消防员防护服热测试的复杂方法

Dorota Szułczyńska, J. Roguski
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引用次数: 1

摘要

目的:消防员专用服装的一个极其重要的性能是服装材料对辐射或火焰热传递的耐热性。使用热人体模型进行测试可能有助于改进服装套装,因为这种测试表明了被测试产品的弱点。这篇综述文章介绍了在人体模型上测试特殊服装的信息,以及使用热人体模型的试验台的简短历史。简介:使用创新的技术和技术为消防员-救援人员提供了适当的安全水平。特殊的衣服是人体与来自环境的热量和水蒸气之间的屏障。正是这种衣服保护人体免受过热或降温。方法:使用热人体模型的一般测试程序在ASTM标准中有描述(例如ASTM F2370 - 10 [1], ASTM F2371 - 10[2])。美国开始对特殊服装进行测试,以准确评估人体免受火灾、火焰和热量影响的程度。这些工作的假设是创造一个人体模型来测试装有热传感器的衣服对闪光火灾的抵抗力。目前,世界上大约有100种不同的热人体模型。战后时期的技术进步导致了多段结构的人体模型的快速发展。这可以提高模拟人体与环境之间热交换的测量的准确性。以这种方式获得的数据是可重复的,这使得服装套装的隔热测试要求标准化。结论:使用热人体模型进行测试有助于改进服装套装,以提高使用者的安全性。在测试条件下获得的结果非常准确地表明这种衣服的使用者可能暴露的烧伤的数量,位置和程度。关键词:防护服,特种服装,热人体模型,热阻,热负荷测定试验台
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Complex Approach to Thermal Testing of Firefighters’ Protective Clothing
Aim: An extremely important property of firefighters’ special clothing is thermal resistance of the clothing materials to heat transfer from radiation or flame. Performing tests with the use of thermal mannequins may contribute to the improvement of clothing sets, as such tests indicate weak points of the tested products. The review article presents information on the testing of special clothing on mannequins and a short history of test stands with the use of thermal mannequins. Introduction: Using innovative techniques and technologies provides firefighters-rescuers with an appropriate level of safety. Special clothing is a barrier between the human body and the heat and water vapour from the environment. It is this garment that protects the human body from overheating or cooling down. Methodology: The general test procedure for using thermal mannequins is described in ASTM standards (for instance ASTM F2370 – 10 [1], ASTM F2371 – 10 [2]). Testing of special clothing allowing for an accurate assessment of the degree of protection of the human body against the effects of fire, flame and heat was initiated in the United States. The assumption of these works was to create a mannequin for testing the resistance of clothing equipped with heat sensors to flash fires. Currently, there are around 100 different models of thermal mannequins around the world. Technological progress in the post-war period resulted in the rapid development of mannequins built with a multi-segment structure. This allowed to increase the accuracy of the measurements that simulated heat exchange between the human body and the environment. The data obtained in this manner is repeatable, which allows for standardization of the test requirements for thermal insulation of clothing sets. Conclusions: Performing tests using thermal mannequins contributes to the improvement of clothing sets in order to increase the safety of the users. The results obtained under the test conditions very accurately indicate the number, location and degree of burns to which the user of such clothing may be exposed. Keywords: protective clothing, special clothing, thermal mannequin, thermal resistance, test stands to determine thermal loads Type of article: review article
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