Institute of Occupational Medicine and Environmental Health, ul. Kościelna 13, 41-200 Sosnowiec, Poland.
Jan Długosz University, Faculty of Mathematics and Natural Sciences, al. Armii Krajowej 13/15, 42-200 Częstochowa, Poland.
Ultrasonics. 2020 Jan;100:105976. doi: 10.1016/j.ultras.2019.105976. Epub 2019 Aug 9.
The assessment method of the total and A-weighting-filtered sound pressure levels from the sound pressure levels in selected bands of ultrasonic frequencies, suggested in Part I of this work, was verified on the basis of 226 sets of measurement results of acoustic emission during welding. The pulsed and double pulsed metal active gas welding (MAG-P and MAG-DP) was studied, that constituted a continuation of research on MAG methods. It was shown that the total sound pressure levels due to welding could be reasonably assessed from the sound pressure levels in the octave band with center frequency of 31.5 kHz using a simple empirical equation. The assessment uncertainty was estimated for ±1 dB, which was equal to that attainable in direct measurements with class 1 meter in the field. The assessments of A-weighting-filtered sound pressure levels were based on the measurement results in the 1/3 octave frequency bands with center frequencies of 40 kHz and 20 kHz for MAG-P and MAG-DP weldings, respectively. Although the uncertainty was slightly worse, it was still acceptable taking into account potential practical application of the method: measurements in work environment, especially in places where the acoustic background is not stable. A simple rule for proper selection of the frequency band suitable for this purpose was suggested, refined in comparison with that reported previously.
基于 226 组焊接声发射测量结果,对本工作第一部分中提出的从超声频段选带声压级计算总声压级和 A 计权声压级的评估方法进行了验证。研究了脉冲和双脉冲金属活性气体(MAG-P 和 MAG-DP)焊接,这是对 MAG 方法研究的延续。结果表明,对于 MAG 焊接,可以使用简单的经验公式,从中心频率为 31.5kHz 的倍频程带中的声压级合理地评估总声压级。评估不确定度估计为±1dB,这与在现场使用 1 级计直接测量时可达到的不确定度相当。A 计权声压级的评估基于 MAG-P 和 MAG-DP 焊接的 1/3 倍频程频带测量结果,中心频率分别为 40kHz 和 20kHz。虽然不确定度稍差,但考虑到该方法在实际应用中的潜在可能性,如在工作环境中的测量,特别是在声学背景不稳定的地方,仍然是可以接受的。还提出了一种用于选择适合此目的的频带的简单规则,并与之前报道的规则进行了细化。