首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.1; 20070514-17; Montreal(CA) >LIFE PREDICTION BASED ON MATERIAL STATE CHANGES IN CERAMIC MATRIX COMPOSITE MATERIALS
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LIFE PREDICTION BASED ON MATERIAL STATE CHANGES IN CERAMIC MATRIX COMPOSITE MATERIALS

机译:基于材料状态变化的陶瓷基复合材料寿命预测

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Monolithic ceramics and continuous fiber reinforced ceramic composites are being developed for use in high temperature applications such as combustor liners in gas turbines, thrust deflectors for jet engines, and thruster nozzles. Ceramic composite materials possess the high temperature resistance properties of ceramics, but have better creep and cyclic properties. However, the properties of these materials change somewhat with time at service temperatures, I.e., their material state changes as a function of service conditions and history. The authors have developed a methodology for representing and combining the effects of high temperature material state changes in CMCs, along with changes in applied stress / strain conditions during service, to estimate remaining strength and life of ceramic composite materials and components. Fatigue, creep rupture, and time dependent deformation are combined by a strength metric in integral form to create a time-resolved, point-wise estimate of current remaining strength and life in material elements. Application of this methodology in discrete element representations of mechanical behavior of structural elements with nonuniform stress / strain states has been implemented.
机译:正在开发用于高温应用的整体陶瓷和连续纤维增强陶瓷复合材料,例如燃气轮机的燃烧室衬套,喷气发动机的推力偏转器和推进器喷嘴。陶瓷复合材料具有陶瓷的耐高温性能,但具有更好的蠕变和循环性能。但是,这些材料的性能在使用温度下会随时间变化,即它们的材料状态会根据使用条件和使用历史而变化。作者已经开发出一种方法来表示和组合CMC中高温材料状态变化的影响,以及在使用过程中施加的应力/应变条件的变化,以估算陶瓷复合材料和组件的剩余强度和寿命。疲劳,蠕变断裂和与时间有关的变形通过强度度量以整体形式组合在一起,以创建时间分辨的,逐点估算的材料元素中当前剩余强度和寿命的方法。该方法在具有非均匀应力/应变状态的结构元件的机械行为的离散元件表示中的应用已经实现。

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