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INFLUENCE OF APPARATUS DESIGN AND TEST METHOD ON THE HIGH TEMPERATURE SOLID PARTICLE EROSION OF NIMONIC 80A

机译:装置设计及试验方法对尼苏径80A高温固体颗粒腐蚀的影响

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Work has been progressing over recent years to develop a standard test method for high temperature solid particle erosion testing. Early in 2015 this standard was published by ASTM as G211-14 Standard Test Method for Conducting Elevated Temperature Erosion Tests by Solid Particle Impingement Using Gas Jets. To support the development of this standard the European funded METROSION project has been conducting a comparison of different apparatus which employ different nozzle geometries, acceleration lengths, stand-off distances and heating and accelerating processes. The aim is to understand the influence these instrumental and experimental parameters have on the measured erosion rate and erosion mechanism. As part of this work three very distinct approaches have been compared using a common erodent and test pieces. Measurements have been performed at 600 °C with particle velocities of 50 to 320 m/s, using different stand-off distances, acceleration lengths and nozzle diameters for impact angles of 30 and 90°. This is the first time a comprehensive comparison of these parameters has been conducted and shows the relative influence of these experimental variables.
机译:近年来,工作已经进展,以开发用于高温固体粒子侵蚀测试的标准测试方法。 2015年初,本标准由ASTM公布,ASTM作为G211-14通过使用气体喷射通过固体颗粒冲击进行高温腐蚀试验的标准试验方法。为了支持本标准的发展,欧洲资助的融合项目一直进行不同的装置,该装置采用不同喷嘴几何形状,加速度长度,脱扣距离和加热和加速过程的不同装置。目的是了解这些仪器和实验参数对测量的侵蚀率和侵蚀机制的影响。作为这项工作的一部分,使用共同的腐蚀和测试件进行比较三种非常不同的方法。测量已经在600℃下进行,颗粒速度为50至320m / s,使用不同的脱扣距离,加速度长度和喷嘴直径,用于撞击角为30和90°。这是首次进行了这些参数的全面比较,并显示了这些实验变量的相对影响。

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