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Multilayered thermal barrier coating for land-based gas turbines

机译:用于陆基燃气轮机的多层热障涂层

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摘要

Multilayered thermal barrier coatings (TBC) with different functions were proposed for the hot section components of land-based gas turbines. This article describes a multilayered TBC with an oxidation resistant layer. A conventional duplex TBCand a triplex TBC, in which an aluminized layer was added to the conventional duplex TBC to increase oxidation resistance, were prepared. It was confirmed by a burner rig test that the triplex TBC with the aluminized layer is resistant to oxidation andshows high durability in a thermal cycle test, compared with the conventional duplex TBC. The spalling in the thermal cycle test of each TBC specimen occurred at the same position, when the thickness of the oxidation layer was 11 to 13μm. The mechanismof spalling of the coating in the thermal cycle test was discussed in terms of stress in the coating. Stress in the direction of spalling occurred by an uneven interface between the bond and top coat and increased with growth of the oxidation layer. It is thought that the high durability of the triplex TBC in the thermal cycle test is derived from suppressing the growth of the oxidation layer and decreasing the stress due to the addition of the aluminized layer.
机译:提出了具有不同功能的多层热阻挡涂层(TBC),用于陆基燃气轮机的热段部件。本文介绍了一种具有氧化层的多层TBC。制备常规双相TBCAND的TBC,其中加入到常规双相TBC中以增加抗氧化性的铝化层。与传统双相TBC相比,通过燃烧器钻井钻井平台测试证实了具有铝化层的三重链接TBC在热循环试验中发出高耐久性。当氧化层的厚度为11至13μm时,每个TBC样品的热循环试验中的剥落发生在相同位置。在涂层中的应力方面讨论了热循环试验中涂层的剥落机制。在粘合剂和顶部涂层之间的不均匀界面发生剥落方向的应力,并随着氧化层的生长而增加。据认为,在热循环试验中的TRIPLEX TBC的高耐久性来自抑制氧化层的生长并由于添加镀铝层而降低应力。

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