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Seismic reflection and transmission coefficients of a single layer sandwiched between two dissimilar poroelastic solids 被引量:3
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作者 Manjeet Kumari Mahabir Singh Barak Manjeet Kumar 《Petroleum Science》 SCIE CAS CSCD 2017年第4期676-693,共18页
The seismic reflection and transmission characteristics of a single layer sandwiched between two dissimilar poroelastic solids saturated with two immiscible viscous fluids are investigated. The sandwiched layer is mod... The seismic reflection and transmission characteristics of a single layer sandwiched between two dissimilar poroelastic solids saturated with two immiscible viscous fluids are investigated. The sandwiched layer is modeled as a porous solid with finite thickness. The propagation of waves is represented with potential functions. The displacements of particles in different phases of the aggregate are defined in terms of these potential functions. Due to the presence of viscosity in pore fluids, the reflected and transmitted waves are inhomogeneous in nature, i.e., with different directions of propagation and attenuation. The closed-form analytical expressions for reflection and transmission coefficients are derived theoretically for appropriate boundary conditions. These expressions are calculated as a non-singular system of linear algebraic equations and depend on the various parameters involved in this non-singular system. Hence,numerical examples are studied to determine the effects of various properties of the sandwich layer on reflection and transmission coefficients. The essential features of layer thickness, incident direction, wave frequency, liquidsaturation and capillary pressure of the porous layer on reflection and transmission coefficients are depicted graphically and discussed. The analysis shows that reflection and transmission coefficients are strongly associated with incident direction and various properties of the porous layer. 展开更多
关键词 sandwiched layer Immiscible pore fluids Inhomogeneous wave Reflection and transmission coefficients
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Magnetic and Structural Properties in Co/Cu/Co Sandwiches with Ni and Cr Buffer Layers 被引量:2
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作者 Hollglie SHEN, Tie LI, Qinwo SHEN, Qiang PAN and Shichang ZOU (State Key Laboratory of Functional Materials for Informations and State Key Laboratories of Transducer Technology, Shanghai Institute of Metallurgy, Chinese Academy of Sciences, Shanghai 2000 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第2期195-196,共2页
The magnetic and structural properties in Co/Cu/Co sandwiches with Ni and Cr buffer layers were investigated. It was found that the coercivity in Ni layer buffered samples decreases with increasing Ni layer thickness,... The magnetic and structural properties in Co/Cu/Co sandwiches with Ni and Cr buffer layers were investigated. It was found that the coercivity in Ni layer buffered samples decreases with increasing Ni layer thickness, while that in Cr layer buffered ones increases with increasing Cr layer thickness, leading to a large difference in field sensitivity of their giant magnetoresistance (GMR) properties. X-ray diffraction and high resolution transmission electron microscope images exhibited that there is a strong fcc (111) texture in the samples with Ni buffer layer. But there are only randomly oriented potycrystalline grains in Cr buffered sandwiches. According to atomic force microscope topography, the surface roughness of Cr buffered sandwiches is smaller than that of Ni buffered ones. It is demonstrated that buffer layer influences both magnetic and structural properties in Co/Cu/Co sandwiches as well as their GMR characteristics. 展开更多
关键词 CR CO HRTEM Magnetic and Structural Properties in Co/Cu/Co Sandwiches with Ni and Cr Buffer layers CU NI
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Importance Measure Analysis for Use in Dynamic Performance Design of a Co-cured Composite Damping Instrument Panel
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作者 郝文锐 梁森 《Journal of Donghua University(English Edition)》 EI CAS 2017年第6期780-783,共4页
For the best dynamic performance of a co-cured composite damping instrument panel with light weight and high strength, a multilayer sandwich structure with polymethaerylimide (PMI) foam combined with embedded and co... For the best dynamic performance of a co-cured composite damping instrument panel with light weight and high strength, a multilayer sandwich structure with polymethaerylimide (PMI) foam combined with embedded and co-cured composite damping structure is proposed. The struetue can maintain the excellent mechanical properties of composite materials, and achieve the damping and light effect at the same time. Input variables which may affect the dynamic performance of the instrument panel were selected and variance based importance measure was analyzed through multi- finite element method (FEM) analysis. Using the results of the importance measure analysis, with other design requirements, the important design variable was optimized and an instrument panel with the best dynamic performance under the requirements of light weight and high strength was obtained. The structure of the instrument panel can provide reference for the design of precision, high speed, and dynamic composite component. The importance measure analysis of dynamic performance of the instrument panel can provide a reference for relative design. 展开更多
关键词 composite material damping membrane muln'layer sandwich structure dynamic performance importance measure analysis
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