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On the Improvement of Thermal Protection for Temperature-Responsive Protective Clothing Incorporated with Shape Memory Alloy

机译:形状记忆合金对温度响应型防护服热保护性能的改进

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摘要

This study explored the application of shape memory alloy (SMA) springs in a multilayer protective fabric assembly for intelligent insulation that responded to thermal environment changes. Once the SMA spring was actuated, clothing layers were separated, creating an adjustable air gap between the adjacent fabric layers. The impacts of six different SMA arrangement modes and two different spring sizes on thermal protection against either a radiant heat exposure (12 kW/m2) or a hot surface exposure (400 °C) were investigated. The findings showed that the incorporation of SMA springs into the fabric assembly improved the thermal protection, but the extent to which the springs provided thermal protection was dependent on the arrangement mode and spring size. The effectiveness of reinforcing the protective performance using SMA springs depended on the ability of clothing layers to expand an air layer. The regression models were established to quantitatively assess the relationship between the air gap formed by SMA spring and the thermal protective performance of clothing. This study demonstrated the potential of SMA spring as a suitable material for the development of intelligent garments to provide additional thermal protection and thus reduce the number of clothing layers for transitional thermal protective clothing.
机译:这项研究探索了形状记忆合金(SMA)弹簧在用于智能绝缘的多层保护织物组件中的应用,该组件可响应热环境变化。激活SMA弹簧后,便会分离衣服层,从而在相邻的织物层之间形成可调节的气隙。研究了六种不同的SMA排列方式和两种不同的弹簧尺寸对辐射热暴露(12 kW / m 2 )或热表面暴露(400°C)的热保护的影响。研究结果表明,将SMA弹簧结合到织物组件中可以改善热保护性能,但是弹簧提供热保护的程度取决于排列方式和弹簧尺寸。使用SMA弹簧增强防护性能的有效性取决于衣服层扩展空气层的能力。建立了回归模型以定量评估SMA弹簧形成的气隙与衣物的热防护性能之间的关系。这项研究证明了SMA弹簧作为开发智能服装的合适材料的潜力,可以提供额外的热保护,从而减少过渡式热防护服的层数。

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