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首页> 外文期刊>Nature Communications >Strain response of thermal barrier coatings captured under extreme engine environments through synchrotron X-ray diffraction
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Strain response of thermal barrier coatings captured under extreme engine environments through synchrotron X-ray diffraction

机译:通过同步加速器X射线衍射在极端发动机环境下捕获的隔热涂层的应变响应

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摘要

The mechanical behaviour of thermal barrier coatings in operation holds the key to under-standing durability of jet engine turbine blades. Here we report the results from experiments that monitor strains in the layers of a coating subjected to thermal gradients and mechanical loads representing extreme engine environments. Hollow cylindrical specimens, with electron beam physical vapour deposited coatings, were tested with internal cooling and external heating under various controlled conditions. High-energy synchrotron X-ray measurements captured the in situ strain response through the depth of each layer, revealing the link between these conditions and the evolution of local strains. Results of this study demonstrate that variations in these conditions create corresponding trends in depth-resolved strains with the largest effects displayed at or near the interface with the bond coat. With larger temperature drops across the coating, significant strain gradients are seen, which can contribute to failure modes occurring within the layer adjacent to the interface.
机译:隔热涂层在运行中的机械性能是维持喷气发动机涡轮叶片耐久性的关键。在这里,我们报告了来自监测涂层涂层各层中的应变的实验结果,这些涂层经受了代表极端发动机环境的热梯度和机械载荷。在各种受控条件下,通过内部冷却和外部加热测试了带有电子束物理气相沉积涂层的空心圆柱试样。高能同步加速器X射线测量通过每个层的深度捕获了原位应变响应,揭示了这些条件与局部应变演变之间的联系。这项研究的结果表明,在这些条件下的变化会在深度分辨应变中产生相应的趋势,并在粘结层界面处或附近显示出最大的影响。随着涂层上较大的温度下降,可以看到明显的应变梯度,这可能会导致在与界面相邻的层内发生破坏模式。

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