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Relative sliding durability of two candidate high temperature oxide fiber seal materials

机译:两种候选高温氧化物纤维密封材料的相对滑动耐久性

摘要

A test program to determine the relative sliding durability of two candidate ceramic fibers for high temperature sliding seal applications is described. Pin on disk tests were used to evaluate potential seal materials. Friction during the tests and fiber wear, indicated by the extent of fibers broken in a test bundle or yarn, was measured at the end of a test. In general, friction and wear increase with test temperature. This may be due to a reduction in fiber strength, a change in the surface chemistry at the fiber/counterface interface due to oxidation, adsorption and/or desorption of surface species and, to a lesser extent, an increase in counterface surface roughness due to oxidation at elevated temperatures. The relative fiber durability correlates with tensile strength indicating that tensile data, which is more readily available than sliding durability data, may be useful in predicting fiber wear behavior under various conditions. A simple model developed using dimensional analysis shows that the fiber durability is related to a dimensionless parameter which represents the ratio of the fiber strength to the fiber stresses imposed by sliding.
机译:描述了一种测试程序,该程序可以确定两种候选陶瓷纤维在高温滑动密封应用中的相对滑动耐久性。盘上销钉测试用于评估潜在的密封材料。在测试结束时测量测试期间的摩擦和纤维磨损,以测试束或纱线中纤维断裂的程度表示。通常,摩擦和磨损会随着测试温度的增加而增加。这可能是由于纤维强度的降低,由于表面物质的氧化,吸附和/或解吸附导致的纤维/表面界面处的表面化学变化以及(在较小程度上)由于在高温下氧化。相对纤维耐久性与抗张强度相关,表明比滑动耐久性数据更容易获得的抗张数据可用于预测各种条件下的纤维磨损行为。使用尺寸分析开发的简单模型显示,纤维耐久性与无量纲参数有关,该无量纲参数表示纤维强度与因滑动而施加的纤维应力之比。

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