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1.
为研究氮气含量的变化对AlCrTaTiZrV高熵合金薄膜性能的影响,检验在最佳氮气含量下厚度为15 nm的(AlCrTaTiZrV)N扩散阻挡层的热稳定性。采用直流磁控溅射设备在N型Si(111)基底上溅射不同氮气含量的高熵合金氮化物;选取最佳氮气含量为制备条件,在硅基底上沉积15 nm厚的AlCrTaTiZrVN10高熵合金氮化物为扩散阻挡层,并在阻挡层顶部沉积50 nm厚度的Cu膜,最终形成Si/AlCrTaTiZrVN10/Cu三层堆叠结构。利用真空退火炉将Si/AlCrTaTiZrVN10/Cu薄膜体系在500 ℃下进行不同时间的退火处理,用以模拟恶劣的工作环境。利用场发射扫描电子显微镜(FESEM)、原子力显微镜(AFM)、X射线衍射仪(XRD)及四探针电阻测试仪(FPP)对试样的表面形貌、粗糙度、物相组成及方块电阻和进行表征。试验结果为:当氮气含量低于10%时,高熵合金氮化物薄膜为非晶结构。当氮气含量为20%时,高熵合金氮化物薄膜呈现FCC结构,并随着氮气含量的增加,薄膜的结晶性得到提高。薄膜表面的粗糙度在氮气含量为10%时最低,Ra仅为0.124 nm。三层堆叠结构500 ℃退火8 h后,Cu表面发生团聚,薄膜的方阻维持在较低的0.070 Ω/□,且并未发现Cu-Si化合物。厚度为15 nm的非晶结构AlCrTaTiZrVN10薄膜在500 ℃退火8 h后,依旧可以抑制Cu的扩散,表现出了优异的热稳定性及扩散阻挡性能。  相似文献   
2.
A numerical model is developed for surface crack propagation in brittle ceramic coatings, aiming at the intrinsic failure of rare-earth silicate environmental barrier coating systems (EBCs) under combustion conditions in advanced gas turbines. The main features of progressive degradation of EBCs in such conditions are captured, including selective silica vaporization in the top coat due to exposure to water vapor, diffusion path-dependent bond coat oxidation, as well as crack propagation during cyclic thermal loading. In light of these features, user-defined subroutines are implemented in finite element analysis, where surface crack growth is simulated by node separation. Numerical results are validated by existing experimental data, in terms of monosilicate layer thickening, thermal oxide growth, and fracture behaviors. The experimentally observed quasi-linear oxidation in the early stage is also elucidated. Furthermore, it is suggested that surface crack undergoes rapid propagation in the late stage of extended thermal cycling in water vapor and leads to catastrophic failure, driven by both thermal mismatch and oxide growth stresses. The latter is identified as the dominant mechanism of penetration. Based on detailed analyses of failure mechanisms, the optimization strategy of EBCs composition is proposed, balancing the trade-off between mechanical compliance and erosion resistance.  相似文献   
3.
姬梅梅  朱时珍  马壮 《表面技术》2021,50(1):253-266
高温合金材料凭借其优异的综合性能而广泛应用于航空航天领域热端部件.近年来,随着航空航天技术的不断发展,飞行器的热端部件正逐渐面临着更为严峻和复杂的服役环境,因此对高温合金的耐高温、抗氧化等使用性能提出了更高的要求.表面涂层技术由于具有约束条件少、可设计性强、技术类型和材料的选择空间大、经济环保等优点,成为目前最常用的热防护技术手段之一,具有广阔的应用前景和良好的发展潜力.综述了热障涂层、抗氧化涂层材料的研究进展,主要包括YSZ、稀土锆酸盐、稀土六铝酸盐、氧化物、金属间化合物等,并在此基础上探讨了多种热防护涂层的制备方法、工作原理、适用范围.  相似文献   
4.
Premature spallation of thermal barrier coatings (TBCs) is a critical issue during the service of gas turbines, and nondestructive evaluation is crucial to address this problem. Herein, a novel approach that indicates delamination by measuring the residual stress evolution of thermally grown oxide (TGO) for air plasma spraying (APS) TBCs is proposed and verified via the combination of photoluminescence piezo-spectroscopy (PLPS) and X-ray computed tomography. A mineral-oil-impregnating approach and a cold-mount low-shrinkage epoxy-mounting approach are used to alleviate the signal attenuation by pores and microcracks in APS TBCs, improving the detectable PLPS signal and X-ray transmission for stress measurement and delamination characterization, respectively. We have nondestructively measured the TGO residual stress mapping in APS TBCs and its evolution with oxidation. Furthermore, the evolution of TGO morphology and critical microcracks are obtained by X-ray computed tomography. The synchronous evolution of TGO residual stress, TGO thickness, and critical microcracks as a function of oxidation time is obtained and correlated. The transition point, as experimentally identified, at which the TGO stress starts to drop, agrees well with the critical moment of microcrack coalescence. This directly verifies that the TBC delamination can be effectively indicated by residual stress evolution of TGO in APS TBCs.  相似文献   
5.
Repetitive heating and cooling cycles inevitably cause crack damage of hot gas components of gas turbine engines, such as blades and vanes. In this study the self-healing capacity is investigated of mullite + ytterbium monosilicate (Yb2SiO5) as EBC material with Ti2AlC MAX phase particles embedded as a crack-healing agent. The effect of Ti2AlC in the EBC was compared with the self-healing ability of the mullite + Yb2SiO5 material. After introducing cracks by Vickers indentation on the surface of each sample, crack healing was realized by controlling the temperature and time during the post-heat-treatment process. For the mullite + Yb2SiO5 composite with Ti2AlC particles, crack healing occurred at 1000 °C, while in the case of the mullite + Yb2SiO5 composite without Ti2AlC, a sustained temperature of 1300 °C or higher was required. Compared with the healing of the mullite + Yb2SiO5 composite by the formation of a eutectic phase, the addition of Ti2AlC promoted healing via the oxidation of Ti and Al. Notably, the surface formation of a ternary oxide of Ti–Yb–O was confirmed, which completely covered the damage area. Consequently, the addition of a Ti2AlC MAX phase to the EBC composite resulted in a complete strength recovery, while the mullite + Yb2SiO5 composite without Ti2AlC showed a strength recovery of about 80%. Furthermore, by analyzing the indentation load–displacement curve to indicate the role of Ti2AlC, the addition of Ti2AlC improved both the hardness and stiffness of the composite.  相似文献   
6.
土是一种具有多孔介质的岩土工程材料, 其微观孔隙结构决定着宏观渗透性。为了研究渗透特性与孔隙结构之间的依存关系, 以石灰改良黄土为研究对象, 首先对不同石灰掺量下的改良黄土进行室内变水头渗透试验, 随后选取有代表性土样进行扫描电镜(SEM)试验, 并利用Image-Pro Plus 6.0(IPP)图像处理软件统计不同石灰掺量下改良黄土的微观孔隙结构参数, 结合室内渗透试验结果建立宏观渗透特性与微观孔隙结构之间的联系。结果表明: 随着石灰掺量的增加, 充填于大中孔隙的结晶胶结物不断增多, 对应微观图像中大中孔隙的数量、面积、面孔隙度及大孔的平均直径逐渐减小, 而微小孔隙的数量、面积及孔隙的分形维数呈上升趋势, 孔隙结构趋向复杂化, 使得有效渗流通道占比减小, 从而降低了土体渗透性, 说明微观孔隙结构参数与宏观物理性质存在密切联系, 在一定程度上可以反映宏观物理性质的变化。  相似文献   
7.
The role of the blood–brain barrier (BBB) breakdown has been recognized as being important in Alzheimer’s disease pathogenesis. We aimed to evaluate whether regional BBB integrity differed according to sex and whether differences in BBB integrity changed as a consequence of aging or cognitive decline, using dynamic contrast-enhanced (DCE)-magnetic resonance imaging (MRI). In total, 75 participants with normal cognition (NC) or mild cognitive impairment (MCI) underwent cognitive assessments and MRI examination including DCE-MRI. Regional Ktrans was calculated in cortical regions and the Patlak permeability model was used to calculate BBB permeability (Ktrans, min−1). Females had a lower median Ktrans in the cingulate and occipital cortices. In the “older old” group, sex differences in Ktrans were only observed in the occipital cortex. In the MCI group, sex differences in Ktrans were only observed in the occipital cortex. Age was the only predictor of cognitive assessment scores in the male MCI group; however, educational years and Ktrans in the occipital cortex could predict cognitive scores in the female MCI group. Our study revealed that females may have better BBB integrity in cingulate and occipital cortices. We also found that sex-related differences in BBB integrity are attenuated with aging or cognitive decline.  相似文献   
8.
内置式永磁同步电机转矩波动的存在影响电机系统的控制精度,因此如何减小电机转矩波动一直是研究热点。针对具有隔磁桥结构的内置式永磁同步电机,本文提出了一种减小内置式永磁电机转矩波动的空气隔磁槽优化设计方法,即以降低电机转矩波动为优化目标,以空气隔磁槽结构几何参数为优化变量,基于Taguchi法实现了内置式永磁同步电机低转矩波动设计。在此基础上,对优化前后电机空载和额定负载工况进行了有限元仿真对比分析。结果表明,所提出方法可以在保持额定输出转矩不变的前提下有效降低电机空载齿槽转矩和负载转矩波动,提高电机的性能。  相似文献   
9.
采用MSC.MARC有限元分析软件,以真实服役的某重型燃气轮机透平第一级动叶片表面热障涂层为研究对象,研究真实TGO界面形貌对热障涂层界面应力的影响。结果表明:在TC/TGO界面的TC层中,法向应力σ22分布中的拉应力位于波谷区域,压应力位于波峰区域,而在BC/TGO界面的BC层中,σ22应力分布与TC层相反;TC层与BC层的剪切应力σ12分布规律相同,均是波谷左侧的应力方向为负,波谷右侧的应力方向为正。TGO界面的波峰和波谷处的法向应力σ22值随TGO厚度的增大而增加;当TGO厚度不变时,BC/TGO界面振幅增大,TGO内和BC内的法向应力σ22值也随之增大。  相似文献   
10.
南海莺歌海盆地深层气藏具有高温、高压、高含水和高含CO2等典型特征,其渗流机理十分特殊。为揭示该类气藏渗流特征,剖析产气能力的影响因素,通过搭建超高温高压长岩心驱替实验系统来模拟实际储层的温压条件,开展不同含水条件及不同CO2含量下的气相渗流实验。研究表明:该类气藏渗流特征可划分为产生启动压力、低速非达西渗流、达西渗流和偏离达西渗流4个阶段;束缚水会引起低速非达西渗流,可动水会导致启动压力产生,且束缚水在高压差下会转为可动水,导致气相渗流偏离达西渗流,形成或加剧气水两相流动,降低高压差下气相渗流能力;气组分中CO2不仅会导致低速非达西渗流阶段时间延长,高含量下还会促进束缚水转为可动水,形成启动压力,并使高压差下偏离达西渗流阶段提前到来。因此,此类气藏含水饱和度和CO2含量的增加均会抑制产气能力,应严格控制气藏生产压差,避免低速非达西渗流和高压差下偏离达西渗流产生。研究结果可为该类气藏的高效开发提供理论依据。  相似文献   
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