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Processing, spark plasma sintering, and mechanical behavior of alumina/titanium composites

机译:氧化铝/钛复合材料的加工,火花等离子体烧结和机械性能

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摘要

This paper focuses on the study of the processing and mechanical properties, (flaw tolerance and R-curve behavior) of alumina-titanium ceramic-metal composites produced by spark plasma sintering. In order to obtain homogenously dispersed composites, a rheological study was carried out by measuring the flow behavior in different conditions of solid content, amount of dispersant and shear stress. It has been found that, with the suitable conditions (80 wt% solids and 3 wt% deflocculant), a ceramic-metal homogeneously dispersed (Al_2O_3-Ti) composite can be obtained. After sintering, the composites were mechanically tested and the cermet showed an important improvement in the flaw tolerance and R-curve behavior when compared with the monolithic material. It has been demonstrated by scanning electronic microscopy that this improvement is a consequence of the reinforcement mechanisms provided by the metallic particles that interact with the crack producing a notable increase in toughness up to ~8 MPa m~(1/2).
机译:本文着重研究火花等离子体烧结制备的氧化铝-钛陶瓷-金属复合材料的加工和力学性能(缺陷容限和R曲线行为)。为了获得均匀分散的复合材料,通过测量固体含量,分散剂量和剪切应力在不同条件下的流动行为进行了流变学研究。已经发现,在合适的条件下(80重量%的固体和3重量%的抗絮凝剂),可以获得陶瓷-金属均匀分散的(Al_2O_3-Ti)复合材料。烧结后,对复合材料进行机械测试,与单块材料相比,金属陶瓷在抗裂性和R曲线性能方面显示出重要的改进。通过扫描电子显微镜已经证明,这种改进是由与裂纹相互作用的金属颗粒提供的增强机制的结果,所述金属颗粒产生了高达〜8MPa m〜(1/2)的韧性的显着增加。

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