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仿生珍珠母层状氧化铝与由火花等离子烧结制备的 compliant 金属镍相。

Bioinspired Nacre-Like Alumina with a Metallic Nickel Compliant Phase Fabricated by Spark-Plasma Sintering.

机构信息

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.

Department of Materials Science and Engineering, University of California, Berkeley, CA, 94720, USA.

出版信息

Small. 2019 Aug;15(31):e1900573. doi: 10.1002/smll.201900573. Epub 2019 May 27.

Abstract

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.

摘要

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。

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