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Improving Contact Damage Resistance of Thermal Barrier Coatings by Incorporating Buffer Layer

机译:通过添加缓冲层提高热障涂层的接触破坏抵抗力

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The effects of the introduction of a buffer layer between the bond and top coats on the indentation stress-strain behavior and the contact damage were investigated in air-plasma sprayed (APS) zirconia (ZrO_2)-based thermal barrier coatings (TBCs). The micro structure is relatively continuous in the TBC system with the buffer layer, showing Zr, Ni, Cr, and Mg elements between the top and bond coats, whereas the Zr element suddenly disappears by passing the interface between the top and bond coats. The TBC system with the buffer layer shows less strain than that without the buffer layer in the higher stress regions above about 1.3 GPa, while both TBC systems become soft by forming the top coat in the lower stress regions compared with the substrate. The stress-strain curve in both TBC systems is dependent on the dwell time of thermal exposure condition. The TBC system with the buffer layer shows the lower stress-strain curves than that without the buffer layer in thermal cycles with the relatively short dwell time of 1 h, showing the reverse trend with the relatively long dwell time of 10 h. Subsurface damage in substrate is reduced at both indentation loads of P = 500 N and P = 2000 N by introducing the buffer layer, independent of thermal exposure. Therefore, the TBC system with the buffer layer is more efficient in protecting the substrate from contact environments than that without the buffer layer, showing cracking or delamination between the top coat and the buffer layer in the TBC system with the buffer layer.
机译:在基于空气等离子喷涂(APS)氧化锆(ZrO_2)的热障涂层(TBC)中,研究了在粘结层和面涂层之间引入缓冲层对压痕应力-应变行为和接触损伤的影响。在具有缓冲层的TBC系统中,微观结构是相对连续的,显示出表面涂层和粘结层之间的Zr,Ni,Cr和Mg元素,而Zr元素通过表面涂层和粘结层之间的界面而突然消失。在高于约1.3 GPa的较高应力区域中,具有缓冲层的TBC系统显示出比不具有缓冲层的情况更小的应变,而与基板相比,两种TBC系统都通过在较低应力区域中形成顶涂层而变软。两个TBC系统中的应力-应变曲线均取决于热暴露条件的停留时间。具有热保护层的TBC系统在不具有热保护层的情况下,停留时间相对较短,为1 h,其应力-应变曲线要比没有缓冲层的情况低,而相对较长的停留时间为10 h,则显示出相反的趋势。通过引入缓冲层,与热暴露无关,在压痕载荷分别为P = 500 N和P = 2000 N时,减少了衬底表面的损伤。因此,具有缓冲层的TBC系统比没有缓冲层的TBC系统更有效地保护基板免受接触环境的影响,在具有缓冲层的TBC系统中,在顶涂层和缓冲层之间显示出龟裂或分层。

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