Acta Univ. Agric. Silvic. Mendelianae Brun. 2016, 64(1), 195-201 | DOI: 10.11118/actaun201664010195
Possibilities of Adhesives Filling With Micro-particle Fillers - Lap-shear Tensile Strength
- Department of Material Science and Manufacturing Technology, Faculty of Engineering, Czech University of Life Sciences Prague, Kamýcká 129, 165 21 Praha 6, Czech Republic
An adhesive bonding can be ranged among technologies of materials bonding which are used in all industrial branches. It plays its important role also in an area of the construction of agricultural machines, e.g. tractors, harvestors etc. Utility properties of adhesives can be extended by using various types of fillers. These fillers increase some mechanical characteristics of adhesives and not last they can decrease resultant price. The paper focuses on a possibility to fill the adhesives showing increased lap-shear tensile strength. These adhesives are used e.g. for adhesive bonding of coach bodies in an automotive industry so that is why it is possible to apply them also in the agricultural area. Laboratory experiments describe the lap-shear tensile strength of rigid adherents which were bonded with adhesives with a variable concentration of micro-particle filler - a glass powder. T-test used for a comparison of the shear strength of the bonds created with the adhesives with 5 vol.% of the glass powder did not evidence a statistically significant difference comparing with the unfilled adhesives. This priece of knowledge opens a possible way of a material usage of the glass powder in the area of the adhesive bonding.
Keywords: agriculture, epoxy resin, glass powder, mechanical properties
Grants and funding:
This paper has been done when solving the grant IGA TF (No.: 2014:31140/1312/3133).
Prepublished online: February 29, 2016; Published: April 1, 2016 Show citation
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References
- ADAMS, R. D., COMYN, J., WAKE, W. C. 1997. Structural adhesive joints in engineering. 2nd ed. London: Chapman & Hall.
- AFFATATO, S., RUGGIERO, A. et al. 2013. On the roughness measurement of the knee femoral components. In: BIOMODLORE 2013. Palanga (LT) 20-22 Sept. 2013 Vilnius Vilnius Gediminas Technical University Press Technica (Sauletekio al.11, LT-10223, Vilnius, Lithuania.), 16-18.
- BAHATTAB, M. A. A., DONATE-ROBLES, J. B. et al. 2011. Characterization of polyurethane adhesives containing nanosilicas of different particle size, International Journal of Adhesion and Adhesives, 31(2): 97-103.
Go to original source...
- ČNI. 1997. Adhesives - Determination of tensile lap-shear strength of rigid-to-rigid bonded assemblies. ČSN EN 1465. Praha: Czech Standards Institute.
- HABENICHT, G. 2002. Kleben: Gundlagen, Technologien, Anwendung. Berlin: Springer.
Go to original source...
- GRANT, L. D. R. et al. 2009. Experimental and numerical analysis of single-lap joints for the automotive industry. International Journal of Adhesion & Adhesives, 29(4): 405-413. DOI: 10.1016/j.ijadhadh.2008.09.001
Go to original source...
- KAHRAMAN, R., SUNAR, M., YILBAS, B. 2008. Influence of adhesive thickness and filler content on the mechanical performance of aluminum single-lap joints bonded with aluminum powder filled epoxy adhesive. Materials Science Forum, 205: 183-189.
Go to original source...
- KAVAK, N., ALTAN, E. 2012. Influence of filler amount and content on the mechanical performance of joints bonded with metal powder filled adhesive. In: 15th International Conference on Advances in Materials and Processing Technologies, AMPT 2012. Wollongong, NSW; Australia, 773-774: 226-233.
Go to original source...
- KILIK, R., DAVIES, R. 1989. Mechanical properties of adhesive filled with metal powders. International Journal of Adhesion and Adhesives, 9(4): 224-228. DOI: 10.1016/0143-7496(89)90065-1
Go to original source...
- MESSLER, R. W. 2004. Joining of materials and structures from pragmatic process to enabling technology. Burlington: Elsevier.
- MÜLLER, M., VALÁŠEK, P. 2014. Environmental degradation aspects influencing coach-working one- component epoxy adhesives. Research in Agricultural Engineering, 60(1): 37-43. DOI: 10.17221/42/2013-RAE
Go to original source...
- MÜLLER, M., HERÁK, D. 2010. Dimensioning of the bonded lap joint. Research in Agricultural Engineering [in Czech: Zemědělská technika], 56(2): 59-68. DOI: 10.17221/35/2009-RAE
Go to original source...
- MÜLLER, M., VALÁŠEK, P. 2012. Degradation medium of agrocomplex - Adhesive bonded joints interaction. Research in Agricultural Engineering, 58(3): 83-91. DOI: 10.17221/27/2011-RAE
Go to original source...
- NOVÁK, M. 2011. Surface duality hardened steels after grinding. Manufacturing technology, 11: 55-59.
Go to original source...
- VALÁŠEK, P., MÜLLER, M. 2013a. Polyurethane resins filled with inorganic waste particles. Manufacturing Technology, 13: 241-247.
Go to original source...
- VALÁŠEK, P., MÜLLER, M. 2013b. Polymeric composite based on glass powder - Usage possibilities in agrocomplex. Scientia Agriculturae Bohemica, 2: 107-112. DOI: 10.7160/sab.2013.440207
Go to original source...
- VOTAVA, J. 2013. Influence of roughness of machined surface on adhesion of anticorrosion system. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, 61(6): 1889-1896. DOI: 10.11118/actaun201361061889
Go to original source...
- YOU, M. et al. 2009. A numerical and experimental study of preformed angle in the lap zone on adhesively bonded steel single lap joint. International Journal of Adhesion & Adhesives, 29(3): 280-285. DOI: 10.1016/j.ijadhadh.2008.07.001
Go to original source...
- ZHAI, L., LING, G., LI, J., WANG, Y. 2006. The effect of nanoparticles on the adhesion of epoxy adhesive. Materials Letters, 60(25-26): 3031-3033. DOI: 10.1016/j.matlet.2006.02.038
Go to original source...
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