首页> 外文会议>International symposium on flammability and sensitivity of materials in oxygen-enriched atmospheres >Ignition Testing by Fracture of Oil- and Particle-Contaminated Aluminum Pipes in High Pressure Oxygen at Ambient and Elevated Temperature
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Ignition Testing by Fracture of Oil- and Particle-Contaminated Aluminum Pipes in High Pressure Oxygen at Ambient and Elevated Temperature

机译:在环境和升高温度下,通过在高压氧气中的油和颗粒污染的铝管骨折的点火测试

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摘要

Aluminum and its alloys are the preferred material in air separation units (ASUs) and are submitted to strict cleanliness requirements to avoid combustion reactions in oxygen. Linde Engineering Division has investigated the role of particle contamination for the ignition of aluminum pipes in high pressure oxygen. Tests were carried out with oil coated aluminum pipes in combination with a particle contamination. Accumulations of following particle types were tested: molecular sieve 13X, filter deposits (rust), perlite, quartz sand, and aluminum swarf. The contaminated pipes were pressurized with oxygen up to 150 bar and fractured in a hydraulic apparatus. The conditions and probability of an ignition reaction compared with oiled pipes without particles were of interest. Additionally, similar high pressure tests with a mixture of liquid and gaseous oxygen were performed. A combination of oil and particles enhanced the probability of an ignition at elevated temperatures. The results indicated that temperature is the dominating factor for an oil ignition, not the oxygen pressure. At room temperature, an oil/aluminum ignition could never be initiated. The results give a good understanding regarding the mechanism of an aluminum ignition and help to clarify causes of damage in the ASU industry.
机译:铝及其合金是空气分离单元(华硕)中的优选材料,并提交以避免氧气中燃烧反应的严格清洁要求。林德工程师研究了粒子污染在高压氧中铝管点火的作用。用油涂覆的铝管与颗粒污染组合进行试验。测试以下粒子类型的累积:分子筛13x,过滤沉积物(锈),珍珠岩,石英砂和铝糖粉。污染的管子用高达150巴的氧气加压,并在液压装置中裂缝。与没有颗粒的涂油管相比,点火反应的条件和概率是感兴趣的。另外,进行了具有液体和气态氧的混合物的类似的高压试验。油和颗粒的组合增强了升高温度下点火的可能性。结果表明,温度是油点火的主导因子,而不是氧气压力。在室温下,永远不会启动油/铝制点火。结果对铝火点火机制的机制具有良好的理解,并有助于澄清ASU行业损坏的原因。

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