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首页> 外文期刊>Surface & Coatings Technology >Hot corrosion behavior of laser-glazed plasma-sprayed yttria-stabilized zirconia thermal barrier coatings in the presence of V2O5
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Hot corrosion behavior of laser-glazed plasma-sprayed yttria-stabilized zirconia thermal barrier coatings in the presence of V2O5

机译:在V2O5存在下激光釉等离子喷涂氧化钇稳定的氧化锆热障涂层的热腐蚀行为

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摘要

Thermal barrier coatings (TBCs) are now currently used in gas turbine engines' blades and vanes. A typical duplex TBCs system comprises of a plasma-sprayed thermally insulating ZrO2 alloy top coat applied over an oxidation-resistant MCrAlY (M = Ni and/or Co) bond coat. In this investigation, the substrates of Hastelloy-X superalloy coupons were first sprayed with a Ni–22Cr–10Al–1Y bond coat and then with an yttria-stabilized zirconia (YSZ) top coat in which the yttria contents were varied from 6.1 wt.% to 19.5 wt.%. After that, the plasma-sprayed yttria-stabilized zirconia/MCrAlY TBCs were glazed using a pulsed CO2 laser. The hot corrosion resistance of plasma-sprayed and laser-glazed zirconia thermal barrier coatings at 910 ℃ was investigated using coupons on which were deposited Na2SO4 and/or V2O5. The results of the high temperature corrosion tests showed that the lifetimes of the plasma-sprayed TBCs with different yttria content were all increased about fourfold by laser-glazing in the V2O5 salt contained test. The lifetime decreased with increasing the amount of deposited V2O5 salt. The X-ray diffraction showed that the reaction between yttria (Y2O3) and V2O5 produced YVO4, leaching Y2O3 from the YSZ and causing progressive cubic, tetragonal to monoclinic phase destabilization transformation. The failure of the TBCs was initiated and propagated mainly within the top coat, near the top coat–bond coat interface. Both adding Na2SO4 and a reaction between Na2SO4 and the bond coat can probably reduce the strain accommodation of the top coat. There are no significant corrosion cyclic life differences for TBC with various YSZ top coats for both plasma-sprayed and laser-glazed TBC.
机译:目前,热障涂层(TBC)用于燃气涡轮发动机的叶片和叶片。典型的双工TBCs系统包括在抗氧化MCrAlY(M = Ni和/或Co)结合涂层上施加的等离子喷涂热绝缘ZrO2合金面涂层。在这项研究中,首先对Hastelloy-X超级合金试样的基材喷涂Ni-22Cr-10Al-1Y键合涂层,然后喷涂氧化钇稳定的氧化锆(YSZ)面漆,其中氧化钇含量从6.1 wt。%变化。 %至19.5重量%。之后,使用脉冲CO2激光对等离子喷涂的氧化钇稳定的氧化锆/ MCrAlY TBC上釉。使用沉积有Na2SO4和/或V2O5的试样,研究了等离子喷涂和激光玻璃氧化锆热障涂层在910℃下的抗热腐蚀性能。高温腐蚀试验的结果表明,在含V2O5的盐溶液中,通过激光上釉,不同氧化钇含量的等离子喷涂TBC的寿命都增加了约四倍。寿命随着沉积的V2O5盐量的增加而降低。 X射线衍射表明,氧化钇(Y 2 O 3)和V 2 O 5之间的反应产生YVO 4,从YSZ中浸出Y 2 O 3并引起渐进的立方,四方至单斜相去稳定化转变。 TBCs的破坏主要是在面漆内,面漆与胶层界面附近发生并传播。加入Na 2 SO 4以及Na 2 SO 4与粘结涂层之间的反应都可能减少面涂层的应变适应性。对于等离子喷涂和激光上光的TBC,使用各种YSZ面漆的TBC的腐蚀循环寿命没有显着差异。

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