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Towards a new non-destructive-evaluation of coating-substrate adhesion by laser-ultrasounds

机译:通过激光超声波朝着涂层基板粘附的新的非破坏性评价

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The aim of the present study is to investigate the potentiality of using laser ultrasonics for the estimation of the practical adhesion of transparent coatings (Al{sub}2O{sub}3 80 μm-340 μm), deposited onto stainless steel substrates by atmospheric plasma spraying (APS). Using an already validated model adapted to a two-layers structure suitable to calculate the in- and out-of-plane components of the mechanical displacement versus time, the interfacial stress field is computed versus the absorbed laser-energy and especially for the critical value corresponding to the interfacial fracture. A complete contactless system is used to validate the computations, using a Q-switched Nd:YAG laser coupled with a heterodyne interferometer. Therefore, the adhesion has been determined, showing that this study (i) leads to the entire stress-tensor components; (ii) gives consistent results compared to other methods; (iii) yields to a new approach of the interfacial failure mechanisms.
机译:本研究的目的是探讨使用激光超声波估计透明涂层的实际粘合性的潜在性(Al {次} 2O}380μm-340μm),通过大气等离子体沉积在不锈钢基板上喷涂(AP)。使用适用于两层结构的已经验证的模型适于计算机械位移与时间的接口和外平面分量,计算界面应力场与吸收的激光能量,尤其是临界值对应界面骨折。使用完整的非接触式系统用于使用Q开关的ND:YAG激光器与外差干涉仪联合来验证计算。因此,已经确定了粘附性,表明该研究(I)导致整个应力张量组分; (ii)与其他方法相比,给出一致的结果; (iii)产生界面失效机制的新方法。

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