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Effect of Temperature on Microparticle Rebound Characteristics at Constant Impact Velocity

机译:温度对恒定冲击速度下微粒回弹特性的影响

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Many gas turbine engines operate in harsh environments where the engines ingest solid particles. Ingested particles accelerate the deterioration of engine components and reduce the engine's service life. Understanding particle impacts on materials used in gas turbines at representative engine conditions leads to improved designs for turbomachinery operating in particle-laden environments. Coefficient of Restitution (COR) is a measure of particle/wall interaction and is used to study erosion and deposition. In the current study, the effect of temperature (independent of velocity) on COR was investigated. Arizona Road Dust (ARD) of 20-40μm size was injected into a flow field to measure the effects of temperature and velocity on particle rebound. Target coupon materials used were 304 stainless steel and Hastelloy X. Tests were performed at three different temperatures, 300 K (ambient), 873 K, and 1073 K while the velocity of the flow field was held constant at 28 m/s. The impingement angle of the bulk sand on the coupon was varied from 30° to 80 ° for each temperature tested. The COR was found to decrease substantially from the ambient case to the 873 K and 1073 K cases. This decrease is believed to be due to the changes in the surface of both materials due to oxide layer formation which occurs as the target material is heated. The Hastelloy X material exhibits a larger decrease in COR than the stainless steel 304 material. The results are also compared to previously published literature.
机译:许多燃气涡轮发动机在恶劣的环境中运行,在这些环境中,发动机会吸收固体颗粒。摄入的颗粒会加速发动机部件的老化并缩短发动机的使用寿命。了解颗粒在代表性发动机工况下对燃气轮机中使用的材料的影响,可以改进在充满颗粒的环境中运行的涡轮机械的设计。恢复系数(COR)是颗粒/壁相互作用的量度,用于研究侵蚀和沉积。在当前的研究中,研究了温度(与速度无关)对COR的影响。将20-40μm大小的Arizona Road Dust(ARD)注入流场中,以测量温度和速度对颗粒回弹的影响。所使用的目标试样材料为304不锈钢和HastelloyX。在300 K(环境温度),873 K和1073 K这三种不同的温度下进行了测试,同时流场的速度保持恒定在28 m / s。对于每个测试温度,散砂在试样上的撞击角在30°至80°之间变化。发现从环境情况到873 K和1073 K情况,COR都显着降低。认为该减少是由于在加热目标材料时发生的氧化层形成而导致两种材料的表面变化的缘故。与不锈钢304材料相比,Hastelloy X材料的COR降低幅度更大。还将结果与以前发表的文献进行比较。

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