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Damage initiation and collapse behavior of unidirectional metal matrix composites at elevated temperatures

机译:单向金属基复合材料在高温下的破坏引发和破坏行为

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摘要

A two-dimensional micromechanical finite element model is developed to investigate the transverse behavior of SiC/Ti-6Al-4V metal matrix composite (MMC) at elevated service temperatures with a square representative volume element (RVE). The effects of various parameters such as manufacturing process thermal residual stress, fiber coating and interface damage are considered. Proper interface elements between fiber/coating (f/c) and coating/matrix (c/m) together with appropriate failure criteria are introduced to include interface damage in the model. A user defined subroutine is employed to implement interface failure. Predicted results show good agreement with the available experimental data at various elevated temperatures. Results reveal that initiation of f/c interface damage is the first failure mode and its sensitive to temperature mainly due to different residual stress states at higher temperatures. Furthermore, due to lower strengths of c/m interface and matrix at elevated temperatures, collapse stress of the composite decrease critically at elevated temperatures.
机译:建立了二维微机械有限元模型,研究了具有方形代表体积元素(RVE)的SiC / Ti-6Al-4V金属基复合材料(MMC)在高温下的横向行为。考虑了各种参数的影响,例如制造过程中的热残余应力,纤维涂层和界面损伤。引入了纤维/涂层(f / c)与涂层/基体(c / m)之间的适当界面元素以及适当的破坏准则,以将模型中的界面损伤包括在内。使用用户定义的子例程来实现接口故障。预测的结果表明,在不同的高温下,可用的实验数据吻合良好。结果表明,f / c界面损伤的引发是第一个失效模式,并且它对温度敏感,这主要是由于较高温度下的残余应力状态不同所致。此外,由于在高温下c / m界面和基体的强度较低,因此复合物的塌陷应力在高温下显着降低。

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