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Interaction between cyclic loading and residual stresses in titanium matrix composites

机译:钛基复合材料循环载荷与残余应力之间的相互作用

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摘要

Metal matrix composites are gaining popularity for applications where high performance materials are needed. Titanium matrix composites (TMCs) continuously reinforced by silicon carbide fibres are under development for applications in aeroengines. Their use in blades, rings and shafts promises a significant weight reduction and performance improvement due to their high specific strength and stiffness. To obtain the whole capabilities of the material not only advanced processing techniques but also post-processing treatments are necessary. A detailed analysis of the residual stress development during cyclic loading leads to the necessity of residual stress modifications to optimise the fatigue behaviour of TMCs. Since the aerospace industry requires high reliability of the materials used, models for predicting failure and life time are of special interest. Predictive models based on the properties of the single constituents of the composite are most suitable to reduce the number of experiments and to develop methodologies to improve specific mechanical properties. Nevertheless, both experiments on the single constituents as well as on the composite are necessary to validate the model. A previously developed rheological model is used to assess different post-processing procedures to improve the fatigue behaviour of a titanium matrix composite. The usage of the model and experiments on the system SCS-6/Ti-6Al-2Sn-4Zr-2Mo are presented.
机译:金属基复合材料在需要高性能材料的应用中越来越受欢迎。由碳化硅纤维连续增强的钛基复合材料(TMC)正在开发中,用于航空发动机。由于它们的高比强度和刚度,它们在叶片,环和轴中的使用有望显着减轻重量并提高性能。为了获得材料的全部功能,不仅需要先进的加工技术,而且还需要后加工处理。对循环载荷过程中残余应力发展的详细分析导致必须修改残余应力以优化TMC的疲劳性能。由于航空航天工业要求使用的材料具有高度的可靠性,因此特别需要模型来预测故障和使用寿命。基于复合材料单一成分特性的预测模型最适合减少实验次数并开发改善特定机械性能的方法。尽管如此,对单个成分以及对复合物的两个实验都是验证模型所必需的。先前开发的流变模型用于评估不同的后处理程序,以改善钛基复合材料的疲劳性能。介绍了该模型在系统SCS-6 / Ti-6Al-2Sn-4Zr-2Mo上的用法和实验。

著录项

  • 来源
    《Journal of Materials Science》 |2004年第2期|501-509|共9页
  • 作者单位

    Institute of Materials Research DLR—German Aerospace Center;

    Institute of Materials Research DLR—German Aerospace Center;

    Institute of Materials Research DLR—German Aerospace Center;

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  • 正文语种 eng
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