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PREPARATION AND PROPERTIES OF STABLE DYSPROSIUM-DOPED ALPHA-SIALON CERAMICS

机译:稳定掺D的Alpha-Sialon陶瓷的制备及性能

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摘要

Dense ceramics with overall compositions DyxSi12-4.5xAl4.5xO1.5xN16-1.5x, where 0.2 less than or equal to x less than or equal to 1.0, along the Si3N4-Dy2O3 . 9AlN tie line were prepared by hot-pressing at 1800 degrees C. The dysprosium-doped alpha-sialon phase formed in the composition range 0.3 less than or equal to x less than or equal to 0.7. Sintered materials of different compositions were post-heat-treated at temperatures in the range 1300-1750 degrees C for different times and it was shown that the Dy-alpha-sialon phase is stable over a large temperature interval and during heat treatment times up to 30 days. Unlike corresponding neodymium- and samarium-doped alpha-sialons, dysprosium-doped alpha-sialon does not decompose into beta-sialon and rare-earth-rich grain-boundary phase(s) at temperatures below 1550 degrees C. The alpha-phase can coexist with a liquid phase at temperatures greater than or equal to 1550 degrees C and with the Dy-M'-phase (Dy2Si3-xAlxO3+xN4-x) at lower temperatures. When heat treated at 1450 degrees C, any residual liquid grain-boundary phase reacted with minor amounts of the alpha-sialon phase and devitrified to Dy-M'-phase, yielding a glassy phase-free material. The Dy-M'-phase formed had the maximum aluminium substitution, i.e. x approximate to 0.7. Dysprosium-doped alpha-sialon exhibited very high hardness (H-v10=22 GPa) and a fracture toughness of 4.5 MPam(1/2), and the hardness and toughness decreased only slightly after devitrification of the glassy phase. Some elongated alpha-sialon grains were formed at high x values in glassy phase-containing materials, but their presence did not affect the toughness significantly. [References: 24]
机译:沿着Si 3 N 4 -Dy 2 O 3具有总体组成为DyxSi12-4.5xAl4.5xO1.5xN16-1.5x的致密陶瓷,其中0.2小于或等于x小于或等于1.0。通过在1800℃下热压来制备9AlN连接线。形成的-掺杂的α-赛隆相的组成范围为0.3≤x≤0.7。对不同成分的烧结材料在1300至1750摄氏度的温度下进行了不同时间的后热处理,结果表明,Dy-α-赛隆相在较大的温度区间内以及在直至30天。与相应的掺钕和掺alpha的α-赛隆不同,掺s的α-赛隆在低于1550摄氏度的温度下不会分解成β-赛隆和富稀土的晶界相。α相可以在高于或等于1550摄氏度的温度下与液相共存,在较低温度下与Dy-M'相(Dy2Si3-xAlxO3 + xN4-x)共存。当在1450摄氏度下进行热处理时,任何残留的液态晶界相都会与少量的α-赛隆相反应并失透成Dy-M'相,从而生成无玻璃相的材料。形成的Dy-M′相具有最大的铝取代,即,x近似为0.7。掺alpha的α-赛隆具有非常高的硬度(H-v10 = 22 GPa)和4.5 MPam(1/2)的断裂韧性,并且在玻璃态失透后硬度和韧性仅略有下降。在含玻璃相的材料中,一些拉长的α-赛隆晶粒以高x值形成,但它们的存在并未显着影响韧性。 [参考:24]

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