Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
Department of Materials Science and Engineering, University of California, Berkeley, CA, 94720, USA.
Small. 2019 Aug;15(31):e1900573. doi: 10.1002/smll.201900573. Epub 2019 May 27.
Many natural materials present an ideal "recipe" for the development of future damage-tolerant lightweight structural materials. One notable example is the brick-and-mortar structure of nacre, found in mollusk shells, which produces high-toughness, bioinspired ceramics using polymeric mortars as a compliant phase. Theoretical modeling has predicted that use of metallic mortars could lead to even higher damage-tolerance in these materials, although it is difficult to melt-infiltrate metals into ceramic scaffolds as they cannot readily wet ceramics. To avoid this problem, an alternative ("bottom-up") approach to synthesize "nacre-like" ceramics containing a small fraction of nickel mortar is developed. These materials are fabricated using nickel-coated alumina platelets that are aligned using slip-casting and rapidly sintered using spark-plasma sintering. Dewetting of the nickel mortar during sintering is prevented by using NiO-coated as well as Ni-coated platelets. As a result, a "nacre-like" alumina ceramic displaying a resistance-curve toughness up to ≈16 MPa m with a flexural strength of ≈300 MPa is produced.
许多天然材料为未来开发耐损伤轻量结构材料提供了理想的“配方”。一个值得注意的例子是珍珠层的砖-泥结构,存在于软体动物的壳中,它使用聚合泥作为柔顺相来生产高韧性、仿生陶瓷。理论模型预测,使用金属泥可以使这些材料具有更高的耐损伤性,尽管将金属熔化渗透到陶瓷支架中是很困难的,因为它们不能轻易地润湿陶瓷。为了避免这个问题,开发了一种替代的(“自下而上”)方法来合成含有少量镍泥的“珍珠层状”陶瓷。这些材料是使用镍涂层氧化铝薄片通过 slip-casting 进行排列,并使用火花等离子体烧结快速烧结而成。通过使用 NiO 涂层和 Ni 涂层薄片来防止烧结过程中镍泥的去湿。结果,生产出一种“珍珠层状”氧化铝陶瓷,其阻力曲线韧性高达约 16 MPa m,弯曲强度约为 300 MPa。