Effect of Surface Treatments on Tensile and Flexural Properties of Carbon Fiber Reinforced Friction Material

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Author(s)

Naresh Kumar Konada 1,* K.N.S.Suman 2

1. Department of Mechanical Engineering, Anits Engineering College, Visakhapatnam, INDIA

2. Department of Mechanical Engineering, Andhra University College of Engineering, Visakhapatnam, INDIA

* Corresponding author.

DOI: https://doi.org/10.5815/ijem.2018.03.03

Received: 19 Jan. 2018 / Revised: 15 Feb. 2018 / Accepted: 15 Mar. 2018 / Published: 8 May 2018

Index Terms

Multi walled carbon nano tubes, Carbon fibers, Chemical grafting, Tensile & flexural properties

Abstract

The mechanical properties of a friction material primarily depend on the interfacial adhesion between all the ingredients of a friction material. In this work, a new friction material is developed by combination carbon fiber (CF), polymer matrix and other ingredients. The surface of CF is chemically inert and hydrophobic in nature and does not possess good bonding property with resin. Therefore, an attempt is made to improve the bonding strength between all the ingredients of a friction material. CF surface is modified by three different surface treatment techniques to increase hydroxyl or carboxyl groups on the surface. First, surface oxidation treatment, Second nitric acid treatment and third grafting multi walled carbon nano tubes functionalized (MWCNT-F) on CF surface.  CF content after surface modifications is varied in wt % and mixed with remaining ingredients. Friction composite sheets are fabricated by using hand layup method. The resulting materials are characterized by SEM, TGA and FTIR analysis. MWCNTs-F on CF surface is observed. Twelve composite sheets with varying content of CF and surface treatment method is fabricated. Sample specimens are cut from the friction composite sheets to evaluate tensile and flexural properties of friction material. The best surface treatment method and optimum ingredients are selected for the improvement of tensile and flexural properties of friction material.

Cite This Paper

Naresh Kumar Konada, K.N.S.Suman,"Effect of Surface Treatments on Tensile and Flexural Properties of Carbon Fiber Reinforced Friction Material", International Journal of Engineering and Manufacturing(IJEM), Vol.8, No.3, pp.23-39, 2018. DOI: 10.5815/ijem.2018.03.03

Reference

1]Liu Y, Kumar S. Recent progress in fabrication, structure, and properties of carbon fibers. Polym Rev2012; 52(3-4):234-258.

[2]Paiva JMF, Santos AN, Rezende MC. Mechanical and morphological characterizations of carbon fiber fabric reinforced epoxy composites used in aeronautical field. Mater Res 2009; 12(3); 367-374.

[3]F.Rezaei, R.Yunus, N.A.Ibrahim, Effect of fiber length on thermo –mechanical properties of short carbon fiber reinforced polypropylene composites.Mater.Des.30 (2009)260-263.

[4]T.W. Chou, L.M .Gao et al, An assessment of the science and technology of carbon nano tube –based fibers and composites, compos. Sci. Technol. 70(2010)1-19.

[5]Tanaka K. Friction and wear of glass and carbon fiber filled thermoplastic polymers. Journal of Lubrication Technology, 1977, 99: 408-414.

[6]Niels De Greef, Luman Zhang et al. Direct growth of carbon nano tubes on carbon fibers ; Effect of the CVD parameters on the degradation of mechanical properties of carbon fibers , Elsevier , Diamond & Related materials 51(2015)39-48.

[7]Mohit Sharma, shanglin Gao, Edith Mader  et al. Carbon fiber surfaces and composite interface .Elsevier, composites science and technology 102,  2014,35-50.

[8]Qiang Song, Ke-zhi Li et al. Grafting straight carbon nano tubes radially on to carbon fibers and their effect on the mechanical properties of Carbon/Carbon composites, Elsevier, Carbon, Volume 50, Issue10, 2012, 3949-3952.

[9]S.P.Sharma, S.C.Lakkad. Effect of carbon fibers on the tensile strength of CNTs grown carbon fiber reinforced polymer matrix composites. Elsevier, Composites Part A 42(2011), 8-15.

[10]Hui Qian, Alexander Bismarck et al. Carbon nano tubes grafted carbon fibers: A study of wetting and fibre fragmentation. Elsevier, composites: Part A 41, 2010, 1107-1114.

[11]Febo Severini, Leonardo Formaro and Mario Pegoraro, et al. Chemical modification of carbon fiber surfaces. Carbon, vol.40, 2002, 735-741.

[12]Long-gui Tang, John L.Kardos. A Review of methods for improving the interfacial adhesion between carbon fiber and polymer matrix. Polymer composites, vol18, 1997, 100-113.

[13]K.Naresh Kumar, K.N.S. Suman. Effect of pad and disc materials on the behaviour of disc brake against fluctuating loading conditions. Journal of automobile engineering and applications .2017; 4(2), 22-34.

[14]Naresh Kumar Konada, K.N.S. Suman. Effect of pad and disc materials on the behaviour of disc brake against dynamic high speed loading conditions. International journal of automotive engineering and technologies, Academic paper, Vol 6, Issue3 (2017), 116-128.

[15]C Venkateshwar reddy et al. Effect of various filler materials on inter laminar shear strength of glass epoxy composites, MECS press, International journal of engineering and manufacturing, 2016, vol5 , 22-29.

[16]D Sameer Kumar, K.N.S.Suman. Selection of magnesium alloys by MADM methods for automobile wheels, MECS press, International journal of engineering and manufacturing, 2014, vol2, 31-41.

[17]D Chan and G W Stachowiak. Review of automotive brake friction materials. Proc. Instn Mech. Engrs, Vol218 2004, part D: J.Automobile Engineering 953-966.