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Extending the use of the Fire Propagation apparatus to Qualify Burning scenarios of Energetic Materials and Oxidative Properties of Chemicals

机译:延伸使用火灾传播设备以限定燃烧的高能量材料的情景和化学品的氧化性能

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The Fire Propagation Apparatus (ASTM E 2058), also called the Tewarson apparatus in Europe, is of the more versatile fire test equipments that has gained rather recently considerable scientific recognition after a long period of technical maturation (1975-1995). The poster briefly reviews technical characteristics of this polyvalent apparatus and recalls major steps of its development. Then it provides first results of the exploration of two new interconnected domains of use under the leadership or contributions of the authors that regards reactive materials. Those domains lead to consider combustion processes that depart significantly from those observed in conventional fires. One deals with the burning behavior of so called energetic materials (e.g. pyrotechnic compositions) outside of the explosion case, the other raises the qualification of oxidative substances with a view of developing pertinent test protocols aiming at an enhanced hazard driven classification scheme for such substances (that would be implemented in an updated version of NFPA 430). First results reveal the type of technical challenges that we have to face and solve to access the actual rate of heat released from energetic materials under decomposition, while revealing promising capacity in supplying toxic potency data associated to gaseous emissions. Preliminary testing of oxidizers carried out under the hospices of the Fire Protection Research Foundation reveals a clear advantage of the FPA against conventional empirical test procedures (such as UN O1 test for transport of dangerous goods and EU A17) for developing a modern classification scheme of oxidizers.
机译:在长期的技术成熟(1975-1995)之后,消防繁殖装置(ASTM E 2058)也称为Tewarson设备,是更通用的消防试验设备,这是在长期的技术成熟(1975-1995)后获得相当大的科学识别。海报简要介绍了这种多价仪器的技术特性,并回顾了其开发的主要步骤。然后,它提供了在反应材料的领导或作者的领导或贡献下探索两个新的互联领域的探索结果。这些域导致考虑从常规火灾中观察到的那些脱离燃烧过程。一种涉及爆炸案外所谓的充满活力材料(例如烟火组成)的燃烧行为,另一个引发了氧化物质的鉴定,目的是开发针对这些物质增强的危险驱动分类方案的相关试验方案(这将在更新版本的NFPA 430的版本中实现。第一个结果揭示了我们必须面对的技术挑战类型和解决,以便在分解下从能量材料释放的热量释放的实际热量,同时揭示了提供与气体排放相关的有毒效力数据的有希望的能力。在消防研究基金会下进行的氧化剂的初步测试揭示了FPA对传统经验测试程序(如UN O1试验,用于制定氧化剂的现代分类方案,如UN O1试验) 。

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