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Mechanical Characterisation of thermal barrier coatings using a micro-indentation instrumented technique

机译:使用微压痕仪表技术的热阻挡涂层的机械表征

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An original instrumented microindenter capable of testing materials up to 1000°C in an inert atmosphere has been developed. The method of neural networks is used to solve the inverse problem, in order to determine the constitutive equation of the materials tested. To obtain a data basis for the training and validation of the neural network, finite element simulations were carried out for various sets of material parameters. To reduce the number of simulations a representative sampling of the loading-strain responses is performed using an unsupervised network, so-called self-organizing map.
机译:开发了一种能够在惰性气氛中测试高达1000°C的材料的原始仪器微导入剂。神经网络的方法用于解决逆问题,以便确定测试的材料的本构体方程。为了获得神经网络训练和验证的数据依据,对各种材料参数进行有限元模拟。为了减少模拟次数,使用无监督网络,所谓的自组织地图进行负载应变响应的代表性采样。

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