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Fracture toughness measurements of plasma-sprayed thermal barrier coatings using a modified four-point bending method

机译:使用改进的四点弯曲方法测量等离子喷涂热障涂层的断裂韧性

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摘要

In this study, the adhesion strength of thermal barrier coatings 8YSZ (ZrO_2+8wt.% Y_2O_3) deposited on NiCrAlY bond coats by atmospheric plasma spraying is investigated experimentally. A modified four-point bending specimen that can generate a single interface crack to facilitate the control of crack growth was adopted for testing. The fracture surfaces were examined using a scanning electron microscope. Images show that cracks are initiated along YSZ/NiCrAlY interfaces, then kink and grow uniformly within the YSZ layer. The load-displacement curves obtained indicate three distinct stages in crack initiation and stable crack growth. Based on a microstructural model, finite element analyses were performed to extract the bonding strength of the thermal barrier coatings. The fracture toughness of the plasma-sprayed 8YSZ coatings, in terms of critical strain energy release rate G_c, can be reliably obtained from an analytical solution or from a numerical simulation of the cracking process using compliance methods.
机译:在这项研究中,实验研究了通过大气等离子体喷涂沉积在NiCrAlY粘结涂层上的热障涂层8YSZ(ZrO_2 + 8wt。%Y_2O_3)的粘附强度。试验采用了改进的四点弯曲试样,该试样可以产生单个界面裂纹,以利于控制裂纹扩展。使用扫描电子显微镜检查断裂表面。图像显示裂纹沿着YSZ / NiCrAlY界面引发,然后在YSZ层内扭结并均匀生长。获得的载荷-位移曲线表明了裂纹萌生和稳定裂纹扩展的三个不同阶段。基于微观结构模型,进行了有限元分析以提取隔热涂层的结合强度。等离子体喷涂的8YSZ涂层的断裂韧性,就临界应变能释放速率G_c而言,可以从解析解决方案或使用顺应性方法对裂化过程进行数值模拟的过程中可靠地获得。

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