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Blast response of Light Armoured Vehicles (LAVs) with flat and V-hull floor

机译:平底和V型船体底板的轻型装甲车(LAV)的爆炸响应

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Light armoured vehicles (LAVs) can be exposed to mine explosions despite the fact that they are generally not designed to withstand such loadings. The hull floor of LAVs is usually made of a plate only a few millimetres thin and is therefore a weak vehicle point in the case of blast loading. Therefore, blast resistance and the possibility of blast loads redirection are very important characteristics of LAVs in providing adequate protection. It is generally accepted that LAVs with shaped floors are more resistant to mine explosions, yet there is a lack of strong evidence of their blast protection mechanisms. This paper presents the results comparisons for VALUK 6 x 6 LAV with a flat hull floor and its modified V-hull floor version with a 90 degrees angle in accordance with the 2b protection level of the NATO AEP-55 standard. For that purpose, combined Smooth Particle Hydrodynamics - Finite Element (SPH-FE) models were used. The results have shown that the V-hull floor offers a significantly improved vehicle response to blast loads. Blast waves are effectively dispersed and the local response of the vehicle is especially improved, which is very important when designing safe LAVs, as required by standard safety regulations.
机译:轻型装甲车(LAV)通常不会设计为承受这种载荷,但仍可能遭受地雷爆炸。 LAV的船体底板通常由仅几毫米厚的板制成,因此,在爆炸载荷的情况下,它是车辆的薄弱点。因此,抗爆炸性和爆炸载荷重定向的可能性是LAV在提供足够保护方面的重要特性。公认的是,地板成型的轻型装甲车更能抵抗地雷爆炸,但缺乏强有力的爆炸防护机制证据。本文介绍了具有平坦船体底板的VALUK 6 x 6 LAV和符合NATO AEP-55标准的2b保护等级,具有90度角的改进V型船壳底板版本的结果比较。为此,使用了组合的“光滑粒子流体动力学-有限元”(SPH-FE)模型。结果表明,V型船体底板显着改善了车辆对爆炸载荷的响应。爆炸波被有效地分散,并且车辆的局部响应得到了特别的改善,这在按照标准安全法规的要求设计安全的LAV时非常重要。

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