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国家自然科学基金(11072172)

作品数:4 被引量:13H指数:2
相关作者:陈金龙张晓川赵钊战楠王宗涛更多>>
相关机构:天津商业大学天津大学更多>>
发文基金:国家自然科学基金国家教育部博士点基金更多>>
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Extended digital image correlation method for micro-region deformation measurement被引量:9
2011年
Extended digital image correlation(X-DIC) method is one novel test method in experimental mechanics.In this paper,the principle of the X-DIC method was introduced in detail.A selection scheme of the initial value of Newton iteration method was proposed when Newton iteration method was applied to solve the partial differential equations.This scheme could make the X-DIC method suitable for the large deformation measurement and avoid the non-convergence phenomenon effectively.The performance of the X-DIC method was verified by simulated images.Since the pixel point with the maximum absolute error occurred mainly at the corner or on the interface of the region of interest(ROI,region used for correlation calculation),measured deformation of the core area(area surrounding the center point of the ROI with a smaller size) was taken as the reliable measured value.The measurement accuracy of the X-DIC method could be improved greatly by using the core area.Combined with a long-distance microscope,the X-DIC method could be used in the deformation measurement of the micro-region.Zero deformation experiment was done to test the precision of the measurement system.Then,the X-DIC method was applied to measure the micro-region deformation of the specimen with a crack.Test value was proved to be in accordance with the actual deformation,showing that the X-DIC method is suitable for the research of microscale mechanical behavior of materials.
CHEN JinLongZHANG XiaoChuanZHAN Nan
基于力学机理的聚碳酸酯损伤识别方法研究
2013年
基于聚碳酸酯(PC)的力学机理,提出一种识别灰度变化剧烈区域的方法实现对其损伤区域的识别。该方法以数字图像相关方法为基础,将试样的变形信息与表面的灰度变化信息相结合,定量地获得试样图像中每个像素点在变形前后的灰度变化值。结果表明,该方法可以实现对剪切带形成时刻和位置的准确识别,识别结果与内部的变形规律一致,且对离面位移较大的颈缩部位依然适用。该方法可用于监测PC材料的变形演化过程,实现对材料损伤的实时识别。
肖晨陈金龙张晓川王宗涛
关键词:聚碳酸酯剪切带数字图像相关方法
Numerical Simulation of Mechanical Behaviors of Degradable Porous Bioceramics with Cracks
2012年
Hydroxyapatite bioceramics is simulated by using finite element method (FEM). The influences of porosity, hole shape, angle of crack and other parameters on the ceramics are analyzed. The results show that with the increase of the angle between crack and horizontal direction, the stress intensity factor KⅠ decreases gradually, but stress intensity factor KⅡ increases at first and then it decreases. The value of KⅡ reaches maximum when the angle between crack and horizontal direction is 45°. KⅠ and KⅡ rise with the increase of porosity, and they are almost the same for the circular and hexagonal holes. For elliptical holes, KⅠ and KⅡ reach maximum when the long axis of ellipse is perpendicular to the loading direction and they reach minimum when the same axis is parallel to the loading direction. Moreover, with the increase of the angle between the long axis and loading direction, KⅠ and KⅡ increase gradually.
CHEN JinlongLIU QianZHAN Nan
关键词:DEGRADATIONPOROSITY
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