Wąsik Anna, Leszczyńska-Madej Beata, Madej Marcin
Department of Materials Science and Non Ferrous Metals Engineering, Faculty of Non Ferrous Metals, AGH University of Science and Technology, 30 Mickiewicza Ave., 30059 Cracow, Poland.
Department of Physical and Powder Metallurgy, Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, 30 Mickiewicza Ave., 30059 Cracow, Poland.
Materials (Basel). 2021 Aug 26;14(17):4846. doi: 10.3390/ma14174846.
The paper presents the results of a study of the microstructure and selected properties of silver-based composites reinforced with TiO nanoparticles, produced by the powder metallurgy method. Pure silver powders were mixed with TiO reinforcement (5 and 10 wt%) and 5 mm steel balls (100Cr6) for 270 min in a Turbula T2F mixer to produce a homogeneous mixture. The composites were made in a rigid die with a single-action compaction press under a pressure of 400 MPa and 500 MPa and then sintered under nitrogen atmosphere at 900 °C. Additionally, to improve the density and mechanical properties of the obtained sinters, double pressing and double sintering operations were conducted. As a result, compacts with a density of 90-94% were obtained. The microstructure of the sintered compacts consists of uniform grains, and the TiO reinforcement phase particles are located on the grain boundaries. There were no discontinuities at the Ag-TiO contact boundary, which was confirmed by SEM and TEM analysis. The use of a higher pressure had a positive effect on the hardness and flexural strength of the tested materials. It was found that the composites with 5 wt% TiO pressed under 500 MPa are characterized by the highest level of mechanical properties. The hardness of these composites is 57 HB, while the flexural strength is 163 MPa.
本文介绍了采用粉末冶金法制备的TiO纳米颗粒增强银基复合材料的微观结构和选定性能的研究结果。将纯银粉末与TiO增强体(5重量%和10重量%)以及5毫米钢球(100Cr6)在Turbula T2F混合器中混合270分钟,以制备均匀混合物。复合材料在刚性模具中通过单动压制压力机在400 MPa和500 MPa的压力下制成,然后在氮气气氛中于900℃烧结。此外,为了提高所得烧结体的密度和机械性能,进行了双压和双烧操作。结果,获得了密度为90 - 94%的压坯。烧结压坯的微观结构由均匀的晶粒组成,TiO增强相颗粒位于晶界上。Ag - TiO接触边界处没有不连续性,这通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析得到证实。使用较高的压力对测试材料的硬度和抗弯强度有积极影响。发现500 MPa压力下压制的含5重量% TiO的复合材料具有最高水平的机械性能。这些复合材料的硬度为57 HB,而抗弯强度为163 MPa。