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41.
IntroductionWiththedevelopmentofinformationindustryandtheapearanceofsmartmaterialsandsmartstructures,itbecomesmoreandmoreimpo...  相似文献   
42.
在现有的抗热震理论基础上考虑到超高温陶瓷材料热物理性能对温度的敏感性及损伤在其使役历程中随温度的演化,建立了适用于升温服役环境下表征超高温陶瓷材料抗热震性能的热-损伤模型。该模型考虑了微裂纹尺寸、密度、热冲击环境温度等因素对材料抗热震性能的影响。利用此模型研究了超高温陶瓷材料在升温服役环境下损伤以微裂纹形核规律演化时对其抗热震性能的影响。从理论上验证了基于材料微结构设计思想在制备超高温陶瓷材料时,引进一定密度一定尺寸的微裂纹并控制其随温度演化规律以形核方式进行,既可以使材料保持较高的强度又能大幅度提升材料的抗热震性能。  相似文献   
43.
By introducing a dimensionless parameter to couple the two objectives, weight and radar absorbing performance, into a single objective function, a multi-objective optimization procedure for the radar absorbing sandwich structure (RASS) with a cellular core is proposed. The optimization models considered are one-side clamped sandwich panels with four kinds of cores subject to uniformly distributed loads. The average specular reflectivity calculated with the transfer matrix method and the periodic moment method is utilized to characterize the radar absorbing performance, while the mechanical constraints include the facesheet yielding, core shearing, and facesheet wrinkling. The optimization analysis indicates that the sandwich structure with a two-dimensional (2D) composite lattice core filled with ultra-lightweight sponge may be a better candidate of lightweight RASS than those with cellular foam or hexagonal honeycomb cores. The 2D Kagome lattice is found to outperform the square lattice with respect to radar absorbing.  相似文献   
44.
将对电磁功能材料多物理场耦合性能检测技术和设备做一综述介绍,介绍如何在多物理场耦合条件下测试电磁滞回线、蝶形曲线、电磁致伸缩、应力应变曲线和磁电效应等物理力学性能,并介绍电磁功能材料在多物理耦合场作用下的新的实验现象,包括铁电材料在多轴电场和双轴力载荷作用下的电滞回线、裂纹尖端的畴变规律、磁致伪弹性、磁致伸缩的"回落"等现象.这对于理解电磁功能材料和结构在耦合场下的变形与断裂机制有重要的意义.  相似文献   
45.
格栅结构力学性能研究进展   总被引:5,自引:1,他引:4  
格栅复合材料是一种新型轻质高强材料. 综述了格栅复合材料的周期构型特征和格栅结构的制备工艺. 归纳了二维周期格栅材料的等效刚度矩阵计算方法, 比较了不同构型格栅的基本力学性能, 介绍了胞元材料的微极弹性理论和格栅的强度与屈服面计算方法. 探讨了格栅的缺陷及其力学响应, 包括格栅的尺度效应、夹杂缺陷以及裂纹扩展特征, 介绍了波在格栅材料中传播机理的最新研究成果. 根据格栅材料在工程中的应用形式, 分类介绍了格栅板壳结构、格栅加筋板壳结构和格栅夹层结构的结构特点和破坏方式、设计优化准则和实验研究成果. 还归纳了作者所在研究小组近期在碳纤维格栅复合材料的制备、实验研究和理论分析等方面的最新工作进展.   相似文献   
46.
轻质多孔材料研究进展   总被引:8,自引:0,他引:8  
高超声速武器是军事装备的发展方向,在未来战争中起着重要作用.轻质材料是高超声速飞行器设计与制造的关键技术之一,它是实现高超声速飞行器高超声速、高机动性、远程打击等性能的基础和保障.高超声速飞行器轻质材料主要有蜂窝材料、泡沫金属材料、点阵材料.这些材料具有超轻、高比强、高比刚度、高强韧、高能量吸收等优良机械性能,以及减震、散热、吸声、电磁屏蔽等特殊性质,它兼具功能和结构双重作用,是一种性能优异的多功能材料.本文从材料制备、结构设计、力学与物理性能表征等方面综述了高超声速飞行器轻质材料的研究与应用现状,比较了三种轻质材料的机械和物理性能,重点评述了新型点阵材料的制备工艺、结构构型、力学及其他性能,指出了其发展趋势.  相似文献   
47.
This paper discusses an in situ observation of fracture behavior around a crack tip in ferroelectric ceramics under combined electromechanical loading by use of a moiré interferometry technique. The deformation field induced by the electric field and the stress concentration near the crack tip in three-points bending experiments was measured. By analysis of the moiré images it is found that under a constant mechanical load, the electric field almost has no effect on the crack extension in the case that the directions of the poling, electric field and crack extension are perpendicular to each other. When the poling direction is parallel to the crack extension direction and perpendicular to the electric field, the strain decreases faster than that calculated by FEM with and without electrical loading as one goes away from the crack tip. In addition, as the electric field intensity increases, the strain near the crack tip increases, and the strain concentration becomes more significant. The project supported by the National Natural Science Foundation of China (10132010, 10025209, 10232023)  相似文献   
48.
颗粒增强复合材料有效性能的三维数值分析   总被引:9,自引:0,他引:9  
方岱宁  齐航 《力学学报》1996,28(4):475-482
将细观力学和计算力学方法相结合用以确定复合材料中的局部和平均应力-应变场.对旋转体和非旋转体颗粒增强复合材料的有效模量进行了三维有限元数值计算,数值与实验结果对比表明,该方法是有效的、可靠的.分析了颗粒的排列分布、颗粒取向和颗粒的几何形状对有效模量的影响.数值结果表明,颗粒的排列对有效轴向弹性模量影响较大.颗粒的取向和颗粒的形状对有效性能的影响也是显著的  相似文献   
49.
High-temperature oxidation is an important property to evaluate thermal protection materials. However, since oxidation is a complex process involving microstructure evolution, its quantitative analysis has always been a challenge. In this work, a phase field method (PFM) based on the thermodynamics theory is developed to simulate the oxidation behavior and oxidation induced growth stress. It involves microstructure evolution and solves the problem of quantitatively computational analysis for the oxidation behavior and growth stress. Employing this method, the diffusion process, oxidation performance, and stress evolution are predicted for Fe-Cr-Al-Y alloys. The numerical results agree well with the experimental data. The linear relationship between the maximum growth stress and the environment oxygen concentration is found. PFM provides a powerful tool to investigate high-temperature oxidation in complex environments.  相似文献   
50.
The non-linear behaviour of PZT-5 ceramics under coupled electrical-mechanlcal loading (E3 and σ11) is experimentally studied. The effect of different levels of compressive stress on the electrical-mechanical response is examined. With the increase of compressive stress, shapes of the electric hysteresis loop and the butterfly curve are slightly changed, while the reversed butterfly curve (ε11 vs E3) varies significantly, and the value of the piezoelectric constant d31 decreases evidently. Based on these experimental results, a simple design is proposed to improve the sensitivity and reliability of the submarine detectors and sensors.  相似文献   
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