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1)  hollow,hollow-cone
聚能锥孔
2)  shaped charge perforation
聚能射孔
3)  collecting energy hole
聚能孔
4)  taper shaped charge
锥形聚能装药
1.
The jet forming mechanisms of taper shaped charge and linear shaped charge are illustrated in this paper.
文中阐述了锥形和线形聚能装药各自射流形成的机理,运用有限元软件Lsdyna2D,对锥形聚能装药和线形聚能装药的射流形成过程进行了模拟,比较说明了两种装药结构形成射流和杵体的不同。
5)  wide angle shaped charge
大锥角聚能装药
1.
Numerical simulation of jet formation by wide angle shaped charge and penetration into multi-layer targets;
大锥角聚能装药射流形成及对多层靶侵彻的数值模拟研究
2.
W type liner that can form annular jet is adopted as the forward charge and the wide angle shaped charge is adopted as the follow through one.
设计了一种第一级能够形成环形射流的 W型聚能装药 ,第二级采用大锥角聚能装药的串联战斗部 ,并且通过试验研究了该种战斗部对靶板的毁伤效果。
6)  Shaped charge
聚能射孔弹
1.
Shaped charges of the same sort are underbalance perforated in three kinds of sandstones in the lab.
在实验室条件下,用同种聚能射孔弹在3种不同砂岩上进行负压射孔,然后进行流动测试。
2.
The test data are adopted along with the-characteristics of jets produced by shaped charges to analyze the forming process of perforation channels and damage mechanism of perforatio.
射孔实验后对贝雷砂岩靶进行了核磁共振等实验,结合聚能射孔弹产生射流的特点,分析了射孔道的形成过程及射孔损害机理。
3.
Four parameters affecting penetration length of shaped charge are cone angle,wall thickness of shaped charge liner,shaped charge structure and casing thickness.
在聚能射孔弹的研究中应用正交试验方法,以确定聚能射孔弹各结构因素对性能的影响及主要因素的交互作用对性能的影响。
补充资料:多孔羟基磷灰石陶瓷-聚乳酸复合材料
分子式:
CAS号:

性质:有聚乳酸浸渍涂层的多孔羟基磷灰石(HA)复合材料。将多孔珊瑚状的HA陶瓷浸入DL-聚乳酸的丙酮溶液中(丙酮:聚乳酸=3:1~30:1),取出干燥8~12h而制得。该复合材料较之未涂层材料,其压缩强度提高近4倍,压缩刚性提高30%,断裂吸收也提高30%左右。动物实验结果表明,这种复合材料已具有类似于来涂层的多孔HA陶瓷的成骨性能,但其初始强度已大大提高。

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