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Quantitative Evaluation of Fatigue Crack Size Using Eddy Current Pulsed Thermography 被引量:1
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作者 Feng Fuzhou Xu Chao +2 位作者 Zhu Junzhen Min Qingxu Sun Jiwei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2017年第3期247-254,共8页
A set of metallic specimens containing fatigue cracks with different sizes were tested using eddy current pulsed thermography(ECPT),therefore the relations between heating response of the crack area and the crack leng... A set of metallic specimens containing fatigue cracks with different sizes were tested using eddy current pulsed thermography(ECPT),therefore the relations between heating response of the crack area and the crack length was studied.The numerical and experimental results both showed that the increase of the crack length enhanced the crack heating response under specific test conditions.A particular form of calculated response signal,which is linearly related to the crack length,was introduced to provide a quantitative evaluation of crack length. 展开更多
关键词 heating length metallic fatigue sizes pulsed linearly impedance excitation defects
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Band structure calculations of in-plane waves in two-dimensional phononic crystals based on generalized multipole technique
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作者 Zhijie SHI Yuesheng WANG Chuanzeng ZHANG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2015年第5期557-580,共24页
A numerical method, the so-called multiple monopole(MMoP) method,based on the generalized multipole technique(GMT) is proposed to calculate the band structures of in-plane waves in two-dimensional phononic crystal... A numerical method, the so-called multiple monopole(MMoP) method,based on the generalized multipole technique(GMT) is proposed to calculate the band structures of in-plane waves in two-dimensional phononic crystals, which are composed of arbitrarily shaped cylinders embedded in a solid host medium. To find the eigenvalues(eigenfrequencies) of the problem, besides the sources used to expand the wave fields, an extra monopole source is introduced which acts as the external excitation. By varying the excitation frequency, the eigenvalues can be localized as the extreme points of an appropriately chosen function. By sweeping the frequency range of interest and the boundary of the irreducible first Brillouin zone(FBZ), the band structures can be obtained. Some typical numerical examples with different acoustic impedance ratios and with inclusions of various shapes are presented to validate the proposed method. 展开更多
关键词 triangular validate impedance excitation collocation searching elliptical cylinders irreducible scattered
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