Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier

The development of a methodology for calculating the designed strength of an unconventional kingpin-type load-carrying system for the articulated tractor container carrier on pneumatic wheels is an important and relevant task due to the unique layout of a given specialized vehicle. The purpose of th...

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Main Authors: Oleg Beihul, Denis Grischenko, Vsevolod Beihul, Ann Lepetova, Dmytro Chasov, Bogdan Kolyada
Format: Article
Language:English
Published: PC Technology Center 2020-10-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/214133
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spelling doaj-5893c03466b94d3a9de959adec0880ba2020-11-25T04:05:09ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612020-10-0157 (107)222910.15587/1729-4061.2020.214133214133Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrierOleg Beihul0Denis Grischenko1Vsevolod Beihul2Ann Lepetova3Dmytro Chasov4Bogdan Kolyada5Dniprovsky State Technical University Dniprobudivska str., 2, Kamianske, Ukraine, 51918Dnipro State Customs Service Kniahyni Olyhy str., 22, Dnipro, Ukraine, 49444Dniprovsky State Technical University Dniprobudivska str., 2, Kamianske, Ukraine, 51918Dniprovsky State Technical University Dniprobudivska str., 2, Kamianske, Ukraine, 51918Dniprovsky State Technical University Dniprobudivska str., 2, Kamianske, Ukraine, 51918ArcelorMittal Kryvorizhstali str., 1, Kryviy Rih, Ukraine, 50400The development of a methodology for calculating the designed strength of an unconventional kingpin-type load-carrying system for the articulated tractor container carrier on pneumatic wheels is an important and relevant task due to the unique layout of a given specialized vehicle. The purpose of this work is to devise a procedure for calculating the designed strength of a clip load-carrying system for the articulated tractor container carrier on pneumatic wheels, aimed at building an improved structure with rational metal consumption. The results of the theoretical and experimental studies have determined the most common estimation cases. They include the movement over the technological roads' irregularities along the horizontal section of the road ‒ an estimation case of the semi-trailer frame girders. climbing a high curb at an angle was also considered as an estimation case for the semi-trailer frame girders and cross member. Starting a tractor container carrier forward with an insurmountable obstacle in front of the semi-trailer's wheels was analyzed as an estimation case for the cross member of the frame and the suspension attachment units in the semi-trailer of a tractor container carrier. The result of the reported theoretical and experimental research is the determined load that acts on one cradle structure of the load-carrying system; it forms the torsional rigidity of the frame structure. Underlying the derived mathematical model for each case are the torsional moments and inertia moments that act on the structural elements of the girder in different planes. The mathematical models have been built on the basis of strength conditions for each estimation case and thus form a mathematical formula for determining the wall thickness of the frame girder. The mathematical notation demonstrates the degree of advantage of climbing a high curb at an angle over other estimation cases for the semitrailer frame member and girders. The estimation parameters underlying the mathematical model are meant to prevent the breaking and torsion of the semi-trailer frame in a tractor container carrierhttp://journals.uran.ua/eejet/article/view/214133transportation technologiesdesign calculationkingpin-type frameestimation schemeestimated load
collection DOAJ
language English
format Article
sources DOAJ
author Oleg Beihul
Denis Grischenko
Vsevolod Beihul
Ann Lepetova
Dmytro Chasov
Bogdan Kolyada
spellingShingle Oleg Beihul
Denis Grischenko
Vsevolod Beihul
Ann Lepetova
Dmytro Chasov
Bogdan Kolyada
Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
Eastern-European Journal of Enterprise Technologies
transportation technologies
design calculation
kingpin-type frame
estimation scheme
estimated load
author_facet Oleg Beihul
Denis Grischenko
Vsevolod Beihul
Ann Lepetova
Dmytro Chasov
Bogdan Kolyada
author_sort Oleg Beihul
title Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
title_short Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
title_full Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
title_fullStr Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
title_full_unstemmed Devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
title_sort devising a procedure for calculating the designed strength of a kingpin­type load­carrying system for an articulated tractor container carrier
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2020-10-01
description The development of a methodology for calculating the designed strength of an unconventional kingpin-type load-carrying system for the articulated tractor container carrier on pneumatic wheels is an important and relevant task due to the unique layout of a given specialized vehicle. The purpose of this work is to devise a procedure for calculating the designed strength of a clip load-carrying system for the articulated tractor container carrier on pneumatic wheels, aimed at building an improved structure with rational metal consumption. The results of the theoretical and experimental studies have determined the most common estimation cases. They include the movement over the technological roads' irregularities along the horizontal section of the road ‒ an estimation case of the semi-trailer frame girders. climbing a high curb at an angle was also considered as an estimation case for the semi-trailer frame girders and cross member. Starting a tractor container carrier forward with an insurmountable obstacle in front of the semi-trailer's wheels was analyzed as an estimation case for the cross member of the frame and the suspension attachment units in the semi-trailer of a tractor container carrier. The result of the reported theoretical and experimental research is the determined load that acts on one cradle structure of the load-carrying system; it forms the torsional rigidity of the frame structure. Underlying the derived mathematical model for each case are the torsional moments and inertia moments that act on the structural elements of the girder in different planes. The mathematical models have been built on the basis of strength conditions for each estimation case and thus form a mathematical formula for determining the wall thickness of the frame girder. The mathematical notation demonstrates the degree of advantage of climbing a high curb at an angle over other estimation cases for the semitrailer frame member and girders. The estimation parameters underlying the mathematical model are meant to prevent the breaking and torsion of the semi-trailer frame in a tractor container carrier
topic transportation technologies
design calculation
kingpin-type frame
estimation scheme
estimated load
url http://journals.uran.ua/eejet/article/view/214133
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