelled grenade.
Author Lech STARCZEWSKI
Jarosław MARCISZ
Małgorzata WNUK
Wojciech BURIAN
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  organization: Instytut Metali Nieżelaznych, Gliwice, Polska
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  fullname: Lech STARCZEWSKI
  organization: Wojskowy Instytut Techniki Pancernej i Samochodowej, Sulejówek, Polska
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  fullname: Małgorzata WNUK
  organization: MIKANIT, Warszawa, Polska
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Snippet This paper presents a concept for optimising an assembly of perforated metal sheets with a probabilistic theory, and the results of testing perforated bainite...
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StartPage 71
SubjectTerms impact-resistant shields
mechanics
nanostructural bainite steel
perforated sheets
Title A Probabilistic Model of Optimising Perforated High-Strength Steel Sheet Assemblies for Impact-Resistant Armour Systems
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