Department of Sound, Physikalisch-Technische Bundesanstalt (PTB), Bundesallee 100, 38116 Braunschweig, Germany.
Institut für Arbeitsschutz der Deutschen Gesetzlichen Unfallversicherung, Alte Heerstraße 111, 53757 Sankt Augustin, Germany.
J Acoust Soc Am. 2021 Apr;149(4):2836. doi: 10.1121/10.0004787.
The widespread use of ultrasound techniques throughout industry causes many workers to be exposed to airborne ultrasound at their workplaces. To measure and assess the exposure to airborne ultrasound at these workplaces, devices are required that allow reliable measurements of ultrasound levels and support occupational safety and health measures. However, the sound level meters available to date do not meet these requirements. Therefore, a research prototype of a sound level meter covering audible and ultrasonic frequencies was developed, paying particular attention to the suitability of the components in terms of their acoustical characteristics (such as directional patterns) in the ultrasonic frequency range. The prototype was tested based on the international standard for sound level meters IEC 61672-1, with extensions regarding the signal frequencies used. The results revealed that the sound level meter developed is suitable for application at most workplaces exposed to ultrasound, as reflected by, e.g., its frequency range (at least up to 47 kHz), upper level limits (up to 160 dB SPL), and measurement uncertainty (k = 2, GUM) of 1.15 dB. The prototype developed allows measurement and assessment of exposure at workplaces for occupational safety and health purposes. Moreover, it can serve as a basis for future developments of commercial ultrasound level meters.
超声技术在工业中的广泛应用导致许多工人在工作场所暴露于空气中的超声中。为了测量和评估这些工作场所中空气中的超声暴露情况,需要能够可靠测量超声水平并支持职业安全和健康措施的设备。然而,迄今为止可用的声级计并不满足这些要求。因此,开发了一种涵盖可听和超声频率的声级计研究原型,特别注意组件在超声频率范围内的声学特性(例如指向性图案)的适用性。该原型根据声级计的国际标准 IEC 61672-1 进行了测试,并扩展了所使用的信号频率。结果表明,所开发的声级计适用于大多数暴露于超声的工作场所,例如其频率范围(至少高达 47 kHz)、上限限制(高达 160 dB SPL)和测量不确定度(k = 2,GUM)为 1.15 dB。开发的原型允许为职业安全和健康目的测量和评估工作场所的暴露情况。此外,它可以作为未来商用超声级计发展的基础。