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Impact of Energetic Materials on Properties of Infrared Illuminants

机译:高能材料对红外光源性能的影响

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For energetic materials as flammable agents or additive agents effecting on properties of infrared illuminants is studied. The experimental results indicate that compared with containing ATZ, the properties of the infrared illuminant containing AGNTO are better, whose rate of infrared radiation and output visible light increases 83.57% or 39.63%,respectively; at the same time, the burning rate reduces 5.23% and the cover index is 0.122. In all of five additive energetic materials, Nitrocellulose, black powder, RDX, HMX and PETN, HMX is the best because it can make the output of IR increase 3.04% and decrease 2.76% to the output of visible light, the intensity of infrared radiation of per quality increase 2.26% while the intensity of visible light is decreased 3.62% compared with the basic composition, and the convert index 0.164 of the infrared illuminant containing HMX with a suitable burning rate is the highest of all. RDX is the most effective on the increasing of the infrared radiation; the rate can reach 8.26%. PETN can make the intensity of infrared radiation of per quality increase 11.74%, and its burning rate 2.57mm/s is the lowest.
机译:对于作为易燃剂或添加剂的高能材料,研究了影响红外光源性能的材料。实验结果表明,与含ATZ的红外发光体相比,含AGNTO的红外发光体的性能更好,其红外辐射和可见光输出率分别增加了83.57%或39.63%。同时,燃烧率降低了5.23%,覆盖指数为0.122。在硝酸纤维素,黑粉,RDX,HMX和PETN这五种添加剂高能材料中,HMX最佳,因为它可使IR的输出相对于可见光,红外辐射的强度增加3.04%并减少2.76%。与基本组成相比,每质量的光通量增加2.26%,而可见光的强度降低3.62%,并且具有合适燃烧率的含HMX的红外光源的转换指数0.164是最高的。 RDX对增加红外辐射最有效;率可以达到8.26%。 PETN可使每质量的红外辐射强度增加11.74%,其燃烧速率最低为2.57mm / s。

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