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基于快速DIC与正则化平滑技术的结构形变测试 被引量:15
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作者 晏班夫 李得睿 +2 位作者 徐观亚 朱平 邵旭东 《中国公路学报》 EI CAS CSCD 北大核心 2020年第9期193-205,共13页
传统的有接触结构形变测试存在现场操作困难、多点测试不便、测试成本高等问题,难以应对工程结构形变测试中较为复杂的应用场景。为实现无需人造靶标、可远距离测试且具有较高测试精度的非接触无靶标形变测试,针对采集的结构形变视频图... 传统的有接触结构形变测试存在现场操作困难、多点测试不便、测试成本高等问题,难以应对工程结构形变测试中较为复杂的应用场景。为实现无需人造靶标、可远距离测试且具有较高测试精度的非接触无靶标形变测试,针对采集的结构形变视频图像,引入数字图像相关(Digital Image Correlation,DIC)技术,采用基于Fourier变换的互相关整像素匹配算法与反向组合高斯-牛顿迭代亚像素匹配算法,利用英伟达公司的CUDA并行计算平台,实现结构多点动位移时程的快速测试;基于有限元应变计算与正则化平滑理论,采用位移场后处理方式实现结构连续与非连续应变场的计算。对DIC匹配算法的精度及运算速度、应变算法处理连续与非连续位移场的性能进行对比分析;对超高性能混凝土墩柱抗冲击试验及拱桥吊杆振动试验视频数据进行处理,得到多点位移(频率)测试结果,并与传统测试方法进行对比分析;对砂体抗拔试验及混凝土梁抗弯试验视频进行处理,以云图方式展现位移场与应变场的分布,并与基于逐点最小二乘法的应变测试结果进行对比。研究结果表明:基于快速DIC与正则化平滑技术的非接触结构形变测试方法在结构多点变形、位移频谱及应变场,特别是非连续应变场的测试中得到了较理想结果,具有一定的工程应用价值。 展开更多
关键词 桥梁工程 结构形变测试 数字图像相关 Fourier变换互相关 反向组合高斯-牛顿
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Deformation tests and failure process analysis of an anchorage structure 被引量:4
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作者 Zhao Tongbin Yin Yanchun +1 位作者 Tan Yunliang Song Yimin 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期237-242,共6页
In order to study the failure process of an anchorage structure and the evolution law of the body's defor- mation field, anchor push-out tests were carried out based on digital speckle correlation methods (DSCM). T... In order to study the failure process of an anchorage structure and the evolution law of the body's defor- mation field, anchor push-out tests were carried out based on digital speckle correlation methods (DSCM). The stress distribution of the anchorage interface was investigated using the particle flow numerical simulation method. The results indicate that there are three stages in the deformation and fail- ure process of an anchorage structure: elastic bonding stage, a de-bonding stage and a failure stage. The stress distribution in the interface controls the stability of the structure. In the elastic bonding stage, the shear stress peak point of the interface is close to the loading end, and the displacement field gradually develops into a "V" shape, in the de-bonding stage, there is a shear stress plateau in the center of the anchorage section, and shear strain localization begins to form in the deformation field. In the failure stage, the bonding of the interface fails rapidly and the shear stress peak point moves to the anchorage free end. The anchorage structure moves integrally along the macro-cracl~ The de-bonding stage is a research focus in the deformation and failure process of an anchorage structure, and plays an important guiding role in roadway support design and prediction of the stability of the surrounding rock. 展开更多
关键词 Anchorage structure Digital speckle correlation methods Deformation field Interface stress Failure process
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Study on full-length recoverable resin-metal bolts
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作者 孙玉宁 康全玉 《Journal of Coal Science & Engineering(China)》 2003年第1期76-78,共3页
The paper introduces a kind of full length recoverable resin metal bolts, expounds its structural principle and stress features, and gives some instances in laboratory tests and underground tests. The results show tha... The paper introduces a kind of full length recoverable resin metal bolts, expounds its structural principle and stress features, and gives some instances in laboratory tests and underground tests. The results show that full length recoverable resin metal bolts can be used for supporting the walls of class Ⅰ~Ⅲ mining gateways, that the anchoring force is 50 kN or so, and that the recoverability rate is more than 80%, thus the supporting effect is better than that of split set bolts. 展开更多
关键词 RECOVERABILITY resin metal BOLT
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