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Ignition Resistance of Polymeric Materials to Particle Impact in High-Pressure Oxygen

机译:聚合物材料在高压氧气中对颗粒撞击的点火性

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Particle impact ignition has been the primary cause of numerous fires in oxygen systems. This ignition phenomenon is known to occur where particles are present in high-velocity gas and where impact occurs on a flammable material. The particle impact ignition behavior of many metals has been widely studied, but the particle impact ignition behavior of polymeric materials is relatively unknown. Particle impact ignition in polymeric materials is a concern because these materials are commonly used in component seat and seal applications where high-velocity particle impacts can occur. This study evaluates several polymeric materials and compares the threshold temperature, which is the minimum temperature required for ignition, of these materials: Kel-F 81~(~R)(CTFE), Teflon~(~R)(TFE), polyetheretherketone (PEEK), and Vespel SP-1~(~R)polyimide). The materials were configured as targets in the high-velocity particle impact test system at the NASA White Sands Test Facility. Gaseous oxygen was flowed at 27.5 MPa (4000 psig) and sonic velocity, and the targets were impacted with 2000-μm (0.078-in.) aluminum 2017 particles. This paper discusses the results of these tests and ranks the materials according to their threshold temperatures at these conditions.
机译:粒子冲击点火已经是氧气系统中众多火灾的主要原因。已知这种点火现象发生,其中颗粒存在于高速气体中,并且在易燃材料上发生冲击。许多金属的颗粒冲击点火行为已被广泛研究,但聚合物材料的颗粒冲击点火行为相对未知。聚合物材料中的颗粒冲击点火是一个问题,因为这些材料通常用于元件座椅和密封应用,其中可能发生高速颗粒的影响。本研究评估了几种聚合物材料并比较了这些材料所需的最低温度的阈值温度:Kel-F 81〜(〜R)(CTFE),Teflon〜(〜R)(TFE),聚醚醚酮( PEEK),和VISPEL SP-1〜(〜R)聚酰亚胺)。该材料被配置为NASA白沙测试设施的高速粒子冲击试验系统中的靶标。气态氧气以27.5MPa(4000psig)和声速流动,靶标受2000μm(0.078英寸)的铝颗粒。本文讨论了这些测试的结果,并根据这些条件的阈值温度排列了材料。

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