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首页> 外文期刊>Journal of the European Ceramic Society >Prediction of the functional properties of ceramic materials from composition using artificial neural networks
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Prediction of the functional properties of ceramic materials from composition using artificial neural networks

机译:使用人工神经网络从组成预测陶瓷材料的功能特性

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摘要

We describe the development of artificial neural networks (ANN) for the prediction of the properties of ceramic materials. The ceramics studied here include polycrystalline, inorganic, non-metallic materials and are investigated on the basis of their dielectric and ionic properties. Dielectric materials are of interest in telecommunication applications, where they are used in tuning and filtering equipment. Ionic and mixed conductors are the subjects of a concerted effort in the search for new materials that can be incorporated into efficient, clean electrochemical devices of interest in energy production and greenhouse gas reduction applications. Multi-layer perceptron ANNs are trained using the back-propagation algorithm and utilise data obtained from the literature to learn composition-property relationships between the inputs and outputs of the system. The trained networks use compositional information to predict the relative permittivity and oxygen diffusion properties of ceramic materials. The results show that ANNs are able to produce accurate predictions of the properties of these ceramic materials, which can be used to develop materials suitable for use in telecommunication and energy production applications.
机译:我们描述了用于预测陶瓷材料性能的人工神经网络(ANN)的发展。此处研究的陶瓷包括多晶,无机,非金属材料,并根据其介电和离子特性对其进行了研究。电介质材料在电信应用中令人关注,在电信应用中,它们被用于调谐和滤波设备。离子导体和混合导体是寻求新材料的共同努力的目标,这些新材料可以被并入能源生产和温室气体减排应用中感兴趣的高效,清洁的电化学装置中。多层感知器人工神经网络使用反向传播算法进行训练,并利用从文献中获得的数据来学习系统输入和输出之间的组成属性关系。受过训练的网络使用成分信息来预测陶瓷材料的相对介电常数和氧扩散特性。结果表明,人工神经网络能够准确预测这些陶瓷材料的性能,从而可用于开发适用于电信和能源生产应用的材料。

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