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Correlation of Bench Scale and Manikin Testing of Fire Protective Clothing with Thermal Shrinkage Effect Considered

机译:考虑热收缩效应的消防服台秤和人体模型试验的相关性

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摘要

Bench scale test and flame manikin test are two typical methods to evaluate the thermal protection provided by flame resistant fabrics or clothing. In this paper, the correlation between the test results of the two protocols was investigated. A group of fabrics commonly used in fire protective clothing were evaluated by a thermal protective performance (TPP) tester. Conditions with or without an air spacer were applied. Protective performance of the garments made of these fabrics with identical design feature was evaluated by a flame manikin testing system. Portable 3D body scanning technique was firstly used to characterize the air gap size change between the garment and manikin after flash fire exposure. The results showed that there was no significant correlation between the bench scale test and flame manikin test results in terms of TPP value and percent body burn. Thermal shrinkage which was not included in the bench scale test was demonstrated to be a key factor contributing to the weak correlation. It significantly decreased the air gap size between the garment and manikin and greatly affected the heat transfer after the flash fire exposure had ceased in the manikin test Besides the TPP value, thermal shrinkage was suggested to be considered in the bench scale test as a parameter to predict the thermal protective property of flame resistant fabrics when made into garments.
机译:台秤测试和火焰人体模型测试是评估阻燃织物或衣服提供的热防护的两种典型方法。在本文中,研究了两种协议的测试结果之间的相关性。通过热防护性能(TPP)测试仪评估了一组通常用于防火服的织物。施加有或没有气垫的条件。用火焰人体模型测试系统评估了具有相同设计特征的由这些织物制成的服装的防护性能。便携式3D人体扫描技术首先用于表征暴露于闪火后服装与人体模型之间的气隙尺寸变化。结果表明,就TPP值和身体燃烧百分比而言,台式量表测试与火焰人体模型测试结果之间没有显着相关性。实验台规模试验中未包括的热收缩率被证明是造成弱相关性的关键因素。在人体模型测试中停止闪火暴露后,它显着减小了服装与人体模型之间的气隙大小,并极大地影响了热传递。除TPP值外,在台式规模测试中还建议将热收缩率考虑为参数预测制成服装时阻燃织物的热防护性能。

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