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Vol 221
Pages:
717-723
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Article

PNB type loader shoveling arm motion irregularity in dependence of its mass

Authors:
I. P. Timofeev1
A. Yu. Kuzkin2
About authors
  • 1 — Ph.D., Dr.Sci. professor (Saint-Petersburg Mining University
  • 2 — Ph.D. associate professor (Saint-Petersburg Mining University
Date submitted:
2015-11-18
Date accepted:
2016-01-10
Date published:
2016-10-24

Abstract

Requirements are formulated on motion trajectory of the front edge of the arm of PNB type loader needed to provide the maximum shoveling of bulk mass under the condition of fitting that trajectory into the dimensions of reception plate. Kinematic schemes are analyzed of mechanisms of shoveling arms. Rational parameters are suggested for that mechanism, which provide a 1.5 times increase of single-time shoveling of bulk load resulting in a 30 % increase of theoretical capacity of the machine. A technique is presented of defining the area embraced by the complex motion trajectory of the front edge of the arm. A mathematical model is designed of motion of the shoveling arm with curvilinear tail part using the techniques of vector algebra, second order central differences and triangulation. Geometric parameters of the mechanism of work tool of the loader are described by a linear equation yielding the functional dependence of coordinates of the position of front edge of the arm on the turning angle of the leading joint and the parameters of kinematic scheme. The effect is studied of the total mass of shoveling arm on the irregularity factor of mechanism motion. It is found that redistribution of mass between the work tool and the tail part of the arm within the given total mass of the tool suppresses the motion irregularity factor.

Область исследования:
(Archived) Electromechanics and mechanical engineering
Keywords:
loader mechanism shoveling arm parameters capacity trajectory factor mass
10.18454/pmi.2016.5.717
Go to volume 221

References

  1. Afonina N.B. On developing a technique to study loading tools of headers with shoveling stars. Gornoe oborudovanie i jelektromehanika. 2013. N 2, p.25-30 [in Russian].
  2. Vasil'eva M.A. Increasing the capacity of loader via upgrades to its shoveling arm mechanism: Avtoref. dis…kand. tehn. nauk. Nacional'nyj mineral'no-syr'evoj universitet «Gornyj». St. Petersburg, 2012, p.21 [in Russian].
  3. Verzhbickij V.M. Foundations of Numerical Techniques: Moscow: Vysshaja shkola, 2002, p.840 [in Russian].
  4. Volkov E.A. Numerical techniques. Moscow: Nauka, 1987, p.248 [in Russian].
  5. Evgrafov A.N. Computer aided computing and designing machine mechanisms. SPbGTU. St. Petersburg, 1992, p.80 [in Russian].
  6. Otrokov A.V., Hazanovich G.Sh., Kolesnichenko I.E., Hazanovich V.G. On the issue of systematizing design and kinematic schemes of continuous operation loading tools. Sovremennye problemy nauki i obrazovanija. 2014. N 4. URL: www.science-education.ru/118-13857 [in Russian].
  7. Kravchenko P.D., Rjumin I.F. Effect of irregularity of motion of the shoveling arm on loading capacity and power consumption. Trudy Novocherkasskogo politehnicheskogo in-ta. 1970. Vol.218, p.119-125 [in Russian].
  8. Krisachenko E.A. Studying the process of interaction of work tools of loaders featuring paired shoveling arms with piled lumpy bulk substance: Avtoref…kand. tehn. nauk. JuRGPU. Novocherkassk. 1971, p.21 [in Russian].
  9. Lojcjanskij L.G., Lur'e A.I. A Course of Theoretical Mechanics. V 2-h tomah. Vol.2. Moscow: Nauka, 1983, p.640 [in Russian].
  10. Malevich N.A. Mining heading machines and complexes. Moscow: Nedra, 1980, p.384 [in Russian].
  11. Machines and equipment for horizontal and tilt mining excavation. Pod obshhej red. B.F.Bratchenko. Moscow: Nedra, 1975, p.416 [in Russian].
  12. Belous N.A., Kuz'kin A.Ju., Sokolova G.V., Timofeev I.P. Substantiating rational parameters of mechanisms for shoveling arms of underground mine loader. Sovremennye problemy nauki i obrazovanija. 2014. N 4. URL: www.science-education.ru/118-13901 [in Russian].
  13. Timofeev I.P., Sokolova G.V., Belous N.A., Kuz'kin A.Ju., Kolton G.A. Patent N 2560013 RF. Loader. Opubl.20.08.15. Bul. N 23 [in Russian].
  14. Timofeev I.P., Vasil'eva M.A., Kuz'kin A.Ju. Effect of geometric parameters of the mechanism of shoveling arms of mine loaders on their capacity. Materialy Mezhdunarodnoj nauchno-prakticheskoj konferencii molodyh uchenyh i studentov «Opyt proshlogo – vzgljad v budushhee»; TulGU. Tula, 2011, p.56-58 [in Russian].
  15. Timofeev I.P., Belous N.A., Kuz'kin A.Ju. Optimization of kinematic parameters of shoveling arm mechanism for PNB type loaders. Zapiski Gornogo instituta. 2014. Vol.209, p.13-17 [in Russian].
  16. Fild A., Harrison P. Functional Programming. Moscow: Mir, 199, p.637 [in Russian].
  17. Hazanovich G.Sh., Kargin R.V., Nosenko A.S. Theoretical studies of load formation in the cline pulling transportation tool of the digger off-loader. Nauchno-tehnicheskie i social'no-jekonomicheskie problemy Rossijskogo Donbassa: Materialy 49-j nauchno- proizvodstvennoj regional'noj konferencii; SKNC VSh. Rostov-na-Donu. 2000, p.109-114 [in Russian].

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