Khabashesku Valery N, Filonenko Vladimir P, Bagramov Rustem K, Zibrov Igor P
Department of Materials Science and Nanoengineering, Rice University, Houston, TX 77005, USA.
Vereshchagin Institute of High Pressure Physics RAS, 142190 Moscow, Russia.
Materials (Basel). 2022 Jul 15;15(14):4936. doi: 10.3390/ma15144936.
Improving the operating performance of superhard composites is an important and urgent task, due to a continuing industrial need. In this work, diamond composites with high wear resistance were obtained by sintering fluorinated mixtures of micron-sized diamonds with nanodiamonds at high pressures and temperatures (7-8 GPa, 1550-1700 °C). Aluminum and cobalt powders were added to the diamond mixture to activate the process. The external infiltration of nickel into the diamond layer was carried out additionally during the sintering process, and the effects of nickel infiltration on the structure and properties of composites were studied. The metal melt ensured the mass transfer of carbon within a volume, and the formation of a strong diamond framework. The composition of the additives was selected in such a way that the binding phase became ultimately composed of the intermetallic AlNiCo(x ≤ 1). The Young's modulus of composites synthesized in this way had a value of 850 GPa, and their wear resistance when turning white granite was more than twice as high as that of premium commercial PDC. The obtained results thus demonstrate that by using nickel to increase melt infiltration into diamond-based composites, the mechanical properties of Al/Co/fluorinated diamond compositions, studied previously, can be further improved.
由于工业需求持续存在,提高超硬复合材料的操作性能是一项重要且紧迫的任务。在这项工作中,通过在高压和高温(7 - 8 GPa,1550 - 1700°C)下烧结微米级金刚石与纳米金刚石的氟化混合物,获得了具有高耐磨性的金刚石复合材料。向金刚石混合物中添加铝粉和钴粉以激活该过程。在烧结过程中额外进行镍向金刚石层的外部渗透,并研究了镍渗透对复合材料结构和性能的影响。金属熔体确保了碳在体积内的质量传递以及强金刚石骨架的形成。添加剂的组成选择方式使得结合相最终由金属间化合物AlNiCo(x≤1)组成。以这种方式合成的复合材料的杨氏模量值为850 GPa,并且它们在车削白色花岗岩时的耐磨性比优质商用聚晶金刚石(PDC)高出两倍多。因此,所得结果表明,通过使用镍来增加熔体对金刚石基复合材料的渗透,可以进一步改善先前研究的Al/Co/氟化金刚石组合物的机械性能。