Wu Rui, Huang Chuanbing, Zhang Huifeng, Lv Haozhong, Sun Xiaoming, Lan Hao, Zhang Weigang
School of Rare Earths, University of Science and Technology of China, Hefei 230026, China.
Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou 341119, China.
Materials (Basel). 2023 Mar 22;16(6):2529. doi: 10.3390/ma16062529.
W is a widely used refractory metal with ultra-high melting point up to 3410 °C. However, its applications are limited by poor ablation resistance under high-temperature flame and air flow, which is crucial for aerospace vehicles. To improve the ablation resistance of W under extreme conditions, W-Y alloys doped with different Hf mass fractions (0, 10, 20, and 30) were prepared using the fast hot pressing sintering method. Microstructure and ablation behaviours at 2000 °C were investigated. Results showed that adding an appropriate amount of Hf improved the properties of the W-Y alloy evidently. In particular, the hardness of the alloy increased with the increased content of Hf. The formation of the HfO layer on the surface during ablation decreased the mass and linear ablation rates, indicating enhanced ablation resistance. However, excessive Hf addition will result in crack behaviour during ablation. With a Hf content of 20 wt.%, the alloy exhibited high stability and an excellent ablation resistance.
钨是一种广泛使用的难熔金属,其熔点高达3410°C。然而,在高温火焰和气流下其耐烧蚀性较差,这限制了它在航空航天器中的应用,而耐烧蚀性对于航空航天器至关重要。为了提高钨在极端条件下的耐烧蚀性,采用快速热压烧结法制备了不同铪质量分数(0、10、20和30)的钨-钇合金。研究了其在2000°C下的微观结构和烧蚀行为。结果表明,添加适量的铪明显改善了钨-钇合金的性能。特别是,合金的硬度随铪含量的增加而提高。烧蚀过程中表面形成的氧化铪层降低了质量和线性烧蚀速率,表明耐烧蚀性增强。然而,过量添加铪会导致烧蚀过程中出现裂纹。铪含量为20 wt.%时,合金表现出高稳定性和优异的耐烧蚀性。