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Surface modification of 3Y-TZP with cerium oxide

机译:氧化铈对3Y-TZP的表面改性

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摘要

Surface modification with cerium oxide of tetragonal zirconia polycrystals stabilized with 3 mol.% yttria (3Y-TZP) was carried out in order to improve the resistance to low temperature degradation. Specimens were coated with pressed CeO_2 powder and then annealed at 1400 °C and 1500 °C for periods of up to 10 h. Similar treatments were performed in specimens coated with a sub-micron CeO_2 layer by means of magnetron sputtering. Cerium penetration in the surface modified specimens is about 10 pjn into the bulk and the grain size increases in the surface layer affected by cerium diffusion. The indentation bulk fracture toughness and Vickers hardness are not affected by the surface modification treatments. Berkovich nanoindentation was performed to observe the contact hardness and elastic modulus at the surface, showing no significant difference after surface modification. Surface modification with ceria induces a large increase in the resistance to hydrothermal ageing without impairing mechanical properties.
机译:为了提高对低温降解的耐受性,对氧化锆进行了表面改性,该氧化锆以3摩尔%的氧化钇(3Y-TZP)稳定了四方氧化锆多晶。用压制的CeO_2粉末涂覆样品,然后在1400°C和1500°C下退火长达10小时。通过磁控溅射在涂有亚微米CeO_2层的样品中进行了类似的处理。铈在经过表面改性的样品中的渗透量约为10 pjn,并且在受铈扩散影响的表层中晶粒尺寸增大。压痕的整体断裂韧性和维氏硬度不受表面改性处理的影响。进行Berkovich纳米压痕观察表面的接触硬度和弹性模量,表面改性后无明显差异。用二氧化铈进行表面改性可在不损害机械性能的情况下大大提高其对水热老化的抵抗力。

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