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Numerical and Experimental Analysis of Sound Suppressor for a 5.56 mm Calibre

机译:用于5.56毫米口径的声抑制器的数值和实验分析

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摘要

A sound suppressor is an internal or external device coupled to the barrel of a firearm. Its development has been historically related to the negative effects produced by the noise. This article presents the numerical and experimental analysis of a sound suppressor for a 5.56 mm caliber rifle. It was designed, manufactured, and tested inside a shooting tunnel for 911 m/s and 344 m/s velocities. Three geometric configurations with curved deflectors, conical deflectors, and finally with a reactive spiral capable of dissipating the acoustic wave were compared considering reactive and dissipative systems. The attenuation of the sound inside the silencer depends directly on the reduction of the projectile wave velocity and the deflagration of the gases at the instant of firing. Then the MIL-STD-1474E standard was used to carry out the experiments. The results in the computational numerical simulation show an average value of 143 dB for the considered three models, the Sound Pressure Level in the reactive core model decreased by 25% with respect to other proposals, which have an average value of 141 dB. These results can be useful to improve in the design of sound suppressors based on the needs of the users and under the specific characteristics of each weapon ballistic.
机译:声抑制器是耦合到枪械筒的内部或外部设备。它的发展一直在历史上与噪音产生的负面影响有关。本文介绍了5.56毫米口径步枪的声音抑制器的数值和实验分析。它的设计,制造,并在拍摄隧道内测试,可为911米/秒和344米/升速度。考虑反应性和耗散系统,比较了具有弯曲偏转器,锥形偏转器的三个几何配置,锥形偏转器,最后具有能够散发声波的反应螺旋。消音器内的声音的衰减直接取决于射击速度的射弹波速度和气体的爆燃。然后使用MIL-STD-1474E标准进行实验。计算数值模拟的结果显示了考虑的三种模型的平均值为143dB,反应核模型中的声压水平相对于其他提议减少了25%,其平均值为141dB。这些结果对于根据用户的需求和每个武器弹道的特定特征来改进声音抑制器的设计。

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