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13篇 您的检索式:作者名="Haitao R"
    题名 作者 年代 出处 被引量
1A novel finite analytic element method for solving eddy current problems with moving conductors 显示文摘Dezhi Chen K R Shao Haitao Yu 2001IEEE Transaction on Magnetics2001,37,5:1
2Ultrasound-mediated microbubble destruction enhances VEGF gene delivery to the infarcted myocasdium in rats显示文摘Zhigang W Zhiyu L Haitao R 2004Clin Imaging2004,28,6:1
3Bivariate meta-analysis of sensitivity and specificity with sparse data:a generalized linear mixed model approach显示文摘Haitao C Stephen R 2006J Clin Epidemiol2006,59,12:1
4Ultrasound-mediated microbubble destruction enhances VEGF gene delivery to the infarcted myocardium in rats 显示文摘Zhigang W Zhiyu L Haitao R 2004Clin Imaging2004,28,6:1
5On the performance of soft Reed-Solomon decoding for magnetic recording channels with erasures显示文摘Xia Haitao Cruz J R 2003IEEE transactions on magnetics2003,39,5:1
6Ultrasound-mediated microbubble destruction enhances VEGF gene delivery to the infarcted myocardium in rats显示文摘Zhigang W Zhiyu L Haitao R 2004Clin Imaging2004,28,6:1
7Ultrasound-mediated mi- crobubble destruction enhances VEGF gene delivery to the in- fracted myocardium in rats显示文摘Zhigang W Zhiyu L Haitao R 2004Clin Imaging2004,28,6:1
8Ultrasound-mediated microbubble destruction enhances VEGF gene delivery to the infareted myocardium in rats显示文摘Zhigang W Zhiyu L Haitao R 2004Clin Imaging2004,28,6:1
9A novel finite analytic element method for solving eddy current problems with moving conductors显示文摘Chen Dezhi Shao K R Yu Haitao 2001IEEE Transactions on Magnetics2001,35,1:1
10Anovel finite analytic element method for solving eddy current problems with moving conduetors显示文摘Chen Dezhi Shao K R Yu Haitao 2001IEEE Transactions on Magnetics2001,37,5:1
11Amplitude versus frequency variations in thinly layered porous rocks 显示文摘Haitao R Gennady G Fred H 2008Expanded Abstracts of 78th Annual Internat SECT Mtg2008,,:1
12Poroelastic analysisof amplitude-versus-frequency variations 显示文摘Haitao R Gennady G Fred H 2009Geo- physics2009,74,6:1
13The Characteristics of Glued Tensile Shear Strength Constituted of Wood Cut by CO_(2) Laser显示文摘The performance of engineered wood products is highly associated with proper bonding and an efficient cutting method.This paper investigates the influence of CO_(2) laser cutting on the wetting properties,the modified che-mical component of the laser-cut surface,and the strength and adhesive penetration near the bondline.Beech-wood is cut by the laser with varying processing parameters,cutting speeds,gas pressures,and focal point positions.The laser-cut samples were divided into two groups,sanded and non-sanded samples.Polyvinyl acetate adhesive(PVAc)was used to bond the groups of laser-cut samples.After assembly with cold pressing,the tensile shear test was carried out.Numerical modelling was carried out to determine the partial elongation and shear strain of the glue line.Based on this,the shear modulus and linear elasticity of the glue line were estimated.Scan-ning electron microscopy was used to assess the adhesive penetration into the porosity structure of the laser-cut samples,and the depth of the heat-affected zone.The laser-cut surface was analysed by Fourier transform infrared spectroscopy.The wetting properties of the laser-cut surface were investigated by using a contact angle goni-ometer.The numerical model of the strain-stress curve confirmed the experimental model.The highest modulus of the linear elasticity of the glue in the numerical calculation belongs to the joint containing laser-cut samples at a gas pressure of 21(bar).The penetration depth of PVAc adhesive into the porosity structure of the laser-cut sam-ples was similar to that of sawn samples.The deepest heat-affected zone in the laser-cut samples was 150µm.A PVAc drop disappeared immediately on the laser-cut surface without sanding,but gradually on the sanded surface.In contrast,the drop on the sawn surface remained with an angle of 32°–48°.The degradation of hemi-cellulose and lignin was proven by the lower intensity of the C=O and C-O Bonds,compared to the sawn surface.Fatemeh Rezaei Milan Gaff Róbert Nemeth Jerzy Smardzewski Peter Niemz Haitao Li Anil Kumar Sethy Luigi Todaro Gourav Kamboj Sumanta Das Roberto Corleto Gianluca Ditommaso Miklós Bak 2023Journal of Renewable Materials2023,11,8:0
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