OPERATING ELEMENTS DAMAGE OF TOOLS CONNECTED WITH THE PLASTIC DEFORMATION OF HARDENED ORGANIC COMPOUNDS
DOI:
https://doi.org/10.15802/stp2014/30461Keywords:
cycle, durability, damages, fatigue, voltage, tanks of rolling stock, railway transportAbstract
Purpose. Most of the freight traffic in Ukraine is made by railway transport. Government statistics of annual railway freight traffic (January-November) records the following data: 2011 - 468 million tons (108.2% to 2010); 2012 – 421.5 million tons (98.5% to 2011); 2013 – 441.8 million tons (96.6% by 2012). Despite the annual decrease of freight traffic volumes, a significant contribution during the freight traffic belongs to transportation in tanks. That is why the term of their service life extension is very topical today at the operation of tanks. Modern ideas about the accumulation of fatigue damages in the details of railway vehicles are based on models that assess the service life of metallic systems, depending on the load conditions. These models with sufficient accuracy let carry out an assessment of softening of metallic systems in high-cycle fatigue conditions and at the presence of elastic deformation. At the same time, peculiarities of counterbodies′ behavior these models do not take into account. The purpose of this paper is to construct a mathematical model to evaluate the durability of the operating tools, which are used in the purification of solidified organic cargo of tank cars. Methodology. With the use of modern approaches of deformed solid body mechanics the parameters impact of organic substances structure on the service life of heavy structural elements was analyzed. We present the interaction of damages ratio in this article. It relates mainly to those elements of the tool structure, which due to the influence of broadband Gaussian random loadings oscillate with their resonant or near-resonant frequencies. Findings. The influence of the fatigue loads features on the structure durability was studied. Thus, the obtained results suggest the increase of damages that are entered with low-amplitude cycles of strain, because of the nonlinear effect of the interaction between instrument operational elements with organic material. For the given example durability with fatigue which, according to an updated assessment, had been reduced by 10...15% was calculated. A decrease of 10% corresponds to the maximum amplitude of the voltage , and a decrease of 15% - the maximum amplitude . Originality. It is analytically shown that parameters of the metallic systems softening are connected with the kinetics of fatigue damages that accumulate in the metal structures under external loads. Practical value. Authors have proposed correlation that allows estimating the residual life of the part in conditions of a given sequence of multilevel cyclic loading.
References
Andreikiv O.Ye., Rudavskyi D.V. Rozrakhunkova model zarodzhennia vtomnykh trishchyn bilia navodnenoho vyrizu [The computational model of fatigue cracks nucleation near flood cutout]. Fiziko–khimichna mekhanika materialiv – Physics and chemical mechanics of materials, 2004, no. 5, pp. 63-66.
Vantazhni perevezennia. Statystychna informatsiia [Freight traffic. Statistic information]. Available at: http://www.ukrstat.gov.ua/(Accessed 15 June 2014).
Voropay V.S. Razrabotka metoda prinyatiya resheniya otnositelno vagona-tsisterny s istekshim naznachennym srokom sluzhby v usloviyakh okonchaniya ІІІ stadii zhiznenogo tsikla [Development of a method to make decision concerning the tank-car with the assigned expired lifetime in terms of final III-rd stage of the life cycle]. Vіsnyk Dnіpropetrovskoho natsіonalnoho unіversytetu zalіznichnoho transportu іmenі akademіkaV. Laza-riana [Bulletin of Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan], 2012, issue 42, pp. 201-204.
Ibatullin D. Kinetika ustalostnoy povrezhdayemosti i razrusheniya poverkhnostnykh sloyev [Kinetics of damage and fatigue fracture surface layers]. Samara, SSTU Publ., 2008. 387 p.
Kulichenko A.Ya., Kovalchuk V.V. Vplyv metodu termomekhanichnoi ochystky kotliv zaliznychnykh tsystern na ymovirnist roztriskuvannia poverkhnevoho sharu metalu [Effect of thermomechanical treatment method of railway tanks boilers on the cracking probability of the surface layer of the metal]. Zbirnyk naukovykh prats Donetskoho instytutu zaliznychnoho transportu [Proc. of Donetsk Institute of Railway Transport], 2012, issue 29, pp. 228–234.
Kulichenko A.Ya., Milianych A.R. Teoriia ruinuvannia ortotropnykh materialiv u vyhliadi zalyshkiv zastyhloho peku v kotlakh zaliznychnykh tsystern [Theory of failure of orthotropic materials in the form of a frozen pitch residues in boilers tanks]. Vіsnyk Dnіpropetrovskoho natsіonalnoho unіversytetu zalіznichnoho transportu іmenі akademіkaV. Lazariana [Bulletin of Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan], 2012, issue 41, pp. 64-70.
Pitelguzov N.A., Ivchenko T.B., Fedorchenko V.V. Osobennosti tekhnologicheskikh operatsiy podgotovki tsistern pri perevozke khimicheski opasnykh gruzov [Technological operations features of the tanks preparation during transportation of chemically dangerous goods]. Visnyk Skhidnoukrainskoho natsionalnoho universytetutu imeni V. Dalia [Bulletin of V. Dahl East-European National University], 2011, no. 6, pp. 135-139.
Hess G.Tank car travails: Regulators mull new safeguards for railcars that carry liquid hazardous materials. Chemical and Engineering News,2013, no.91 (41), pp. 27-28.
LambertR.G. Analysis of Fatigue Under Random Vibration. The Shock and Vibration Bulletin, 1976, no. 46 (3), pp. 55-72.
LambertR.G. Computation Methods. Technical Report AD A 103211. Alexandria, Defense Technical Information CenterPubl.,Mar. 1980, pp.57-74.
LambertR.G. Fracture Mechanics Applied to Step-Stress Fatigue Under Sine/Random Vibration.The Shock and Vibration Bulletin,1978, no.48 (3), pp. 93-101.
AhadF.R., EnakoutsaК., SolankiK.N., TjiptowidjojoY., BammannD.J. ModelingtheDynamicFailureofRailroadtankcars using a physically motivated internal state variable plasticity/damage nonlocal model. Modelling and Simulation in Engineering, 2013, vol.2013, 11 p. doi: 10.1155/2013/815158.
Saat M.R., BarkanC.P.L. Generalized railway tank car safety design optimization for hazardous materials transport: Addressing the trade-off between transportation efficiency and safety. Journal of Hazardous Materials,2011, no. 189 (1–2), pp. 62-68.doi: 10.1016/j.jhazmat.2011.01.136.
Weltschev M.,Schwarzer S., Otremba F.Comparison of the operating life of tank containers, tank vehicles and rail tank cars for the carriage of dangerous goods in practice, analysis of causes of damage. Chemical Engineering Transactions, 2013, no. 31, pp. 559-564. doi: 10.1016/j.jhazmat.2011.01.13610.3303/CET1331094.
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