ANALYSIS AND BASICS OF TESTING TEXTILE MATERIALS OF CONVEYOR BELT CARCASS
DOI:
https://doi.org/10.24867/16AM07SoviljKeywords:
textile, fatigue, failure, cyclic loading, composite materials, matrixAbstract
This paper provides an overview of the properties of natural and synthetic fibers which are used for conveyor belt carcass, as well as the influence of different types of loads on material fatigue. The influence of external conditions such as temperature and humidity on the occurrence of fatigue in textile materials and composite structures, as well as the influence of the environment are described. Different methods of fatigue testing of textile composites are presented.
References
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[8] L.C. Nkiwane, „High temperature creep performance of nylon 6.6 tyre cords“, Kautschuk Gummi Kunststoffe vol. 54(12), pp. 648, 2001, ISSN: 0948-3276.
[9] J.M. Hale, A.G. Gibson, S.D. Speake, „ Biaxial Failure Envelope and Creep Testing of Fibre Reinforced Plastic Pipes in High Temperature Aqueous Environments“, Journal of Composite Materials vol. 36(3), pp. 257-270, February 2002, ISSN: 00219983, DOI: 10.1177/ 0021998302036003516
[10] K. Bittner-Rohrhofer, K. Humer, H.W. Weber, Cryogenics vol. 42(5), pp. 265-272, 2002, ISSN: 0011-2275, DOI: 10.1016/S0011-2275(02)00039-5.
[2] M.S. Ellison, S.H. Zeronian, „Breaking-twist angle and crosslinking in wool fibers under alkaline conditions as a function of temperature“, Textile Reseasch Journal vol. 48(12), pp. 692-697, December 1987, ISSN: 1746-7748, DOI:10.1177/ 004051757804801203.
[3] M.M. Kamal, S.H. Zeronian, M.S. Ellison, A.H. Hyer, „Selected single fiber mechanical properties of different gossypium barbadense cotton varieties“, Textile Reseasch Journal vol. 54(5), pp. 343-350, May 1984, ISSN: 1746-7748, DOI:10.1177/ 004051758405400511.
[4] K. Slater, „Comfort Properties of Textiles“, Textile Progress vol. 9 (4), pp. 1-70, 1977, ISSN: 17542278, DOI: 10.1080/00405167.1977.10750095.
[5] N.L. Hancox, „High performance composites with resin matrices“, In: Kelly, A. and Mileiko S.T. (eds), Fabrication of Composites, Handbook of Composites vol. 4, pp. 1-44, January 1983, Amsterdam, North Holland, ISBN: 0444864474.
[6] M.M. Kamal, S.H. Zeronian, M.S. Ellison, A.H. Hyer, „Selected single fiber mechanical properties of different gossypium barbadense cotton varieties“, Textile Research Journal vol. 54(5), pp. 343-350, May 1984, ISSN: 0040-5175, DOI:10.1177/ 004051758405400511.
[7] M.S. Ellison, S.H. Zeronian, K.W. Alger, S.M. Aboul-Fadl, T.M. Soler, „Interrelationships between selected mechanical properties of individually-tested polymeric fibers“, Polymer Engineering and Science vol. 29(24), pp. 1738-1745, December 1989, ISSN: 1548-2634, DOI: 10.1002/pen.760292405.
[8] L.C. Nkiwane, „High temperature creep performance of nylon 6.6 tyre cords“, Kautschuk Gummi Kunststoffe vol. 54(12), pp. 648, 2001, ISSN: 0948-3276.
[9] J.M. Hale, A.G. Gibson, S.D. Speake, „ Biaxial Failure Envelope and Creep Testing of Fibre Reinforced Plastic Pipes in High Temperature Aqueous Environments“, Journal of Composite Materials vol. 36(3), pp. 257-270, February 2002, ISSN: 00219983, DOI: 10.1177/ 0021998302036003516
[10] K. Bittner-Rohrhofer, K. Humer, H.W. Weber, Cryogenics vol. 42(5), pp. 265-272, 2002, ISSN: 0011-2275, DOI: 10.1016/S0011-2275(02)00039-5.
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Published
2022-01-04
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Mechanical Engineering