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Fiber Test Development for Ceramic Composite Thermomechanical Properties

机译:陶瓷复合材料热力学性能的纤维测试开发

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摘要

Many of the key thermomechanical tensile properties of continuous-fiber ceramic composites (CFCC), such as ultimate fast-fracture strength and long-term rupture strength, are controlled by the deformation and fracture properties of the reinforcing fibers. For this reason, research efforts are ongoing at NASA to develop fiber test procedures and composite property models that will allow use of the fiber data to accurately predict these CFCC strength properties for a variety of potential application conditions. Because of the current interest in two-dimensional woven composites, emphasis is being placed on the testing of single small-diameter fibers and single-ply fabrics. The primary objective of this paper is to review the status of these efforts. It is shown that the fabric tests and procedures need further development in order to use bundle strength theory to predict the fast-fracture strength of as-fabricated CFCC. On the other hand, the single-fiber tests using simple composite rupture models yield predictions in good agreement with available data for CFCC rupture strength at high temperatures.
机译:连续纤维陶瓷复合材料(CFCC)的许多关键热机械拉伸性能,例如最终的快速断裂强度和长期断裂强度,都由增强纤维的变形和断裂性能控制。因此,NASA正在进行研究工作,以开发纤维测试程序和复合材料特性模型,从而允许使用纤维数据准确预测各种潜在应用条件下的CFCC强度特性。由于当前对二维机织复合材料的关注,因此重点放在了单个小直径纤维和单层织物的测试上。本文的主要目的是回顾这些努力的现状。结果表明,织物测试和程序需要进一步发展,以利用束强度理论来预测预制CFCC的快速断裂强度。另一方面,使用简单的复合材料断裂模型进行的单纤维试验得出的预测结果与高温下CFCC断裂强度的可用数据吻合良好。

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