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Effective interface model for design and tailoring of WC-Co microstructures

机译:用于设计和定制WC-Co微结构的有效界面模型

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摘要

Interface structures are a key feature in developing modern composite material solutions with ever improved performance. We present a nano-microstructural modelling approach for the tungsten carbide (WC)-Co system which can include the interface structures of WC-Co and various other phases present in the microstructure, utilising a methodology which combines imaging-based and synthetically generated nano-microstructures into an effective interface model for predicting the behaviour and properties of the resulting composite material. The effective model comprises of a local model of the WC/Co interface interacting with a larger-scale model of the WC-Co microstructure. The results provide a linkage between the interface character of cemented carbide microstructures and their properties, for example with respect to compressive strength, fracture toughness and wear resistance. The methodology presents a multiscale formalism for carrying out performance and application-driven evaluation and tailoring of composite interfaces and mesostructures, carried out on the basis of the emerging engineering material properties.
机译:界面结构是开发性能不断提高的现代复合材料解决方案的关键特征。我们提供了一种结合了基于成像和合成生成的纳米级结构的方法,针对碳化钨(WC)-Co系统提供了一种纳米微观结构建模方法,该方法可以包括WC-Co与微观结构中存在的各种其他相的界面结构。微观结构转变成有效的界面模型,以预测所得复合材料的行为和性能。有效模型包括WC / Co界面的局部模型与WC-Co微观结构的大规模模型相互作用。结果提供了硬质合金微观结构的界面特性与其性能之间的联系,例如在抗压强度,断裂韧性和耐磨性方面。该方法提出了一种多尺度的形式主义,用于在新兴的工程材料特性的基础上进行性能和应用驱动的评估以及复合界面和介观结构的定制。

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