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Integrated design of blast resistance panels and materials

机译:防爆板和材料的集成设计

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In modern armour warfare, crew survivability is of paramount importance. One way to ensure survivabil-ity is to protect soldiers from anti-tank mines with Blast Resistant Panels (BRPs). A BRP is a lightweight sandwich structure with a low-relative-density core in between two high-density panels. The aim of this project is to further enhance the performance of BRPs using lighter structures, in order to mitigate the kinetic energy induced by shock waves. We employ a new design approach, using integrated material and a product design which utilizes a distributed framework. This approach eliminates the inherent limitations of pre-designed materials used in conventional, material-selection-based design. In this context, the limitations of BRPs designed in the conventional approach are examined and compared with the new BRP design. An artificial neural network-based material model is introduced to demonstrate the practicality and feasibility of this new design paradigm. The BRP design is then validated using FEA. Design results of the new BRP are compared to those using the conventional material-selection-based design.
机译:在现代装甲战中,机组人员的生存能力至关重要。确保生存能力的一种方法是使用防爆炸面板(BRP)保护士兵免受反坦克地雷的伤害。 BRP是一种轻质的三明治结构,在两个高密度面板之间具有低相对密度的内芯。该项目的目的是使用更轻的结构进一步增强BRP的性能,以减轻冲击波引起的动能。我们采用一种新的设计方法,即使用集成材料和采用分布式框架的产品设计。这种方法消除了传统的基于材料选择的设计中使用的预先设计材料的固有局限性。在这种情况下,将检查常规方法中设计的BRP的局限性,并将其与新的BRP设计进行比较。引入了基于人工神经网络的材料模型,以证明该新设计范例的实用性和可行性。然后使用FEA验证BRP设计。将新BRP的设计结果与使用常规基于材料选择的设计的结果进行比较。

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