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kw.\*:("Interfacial bond strength")

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Interfacial and mechanical properties of carbon fibers modified by electrochemical oxidation in (NH4HCO3)/(NH4)2C2O4·H2O aqueous compound solutionJIE LIU; YULI TIAN; YUJIA CHEN et al.Applied surface science. 2010, Vol 256, Num 21, pp 6199-6204, issn 0169-4332, 6 p.Article

Development of a novel lateral force-sensing microindentation technique for determination of interfacial bond strengthZHANG, H; CHEN, Q; LI, D. Y et al.Acta materialia. 2004, Vol 52, Num 7, pp 2037-2046, issn 1359-6454, 10 p.Article

Application of a novel lateral force-sensing microindentation method for evaluation of the bond strength of thermal sprayed coatingsZHANG, H; LI, D. Y.Surface & coatings technology. 2005, Vol 197, Num 2-3, pp 137-141, issn 0257-8972, 5 p.Article

Effect of vacancies (O, Ti) on the interfacial bonding strength and magnetoelectricity in Fe/BaTiO3: A first-principles studyLEI DENG; DONG CHEN; YINLIAN ZHU et al.Computational materials science. 2014, Vol 93, pp 6-10, issn 0927-0256, 5 p.Article

Effect of interfacial bonding strength on thermal expansion behavior of carbon-fiber-reinforced copper-matrix compositesWANG, Y. L; ZHOU, F. G; WAN, Y. Z et al.Journal of composites technology & research. 2003, Vol 25, Num 3, pp 165-170, issn 0884-6804, 6 p.Article

Optimization of micro-indentation conditions for evaluation of interfacial bond strength: A finite element approachZHANG, H; LI, D. Y.Thin solid films. 2009, Vol 517, Num 17, pp 5259-5264, issn 0040-6090, 6 p.Conference Paper

Effect of CVD SiC seal coating on the mechanical properties of Cf/SiC composites generated through CVIUDAVAKUMAR, A; STALIN, M; VENKATESWARLU, K et al.Surface & coatings technology. 2013, Vol 219, pp 75-81, issn 0257-8972, 7 p.Article

Characterization of the interfacial bond between old concrete substrate and ultra high performance fiber concrete repair compositeTAYEH, Bassam A; ABU BAKAR, B. H; MEGAT JOHARI, M. A et al.Materials and structures. 2013, Vol 46, Num 5, pp 743-753, issn 1359-5997, 11 p.Article

Microstructure and bonding mechanism of Al/Ti bonded joint using Al-10Si-1Mg filler metalSOHN, Woong H; BONG, Ha H; HONG, Soon H et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2003, Vol 355, Num 1-2, pp 231-240, issn 0921-5093, 10 p.Article

Interfacial bond strength of glass fiber reinforced polymer bars in high-strength concreteLEE, J.-Y; KIM, T.-Y; KIM, T.-J et al.Composites. Part B, Engineering. 2008, Vol 39, Num 2, pp 258-270, issn 1359-8368, 13 p.Article

Effect of Alloying Interlayer on Interfacial Bond Strength of CuW/CuCr Integral MaterialsXIAOHONG YANG; JUNTAO ZOU; SHUHUA LIANG et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2010, Vol 527, Num 21-22, pp 5631-5636, issn 0921-5093, 6 p.Article

Analysis of Adhesion and Fracture Energy of Nano-Particle Silver in Electronics Packaging ApplicationsSUNG CHUL JOO; BALDWIN, Daniel F.IEEE transactions on advanced packaging. 2010, Vol 33, Num 1, pp 48-57, issn 1521-3323, 10 p.Article

Is there any contradiction between the stress and energy failure criteria in micromechanical tests? Part III. Experimental observation of crack propagation in the microbond testZHANDAROV, Serge; PISANOVA, Elena; MÄDER, Edith et al.Journal of adhesion science and technology. 2005, Vol 19, Num 8, pp 679-704, issn 0169-4243, 26 p.Article

Effect of grain size on the mechanical properties and crack formation of HPFRCC containing deformed steel fibersSEOK HEE KANG; AHN, Tae-Ho; DONG JOO KIM et al.Cement and concrete research. 2012, Vol 42, Num 5, pp 710-720, issn 0008-8846, 11 p.Article

Effect of Y addition on the interfacial microstructures and mechanical properties of Cf/Mg compositesSHAOFENG ZHANG; GUOQIN CHEN; RISHENG PEI et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2014, Vol 613, pp 111-116, issn 0921-5093, 6 p.Article

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