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Manufacturing of Hard Composite Materials on Fe-Base with Oxide Particles

机译:用氧化物颗粒制造Fe-碱上的硬质复合材料

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Metal matrix composites (MMC) are often applied to tool surfaces to increase resistance to wear and tear. However, some matrix and particle materials such as Ni, Co, WC or TiC are expensive and partly classified as critical elements. With respect to tribo-mechanical properties, Fe-alloys reinforced with oxide particles are promising compound materials to produce wear-resistant MMC with low-cost and readily available materials. However, thus far the technical application of such MMCs is limited due to poor wettability of the oxides by Fe-base melts and an associated weak bonding between the oxide particles and the metal matrix phases. In this work two novel production techniques (namely pre-metallization and active sintering) are introduced, which improve the wettability and interfacial reactions between both materials and therefore enable supersolidus liquid-phase sintering (SLPS) of the MMC. For the first technique the oxide particles are pre-metallized by depositing a thin film of TiN on the surfaces. The second technique is called active sintering. For this technique the alloy design is adapted from active brazing, so that wettability of the oxide particles by the alloy-melt is increased. The resulting effects of these techniques are investigated using wetting and sintering experiments, and are analyzed with respect to the developed microstructures and interfacial reactions between the oxide particles and the < metallic phases.
机译:金属基质复合材料(MMC)通常应用于刀具表面以增加耐磨性和撕裂的抵抗力。然而,一些基质和颗粒材料如Ni,Co,Wc或TiC是昂贵的并且部分被归类为关键元件。关于摩擦机械性能,用氧化物颗粒加固的Fe-合金是具有低成本和容易获得的材料的耐磨MMC的复合材料。然而,因此,由于氧化物颗粒和金属基质相之间的氧化物的润湿性差和相关的弱键合,这种MMC的技术应用受到限制。在这项工作中,引入了两种新颖的生产技术(即金属预金属化和活性烧结),这改善了两种材料之间的润湿性和界面反应,因此可以使MMC的Supersolidus液相烧结(SLP)能够实现。对于第一技术,通过在表面上沉积薄膜薄膜来预先金属化氧化物颗粒。第二种技术称为主动烧结。对于该技术,合金设计适用于活性钎焊,因此通过合金熔体氧化物颗粒的润湿性增加。使用润湿和烧结实验研究了这些技术的所得效果,并相对于显影的微观结构和氧化物颗粒与<金属相之间的界面反应分析。

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