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71.
Tear Resistance of Orthogonal Kevlar-PWF-reinforced TPU Film 总被引:1,自引:0,他引:1
This work seeks to investigate the notch sensitivity and fracture behaviour of orthogonal Kevlar-plain woven fabric (PWF)-reinforced thermoplastic polyurethanes (TPU) film applied to high altitude balloon. Four types of specimens are implemented to measure notched strength and fracture toughness by conducting static tension and tear tests on an MTS system respectively. The damage and failure mechanisms are discussed and the results for notched strength and tear resistance are evaluated and compared with each other. From the experiments, it is found that the notch sensitivity of the film increases with the increase in the size of the hole, but the notch sensitivity and the stress concentration of the notch are insignificant and there is a decrease of only about 4%-10% in tensile strength for the notched specimens with different hole sizes in diameter compared with the unnotched specimen. In contrast, the tear resistance containing a central slit with only 1 mm length is about half of tensile strength of the unnotched film, which implies that the tear resistance exists an significant notch sensitivity. The results of this study provide an insight into notch sensitivity and fracture behaviour of the Kevlar-PWF-reinforced TPU film and constitute a fundamental basis for the design of high altitude balloon. 相似文献
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DU Xin-kang WANG Tian-min WANG Cong CHEN Bu-liang ZHOU Long 《中国航空学报》2007,20(2):140-144
Some fundamental studies on the preparation, structure and optical properties of NbN films were carried out. NbN thin films were deposited by DC reactive magnetron sputtering at different N2 partial pressures and different substrate temperatures ranging from –50 ℃ to 600 ℃. X-ray diffraction analysis (XRD) and scanning electron microscopy (SEM) were employed to characterize their phase com- ponents, microstructures, grain sizes and surface morphology. Optical properties inclusive of refractive indexes, extinction coefficients and transmittance of the NbN films under different sputtering conditions were measured. With the increase in the N2 partial pressure, δ-NbN phase structure gets forming and the grain size and lattice constant of the cubic NbN increasing. The deposited NbN film has relatively high values of refractive index and extinction coefficient in the wavelength ranging from 240 nm to 830 nm. Substrate tem- perature exerts notable influences on the microstructure and optical transmittance of the NbN films. The grain sizes of the δ-NbN film remarkably increase with the rise of the substrate temperature, while the transmittance of the films with the same thickness decreases. Ultra-fine granular film with particle size of several nanometers forms when the substrate is cooled to –50 ℃, and a remarkable aug- mentation of transmittance could be noticed under so low a temperature. 相似文献
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薄膜太阳帆(FSS)是集推进、发电和姿轨控功能于一体化的超大型挠性太阳帆式航天器,通过调整薄膜反射率产生可变推力和力矩,实现其姿态和轨道运动控制。结合薄膜太阳帆在地球同步轨道运行时的受力特性进行了轨道漂移分析。通过建立薄膜太阳帆动力学模型及受力模型,提出了调整帆面角度轨道修正方法以及基于薄膜光压力矩角动量卸载的长期在轨对日定向面内双轴动量轮稳定控制方法。通过系统仿真验证表明所提的轨道修正和对日定向控制方法是合理有效的,可使薄膜太阳帆长期在定点位置维持对日定向。 相似文献
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以氧化铟锡(ITO)玻璃为基底,采用直流反应磁控溅射法在室温环境下制备了高透过率调制的NiOx薄膜,利用X射线衍射仪(XRD)、扫描电子电镜 (SEM)、紫外可见分光光度计(UV 3600)对薄膜进行分析和表征,研究溅射过程中氩氧比、气压、功率对薄膜结构、形貌及电致变色性能的影响。结果表明:制备的NiOx薄膜表面有明显的结晶颗粒及孔隙,并沿(200)晶面择优生长;随着气压、功率、氧分压的增大,透过率调制先增大后减小,在时间为45 min、溅射气压4.9 Pa、氩氧比113∶7、功率215 W时最高可达58.3%,着褪色响应时间分别为9和19 s,相应的着褪色效率分别为77.56和40.39 cm2/C;以最优工艺的NiOx薄膜组装了结构为Glass/ITO/NiOx/Li-electrolyte/WO3/ITO/Glass的电致变色器件,器件在550 nm处的光调制幅度为46.5%,着褪色时间分别为27和45 s,相应的着褪色速率为1.5和0.9 %/s,在循环500次后透过率调制保持在40%以上。 相似文献
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