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Self-Reinforced α-SiAlON Ceramics with Improved Damage Tolerance Developed by a New Processing Strategy

机译:通过新的加工策略开发的具有增强的耐损伤性的自增强α-SiAlON陶瓷

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摘要

Alpha-SiAlON ceramics with a refined self-reinforced micro-structure, i.e., containing acicular grains with dimensions much smaller than those obtained in previous studies, embedded in a matrix consisting of submicrometer-sized isotropic grains, were prepared by applying a rapid one-step sintering procedure. To suppress the overabundant formation of α-SiAION nuclei, a combination of stabilizing cations, Y + Yb, was used; to encourage formation of acicular α-SiAION grains, a small amount of an extra liquid (~3 vol%) was introduced; to avoid abnormal grain coarsening resulting from dynamic ripening, the final sintering temperature was set to just slightly above the minimum temperature threshold for activating grain growth (1700℃). The fully dense compacts obtained exhibited excellent thermal-shock resistance, and hardness and fracture toughness values of 20 GPa and 5.1 MPa·m~(1/2), respectively.
机译:通过应用快速的单晶制备一种具有精细的自增强微结构的Alpha-SiAlON陶瓷,即包含尺寸远小于先前研究中获得的尺寸的针状晶粒,并嵌入由亚微米级各向同性晶粒组成的基质中。烧结步骤。为了抑制α-SiAION核的过量形成,使用了稳定阳离子Y + Yb的组合。为了促进针状α-SiAION晶粒的形成,引入了少量的额外液体(〜3 vol%);为了避免由于动态熟化而导致晶粒异常变粗,最终的烧结温度应设置为略高于激活晶粒生长的最低温度阈值(1700℃)。得到的完全致密的压坯表现出优异的耐热冲击性,硬度和断裂韧性值分别为20 GPa和5.1 MPa·m〜(1/2)。

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