首页> 外文会议>Proceedings of the 32nd International Conference on Metallurgical Coatings and Thin Films (ICMCTF-32 2005) >Cyclic oxidation behavior of a cobalt aluminide coating on Co-base superalloy AMS 5608
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Cyclic oxidation behavior of a cobalt aluminide coating on Co-base superalloy AMS 5608

机译:钴基高温合金AMS 5608上铝化钴涂层的循环氧化行为

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Aluminization has been employed on alloys to form dense and adhesive Al2O3 surface layers to prolong their service life at high temperature. A cobalt-base superalloy AMS 5608 was used to deposit a cobalt aluminide layer at 950 -C for 9 h by a pack cementation process. The cyclic oxidation tests on aluminized alloys and the untreated substrate were conducted at 1100 -C for 196 h. It is found that the cobalt aluminide phase (around 60 Am in thickness) is achieved. A continuous Cr–W rich intermetallic layer is formed in the interdiffusion zone. After cyclic oxidation test, a dense and protective Al2O3 surface layer is produced on the aluminized alloy and phase transformation reactions occur in the aluminide layer and interdiffusion zone. It is observed that the aluminizing process has greatly enhanced the cyclic oxidation resistance of the Co-base superalloy at 1100 -C. However, the inward diffusion of Al and formation of cracks and pores in the interdiffusion zone cause detrimental effects on the cyclic oxidation resistance of the superalloy for long-term exposure.
机译:渗铝已被用于合金上以形成致密且粘附性的Al2O3表面层,以延长其在高温下的使用寿命。钴基高温合金AMS 5608用于通过填充胶结工艺在950°C下沉积铝化钴层9小时。在1100 -C下对渗铝合金和未处理的基材进行循环氧化测试196小时。发现实现了铝化钴相(厚度约60Am)。在相互扩散区​​中形成了连续的富Cr-W的金属间层。经过循环氧化测试后,在镀铝合金上产生了致密且具保护性的Al2O3表面层,并且在铝化物层和互扩散区中发生了相变反应。观察到,渗铝过程大大增强了Co基高温合金在1100 -C时的抗循环氧化性能。然而,Al的向内扩散以及互扩散区中裂纹和孔的形成会对长期暴露的高温合金的抗循环氧化性产生不利影响。

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