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High Strength and High Toughness Anisotropic Silicon Nitrides Fabricated by Forging Technique

机译:锻造技术制备高强度高韧性各向异性氮化硅

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摘要

Grain alignment control to make anisotropic microstructure is one of the most promising techniques to achieve superior mechanical properties in specific directions. Anisotropic silicon nitrides, which were fabricated by a forging technique, can show superior mechanical properties at room temperature as well as at elevated temperatures. A sinter-forged silicon nitride with yttria and alumina additives exhibited very high strength of 2.1GPa at room temperature, meanwhile that with lutetia additive showed high strength of 700MPa at 1500℃. Anisotropic silicon nitrides are also advantageous to achieve higher fracture energy. Such silicon nitrides can show 3~5 times higher fracture energy than isotropic ones. Sinter-forging technique is also applicable to fabricate porous anisotropic silicon nitrides. In this paper, fabrication and mechanical properties of anisotropic silicon nitrides are briefly described.
机译:晶粒取向控制以制造各向异性的微观结构是在特定方向上实现卓越机械性能的最有前途的技术之一。通过锻造技术制造的各向异性氮化硅可以在室温以及高温下显示出优异的机械性能。具有氧化钇和氧化铝添加剂的烧结锻造氮化硅在室温下具有非常高的2.1GPa强度,而具有褐铁矿添加剂的氮化硅在1500℃下具有700MPa的高强度。各向异性氮化硅也有利于获得更高的断裂能。此类氮化硅的断裂能比各向同性氮化硅高3至5倍。烧结锻造技术也可用于制造多孔各向异性氮化硅。在本文中,简要描述了各向异性氮化硅的制备和力学性能。

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