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Stress-induced phase transformation and amorphous-to-nanocrystalline transition in plasma-sprayed Al2O3 coating with relative low temperature heat treatment

机译:相对低温热处理的等离子喷涂Al2O3涂层中的应力诱导相变和非晶态至纳米晶态转变

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In the present study, the relationship between phase transformation and stress-inducing is established. The residual stress would decrease the phase transition temperature of the gamma-Al2O3 to alpha-Al2O3. In order to further ensure the reliability of stress-induced phase transformation, the as-sprayed Al2O3 coating was heat treated at 600 degrees C for 24 h. The Al2O3 coatings were investigated using X-ray diffraction and transmission electron microscopy. The relative low temperature heat treatment facilitates the growth of gamma-Al2O3 nanocrystals, amorphous-to-nanocrystalline transition and stress-induced phase transformation in the Al2O3 coating. The heat treated Al2O3 coating has greater Vickers hardness and bending strength than the as-sprayed Al2O3 coating. However, the fracture toughness descent might be attributed to the pore-toughening effect reduction due to phase transition (from gamma-Al2O3 to alpha-Al2O3) accompanied by a certain extent volume shrinkage and the brittleness of new generated alpha-Al2O3. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本研究中,建立了相变与应力诱导之间的关系。残余应力将降低γ-Al2O3到α-Al2O3的相变温度。为了进一步确保应力引起的相变的可靠性,将喷涂后的Al2O3涂层在600摄氏度下热处理24小时。使用X射线衍射和透射电子显微镜研究了Al2O3涂层。相对较低的热处理有助于Al2O3涂层中γ-Al2O3纳米晶体的生长,非晶态至纳米晶态的转变以及应力诱导的相变。经过热处理的Al2O3涂层比喷涂的Al2O3涂层具有更高的维氏硬度和弯曲强度。然而,断裂韧性下降可能归因于相变(从γ-Al2O3到α-Al2O3)引起的孔隙增韧作用降低,同时伴随着一定程度的体积收缩和新生成的α-Al2O3的脆性。 (C)2014 Elsevier B.V.保留所有权利。

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