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Thermal stability in air of surface nitrided 3Y-TZP

机译:表面氮化3Y-TZP在空气中的热稳定性

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摘要

Surface nitriding can be optimised to protect 3 Y-TZP against hydrothermal degradation and at the same time to keep the mechanical properties of the surface and the bulk unchanged. However, thermal stability is a concern that can limit its use above room temperature. In this work, surface nitrided 3Y-TZP was heat treated in air at 200, 400, 600 and 800 °C for 8 h. Treatments up to 600 °C did not change microstructurc and Vickers hardness, but heating at 800 °C produced surface defects, inner cracks and grain decohesion, conducing to a dramatic decrease in mechanical strength. Heat treatments above 400 °C led to an increase of indentation fracture toughness and to a complete loss of the hydrothermal degradation resistance achieved by nitriding.
机译:可以对表面渗氮进行优化,以保护3 Y-TZP免受水热降解,同时保持表面和主体的机械性能不变。但是,热稳定性是一个问题,可能会限制其在室温以上的使用。在这项工作中,表面氮化的3Y-TZP在空气中于200、400、600和800°C热处理8小时。高达600°C的处理不会改变显微组织和维氏硬度,但在800°C加热会产生表面缺陷,内部裂纹和晶粒内聚,从而导致机械强度急剧下降。高于400°C的热处理会导致压痕断裂韧性提高,并导致氮化导致的水热降解性完全丧失。

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