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碳化钛颗粒尺寸对原位生成的碳化钛/镍复合材料抗氧化性能的影响

Effect of particles size of TiC on oxidation resistance of in-situ TiC/Ni composite.

作者信息

Zhao Ziyan, Zheng Kaiyue, Yu Xianghui, Wang Lujie, Yao Shuyu, Qi Qian

机构信息

School of Materials Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, Shandong, China.

State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

Heliyon. 2023 Jul 13;9(7):e18220. doi: 10.1016/j.heliyon.2023.e18220. eCollection 2023 Jul.

Abstract

The oxidation resistance of TiC/Ni composites is crucial for its application in high-temperature oxidation environment. The in-situ TiC/Ni composites are fabricated by reactive sintering method, and the influence of TiC particle size on oxidation resistance of composite is studied. The particle size of TiC increases from 1.54 μm to 2.40 μm as the sintering holding time prolongs from 2 h to 6 h, due to the dissolution-reprecipitation mechanism. The oxidation kinetics of in-situ TiC/Ni composite with different TiC particle size oxidized at 800 °C for 100 h obeys parabolic kinetics. The oxidation mass gain of composite increases from 7.471 mg•cm to 8.454 mg•cm, and the oxide scale on composites becomes thicker, as the particle size of TiC increases from 1.54 μm to 2.40 μm. The reduction of TiC particle size facilitates the formation of a dense and continuous oxide scale on composite, helpful to restrict the diffusion of O, Ti and Ni atoms during oxidation. Therefore, the reduction of TiC particle size is contributed to the optimization of oxidation resistance of in-situ TiC/Ni composites.

摘要

TiC/Ni 复合材料的抗氧化性对其在高温氧化环境中的应用至关重要。采用反应烧结法制备原位 TiC/Ni 复合材料,并研究了 TiC 粒径对复合材料抗氧化性的影响。由于溶解 - 再沉淀机制,随着烧结保温时间从 2 小时延长至 6 小时,TiC 的粒径从 1.54 μm 增大到 2.40 μm。不同 TiC 粒径的原位 TiC/Ni 复合材料在 800 °C 下氧化 100 小时的氧化动力学符合抛物线动力学。随着 TiC 粒径从 1.54 μm 增大到 2.40 μm,复合材料的氧化质量增益从 7.471 mg•cm 增加到 8.454 mg•cm,复合材料上的氧化膜变得更厚。TiC 粒径的减小有利于在复合材料上形成致密连续的氧化膜,有助于在氧化过程中限制 O、Ti 和 Ni 原子的扩散。因此,TiC 粒径的减小有助于优化原位 TiC/Ni 复合材料的抗氧化性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2611/10368839/3f0165240387/gr1.jpg

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