Saidi Alireza, Gauvin Chantal, Ladhari Safa, Nguyen-Tri Phuong
Department of Chemistry, Biochemistry and Physics, Université du Québec à Trois-Rivières (UQTR), 3351 Boulevard des Forges, Trois-Rivières, QC G8Z 4M3, Canada.
Laboratory of Advanced Materials for Energy and Environment, Université du Québec à Trois-Rivières (UQTR), 3351 Boulevard des Forges, Trois-Rivières, QC G8Z 4M3, Canada.
Polymers (Basel). 2021 Oct 27;13(21):3711. doi: 10.3390/polym13213711.
The exposure to extreme temperatures in workplaces involves physical hazards for workers. A poorly acclimated worker may have lower performance and vigilance and therefore may be more exposed to accidents and injuries. Due to the incompatibility of the existing standards implemented in some workplaces and the lack of thermoregulation in many types of protective equipment that are commonly fabricated using various types of polymeric materials, thermal stress remains one of the most frequent physical hazards in many work sectors. However, many of these problems can be overcome with the use of smart textile technologies that enable intelligent thermoregulation in personal protective equipment. Being based on conductive and functional polymeric materials, smart textiles can detect many external stimuli and react to them. Interconnected sensors and actuators that interact and react to existing risks can provide the wearer with increased safety, protection, and comfort. Thus, the skills of smart protective equipment can contribute to the reduction of errors and the number and severity of accidents in the workplace and thus promote improved performance, efficiency, and productivity. This review provides an overview and opinions of authors on the current state of knowledge on these types of technologies by reviewing and discussing the state of the art of commercially available systems and the advances made in previous research works.
工作场所暴露于极端温度下会给工人带来身体危害。适应能力差的工人可能工作表现和警觉性较低,因此更容易遭遇事故和受伤。由于一些工作场所实施的现有标准不兼容,且许多常用各种聚合物材料制造的防护装备缺乏温度调节功能,热应激仍是许多工作部门最常见的身体危害之一。然而,使用能在个人防护装备中实现智能温度调节的智能纺织技术可以克服许多此类问题。基于导电和功能性聚合物材料的智能纺织品能够检测多种外部刺激并做出反应。相互连接的传感器和致动器能够对现有风险进行交互和反应,可为穿戴者提供更高的安全性、防护性和舒适性。因此,智能防护装备的这些功能有助于减少工作场所的失误以及事故的数量和严重程度,从而提高工作表现、效率和生产力。本综述通过回顾和讨论市售系统的技术现状以及先前研究工作取得的进展,对这些类型技术的当前知识状态进行了概述并阐述了作者的观点。