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Effects of the Composition of Stainless Steel / Zirconium Dioxide Metal-Ceramic Composites on the Material Performance

机译:不锈钢/二氧化锆金属陶瓷复合材料组成对材料性能的影响

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摘要

Combining the properties of metals and ceramics is challenging, mostly due to differences in physical properties (e.g. thermal expansion) and the required processing conditions. Nonetheless, property profiles are achievable that neither pure component shows. Thus, new applications or improvements for existing ones may result. This work deals with the system 316L-ZrO_2 and the influence of the composition on the material performance. A thorough investigation of composites over the complete range of composition was carried out. The transition from particle composites to interpenetrating phase composites (IPCs) on both sides of the composition window could be correlated to percolation theory and the change of microstructure and material properties (hardness, compression and bending behaviour) was analysed. Some properties changed erratically, others more steadily, leading to interesting property combinations. Our study furthermore showed the possibility to use those composites in two- and three-component PIM parts, bearing great potential for positive substance joining during sintering.
机译:将金属和陶瓷的特性相结合具有挑战性,这主要是由于物理特性(例如热膨胀)和所需加工条件的差异。尽管如此,没有纯组件都可以实现属性配置文件。因此,可能会导致新的应用程序或对现有应用程序的改进。这项工作涉及系统316L-ZrO_2以及成分对材料性能的影响。对整个组成范围内的复合材料进行了全面研究。成分窗口两侧从颗粒复合物到互穿相复合物(IPC)的转变可能与渗流理论相关,并分析了微观结构和材料性能(硬度,压缩和弯曲行为)的变化。一些属性不稳定地变化,另一些则更稳定,从而导致有趣的属性组合。我们的研究进一步表明,在二组分和三组分PIM零件中使用这些复合材料的可能性,在烧结过程中具有积极的物质结合潜力。

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