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LIBS spectra of multi-component Al, Fe, Cu alloys and composite materials used for selected elements of armament and munition

机译:用于选定的武器和弹药元素的多组分Al,Fe,Cu合金和复合材料的Libs光谱

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Spectral investigations in the UV-VIS range of selected Al, Cu, and Fe alloys and composite materials were performed using LIBS technique. The investigated objects were typical rifle cartridges, mortars, rocket launchers and samples of different type steel, Cu and Al alloys, as well as composite materials of special chemical composition. Two Nd:YAG lasers were applied: a short 4 ns, 60 mJ Brio Quantel/BigSky laser (1064 nm) and a long pulse 200/400 (up to 1000) (is (~ 2/4 up to 10 J) laser (1064 nm) constructed at the Institute of Optoelectronics MUT. This spectrochemical analysis was possible for Al, Cu, and Fe alloys objects for both lasers, and in case of composites only if the samples were irradiated by short laser pulse since in the experiment with the long pulse, all composite materials spectra, in general, were very similar to each other - they imitated a grey/black body spectra. For metal alloys in experiments with a short laser pulse only atomic spectra were observed while for long microsecond laser pulses molecular transitions have been registered for Al alloys. Electron temperatures of plasma created on different materials for short and long laser pulses were found on the base of Boltzmann plots. Temperatures are clearly higher for plasmas generated with a short laser pulse which results from much higher laser power density on the sample surface for short pulse and not from fluence which is 20-40 times larger for long pulse.
机译:使用LIBS技术进行选择Al,Cu和Fe合金和复合材料的UV-VIS范围内的光谱研究。调查的物体是典型的步枪盒,砂浆,火箭发射器和不同型钢,Cu和Al合金的样品,以及特殊化学成分的复合材料。应用了两个ND:YAG激光器:短4 ns,60 MJ BrioQumentel / Bigsky激光(1064nm)和长脉冲200/400(最多1000)(是(〜2/4最多10 j)激光(在光电子研究所构建的1064纳米。对于Al,Cu和Fe合金对象,对于两个激光器的物体,并且仅在复合材料的情况下,仅当样品被短暂激光脉冲照射到实验中时长脉冲,通常彼此非常相似的脉冲 - 它们模仿灰色/黑色体谱。对于使用短激光脉冲的实验中的金属合金,仅在长时间激光脉冲的分子转变时观察到原子谱。已经注册了Al合金。在Boltzmann Plots的基础上发现了在不同材料上产生的等离子体的电子温度。用短的激光脉冲产生的等离子体,温度显然较高,这是从更高的LAS产生的对于短脉冲的样品表面上的ER功率密度,而不是从流量的流量,长脉冲更大20-40倍。

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