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1)  cylindricalballistic
柱形弹丸
2)  ogival-nosed projectiles
卵形弹丸
1.
Penetration and perforation of FRP laminates under normal impact by ogival-nosed projectiles;
卵形弹丸撞击下FRP层合板的侵彻和穿透
3)  spherical projectile
球形弹丸
4)  explosively formed projectiles (EFP)
爆炸成形弹丸
1.
The microstructure in explosively formed projectiles (EFP) has been investigated, The results showed that, due to adiabatic temperature rise and special plastic deformation mechanism, dynamic recovery and dynamic recrystallization have occurred in explosively formed projectiles (EFP).
研究了工业纯铁爆炸成形弹丸内微观组织变化 ,结果表明 :由于绝热温升和特有的塑性变形机制 ,弹丸在成形过程中内部组织发生动态回复和动态再结晶 ,动态回复形成亚晶 ,因变形量不均匀使亚晶粒直径分布在 0 3~ 1 5 μm之间 ,动态再结晶使弹丸内形成均匀的小于 5 μm的超细晶粒。
5)  multiple explosively formed projectile (MEFP)
多爆炸成形弹丸
1.
Investigation of multiple explosively formed projectile (MEFP) technology;
多爆炸成形弹丸技术研究
6)  explosively formed projectile
爆炸成形弹丸
1.
Investigation of forming mechanism of explosively formed projectiles with tails;
带尾翼爆炸成形弹丸成形机理初探
2.
This paper analyses the geometrical analogue rules of explosively formed projectile (EFP) penetrating armours with the help of similarity theory, and establishes EFP penetrating armour simulation law.
利用相似理论的知识分析了爆炸成形弹丸的穿甲模拟律问题 ,在此基础上 ,建立了爆炸成形弹丸的穿甲模拟律关系。
补充资料:V形柱式支座
分子式:
CAS号:

性质:每两根支柱组成一组呈V字形结构,每组支柱与球形容器的赤道圈等距离相连,柱间无拉杆连接的一种球形容器柱式支座。其承受膨胀变形较好。并且由于支柱与壳体相切,相对赤道平面的垂线向内倾斜2°~3°,因而在连接处可产生一向心水平力,增加了基础的稳定性。

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