...
首页> 外文期刊>CERAMICS INTERNATIONAL >Thermal shock behavior of 8YSZ and double-ceramic-layer La_2Zr_2O_7/8YSZ thermal barrier coatings fabricated by atmospheric plasma spraying
【24h】

Thermal shock behavior of 8YSZ and double-ceramic-layer La_2Zr_2O_7/8YSZ thermal barrier coatings fabricated by atmospheric plasma spraying

机译:大气等离子体喷涂8YSZ及双层陶瓷La_2Zr_2O_7 / 8YSZ热障涂层的热冲击行为

获取原文
获取原文并翻译 | 示例
           

摘要

The single-ceramic-layer (SCL) 8YSZ (conventional and nanostructured 8YSZ) and double-ceramic-layer (DCL) La_2Zr_2O_7 (LZ)/8YSZ thermal barrier coatings (TBCs) were fabricated by plasma spraying on nickel-based superalloy substrates with NiCrAlY as the bond coat. The thermal shock behavior of the three as-sprayed TBCs at 1000 °C and 1200 °C was investigated. The results indicate that the thermal cycling lifetime of LZ/8YSZ TBCs is longer than that of SCL 8YSZ TBCs due to the fact that the DCL LZ/8YSZ TBCs further enhance the thermal insulation effect, improve the sintering resistance ability and relieve the thermal mismatch between the ceramic layer and the metallic layer at high temperature. The nanostructured 8YSZ has higher thermal shock resistance ability than that of the conventional 8 YSZ TBC which is attributed to the lower tensile stress in plane and higher fracture toughness of the nanostructured 8YSZ layer. The pre-existed cracks in the surface propagate toward the interface vertically under the thermal activation. The nucleation and growth of the horizontal crack along the interface eventually lead to the failure of the coating. The crack propagation modes have been established, and the failure patterns of the three as-sprayed coatings during thermal shock have been discussed in detail.
机译:通过用NiCrAlY等离子喷涂在镍基高温合金基底上制备了单陶瓷层(SCL)8YSZ(常规和纳米结构8YSZ)和双陶瓷层(DCL)La_2Zr_2O_7(LZ)/ 8YSZ热障涂层(TBC)。作为粘结层。研究了三种喷涂的TBC在1000°C和1200°C下的热冲击行为。结果表明,LZ / 8YSZ TBCs的热循环寿命比SCL 8YSZ TBCs更长,这是因为DCL LZ / 8YSZ TBCs进一步增强了隔热效果,提高了耐烧结性并缓解了两者之间的热失配。陶瓷层和金属层在高温下。与传统的8YSZ TBC相比,纳米结构的8YSZ具有更高的抗热震性,这归因于纳米结构的8YSZ层的较低的平面拉伸应力和较高的断裂韧性。在热激活下,表面中预先存在的裂纹会垂直向界面传播。沿界面水平裂纹的形核和增长最终导致涂层的失效。建立了裂纹扩展模式,并详细讨论了三种喷涂态涂层在热冲击过程中的破坏模式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号