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1.
LaTi 2 Al 9 O 19 (LTA) exhibits promising potential as a new kind of thermal barrier coating (TBC) material, due to its excellent high-temperature capability and low thermal conductivity. In this paper, LTA/yttria stabilized zirconia (YSZ) TBCs are produced by atmospheric plasma spraying. Hot corrosion behavior and the related failure mechanism of the coating are investigated. Decomposition of LTA does not occur even after 1 458 hot corrosion cycles at 1 373 K, revealing good chemical stability in molten salt of Na 2 SO 4 and NaCl. However, the molten salt infiltrates to the bond coat, causing dissolving of the thermally grown oxide (TGO) in the molten salt and hot corrosion of the bond coat. As a result, cracking of the TBC occurs within the oxide layer. In conclusion, the ceramic materials LTA and YSZ reveal good chemical stability in molten salts of Na 2 SO 4 and NaCl, and the bond coat plays a significant role in providing protection for the component against hot corrosion in the LTA/YSZ TBCs. LTA exhibits very promising potential as a novel TBC material.  相似文献   

2.
氧化钇稳定氧化锆多孔陶瓷的制备与性能   总被引:1,自引:0,他引:1       下载免费PDF全文
以叔丁醇为溶剂,采用凝胶注模成型方法,制备出防/隔热的摩尔分数为8%Y_2O_3-ZrO_2(8YSZ)多孔陶瓷.在浆料中初始固相含量固定为10%体积分数的基础上,研究了烧结温度对8ySZ陶瓷材料的气孔率、开气孔率、孔径尺寸分布及显微结构的影响,分析了压缩强度、热导率与结构之间的关系.通过改变烧结温度,所制备的8YSZ多孔陶瓷的气孔率为65%~74%,孔隙分布均匀,平均孔径为0.68~1.82μm,压缩强度为7.92~13.15 MPa,室温热导率[最低可达0.053 W/(m·K)],比相应的致密陶瓷[~2.2 W/(m·K)]低一个数量级,且随着气孔率的增加而降低.  相似文献   

3.
电子束物理气相沉积La2Zr2O7热障涂层研究   总被引:1,自引:0,他引:1  
为克服传统热障涂层材料YSZ耐温性能和隔热性能的不足,以ZrO2和La2O3为原料,采用无压烧结法合成了烧绿石结构化合物La2Zr2O7,用电子束物理气相沉积(EB-PVD)法在高温合金基体上制备了La2Zr2O7涂层,分析了涂层的成分,并对其显微结构、热物理性能与传统YSZ热障涂层进行了对比研究.结果表明,La2Zr2O7涂层成分处于P结构范围内,呈典型的柱状晶结构,柱状晶头部呈明显的金字塔形状.与传统YSZ柱状晶相比,La2Zr2O7涂层的柱状晶紊乱度更大,尺寸更加细小,并且柱状晶上的树枝状亚晶更多.在25~1200℃范围内,La2Zr2O7涂层的热导率最大为0.985W/(m·K),最小为0.796 W/(m·K),大大低于同条件下的YSZ涂层.低本征热导率、小柱状晶直径、大紊乱度、密度轻及高孔隙率是造成La2.Zr2O7涂层低热导率的主要因素.  相似文献   

4.
在溶胶-凝胶过程中加入纳米Al2O3 颗粒制备Al2O3 掺杂的SiO2 纳米透波/ 隔热材料,研究了
Al2O3 掺杂对材料高温热稳定性、介电性能及隔热性能的影响。结果表明,Al2O3 掺杂阻碍了SiO2 颗粒之间的
烧结,提高了材料的使用温度;材料介电常数符合Lichtenecker 对数法则;室温热导率略有提高,通过组合结构
改善了材料的隔热性能。
  相似文献   

5.
以Gd2O3和正硅酸乙酯(TEOS)为原材料,采用并流化学共沉淀法合成Gd2SiO5粉体材料。研究Gd2SiO5前驱体的热响应特征、Gd2SiO5粉体的物相组成和微观形貌,并对Gd2SiO5粉体的合成机理进行初步探讨。结果表明:前驱体的低Gd/Si摩尔比和反应体系的高pH值会导致Gd2SiO5粉体生成Gd9.33(SiO4)6O2杂质相,相反则会导致生成Gd2O3杂质相。当Gd/Si摩尔比为20∶11、pH值为9~10、合成温度为1000~1300℃时,合成的粉体纯度较高,Gd2SiO5颗粒呈不规则形貌特征,平均粒度为100~200 nm。Gd2SiO5合成过程中,前驱体以一种—[Si—O—Gd]—网络结构存在,在煅烧过程中逐渐转化为Gd2SiO5晶体以及Gd9.33(SiO4)6O2和Gd2O3杂相。  相似文献   

6.
梯度热障涂层的设计   总被引:7,自引:3,他引:7  
 采用电子束物理气相沉积方法 (EB PVD)制备了梯度热障涂层,其结构设计为NiCoCrAlY粘结层 /Al2O3 YSZ过渡层 /YSZ陶瓷层。YSZ陶瓷层的结构为柱状晶结构,Al2O3 YSZ梯度过渡层为梯度微孔结构。采用有限元方法对梯度热障涂层进行热应力分析,优化了Al2O3 YSZ梯度过渡层的组成。计算结果表明,梯度涂层的内应力显著降低,而且界面及其附近应力和应变变化较平缓。过渡层厚度的增加有利于降低涂层内应力和缓和涂层界面处的应力集中。  相似文献   

7.
 第一代热障涂层(TBCs)由氧化钇部分稳定的氧化锆(YSZ)陶瓷隔热层和金属粘结层组成,该涂层长期使用温度低于1 200℃。随着先进航空发动机向着高推重比发展,迫切要求发展新一代超高温、高隔热热障涂层材料。LaTi2Al9O19(LTA)在1 500℃长期保持相稳定,是一种非常有前景的超高温热障涂层候选材料。本文采用大气等离子喷涂(APS)制备了LTA涂层,研究了喷涂工艺对涂层微观组织结构和热物理性能的影响。结果表明沉积态涂层中含少量的非晶态,在860℃和1 130℃出现晶化峰。等离子喷涂过程中La2O3挥发量较多,导致沉积态涂层中La元素与原始粉末相比含量偏低,而其他组分的化学成分随喷涂功率变化不大。LTA涂层的热扩散系数在1 400℃下为0.3~0.4 mm2·s-1,热导率为1.1~1.6 W·m-1·K-1。1 050℃经过20小时热处理后,得到晶化的涂层在晶化温度范围内的热扩散系数和热导率值均增大。随着喷涂功率减小,涂层孔隙率增加,热导率减小。  相似文献   

8.
在纳米ZrO2-8%Y2O3(摩尔分数)(8YSZ)粉末中掺杂20%(质量分数)微米级CeO2粉末,并通过喷雾干燥合成CeO2-8YSZ(CYSZ)复合团聚粉体。借助激光粒度仪和扫描电镜(SEM)及附带能谱仪(EDS)考察羧甲基纤维素黏结剂(carboxymethyl cellulose,CMC)质量分数对复合团聚粉体性能影响。采用PS-PVD制备具有柱状结构的CYSZ热障涂层,对涂层截面和表面进行EDS分析。采用X射线衍射(XRD)和X射线光电子能谱(XPS)分析涂层物相。结果表明:黏结剂质量分数达到2%时可获得球形度高、粒度分布均匀的团聚粉体;制备的涂层中Ce元素呈均匀分布;涂层物相基本为t-相结构,其中Ce4+取代Zr4+进入ZrO2晶格形成类质同象的固溶体结构,显示出CeO2掺杂对t-相向m-相转变的抑制作用;所制备CYSZ涂层在1100℃,水冷循环100次后仍保持完整,展现出较高的抗热冲击性能。  相似文献   

9.
刘丛林  郜冶  贺征 《推进技术》2010,31(3):289-295
Al2O3凝结对固体火箭发动机Al颗粒的燃烧效率及燃气流动有很大影响。结合拉格朗日方法,建立Al2O3凝结模型,分析了在Al2O3烟雾凝结及颗粒自身破碎作用下,不同初始直径Al颗粒的燃烧效率及燃烧室流场的变化规律。计算结果与同条件下的测试数据有较好的吻合,颗粒分布符合相关实验现象。结果表明,小颗粒燃烧后,流场温度及Al2O3烟雾分布均匀;随颗粒初始直径的增加,径向出现明显分层现象;在发动机出口,小颗粒燃烧效率较高,颗粒中Al2O3质量分数较大,但破碎程度较小;随初始直径增加,颗粒燃烧效率逐渐降低,颗粒中仍含有大量未燃烧的Al,破碎程度提高,颗粒数目急剧增加。  相似文献   

10.
Thermal barrier coatings (TBCs) are mostly applied to hot components of advanced turbine engines to insulate the components from hot gas. The effect of sintering on thermal conductivity and thermal barrier effects of conventional plasma sprayed and nanostructured yttria stabilized zirconia (YSZ) thermal barrier coatings (TBCs) are investigated. Remarkable increase in thermal conductivity occurs to both typical coatings after heat treatment. The change of porosity is just the opposite. The grain size of the nanostructured zirconia coating increases more drastically with annealing time compared to that of the conventional plasma sprayed coating, which indicates that coating sintering makes more contributions to the thermal conductivity of the nanostructured coating than that of the conventional coating. Thermal barrier effect tests using temperature difference technique are performed on both coatings. The thermal barrier effects decrease with the increase of thermal conductivity after heat treatment and the decline seems more drastic in low thermal conductivity range. The decline in thermal barrier effects is about 80 °C for nanostructured coating after 100 h heat treatment, while the conventional coating reduces by less than 60 °C compared to the as-sprayed coating.  相似文献   

11.
利用冷等静压激光烧结复合技术制备了Al2O3-TiO2陶瓷块体。采用扫描电子显微镜和X射线衍射仪对烧结块体的微观形貌和成分进行了分析。结果表明,利用上述方法制备的Al2O3-TiO2陶瓷没有明显的裂纹及微孔,块体的致密度高。陶瓷块体表面由互相交错的柱状晶组成,有利于防止沿晶断裂;而涂层的横截面呈典型的等轴晶结构,这种结构具有很高的韧性和强度,大大提高了陶瓷的性能。同时,探讨了激光与陶瓷材料相互作用及致密化过程,为以后的研究工作打下基础。  相似文献   

12.
采用碳热还原氮化SiO2的方法在1 500℃制备了Si2N2O,并通过XRD和热失重分析,研究了Fe2O3对合成Si2N2O的催化作用及机理。Fe2O3对Si2N2O的合成具有显著的催化作用,加入少量Fe2O3可以使SiO2的转化率达到100%。Fe2O3的催化机理为:一方面,Fe2O3被C还原为纳米铁单质,并与Si形成Fe-Si液相,该Fe-Si液相可溶解SiO2和C颗粒,促使SiOC中间相在较低温度下形成,从而显著降低碳热还原反应的开始温度。另一方面,Fe-Si液相中的CO2与FeSi反应,通过形成SiO和CO而加速碳热还原反应的进行。  相似文献   

13.
罗发  周万城  焦桓  赵东林 《航空学报》2003,24(3):273-277
 采用热压和凝浇注无压烧结的方法制备了Li2O-Al2O3-SiO2 玻璃陶瓷阻抗变换层,研究表明烧结的工艺方法和参数对该玻璃陶瓷的致密度和复介电常数有很大的影响。在较高烧结温度和压力下,该玻璃陶瓷的复介电常数保持不变。降低烧结温度和压力时,能够得到一系列复介电常数在较小范围内变化的Li2O-Al2O3-SiO2 玻璃陶瓷,但复介电常数不随频率发生变化。将该玻璃陶瓷作为吸波材料的阻抗变换层后,大幅度提高了材料的吸波性能,而且其制备工艺对吸波性能也有一定的影响,可以通过改变该玻璃陶瓷的烧结条件来满足不同吸波材料设计对阻抗匹配层的多种要求。  相似文献   

14.
Degradation of thermal barrier coatings (TBCs) caused by calcium-magnesium-alumina-silica (CMAS) glassy penetration is becoming an urgent issue for TBCs industrial applications. In this work, yttrium aluminum garnet (Y3Al5O12, YAG) nano-powders were synthesized through a chemical co-precipitation route. The resistance of YAG ceramic to glassy CMAS infiltration at 1250?°C was evaluated. YAG ceramic bulk sintered at 1700?°C for 10?h was comprised of a single garnet-type Y3Al5O12 phase. The molten CMAS glass was suppressed on the surface of the YAG ceramic at 1250?°C. A chemical reaction between YAG and the molten CMAS glass did not occur at 1250?°C for 24?h, suggesting that YAG could act as an impermeable material against glassy CMAS deposits in the TBC field.  相似文献   

15.
随着航空发动机涡轮进口温度提升,目前最广泛使用的Y2O3部分稳定ZrO2(YSZ)热障涂层(TBCs)已难以满足需求,亟须发展新一代超高温TBCs。GdPO4是一种极具应用前景的TBCs材料。本工作采用等离子喷涂方法制备GdPO4/YSZ双陶瓷层结构TBCs,研究喷涂工艺参数特别是喷涂功率对GdPO4陶瓷涂层相组成、表面形貌、微观结构以及结合强度的影响。结果表明:等离子喷涂GdPO4过程中会有元素P损耗,得到的涂层除了GdPO4外,还有一些Gd3PO7相;随着喷涂功率降低,Gd3PO7相含量减少;GdPO4陶瓷涂层的主体结构由充分熔融的喷涂粒子堆垛构成,其中镶嵌有未熔化粒子构成的微区;随着喷涂功率降低,未熔化微区增多,涂层厚度降低;GdPO4/YSZ TBCs的结合强度随喷涂功率降低而减小,主要是由于未熔化微区增多降低了涂层的内聚力;因此,低喷涂功率不利于涂层的结合强度。  相似文献   

16.
Fe3O4/T-ZnOw composites are fabricated by depositing a layer of Fe3O4 film on the surface of tetrapod-shaped ZnO whisker (T-ZnOw) by ferrite plating method. The morphology, structure and magnetic properties of the composites are characterized by scanning electron microscopy (SEM), X-ray diffractometer (XRD) and vibrating-sample magnetometer (VSM), respectively. The effects of temperature and pH value of ferrite plating on the Fe3O4/T-ZnOw composites and the magnetic properties of composites are studied. It is shown that the chemical environment with pH value at 7.5 is most favorable for the ferrite plating processes by analyzing the main peaks intensity of Fe3O4 in the XRD patterns and the average diameters of the Fe3O4 crystalline. The increase of the ferrite plating temperature with pH value around 7.5 benefits the whole encapsulation of T-ZnOw by the Fe3O4 magnetic films. The composites exhibit ferromagnetic properties and show much lower magnetization intensity than bulk samples at the same magnetic field intensity.  相似文献   

17.
唐亮  李平  张锋  胡洪波 《推进技术》2020,41(5):1082-1088
测量液体火箭发动机的热载荷是获取燃烧室内部信息的重要方法。为了获取N_2O/C_2H_4预混推进剂燃烧室内壁的热载荷,建立了液体火箭发动机的热流计算的反问题方法,该方法基于对燃烧室壁面温度场的直接求解,通过对轴向多个位置测量温度的反演计算得到燃烧室内壁热流和温度。研究表明:应用文中建立的传热反问题方法能够较为准确地获得热流随时间及空间的分布;热电偶的位置对计算准确性有明显的影响,与理论深度偏差在0.2mm以内的随机深度偏差可导致超过4%热流反演误差;N_2O/C_2H_4预混推进剂燃烧室热流及温度沿轴向逐渐降低,表明燃烧室内的反应释热过程主要在燃烧室头部附近发生。  相似文献   

18.
纳米TiO2/Fe2O3复合材料的制备及其红外吸收性能研究   总被引:3,自引:0,他引:3       下载免费PDF全文
用溶胶-凝胶法制备了纳米TiO2/Fe2O3复合材料,并用XRD、TEM等方法对其进行了表征,给出了相关的工艺参数。研究了不同组分的纳米TiO2/Fe2O3的红外吸收特性。结果表明,纳米TiO2/Fe2O3复合材料在400cm^-1~1000cm^-1内随Fe2O3含量的增加,吸收峰明显宽化。  相似文献   

19.
Alumina dispersion strengthened copper composite (nano-Al2O3/Cu composite) was recently emerged as a kind of potentially vi-able and attractive engineering material for applications requiring high strength, high thermal and electrical conductivities and resistance to softening at elevated temperatures. The nano-Al2O3/Cu composite was produced by internal oxidation. The microstructures of the composite were analyzed by the TEM and its hot deformation behavior was investigated by means of continuous compression tests per-formed on a Gleeble 1500 thermo-simulator. Making use of the modified algorithm–Levenberg-Marquardt (L-M) algorithm BP neural network, a model for predicting the flow stresses during hot deformation was set up on the base of the experimental data. Results show that the microstructures of the composite are characterized by uniform distribution of nano-Al2O3 particles in Cu-matrix. The sliding of dislocations is the main deformation mechanism. The dynamic recovery is the main softening mode with the flow stress decreasing gen-tly from 500 ℃ to 850 ℃. The recrystallization of Cu-matrix can be retarded late into as high as 850 ℃, when it happens only partially. The well-trained BP neural network model can accurately describe the influence of the temperature, strain rate, and true strain on the flow stresses, therefore, it can precisely predict the flow stresses of the composite under given deforming conditions and provide a new way to optimize hot deforming process parameters.  相似文献   

20.
Conventional two-layered thermal barrier coatings (TBCs) are prepared by electron beam physical vapor deposition (EB-PVD) with ZrO2-8 wt% Y2O3 (8YSZ) as top coat and CoCrAlY as bond coat on disk-shaped Ni based super-alloy. In this paper, three kinds of shot peening process with different lengths of operating time were adopted for bond coating. As a result, changes took place in its sur- face roughness and the surface micro-hardness. A thermal cycling test at 1 273 K×55 min and another at room temperature for 5 min were performed to study the effects of shot peening process on the thermal cycling lifetime of TBCs. It is found that a moderate shot peening process will be able to prolong the life time. The oxidation dynamic of the as-processed TBCs basically accords with the para- bolic rule, and the oxidation test also attests to the spallation between YSZ and thermal growth oxide (TGO) responsible mainly for the failure of TBCs.  相似文献   

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