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Fire-Resistant Hydrogel-Fabric Laminates: A Simple Concept That May Save Lives

机译:耐火水凝胶织物层压板:可以挽救生命的简单概念

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There is a large demand for fabrics that can survive high-temperature fires for an extended period of time, and protect the skin from burn injuries. Even though fireresistant polymer fabrics are commercially available, many of these fabrics are expensive, decompose rapidly, and/or become very hot when exposed to high temperatures. We have developed a new class of fire-retarding materials by laminating a hydrogel and a fabric. The hydrogel contains around 90% water, which has a large heat capacity and enthalpy of vaporization. When the laminate is exposed to fire, a large amount of energy is absorbed as water heats up and evaporates. The temperature of the hydrogel cannot exceed 100 degrees C until it is fully dehydrated. The fabric has a low thermal conductivity and maintains the temperature gradient between the hydrogel and the skin. The laminates are fabricated using a recently developed tough hydrogel to ensure integrity of the laminate during processing and use. A thermal model predicts the performance of the laminates and shows that they have excellent heat resistance in good agreement with experiments, making them viable candidates in life saving applications such as fire-resistant blankets or apparel.
机译:对织物的需求很大,这些织物能在高温下长时间燃烧,并保护皮肤免受烧伤。即使耐火聚合物织物是可商购的,但是这些织物中的许多还是昂贵的,迅速分解和/或当暴露于高温时变得非常热。通过层压水凝胶和织物,我们开发了一种新型的阻燃材料。水凝胶包含约90%的水,该水具有大的热容和汽化焓。当层压板暴露于火中时,随着水的加热和蒸发,大量的能量被吸收。在完全脱水之前,水凝胶的温度不能超过100摄氏度。织物的导热系数低,并保持水凝胶和皮肤之间的温度梯度。使用最近开发的坚韧水凝胶来制造层压板,以确保在加工和使用过程中层压板的完整性。热模型可预测层压板的性能,并表明它们具有出色的耐热性,与实验吻合良好,使其成为耐火毯子或服装等救生应用中可行的候选材料。

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