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枪击脉冲噪声的物理特性及其通过听力保护器的衰减。

Physical characteristics of gunfire impulse noise and its attenuation by hearing protectors.

作者信息

Ylikoski M, Pekkarinen J O, Starck J P, Pääkkönen R J, Ylikoski J S

机构信息

Lappeenranta Regional Institute of Occupational Health, Finland.

出版信息

Scand Audiol. 1995;24(1):3-11. doi: 10.3109/01050399509042203.

DOI:10.3109/01050399509042203
PMID:7761796
Abstract

The peak sound pressure level (SPL), spreading of pressure wave and other physical characteristics of the impulse noise from weapons were studied in actual shooting conditions for assessment of gunfire noise exposure. Additionally, the attenuation of SPL by hearing protectors was measured with miniature microphones to evaluate protection efficiency in real shooting conditions. The peak SPLs at the shooter's ear ranged from 132 dB (miniature rifle) to 183 dB (howitzer). The spectral content of the main part of the acoustic energy was less than 400 Hz (peak 16-100 Hz) for large-caliber weapons and 150-2,500 Hz (peak 900-1,500 Hz) for small-caliber weapons (rifles). The safe distances from the noise source (less than 140 dB peak SPL) were 50-200 m for large-caliber weapons. Rifle impulses (assault rifle, caliber 7.62) had a peak SPL of 154 dB at a distance of 4 m from the muzzle. The peak SPLs of different explosives ranged from 125 to 185 dB at distances of 10 to 300 m. In rifle shooting, the attenuation efficiency of earplugs (16dB) or small-volume (thin) earmuffs (17 dB) was not sufficient and their use as sole protectors cannot be recommended. Instead, large-volume earmuffs should be used. Impulses from pistol and shotgun were fairly effectively attenuated both by small-volume and large-volume earmuffs. All kinds of earmuffs appeared to be ineffective (attenuation less than 15 dB) against impulses from large-caliber weapons with energy content at very low frequencies. Therefore, the combined use of earmuffs and earplugs is recommended for the most noisy operations. On the basis of the present data, wider safety zones were adopted in the Finish Defence Forces at shooting with different weapons.

摘要

在实际射击条件下,研究了武器脉冲噪声的峰值声压级(SPL)、压力波传播及其他物理特性,以评估枪声噪声暴露情况。此外,用微型麦克风测量了听力保护器对声压级的衰减,以评估其在实际射击条件下的防护效率。射手耳部的峰值声压级范围为132分贝(微型步枪)至183分贝(榴弹炮)。大口径武器声能主要部分的频谱含量小于400赫兹(峰值16 - 100赫兹),小口径武器(步枪)为150 - 2500赫兹(峰值900 - 1500赫兹)。大口径武器距噪声源的安全距离(峰值声压级小于140分贝)为50 - 200米。步枪脉冲(突击步枪,口径7.62)在距枪口4米处的峰值声压级为154分贝。不同炸药在10至300米距离处的峰值声压级范围为125至185分贝。在步枪射击中,耳塞(16分贝)或小体积(薄型)耳罩(17分贝)的衰减效率不足,不建议单独使用它们作为防护装备。相反,应使用大体积耳罩。手枪和霰弹枪的脉冲能被小体积和大体积耳罩相当有效地衰减。对于低频能量含量高的大口径武器的脉冲,各类耳罩似乎都无效(衰减小于15分贝)。因此,建议在最嘈杂的操作中同时使用耳罩和耳塞。根据目前的数据,芬兰国防军在使用不同武器射击时采用了更宽的安全区域。

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