Sm2O3 稀土氧化物掺杂 Al2O3 陶瓷的微观结构和挠曲强度研究:体积比和烧结温度的影响

Seda Taşdemi̇r, Betül Kafkaslıoğlu Yıldız, Elif Işik, Yahya Tür
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摘要

研究了不同烧结温度下低量(0、0.1、0.3、0.5、0.8、1、2vol%)Sm2O3 对 Al2O3 的致密化、微观结构和弯曲强度的影响。采用球磨法混合 Sm2O3 和 Al2O3 粉末,在 1550°C 和 1600°C/2 小时的空气中分别进行无压烧结前,采用干法和冷等静压法制备盘状 Al2O3-Sm2O3 陶瓷。Sm2O3 与 Al2O3 反应生成 SmAlO3。0.8% 和 1vol% 的 Sm2O3 在 1600°C 烧结时一般能形成棒状的 SmAlO3 形态,而在 1550°C 烧结的样品中棒状形态更为明显。在两种烧结温度下,所有 Sm2O3 比率的样品都达到了相似的相对密度,但在 1550°C 下烧结的 Al2O3 比在 1600°C 下烧结的 Al2O3 密度更高。两者的强度值接近,但在 1600°C 下烧结的含 0.5 Vol% Sm2O3 陶瓷的强度提高了约 5%,原因是其致密化程度高于 Al2O3。在 1550°C 下烧结时,当 Sm2O3 的比例超过 0.1 Vol% 时,强度明显下降。添加一定量的 Sm2O3 对 Al2O3 的机械性能没有显著影响,但却改变了微观结构。
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Sm2O3 Nadir Toprak Oksit Katkılı Al2O3 Seramiklerinin Mikro Yapısının ve Eğilme Dayanımının İncelenmesi: Hacim Oranlarının ve Sinterleme Sıcaklıklarının Etkisi
The effects of low amounts (0, 0.1, 0.3, 0.5, 0.8, 1, 2vol%) of Sm2O3 on the densification, microstructure, and bending strength of Al2O3 were studied for different sintering temperatures. Sm2O3 and Al2O3 powders were mixed by ball milling, and Al2O3-Sm2O3 ceramics were prepared by dry and cold isostatic pressing in disc form before pressureless sintering at 1550°C and 1600°C/2 h in the air, separately. Sm2O3 reacted with Al2O3 by forming SmAlO3. The rod-like morphology of the SmAlO3 was generally achieved for 0.8 and 1vol% Sm2O3 for sintering at 1600°C, whereas the rod-like form was more obvious for the samples sintered at 1550°C. Similar relative densities were attained for all Sm2O3 ratios at both sintering temperatures, but the Al2O3 sintered at 1550°C exhibited higher densification than the Al2O3 sintered at 1600°C. The strength values were close, while a strength increase of about 5% was obtained for 0.5 vol% Sm2O3 containing ceramics sintered at 1600°C caused by the higher densification compared to the Al2O3. The strength showed a prominent drop above the ratio of 0.1 vol% Sm2O3 for sintering at 1550°C. The addition of present amounts of Sm2O3 did not have a significant effect on the mechanical properties of Al2O3 but it changed the microstructure.
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