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RTM专用双马来酰亚胺树脂体系流变特性及模拟分析研究 总被引:4,自引:0,他引:4
研究了 RTM专用双马来酰亚胺树脂体系的流变特性,并根据树脂不同温度下反应机理的不同,建立其分段粘度模型,粘度模拟结果与实验结果具有良好的一致性。所建立的粘度模型,可有效预测和模拟该树脂体系在不同工艺条件下的粘度行为,揭示了树脂体系的优化工艺参数和低粘度平台工艺窗口,为合理拟订RTM工艺参数和保证产品质量提供了必要的科学依据 相似文献
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目前,六自由度平台角位置精度的测量大多采用激光跟踪仪等仪器进行,其测量成本高且测试原理及操作过程较为复杂。针对这一问题,提出了一种测量成本低、测试方法及操作较为简单的六自由度平台角位置精度测量方法,其主要包括六自由度平台的角位置测量精度以及角位置测量重复性。应用倾角仪对该平台横滚和俯仰两个方向的精度等进行了测量,使用光电自准直仪配合360多齿分度盘对该平台偏航方向的精度等进行了测量,测量结果表明:该测量方法能够准确快速测量出六自由度平台的角位置测量精度及角位置测量重复性,通过实验测出某Stewart六自由度平台横滚、俯仰及偏航方向的运动范围均为-10°~+10°,角位置测量精度分别达到0.012°、0.009°、0.018°,角位置测量重复性分别达到0.005°、0.007°、0.001°,能够很好地满足六自由度平台的技术指标。 相似文献
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Ziqian DENG Xiaofeng ZHANG Kesong ZHOU Min LIU Chunming DENG Jie MAO Zhikun CHEN 《中国航空学报》2018,31(4):820-825
Plasma spray-physical vapor deposition (PS-PVD) as a novel coating process based on low-pressure plasma spray (LPPS) has been significantly used for thermal barrier coatings (TBCs). A coating can be deposited from liquid splats, nano-sized clusters, and the vapor phase forming different structured coatings, which shows obvious advantages in contrast to conventional technologies like atmospheric plasma spray (APS) and electron beam-physical vapor deposition (EB-PVD). In addition, it can be used to produce thin, dense, and porous ceramic coatings for special applications because of its special characteristics, such as high power, very low pressure, etc. These provide new opportunities to obtain different advanced microstructures, thus to meet the growing requirements of modern functional coatings. In this work, focusing on exploiting the potential of gas-phase deposition from PS-PVD, a series of 7YSZ coating experiments with various process conditions was performed in order to better understand the deposition process in PS-PVD, where coatings were deposited on different substrates including graphite and zirconia. Meanwhile, various substrate temperatures were investigated for the same substrate. As a result, a deposition mechanism of heterogeneous nucleation has been presented showing that surface energy is an important influencing factor for coating structures. Besides, undercooling of the interface between substrate and vapor phase plays an important role in coating structures. 相似文献
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Quasi-columnar structure 7YSZ(yttria stabilized zirconia) thermal barrier coatings(TBCs) are prepared by plasma spray-physical vapor deposition(PS-PVD) onto pretreated and un-pretreated bond coating, respectively. An isothermal oxidation experiment of 7YSZ TBCs is carried out in the atmosphere of 950 °C in order to simulate the high-temperature oxidation process of engine blades. The isothermal oxidation process of 7YSZ thermal barrier coatings is investigated systematically by impedance spectroscopy. The electrochemical physical model and equivalent circuit of columnar 7YSZ coatings are established. Results show that the isothermal oxidation kinetic curve of columnar 7YSZ thermal barrier coatings appears to follow the parabolic law. A pretreatment of bond coating can reduce the growth rate of the thermally grown oxide(TGO) layer, restraining the initiation and propagation of microcracks between YSZ and TGO layers. The oxidation rate constants of 7YSZ coatings with pretreated and un-pretreated bond coating are 0.101×10~(-12) cm~2·s~(-1) and 0.115 × 10~(-13) cm~2 ·s~(-1), respectively. Impedance analysis shows that the content of oxygen vacancies decreases and the density increases after the TGO layer is oxidized for 150 h. In addition, shrinkage microcracks formed by sintering during the oxidation process is the main reason for an increase of the capacitance and a decrease of the resistance in the grain boundary of YSZ. 相似文献