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1)  Castable aluminized composite explosive
注装含铝混合炸药
2)  aluminized explosive
含铝炸药
1.
The influence of aluminum particle size and oxidizer morphology in RDX-based aluminized explosives on their ability to accelerate metals;
以RDX为基的含铝炸药中铝粉粒度和氧化剂形态对加速金属能力的影响
2.
To investigate the response of target under blast loadings of different characteristics,the parameters(overpressure and impulse) on the target were obtained by insensitive RDX and aluminized explosive DHL blast experiment,and it was compared with the experimental data of TNT.
为研究爆炸载荷结构与目标响应的关系,对钝化RDX和含铝炸药DHL进行了静爆试验,获得了作用在目标靶板上的超压、冲量的实测数据,并与TNT静爆试验结果进行了对比。
3.
Numerical simulation of energy output structure for an aluminized explosive and an idealized explosive in underwater explosion has been performed with AUTODYN software.
采用AUTODYN计算软件,对含铝炸药与理想炸药水中爆炸能量输出结构进行了数值模拟,讨论了人工黏性对计算结果的影响,对冲击波压力历程进行了对比分析。
3)  aluminized explosives
含铝炸药
1.
Numerical simulation of detonation in aluminized explosives containing oxidiser (AP);
有氧化剂(AP)含铝炸药的爆轰性能
2.
The mechanism of the influence of the shape and particle size of alumiuium on the detonation properties of aluminized explosives is explained by means of the secondary reaction theory and the heat dilution theory.
应用含铝炸药的二次反应论和惰性热稀释理论解释了铝粉形状和粒度对炸药爆炸性能的影响机理 ,其根本原因是由于铝粉比表面积不同造成的。
3.
In order to study the deviation extent from the similarity law about the energy released process of aluminized explosives with different diameters,the cylinder tests of two aluminized explosives with diameters of 50mm and 100mm were performed by a slit scanning photography technique with a high speed rotating camera.
为具体考察不同直径含铝炸药能量释放过程偏离相似律的程度,采用高速转镜扫描相机及单狭缝扫描技术对两种不同直径(50和100mm)的含铝炸药进行了圆筒试验,扫描狭缝分别距圆筒尾端200mm(直径为50mm)和300mm(直径为100mm)。
4)  cast explosives
注装炸药
5)  explosive containing aluminium powder
含铝炸药粉
1.
It is found that as the negative oxygen balance value of the explosive containing aluminium powder is-0.
利用我们研制的光谱技术成功地研究了5种不同含铝炸药粉的快速反应特性。
6)  aluminize RHTL
含铝炸药RHTL
补充资料:含铝炸药
分子式:
CAS号:

性质:由炸药与铝粉组成的混合炸药,也称铝化炸药。主要成分为猛炸药及铝粉,有的也含少量其他添加剂(钝感剂和黏结剂等)。铝粉能与爆炸产物(二氧化碳、水)产生二次反应生成三氧化二铝,放出大量的热,使爆热和做功能力大幅度提高,爆炸作用时间延长,爆炸作用范围扩大,破片温度提高,并有利于水中气泡的扩张和增压。但铝粉使炸药的爆速、爆压和猛度降低,机械感度增高,所以炸药中铝粉含量以10%~35%为宜。种类繁多,可分为铸装及压装两大类。通常沿用制造混合炸药的干混法、湿混法和悬浮法等工艺,将含铝炸药混制成适于压装的粉粒状,或适于浇铸的悬浮液或淤浆状,最后以固态使用。用于水雷、鱼雷、深水炸弹、对空武器、反坦克穿甲弹和爆破弹,也可在地面爆破、土石爆破及地震勘探中使用。

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