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Test Method for Evaluating Fabric Flammability and Predicted Skin Burn Injury in Microgravity

机译:评估织物易燃性和微重力下预期的皮肤灼伤的测试方法

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摘要

To address fire safety concerns associated with the use of flammable fabrics during space travel, an apparatus was designed to be flown on low-gravity parabolic aircraft flights in order to assess the flammability of cotton and 50% cotton/50% polyester fabrics, and the resulting skin burn injury that would occur if these fabrics were to ignite. The apparatus, modelled after a standard fabric flammability test, was also used on the ground for experiments under earth's gravity. Variables examined in the tests include gravity level, fabric type, air gap size, and orientation of the fabric. Flame spread rates, heat fluxes, and skin burn predictions determined from test results were compared under the two gravity levels. The orientation of the fabric had a large effect on flame spread rates, heat fluxes and predicted skin burn times for tests conducted under earth's gravity. Flame spread rates and heat fluxes were highest when the fabric was held in the vertical orientation, which resulted in the lowest predicted times to produce skin burns. Flame spread rates and heat fluxes were considerably lower in microgravity than under earth's gravity, which resulted in longer predicted times to produce skin burns.
机译:为解决与太空旅行期间使用易燃织物有关的消防安全问题,设计了一种在低重力抛物线飞机飞行中飞行的装置,以评估棉和50%棉/ 50%聚酯织物的可燃性,以及如果这些织物着火会导致皮肤灼伤。该设备以标准的织物可燃性测试为模型,也被用于地面上在地球重力作用下的实验。测试中检查的变量包括重力水平,织物类型,气隙尺寸和织物方向。根据测试结果确定的火焰扩散率,热通量和皮肤灼伤预测值在两个重力水平下进行了比较。在地球重力下进行的测试中,织物的取向对火焰传播速率,热通量和预计的皮肤燃烧时间有很大的影响。当织物垂直放置时,火焰蔓延速率和热通量最高,这导致产生皮肤灼伤的预计时间最短。在微重力作用下,火焰传播速度和热通量比在地球重力作用下要低得多,这导致产生皮肤灼伤的预计时间更长。

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