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Armour Protection and Affordable Protection for Futuristic Combat Vehicles

机译:未来作战车辆的装甲防护和价格合理的防护

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Protection creates a shift in the internal paradigm of the soldier and leads to multiplied psychological stamina for moving fearlessly in the battlefield which generates a major force-multiplier effect. Hence, the mechanized forces are still likely to be one of the dominant forces on the futuristic battlefield and would be the primary target of enemy forces capable of engaging from tank guns up to 4-5 km in a direct fire mode and up to 8-10 km in an indirect fire modes. Increased protection is possible only using advanced armour technology. Throughout the history of warfare, materials technologies have had a significant impact on land-combat force capabilities. Armour materials have progressed through improvements in metallic systems and development of advanced, lightweight (low areal density) composite materials. The advancements in ceramic systems have further improved the performance. Similarly, the advances in development of explosive reactive armour has generated efficient armour system against all contemporary high explosive antitank (HEAT) ammunition and missile threats for armoured vehicles. Yet, to achieve armour performance exceeding that of the current light combat vehicles and main battle tanks for new vehicular systems, weighing significantly less than the present combat vehicles, advances in new armour materials, systems, and survivability technologies are required. This paper describes various approaches and advancements in the metallic, ceramic, and composite armour materials and new dynamic armour systems that are essential to improve the survivability of armoured vehicles in the futurisitic multi-spectral battlefied scenarios.
机译:保护使士兵的内部范式发生转变,并导致在战场上无畏移动的心理耐力倍增,从而产生了主要的力量倍增效应。因此,机械化部队仍然可能是未来派战场上的主导力量之一,并且将成为敌方部队的主要目标,这些敌方部队能够在直接射击模式下以高达4-5 km的坦克炮和高达8在间接射击模式下10公里。只有使用先进的装甲技术,才能增强防护能力。在整个战争历史中,材料技术对陆战部队的能力产生了重大影响。通过改善金属系统和开发先进的轻质(低面密度)复合材料,铠装材料得到了进步。陶瓷系统的进步进一步提高了性能。同样,爆炸性反应装甲的发展进步已经产生了有效的装甲系统,可以对抗装甲车辆的所有当代高爆炸性反坦克(HEAT)弹药和导弹威胁。然而,要实现比目前用于新型车辆系统的轻型战斗车辆和主战坦克的装甲性能更轻,重量要明显小于当前作战车辆的装甲性能,就需要新的装甲材料,系统和生存能力技术的进步。本文介绍了金属,陶瓷和复合装甲材料以及新型动态装甲系统的各种方法和进展,这些对提高未来多光谱战斗环境中装甲车的生存能力至关重要。

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