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Thermal shock behaviour of angle-ply and woven dense ceramic-matrix composites

机译:角铺层和编织致密陶瓷基复合材料的热冲击行为

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摘要

The behaviour of two Nicalon/calcium aluminosilicate ceramic composite laminates (a (±45°)3s and a plain-weave woven) under conditions of thermal shock has been studied. Test specimens heated at various temperatures were quenched into room-temperature water. This was followed by detailed damage characterisation. In addition, post-shock mechanical properties were assessed by tensile tests (for the woven laminate) and flexural tests (for both laminates). Both materials were found to have comparable thermal shock resistance. Crack morphologies comprised matrix cracks of various orientations that exhibited similar characteristics to those described for thermally shocked cross-ply laminates with the same constituents, but cracking was found to be less widespread in the woven laminate. Fibre breaks were also detected on the woven material when high-temperature degradation of the fibre–matrix interface was present. A gradual reduction in properties (stiffness, proportional limit stress, fracture strength) of thermally shocked specimens was identified, which began at larger shocks than those at which thermal shock damage initiated. This was attributed to the extension of some matrix cracks into the bulk of material.
机译:研究了两种Nicalon /钙铝硅酸盐陶瓷复合层压板(a(±45°) 3s 和平纹编织物)在热冲击条件下的行为。将在各种温度下加热的试样在室温水中淬火。接下来是详细的损坏特征分析。此外,通过拉伸试验(对于编织层压板)和挠曲试验(对于两种层压板)评估了震后的机械性能。发现两种材料都具有可比的耐热冲击性。裂纹形态包括具有不同方向的基体裂纹,这些基体裂纹表现出与具有相同成分的热冲击交叉层板层压板所描述的特征相似的特性,但发现裂纹在机织层压板中分布不大。当纤维-基体界面发生高温降解时,还可以在机织材料上检测到纤维断裂。可以确定热冲击试样的性能(刚度,比例极限应力,断裂强度)逐渐降低,这种冲击始于比热冲击破坏所引发的冲击更大的冲击。这归因于一些基体裂纹扩展到大部分材料中。

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