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首页> 外文期刊>Scientific reports. >Synergistic toughening of hard, nacre-mimetic MoSi2 coatings by self-assembled hierarchical structure
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Synergistic toughening of hard, nacre-mimetic MoSi2 coatings by self-assembled hierarchical structure

机译:通过自组装的分层结构对增韧的,类似珍珠质的MoSi 2 涂层进行增韧

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Like many other intermetallic materials, MoSi2 coatings are typically hard, but prone to catastrophic failure due to their low toughness at ambient temperature. In this paper, a self-assembled hierarchical structure that closely resembles that of nacre (i.e., mother of pearl) was developed in a MoSi2-based coating through a simple, yet cost-effective, depostion technique. The newly formed coating is tough and can withstand multiple indentations at high loads. Key design features responsible for this remarkable outcome were identified. They include a functionally graded multilayer featuring elastic modulus oscillation, varying sublayer thickness and a columnar structure that are able to attenuate stress concentrations; interlocking boundaries between adjacent sublayers that improve the bonding and arrest the cracks; a transitional layer that bridges the coating and substrate and facilitates load transfer. Moreover, the contributions of six important structural characteristics to damage resistance are quantified using finite elemnet analysis and in an additive manner (i.e., from low- to high-level complexity). The in-situ toughened coating is envisaged to enhance the mechanical performance and extend the lifespan of metal components used in safety-critical applications.
机译:像许多其他金属间材料一样,MoSi 2 涂层通常较硬,但由于其在环境温度下的低韧性而易于发生灾难性故障。在本文中,通过基于MoSi 2 的涂层,通过一种简单但具有成本效益的变位技术,开发了一种类似于珍珠母(即珍珠母)的自组装分层结构。 。新形成的涂层坚韧,可以承受高负荷下的多个压痕。确定了导致这种显着结果的关键设计特征。它们包括功能梯度的多层材料,具有弹性模量振荡,变化的亚层厚度和能够减弱应力集中的柱状结构。相邻子层之间的互锁边界,改善了粘结并阻止了裂纹;过渡层,桥接涂层和基材并促进负载转移。此外,使用有限元素分析并以累加的方式(即从低级到高级复杂性),量化了六个重要结构特性对抗损伤性的贡献。设想使用原位增韧涂层来增强机械性能并延长用于安全关键型应用中的金属部件的使用寿命。

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