Advanced Textiles Research Group, School of Art & Design, Nottingham Trent University, Bonington Building, Dryden Street, Nottingham NG1 4GG, UK.
Sensors (Basel). 2018 May 17;18(5):1590. doi: 10.3390/s18051590.
Overexposure to high levels of noise can cause permanent hearing disorders, which have a significant adverse effect on the quality of life of those affected. Injury due to noise can affect people in a variety of careers including construction workers, factory workers, and members of the armed forces. By monitoring the noise exposure of workers, overexposure can be avoided and suitable protective equipment can be provided. This work focused on the creation of a noise dosimeter suitable for use by members of the armed forces, where a discrete dosimeter was integrated into a textile helmet cover. In this way the sensing elements could be incorporated very close to the ears, providing a highly representative indication of the sound level entering the body, and also creating a device that would not interfere with military activities. This was achieved by utilising commercial microelectromechanical system microphones integrated within the fibres of yarn to create an acoustic sensing yarn. The acoustic sensing yarns were fully characterised over a range of relevant sound levels and frequencies at each stage in the yarn production process. The yarns were ultimately integrated into a knitted helmet cover to create a functional acoustic sensing helmet cover prototype.
过度暴露于高强度噪声环境中可能导致永久性听力障碍,这对受影响人群的生活质量产生重大不利影响。噪声引起的损伤可能影响包括建筑工人、工厂工人和武装部队成员在内的各种职业的人。通过监测工人的噪声暴露情况,可以避免过度暴露,并提供适当的防护设备。这项工作专注于创建一种适合武装部队成员使用的噪声剂量计,即将离散剂量计集成到纺织头盔罩中。这样,传感元件可以非常靠近耳朵,对进入人体的声级提供高度代表性的指示,同时还创建一个不会干扰军事活动的设备。这是通过利用商业微机电系统麦克风集成在纱线纤维内来创建声学传感纱线来实现的。在纱线生产过程的每个阶段,对声学传感纱线在一系列相关声级和频率下进行了全面的特性描述。最终,这些纱线被集成到针织头盔罩中,以创建一个功能性的声学传感头盔罩原型。