Li Qiang, Zhan Guodong, Li Dong, He Duanwei, Moellendick Timothy Eric, Gooneratne Chinthaka P, Alalsayednassir Alawi G
Institute of Atomic and Molecular Physics, Sichuan University, Chengdu, 610065, China.
Key Laboratory of High Energy Density Physics and Technology of Ministry of Education, Sichuan University, Chengdu, 610065, China.
Sci Rep. 2020 Dec 16;10(1):22020. doi: 10.1038/s41598-020-79167-4.
Diamond is the hardest naturally occurring material found on earth but single crystal diamond is brittle due to the nature of catastrophic cleavage fracture. Polycrystalline diamond compact (PDC) materials are made by high pressure and high temperature (HPHT) technology. PDC materials have been widely used in several industries. Wear resistance is a key material property that has long been pursued for its valuable industrial applications. However, the inevitable use of catalysts introduced by the conventional manufacturing process significantly reduces their end-use performance and limits many of their potential applications. In this work, an ultra-strong catalyst-free polycrystalline diamond compact material has been successfully synthesized through innovative ultra-high pressure and ultra-high temperature (UHPHT) technology. These results set up new industry records for wear resistance and thermal stability for PDC cutters utilized for drilling in the oil and gas industry. The new material also broke all single-crystal diamond indenters, suggesting that the new material is too hard to be measured by the current standard single-crystal diamond indentation method. This represents a major breakthrough in hard materials that can expand many potential scientific research and industrial applications.
钻石是地球上发现的最坚硬的天然物质,但由于灾难性解理断裂的性质,单晶钻石很脆。聚晶金刚石复合片(PDC)材料是通过高温高压(HPHT)技术制成的。PDC材料已在多个行业中广泛使用。耐磨性是一种关键的材料特性,长期以来因其宝贵的工业应用而受到追求。然而,传统制造工艺中不可避免地使用催化剂会显著降低其最终使用性能,并限制其许多潜在应用。在这项工作中,通过创新的超高压和超高温(UHPHT)技术成功合成了一种超强无催化剂聚晶金刚石复合片材料。这些结果为石油和天然气行业钻井用PDC刀具的耐磨性和热稳定性创造了新的行业记录。这种新材料还打破了所有单晶金刚石压头,这表明新材料太硬,无法用当前标准的单晶金刚石压痕法测量。这代表了硬质材料领域的一项重大突破,可拓展许多潜在的科研和工业应用。