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Microstructure and high temperature oxidation resistance property of packing Al cementation on Ti-Al-Zr alloy

机译:Ti-Al-ZR合金填料铝胶粘剂的微观结构和高温氧化性能

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摘要

The aluminide coating was prepared on Ti-6Al-2Zr-lMo-1 V titanium alloy by pack cementation to enhance the high temperature oxidation resistance for aircraft and aerospace applications. High temperature oxidation behaviors of packing cementation coated and uncoated titanium alloy samples were comparatively investigated by isothermal oxidation at 800 degrees C and 900 degrees C in air. The results show that the compact coating with about 60 mu m thick was composed of TiAl3. With isothermal oxidation for 100 h at 800 and 900 degrees C, the weight gains of the coated samples are 1.29 mg.cm(-2) and 4.06 mg.cm(-2) respectively, which are about 2/5 and 1/5 of that of titanium alloy substrates (3.20 mg.cm(-2) and 20.33 mg.cm(-2)). The excellent oxidation resistance performance is attributed to the formation of a continuous and dense Al2O3 layer on the TiAl3 coating surface, which was effective to prevent the O element diffusing into the coating and then reduce the oxidation rate.
机译:通过包装粘合在Ti-6Al-2Zr-LMO-1V钛合金上制备铝化涂层,以提高飞机和航空航天应用的高温抗氧化性。 通过在空气中的800℃和900℃下的等温氧化在800℃和900℃下进行填充粘合涂覆和未涂覆钛合金样品的高温氧化行为。 结果表明,大约60μm厚的紧凑型涂层由TiA13组成。 在800和900摄氏度下100小时的等温氧化,分别为涂覆样品的重量取量分别为1.29mg.cm(-2)和4.06mg.cm(-2),约为2/5和1/5 其中钛合金基材(3.20mg.cm(-2)和20.33mg.cm(-2))。 优异的抗氧化性性能归因于TiAl3涂层表面上的连续和致密的Al2O3层,这对于防止将O元件扩散到涂层中并降低氧化速率。

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