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1)  ceramic composite armor
陶瓷复合装甲
1.
Due to the great differences in the mechanical characteristics of the materials that compose ceramic composite armor,it is very difficult to machine.
因组成材料的性能相差迥异,陶瓷复合装甲的加工十分困难。
2.
The principles implied in the process of EFP(explosively formed projectile) impacting the plate covered explosive and the ceramic composite armor have provided the evidence for calculating the residual velocity of EFP(explosive formed projectile) impacting a new integrated armor,and a calculation model has been induced.
根据平板装药和陶瓷复合装甲与爆炸成型弹丸(EFP)相互作用的原理,提出了新型集成装甲与EFP作用的计算模型;据此模型进行了EFP残余速度计算,证明了在相同面密度的新型集成装甲和陶瓷复合装甲防护下,EFP的残余速度有明显差异;根据该计算模型可进行集成装甲的优化和EFP的反装甲目标设计。
3.
The aim of this study was to determine contributions of different interfaces between ceramic and back plate to balli-stic performance of ceramic composite armor impacted by 12.
7mm穿燃弹对几种不同背板的陶瓷复合装甲进行了实弹射击试验,以研究复合装甲中陶瓷与背板组成的界面对其抗枪弹性能的影响。
2)  ceramic/composite amour
陶瓷/金属梯度复合装甲
3)  ceramic-metal composite armor
陶瓷-金属复合装甲
1.
Traditional ceramic-metal composite armor is simple double-layer system composed of ceramic and metal,in which ceramic and metal act as correspondingly impact face layer and energy-absorbing backup layer.
传统的陶瓷-金属复合装甲为简单的双层结构,其中陶瓷作为迎弹面板,金属作为能量吸收背板,这种结构的明显不足是其抗多发弹能力差。
2.
To further improve the hit capability of traditional ceramic-metal composite armor,an effective method of constituting metal-encapsulating ceramic composite armor by encapsulating the ceramic inside metal was proposed.
为进一步提高传统的陶瓷-金属复合装甲的抗弹性能,将陶瓷用金属封装起来组成金属封装陶瓷复合装甲,对传统的层叠结构和金属封装陶瓷的抗侵彻性能进行了数值仿真和理论分析。
4)  ceramic/Kevlar composite armor
陶瓷/芳纶复合装甲
1.
The ceramic/Kevlar composite armor is better than the homogeneous steel target of the same surface-density in ballistic performance.
陶瓷/芳纶复合装甲的抗侵彻能力要优于相同面密度的均质钢装甲。
5)  armor ceramic
装甲陶瓷
1.
DOP experimental study on EFP penetrating Al_(2)O_(3) armor ceramic;
爆炸成型弹丸对Al_2O_3装甲陶瓷材料的侵彻实验研究
6)  ceramic armor
陶瓷装甲
1.
This paper discusses effects of phenolic resin as sintering additives and binder of spray granulation on pressureless sintering of SiC ceramic armor.
探讨酚醛树脂作为喷雾造粒的粘结剂和烧结的添加剂对制备无压烧结SiC陶瓷装甲的影响。
补充资料:复合装甲
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性质:又称复合装甲。具有防弹功能,保护人员、装备和工事等在遭受多种武器攻击时免受或少受损害的复合材料。装甲的结构及材料因武器和防护对象不同而异,可分为重型,轻型和软装甲等。鉴于穿、破甲武器的发展,原单一均质的装甲已为复合装甲所替换。重型装甲为多层复合结构,面及背板为中碳合金钢板,其间有多种排列方式不同的中层间材料、金属基复合材料、树脂基复合材料、钢板、钛合金、铝合金、陶瓷、橡胶、有机和无机纤维织物、铸石、玻璃、石英砂等;轻装甲为单层或简单的复合结构,如钢板、陶瓷和树脂基复合材料的组合;软装甲为有机或无机高强度纤维织物(卡普隆和芳香聚酰胺等)增强的软复合材料,在关键部位可镶入陶瓷或薄装甲钢板。重型和轻型装甲的外表面还可涂敷非金属混合物,以增强抗破甲弹射流的能力,还可挂装内衬,其中加入不同添加剂,起防辐射、隔热、降噪和阻燃作用。为便于观察或武器瞄准,需有透明装甲,亦为多层混杂复合材料,表面常为硬质玻璃,背层为高聚物,中间层系由不同材质的玻璃和缓冲材料交替叠加,常用s玻璃、E玻璃、聚碳酸酯和光学树脂胶等。

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