Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance
Aiming at the shortages of large reversing impact, high energy consumption and poor balance effect of conventional beam-type pumping unit, the design scheme of beam-type pumping unit with dynamic tracking balance is proposed. The load-displacement curves from on-site trial shows that pumping with d...
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Gruppo Italiano Frattura
2021
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oai:doaj.org-article:d3c8b38cfc7e42b1bb270d7d3f086ff72021-11-26T10:56:12ZDynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance1971-8993https://doaj.org/article/d3c8b38cfc7e42b1bb270d7d3f086ff72021-06-01T00:00:00Zhttps://www.fracturae.com/index.php/fis/article/view/3085https://doaj.org/toc/1971-8993 Aiming at the shortages of large reversing impact, high energy consumption and poor balance effect of conventional beam-type pumping unit, the design scheme of beam-type pumping unit with dynamic tracking balance is proposed. The load-displacement curves from on-site trial shows that pumping with dynamic tracking balance has a better balance effect, and a production and power efficiency. According to the designed structure, the dynamic responses of the beam and connecting rods are analyzed. The results show that the maximum Mises stresses in the beam and connecting rod are 36.96 MPa and 27.83 MPa, respectively. The key components of designed beam-type pumping unit with dynamic tracking balance meet the requirement of strength. Bo WangGruppo Italiano FratturaarticleDynamic tracking balanceLoad balancePower efficiencyDynamic responseStrengthMechanical engineering and machineryTJ1-1570Structural engineering (General)TA630-695ENFrattura ed Integrità Strutturale, Vol 15, Iss 57 (2021) |
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Dynamic tracking balance Load balance Power efficiency Dynamic response Strength Mechanical engineering and machinery TJ1-1570 Structural engineering (General) TA630-695 |
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Dynamic tracking balance Load balance Power efficiency Dynamic response Strength Mechanical engineering and machinery TJ1-1570 Structural engineering (General) TA630-695 Bo Wang Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
description |
Aiming at the shortages of large reversing impact, high energy consumption and poor balance effect of conventional beam-type pumping unit, the design scheme of beam-type pumping unit with dynamic tracking balance is proposed. The load-displacement curves from on-site trial shows that pumping with dynamic tracking balance has a better balance effect, and a production and power efficiency. According to the designed structure, the dynamic responses of the beam and connecting rods are analyzed. The results show that the maximum Mises stresses in the beam and connecting rod are 36.96 MPa and 27.83 MPa, respectively. The key components of designed beam-type pumping unit with dynamic tracking balance meet the requirement of strength.
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format |
article |
author |
Bo Wang |
author_facet |
Bo Wang |
author_sort |
Bo Wang |
title |
Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
title_short |
Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
title_full |
Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
title_fullStr |
Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
title_full_unstemmed |
Dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
title_sort |
dynamic strength analysis of the key components of the beam-type pumping unit with dynamic tracking balance |
publisher |
Gruppo Italiano Frattura |
publishDate |
2021 |
url |
https://doaj.org/article/d3c8b38cfc7e42b1bb270d7d3f086ff7 |
work_keys_str_mv |
AT bowang dynamicstrengthanalysisofthekeycomponentsofthebeamtypepumpingunitwithdynamictrackingbalance |
_version_ |
1718409624661524480 |