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Mechanical and barrier properties of MOCVD processed alumina coatings on Ti6Al4V titanium alloy

机译:Ti6Al4V钛合金上MOCVD处理的氧化铝涂层的机械和阻挡性能

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摘要

This study focuses on the implementation of different aluminum oxide coatings processed by metal-organic chemical vapor deposition from aluminum tri-isopropoxide on commercial Ti6Al4V titanium alloy to improve its high temperature corrosion resistance. Films grown at 350 °C and at 480 °C are amorphous and correspond to formulas AlOOH, and Al2O3, respectively. Those deposited at 700 °C are composed of γ-Al2O3 nanocrystals dispersed in a matrix of amorphous alumina. Their mechanical properties and adhesion to the substrates were investigated by indentation, scratch and micro tensile tests. Hardness and rigidity of the films increase with increasing deposition temperature. The hardness of the coatings prepared at 350 °C and 480 °C is 5.8 ± 0.7 GPa and 10.8 ± 0.8 GPa respectively. Their Young's modulus is 92 ± 8 GPa (350 °C) and 155 ± 6 GPa (480 °C). Scratch tests cause adhesive failures of the films grown at 350 °C and 480 °C whereas cohesive failure is observed for the nanocrystalline one, grown at 700 °C. Micro tensile tests show a more progressive cracking of the latter films than on the amorphous ones. The films allow maintaining good mechanical properties after corrosion with NaCl deposit during 100 h at 450 °C. After corrosion test only the film deposited at 700 °C yields an elongation at break comparable to that of the as processed samples without corrosion. The as established processing–structure–properties relation paves the way to engineer MOCVD aluminum oxide complex coatings which meet the specifications of the high temperature corrosion protection of titanium alloys with regard to the targeted applications.
机译:这项研究的重点是在工业Ti6Al4V钛合金上实施由三异丙醇铝进行金属有机化学气相沉积处理的各种氧化铝涂层,以提高其耐高温腐蚀性能。在350°C和480°C下生长的薄膜是无定形的,分别对应于分子式AlOOH和Al2O3。那些在700°C下沉积的是由分散在无定形氧化铝基质中的γ-Al2O3纳米晶体组成的。通过压痕,划痕和微拉伸试验研究了它们的机械性能和对基材的附着力。膜的硬度和刚性随着沉积温度的升高而增加。在350°C和480°C下制备的涂层的硬度分别为5.8±0.7 GPa和10.8±0.8 GPa。它们的杨氏模量为92±8 GPa(350°C)和155±6 GPa(480°C)。划痕测试导致在350°C和480°C下生长的薄膜发生粘合破坏,而在700°C下生长的纳米晶体则观察到内聚破坏。显微拉伸试验表明,与无定形薄膜相比,后一种薄膜的裂纹更渐进。该膜可在450°C下100小时内被NaCl沉积物腐蚀后保持良好的机械性能。腐蚀测试后,仅在700°C沉积的膜产生的断裂伸长率与未经腐蚀的已加工样品的断裂伸长率相当。既定的加工-结构-性能关系为设计MOCVD氧化铝复合涂层铺平了道路,该涂层符合目标应用中钛合金的高温腐蚀防护规范。

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